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Europe Engineering Plastics Market

  • Report Code: EN 1003
  • Publish Date: Upcoming
  
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The Europe Engineering Plastic Market is witnessing a high growth because the end-user industries increasingly require high performance materials which can be used in high temperature and demanding environment especially in key markets such as automotives and electrical and electronics. The report estimates the size the engineering plastic market both, in terms of volume and value. The report provides a comprehensive overview of the key market drivers, challenges and issues. Europe Engineering Plastic Market is projected to reach $43,271.88 million by 2018, growing at a CAGR of 7.8% from 2013 to 2018. The key driver of the market is the increasing expansion of end-user application segments for engineering plastics.

 

The report “Europe Engineering Plastic Market” defines and segments the Engineering Plastic market in the region with analyses and projections of the size of the Europe Engineering Plastic Market with respect to volume (KT) and value ($Million).

 

Engineering Plastics are used to handle applications that demand functions of both elastomers and thermoplastics for efficient functioning. Engineering Plastic are environmental friendly, leave minimal chemical residue, easily modified, recyclable and safe to use in applications such as medical, food packaging, and others.

 

The economic condition across the European market is stable and the growth rate has been positive after the 2009 economic crisis. It is improving since then, except in 2012, when it faced a little crunch.

 

The Engineering Plastics market is segmented on the basis of major types such as Polycarbonate (PC), Acrylonitrile Butadiene Styrene (ABS), Polyamides (PA), Polyesters (PET), Polyacetals (POM), Polybutylene terephthalate (PBT). Other smaller volume engineering plastics includes Polyphenylene Sulfide (PPS), Polyphenylene Ether (PPE), Polysulphone (PSU), Fluoropolymers, and Poly (methyl methacrylate) (PMMA).

 

The Europe Engineering Plastic Market report covers Engineering Plastic market in the European region and its trends concerning with major countries, such as Germany, U.K., France and others. The major applications covered in the Europe Engineering Plastic Market are automotive and transportation, electrical and electronics, industrial and machinery, packaging and extrusion, and consumer and appliances.

 

Further, as a part of qualitative analysis, this report provides a comprehensive review of important drivers, restraints, opportunities, and key burning issues in the Europe Engineering Plastic Market.

 

The Europe Engineering Plastic Market report also provides an extensive competitive landscape of the companies operating in this market.  It also includes the company profiles and competitive strategies adopted by various market players, including Europe BASF (Germany), Bayer (Germany), DSM (The Netherlands), Rhodia (France) and other market players in the Europe Engineering Plastic Market.

 

Customization Options:

 

Along with market data, you can also customize MMM offerings that are in keeping with your company’s specific needs. Customize your report on the North America Engineering Plastic to get an insight into all-inclusive industry standards and a deep-dive analysis of the following considerations:

 

  • Price analysis of each of the type of Engineering plastics i.e. Polycarbonate (PC),  Polyoxymethylene (POM), Thermoplastic polyesters, Fluoropolymers and others in terms of $ million per kilotons ($/KT)

 

  • Polymethyl Methacrylate (PMMA) Vs Polycarbonate (PC) consumption data for similar applications that involve optical properties for major countries i.e. U.S. and price analysis of both the materials

 

  • Data on PET-Glass reinforced, PET- Fiber reinforced material at region level (i.e. North America, Asia-Pacific, Western Europe)

 

  • Global medical applications market of engineering plastics the applicability they have in the industry

 

  •  SWOT Analysis of the top companies (manufacturers)

 

  •  Trade data - Import-export data, at country level for the countries profiled in the report


