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市场调查报告书
商品编码
1755953
2032 年电动液压转向市场预测:按产品类型、车辆类型、组件、应用和地区进行的全球分析Electrically Powered Hydraulic Steering Market Forecasts to 2032 - Global Analysis By Product (Steering Wheel/Column, Sensors, Steering Motor and Other Products), Type, Vehicle Type, Component, Application and By Geography |
根据 Stratistics MRC 的数据,全球电动液压转向市场预计在 2025 年达到 27 亿美元,到 2032 年将达到 48 亿美元,预测期内的复合年增长率为 8.5%。
电控液压转向是一种混合转向技术,将电动马达与液压系统结合,用于控制车辆和机械的运动。它能够提供更高的转向精度、反应速度和能源效率,尤其适用于大型车辆和越野车辆。与传统液压转向相比,此系统可降低引擎负荷和油耗。该系统广泛应用于农业、建筑和汽车领域,有助于提高驾驶安全性和可靠性,并通常支援自动驾驶或辅助驾驶功能。
根据美国公路交通安全管理局的数据,94% 的严重事故都是人为错误造成的,这凸显了建立系统来帮助降低风险的必要性。
农业机械对节能转向的需求
农业机械对节能转向系统的需求是主要驱动因素。受燃料成本上涨和永续农业需求的驱动,农民正在寻找更有效率的设备。与传统液压系统相比,电控油压辅助转向系统能耗更低,从而降低了营运成本。在最大限度地提高生产力的同时,最大限度地减少资源消耗的需求使得节能技术备受重视。农业领域持续降低营运成本和保护环境的动力,也推动这些先进转向系统的采用。
技术复杂,需要熟练的维护
技术复杂性需要熟练的维护人员,这是一个显着的限制因素。电油压辅助转向系统非常复杂,整合了先进的电子设备、感测器和液压元件。诊断和修復此类先进系统中的问题需要专业的技术知识和培训。整合电气和液压元件的复杂性要求维修负责人不断提升技能。这项技术障碍可能会阻碍这些先进转向系统的广泛应用。
电动混合动力农业车辆市场成长
电动和混合动力农用车辆市场的成长代表着一个极具吸引力的机会。在全球向永续和电气化交通转型的推动下,农业机械也正在经历变革。随着越来越多的电动混合动力拖拉机和多用途车辆进入市场,电控液压转向系统将成为顺理成章的选择。这些环保车辆的普及直接推动了对相容转向技术的需求。车辆电气化与转向技术的协同效应带来了巨大的成长空间。
机械液压系统与传统液压系统的竞争
来自机械和传统液压系统的竞争构成了重大威胁。现有的机械和传统液压转向系统通常更简单、更常见,製造和维护成本也更低。传统系统的可靠性和较低的初始成本可能会阻碍采用更新、更复杂的替代方案。在现有基础设施和熟悉程度的引导下,相当一部分市场可能会抵制这种转变。电动系统的初始投资和专业培训需求可能会成为这些根深蒂固的替代方案的障碍。
新冠疫情对电动液压转向市场造成了衝击。全球供应链和製造设施的初期中断影响了零件的生产和交付。然而,疫情也加速了对营运效率的重视,并减少了农业领域的人为干预。儘管短期内市场有所放缓,但智慧高效农业机械的长期趋势正在增强。这场危机凸显了技术韧性和优化资源利用在农业领域的重要性,从而对市场产生了正面的影响。
预计在预测期内,方向盘/转向柱部分将实现最大幅度增长。
预计在预测期内,方向盘/转向柱领域将占据最大的市场占有率。方向盘/转向柱是驾驶员与转向系统之间的主要接口,因此至关重要。此领域涵盖将驾驶员输入转换为转向指令的整个组件。先进的传感器、电子控制装置和反馈机制整合在转向柱中,进一步提升了其在电气化系统中的重要性。方向盘/转向柱在人体工学设计和触觉回馈方面的不断创新,进一步巩固了其在该领域的主导地位。
预计预测期内乘用车市场将以最高的复合年增长率成长。
预计乘用车细分市场将在预测期内实现最高成长率。这得归功于全球汽车产业快速向电气化转型,推动了电动液压转向系统在乘用车的应用。此外,高阶驾驶辅助系统和自动驾驶功能的整合需要精准且反应迅速的转向系统。在消费者对更高燃油经济性、更佳驾驶舒适性和更先进安全功能的需求的推动下,该技术正获得广泛认可。随着电动乘用车产量的扩大,预计对这些专用转向系统的需求将加速成长。
预计亚太地区将在预测期内占据最大的市场占有率,这得益于其庞大的汽车製造基地以及电动和混合动力汽车的快速普及。亚太地区引领着这一市场。商用车和乘用车对节能且技术先进的转向系统的需求不断增长,推动了这一主导地位。政府对电动车普及和智慧农业机械生产扩张的激励措施正在推动需求激增。中国和日本等国家在开发和製造此类先进转向系统方面处于领先地位。各个细分市场的高产量引领着该地区的市场占有率。
预计北美地区在预测期内的复合年增长率最高。由于注重技术创新和蓬勃发展的电动车市场,北美地区正经历加速成长。大型汽车和农业机械製造商大力投资先进的转向解决方案,促成了其高复合年增长率。受严格的燃油经济性标准和消费者对高性能汽车的需求的影响,转向解决方案的采用率正在上升。此外,该地区正致力于开发乘用车和农业机械的自动驾驶功能,这进一步推动了对精密电动辅助转向系统的需求。
According to Stratistics MRC, the Global Electrically Powered Hydraulic Steering Market is accounted for $2.7 billion in 2025 and is expected to reach $4.8 billion by 2032 growing at a CAGR of 8.5% during the forecast period. Electrically powered hydraulic steering is a hybrid steering technology that combines electric motors and hydraulic systems to control vehicle or machinery movement. It enhances steering precision, responsiveness, and energy efficiency, particularly in heavy-duty or off-road vehicles. This system reduces engine load and fuel consumption compared to conventional hydraulic steering. Common in agricultural, construction, and automotive sectors, it contributes to safer and more reliable operation, often supporting autonomous or assisted driving functions.
