Global Polyoxymethylene Market 2017-2021

SKU ID :TNV-10617296 | Published Date: 25-Oct-2017 | No. of pages: 85
Table of Contents PART 01: EXECUTIVE SUMMARY PART 02: SCOPE OF THE REPORT PART 03: RESEARCH METHODOLOGY PART 04: INTRODUCTION • Market outline PART 05: MARKET LANDSCAPE • Market overview • Market size and forecast • Five forces analysis PART 06: MARKET SEGMENTATION BY APPLICATION • Global POM market by application 2016 • Global POM market by application 2021 • Global POM market by application • Global POM market in the automotive industry • Global POM market in the electrical industry • Global POM market in the consumer goods industry • Global POM market in the other applications PART 07: REGIONAL LANDSCAPE • Geographical segmentation • Regional comparison • APAC– Market size & forecast • EMEA– Market size & forecast • The Americas– Market size & forecast • Market opportunity PART 08: DECISION FRAMEWORK PART 09: DRIVERS AND CHALLENGES • Market drivers • Market challenges PART 10: MARKET TRENDS • POM nanocomposite • In-situ formation of benzoxazines in POM • Application of POM in the dental and emerging packaging sectors, and MEMS/NEMS system PART 11: VENDOR LANDSCAPE • Competitive scenario • Other prominent vendors PART 12: KEY VENDOR ANALYSIS • BASF • Celanese • DuPont • Korea Engineering Plastics • MITSUBISHI GAS CHEMICAL • Polyplastics PART 13: APPENDIX • List of abbreviations List of Exhibits Exhibit 01: Global POM market: Various processing methods of POM Exhibit 02: Global POM market: Types of POM Exhibit 03: Global POM market segmentation Exhibit 04: Market forecast: Global POM market 2016-2021 ($ millions) Exhibit 05: Five forces analysis Exhibit 06: Global POM market by application 2016 ($ millions) Exhibit 07: Global POM market by application 2021 ($ millions) Exhibit 08: Global POM market 2016-2021 ($ millions) Exhibit 09: Global POM market in the automotive industry 2016-2021 ($ millions) Exhibit 10: Global POM market in the electrical industry 2016-2021 ($ millions) Exhibit 11: Electrical properties of POM copolymer Exhibit 12: Global POM market in the consumer goods industry 2016-2021 ($ millions) Exhibit 13: Global POM market in the other applications 2016-2021 ($ millions) Exhibit 14: Global POM market– Market size & forecast Exhibit 15: Percentage of vendors- Region-wise in 2016 Exhibit 16: Regional comparison Exhibit 17: APAC– Market size & forecast Exhibit 18: APAC– Year-over-year (YoY) growth Exhibit 19: Automotive manufacturing in APAC Exhibit 20: Top 3 countries in APAC Exhibit 21: EMEA– Market size & forecast Exhibit 22: EMEA– Year-over-year (YoY) growth Exhibit 23: Automotive market in EMEA (volume) Exhibit 24: Top 3 countries in EMEA Exhibit 25: The Americas– Market size & forecast Exhibit 26: The Americas– Year-over-year (YoY) growth Exhibit 27: Top 3 countries in the Americas Exhibit 28: Global automotive market 2012-2021 (by production) Exhibit 29: Growth rate of global bioplastics market and global POM market (2017-2020) Exhibit 30: Other disadvantages of POM Exhibit 31: Fluctuation in the price of methanol affecting the price of POM Exhibit 32: Production capacities of major vendors of the global POM market Exhibit 33: BASF: Business segmentation by revenue 2016 (% share) Exhibit 34: BASF: Geographical segmentation by revenue 2016 (% share) Exhibit 35: BASF: Sub-segments of plastics and rubber Exhibit 36: Celanese: Business segmentation by revenue 2016 (% share) Exhibit 37: Celanese: Geographical segmentation by revenue 2016 (% share) Exhibit 38: DuPont: Business segmentation by revenue 2016 (% share) Exhibit 39: DuPont: Geographical segmentation by revenue 2016 (% share) Exhibit 40: DuPont: Sub-segments in polymers and fibers Exhibit 41: Korea Engineering Plastics: Product segmentation Exhibit 42: MITSUBISHI GAS CHEMICAL: Major subsidiaries and affiliates offering inorganic chemicals and engineering plastics Exhibit 43: MITSUBISHI GAS CHEMICAL: Business segmentation by revenue 2016 (% share) Exhibit 44: MITSUBISHI GAS CHEMICAL: Geographical segmentation by revenue 2016 (% share) Exhibit 45: MITSUBISHI GAS CHEMICAL: Production capacities of polyacetal resin Exhibit 46: Polyplastics: Product segmentation Exhibit 47: Polyplastics: Production process of DURACON
Polyplastics, Celanese, DuPont, MITSUBISHI GAS CHEMICAL, Korea Engineering Plastics, BASF, A. Schulman, Asahi Kasei Plastics, China National Bluestar, DATONG COAL MINE, GEHR Plastics, Grupa Azoty, Henan Energy and Chemical Industry Group, KOLON PLASTIC, LG Chem, POLYMER INDUSTRIES, Saudi Basic Industries (SABIC), Tangshan Zhonghao Chemical, Tianjin Bohua YongLi Chemical Industry, and Yunnan Yuntianhua
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