Showing posts with label Materials. Show all posts
Showing posts with label Materials. Show all posts

Thursday, 8 August 2019

Market Research On Mobile Phone Battery Cathode Material Market 2019 And Analysis To 2025

ResearchMoz presents professional and in-depth study of "Global Mobile Phone Battery Cathode Material Market Insights, Forecast to 2025".

This global Mobile Phone Battery Cathode Material market report provides data for the estimated year (2019) and forecast year (2025) in terms of both, volume (MT) and value (US$ Mn). The report also consists of macroeconomic factors, forecast factors, and a market outlook of the global Mobile Phone Battery Cathode Material market. The report includes a porter five force analysis of Mobile Phone Battery Cathode Material, and drivers, restraints, and trends of the global Mobile Phone Battery Cathode Material market.

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 The cathode materials are comprised of cobalt, nickel and manganese in the crystal structure forming a multi-metal oxidematerialto which lithium is added.
Global Mobile Phone Battery Cathode Material market size will increase to xx Million US$ by 2025, from xx Million US$ in 2018, at a CAGR of xx% during the forecast period. In this study, 2018 has been considered as the base year and 2019 to 2025 as the forecast period to estimate the market size for Mobile Phone Battery Cathode Material.

This report researches the worldwide Mobile Phone Battery Cathode Material market size (value, capacity, production and consumption) in key regions like North America, Europe, China and Japan.
This study categorizes the global Mobile Phone Battery Cathode Material breakdown data by manufacturers, region, type and application, also analyzes the market status, market share, growth rate, future trends, market drivers, opportunities and challenges, risks and entry barriers, sales channels, distributors and Porter's Five Forces Analysis.

The following manufacturers are covered in this report:
  • Nihon Kasei
  • Nippon Carbon
  • JFE Chemical
  • Mitsubishi Chemical
  • BTR
  • Jiangxi Zichen Technology
  • Shenzhen Sinuo Industrial Development
  • Hunan Shinzoom Technology
  • ZhengTuo Energy Technology
  • Tianjin Kimwan Carbon Technology & Development

Mobile Phone Battery Cathode Material Breakdown Data by Type
Cobalt
Nickel
Manganese
Others
Mobile Phone Battery Cathode Material Breakdown Data by Application
Android System Mobile Phone
IOS System Mobile Phone
Window System Mobile Phone
Others

Mobile Phone Battery Cathode Material Production Breakdown Data by Region
North America
Europe
China
Japan

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The study objectives are:
To analyze and research the global Mobile Phone Battery Cathode Material capacity, production, value, consumption, status and forecast;
To focus on the key Mobile Phone Battery Cathode Material manufacturers and study the capacity, production, value, market share and development plans in next few years.
To focuses on the global key manufacturers, to define, describe and analyze the market competition landscape, SWOT analysis.
To define, describe and forecast the market by type, application and region.
To analyze the global and key regions market potential and advantage, opportunity and challenge, restraints and risks.
To identify significant trends and factors driving or inhibiting the market growth.
To analyze the opportunities in the market for stakeholders by identifying the high growth segments.
To strategically analyze each submarket with respect to individual growth trend and their contribution to the market.
To analyze competitive developments such as expansions, agreements, new product launches, and acquisitions in the market.
To strategically profile the key players and comprehensively analyze their growth strategies.

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Mr. Nachiket Ghumare,
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Wednesday, 24 July 2019

High Performance Ceramic Coatings Market Segments, Opportunity, Growth And Forecast By End-Use Industry 2019-2025

ResearchMoz presents professional and in-depth study of "High Performance Ceramic Coatings Market - Global Industry Analysis, Size, Share, Growth Trends and Forecasts 2017 - 2025".

Wide diversity of demands in various end-use industries have been underpinning growing revenues in the High Performance Ceramic Coatings market. Over the past several years, products have undergone rapid developments to meet emerging performance requirements in various application areas. Need for environmentally friendly formulations in High Performance Ceramic Coatings market has unlocked several promising prospects in emerging and developed countries. Furthermore, rapid advances in their chemistries have been witnessed in emerging markets, endowing new attributes to products. This, in recent years, has enabled manufacturers and producers to utilize new compounds as additives in High Performance Ceramic Coatings. Advent of novel materials, and massive industry investment in their research are likely to help expand the potential applications of High Performance Ceramic Coatings.

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High performance ceramic coatings are thin layers of ceramics which are coated either on metals or ceramic substrates in order to provide better resistance against wear, corrosion and temperature. Surface modification using high performance ceramic coatings has achieved substantial improvement in the industrial environment for the past few years. Advancements made in the field of material science and technology and widening list of potential end users are anticipated to expand the high performance ceramic coatings market. Commonly employed materials for the high performance ceramic coatings include alumina, alumina-magnesia, chromia, silicon carbide, titania and zirconia. These coatings are generally applied on to exhaust headers, intake manifolds, carburetor components etc. High performance ceramic coatings are mainly applied in the automotive industry. They are applied on automotive engine components and improve the fuel efficiency. The key feature of high performance ceramic coating is that it can withstand high temperatures, upto 1500O C and thereby protecting the components from oxidation.

Global High Performance Ceramic Coatings Market: Segmentation

The commonly employed technologies for the application of high performance ceramic coatings include thermal spray technology, physical vapor deposition and chemical vapor deposition. In thermal spray coating technology, the coating material is propelled using a stream of gas or compressed air to deposit the material onto the substrate. In order to get attractive surface characteristics, physical vapor deposition technology is followed. Chemical vapor technology requires high operational temperatures compared to physical vapor deposition technology. The key end user areas of high performance ceramic coatings include automotive, aviation, chemical equipment and medical industries. In automotive, high performance ceramic coatings significantly influence horsepower ratings and thus, enhance the overall performance of the automobile. Rise in demand for high performance ceramic coatings for engine components in the automotive industry and Increase in demand for superior thermal protection for aircraft engine are the key market drivers of high performance ceramic coatings market.

The report estimates and forecasts the high performance ceramic coatings market on the global, regional and country levels. The study provides forecast between 2017 and 2025 based on volume (Kilo Tons) and revenue (US$ Mn) with 2016 as the base year. The report comprises an exhaustive value chain analysis for each of the segments. It provides a comprehensive view of the market. Value chain analysis also offers detailed information about value addition at each stage. The study includes drivers and restraints for the high performance ceramic coatings market along with their impact on demand during the forecast period. The study also provides key market indicators affecting the growth of the market. The report analyzes opportunities in the high performance ceramic coatings market on the global, regional and country level. Drivers, restraints, and opportunities mentioned in the report are justified through quantitative and qualitative data. These have been verified through primary and secondary resources. Furthermore, the report analyzes substitute analysis of high performance ceramic coatings

Global High Performance Ceramic Coatings Market: Research Methodologies

Secondary research sources that were typically referred to include, but were not limited to, United States Advanced Ceramics Association (USACA),  The American Ceramic Society (ACS), American Coatings Association(ACA), The European Ceramic Industry Association (ECIA) , Asia-Oceania Ceramic Federation (AOCF),company websites, financial reports, annual reports, investor presentations, broker reports, and SEC filings. Other sources such as internal and external proprietary databases, statistical databases and market reports, news articles, national government documents, and webcasts specific to companies operating in the market have also been referred for the report.
In-depth interviews and discussions with a wide range of key opinion leaders and industry participants were conducted to compile this research report. Primary research represents the bulk of research efforts, supplemented by extensive secondary research. Key players’ product literature, annual reports, press releases, and relevant documents were reviewed for competitive analysis and market understanding. This helped in validating and strengthening secondary research findings. Primary research further helped in developing the analysis team’s expertise and market understanding.

The report includes Porter’s Five Forces Model to determine the degree of competition in the high performance ceramic coatings market. The report comprises a qualitative write-up on market attractiveness analysis, wherein end-users and regions have been analyzed based on attractiveness for each region. Growth rate, market size, raw material availability, profit margin, impact strength, technology, competition, and other factors (such as environmental and legal) have been evaluated in order to derive the general attractiveness of the market.

Global High Performance Ceramic Coatings Market: Competitive Landscape

The study provides a comprehensive view of the high performance ceramic coatings market by dividing it into end user, technology, and geography segments. End user segment has been categorized into automotive, aviation, chemical equipment, medical and others. The technology segmentation covers thermal spray, physical vapor deposition, chemical vapor deposition and others.

