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市场调查报告书
商品编码
1603756
2030年汽车塑胶紧固件市场预测:依产品、车型、电动车类型、材料、功能、应用和地区分析Automotive Plastic Fasteners Market Forecasts to 2030 - Global Analysis By Product, Vehicle Type (Passenger Car, Light Commercial Vehicle and Heavy Commercial Vehicle ), Electric Vehicle Type, Material Type, Function, Application and by Geography |
根据Stratistics MRC的数据,2024年全球汽车塑胶紧固件市场规模为48.4亿美元,预计在预测期内将以8.0%的复合年增长率成长,到2030年达到76.8亿美元。
汽车塑胶紧固件是传统金属紧固件的轻且经济的替代品,是现代车辆构造和设计的重要组成部分。这些紧固件用于牢固地固定汽车装饰件、保险桿、电气元件和内装板。汽车塑胶紧固件由高性能、耐用的塑胶製成,例如 ABS、尼龙和聚丙烯,具有许多优点,包括耐腐蚀、重量轻以及吸收衝击和振动的能力。
根据美国环保署 (EPA) 的说法,公共饮用水系统定期接受大肠桿菌等污染物的微生物检测,以保护依赖公共饮用水系统的 3 亿多公共,这是安全饮用水的要求。
人们对电动车 (EV) 的兴趣与日俱增
汽车塑胶紧固件市场受到电动和混合动力汽车转型的显着影响。电动车需要轻量组件来增加续航里程和电池效率。电池外壳、内部组件和轻质结构元件只是塑胶紧固件理想的电动车应用中的一小部分。此外,随着全球电动车市场的发展,对支援这些最尖端科技的创意紧固解决方案的需求也在不断增长。
与金属紧固件的竞争
儘管塑胶紧固件越来越受欢迎,但金属紧固件因其经过验证的性能和可靠性而在许多应用中继续占据主导地位。塑胶紧固件生产商面临的一个主要障碍是汽车产业对金属零件的严重依赖。此外,为了说服製造商转向塑胶替代品,他们不仅需要证明可以节省成本,还需要证明可比或更好的性能品质。
重视排放和燃油效率
随着世界各国政府收紧旨在减少二氧化碳排放的法规,汽车製造商面临生产更轻、更省油的汽车的压力。减轻重量对于提高燃油效率至关重要,而塑胶紧固件在这过程中发挥着重要作用。此外,随着製造商寻求满足严格燃油效率标准同时保持性能的解决方案,这种法规环境正在推动塑胶紧固件的采用。
承载能力的限制
与金属紧固件相比,塑胶材料承载能力的固有限制是汽车塑胶紧固件市场面临的主要威胁之一。塑胶紧固件可能无法在高应力应用(例如动力传动系统和结构元件中的应用)中提供必要的强度和耐用性。由于这项限制,製造商可能会选择传统的金属紧固件而不是塑胶替代品,这可能会引发有关性能和可靠性的问题。此外,对高强度至关重要的行业可能会发现很难获得市场吸引力。
COVID-19 对汽车塑胶紧固件市场的影响给整个汽车产业带来了重大破坏。政府法规和停工导致製造工厂暂时关闭,导致汽车产量大幅减少,进而减少对塑胶紧固件等汽车零件的需求。主要汽车製造商产能下降导致供应链严重中断,导致所需材料的延误和短缺。然而,随着产业开始适应「新常态」并需要经济实惠的轻型解决方案,以补充对燃油效率和排放法规等日益关注的需求,需求再次逐渐增加。
预计乘用车 (PC) 领域在预测期内将成为最大的领域
由于对轻量化和节能车辆的需求不断增加,乘用车(PC)领域在汽车塑胶紧固件市场中占据最大份额。由于消费者高度重视性能和效率,汽车製造商使用塑胶紧固件来提高燃油经济性并减轻车辆重量,这对于满足严格的排放法规至关重要。此外,塑胶材料的开发具有更高的耐受性和耐用性,使其适用于乘用车的各种应用,例如车身面板、电子元件和内饰,进一步推动了这一领域的成长。
塑胶产业预计在预测期内复合年增长率最高
在汽车塑胶紧固件市场中,塑胶领域预计将以最高的复合年增长率成长。塑胶紧固件比传统金属紧固件轻得多,增加了汽车製造业对轻质材料的重视和需求。由于电动车 (EV) 的普及,这种转变尤其引人注目,电动车需要能够提高电池效率和车辆整体性能的组件。此外,塑胶材料的改进使其更能抵抗环境影响且更耐用,适用于更广泛的应用,例如车身外板、电子元件和内装。
汽车塑胶紧固件市场由亚太地区主导。这项优势的主要原因是中国、日本、印度等国家汽车製造业的快速发展。该地区强大的工业化和印度製造等政府计划进一步增强了当地的製造能力,增加了对塑胶紧固件和其他汽车零件的需求。此外,该地区的电动车生产正在扩大,凸显了对提高车辆整体性能和电池效率的轻量材料的需求。
由于电动车(EV)需求的不断扩大以及对轻量材料的日益重视,预计汽车塑胶紧固件市场的复合年增长率将在北美地区最高。由于美国注重提高燃油经济性和减少排放气体,製造商正在寻找传统金属紧固件的替代品。塑胶材料的技术发展进一步推动了这一变化,提高了塑胶材料的强度和耐用性,使塑胶紧固件适用于各种汽车应用。此外,北美汽车电气化的成长趋势正在增加对这些组件的需求,因为电动车主要依靠轻量化组件来最大限度地提高效率和续航里程。
According to Stratistics MRC, the Global Automotive Plastic Fasteners Market is accounted for $4.84 billion in 2024 and is expected to reach $7.68 billion by 2030 growing at a CAGR of 8.0% during the forecast period. Automotive plastic fasteners, which offer a lightweight, affordable substitute for conventional metal fasteners, are crucial parts of the construction and design of contemporary automobiles. These fasteners are used to firmly hold the vehicle's trim, bumpers, electrical components, and interior panels together. Automotive plastic fasteners, which are made of high-performance, long-lasting plastics like ABS, nylon, and polypropylene, have a number of benefits, such as resistance to corrosion, decreased weight, and the capacity to absorb impact and vibration.