According to the National Highway Traffic Safety Administration, 94% of serious crashes are due to human error, highlighting the need for systems that assist in mitigating risks.
Demand for energy-efficient steering in agricultural machinery
Demand for energy-efficient steering in agricultural machinery is a primary driver. Fueled by rising fuel costs and the imperative for sustainable farming practices, farmers are seeking more efficient equipment. Electrically powered hydraulic steering systems consume less energy compared to traditional hydraulic systems, translating to lower operational expenses. Guided by the need to maximize productivity while minimizing resource consumption, energy-saving technologies are highly valued. The continuous drive for operational cost reduction and environmental stewardship in agriculture propels the adoption of these advanced steering systems.
Technical complexity requiring skilled maintenance
Technical complexity requiring skilled maintenance presents a notable restraint. Electrically powered hydraulic steering systems integrate advanced electronics, sensors, and hydraulic components, making them intricate. Diagnosing and repairing issues in these sophisticated systems demands specialized technical expertise and training. Influenced by the complexity of integrating electrical and hydraulic components, maintenance personnel require continuous upskilling. This technical barrier can slow down the widespread adoption of these advanced steering systems.
Growth in electric and hybrid agricultural vehicle markets
Growth in electric and hybrid agricultural vehicle markets offers a compelling opportunity. Triggered by the global shift towards sustainable and electrified transportation, agricultural machinery is also undergoing an evolution. As more electric and hybrid tractors and utility vehicles enter the market, electrically powered hydraulic steering becomes a natural fit. The increasing adoption of these eco-friendly vehicles creates a direct and growing demand for compatible steering technologies. This synergy between vehicle electrification and steering technology presents a significant growth avenue.
Competition from mechanical and traditional hydraulic systems
Competition from mechanical and traditional hydraulic systems poses a significant threat. Established mechanical and conventional hydraulic steering systems are often simpler, more familiar, and less expensive to produce and maintain. The perceived reliability and lower upfront cost of conventional systems can deter adoption of newer, more complex alternatives. Guided by the existing infrastructure and familiarity, a significant portion of the market may resist transitioning. The initial investment and the need for specialized training for electrically powered systems can be a barrier against these entrenched alternatives.