The regional analysis of global high performance ceramic coatings market includes the current and forecast consumption of high performance ceramic coatings in North America (U.S, Canada), Latin America (Brazil, Mexico, Rest of Latin America), Europe (Germany, France, Italy, U.K, Spain, and Rest of Europe), Asia Pacific (China, India, Japan & ASEAN), and Middle East & Africa (GCC, South Africa and Rest of Middle East & Africa). Market segmentation includes demand or consumption in all the regions and countries individually.
The report covers detailed competitive outlook that includes market share and profiles of key players operating in the global  high performance ceramic coatings and include Aremco Products Inc, Bodycote Plc, Saint-Gobain S.A , Ceramic Polymers GmbH , Zircotec Ltd and Praxair Surface Technology, Inc.

Company profiles include attributes such as company overview, number of employees, brand overview, key competitors, business overview, business strategies, recent/key developments, acquisitions, and financial overview (wherever applicable).

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The global high performance ceramic coatings market has been segmented as follows:

High Performance Ceramic Coatings Market – Technology Analysis
  • Thermal spray
  • Physical Vapor Deposition (PVD)
  • Chemical Vapor Deposition (CVD)
  • Others
High Performance Ceramic Coatings Market – End User Analysis
  • Automotive
  • Aviation
  • Chemical Equipment
  • Medical
  • Others
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Monday, 22 July 2019

Architectural Coatings Market : Introduction of the more advanced technology via conventional system 2019-2025

ResearchMoz presents professional and in-depth study of "Architectural Coatings Market - Global Industry Analysis, Size, Share, Growth, Trends, and Forecast, 2017 - 2025".

Architectural Coatings Market offers an eight-year forecast for the global Architectural Coatings market between 2017 and 2025. In terms of value, the Architectural Coatings market is expected to register a single-digit CAGR during forecast period. In addition, this section includes an analysis of the key trends, drivers, and challenges from the supply, demand, and economy side, which are influencing the Architectural Coatings market.

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Architectural coatings are used to coat buildings and homes. Mostly, they are designated for specific uses such as roof coatings, wall paints and deck finishes. Each architectural coating is anticipated to provide certain decorative, durable and protective functions. Different test protocols may be applied in the evaluation of an architectural coating depending upon the type of end uses such as residential and non-residential. Architectural coatings are different from that of other industrial coatings. Architectural coatings can be defined as the organic coatings intended for on-site End-User to interior or exterior surfaces of residential, commercial, institutional or industrial buildings. They are considered the protective and decorative finishes applied at ambient temperatures. The architectural coatings industry has undergone great change over the past few years. These changes have been introduced with the help of paint formulators, end users and environmental regulators. The commonly employed resins in the architectural coatings include acrylics, polyurethane, vinyl/styrene, alkyds, etc. and the major technology is solvent-based technology. However, water-based technology’s growth potential is projected to be high and it is expected to replace solvent-based technology.

Global Architectural Coatings Market: Trends and Opportunities

Rapid expansion in the building and construction industry is a key factor driving the global architectural coatings market. Increase in environmental awareness has led to technological innovations to provide quality products that are affordable and have enhanced properties. Another significant driver for the architectural coatings market is growing population and increase in disposable income. Investment in housing has been an important source of growth for many countries across the world in recent years. The change in culture coupled with the effect of globalization has been affecting the lifestyle of the people. People have become more health conscious and are choosing coatings with low emission of volatile organic compounds. Volatility in prices of raw materials have been considered restraint for the architectural coatings market.
Strategic co-operation among manufacturers is also considered as the opportunity for the architectural Coatings market.

Global Architectural Coatings Market: Scope of the Report

The report estimates and forecasts the architectural coatings market on the global, regional and country levels. The study provides forecast between 2017 and 2025 based on volume (Tons) and revenue (US$ Mn) with 2016 as the base year. The report comprises an exhaustive value chain analysis for each of the segments. It provides a comprehensive view of the market. Value chain analysis also offers detailed information about value addition at each stage. The study includes drivers and restraints for the architectural coatings market along with their impact on demand during the forecast period. The study also provides key market indicators affecting the growth of the market. The report analyzes opportunities in the architectural coatings market on the global, regional and country level. Drivers, restraints, and opportunities mentioned in the report are justified through quantitative and qualitative data. These have been verified through primary and secondary resources. Furthermore, the report analyzes substitute analysis of architectural coatings and global average price trend analysis.

The report includes Porter’s Five Forces Model to determine the degree of competition in the architectural coatings market. The report comprises a qualitative write-up on market attractiveness analysis, wherein end-users and regions have been analyzed based on attractiveness for each region. Growth rate, market size, raw material availability, profit margin, impact strength, technology, competition, and other factors (such as environmental and legal) have been evaluated in order to derive the general attractiveness of the market. The report comprises price trend analysis for architectural coatings between 2017 and 2025.

Global Architectural Coatings Market: Segmentation

The study provides a comprehensive view of the architectural coatings market by dividing it into resin, technology, end user and geography segments. Resin segment has been categorized into acrylics, polyurethane, vinyl/styrene, alkyds and other resins. The technology segmentation covers water-based technology, solvent-based technology and others. The architectural coatings market, by end user has been categorized into residential and non-residential. Both residential and non-residential end users are sub-categorized into new building and reconstruction. The regional analysis of global architectural coatings market include includes the current and forecast consumption of architectural coatings in North America (U.S, Canada), Latin America (Brazil, Mexico, Rest of Latin America) , Europe (Germany, France, Italy, U.K,  Spain, and Rest of Europe)  , Asia Pacific (China, India, Japan & ASEAN)  , and Middle East & Africa (GCC, South Africa and Rest of Middle East & Africa). Market segmentation includes demand or consumption in all the regions and countries individually.

The report covers detailed competitive outlook that includes market share and profiles of key players operating in the global architectural coatings market. Key players profiled in the report include Akzo Nobel N.V, BASF SE, Nippon Paint Holding Co., Ltd, PPG Industries, Inc., RPM International Inc., and The Sherwin Williams Company. Company profiles include attributes such as company overview, number of employees, brand overview, key competitors, business overview, business strategies, recent/key developments, acquisitions, and financial overview (wherever applicable).

Global Architectural Coatings Market: Research Methodology

Secondary research sources that were typically referred to include, but were not limited to, The World Paint & Coatings Industry Association (WPCIA) ,American Architectural Manufacturers (AAMA), American Institute of Architects (AIA), American Coatings Association (ACA), British Coating Federation (BCF) , The Society for Protective Coatings (SSPC) , Chemical Coaters Association International (CCAI),company websites, financial reports, annual reports, investor presentations, broker reports, and SEC filings. Other sources such as internal and external proprietary databases, statistical databases and market reports, news articles, national government documents, and webcasts specific to companies operating in the market have also been referred for the report.

In-depth interviews and discussions with a wide range of key opinion leaders and industry participants were conducted to compile this research report. Primary research represents the bulk of research efforts, supplemented by extensive secondary research. Key players’ product literature, annual reports, press releases, and relevant documents were reviewed for competitive analysis and market understanding. This helped in validating and strengthening secondary research findings. Primary research further helped in developing the analysis team’s expertise and market understanding.

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The Architectural Coatings Market has been divided into the following segments.

Architectural Coatings Market – Resin Analysis
  • Vinyl/Styrene
  • Acrylics
  • Alkyds
  • Polyurethanes
  • Others
Architectural Coatings Market – Technology Analysis
  • Water-based
  • Solvent-based
  • Others
Architectural Coatings Market – End User Analysis
  • Residential
    • New Building
    • Reconstruction
  • Non-Residential
    • New Building
    • Reconstruction
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Tuesday, 9 July 2019

New Era of Iron and Steel Casting Market – “Material Industry” is growing in Huge Demand in 2019

ResearchMoz presents professional and in-depth study of "Iron and Steel Casting Market - Global Industry Analysis, Size, Share, Growth, Trends, and Forecast 2018 - 2026".

The Iron and Steel Casting Market study covers various perspectives of the market, including market dynamics, value chain, pricing analysis, competition analysis, regional and segmental growth comparison and macro-economic and industry growth analysis, along with segment-level projections in a comprehensive manner.

Iron and steel casting refers to the process of injecting or pouring molten iron and steel into a mold to form an object of the desired shape. The process is usually used for mass production of components or parts used in a wide range of sectors such as automotive, agriculture, power generation, oil & gas, manufacturing machinery, and industrial units.

