市场调查报告书
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先进复合材料市场:按纤维、树脂、製造工艺和最终用途行业划分 - 2024-2030 年全球预测Advanced Composites Market by Fiber, Resin, Manufacturing Process, End-use Industry - Global Forecast 2024-2030 |
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预计2023年先进复合材料市场规模为183.5亿美元,2024年达201.6亿美元,2030年预估达359亿美元,复合年增长率为10.06%。
先进复合材料是具有优异机械性能的高性能材料,例如高强度重量比、刚性、耐化学性和耐温度变化。先进复合材料由基体和增强体组成,其中增强体为纤维或颗粒形式。材料科学的不断创新导致开发出更耐用、更有弹性的先进复合材料,正在推动市场成长。飞机生产率的提高以及民用和军用航太应用中复合材料的日益采用也推动了先进复合材料的采用。持续降低成本和优化流程的努力正在推动各行业的广泛采用,并为市场成长做出积极贡献。然而,高昂的製造成本和原材料成本是市场成长的主要限制因素。此外,回收复合材料的复杂性带来了环境和经济挑战。先进复合材料回收製程的创新带来了巨大的商机,探索生物基树脂以提高永续性也是如此。此外,运输领域对轻量材料的需求不断增长,为市场扩张带来了持续的机会。
主要市场统计 | |
---|---|
基准年[2023] | 183.5亿美元 |
预计年份 [2024] | 201.6亿美元 |
预测年份 [2030] | 359亿美元 |
复合年增长率(%) | 10.06% |
纺织品:汽车产业更多采用碳纤维复合材料
酰胺纤维复合材料以其出色的强度重量比和弹性而闻名,使其成为需要耐用性和轻质特性的应用的理想选择。酰胺纤维复合材料主要用于航太、军事和汽车领域,以及防弹防护设备和高性能运动器材的生产。对酰胺纤维复合材料的需求源自于其卓越的拉伸强度、耐高温性以及在不影响结构完整性的情况下吸收衝击的能力。碳纤维复合材料具有优异的刚性、高拉伸强度、重量轻和耐化学腐蚀等特性。碳纤维复合材料用于体育、汽车、航太和风力发电等产业。对碳纤维复合材料的需求主要是由汽车行业向电动汽车(EV)的转变以及航太行业通过减轻重量来追求燃油效率所推动的。 S-玻璃纤维复合材料以其比传统玻璃纤维(E-玻璃)更高的强度而闻名,主要用于航太、国防和体育用品行业,具有更高的拉伸强度、最小的重量、耐环境时使用伤害很重要。
製造工艺:各种製造工艺的不断进步
自动铺带 (ATL) 和自动纤维铺放 (AFP) 方法用于将纺织品等复合材料铺设到模具中,因其在製造复杂结构时的准确性和效率而受到青睐。压缩成型涉及将纤维增强材料放入模腔中并施加热量和压力使其成型。压缩成型是首选,因为它可以以低成本製造具有复杂型态的高强度零件。在缠绕成型中,连续纤维束在张力下缠绕到旋转心轴上。绕线法非常适合製造具有高强度重量比的零件,例如管道和储罐。手工积层和积层法是用手将纤维增强材料放入模具中并涂布树脂的过程。射出成型涉及将熔融热塑性复合材料注射到模具型腔中。高效生产具有复杂型态和出色表面光洁度的零件。拉挤成型涉及将纤维拉过树脂浴和加热模具以使其硬化。截面可生产具有恆定横截面的连续型材,并以其高机械性能而闻名。真空辅助树脂转注成形的独特之处在于它能够生产具有高品质表面光洁度的大型复杂零件,而不会产生高昂的成本。
区域洞察
在美洲地区,美国由于在研发方面的大量投资,在先进复合材料的创新和应用方面处于领先地位。航太和国防工业是先进复合材料的主要消费者,而汽车工业正在美洲迅速采用复合材料来製造轻质、节能的车辆。然而,欧盟 (EU) 一直处于复合材料领域监管标准和永续性的前沿,促进回收技术的创新和绿色复合材料的开发。在中东,先进复合材料的使用正在迅速增加,特别是在建筑和基础设施计划中,因为它们的耐用性和承受恶劣环境条件的能力。非洲的先进复合材料市场正处于起步阶段,汽车、航太和可再生能源领域预计将出现成长。在亚太地区,中国工业的快速成长使其成为先进复合材料的消费和生产热点,风力发电和交通领域取得了重大进展。此外,由于航太、国防和汽车行业的成长,印度和日本正在成为先进复合材料的重要市场。
FPNV定位矩阵
FPNV定位矩阵对于评估先进复合材料市场至关重要。我们检视与业务策略和产品满意度相关的关键指标,以对供应商进行全面评估。这种深入的分析使用户能够根据自己的要求做出明智的决策。根据评估,供应商被分为四个成功程度不同的像限。最前线 (F)、探路者 (P)、利基 (N) 和重要 (V)。
市场占有率分析
市场占有率分析是一种综合工具,可以对先进复合材料市场中供应商的现状进行深入而深入的研究。全面比较和分析供应商在整体收益、基本客群和其他关键指标方面的贡献,以便更好地了解公司的绩效及其在争夺市场占有率时面临的挑战。此外,该分析还提供了对该细分市场竞争特征的宝贵见解,包括在研究基准年观察到的累积、分散主导地位和合併特征等因素。这种详细程度的提高使供应商能够做出更明智的决策并制定有效的策略,从而在市场上获得竞争优势。
1. 市场渗透率:提供有关主要企业所服务的市场的全面资讯。
2. 市场开拓:我们深入研究利润丰厚的新兴市场,并分析其在成熟细分市场的渗透率。
3. 市场多元化:包括新产品发布、开拓地区、最新发展和投资的详细资讯。
4. 竞争评估和情报:对主要企业的市场占有率、策略、产品、认证、监管状况、专利状况和製造能力进行全面评估。
5. 产品开发与创新:包括对未来技术、研发活动和突破性产品开发的智力见解。
1.先进复合材料市场规模及预测如何?
2.在先进复合材料市场的预测期内,我们应该考虑投资哪些产品与应用?
3.先进复合材料市场的技术趋势和法规结构是什么?
4.先进复合材料市场主要厂商的市场占有率为何?
5.进入先进复合材料市场的适当型态和策略手段是什么?
[199 Pages Report] The Advanced Composites Market size was estimated at USD 18.35 billion in 2023 and expected to reach USD 20.16 billion in 2024, at a CAGR 10.06% to reach USD 35.90 billion by 2030.