The COVID-19 pandemic influenced the Electrically Powered Hydraulic Steering Market. Initial disruptions to global supply chains and manufacturing facilities impacted production and delivery of components. However, the pandemic also accelerated the focus on operational efficiency and reduced human intervention in agriculture. While some short-term market slowdowns occurred, the long-term trend towards smart and efficient agricultural machinery strengthened. The crisis underscored the importance of technological resilience and optimized resource use in farming, providing a positive push for the market.
The steering wheel/column segment is expected to be the largest during the forecast period
The steering wheel/column segment is expected to account for the largest market share during the forecast period, backed by its fundamental role as the primary interface between the operator and the steering system, the steering wheel/column is an indispensable component. This segment includes the entire assembly that translates driver input into steering commands. The integration of advanced sensors, electronic controls, and feedback mechanisms within the steering column further enhances its importance in electrically powered systems. Continuous innovation in ergonomic design and haptic feedback within the steering wheel/column further contributes to its leading position.
The passenger cars segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the passenger cars segment is predicted to witness the highest growth rate, spurred by the global automotive industry's rapid shift towards electrification, and electrically powered hydraulic steering is becoming prevalent in passenger vehicles. The integration of sophisticated driver-assistance systems and autonomous driving features also necessitates precise and responsive steering. Powered by consumer demand for improved fuel economy, enhanced driving comfort, and advanced safety features, this technology is gaining significant traction. As the production of electric passenger vehicles scales up, the demand for these specialized steering systems will accelerate.
During the forecast period, the Asia Pacific region is expected to hold the largest market share, guided by its massive automotive manufacturing base and rapid adoption of electric and hybrid vehicles. Asia Pacific leads this market. The increasing demand for energy-efficient and technologically advanced steering systems in commercial and passenger vehicles fuels this dominance. Fuelled by government incentives for electric vehicle adoption and the expansion of smart agricultural machinery production, demand is surging. Countries like China and Japan are at the forefront of developing and manufacturing these sophisticated steering systems. The sheer volume of vehicle production across various segments contributes to the region's leading market share.
Over the forecast period, the North America region is anticipated to exhibit the highest CAGR, driven by a strong emphasis on technological innovation and the rapid growth of the electric vehicle market, North America is experiencing accelerated growth. The presence of major automotive and agricultural machinery manufacturers investing heavily in advanced steering solutions contributes to this high CAGR. Influenced by stringent fuel efficiency standards and consumer demand for high-performance vehicles, adoption is increasing. Furthermore, the region's focus on developing autonomous driving capabilities in both passenger cars and agricultural equipment further propels the demand for precisely electrically powered steering systems.
Key players in the market
Some of the key players in Electrically Powered Hydraulic Steering Market include Robert Bosch GmbH, ZF Friedrichshafen AG, Nexteer Automotive, JTEKT Corporation, NSK Ltd., Hyundai Mobis, Thyssenkrupp AG, Mando Corporation, Showa Corporation, Hitachi Automotive Systems Ltd., TRW Automotive Holdings Corp., Continental AG, Delphi Automotive PLC, Magna International Inc., Schaeffler Group, GKN plc, BorgWarner Inc., Valeo SA and Denso Corporation.
In May 2025, Robert Bosch GmbH introduced a new generation of electrically powered hydraulic steering (EPHS) systems that integrate advanced sensor technology and AI for improved driving dynamics, enhanced safety features, and readiness for higher levels of autonomous driving. This would focus on smart steering.
In May 2025, JTEKT Corporation developed a new EPHS system with enhanced cybersecurity features, addressing the increasing concerns about vehicle hacking and ensuring the integrity and reliability of critical steering functions. This would emphasize security in automotive systems.
In March 2025, Nexteer Automotive announced a new steer-by-wire EPHS solution that eliminates the mechanical link between the steering wheel and the wheels, offering greater design flexibility for vehicle manufacturers and advanced safety features. This would push towards future steering systems.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.