1 Introduction
1.1 Objective of the study
1.2 Market Definitions
1.3 Market Segmentation & Aspects Covered
1.4 Research Methodology
1.4.1 Assumptions (Market Size, Forecast, etc)
2 Executive Summary
3 Market Overview
4 Engineering Plastics-Europe, By Types
4.1 Split By Geography
4.1 Engineering Plastics-United Kingdom by Types
4.1 Engineering Plastics-France by Types
4.1 Engineering Plastics-Germany by Types
4.1 Engineering Plastics-Italy by Types
4.1 Engineering Plastics-Spain by Types
4.2 Engineering Plastics-Europe-Acrylonitrile butadiene styrene
4.2.1 Engineering Plastics-Europe-Acrylonitrile butadiene styrene, By Geographies
4.2.1.1 Engineering Plastics-United Kingdom-Acrylonitrile butadiene styrene
4.2.1.2 Engineering Plastics-France-Acrylonitrile butadiene styrene
4.2.1.3 Engineering Plastics-Germany-Acrylonitrile butadiene styrene
4.2.1.4 Engineering Plastics-Italy-Acrylonitrile butadiene styrene
4.2.1.5 Engineering Plastics-Spain-Acrylonitrile butadiene styrene
4.3 Engineering Plastics-Europe-Polycarbonate (PC)
4.3.1 Engineering Plastics-Europe-Polycarbonate (PC), By Geographies
4.3.1.1 Engineering Plastics-United Kingdom-Polycarbonate (PC)
4.3.1.2 Engineering Plastics-France-Polycarbonate (PC)
4.3.1.3 Engineering Plastics-Germany-Polycarbonate (PC)
4.3.1.4 Engineering Plastics-Italy-Polycarbonate (PC)
4.3.1.5 Engineering Plastics-Spain-Polycarbonate (PC)
4.4 Engineering Plastics-Europe-Polyacetal Resins OR Polyoxymethylene (POM)
4.4.1 Engineering Plastics-Europe-Polyacetal Resins OR Polyoxymethylene (POM), By Geographies
4.4.1.1 Engineering Plastics-United Kingdom-Polyacetal Resins OR Polyoxymethylene (POM)
4.4.1.2 Engineering Plastics-France-Polyacetal Resins OR Polyoxymethylene (POM)
4.4.1.3 Engineering Plastics-Germany-Polyacetal Resins OR Polyoxymethylene (POM)
4.4.1.4 Engineering Plastics-Italy-Polyacetal Resins OR Polyoxymethylene (POM)
4.4.1.5 Engineering Plastics-Spain-Polyacetal Resins OR Polyoxymethylene (POM)
4.5 Engineering Plastics-Europe-Polyamide (PA)
4.5.1 Engineering Plastics-Europe-Polyamide (PA), By Geographies
4.5.1.1 Engineering Plastics-United Kingdom-Polyamide (PA)
4.5.1.2 Engineering Plastics-France-Polyamide (PA)
4.5.1.3 Engineering Plastics-Germany-Polyamide (PA)
4.5.1.4 Engineering Plastics-Italy-Polyamide (PA)
4.5.1.5 Engineering Plastics-Spain-Polyamide (PA)
4.6 Engineering Plastics-Europe-Fluoropolymer
4.6.1 Engineering Plastics-Europe-Fluoropolymer, By Geographies
4.6.1.1 Engineering Plastics-United Kingdom-Fluoropolymer
4.6.1.2 Engineering Plastics-France-Fluoropolymer
4.6.1.3 Engineering Plastics-Germany-Fluoropolymer
4.6.1.4 Engineering Plastics-Italy-Fluoropolymer
4.6.1.5 Engineering Plastics-Spain-Fluoropolymer
4.7 Engineering Plastics-Europe-PET/PBT
4.7.1 Engineering Plastics-Europe-PET/PBT, By Geographies
4.7.1.1 Engineering Plastics-United Kingdom-PET/PBT
4.7.1.2 Engineering Plastics-France-PET/PBT
4.7.1.3 Engineering Plastics-Germany-PET/PBT