Advanced composites are high-performance materials with superior mechanical properties such as high strength-to-weight ratio, stiffness, and chemical and temperature variance resistance. Advanced composite materials comprise a matrix and a reinforcement, which can be in the form of fibers or particles. Ongoing innovations in material science leading to the development of more durable and resilient advanced composites are driving the market growth. Increasing aircraft production rates and greater adoption of composites in commercial and military aerospace applications also enhance the adoption of advanced composites. Continuous efforts in cost reduction and process optimization facilitating wider adoption across industries positively contribute to market growth. However, high manufacturing and raw material costs are a significant limitation for the market growth. Moreover, the complexity of recycling composite materials poses environmental and economic challenges in the market space. Innovations in recycling processes for advanced composites present substantial opportunities, as does the exploration of bio-based resins that can offer improved sustainability. Additionally, the growing need for lightweight materials in the transportation sector provides ongoing opportunities for market expansion.
KEY MARKET STATISTICS | |
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Base Year [2023] | USD 18.35 billion |
Estimated Year [2024] | USD 20.16 billion |
Forecast Year [2030] | USD 35.90 billion |
CAGR (%) | 10.06% |
Fiber: Rising adoption of carbon fiber composites in automotive industry
Aramid fiber composites are renowned for their exceptional strength-to-weight ratios and resilience, making them ideal for applications requiring durability and lightweight properties. Aramid fiber composites are predominantly used in aerospace, military, and automotive sectors, for ballistic protection gear, and in the manufacturing of high-performance sporting equipment. The need for aramid fiber composites is driven by their exceptional tensile strength, resistance to high temperatures, and ability to absorb impact without compromising structural integrity. Carbon fiber composites are distinguished by their supreme stiffness, high tensile strength, low weight, and chemical resistance. Carbon fiber composites are leveraged in industries such as sports, automotive, aerospace, and wind energy sectors. The demand for carbon fiber composites is primarily driven by the automotive industry's shift towards electric vehicles (EVs) and the aerospace sector's enduring quest for fuel efficiency through weight reduction. S-Glass fiber composites, known for their elevated strength compared to traditional glass fibers (E-Glass), are primarily used where higher tensile strength, minimal weight, and resistance to environmental damage are critical such as aerospace, defense, and sporting goods industry.
