Chapter 1. Research Scope
1.1. Research Objectives
1.2. Market Definition
1.3. Analysis Period
1.4. Market Size Breakdown by Segments
1.4.1. Market size breakdown, by type
1.4.2. Market size breakdown, by resin type
1.4.3. Market size breakdown, by technology
1.4.4. Market size breakdown, by application
1.4.5. Market size breakdown, by matrix
1.4.6. Market size breakdown, by region
1.4.7. Market size breakdown, by country
1.5. Market Data Reporting Unit
1.5.1. Value
1.6. Key Stakeholders
Chapter 2. Research Methodology
2.1. Secondary Research
2.1.1. Paid
2.1.2. Unpaid
2.1.3. P&S Intelligence database
2.2. Primary Research
2.3. Market Size Estimation
2.4. Data Triangulation
2.5. Currency Conversion Rates
2.6. Assumptions for the Study
2.7. Notes and Caveats
Chapter 3. Executive Summary
Chapter 4. Market Indicators
Chapter 5. Industry Outlook
5.1. Market Dynamics
5.1.1. Trends
5.1.2. Drivers
5.1.3. Restraints/challenges
5.1.4. Impact analysis of drivers/restraints
5.2. Impact of COVID-19
5.3. Porter’s Five Forces Analysis
5.3.1. Bargaining power of buyers
5.3.2. Bargaining power of suppliers
5.3.3. Threat of new entrants
5.3.4. Intensity of rivalry
5.3.5. Threat of substitutes
Chapter 6. Global Market
6.1. Overview
6.2. Market Revenue, by Type (2017–2030)
6.3. Market Revenue, by Resin Type (2017–2030)
6.4. Market Revenue, by Technology (2017–2030)
6.5. Market Revenue, by Application (2017–2030)
6.6. Market Revenue, by Matrix (2017–2030)
6.7. Market Revenue, by Region (2017–2030)
Chapter 7. North America Market
7.1. Overview
7.2. Market Revenue, by Type (2017–2030)
7.3. Market Revenue, by Resin Type (2017–2030)
7.4. Market Revenue, by Technology (2017–2030)
7.5. Market Revenue, by Application (2017–2030)
7.6. Market Revenue, by Matrix (2017–2030)
7.7. Market Revenue, by Country (2017–2030)
Chapter 8. Europe Market
8.1. Overview
8.2. Market Revenue, by Type (2017–2030)
8.3. Market Revenue, by Resin Type (2017–2030)
8.4. Market Revenue, by Technology (2017–2030)
8.5. Market Revenue, by Application (2017–2030)
8.6. Market Revenue, by Matrix (2017–2030)
8.7. Market Revenue, by Country (2017–2030)
Chapter 9. APAC Market
9.1. Overview
9.2. Market Revenue, by Type (2017–2030)
9.3. Market Revenue, by Resin Type (2017–2030)
9.4. Market Revenue, by Technology (2017–2030)
9.5. Market Revenue, by Application (2017–2030)
9.6. Market Revenue, by Matrix (2017–2030)
9.7. Market Revenue, by Country (2017–2030)
Chapter 10. LATAM Market
10.1. Overview
10.2. Market Revenue, by Type (2017–2030)
10.3. Market Revenue, by Resin Type (2017–2030)
10.4. Market Revenue, by Technology (2017–2030)
10.5. Market Revenue, by Application (2017–2030)
10.6. Market Revenue, by Matrix (2017–2030)
10.7. Market Revenue, by Country (2017–2030)
Chapter 11. MEA Market
11.1. Overview
11.2. Market Revenue, by Type (2017–2030)
11.3. Market Revenue, by Resin Type (2017–2030)
11.4. Market Revenue, by Technology (2017–2030)
11.5. Market Revenue, by Application (2017–2030)
11.6. Market Revenue, by Matrix (2017–2030)
11.7. Market Revenue, by Country (2017–2030)
Chapter 12. U.S. Market
12.1. Overview
12.2. Market Revenue, by Type (2017–2030)
12.3. Market Revenue, by Resin Type (2017–2030)
12.4. Market Revenue, by Technology (2017–2030)
12.5. Market Revenue, by Application (2017–2030)
12.6. Market Revenue, by Matrix (2017–2030)
Chapter 13. Canada Market
13.1. Overview
13.2. Market Revenue, by Type (2017–2030)
13.3. Market Revenue, by Resin Type (2017–2030)
13.4. Market Revenue, by Technology (2017–2030)
13.5. Market Revenue, by Application (2017–2030)
13.6. Market Revenue, by Matrix (2017–2030)
Chapter 14. Germany Market
14.1. Overview
