市场调查报告书
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再生碳纤维(RCF) 市场规模、份额和趋势分析报告:2023-2030 年按应用、地区和细分市场分類的趋势Recycled Carbon Fiber Market Size, Share & Trends Analysis Report By Application (Automotive, Aerospace & Defense, Consumer Goods, Sporting Goods), By Region, And Segment Forecasts, 2023 - 2030 |
Grand View Research, Inc.最新报告显示,预计到2030年,全球再生碳纤维(RCF)市场规模将达到3.982亿美元,2023年至2030年年复合成长率为10.9%。
由于收入增加、都市化和交通基础设施改善,亚太地区的汽车持有正在显着增加。因此,为了提高汽车性能和燃油效率,对再生碳纤维(RCF) 等轻量材料的需求不断增加。再生碳纤维(RCF) 材料可经过设计以满足特定的性能要求,为汽车提供客製化选项。这种弹性使製造商能够根据当地市场的偏好设计更轻、更省油的汽车。
此外,随着电动车(EV) 需求的持续成长,汽车正在寻找最大限度提高电池效率和续航里程的方法。在电动车中使用这些纤维可以减轻车辆重量并延长电池寿命。使用这种纤维的另一个优点是它对环境的正面影响。透过减少垃圾垃圾掩埋场的废弃物和减少对原生纤维生产的需求,再生纤维有助于节约资源并减少二氧化碳排放。此外,再加工的碳纤维被认为更环保。燃油效率是亚太地区汽车关注的一个主要问题,该地区城市人口稠密,交通拥堵很常见。
碳纤维的轻质特性使其成为一种有价值的材料,可在不影响安全性或性能的情况下减轻车辆重量。此外,亚太地区许多国家实施了严格的排放气体法规,以污染防治和减少温室气体排放。预计这将进一步增加该地区的需求。该产品还具有与用于製造航太和国防工业复合材料的原始复合材料相似的品质。这些纤维为航太和国防零件提供了特殊的优势,包括在恶劣环境和高温下的耐用性以及耐磨性和耐腐蚀性。这种纤维在飞机上用来取代铝以提高燃油效率。较轻的材料和结构使军用飞机比民航机能够携带更多的燃料和负载容量。
包括美国和加拿大在内的北美地区实施了严格的环境法规,旨在减少二氧化碳排放和应对气候变迁。航太致力于减轻飞机的重量,以提高燃油效率并降低营运成本。更轻的飞机使用更少的燃料,减少温室气体排放,并提高整体性能。再生碳纤维(RCF) 凭藉其卓越的强度重量比,正在帮助飞机製造商实现这些减重目标。此外,北美航太公司正积极投资研发,以推进该产品的使用。製造商、研究机构和材料供应商之间的合作正在推动回收技术、材料性能和新航太应用的开发方面的创新。
The global recycled carbon fiber market size is expected to reach USD 398.2 million by 2030, with a CAGR of 10.9% from 2023 to 2030, according to a new report by Grand View Research, Inc.. The Asia Pacific region has experienced a substantial increase in vehicle ownership due to rising incomes, urbanization, and improved transportation infrastructure. This has resulted in a growing demand for lightweight materials, such as recycled carbon fiber, to enhance vehicle performance and fuel efficiency. Recycled carbon fiber materials can be engineered to meet specific performance requirements, providing automobile manufacturers with customization options. This flexibility allows manufacturers to design lightweight and fuel-efficient vehicles tailored to local market preferences.
Moreover, as the demand for electric vehicles (EVs) continues to grow, automakers are focused on ways to maximize battery efficiency and range. These fibers are used in EVs to reduce vehicle weight and extend battery life, which is crucial for the widespread adoption of electric mobility. Another significant advantage of using this is their positive environmental impact. By reducing waste from landfills and reducing the need for virgin fiber production, recycled fibers help conserve resources and reduce CO2 emissions. Moreover, reprocessed carbon fiber is considered more environmentally friendly. Fuel efficiency is a major concern for automotive manufacturers in the Asia Pacific region, where densely populated cities and congested traffic conditions are common.
The material's lightweight properties make it a valuable material for reducing vehicle weight without compromising safety or performance. Also, many countries in the Asia Pacific region have implemented stringent emissions regulations to combat air pollution and reduce greenhouse gas emissions. This is further expected to drive the demand in the region. The product also possesses qualities similar to virgin composite, which is used to make composites used in the aerospace and defense industries. These fibers provide special benefits to aerospace and defense components, such as durability in extreme environments and at high temperatures, abrasion resistance, and corrosion resistance. To enhance fuel economy, this fiber has replaced aluminum in aircraft. Because of lightweight materials and structures, military aircraft can carry more fuel and payload than commercial aircraft.
North America, including the U.S. and Canada, has implemented strict environmental regulations aimed at reducing CO2 emissions and addressing climate change. The aerospace industry is heavily focused on reducing aircraft weight to enhance fuel economy and lower operational expenses. Lighter planes utilize less fuel, release less greenhouse emissions, and perform better overall. With its remarkable strength-to-weight ratio, recycled carbon fiber helps aircraft makers meet these light-weighting goals. Furthermore, aerospace companies in North America are actively investing in research and development to advance the use of the product. Collaborations between manufacturers, research institutions, and material suppliers have led to innovations in recycling technologies, material performance, and the development of new aerospace applications.