This report analyzes and forecasts the iron and steel casting market at the global and regional levels. The market has been forecast in terms of volume (kilo tons) and value (US$ Bn) from 2018 to 2026, considering 2017 as the base year. The study includes drivers and restraints of the global iron and steel casting market. It also covers the expected impact of these drivers and restraints on the demand for iron and steel casting products during the forecast period. The report also highlights opportunities in the iron and steel casting market at the global and regional levels.

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The report includes detailed value chain analysis, which provides a comprehensive view of the global iron and steel casting market. Porter’s Five Forces model for the iron and steel casting market has also been included to help understand the competition landscape of the market. The study encompasses market attractiveness analysis, wherein material and application segments have been benchmarked based on their market size, growth rate, and general attractiveness.

The study provides a decisive view of the global iron and steel casting market by segmenting it in terms of material, application, and region. In terms of material, the iron and steel casting market has been classified into gray iron, ductile iron, steel, and malleable iron. Based on application, the market has been divided into automotive & transport, pipes & fittings, pumps & valves, machinery & equipment, and others. These segments have been analyzed based on the present and future trends. Regional segmentation includes current and forecast demand for iron and steel casting products in North America, Europe, Asia Pacific, Latin America, and Middle East & Africa.
The report provides the actual market size of the global iron and steel casting market for 2017 and the estimated market size for 2018 with forecast for the next eight years. Market numbers have been estimated for material and application segments of the iron and steel casting market. Market size has been provided in terms of global, regional, and country-level markets.
The report comprises profiles of major companies operating in the global iron and steel casting market. Key players operating in the iron and steel casting market are Tata Steel Limited, ArcelorMittal SA, Nucor Corporation, Hyundai Steel Company, and Kobe Steel, Ltd. Market players have been profiled in terms of attributes such as company overview, financial overview, business strategies, and recent developments.

The global iron and steel casting market has been segmented as follows:

Global Iron and Steel Casting Market, by Material
  • Gray Iron
  • Ductile Iron
  • Steel
  • Malleable Iron
Global Iron and Steel Casting Market, by Application
  • Automotive & Transport
  • Pipes & Fittings
  • Pumps & Valves
  • Machinery & Equipment
  • Others
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Key Takeaways
  • In terms of material, the gray iron segment accounted for a major share of the global iron and steel casting market in 2017. High use of gray iron can be ascribed to various factors such as its tensile and yield strength, ductility, impact resistance, and low production cost. However, the share held by the gray iron segment is expected to decline marginally by the end of the forecast period, due to rise in preference for other materials.
  • On the other hand, shares of ductile iron and steel segments are expected to increase by the end of the forecast period, due to low weight, design, and metallurgical flexibility of ductile iron and steel
  • Based on application, the automotive & transport sector was the leading consumer of iron and steel casting products across the world in 2017. The automotive & transport segment is expected to gain market share by 2026, due to increasing use of private and public transport across the world.
  • The share of the pipes & fittings segment is also likely to increase by 2026, due to use of pipes and fittings made of iron and steel in industries such as power generation, oil & gas, and manufacturing
  • In terms of region, Asia Pacific held a major share of the global iron and steel casting market in 2017. Its share is expected to increase by 2026. This is because a wide range of iron and steel casting products are used in the region in order to manufacture end-products ranging from automotive components to appliances. Asia Pacific has several manufacturing facilities, wherein iron and steel casting products are required.
  • The global iron and steel casting market is likely to expand at a slow pace, largely because it is a mature market and substitutes such as aluminum are available
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Wednesday, 26 June 2019

Releases New Report On The Global Polypropylene Foam Packaging Material Market 2019-2024

ResearchMoz presents professional and in-depth study of "Polypropylene Foam Packaging Material Market Insights 2019, Global and Chinese Analysis and Forecast to 2024".

Polypropylene Foam Packaging Material Market Insights 2019, Global and Chinese Scenario is a professional and in-depth study on the current state of the global Polypropylene Foam Packaging Material industry with a focus on the Chinese market. The report provides key statistics on the market status of the Polypropylene Foam Packaging Material manufacturers and is a valuable source of guidance and direction for companies and individuals interested in the industry.Overall, the report provides an in-depth insight of 2014-2024 global and Chinese Polypropylene Foam Packaging Material market covering all important parameters.

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The key ponits of the report:
1.The report provides a basic overview of the industry including its definition, applications and manufacturing technology.
2.The report explores the international and Chinese major industry players in detail. In this part, the report presents the company profile, product specifications, capacity, production value, and 2014-2019 market shares for each company.
3.Through the statistical analysis, the report depicts the global and Chinese total market of Polypropylene Foam Packaging Material industry including capacity, production, production value, cost/profit, supply/demand and Chinese import/export.
4.The total market is further divided by company, by country, and by application/type for the competitive landscape analysis.
5.The report then estimates 2019-2024 market development trends of Polypropylene Foam Packaging Material industry. Analysis of upstream raw materials, downstream demand, and current market dynamics is also carried out.
6.The report makes some important proposals for a new project of Polypropylene Foam Packaging Material Industry before evaluating its feasibility.

There are 3 key segments covered in this report: competitor segment, product type segment, end use/application segment.

For competitor segment, the report includes global key players of Polypropylene Foam Packaging Material as well as some small players. At least 8 companies are included:
* JSP
* Kaneka
* BASF
* Youngbo
* Zotefoams
* Trexel

For complete companies list, please ask for sample pages.

The information for each competitor includes:
* Company Profile
* Main Business Information
* SWOT Analysis
* Sales, Revenue, Price and Gross Margin
* Market Share

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For product type segment, this report listed main product type of Polypropylene Foam Packaging Material market in gloabal and china.
* Expanded Polypropylene Foam
* Extruded Polypropylene Foam

For end use/application segment, this report focuses on the status and outlook for key applications. End users sre also listed.
* Consumer Products
* Electronics
* Others

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Tuesday, 25 June 2019

North American High-performance Ceramic Coatings Market Size And Forecast, 2019-2023

ResearchMoz presents professional and in-depth study of "High-performance Ceramic Coatings: North American Markets and Technologies".

Surface modification using ceramic coatings has achieved an important place in the industrial environment over the past several decades. High-performance ceramic coatings are a mature market but one in which new high-performance ceramic coating technologies, including both materials and processes, are continuously being developed. The availability of these new coating technologies is broadening the range of potential ceramic coating applications and substrate materials, including fiberreinforced polymeric (FRP) composite components, such as aircraft parts, rolls for the printing and textile industries, high-pressure hydraulic cylinders and camshafts. Meanwhile, the availability and
commercialization of new high-performance coatings technologies are changing the internal specification patterns of industries where they are already used, such as cutting tool inserts.

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The North American market for high-performance ceramic coatings was valued at REDACTED in 2017. This figure is expected to increase to REDACTED in 2018 and rise further to almost REDACTED in 2023, with a projected five-year compound annual growth rate (CAGR) of REDACTED.

Report Scope:

The report contains -
- An in-depth analysis of the technologies used for high-performance ceramic coatings.
- An overview of materials for high-performance ceramic coatings and their properties.
- New developments and recent patents in high-performance ceramic thermal spray, PVD, CVD and other coating techniques.
- Current and potential applications for high-performance ceramic coatings.
- Current and future market projections for ceramic coatings in all their major applications.
- Profiles of current industry players, including suppliers of equipment, consumables, coating service providers and users.
- A review of the economic/market opportunities for current industry participants and new entrants.

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Report Includes:

- 68 tables
- An overview of the global markets and technologies for high-performance ceramic coatings
- Analyses of global market trends, with data from 2017 and 2018, and projections of compound annual growth rates (CAGRs) through 2023
- Coverage of new developments in high-performance ceramic thermal spray, PVD, CVD, and other coating techniques
- Evaluation of current and potential applications for high-performance ceramic coatings
- Comprehensive profiles of the major players of the market including Haydale Technologies Inc., Hayden Corp., Honeywell Aerospace, Kennametal Inc., Plasma Coatings Inc. and Praxair Surface Technologies Inc.

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US Advanced Structural Carbon Products Market Analysis, Size, Share And Forecast 2019-2023

ResearchMoz presents professional and in-depth study of "The U.S. Market for Advanced Structural Carbon Products: Fibers, Foams and Composites".