14.2. Market Revenue, by Type (2017–2030)
14.3. Market Revenue, by Resin Type (2017–2030)
14.4. Market Revenue, by Technology (2017–2030)
14.5. Market Revenue, by Application (2017–2030)
14.6. Market Revenue, by Matrix (2017–2030)
Chapter 15. France Market
15.1. Overview
15.2. Market Revenue, by Type (2017–2030)
15.3. Market Revenue, by Resin Type (2017–2030)
15.4. Market Revenue, by Technology (2017–2030)
15.5. Market Revenue, by Application (2017–2030)
15.6. Market Revenue, by Matrix (2017–2030)
Chapter 16. U.K. Market
16.1. Overview
16.2. Market Revenue, by Type (2017–2030)
16.3. Market Revenue, by Resin Type (2017–2030)
16.4. Market Revenue, by Technology (2017–2030)
16.5. Market Revenue, by Application (2017–2030)
16.6. Market Revenue, by Matrix (2017–2030)
Chapter 17. Italy Market
17.1. Overview
17.2. Market Revenue, by Type (2017–2030)
17.3. Market Revenue, by Resin Type (2017–2030)
17.4. Market Revenue, by Technology (2017–2030)
17.5. Market Revenue, by Application (2017–2030)
17.6. Market Revenue, by Matrix (2017–2030)
Chapter 18. Spain Market
18.1. Overview
18.2. Market Revenue, by Type (2017–2030)
18.3. Market Revenue, by Resin Type (2017–2030)
18.4. Market Revenue, by Technology (2017–2030)
18.5. Market Revenue, by Application (2017–2030)
18.6. Market Revenue, by Matrix (2017–2030)
Chapter 19. Japan Market
19.1. Overview
19.2. Market Revenue, by Type (2017–2030)
19.3. Market Revenue, by Resin Type (2017–2030)
19.4. Market Revenue, by Technology (2017–2030)
19.5. Market Revenue, by Application (2017–2030)
19.6. Market Revenue, by Matrix (2017–2030)
Chapter 20. China Market
20.1. Overview
20.2. Market Revenue, by Type (2017–2030)
20.3. Market Revenue, by Resin Type (2017–2030)
20.4. Market Revenue, by Technology (2017–2030)
20.5. Market Revenue, by Application (2017–2030)
20.6. Market Revenue, by Matrix (2017–2030)
Chapter 21. India Market
21.1. Overview
21.2. Market Revenue, by Type (2017–2030)
21.3. Market Revenue, by Resin Type (2017–2030)
21.4. Market Revenue, by Technology (2017–2030)
21.5. Market Revenue, by Application (2017–2030)
21.6. Market Revenue, by Matrix (2017–2030)
Chapter 22. Australia Market
22.1. Overview
22.2. Market Revenue, by Type (2017–2030)
22.3. Market Revenue, by Resin Type (2017–2030)
22.4. Market Revenue, by Technology (2017–2030)
22.5. Market Revenue, by Application (2017–2030)
22.6. Market Revenue, by Matrix (2017–2030)
Chapter 23. South Korea Market
23.1. Overview
23.2. Market Revenue, by Type (2017–2030)
23.3. Market Revenue, by Resin Type (2017–2030)
23.4. Market Revenue, by Technology (2017–2030)
23.5. Market Revenue, by Application (2017–2030)
23.6. Market Revenue, by Matrix (2017–2030)
Chapter 24. Brazil Market
24.1. Overview
24.2. Market Revenue, by Type (2017–2030)
24.3. Market Revenue, by Resin Type (2017–2030)
24.4. Market Revenue, by Technology (2017–2030)
24.5. Market Revenue, by Application (2017–2030)
24.6. Market Revenue, by Matrix (2017–2030)
Chapter 25. Mexico Market
25.1. Overview
25.2. Market Revenue, by Type (2017–2030)
25.3. Market Revenue, by Resin Type (2017–2030)
25.4. Market Revenue, by Technology (2017–2030)
25.5. Market Revenue, by Application (2017–2030)
25.6. Market Revenue, by Matrix (2017–2030)
Chapter 26. Saudi Arabia Market
26.1. Overview
26.2. Market Revenue, by Type (2017–2030)
26.3. Market Revenue, by Resin Type (2017–2030)
26.4. Market Revenue, by Technology (2017–2030)
26.5. Market Revenue, by Application (2017–2030)
26.6. Market Revenue, by Matrix (2017–2030)
Chapter 27. South Africa Market
27.1. Overview
27.2. Market Revenue, by Type (2017–2030)
27.3. Market Revenue, by Resin Type (2017–2030)
27.4. Market Revenue, by Technology (2017–2030)
