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市場調査レポート
商品コード
1736546
複合材料用不織布の世界市場規模:製品タイプ別、材料タイプ別、最終用途産業別、地域範囲別および予測Global Non-Woven Textile For Composites Market Size By Product Type (Non-Crimp Textiles, CSM/CFM), By Material Type (Glass Fiber, Carbon Fiber), By End-Use Industry (Wind Energy, Transportation), By Geographic Scope And Forecast |
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複合材料用不織布の世界市場規模:製品タイプ別、材料タイプ別、最終用途産業別、地域範囲別および予測 |
出版日: 2025年05月05日
発行: Verified Market Research
ページ情報: 英文
納期: 2~3営業日
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複合材料用不織布市場規模は、2024年に30億5,000万米ドルと評価され、2026~2032年にかけてCAGR 5.70%で成長し、2032年には47億6,000万米ドルに達すると予測されています。
輸送、風力、エネルギーなどのさまざまな最終用途産業における複合材料用不織布の幅広い用途が、複合材料用不織布市場の成長を後押ししています。また、より良い剥離性やドレープ性などの複合材料用不織布テキスタイルの利点が、複合材料用不織布テキスタイル市場の成長を促進しています。複合材料用不織布テキスタイルの世界市場レポートは、総合的な市場評価を記載しています。主要セグメント、動向、市場促進要因、抑制要因、競合情勢、市場で重要な役割を果たす要因などを包括的に分析しています。
複合材料用不織布の世界市場定義
複合材料用不織布テキスタイルは、一般的に繊維質材料からの単一連続プロセスで構成されています。不織布は、機械的、化学的、物理的、熱的、または溶剤処理によって切断された繊維を結合することによって、長い間製造されてきました。不織布構造は、繊維方向に高い強度と安定性を持ち、繊維に垂直な方向ではその逆であるなど、繊維と比較してユニークな特性を持っています。不織布のこれらの特性は、不織布製品が安定した状態を維持し、使用時に分解するように調整するのに役立ちます。今日では、トイレットペーパー、ティーバッグ、真空パック、使い捨てタオルなどの不織布製品が日常生活で使用されています。不織布はまた、サージカルマスク、ガソリンフィルター、キャップなどの医療技術用途でも見られます。不織布繊維の強い構造と高い安定性は、複合材料産業でより効率的に利用できます。
繊維強化複合材料(FRC)は、最も一般的に利用されている建築用材料です。また、自動車産業でも広く使用されています。不織布は、パンメルト法、スパンレース法、熱接着法、化学接着法、機械的方法など、さまざまなプロセスを経て製造されます。機械的方法が最も一般的な製造方法です。不織布は、人工繊維と天然繊維の両方から構成されていますが、人工繊維からの不織布は、ガラス繊維や炭素繊維よりも高い市場からの需要があります。天然繊維からなる不織布は、自動車産業で音波を吸収し、遮音性を与えるために使用されています。これらの繊維は耐久性があり、微生物による攻撃や風化に強いため、複合用途に魅力的です。
複合材料用不織布の世界市場概要
不織布テキスタイルは、紡績を必要とせず、プロセスフローが短いという特徴があるため、多くの伝統的材料に代わるダイナミックで付加価値の高い材料であり、複合材料用不織布テキスタイルの世界市場の成長を後押ししています。世界の不織布テキスタイルは、低コストで高い歩留まりを実現するため、メーカーは複合材料用不織布テキスタイルにより注力しています。さらに、広い用途があり、原料の多くのソースが世界中で利用可能であることも、複合材料用不織布の世界市場が成長するもう一つの要因と考えられています。さらに、不織布世界テキスタイルは、通気濾過、布の方向なしで弾性回復、風力エネルギー、輸送、海洋、建設、航空宇宙、防衛などの様々な最終用途産業で利用できるようにする吸収性断熱防水など、他のものより多くの利点を記載しています。したがって、最終用途産業からの需要が複合材料用不織布市場の成長を後押ししています。
高いレベルの均一性、高い引裂強度、引張強度、複合材料を形成する能力など、複合材料用不織布の先進的性能が複合材料用不織布市場の成長を加速させています。しかし、従来型繊維よりも耐久性が劣る、繊維が裂けやすいといった複合材料用不織布のいくつかの欠点が、複合材料用不織布市場の成長を制限すると予想されています。一方、繊維の分断を防ぐための生産方法の改善は、今後数年間で大きなビジネス機会を生む可能性が高いです。
Non-Woven Textile For Composites Market size was valued at USD 3.05 Billion in 2024 and is projected to reach USD 4.76 Billion by 2032, growing at a CAGR of 5.70% from 2026 to 2032.