The advanced structural carbon products market has witnessed boom and bust cycles. These state makes it tough for fiber manufacturers to forecast capacity needs.

The U.S. market for structural carbon materials (carbon fibers, carbon foams, graphite and carbonreinforced carbon composites) was worth more than REDACTED in 2017. This figure is expected to approach REDACTED in 2018 and exceed REDACTED in 2023, with a compound annual growth rate (CAGR) of REDACTED over the next five years.

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The aerospace and defense segment is the largest U.S. market for structural carbon materials as shown in the summary table below. Industrial applications such as corrosion-resistant chemical process equipment and refractories make up the second-largest market segment. Unlike aerospace and defense, which chiefly uses carbon fibers and carbon-carbon composites, structural graphite is the dominant structural carbon material in the industrial segment.

Energy applications are the third-largest market for structural carbon materials. The energy market consists mainly of carbon fiber for wind turbine blades and graphite for use in fuel cells, nuclear power plants and hydrogen storage media

Scope of the Report

This report covers technological, economic and business conditions in the structural carbons industry. Included in this report are descriptions of market forces relevant to the structural carbons industry and their areas of application.

The U.S. market is presented by type of structural carbons along with growth forecasts through 2023. Estimated values used are based on manufacturers total revenues. Projected and forecasted revenue values are in constant U.S. dollars, unadjusted for inflation. The driving forces in the industry and the structure of the industry are also examined.

The structural carbons industry is discussed with respect to type of structural carbon material. Finally, brief profiles of the major manufacturers are presented.

Reason for Doing This Study

This study is an update of a 2016 report by BCC Research. The structural carbon materials industry and markets have continued to develop in the two years since the previous edition was published.

The structural carbon materials industry serves mature markets such as defense and aerospace, with a wide variety of products satisfying the requirements of well-established applications. However, continuous technical innovations and efforts to make structural carbon technologies available for new applications (at affordable prices) are leading to the development of new markets.

Corporations in the structural carbons industry need to understand the significance of these trends to manage their enterprise and resources effectively. Users of structural carbons must also understand the effect of these changes in order to select the most cost-effective option among newly available products and technologies prior to committing significant capital resources.

Report Scope:

This report covers technological, economic and business conditions in the structural carbons industry. Included in this report are descriptions of market forces relevant to the structural carbons industry and their areas of application.

The U.S. market is presented by type of structural carbons along with growth forecasts through 2023. Estimated values used are based on manufacturers total revenues. Projected and forecasted revenue values are in constant U.S. dollars, unadjusted for inflation. The driving forces in the industry and the structure of the industry are also examined.

The structural carbons industry is discussed with respect to type of structural carbon material. Finally, brief profiles of the major manufacturers are presented.

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Report Includes:

- 29 data tables and 54 additional tables
- An overview of the U.S. market for advanced structural carbon products
- Coverage of key physical and chemical properties, raw materials and manufacturing processes
- Characterization and quantification of market potential for advanced structural carbon products by type, end user and application industry
- Evaluation of competitive strategies in the structural carbons industry
- Discussion of intellectual properties and technology trends
- Comprehensive company profiles of the major players within the industry, including Advanced composites Inc., Boeing Co., General Motors Co., Hexcel Corp., and Honeywell International, Inc.

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Thursday, 20 June 2019

Popular Trends : Asia-Pacific High-Performance Films Market 2018-2023

ResearchMoz presents professional and in-depth study of "High-Performance Films: Asia-Pacific Markets".

This report covers the markets and technologies of high-performance (HP) films in Asia-Pacific. BCC Research defines HP films as thin films that cost more than commodity films and are used in applications that require high strength, temperature resistance or some other superior attribute. These films are most commonly used in packaging, but they also have significant use in other applications. The high-performance films market comprises several resin classes. The largest are polyesters (almost exclusively PET films), polyolefin-based polymers such as EVOH and PVDC, polyamides (nylons), polycarbonates, fluoropolymers, acrylics and polyimides. The report also includes market volumes for several newer and growing HP films.

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The main film resins and their primary applications are:
- Polyesters, the dominant high-performance films, are used in many application markets and accounts for most high-performance films in end uses such as release films and tapes, office products and hot stamping films. Polyethylene terephthalate (PET) comprises almost all of the polyester films market and accounts for most packaging applications. Polyesters make up more than half of the total HP films market.
- Polyolefin-based films include EVOH, ionomers, PVDC, PVOH, EVA and PMP. Food packaging is the primary end use for these films.
- Polyamide (nylon) films find major applications in food packaging due to their strength and good barrier properties.
- Polycarbonate films, often thicker than films made of other materials, are primarily used in automotive instrument panels, electrical or electronics, signs or displays and building and construction markets.
- Bioplastic films, which are relatively new and still being developed, find most applications in packaging and the electrical and electronics market.
- Eight different fluoropolymer films exist, and all find at least some use as high-performance films. Four of them (PTFE, FEP, PVF and PVDF) account for most current usage and electrical and electronics, release films and tapes and industrial membranes are major markets.
- Acrylic films, made from PMMA-type resins, find most applications in the automotive and building and construction markets.
- Other high-performance films materials and markets include polyimides, cyclic olefin copolymers (COCs), polyethylene naphthalate (PEN), liquid crystal polymers (LCPs), polysulfones and polyetherimides. Other polymers with still developing markets include polyketones, benzo cyclobutene and polyacetal films. They have diverse applications, with packaging and electrical and electronic again being the most important.

Report Scope:

High-performance films are thin-gauge, mostly extruded or solution cast polymer sheets that are more expensive than traditional and conventional plastic films for using them in different end-use industries. These films are used primarily for their performance characteristics, but not their price with emphasis on the markets and products with the greatest potential for growth of these plastic films.

High-performance films are generally fabricated (or converted) in relatively small volumes (compared to commodity films). Much of their value is created after the film is extruded. The main focus of the report is on high-performance resins and their chemistries, including the following -
- Polyesters, primarily polyethylene terephthalate (PET). In this report, PET is interchangeable with polyester.
- Polyolefin-based specialty film resins.
- Polyamides (nylons).
- Polycarbonates (PCs).
- Bioplastics, a newer group of plastics.
- Fluoropolymers.
- Acrylic films based on PMMA chemistry.
- Polyimides (PIs).
- Cyclic olefin copolymers (COCs).
- Polyethylene naphthalate (PEN).
- Liquid crystal polymers (LCPs).
- Polysulfones.
- Polyetherimides.

This report does not review basic polyolefins, such as polyethylene (PE) and polypropylene (PP), because they are true commodities used in commodity films applications such as grocery and garbage bags. This report also excludes other commodity resins like polyvinyl chloride (PVC) and polystyrene. However, specialty polyolefin-based films are included. Specialty films include ethylene vinyl acetate (EVA), ethylene vinyl alcohol (EVOH), ionomers, polyvinylidene chloride (PVDC), polyvinyl alcohol (PVOH) and polymethyl pentene (PMP).

This report discusses fluoropolymer films, which includes the following -
- Polytetrafluoroethylene (PTFE).
- Polyvinyl fluoride (PVF).
- Fluorinated ethylene propylene (FEP).
- Polychlorotrifluoroethylene (PCTFE).
- Polyvinylidene fluoride (PVDF).
- Perfluoroalkoxy (PFA).
- Ethylene tetrafluoroethylene (ETFE).
- Ethylene chlorotrifluoroethylene (ECTFE).

This report studies the high-performance films market in Asia-Pacific with analysis of market trends supported with market data (both value and volume) from 2017 considered as the base year; 2018 and 2023 as the estimate years with projections of CAGR from 2018 to 2023. Estimated values used are based on manufacturers total revenues. Projected and forecasted revenue values are in constant US dollars, unadjusted for inflation.

The report discusses technological and economic trends that affect the high-performance films market in Asia-Pacific. It also explains the major drivers, restraints and regional dynamics of the high-performance films market, current trends within the industry and presents growth forecasts for the period 2018-2023. The market is segmented and forecasted for major countries in the region.

The report also discusses application segments such as packaging, electrical and electronics, automotive, photovoltaic and other applications such as release films and tapes, photographic and reprographic, hot stamping films, building and construction, signs and displays, optical, office products, business machines, aircraft and aerospace, industrial membranes, liquid crystal displays and textile and clothing.

The report concludes with a special focus on the vendor landscape and includes profiles of the major manufacturers operating in the Asia-Pacific region high-performance films market.

