市场调查报告书
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1577130
到 2030 年汽车转子和定子市场预测:按马达类型、材料、车辆类型、定子类型、转子类型、应用和地区进行全球分析Automobile Rotor Stator Market Forecasts to 2030 - Global Analysis By Motor Type, Material, Vehicle Type, Stator Type, Rotor Type, Application and By Geography |
根据Stratistics MRC的数据,2024年全球汽车转子定子市场规模为132.9503亿美元,预计到2030年将达到240.7153亿美元,预测期内复合年增长率为10.4%。
汽车转子-定子系统是指各种汽车应用中的组合转子-定子组件,特别是电动和混合动力汽车。定子通电时产生磁场,转子受此磁场驱动,产生机械能。由于电动车 (EV) 需求的增加和马达技术的进步,预计该市场将会成长。
根据国际汽车工业协会(OICA)统计,去年全球汽车产量约8,500万辆,较上年成长6%。根据国际能源总署(IEA)的数据,2022年全球电动车销量强劲成长,第一季销量达200万辆,较2021年同期成长75%。
更多采用安全功能
对复杂驾驶辅助系统和自动驾驶技术的需求不断增长正在推动汽车转子和定子市场的成长。电动方向盘和煞车系统等安全关键部件依赖高效的转子-定子组件来实现精确控制和响应能力。随着汽车製造商努力满足安全标准和消费者期望,高性能转子和定子对于电动和混合动力汽车实现可靠、节能和防故障的安全功能至关重要。
材料成本上涨
不断上涨的材料成本对市场产生重大影响,因为製造高效马达需要更现代的材料。全球供应链的中断导致硅基材料和高性能电工钢等关键零件的价格上涨。需要焊接和冲压等专门技术的复杂生产程序进一步增加了成本。经济限制会抑制製造商的创新和适应能力,影响汽车产业转子定子市场的整体成长和竞争力。
汽车技术的进步
汽车技术的开拓最终将推动汽车转子定子市场,特别是随着汽车产业走向电气化。电动和混合动力汽车汽车需要高效的转子和定子组件,以最大限度地提高功率输出和能源管理。製造技术和材料的进步提高了性能和耐用性,使轻量化设计成为可能。由于人工智慧和物联网等智慧技术的整合推动了对复杂转子-定子解决方案的需求,市场正在不断扩大。
经济波动
经济波动会对汽车转子和定子产品的需求产生重大影响。在景气衰退,消费者在新车上的支出可能会减少,导致对转子和定子等汽车零件的需求下降,从而导致产量下降。另一方面,当经济扩张时,汽车销售量将会增加,对转子和定子的需求可能会增加。这些差异可能会影响生产商的盈利并引起市场的怀疑。
COVID-19 的影响
汽车转子和定子的销售受到 COVID-19 疫情的严重影响。全球停产和供应链中断导致汽车製造业大幅下滑,导致汽车零件需求下降。另一方面,随着经济开始好转,汽车需求增加,转子定子的市场也开始扩大。此次疫情增加了对电动车的需求,电动车需要特殊的转子-定子,并加速了其采用。整体而言,COVID-19大流行为汽车转子和定子产业带来了挑战,但也带来了创新和扩张的机会。
预计硅钢板块在预测期内将成为最大的板块
由于其良好的导电性和磁性,硅钢部分预计是最大的。它广泛用于製造定子铁芯,这对于产生运行发电机和电动机所需的磁场至关重要。在转子-定子中使用硅钢可提高性能、减少能量损失并提高效率。随着电动和混合汽车需求的不断增加,硅钢在转子定子中的使用量预计将增加。
电动方向盘(EPS)产业预计在预测期内复合年增长率最高
由于电动方向盘(EPS)系统在汽车中的整合度不断提高,预计电动方向盘(EPS)领域在预测期内的复合年增长率最高。 EPS技术以马达取代了传统的液压系统,透过根据路况改变转向辅助来提高汽车的操控性和燃油效率。除了性能的提高之外,这项变化还减少了能源消耗,符合业界对永续性的关注。
预计亚太地区在预测期内将占据最大的市场占有率。这是由于汽车工业的快速成长,特别是在中国和印度等国家,对高品质转子和定子部件的需求增加是一个主要因素。此外,电动车 (EV) 和混合动力汽车的日益普及正在迅速增加对依赖先进转子和定子技术的高效马达系统的需求。此外,政府促进永续性和排放的措施正在鼓励製造商投资创新汽车技术,进一步推动该地区的市场成长。
由于电动车(EV)普及率的不断提高,预计北美在预测期内的复合年增长率最高。此外,随着安全功能和驾驶支援系统越来越受到关注,电动方向盘和煞车系统对高可靠性转子和定子零件的需求也在增加。主要汽车製造商和创新中心的存在,以及消费者对高性能和节能汽车的偏好,进一步支持了市场成长。
According to Stratistics MRC, the Global Automobile Rotor Stator Market is accounted for $13295.03 million in 2024 and is expected to reach $24071.53 million by 2030 growing at a CAGR of 10.4% during the forecast period. An automobile rotor-stator system refers to the combined assembly of a rotor and a stator in various automotive applications, particularly in electric and hybrid vehicles. The stator generates a magnetic field when energized, while the rotor is driven by this magnetic field to produce mechanical power. This market is poised for growth due to increasing demand for electric vehicles (EVs) and advancements in motor technologies.