4.7.1.4 Engineering Plastics-Italy-PET/PBT
4.7.1.5 Engineering Plastics-Spain-PET/PBT
5 Engineering Plastics-Europe, By Geographies
5.1 Engineering Plastics-United Kingdom
5.1.1 Engineering Plastics-United Kingdom, By Types
5.1.1.1 Engineering Plastics-United Kingdom-Acrylonitrile butadiene styrene
5.1.1.2 Engineering Plastics-United Kingdom-Polycarbonate (PC)
5.1.1.3 Engineering Plastics-United Kingdom-Polyacetal Resins OR Polyoxymethylene (POM)
5.1.1.4 Engineering Plastics-United Kingdom-Polyamide (PA)
5.1.1.5 Engineering Plastics-United Kingdom-Fluoropolymer
5.1.1.6 Engineering Plastics-United Kingdom-PET/PBT
5.2 Engineering Plastics-France
5.2.1 Engineering Plastics-France, By Types
5.2.1.1 Engineering Plastics-France-Acrylonitrile butadiene styrene
5.2.1.2 Engineering Plastics-France-Polycarbonate (PC)
5.2.1.3 Engineering Plastics-France-Polyacetal Resins OR Polyoxymethylene (POM)
5.2.1.4 Engineering Plastics-France-Polyamide (PA)
5.2.1.5 Engineering Plastics-France-Fluoropolymer
5.2.1.6 Engineering Plastics-France-PET/PBT
5.3 Engineering Plastics-Germany
5.3.1 Engineering Plastics-Germany, By Types
5.3.1.1 Engineering Plastics-Germany-Acrylonitrile butadiene styrene
5.3.1.2 Engineering Plastics-Germany-Polycarbonate (PC)
5.3.1.3 Engineering Plastics-Germany-Polyacetal Resins OR Polyoxymethylene (POM)
5.3.1.4 Engineering Plastics-Germany-Polyamide (PA)
5.3.1.5 Engineering Plastics-Germany-Fluoropolymer
5.3.1.6 Engineering Plastics-Germany-PET/PBT
5.4 Engineering Plastics-Italy
5.4.1 Engineering Plastics-Italy, By Types
5.4.1.1 Engineering Plastics-Italy-Acrylonitrile butadiene styrene
5.4.1.2 Engineering Plastics-Italy-Polycarbonate (PC)
5.4.1.3 Engineering Plastics-Italy-Polyacetal Resins OR Polyoxymethylene (POM)
5.4.1.4 Engineering Plastics-Italy-Polyamide (PA)
5.4.1.5 Engineering Plastics-Italy-Fluoropolymer
5.4.1.6 Engineering Plastics-Italy-PET/PBT
5.5 Engineering Plastics-Spain
5.5.1 Engineering Plastics-Spain, By Types
5.5.1.1 Engineering Plastics-Spain-Acrylonitrile butadiene styrene
5.5.1.2 Engineering Plastics-Spain-Polycarbonate (PC)
5.5.1.3 Engineering Plastics-Spain-Polyacetal Resins OR Polyoxymethylene (POM)
5.5.1.4 Engineering Plastics-Spain-Polyamide (PA)
5.5.1.5 Engineering Plastics-Spain-Fluoropolymer
5.5.1.6 Engineering Plastics-Spain-PET/PBT
6 Engineering Plastics-Europe, By Companies
6.1 Competitive landscape
6.2 Split By Geography
6.2 Engineering Plastics-United Kingdom by Companies
6.1 Engineering Plastics-France by Companies
6.1 Engineering Plastics-Germany by Companies
6.1 Engineering Plastics-Italy by Companies
6.1 Engineering Plastics-Spain by Companies
6.3 Engineering Plastics-Europe-Sabic Innovative Plastics Holding Us Lp
6.4 Engineering Plastics-Europe-Bayer MaterialScience
6.5 Engineering Plastics-Europe-Styrolution Group GmbH
6.6 Engineering Plastics-Europe-Celanese Corporation
6.7 Engineering Plastics-Europe-DSM Engineering Plastics

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