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Report Includes:

- 26 tables
- An overview of the Asia-Pacific market for high-performance films within the plastics industry
- Analyses of global market trends, with data from 2017 to 2018 and projections of compound annual growth rates (CAGRs) through 2023
- Country specific data and analysis for China, India, Japan, South Korea, Taiwan and other prominent economies within the APAC region
- Identification of trends affecting high-performance polymer films and their major end-use application markets
- Characterization and quantification of the market potential for high-performance films by material type, resin type, end use, application industry etc.
- Discussion of the ethical and regulatory issues, as well as patent analysis, publication analysis and research funding in this area
- Company profiles of the major players of the industry, including 3M, Reliance Industries Ltd., Saint-Gobain, Honeywell International, Inc. and Solvay SA

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Wednesday, 19 June 2019

Technical Insights : Asia-Pacific Powder Metallurgy Market 2023 - BASF, Epson Atmix Corp, GKN Sinter Metals, Hitachi Chemicals Co Ltd and Mitsubishi Material Corp

ResearchMoz presents professional and in-depth study of "Powder Metallurgy: Asia-Pacific Markets to 2023".

Powder metallurgy is an advanced metal-forming technology that popularly uses metallic and ceramic powders for manufacturing materials. The manufacturing technology has attracted considerable interest among numerous end-use industries, more notably automotive and medical, to produce precision materials of complex geometries.  Powder metallurgy technique has gathered steam in the Asia Pacific markets for the mass production of materials that would not otherwise be possible using conventional ingot metallurgy. Over the past several years, the technology has gained traction in the automotive industry to design high-performance automotive parts at scale. In many of its applications, it is considered as a green technology. Growing use of the technique to mass produce powder metallurgy precision parts is a case in point. The reason why this has generated substantial interest is its economy in manufacturing complex-shaped parts and at commercial scale.

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Ceaseless advances in metal-forming technologies will open powder metallurgy to emerging especially niche applications by helping the industry to produce materials with better mechanical and physical properties. A case in point is the vast potential the metal injection molding technology holds in manufacturing of medical devices and surgical implants. In the next few years, industry players in the Asia Pacific markets will assess the potential of powder metallurgy for designing porous implants with increased fixation properties. Growing number of biomedical applications of the technology will open exciting possibilities for market players over the next ten years. Powder metallurgy technique using Co-based alloys or Ti alloys holds special potential in biomedical applications in the Asia Pacific markets.

Powder metallurgy is the science of fabricating components with metal powders as their starting material. Powder metallurgy processes differ from conventional metallurgy processes such as melting and pouring, casting, drawing, forming, cutting, machining, welding, extrusion, forging and other related processes. In conventional metallurgy, the metal or alloy is always in a continuous physical form and is made into various shapes and articles using the above-mentioned processes. In case of PM, these processes are replaced by new and easier methods such as blending, compacting and sintering. One of the major drawbacks of conventional metallurgy process is the phase rule, which dictates what
ratios of specific elements can coexist in solid or liquid phase together in one continuum. This drawback is completely eliminated when the metal powders are handled through the powder metallurgy process. Powder metallurgy is sometimes referred to as the chip-less process, meaning there is zero waste of materials. This is due to the absence of machining operations compared to conventional metallurgical processes. Powder metallurgy (PM) is a cost-effective process for forming metal parts by heating compacted metal powders to just below their melting points. PM production methods can be used to fabricate numerous parts with complex shapes that meet demanding specifications. Unlike conventional machining, PM creates very little scrap or waste.

Most parts produced using the PM process weigh less than five pounds, while parts weighing as much as 35 pounds can be fabricated with conventional PM equipment. Many early parts produced by PM, such as bushings and bearings, were simple shapes, but todays sophisticated PM processes can economically produce components with complex contours and multiple levels.

Despite their small size, PM-produced parts are strategically important to the automotive, aircraft, hardware, instrumentation, oil and gas well-drilling equipment, and off-road tractor industries. A typical automobile contains more than 40 pounds of PM parts. Parts such as aircraft engine turbines, power tools, surgical instruments, riding lawn mowers, etc. depend on the PM process for their formation and strength.

The Asia-Pacific powder metallurgy (PM) industry, which was affected by the 20082009 recession, most notably due to the steep decline in automotive production, recovered and surpassed pre-recession levels. In 2017, the Asia-Pacific PM parts and components market exceeded REDACTED with a value of more than REDACTED.

BCC Researchs projections indicate that the PM market in Asia-Pacific will exceed REDACTED in 2018 with a value of REDACTED and reach nearly REDACTED (REDACTED) by 2023. These figures represent a CAGR of REDACTED in volume terms and an REDACTED rise in market value between 201 8 and 2023.

Report Scope:

This report analyzes the PM industry of Asia-Pacific, including the manufacturing capability and consumption associated with the regions major countries. It also examines industry standards, government and industry support, and other key factors related to the success of PM.

Market drivers within the industry are identified. The quantity and value of various powders and parts shipments are projected from 2017 to 2018, and then over a five-year period from 2018 to 2023. Technological issues and trends are projected, and other influential factors are discussed.

The report identifies major manufacturers of powder metal and other related materials, including ceramics and nanopowders, special alloys and metal matrix composites. It also includes companies that make parts and components for automotive products, industrial and tooling equipment, recreation and hobby items, appliances, business machines and other products.

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Report Includes:

- 27 data tables and 21 additional tables
- Country specific data and analysis of powder metallurgy for China, India, Japan, South Korea and other emerging economies within the APAC region
- Technological assessment of the powder metallurgy industry at a regional level covering Asia-Pacific, including manufacturing capability and consumption by regional markets
- Information on industry standards, government and industry support, and other key factors related to the success of powder metallurgy
- Identification of major manufacturers of powder metal and other related materials, including ceramics and nanopowders, special alloys and metal matrix composites
- Company Profiles of major manufacturers and suppliers of parts and components for automotive products, industrial and tooling equipment, recreation and hobby items, appliances, business machines and other products including BASF, Epson Atmix Corp., GKN Sinter Metals, Hitachi Chemicals Co. Ltd. and Mitsubishi Material Corp.

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Tuesday, 18 June 2019

Flame-Resistant Polyurethanes Market Size And Forecast, 2019-2023

ResearchMoz presents professional and in-depth study of "Global Markets for Flame-Resistant Polyurethanes".

The chemistry of flame-retardant polyurethane foams has undergone steady progress. Environmental-friendly flame retardant system for rigid polyisocyanurate-polyurethane foams have generated profuse interest of industry players. The worldwide drive for such a system has stemmed from public awareness about the fire safety of materials in various end-use industries. In this regard, the usage of polyurethane foams flame retarded materials for insulation in various end-use industries, have gained traction. The opportunities are substantial, given the widespread use of the material in adhesives, paints, elastomers, rigid and flexible foams.

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In recent years, there have been a slew of high-performance flame-retardant polyurethane foams in the market. These flame-retardant polyurethanes promise better machining attributes and properties, notably with respect to abrasion, temperature resistance, and flammability. For instance, there have been development of flame-retardant polyurethanes with high strength-to-weight ratio. Further, there is a substantial demand for flame-resistant materials that can be cut using traditional wood-carving tools and water jets. Moreover, these materials allow fabrication using high-speed steel. The need for crispier edges and high-density flame-retardant polyurethanes in the aerospace and medical industry is bolstering new development avenues. Emerging applications reinforce need for high-performance flame-retardant polyurethanes, such as in the nuclear industry. Engineering of flame-retardant polyurethanes suitable for in-fire and collision protection will be driven by new research and development activities. Growing demand for flame-retardant polyurethanes for impact-absorption performance has led to the development of new materials. The advent of novel flame-retardant polyurethanes that allow their use in artificial human bone test media is boosting the market.

Report Highlights

The global market for flame-resistant polyurethanes should grow from nearly $19.1 billion in 2018 to $27.0 billion by 2023 with a compound annual growth rate (CAGR) of 7.2% for the period of 2018-2023.

Summary

Flame-resistant polyurethanes are a subsection of the larger polyurethane industry. These materials are polyurethanes that come in several states (flexible foams, rigid foams and liquids) that are either manufactured to be flame-resistant or that have flame-resistant additives added during the manufacturing process.

There are many end-user markets for flame-resistant (FR) polyurethanes. Construction, furniture and transportation markets use millions of tons globally of flexible foams for seating and paneling, and rigid foams for insulation and architectural pieces. FR polyurethane fiber is required protective clothing for firefighters, welders and electrical workers.

