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市场调查报告书
商品编码
1438242
2030 年 3D 纺织品市场预测:按产品类型、纤维类型、最终用户和地区分類的全球分析3D Woven Fabrics Market Forecasts to 2030 - Global Analysis By Product Type, Fiber Type, End User and by Geography |
根据 Stratistics MRC 的数据,2023 年全球三维纺织品市场规模为 1.4033 亿美元,预计到 2030 年将达到 3.99 亿美元,预测期内复合年增长率为 16.1%。
三维纺织品是一种偏离传统织造方法的前沿原创纺织品。与通常以二维方式生产的传统纺织品相比,三维纺织品由于3D结构而提供了更高的结构完整性和多功能性。此外,多根线在经纬方向上交织,形成深层而复杂的纤维网。由于其独特的结构,这种织物具有出色的强度、耐用性和特殊的机械性能,使其非常适合用于汽车和航太工业等高性能行业。
据国际纺织品工业联合会(ITMF)称,三维编织已成为纺织业的一项变革性技术,它彻底改变了传统的编织方法,并为各个领域的性能改进和定製材料解决方案提供了新的机会。
对耐用和轻质材料的需求
对高强度、轻质材料的需求推动了三维纺织品的使用不断增长,特别是在汽车和航太行业。这些织物具有出色的强度重量比,满足了对有助于提高燃油效率、降低排放气体和提高整体性能的材料的需求。此外,为了满足日益严格的效率标准,三维纺织品已成为业界实现这些目标的明显领导者。
复杂的製造工艺
製造流程的复杂性是3D纺织品市场面临的主要障碍之一。此外,三维编织比较复杂,需要专门的工具和劳力,这增加了生产成本。这可能使生产商难以增加产量并具有成本竞争力,特别是与传统的二维纺织技术相比。
混合复合材料的开发
一个有前途的机会是将三维纺织品与复合材料和奈米材料等其他先进材料结合。透过将 3D 纺织品的特殊性能与其他高性能材料融合,製造商可以製造出具有改进功能(例如电气性能、耐磨性和导热性)的混合复合材料。此外,这也为电子、建筑和能源储存等行业的使用创造了机会。
市场饱和,竞争激烈
随着更多製造商进入市场,竞争可能会加剧。大量竞争对手造成的市场饱和会对价格和报酬率带来压力。此外,为了在日益拥挤的市场中获得竞争优势,公司必须透过创新、卓越的产品品质和策略联盟来区分自己,以减轻这种威胁。
3D纺织品市场受到了COVID-19大流行的严重影响,整体影响了製造流程、供应链和消费者需求。企业停工、旅行禁令和劳动力短缺导致生产和运输延误,影响了货物的快速交付。航太、汽车和建筑等三维纺织品的主要用户业务放缓,需求减少。此外,经济不确定性持续导致支出谨慎,这也影响了三维纺织品等尖端材料的投资决策。
预计固态部分在预测期内将是最大的
由于其在各行业的广泛应用,三维纺织品市场的固态部分占据了最大的市场占有率。实心三维织物具有緻密的连续结构,可提高强度、耐用性和承载能力。这些材料广泛应用于结构完整性至关重要的国防、汽车和航太工业。此外,坚韧的三维织物是需要坚固而轻质材料的应用的首选,例如高性能汽车和飞机零件。
预计航空业在预测期内复合年增长率最高。
由于航太工业对轻质和高强度材料的需求不断增加,三维纺织品市场的飞机部分预计将以最高的复合年增长率成长。在飞机製造中,3D 纺织品对于提高结构完整性、减轻重量、提高整体性能和燃油效率至关重要。这些纺织品用于关键部件,如发动机零件、结构元件和飞机内饰。此外,航空业对创新、燃油效率和永续性的持续追求正在推动 3D 纺织品的普及,使航空业成为市场扩张的关键驱动力。
由于其先进的製造能力,特别是在建筑、汽车和航太行业,欧洲预计将占据三维纺织品市场的最大份额。在航太领域,三维纺织品因其轻质、高强的特性被广泛应用于飞机零件,主要在欧洲国家。此外,欧洲汽车产业也专注于提高车辆性能和燃油效率的尖端材料,进一步增加了对 3D 纺织品的需求。它也广泛应用于该地区的建筑和施工领域,用于需要耐用性和结构加固的应用。
三维纺织品市场预计将以亚太地区最高的复合年增长率成长。这一增长的推动因素是该地区不断发展的建筑、汽车和航太工业,以及由于其卓越的机械品质而越来越多地使用三维纺织品。航太工业对轻质、高强度材料的需求迅速增加,刺激了中国、日本、印度等国家三维纺织品的快速发展。此外,该地区不断发展的汽车工业以及对永续性和燃油效率的关注正在推动这些尖端纺织品的使用。
According to Stratistics MRC, the Global 3D Woven Fabrics Market is accounted for $140.33 million in 2023 and is expected to reach $399.0 million by 2030 growing at a CAGR of 16.1% during the forecast period. A cutting-edge and inventive class of textiles that depart from conventional weaving methods are 3D-woven fabrics. 3D-woven fabrics offer improved structural integrity and versatility due to their three-dimensional structure, in contrast to conventional fabrics that are usually produced in two dimensions. Furthermore, multiple yarn layers are interlaced in the warp and weft directions to create a deep, intricate network of fibers used to create these fabrics. Due to its distinctive construction, the fabric has exceptional strength, durability, and particular mechanical properties, which makes it perfect for use in high-performance industries like automotive and aerospace.
According to the International Textile Manufacturers Federation (ITMF), 3D woven fabrics have emerged as a transformative technology in the textile industry, revolutionizing traditional weaving methods and unlocking new possibilities for enhanced performance and tailored material solutions across various sectors.
