Aerospace Plastic Flame Retardant Market Size, Competitive Trends Report: Radiant Insights

Latest Study - Aerospace Plastic Flame Retardant Market Size,
Growth Report to 2022: Radiant Insights
The aerospace plastic flame retardant market is expected to witness a rapid growth from 2015 to 2022. The rising
plastic demand, mainly because of its qualities such as light weight, is likely to continue as one of the key growth
driving aspects for the global market. The growing number of air travelers and improved safety policies are said to
positively affect the market. The fluctuating raw material prices are likely to cause a danger to the overall market
growth. The global market is divided into applications, products, and regions.
Based on the application areas, the global market is classified as thermoset polyimides, epoxies, Carbon Fiber
Reinforced Plastics (CFRP), Glass Reinforced Plastics (GRP), acetal / POM, polycarbonates, and some others, e. g.,
polypropylene (PP), polybutylene terephthalate (PBT), and polyphthalamide (PPA). The CFRP sector dominated the
overall application sector in 2014 and is anticipated to grow at the highest CAGR in the near future. Also, the
polycarbonates segment is said to have huge growth opportunities and is likely to gain importance over the usual
materials e. g., wood and metal; mainly because of its properties such as low maintenance, lightweight, versatility,
high resistance, flexibility etc.
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The global aerospace plastic flame retardant market’s product segment is categorized as Aluminum Trihydrate
(ATH), boron compounds, organophosphates/phosphorous, and antimony oxide. The ATH was the dominant
product segment of the global market. It is commonly used in plastics of various aerospace applications, due to its
plentiful availability and low costs. Organophosphates compounds are said to register the top compound annual
growth rate (CAGR) in the next seven years. The ammonium polyphosphate, red phosphorous, and several other
organophosphates came up as the fastest-growing product segments due to the rising demand in polyamides,
intumescent coatings, and many other aerospace plastics applications.
Geographically, the global market is divided into North America, Asia-Pacific (APAC), Europe, and the Rest of the
World (RoW). The Europe was the dominant regional market in 2014 mainly due to the existence of major airline
companies such as Boeing, Rolls-Royce Holding, Airbus, etc. The APAC region continues to be the fastest-growing
market due to the increase in the aviation industry as well as customer disposable incomes, in several developing
nations like India, Indonesia, Vietnam, and so on. The APAC region is anticipated to record a healthy CAGR over the
next seven years.
The key participants of the aerospace plastic flame retardant market include RTP Company, DIC Corporation, Royal
DSM, BASF, Rio Tinto, and so on.
Table of Contents
Chapter 1 Methodology and Scope
1.1 Research methodology
1.2 Research scope and assumptions
1.3 List of data sources
Chapter 2 Executive Summary
Chapter 3 Flame Retardants for Aerospace Plastics Industry Outlook
3.1 Market segmentation
3.2 Market size and growth prospects, 2012 - 2022
3.3 Flame retardants for aerospace plastics value chain analysis
3.3.1 Vendor landscape
3.4 Regulatory framework
3.5 FRAP market dynamics
3.5.1 Market driver analysis
3.5.1.1 Development of aviation market
3.5.1.2 Substitution of metals to lower carbon emissions
3.5.1.3 Easy adoption in aircraft designs
3.5.2 Market restraint analysis
3.5.2.1 Volatile raw material prices
3.6 Key opportunities prioritized
3.7 Industry Analysis – Porter’s
3.8 FRAP PESTEL analysis
Chapter 4 Flame Retardants for Aerospace Plastics Product Outlook
4.1 Global FRAP market share by product, 2014 & 2022
4.2 Antimony oxide
4.2.1 Market estimates and forecasts, 2012 - 2022
4.2.2 Market estimates and forecasts by region, 2012 - 2022
4.3 Aluminium trihydrate
4.3.1 Market estimates and forecasts, 2012 - 2022
4.3.2 Market estimates and forecasts by region, 2012 - 2022
4.4 Organophosphates
4.4.1 Market estimates and forecasts, 2012 - 2022
4.4.2 Market estimates and forecasts by region, 2012 - 2022
4.5 Boron compounds
4.5.1 Market estimates and forecasts, 2012 - 2022
4.5.2 Market estimates and forecasts by region, 2012 - 2022
4.6 Others
4.6.1 Market estimates and forecasts, 2012 - 2022
4.6.2 Market estimates and forecasts by region, 2012 - 2022
Chapter 5 Flame Retardants for Aerospace Plastics Application Outlook
5.1 Global FRAP market share by application, 2014 & 2022
5.2 Carbon fiber reinforced plastics (CFRP)
5.2.1 Market estimates and forecasts, 2012 - 2022
5.2.2 Market estimates and forecasts by region, 2012 - 2022
5.3 Glass reinforced polymers (GRP)
5.3.1 Market estimates and forecasts, 2012 - 2022
5.3.2 Market estimates and forecasts by region, 2012 - 2022
5.4 Polycarbonate (PC)
5.4.1 Market estimates and forecasts, 2012 - 20222
5.4.2 Market estimates and forecasts by region, 2012 - 2022
5.5 Thermoset polyimides
5.5.1 Market estimates and forecasts, 2012 - 2022
5.5.2 Market estimates and forecasts by region, 2012 - 2022
5.6 Acrylonitrile butadiene styrene (ABS)
5.6.1 Market estimates and forecasts, 2012 - 2022
5.6.2 Market estimates and forecasts by region, 2012 - 2022
5.7 Acetal/polyoxymethylene (POM)
5.7.1 Market estimates and forecasts, 2012 - 2022
5.7.2 Market estimates and forecasts by region, 2012 - 2022
5.8 Epoxies
5.8.1 Market estimates and forecasts, 2012 - 2022
5.8.2 Market estimates and forecasts by region, 2012 - 2022
5.9 Others
5.9.1 Market estimates and forecasts, 2012 - 2022
5.9.2 Market estimates and forecasts by region, 2012 - 2022
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