Definition

There are many terms used for products and materials and how they react to fire and heat sources. Flame resistant refers to products and materials that are inherently nonflammable. In addition, the chemical structures in the materials are fire-resistant. These are slow-burning materials and will not melt when close to a heat source. They may not be 100% nonflammable but are slow-burning and often self-extinguishing.

Flame retardant refers to products and materials that are chemically treated with varnishes or additives that are slow-burning or self-extinguishing when exposed to a heat source or flame. The original product or materials can be flammable but must be coated with a flame-retardant varnish or additive to decrease flammability.

Fireproof is another term that has the same meaning as fire-resistant (not an additive but the structure of the material). The term is typically not used when technically describing the structure of the product or additive applied, but it is used in marketing materials for general consumers. Fire resistant means the same as flame-resistant, but is a more common term that refers to products and materials that are inherently nonflammable.

Fire retardant is an equally common term which is the same as flame retardant and refers to products and materials that are chemically treated with varnishes or additives that are slow-burning. For this report, we will use the term flame-resistant since we will only be looking at polyurethane products that are made with chemicals so that the product is flame/fire-resistant (slow-burning), and not flame-retardant chemicals that are coating the polyurethane foams and products on the exterior. According to the Polyurethane Foam Association, more than REDACTED billion lbs. of foam are produced everyyear in the U.S. Its website states, It is all around us in our daily lives, in our homes, vehicles, schoolsand businesses. It is the cushioning material of choice in nearly all upholstered furniture and mattress es.

Report Scope:

The scope of this report is broad and covers various types of flame-resistant polyurethane foams, flame-resistant polyurethane liquids and flame-resistant polyurethane fiber used for various end-user application industries. The market is broken down by major types, technologies, region, and application of flame-resistant polyurethane foams, flame-resistant polyurethane liquids and flame-resistant polyurethane fiber. Revenue forecasts from 2018 to 2023 are given for each flame-resistant polyurethane foam, flame-resistant polyurethane liquid and flame-resistant polyurethane fiber segment, and for each regional market, with estimated values derived from manufacturers total revenues. The report will not cover polyurethane foams, liquids and fiber coatings that are not specifically flame-resistant.

The report also includes a discussion of the major players across each regional market for flame-resistant polyurethane foams, flame-resistant polyurethane liquids and flame-resistant polyurethane fiber. Furthermore, it explains the major drivers and regional dynamics of the global market for flame-resistant polyurethane foams, flame-resistant polyurethane liquids and flame-resistant polyurethane fiber.

The report concludes with a focus on the distribution landscape and includes profiles of the major retailers and wholesalers in the global market for flame-resistant polyurethane foams, flame-resistant polyurethane liquids and flame-resistant polyurethane fiber.

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Report Includes:

- 68 tables
- A comprehensive study of the flame-resistant polyurethanes market on a global scale within the industry
- Analyses of global market trends with data from 2017, 2018, and projections of compound annual growth rates (CAGRs) through 2023
- A look at what new products and patents are and new technologies that will impact the industry
- Examination of the major trends and drivers in the industry, and quantification of the size of the global market
- Coverage of various types of flame resistant polyurethane foams, flame resistant polyurethane liquids and flame resistant polyurethane fiber
- Detailed profiles of the major retailers and wholesalers in the industry, including Axalta Coating Systems, Llc , Blauer Manufacturing Co., Inc, Clark Foam Products Corp., Elasco Urethane Inc., Flameret Inc., and Perimeter Solutions

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Ceiling Tiles Market - Global Industry Analysis And Forecast Till 2023

ResearchMoz presents professional and in-depth study of "Global Markets for Ceiling Tiles".

The demand within the global market for ceiling tiles has been rising on account of advancements in the constructions industry. The relevance of ceiling tiles is not a nascent trend, and traces of ceiling tiles can be found in historic buildings and structures. The advantages served by ceiling tiles have played a crucial role in the growth of the global market in recent times. Ceiling tiles can be made of multiple materials including minerals, ores, and gypsum. The easy availability of materials used for manufacturing ceiling tiles has played a major role in the growth of the global ceiling tiles market. Architects design archetypes with the intent to maximize the comfort and congeniality of spaces. This factor has also led to increased demand for ceiling tiles across the constructions industries.

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Special ceiling tiles, meant to shield the roof from excessive heating, have lately come into the market. This factor has played a major role in the growth of the global ceiling tiles market. Furthermore, adoption of ancient patterns in the constructions industry has also brought back the trend of using ceiling tiles in houses and buildings. Therefore, there is little contention about the stellar growth of the global ceiling tiles market in the years to come.

Based on geography, the global market for ceiling tiles consists of the following segments: North America, Latin America, Europe, Asia Pacific, and the Middle East and Africa. The market for ceiling tiles in Asia Pacific has been expanding at a rampant pace, majorly due to the adoption of traditional constructions styles in China and India.

Report Highlights

The global market for ceiling tiles should grow from $8.4 billion in 2018 to $11.8 billion by 2023 at a compound annual growth rate (CAGR) of 7.1% for the period of 2018-2023.

Summary

Having first gained a foothold during the post-war era as a way of covering up unsightly pipes, wires and other ceiling infrastructure in commercial buildings, ceiling tiles are currently seeing a new round of proliferation and development. Well-worn ceiling tile standbys, including the nearly ubiquitous rectangular white and off-white mineral wool and gypsum ceiling tiles that are common in commercial buildings, continue to grow along with growth of building markets. However, several new or newly fashionable ceiling tile categories are driving more substantial growth. Rustic woods, sleek metals, embossed and thermoformed patterns, three-dimensional molded plastics, and foams with advanced
customized designs all have great potential to drive more rapid market growth. However, these niche categories are not equal, and some will outperform while others will underperform through 2023 in terms of market value and growth.

When the effects of regional and global building construction and building retrofits are overlaid on top of end-user and consumer-driven trends, markets become quite complex. Residential markets comprise a relatively small proportion of the total ceiling tile market. Commercial applications comprise the largest share in terms of volume (and revenue) of the global ceiling tile market.

Data on market splits within commercial buildings have been historically very difficult and costly to identify. This report, however, provides the significant and unique benefit of outlining detailed market breakdowns in a total of six commercial building categories, namely commercial office buildings, retail, education, healthcare, hotels and restaurants, and institutional and assembly buildings. Additionally, markets are also broken down by material, namely mineral wool, gypsum, fiberglass, plastic, metal, wood, and custom concept ceiling tiles. Along with detailed splits by region and key countries/major economies, the project provides deep insights to corporations and other market players seeking to make critical business decisions.

Report Scope:

This report reviews ceiling tile technology categories and provides relevant information on markets and production, technological descriptions and issues, applications, and potential market factors. It also provides an overview of relevant incentives and regulations in major global markets. This report will be of interest to current and potential manufacturers and suppliers of ceiling tiles, entrepreneurs and companies interested in entering or expanding into the ceiling tile sector. It will also be of interest to corporate planners and strategists, building management industry R&D strategists, ceiling tile and building product and technology developers and engineers, companies seeking to commercialize new ceiling tiles and associated products, ceiling tile industry groups, other public- and private-sector interest groups, and market analysts.

The market analysis provided in this report is based on a variety of data sources. These include the most recent government, industry and corporate data on ceiling tile sales, production, imports, and exports; manufacturing rates and detailed commercial building trends used to help gauge historic and anticipated future market growth; data generated by recent and ongoing R&D efforts aimed at identifying new and developing niches for certain classes of ceiling tiles, and potential for associated growth; and corporate announcements for keystone industry developments, new products and successes.

Ceiling tile technology advances can be characterized by incremental change, rather than industry-shaping leaps. Accordingly, emerging ceiling tile technologies that may become commercially viable within the next five years are summarized but are not included in the market assessment of this report. To present growth forecasts for the five-year forecast period, BCC Research analyzed major viable ceiling tile materials and applications, determined current market status, and examined impacts on future markets. BCC Research also assessed and discussed technological issues, including the latest trends, as well as current and likely industry trends and updates. Sales of both new and replacement/ retrofit ceiling tile systems are considered.

This report analyzes the ceiling tile industry on a global basis in terms of its manufacturing and the deployment of technologies and products. It also examines key market drivers and headwinds and their roles in driving or restricting the global ceiling tile market.