According to the International Organization of Motor Vehicle Manufacturers (OICA), in the previous year, approximately 85 million motor vehicles were produced across the world, an increase of 6% compared to the year before it. According to the International Energy Agency (IEA), the global sales of electric vehicles have been rising strongly in 2022, with 2 million sold in the first quarter, up 75% from the same period in 2021.
Increasing adoption of safety features
The increasing demand for complex driver assistance systems and autonomous driving technologies is propelling the Automobile Rotor Stator Market's growth. Safety-critical components like electric power steering and brake systems rely on efficient rotor-stator assemblies for precise control and responsiveness. High-performance rotors and stators are essential for dependable, energy-efficient, and fault-tolerant safety features in electric and hybrid vehicles as automakers work to meet safety standards and consumer expectations.
Rising material costs
Growing material costs are having a big effect on the market, mostly because more modern materials are needed to make efficient electric motors. Global supply chain interruptions have caused price spikes for key components including silicon-based materials and high-performance electrical steels. Costs are further increased by the intricacy of production procedures, which call for specialist skills like welding and stamping. Economic constraints have the potential to impede manufacturers' capacity for innovation and adaptation, thereby impacting the rotor stator market's overall growth and competitiveness within the automobile industry.
Advancements in vehicle technology
Technological developments in vehicles, particularly as the automotive sector moves toward electrification, are ultimately propel the automobile rotor stator market. For electric and hybrid vehicles to maximize power output and energy management, high-efficiency rotor and stator components are necessary. Lighter designs are made possible by advancements in manufacturing techniques and materials that enhance performance and durability. The market is expanding as a result of the need for complex rotor stator solutions brought on by the integration of smart technologies like AI and IoT.
Economic fluctuations
Economic fluctuations can have a substantial impact on demand for vehicle rotor stator products. Consumers may spend less on new cars during economic downturns, which would lower demand for automotive components like rotor stators and reduce output. On the other hand, economic expansion may result in more sales of automobiles, which would raise the need for rotor stators. These distinctions may have an impact on producers' profitability and breed doubt in the marketplace.
Covid-19 Impact
Automobile rotor stator sales were significantly impacted by the COVID-19 epidemic. Global shutdowns and supply chain disruptions caused a precipitous drop in vehicle manufacturing, which in turn reduced demand for automotive parts. On the other hand, the market for rotor stators also started to expand as economies started to improve and the demand for automobiles increased. The pandemic boosted the demand for electric vehicles, which need specific rotor stators, hastening their acceptance. All things considered, the COVID-19 epidemic brought about difficulties, but it also offered chances for innovation and expansion in the automotive rotor stator industry.
The silicon steel segment is expected to be the largest during the forecast period
The silicon steel segment is estimated to be the largest, due to its superior electrical conductivity and magnetic qualities. It is extensively utilized in the building of stator cores, which are essential for producing the magnetic field required for the running of generators and electric motors. The application of silicon steel in rotor stators results in increased performance, less energy losses, and increased efficiency. The usage of silicon steel in rotor stators is anticipated to rise in line with the growing demand for electric and hybrid automobiles.
The electric power steering (EPS) segment is expected to have the highest CAGR during the forecast period
The electric power steering (EPS) segment is anticipated to witness the highest CAGR during the forecast period, due to the growing integration of electric power steering (EPS) systems into automobiles. With EPS technology, conventional hydraulic systems are replaced with electric motors that modify steering assistance in response to road conditions, improving vehicle handling and fuel economy. Along with increasing performance, this change also lowers energy usage, which is consistent with the industry's emphasis on sustainability.
Asia Pacific is expected to have the largest market share during the forecast period due to the rapid growth of the automotive industry, particularly in countries like China and India, is a significant contributor, as increasing vehicle production demands high-quality rotor and stator components. Additionally, the rising adoption of electric vehicles (EVs) and hybrids is creating a surge in demand for efficient electric motor systems, which rely on advanced rotor and stator technologies. Furthermore, government initiatives promoting sustainability and reducing emissions are encouraging manufacturers to invest in innovative automotive technologies, further propelling market growth in this region.
North America is projected to witness the highest CAGR over the forecast period, owing to the increasing adoption of electric vehicles (EVs). Additionally, a growing focus on safety features and driver assistance systems has increased the demand for reliable rotor-stator components in electric power steering and braking systems. The presence of major automotive manufacturers and technological innovation hubs further supports market growth, along with consumer preferences for high-performance and energy-efficient vehicles.
Key players in the market
Some of the key players profiled in the Automobile Rotor Stator Market include Bosch, Denso, Valeo, Continental, NSK, Schaeffler, Johnson Electric, Magneti Marelli, Delphi Technologies, Mitsubishi Electric, ABB, Yaskawa Electric, Nidec Corporation, Siemens, Eaton Corporation, Johnson Controls, and Nexteer Automotive.
In October 2023, Bosch launched a new electric motor with integrated rotor-stator technology aimed at improving efficiency in electric vehicles (EVs).
In June 2023, Mitsubishi Electric launched its innovative rotor-stator solution for automotive electric drives, targeting higher power output with lower energy consumption.
In November 2022, Schaeffler rolled out its e-motor platform, featuring rotor-stator units optimized for power density and cooling in electric powertrains.
In August 2022, Johnson Electric launched a new rotor-stator assembly for compact electric motors aimed at improving energy efficiency in automotive applications.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.