According to the Environmental Protection Agency (EPA), the Safe Drinking Water Act mandates that public water systems perform regular microbiological testing for contaminants such as coliform bacteria, as part of efforts to protect over 300 million Americans who rely on public drinking water systems.
Increasing interest in electric cars (EVs)
The market for automotive plastic fasteners is significantly influenced by the move to electric and hybrid vehicles. Lightweight parts are necessary for EVs in order to increase driving range and battery efficiency. Battery housings, interior parts, and lightweight structural elements are just a few of the EV applications where plastic fasteners are perfect. Moreover, the need for creative fastening solutions that support these cutting-edge technologies is growing along with the global market for electric vehicles.
Competition from metal fasteners
Metal fasteners continue to dominate many applications because of their proven performance and dependability, even though plastic fasteners are becoming more and more popular. A major obstacle for producers of plastic fasteners is the automotive industry's ingrained reliance on metal components. Additionally, it is necessary to show not only cost savings but also comparable or better performance qualities in order to persuade manufacturers to move to plastic alternatives.
Emphasis on emissions reduction and fuel efficiency
Automobile manufacturers are under pressure to create lighter and more fuel-efficient vehicles as a result of governments around the world enforcing stricter regulations aimed at reducing carbon emissions. Weight reduction is crucial for increasing fuel efficiency, and plastic fasteners play a major role in this process. Furthermore, as manufacturers look for solutions that help them meet strict fuel efficiency standards while maintaining performance; this regulatory environment fosters the adoption of plastic fasteners.
Limited ability to support loads
The intrinsic limitation of plastic materials load-bearing capacity in comparison to metal fasteners is one of the main threats facing the automotive plastic fasteners market. Plastic fasteners might not offer the required strength and durability in high-stress applications, like those found in powertrains and structural elements. Manufacturers may choose conventional metal fasteners over plastic substitutes as a result of this restriction, which may raise questions regarding performance and dependability. Additionally, in industries where high strength is essential, the market might find it difficult to acquire traction.