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Report Includes:

- 66 data tables and 43 additional tables
- An overview of the global market for ceiling tiles
- Analyses of global market trends, with data from 2017, 2018, and projections of CAGRs through 2023
- Coverage of history and evolution of ceiling tiles, their characteristics and types
- Discussion of both residential and commercial applications of ceiling tiles
- Detailed profiles of key competitors of the market, including Armstrong World Industries, Keel Manufacturing, Maxxon Corp., Liberty Industries, Poly Molding LLC and ReWall Company

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Monday, 17 June 2019

Industry Trends : Electric Vehicle Supply Equipment Market 2023 - Clipper Creek, EV Box, Bosch, LiquidSky, Greenlots and Chargepoint

ResearchMoz presents professional and in-depth study of "Electric Vehicle Supply Equipment Market".

As defined in this report, the global EVSE market is estimated to have been worth over REDACTED in 2018 and is estimated to increase to nearly REDACTED in 2023. This market is expected to grow at a CAGR of REDACTED between 2017 and 2023 under a consensus scenario.

As this report is concerned only with charging systems for passenger PEVs, much of this growth is directly related to the growth of that market. With each PEV delivered, the supplier provides a cordset that allows charging at an electrical outlet, typically for emergency or stranded charging. Consequently, the quantity of cordsets represents the largest segment in the market. However, because of their low cost, their market value is smaller than all types other than basic AC Level 1.

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In addition to the growth in PEVs, continued incentives and goals related to the establishment of public infrastructure is expected to contribute significantly to this market, with significant growth in both AC Level 2 and DC fast chargers. Although eclipsed in numbers, the higher cost of the DC fast charger contributes to its large market share. It is the higher cost of DC fast chargers that currently tends to push the infrastructure, in terms of quantity, toward AC Level 2 EVSE. Increasingly, DC fast chargers will be deployed, especially along transportation corridors. However, as is the case with most public infrastructure, actual charging utilization will be key in terms of a successful business model.

Basic AC Level 1 equipment is primarily used in North America for fleet and workplace applications, with most public infrastructure installed as Basic or Smart AC Level 2. (This category in this report also includes AC Modes 2 and 3.) Basic AC Level 1 may represent a market opportunity as more employers seek to provide employee benefits, as it apparently has fewer dedicated suppliers. As the reporting period advances, smart equipment is expected to capture additional market share as more equipment is networked and the advantages of connected equipment are recognized. In addition, PEV batteries are expected to increase in capacity, leading to longer ranges for BEVs. However, this will also require faster rates of recharge.

Report Scope:

As the worlds embrace of electric vehicles (EVs) is expanding, the charging systems necessary for the support of these vehicles are expanding through a variety of market drivers. The term electric vehicle in this report includes commercial approaches such as pure battery-powered electric vehicle (BEV), plug-in hybrid electric vehicle (PHEV) and range-extended electric vehicle (REEV). Collectively, these EVs are termed plug-in electric vehicles (PEVs). Vehicles that use a combination of electric and internal combustion but without a charging port are termed hybrid electric vehicle (HEV) but are not included in this report. Only vehicles that employ a means for an external charge connection are considered.

Electric buses and other large electric vehicles are growing segments of their respective markets. However, charging systems are not considered in the market evaluation for this report. While electric buses are commercially available, larger heavy-duty vehicles are still under development. The associated charging systems are typically unique to the vehicle or their application. Some aspects of these charging systems are included in this report as background information. The market evaluation for these charging systems can best be evaluated with the vehicles themselves.

Some electric vehicles may be charged using a simple extension cord from a typical wall circuit; those are not included in this report. Only on-road vehicles are considered. In other words, charging systems for all-terrain vehicles, neighborhood electric vehicles, golf carts, scooters or electric bikes and similar vehicles are not considered.

Some companies have developed battery-swapping operations; rather than the PEV driver recharging the PEV battery, the entire battery is exchanged for a fully charged battery. These companies then employ charging systems to recharge the battery while off-board the vehicle. Such systems are not considered in this report.

Material handling equipment (e.g. fork trucks, air craft ground support equipment) may utilize electric motive power. Charging systems for this type of equipment are unique to these applications and typically do not cross over to the on-road PEV market. These charging systems are not included in this report.

This report details actual figures for 2013 and 2017 and compound annual growth rate (CAGR) projections for 2018 through 2023 for global and regional markets. Sales values are provided under consensus, optimistic and pessimistic scenarios. A discussion of emerging technologies describes the areas in which research is being performed and incentivized and their anticipated effects in future markets.

Note that values are expressed in millions of dollars, and shipments are expressed in 1,000 units. In both cases, totals are rounded to the nearest integer (i.e., less than $500,000 is expressed as $0). Values are based on the equivalent of retail, which is the price publicly advertised. While incentives exist for the private sale of PEVs, incentives to reduce the cost of charging systems are primarily restricted to those installed in public locations.

The equipment detailed in this report includes those that interface between the electric utility supplied power source and the PEV. Because these may or may not technically be chargers, as will be defined below, the term electric vehicle supply equipment (EVSE) is used. Differences in geographic markets also exist in part because the electricity is generated and supplied differently.

This report defines the differing technologies employed by EVSE suppliers and the related market sectors, identifies leading supplier companies and analyzes markets in differing geographic markets to provide a five-year forecast. Finally, the company profiles section provides the status of and recent events for companies providing EVSE.

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Report Includes:

- 94 data tables and 81 additional tables
- An overview of the global market for Electric Vehicle Supply Equipment (EVSE)
- Analyses of global market trends, with data from 2017 to 2018, and projections of CAGRs through 2023
- Country specific data and analysis for U.S., Canada, Netherlands, Germany, France, United Kingdom, Norway, Japan, China and Korea
- Detailed description of function and design of EVSE supporting Plug-in Hybrid Electric Vehicle (PHEV) and features and benefits of EVSE types
- A look into issues and costs associated with EVSE installations
- Explanation of the major drivers and regional dynamics of the market and current trends within the industry
- Company profiles of major players in the industry, including Clipper Creek, EV Box, Bosch, LiquidSky, Greenlots and Chargepoint

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Friday, 14 June 2019

North American Coatings for Commercial and Residential Roofing Market Forecast Research Reports Offers Key Insights Through 2023

ResearchMoz presents professional and in-depth study of "Coatings for Commercial and Residential Roofing: The North American Market".

Coatings for Commercial and Residential Roofing: The North American Market includes a comprehensive analysis of all products used in the North American roof coatings market. The report provides the latest in product development and material and technology enhancements, as well as a detailed look at the various distribution channels and their dynamics.

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The current market demand for each product type is quantified by value and volume, with projections for growth through 2023. This report also provides profiles for leading North American roof coatings manufacturers. The report is divided into the following 10 chapters -
- Introduction.
- Summary and Highlights.
- Market and Technology Background.
- Market Review by Product Type.
- Market Review by Distribution Channel.
- Market Review by Region.
- Government Regulation and Industry Organizations.
- Environmental Programs and Incentives.
- Analysis of Market Opportunities.
- Company Profiles.

Reasons for Doing This Study

There exists a tremendous variety of roof coatings available and the industry, as a whole, is ever changing. Commercial roof coatings alone are a $900 million industry in North America. Residential applications add another $79 million to that figure. The industry consists of more than 50 major companies that produce the products and manage the distribution channels for these products. This study profiles 26 companies out of this group.

The U.S. roof coatings industry, after peaking between 2006 and 2007, suffered a serious blow in the latter half of the last decade during the Great Recession. In 2009, the industry experienced one of its worst years; however, it began to rebound with a slight recovery that started in 2010. That recovery has continued during the past eight years. BBC Research predicts the industry will continue grow steadily over the next five years through 2023.

The U.S. economy and the coating industry still face several challenges. Coating formulators continue to struggle with managing costs while still providing in-demand and innovative products. Regulators, professionals and consumers also continue to demand green technologies due to increased awareness of environmental impact. Regulations continue to change and require constant monitoring. Companies also continue to commercialize new products with novel properties as a means of achieving market differentiation. Much of the innovation is driven by a shortage of skilled labor. Globalization of coating technologies is fostering change, as well. The above issues and many more will be addressed in this
study.

