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市场调查报告书
商品编码
1351078
到 2030 年间位芳纶纤维的市场预测:按细分市场和地区分類的全球分析Meta-aramid Fiber Market Forecasts to 2030 - Global Analysis By Type (Staple, Paper, Filament, Para-Phenylene Terephthalamide, Poly Meta-Phenylene Isophthalamide and Other Types), Application, End User and By Geography |
根据Stratistics MRC的数据,2023年全球间位芳纶纤维市场规模为15.7亿美元,预计在预测期内将以12.6%的年复合成长率增长,到2030年达到36.1亿美元。
一种称为间位芳纶的纤维用于製造防弹装甲和其他安全相关产品。它由对位芳纶纤维製成,具有令人难以置信的强度,并且阻燃、耐热、耐磨。此外,轮胎、绳索和电缆也由这种纤维製成,也用作电绝缘体。
根据美国环保署 (EPA) 的数据,每辆小客车年度排放约 4.7 吨二氧化碳。因此,世界各国政府都在强调严格环境法规的必要性。
间位芳纶纤维(例如 Nomex)因其惊人的承受极热能力和阻燃性而不熔化或下垂而受到关注。这种品质使其成为消防和军事等工人安全至关重要的领域的重要材料。此外,随着各行业消防安全法规的日益严格,对阻燃材料的需求也不断增加。
製造间位芳纶纤维需要复杂的工艺,这增加了生产成本。这些步骤需要专门的机械、优质的原料和困难的化学过程。因此,间位芳纶纤维可能比传统纤维昂贵得多,这可能会阻碍其在成本是关键因素的领域的广泛使用。此外,生产商和最终用户必须仔细权衡间位芳纶纤维的优点及其高成本。
由于纤维工程技术的不断发展,间位芳纶纤维可以无缝地融入各种产品中。然而,由于 3D 编织、积层製造和先进多层编织结构的令人兴奋的进步,基于间位芳纶纤维的纺织品的发展正在加速。这一发展使得能够开发出极其复杂且有用的轻质材料,适用于广泛的工业用途。
扩大生产以满足间位芳纶纤维不断增长的需求可能很困难。复杂的製造程序和缺乏专业设备可能使製造商难以提高产能,从而可能导致供不应求和相关的价格波动。此外,这种供应链限制可能会阻碍间位芳纶纤维在各行业中得到更广泛的应用,并无法充分发挥其市场潜力。
由于封锁措施和经济不确定性,COVID-19大流行对间位芳纶纤维市场产生了重大影响,导致供应链中断、生产延误和需求波动。此外,依赖这种纤维的产业,如防护衣和汽车,面临原料采购困难和生产放缓。儘管对个人防护设备等某些产品的需求增加,但消费者支出减少以及全球经济的波动给其他细分市场带来了挑战。
预计短纤维领域在预测期内将占据最大份额。短纤维由对苯二甲酰对苯二胺 (PPTA) 等材料製成,以其卓越的强度、耐热性和阻燃性而闻名。由于能够提高产品的耐用性、热稳定性和安全性能,这些纤维广泛应用于各种行业,包括防护衣、工业设备和汽车零件。因此,短纤市场成为间位芳纶纤维在各产业的开发与应用的关键。
在预测期内,间位芳纶纤维市场将在航太和国防领域呈现最高的年复合成长率。间位芳纶纤维具有出色的耐热性、阻燃性和轻量化设计,对于提高航太和国防用途的安全性和性能至关重要。这些纤维用于各种国防设备、防护衣和飞机零件。此外,不断创新和严格安全法规的需求推动了该行业的成长,这推动了对间位芳纶纤维的需求不断增长。
欧洲地区由于其强大的工业基础、严格的安全法规以及对永续性的关注,占据了全球间位芳纶纤维市场的最大份额。德国、英国和英国等国家已经建立了汽车、航太和製造业,推动了对间位芳纶纤维等高性能材料的需求。这符合该地区对环保解决方案的重视。由于旨在改善职场安全和减少环境影响的欧洲立法和计划,该地区的市场正在扩大。
间位芳纶纤维市场年复合成长率最高的地区是亚太地区。该地区间位芳纶纤维市场的成长是由汽车、航太和工业用途等各行业对阻燃和耐热材料的需求不断增长所推动的。此外,这一增长的很大一部分是由中国、日本和韩国等国家贡献的。
According to Stratistics MRC, the Global Meta-aramid Fiber Market is accounted for $1.57 billion in 2023 and is expected to reach $3.61 billion by 2030 growing at a CAGR of 12.6% during the forecast period. A synthetic fiber called meta-aramid is used to make ballistic armour and other safety-related products. It is made out of Para-aramid fibers, which are incredibly strong, and flame, heat, and abrasion resistant. Additionally, tires, ropes, and cables are made with it, and it is employed as an electrical insulator.
According to the United States Environmental Protection Agency (EPA), a passenger vehicle emits around 4.7 metric tons of CO2 per year. Hence, governments worldwide are emphasizing on the need for stringent environmental regulations.