Wide applications of non-woven textiles for composites in different end-use industries such as transportation, wind, and energy are fueling the growth of the Non-Woven Textile For Composites Market. Also, the advantages of non-woven textiles for composites, such as better delamination and drapability are driving the growth of the Non-Woven Textile For Composites Market. The Global Non-Woven Textile For Composites Market report provides a holistic market evaluation. The report offers a comprehensive analysis of key segments, trends, drivers, restraints, competitive landscape, and factors that play a substantial role in the market.
Global Non-Woven Textile For Composites Market Definition
Nonwoven textiles for composites are generally made-up of a single-continuous process from fibrous materials. Non-Woven Textile has been produced for a long time by binding cut fibers through mechanical, chemical, physical, heat, or solvent treatment. The nonwoven structure has unique properties compared to their textile which includes high strength and stability in fiber direction and vice-versa in a direction perpendicular to the fiber These properties of nonwoven fabrics are helpful to tailor the nonwoven products to stay stable and break down on usage. Nowadays, non-woven textile products such as toilet paper, tea bags, vacuum bags, and disposable towels are used in everyday life. Nonwovens are also seen in medical and technical applications such as surgical masks, gasoline filters, and caps. The strong structure and high stability of nonwoven fibers could be more efficiently utilized in the composite industry.
The fiber-reinforced composites (FRC) are the most commonly available material for buildings. Also, it is widely used in the automotive industry. Nonwoven fabrics are produced from various processes such as punmelt, spunlaced, thermal bonding, chemical bonding, mechanical processes, etc. Mechanical methods are the most common method for production. Nonwovens are made up of both manmade fibers and natural fibers, but nonwovens from manmade fibers have higher demand from the market than glass fibers and carbon fibers. Nonwoven fibers made up of natural fibers are used in the automotive industry to absorb sound waves and to give acoustic insulation. These fibers are durable, resistant to microbial attacks and weathering, and hence attractive in composite applications.
Global Non-Woven Textile For Composites Market Overview
Non-woven textile is a dynamic, value-added alternative to many traditional materials, as it doesn't require any kind of spinning and has characteristics of short process flow which is fueling the growth of the Global Non-Woven Textile For Composites Market. Global Non-Woven Textile gives high yield with low cost thus; manufacturers are focusing more on Non-Woven Textile for composites. Moreover, there is wide use and many sources of raw materials are available across the globe which is considered another factor for the growing Global Non-Woven Textile For Composites Market. In addition, non-woven Global Textile provides many advantages over others such as aeration filtration, elastic recovery without cloth direction, absorbent insulation waterproof making them available for various end-use industries such as Wind Energy, Transportation, Marine, Construction, Aerospace, and Defense. Hence demands from end-use industries are boosting the growth of the Non-Woven Textile For Composites Market.
A high level of uniformity, high tear, and tensile strength, and ability to form composites in advanced performance of Non-Woven Textile for Composites is accelerating the growth of the Non-Woven Textile For Composites Market. However, some disadvantages of the non-woven textile for composites such as less durability than traditional textile and its ease to split fibers are anticipated to restrict the growth of the Non-Woven Textile For Composites Market. On the other hand, an improvement in the production method to prevent fragmentation is likely to generate huge opportunities in the coming years.
The Global Non-Woven Textile For Composites Market is segmented on the basis of Product Type, Material Type, End-Use Industry, And Geography.
Based on Product Type, The market is classified into Non-Crimp Textiles and CSM/CFM. The Non-Crimp Textiles segment is expected to hold the largest share of the market. The growth of the segment is attributed to increasing use in wind energy, transportation and the aerospace industry.
Based on Material Type, The market is classified into Glass Fiber, Carbon Fiber, Natural Fiber, and Others. The majority of shares in the Non-Woven Textile For Composites Market are held by Glass Fiber due to the most common reinforcement in most end-use industries to replace heavier metal parts.
Based on End-Use Industry, The market is classified into Wind Energy, Transportation, Marine, Construction, Aerospace and Defense, and Others. Among this entire segmentation, the Wind Energy segment is expected to hold the largest share of the market over the forecast period due to the increasing use of Wind Energy. The Aerospace and Defense segment is expected to grow at the fastest pace due to the growing demand for lightweight materials and the replacement of woven textiles.
The "Global Non-Woven Textile For Composites Market" study report will provide a valuable insight with an emphasis on the global market including some of the major players such as FlexForm, Owens Corning, Scott & Fyfe, SGL Group, Sigmatex, Hexcel Corporation, Jushi Group, Saertex, Selcom, Toho Tenax.
Our market analysis also entails a section solely dedicated to such major players wherein our analysts provide an insight into the financial statements of all the major players, along with its product benchmarking and SWOT analysis. The competitive landscape section also includes key development strategies, market share, and market ranking analysis of the above-mentioned players globally.