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This BCC Research study is a comprehensive reference that defines and describes the roofing industry. In preparation of this document, industry sources, trade literature, producer and distributor websites, and other reference material have been read, analyzed, and condensed. The industry is diverse, creative, and dynamic. The range of products currently on the market is very broad far exceeding the ability of any manufacturer to dominate the industry. The roof coatings market consists of large manufacturers with a market share between 6% and 30% and many smaller producers that have the capability of growing into major brands.

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Wood Coatings Market; In-Depth Analysis And Forecast On Market Dynamics, Emerging Trends, Growth Factors 2018 To 2023

ResearchMoz presents professional and in-depth study of "Wood Coatings: Technologies and Application Markets".

The global coatings for wood technologies and applications market was valued at REDACTED in 2017, and it is expected to reach REDACTED by 2023, growing at a compound annual growth rate (CAGR) of REDACTED from 2018 to 2023.

Wood has been used for many centuries in household and commercial applications. Woods are used to enhance the aesthetic beauty of buildings, ships and vehicles. Woods durability is the key factor for its wide range of applications. There are two types of woods: hardwood and softwood. Beech, oak and mahogany are examples of hardwoods, whereas redwood, fir and pine are examples of softwoods.

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Hardwoods are used to manufacture furniture, and softwoods are used to manufacture stud partitions, external fences, doors and roof traces. Both hardwoods and softwoods can be used for wooden floorings. Hardwoods are more expensive than softwoods. Both wood types have differentiated features and beauty. Wood grains also differ by wood type. Every wooden structure is coated with transparent or stain coatings to enhance the color and grains of the timber. Coatings are therefore essential and are used according to the applications of those structures by their manufacturers. The coating also enhances a products life. Ultraviolet (UV)-retardant and moisture-resistant coatings are the most demanding features of wood coating solutions.

Varnishes, shellacs, preservatives, dyes, repellents and lacquers are the most common types of products used for coating wooden surfaces. Distinguishing features and durability are driving the demand for such products. Coatings are applied with the help of a wide range of tools and equipment, the demand for which is expected to increase further with the increase in demand for wood coats and wood items. Various coating techniques, such as conventional spray, high-volume low-pressure (HVLP) spray, airless spray and electrostatic spray, are the prevailing spraying solutions used by wood product manufacturers. The demand for other wood surface coating techniques (e.g., rollers, brush, vacuum,
curtain) is further expected to rise with the increase in demand for wood products. Differentiated coating techniques are applied based on the size, shape and complexity of the product surface. The types of coating products to be applied depends on the exposure of the surface. Interior or exterior applications of wood products determine the types of the coat to be applied.

The demand for wood coating solutions is directly related to the demand for wood products, as those coating solutions have been developed for application solely on wooden surfaces. The rise in demand for household and commercial buildings is expected to create a demand for wood products, including furniture, cabinets, flooring and decking, which in turn is expected to drive the global wood coating technology market during the forecast period. The demand for cargo ships is expected to rise due to the reduction of trade barriers and the latest global trade policies. The demand for passenger and cruise ships is further expected to rise due to the increasing amount of disposable income among the global
population, which is expected to drive tourists to pursue royal traveling experiences. The increased demand for cargo and passenger ships will lead to the increased demand for wood for manufacturing and decorating ship interiors, which will surge wood coating applications among ship manufacturers. Moisture-resistant and UV-retardant wood coats are expected to be in great demand among the ship manufacturers due to ships exposure to water and sunlight. The demand for wood coats for exterior fencing is also expected to increase during the forecast period, as wood fencing adds a superior appearance to a building or premises. Maintenance of antique wood structures and the process of coating several newly designed handcrafts are factors expected to drive the wood coating technology market during the forecast period.

Report Scope:

The coatings for wood technologies and applications markets are segmented into four categories -
- Product type: Varnishes, shellacs, preservatives or dyes, repellents, lacquers, stains and others.
- Application equipment: Spraying and non-spraying.
- End-user application: Flooring and decking, sports equipment, automotive interiors, ship interiors, exterior fencing, handcrafts, furniture, cabinets and others.
- Region: North America is segmented into the U.S., Canada and Mexico; Europe is segmented into France, Italy, Germany, the U.K., Russia and the rest of the Commonwealth Independent States (CIS); the Asia-Pacific region is segmented into China, Japan, Taiwan, South Korea and others; and the rest of the world (RoW) covers the Middle East, Africa and South America.

The data provided in this report has been gathered from the manufacturing level. This report includes industry and competitive analysis of the coatings for wood technologies and applications markets, as well as a patent analysis and a listing of company profiles for key market players.

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Report Includes:

- 75 data tables and 39 additional tables
- Detailed overview of global markets for wood coating technologies and applications
- Analyses of global market trends with data from 2017 and 2018, and projections of compound annual growth rates (CAGRs) through 2023
- A look at the increased demand for wood coatings driven by customers expectations in diverse areas such as performance, ease of application, sustainability, quality, functionality and environmental properties
- Characterization and quantification of market potential for wood coating technologies by product type, application area, end use industry, and major geographical regions
- Discussion of research and development, and the demand for new products and new applications
- Details covering new developments taking place in the industry with respect to continuous improvements in environmental performance
Patent review and new developments for wood coating technologies
- Company profiles of key market players, including Arkema S.A., Asian Paints Ltd., BASF SE, Kansai Paint Co., Ltd., PPG Industries Inc., and Sherwin-Williams Company

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Mr. Nachiket Ghumare,
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Thursday, 13 June 2019

Advanced Structural Insulation Market : Research Report Explores The Global Industry For The Forecast To 2023

ResearchMoz presents professional and in-depth study of "Advanced Structural Insulation: Global Markets to 2023".

In todays market, residential and commercial builders are faced with myriad options for improving building energy efficiency including high-performance insulation, energy efficient equipment, and a growing cadre of smart systems and controls. When seeking green building certification or simply higher energy efficiency construction, cost effectiveness and multiple benefits become critical factors in selecting energy efficient, green technologies.

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Structural insulation includes a group of rapidly growing, multibenefit residential and commercial building technologies designed to greatly improve insulation capacity while also advancing building strength and providing several other important benefits, including reduced installation cost, exceptionally fast framing, reduced weight, disaster resistance, and reduced sound penetration.

Even with its strong benefits, structural insulationincluding structural insulated panels (SIPs), insulated concrete forms (ICFs), insulated concrete blocks/concrete masonry units, and insulated concreteglobal insulation markets carry much opportunity for growth, development and increased market penetration by structural insulation. The technologies face a building industry that is at once hungry for cost saving, time saving, and green building systems, but that also cautiously resists change. Some technologies, such as insulated concrete blocks/masonry units carry a strong advantage, in that they are nearly dropin replacements for existing building technologies. This greatly lowers risk and limits the need for extensive worker training and expertise. In contrast, SIPs and especially ICFs require skilled, experienced installers to ensure proper application. Many regions are approaching a critical mass of such skilled labor, but others lag behind, slowing market development. This study seeks to characterize these and other key market headwinds and drivers, identify technologies and applications that are leading structural insulation development and market penetration, and provide carefully benchmarked, reliable data on market valuations in the structural insulation industry through 2023.

Data on market splits within commercial buildings have been historically very difficult and costly to identify. This report, however, has a significant and unique benefit of providing detailed market breakdowns by a total of seven commercial building categories, including commercial office buildings, retail, education, healthcare, hotels and restaurants, institutional and assembly buildings, and warehouses and storage. Additionally, markets are also broken down by technology, including SIPs: polystyrene (EPS or XPS) insulation; SIPs: polyurethane or polyisocyanurate insulation; SIPs: other insulation material; ICFs: polystyrene (EPS or XPS) insulation; ICFs: other insulation; insulated concrete
blocks; and insulated concrete. Along with detailed splits by region and by key countries/major economies, the project provides deep insight to corporations and other market players seeking to make critical business decisions.

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The following table and figure present market values for aggregated application categories. The structural insulated panels (SIPs) and insulated concrete forms (ICFs) market segment includes the following individual technologies: SIPs with polystyrene (expanded polystyrene [EPS] or extruded polystyrene [XPS]) insulation, SIPs with polyurethane or polyisocyanurate insulation, SIPs with other insulation, ICFs with polystyrene (EPS or XPS) insulation, and ICFs with other insulation. The insulated concrete and insulated concrete blocks category includes insulated concrete based on all relevant insulating materials, and insulated concrete blocks (i.e., insulated concrete masonry units [CMUs]).

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Mr. Nachiket Ghumare,
90 State Street, Albany NY, United States - 12207
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