Significant disruptions have been caused throughout the automotive industry as a result of COVID-19's impact on the market for automotive plastic fasteners. Government restrictions and lockdowns led to the temporary closure of manufacturing plants, which significantly decreased vehicle production and, in turn, the demand for automotive parts, such as plastic fasteners. Due to the supply chain's severe disruption caused by major automakers operating at reduced capacity, there were delays and shortages of necessary materials. However, the demand has gradually increased again, though, as industries have started to adjust to the "new normal," especially for affordable and lightweight solutions that complement the increased focus on fuel economy and emission control.
The Passenger Car (PC) s segment is expected to be the largest during the forecast period
The growing demand for lightweight and fuel-efficient vehicles has led to the passenger car (PC) segment holding the largest share in the automotive plastic fastener market. Automotive manufacturers are using plastic fasteners to reduce vehicle weight, which is essential for improving fuel economy and satisfying strict emission regulations, as consumers place a higher value on performance and efficiency. Moreover, developments in plastic materials that provides increased resistance and durability, making them appropriate for a range of passenger car applications such as body panels, electronic components, and interior trims, further support the segment's growth.
The Plastic segment is expected to have the highest CAGR during the forecast period
In the automotive plastic fasteners market, the plastic segment is anticipated to grow at the highest CAGR. Since plastic fasteners are significantly lighter than traditional metal fasteners, the demand for them is being driven by the growing emphasis on lightweight materials in the automotive manufacturing industry. With the popularity of electric vehicles (EVs), which demand parts that improve battery efficiency and overall vehicle performance, this change, is especially noticeable. Furthermore, improvements in plastic materials have increased their resilience to environmental influences and durability, which makes them appropriate for a greater variety of uses, such as exterior body panels, electronic components, and interior trims.
The market for automotive plastic fasteners is dominated by the Asia-Pacific region. The main reason for this dominance is the quick development of the automotive manufacturing industry in nations like China, Japan, and India, which rank among the biggest automakers in the world. Due to the region's strong industrialization and government programs like Make in India, local manufacturing capacities have been further strengthened, which has raised demand for plastic fasteners and other automotive components. Moreover, this region's growing EV production highlights the need for lightweight materials that improve overall vehicle performance and battery efficiency.
The automotive plastic fasteners market is expected to grow at the highest CAGR in the North America region due to the growing demand for electric vehicles (EVs) and the growing emphasis on lightweight materials. Because of the United States emphasis on improving fuel economy and cutting emissions, manufacturers are looking for alternatives to conventional metal fasteners. Technological developments in plastic materials, which provide increased strength and durability and make plastic fasteners appropriate for a range of automotive applications, further support this change. Additionally, since EVs mainly depend on lightweight components to maximize efficiency and range, the growing trend of vehicle electrification in North America is increasing demand for these parts.
Key players in the market
Some of the key players in Automotive Plastic Fasteners market include DuPont, Bossard Group, Illinois Tool Works Inc., ARaymond Fasteners, SABIC, Nippon Industrial Fasteners Company, Essentra Components, PennEngineering Inc, Avery Dennison Corporation, Westfield Fasteners Limited, MW Industries, Inc., SFS Group AG, Stanley Black & Decker, Inc., Phillips Screw Company and Nifco Inc.
In October 2024, DuPont and Zhen Ding Technology Group announced they have entered into a strategic cooperation agreement in advanced printed circuit board (PCBs) technology. Through this strategic partnership, DuPont and Zhen Ding will work to enhance end-user applications, advance cutting-edge research and development, improve material performance, and promote the sustainable development of the electronics sector.
In October 2024, The Bossard Group announced that it has signed an agreement to acquire Ferdinand Gross Group. With the contemplated acquisition of the Ferdinand Gross Group, which expects net sales of around EUR 80 million for the current financial year, Bossard will further expand its already strong market presence in Germany and Eastern Europe.
In August 2024, SABIC has signed a potential investment agreement with the Fujian government, under the auspices of the Saudi Ministry of Energy, to build an engineering thermoplastics compounding plant in China's Fujian Province.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.