Manufacturing Process: Ongoing advancements in variety of manufacturing processes
Automated Tape Laying (ATL) & Automated Fiber Placement (AFP) methods are utilized for laying down composite materials, such as fibers, onto a mold and are preferred for their precision and efficiency in manufacturing complex structures. The compression molding process involves placing a fiber-reinforced material into a mold cavity and then applying heat and pressure to shape the part. The compression molding process is preferred for its ability to produce high-strength parts with complex geometries at a lower cost. Continuous fiber strands are wound under tension over a rotating mandrel in filament winding. The filament winding method is optimized for creating components with high strength-to-weight ratios, such as tubes and tanks. Hand layup and spray layup are manual processes where the fiber-reinforced material is placed by hand onto a mold and resin is applied. Injection molding involves injecting molten thermoplastic composites into a mold cavity. It is highly efficient for producing complex-shaped parts with excellent surface finish. Pultrusion pulls fibers through a resin bath and a heated die to cure. The pultrusion process continuously has profiles with constant cross-sections and is renowned for high mechanical properties. The vacuum-assisted resin transfer molding method is distinguished by its ability to create large and complex parts with high-quality surface finishes without incurring high costs.
Regional Insights
In the Americas region, the U.S. leads in the innovation and application of advanced composites, propelled by significant investments in research and development. The aerospace and defense industries are major consumers of advanced composites, with the automotive sector rapidly adopting composite materials for lightweight and fuel-efficient vehicles in the Americas region. However, the European Union is at the forefront of regulatory standards and sustainability in the composites sector, fostering innovation in recycling technologies and the development of green composites. The Middle East is witnessing a surge in the use of advanced composites, especially in construction and infrastructure projects, due to their durability and resistance to harsh environmental conditions. Africa's advanced composites market is in its nascent stages, with potential growth in automotive, aerospace, and renewable energy sectors. In the APAC region, China's rapid industrial growth has made it a hotspot for the consumption and production of advanced composites, with significant advancements in the wind energy and transportation sectors. Additionally, India and Japan are emerging as a substantial market for advanced composites, driven by their growing aerospace, defense, and automotive industries.
FPNV Positioning Matrix
The FPNV Positioning Matrix is pivotal in evaluating the Advanced Composites Market. It offers a comprehensive assessment of vendors, examining key metrics related to Business Strategy and Product Satisfaction. This in-depth analysis empowers users to make well-informed decisions aligned with their requirements. Based on the evaluation, the vendors are then categorized into four distinct quadrants representing varying levels of success: Forefront (F), Pathfinder (P), Niche (N), or Vital (V).
Market Share Analysis
The Market Share Analysis is a comprehensive tool that provides an insightful and in-depth examination of the current state of vendors in the Advanced Composites Market. By meticulously comparing and analyzing vendor contributions in terms of overall revenue, customer base, and other key metrics, we can offer companies a greater understanding of their performance and the challenges they face when competing for market share. Additionally, this analysis provides valuable insights into the competitive nature of the sector, including factors such as accumulation, fragmentation dominance, and amalgamation traits observed over the base year period studied. With this expanded level of detail, vendors can make more informed decisions and devise effective strategies to gain a competitive edge in the market.
Key Company Profiles
The report delves into recent significant developments in the Advanced Composites Market, highlighting leading vendors and their innovative profiles. These include ACPT Inc., Advanced Composites Solutions Srl, AGY Holding Corp., Akzo Nobel N.V., ARRIS Composites, Inc., Avient Corporation, BASF SE, DuPont de Nemours, Inc., Evonik Industries AG, FormosaM Co., Ltd., Gurit Services AG, Hexcel Corporation, Honeywell International Inc., LyondellBasell Industries Holdings B.V., Mitsubishi Chemical Carbon Fiber and Composites, Inc., MITSUI CHEMICALS INDIA, PVT. LTD, Momentive Performance Materials Inc., Owens Corning, Inc., Plasan Carbon Composites, Rockman Advance Composites Private Limited, SGL Carbon SE, Solvay S.A., ST Advanced Composites, Teijin Limited, and Toray Industries, Inc..
Market Segmentation & Coverage
1. Market Penetration: It presents comprehensive information on the market provided by key players.
2. Market Development: It delves deep into lucrative emerging markets and analyzes the penetration across mature market segments.
3. Market Diversification: It provides detailed information on new product launches, untapped geographic regions, recent developments, and investments.
4. Competitive Assessment & Intelligence: It conducts an exhaustive assessment of market shares, strategies, products, certifications, regulatory approvals, patent landscape, and manufacturing capabilities of the leading players.
5. Product Development & Innovation: It offers intelligent insights on future technologies, R&D activities, and breakthrough product developments.
1. What is the market size and forecast of the Advanced Composites Market?
2. Which products, segments, applications, and areas should one consider investing in over the forecast period in the Advanced Composites Market?
3. What are the technology trends and regulatory frameworks in the Advanced Composites Market?
4. What is the market share of the leading vendors in the Advanced Composites Market?
5. Which modes and strategic moves are suitable for entering the Advanced Composites Market?