Demand for strong and lightweight materials
The growing use of 3D-woven fabrics is driven by the need for strong, lightweight materials, especially in the automotive and aerospace industries. These fabrics address the need for materials that contribute to fuel efficiency, lower emissions, and improved overall performance with their exceptional strength-to-weight ratio. Moreover, in the pursuit of meeting increasingly demanding efficiency standards, 3D-woven fabrics are a clear front-runner in helping industries achieves these goals.
Intricate production procedures
The intricacy of the manufacturing processes is one of the significant obstacles that the market for 3D-woven fabrics is facing. Additionally, three-dimensional weaving is complex and requires specialized tools and labor, which raises the cost of production. Due to this, producers might have trouble increasing output and becoming cost-competitive, particularly when compared to more conventional two-dimensional weaving techniques.
Developments in hybrid composites
A promising opportunity is the integration of 3D-woven fabrics with other advanced materials, like composites and nano materials. Manufacturers are able to produce hybrid composites with improved functionalities, like improved electrical properties, resistance to wear, and thermal conductivity, by fusing the special qualities of 3D-woven fabrics with other high-performance materials. Moreover, this creates opportunities for use in industries such as electronics, building, and energy storage.
Market saturation and fierce competition
There's a chance that as more manufacturers enter the market, competition will get fiercer. Due to the market saturation brought on by this flood of rivals, prices and profit margins may be under pressure. Furthermore, in order to gain a competitive edge in an increasingly crowded market, businesses must set themselves apart through innovation, superior product quality, and strategic alliances in order to lessen this threat.
The market for 3D-woven fabrics has been severely damaged by the COVID-19 pandemic, which has affected manufacturing procedures, supply chains, and consumer demand in general. Lockdowns, travel bans, and labor shortages have caused production and shipment delays, which have impacted the prompt delivery of goods. Key users of 3D woven fabrics, including the aerospace, automotive, and construction industries, saw a slowdown in business, which decreased demand. Additionally, cautious spending has been brought on by economic uncertainties, which has an effect on decisions to invest in cutting-edge materials like 3D woven fabrics.
The Solid segment is expected to be the largest during the forecast period
Due to the extensive use in a variety of industries, the solid segment of the 3D woven fabrics market has the largest market share. Solid 3D-woven fabrics have a dense, continuous structure that improves their strength, endurance, and capacity to support loads. These materials are widely used in the defense, automotive, and aerospace industries, where structural integrity is crucial. Furthermore, solid 3D-woven fabrics are preferred for uses requiring strong and light materials, like high-performance automotive parts and aircraft components.
The Aircraft segment is expected to have the highest CAGR during the forecast period
Due to the growing need in the aerospace industry for lightweight and high-strength materials, the aircraft segment of the 3D woven fabrics market is expected to grow at the highest CAGR. In the production of aircraft, 3D-woven fabrics are essential because they provide increased structural integrity and decreased weight, which improves overall performance and fuel efficiency. These textiles are used in vital parts like engine parts, structural elements, and the interiors of aircraft. Moreover, the aviation industry's persistent pursuit of innovation, fuel efficiency, and sustainability is driving the uptake of 3D-woven fabrics, thereby positioning the aircraft segment as a critical catalyst for market expansion.
Europe is expected to command the largest share of the market for 3D-woven fabrics due to its advanced manufacturing capabilities, especially in the construction, automotive, and aerospace industries. The aerospace industry, where 3D woven fabrics are widely used in aircraft components due to their lightweight and high-strength properties, is heavily represented by European countries. Additionally, the European automotive industry also values cutting-edge materials that improve vehicle performance and fuel economy, which raises the need for 3D-woven fabrics even more. These fabrics are also widely used in the building and construction sector in the region for applications that call for durability and structural reinforcement.
The market for 3D-woven fabrics is expected to grow at the highest CAGR in the Asia-Pacific region. The region's developing construction, automotive, and aerospace industries-all of which are utilizing 3D-woven fabrics more frequently due to their superior mechanical qualities-are driving this growth. The aerospace industry is experiencing a sharp increase in demand for lightweight, high-strength materials, which are fueling the rapid development of 3D-woven fabrics in nations like China, Japan, and India. Furthermore, the region's expanding automobile industry, in addition to an emphasis on sustainability and fuel economy, is what propels the use of these cutting-edge textiles.
Key players in the market
Some of the key players in 3D Woven Fabrics market include Bally Ribbon Mills, Oxeon AB (TeXtreme), Composites Evolution, Solvay, Chomarat Group, Sigmatex, Tex Tech Industries, Saertex, Porcher Industries and SGL Carbon.
In November 2023, Polymer and composite materials producer Solvay has signed a long-term agreement for the supply of Solef polyvinylidene fluoride (PVDF) to Zotefoams, the world's largest manufacturer of lightweight cross-linked polyolefin block foams and a specialist in innovative technical foams. Solef will be used to produce Zotefoams' Zotek F high-performance closed-cell, crosslinked aerospace foam range.
In April 2023, Porcher Industries strengthens its partnership with Terre de Lin, the global leader in flax fiber production, based in Normandy (France). This non-exclusive technical and commercial cooperation aims to develop sales of flax fiber based reinforcements for thermoplastic composites implemented by thermocompression.
In March 2023, Tex-Tech Industries, a leading manufacturer of specialty textiles, will create 49 new jobs in Forsyth County, Gov. Roy Cooper announced today. The company will invest more than $24.8 million to build a new manufacturing center in Winston-Salem. North Carolina's leadership in textile manufacturing helps companies like Tex-Tech stay on the cutting edge of innovation, Cooper said in a release from his office.