Meta-aramid fibers, like those made under the trade name Nomex, have drawn a lot of attention because of their extraordinary capacity to withstand extreme heat and flame resistance without melting or dripping. This quality makes them indispensable in fields like firefighting, the military, and settings where worker safety is of utmost importance. Additionally, as fire safety regulations tighten in various industries, there is a growing demand for materials with built-in flame resistance.
The complex manufacturing procedures needed to create meta-aramid fibers drive up production costs. These procedures require specialized machinery, premium raw materials, and difficult chemical processes. Because of this, meta-aramid fibers can be significantly more expensive than conventional fibers, which may prevent them from being widely used in sectors where cost is an important factor. Moreover, the advantages of meta-aramid fibers must be carefully weighed against their higher costs by producers and end users.
Meta-aramid fibers are being seamlessly incorporated into a variety of products thanks to evolving textile engineering techniques. However, the development of meta-aramid-based textiles is being accelerated by exciting advancements in 3D weaving, additive manufacturing, and advanced multilayer fabric structures. This development enables the development of incredibly complex, useful, and light materials that are suitable for a wide range of industrial applications.
Growing production of meta-aramid fibers to meet rising demand could present difficulties. Due to complex manufacturing procedures and the scarcity of specialized equipment, it may be difficult for manufacturers to ramp up production capacity, which could result in supply shortages and subsequent price changes. Furthermore, these limitations on the supply chain may prevent meta-aramid fibers from being used more widely across a range of industries and from reaching their full market potential.
Due to lockdown measures and economic uncertainty, the COVID-19 pandemic has had a significant impact on the meta-aramid fiber market, causing supply chains to break down, and production to be delayed, and demand to fluctuate. Moreover, Industries that depended on these fibers, like the protective clothing and automotive sectors, encountered difficulties locating materials, which caused production to slacken. While demand for some products, such as personal protective equipment, increased, reduced consumer spending and unstable global economies presented difficulties for other market segments.
During the forecast period, the staple fiber segment is anticipated to hold the largest share. Staple fibers are renowned for their exceptional strength, heat resistance, and flame-retardant properties because they are made from substances like Para-Phenylene Terephthalamide (PPTA). Due to their capacity to improve product durability, thermal stability, and safety performance, these fibers find extensive use in a variety of industries, including protective clothing, industrial equipment, and automotive components. As a result, the staple fiber market is essential to the development and application of meta-aramid fibers in a variety of industries.
During the forecast period, the market for meta-aramid fibers shows the highest CAGR in the Aerospace & Defense segment. Meta-aramid fibers are indispensable for boosting safety and performance in aerospace and defense applications because of their exceptional heat resistance, flame-retardant qualities, and lightweight design. These fibers are used in various defense tools, protective clothing, and aircraft parts. Moreover, the industry's growth is fueled by the constant need for innovation and strict safety regulations, which together fuel the rising demand for meta-aramid fibers.
European region commands the largest share of the global meta-aramid fiber market, due to the strong industrial base, strict safety regulations, and focus on sustainability. The automotive, aerospace, and manufacturing industries in nations like Germany, France, and the United Kingdom are well-established and fuel the demand for high-performance materials like meta-aramid fibers. This aligns with the region's emphasis on eco-friendly solutions. The region's market is expanding as a result of European laws and programs that are designed to improve workplace safety and lessen environmental impact.
Asia-Pacific is expected to have the highest CAGR in the market for meta-aramid fibers. The growth of the meta-aramid fiber market in this region was being driven by the rising demand for flame- and heat-resistant materials in a variety of industries, including automotive, aerospace, and industrial applications. Moreover, a large part of this growth was contributed by nations like China, Japan, and South Korea because of their developing industrial sectors and technological advancements.
Some of the key players in Meta-aramid Fiber Market include: DuPont de Nemours, Inc., Jaya Shree Textiles, Grasim Industries Limited, SRO Aramid, Aditya Birla Group, Daicel Chemical Industries, Teijin Ltd, X-FIPER New Material Co., Ltd , Crescent Textile Mills Ltd, Barnhardt Manufacturing Company, Kermel, Asahi Kasei Fibers Corporation, Shanghai J&S New Materials Co., Ltd., Aramid HPM, LLC, Toray Industries, Inc., Huvis Corporation, Yantai Tayho Advanced Materials Co., Ltd. and Celanese Corporation
In May 2023, Toray Industries, Inc., announced today that it has signed a four-year global partnership agreement with star Japanese sprinter Abdul Hakim Sani Brown. Under this arrangement, he will receive support from Toray and appear in its advertisements while helping develop materials and taking part in its social contribution initiatives.
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In February 2023, Celanese Corporation, a global specialty materials and chemical company, today announced an agreement with Johns Hopkins University Department of Ophthalmology to collaborate on a study of sustained drug delivery to the suprachoroidal space in the eye.