27.5. Market Revenue, by Application (2017–2030)
27.6. Market Revenue, by Matrix (2017–2030)
Chapter 28. U.A.E. Market
28.1. Overview
28.2. Market Revenue, by Type (2017–2030)
28.3. Market Revenue, by Resin Type (2017–2030)
28.4. Market Revenue, by Technology (2017–2030)
28.5. Market Revenue, by Application (2017–2030)
28.6. Market Revenue, by Matrix (2017–2030)
Chapter 29. Competitive Landscape
29.1. List of Market Players and their Offerings
29.2. Competitive Benchmarking of Key Players
29.3. Product Benchmarking of Key Players
29.4. Recent Strategic Developments
Chapter 30. Company Profiles
30.1. DuPont de Nemours Inc.
30.1.1. Business overview
30.1.2. Product and service offerings
30.1.3. Key financial summary
30.2. FlexForm Technologies
30.2.1. Business overview
30.2.2. Product and service offerings
30.3. Tecnaro GmbH
30.3.1. Business overview
30.3.2. Product and service offerings
30.4. Fiberon LLC
30.4.1. Business overview
30.4.2. Product and service offerings
30.5. Procotex
30.5.1. Business overview
30.5.2. Product and service offerings
30.6. UPM-Kymmene Corporation
30.6.1. Business overview
30.6.2. Product and service offerings
30.6.3. Key financial summary
30.7. Trex Company Inc.
30.7.1. Business overview
30.7.2. Product and service offerings
30.7.3. Key financial summary
30.8. Bast Fibre Technologies Inc.
30.8.1. Business overview
30.8.2. Product and service offerings
30.9. MCG BioComposites LLC
30.9.1. Business overview
30.9.2. Product and service offerings
30.10. TTS Inc.
30.10.1. Business overview
30.10.2. Product and service offerings
30.11. Natural Fiber Welding Inc.
30.11.1. Business overview
30.11.2. Product and service offerings
30.12. JELU-WERK J. Ehrler GmbH & Co. KG
30.12.1. Business overview
30.12.2. Product and service offerings
30.13. Huntsman Corporation
30.13.1. Business overview
30.13.2. Product and service offerings
30.13.3. Key financial summary
30.14. Meshlin Composites ZRT
30.14.1. Business overview
30.14.2. Product and service offerings
30.15. Mitsubishi Chemical Group Corporation
30.15.1. Business overview
30.15.2. Product and service offerings
30.15.3. Key financial summary
Chapter 31. Appendix
31.1. Abbreviations
31.2. Sources and References
31.3. Related Reports
| ※参考情報 天然繊維複合材料は、天然由来の繊維とその他の材料を組み合わせた複合材料の一種です。これらの材料は、環境に優しい特性を持ち、再生可能な資源から作られるため、持続可能な製品として注目されています。天然繊維は、主に植物由来、動物由来、または鉱物由来のものがあり、天然素材を使用した複合材料は、軽量性、強度、耐久性に優れ、さまざまな用途で使用されています。 天然繊維の種類には、植物繊維と動物繊維があります。植物繊維には、コットン、リネン、ジュート、ヘンプなどが含まれます。これらは、織物や不織布として広く利用されています。動物繊維にはウールやシルクがあり、これらは通常、衣料品や高級品、ランプシェードなどの製品に用いられます。鉱物由来の繊維、例えばアスベストは、特定の用途では使用されていますが、健康への影響から現在はほとんど使用されていません。 天然繊維複合材料の代表的な用途には、自動車産業、建築、家電製品、衣料品、スポーツ用品などがあります。自動車産業では、内装材やドアトリム、座席などで利用されており、軽量化と環境負荷の低減に寄与しています。建築分野では、壁材や断熱材としての利用が広がっており、環境に配慮した建築資材としての役割を果たしています。家電製品やスポーツ用品においても、天然繊維を使用した製品が増えており、エコロジー意識の高まる中で注目されています。 天然繊維複合材料の製造に関連する技術には、繊維の処理技術や結合技術が含まれます。繊維の表面改質や化学処理を行うことで、特性を向上させることが可能です。例えば、繊維表面に樹脂を浸透させることによって、強度や耐水性を高めることができます。また、バインダーとして使用される樹脂の選択や配合によっても性能が大きく影響を受けます。 近年では、天然繊維複合材料に関する研究が進められており、新しい繊維やバインダーの開発が行われています。カーボンニュートラルやサステナビリティが求められる現在、これらの材料は持続可能な開発目標に合致し、代替品としての需要が高まっています。また、リサイクル技術や生分解性のバインダーを用いた研究も進められ、環境負荷を低減する努力が続けられています。 さらに、天然繊維複合材料の魅力の一つとして、加工の容易さがあります。成形や加工が比較的簡単であり、異なる地域の伝統工芸と組み合わせることで、独自のデザイン製品を生み出す可能性も持っています。これらの特性は、地域経済の活性化や新たな産業の創出にも寄与するでしょう。 今後の展望としては、天然繊維複合材料はますます多様化し、高機能化することが期待されます。特に、環境問題に対する意識が高まる中で、これらの材料の利用が拡大することが予想されます。企業や研究機関によるさらなる研究開発が進むことで、より高い性能を持つ天然繊維複合材料が登場する可能性があります。 持続可能な未来に向けて、天然繊維複合材料は重要な役割を果たすでしょう。これらの材料の利点を最大限に活かし、環境に優しい製品を展開することは、私たちの未来をより良くするための鍵となるでしょう。天然繊維複合材料の進化は、環境保護の観点からも大いに期待されており、今後も注視していく必要があります。 |
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