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市場調查報告書
商品編碼
1755953
2032 年電動液壓轉向市場預測:按產品類型、車輛類型、組件、應用和地區進行的全球分析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 |
根據 Stratistics MRC 的數據,全球電動液壓轉向市場預計在 2025 年達到 27 億美元,到 2032 年將達到 48 億美元,預測期內的複合年成長率為 8.5%。
電控液壓轉向是一種混合轉向技術,將電動馬達與液壓系統結合,用於控制車輛和機械的運動。它能夠提供更高的轉向精度、反應速度和能源效率,尤其適用於大型車輛和越野車輛。與傳統液壓轉向相比,此系統可降低引擎負荷和油耗。該系統廣泛應用於農業、建築和汽車領域,有助於提高駕駛安全性和可靠性,並通常支援自動駕駛或輔助駕駛功能。
根據美國公路交通安全管理局的數據,94% 的嚴重事故都是人為錯誤造成的,這凸顯了建立系統來幫助降低風險的必要性。
農業機械對節能轉向的需求
農業機械對節能轉向系統的需求是主要促進因素。受燃料成本上漲和永續農業需求的驅動,農民正在尋找更有效率的設備。與傳統液壓系統相比,電控油壓輔助轉向系統能耗更低,從而降低了營運成本。在最大限度地提高生產力的同時,最大限度地減少資源消耗的需求使得節能技術備受重視。農業領域持續降低營運成本和保護環境的動力,也推動這些先進轉向系統的採用。
技術複雜,需要熟練的維護
技術複雜性需要熟練的維護人員,這是一個顯著的限制因素。電油壓輔助轉向系統非常複雜,整合了先進的電子設備、感測器和液壓元件。診斷和修復此類先進系統中的問題需要專業的技術知識和培訓。整合電氣和液壓元件的複雜性要求維修負責人不斷提陞技能。這項技術障礙可能會阻礙這些先進轉向系統的廣泛應用。
電動混合動力農業車輛市場成長
電動和混合動力農用車輛市場的成長代表著一個極具吸引力的機會。在全球向永續和電氣化交通轉型的推動下,農業機械也正在經歷變革。隨著越來越多的電動混合動力曳引機和多用途車輛進入市場,電控液壓轉向系統將成為順理成章的選擇。這些環保車輛的普及直接推動了對相容轉向技術的需求。車輛電氣化與轉向技術的協同效應帶來了巨大的成長空間。
機械液壓系統與傳統液壓系統的競爭
來自機械和傳統液壓系統的競爭構成了重大威脅。現有的機械和傳統液壓轉向系統通常更簡單、更常見,製造和維護成本也更低。傳統系統的可靠性和較低的初始成本可能會阻礙採用更新、更複雜的替代方案。在現有基礎設施和熟悉程度的引導下,相當一部分市場可能會抵制這種轉變。電動系統的初始投資和專業培訓需求可能會成為這些根深蒂固的替代方案的障礙。
新冠疫情對電動液壓轉向市場造成了衝擊。全球供應鏈和製造設施的初期中斷影響了零件的生產和交付。然而,疫情也加速了對營運效率的重視,並減少了農業領域的人為干預。儘管短期內市場有所放緩,但智慧高效農業機械的長期趨勢正在增強。這場危機凸顯了技術韌性和最佳化資源利用在農業領域的重要性,從而對市場產生了正面的影響。
預計在預測期內,方向盤/轉向柱部分將實現最大幅度成長。
預計在預測期內,方向盤/轉向柱領域將佔據最大的市場佔有率。方向盤/轉向柱是駕駛員與轉向系統之間的主要介面,因此至關重要。此領域涵蓋將駕駛員輸入轉換為轉向指令的整個組件。先進的感測器、電子控制裝置和反饋機制整合在轉向柱中,進一步提升了其在電氣化系統中的重要性。方向盤/轉向柱在人體工學設計和觸覺回饋方面的不斷創新,進一步鞏固了其在該領域的主導地位。
預計預測期內乘用車市場將以最高的複合年成長率成長。
預計乘用車細分市場將在預測期內實現最高成長率。這得歸功於全球汽車產業快速向電氣化轉型,推動了電動液壓轉向系統在乘用車的應用。此外,高階駕駛輔助系統和自動駕駛功能的整合需要精準且反應迅速的轉向系統。在消費者對更高燃油經濟性、更佳駕駛舒適性和更先進安全功能的需求的推動下,該技術正獲得廣泛認可。隨著電動乘用車產量的擴大,預計對這些專用轉向系統的需求將加速成長。
預計亞太地區將在預測期內佔據最大的市場佔有率,這得益於其龐大的汽車製造基地以及電動和混合動力汽車的快速普及。亞太地區引領著這一市場。商用車和乘用車對節能且技術先進的轉向系統的需求不斷成長,推動了這一主導地位。政府對電動車普及和智慧農業機械生產擴張的激勵措施正在推動需求激增。中國和日本等國家在開發和製造此類先進轉向系統方面處於領先地位。各個細分市場的高產量引領著該地區的市場佔有率。
預計北美地區在預測期內的複合年成長率最高。由於注重技術創新和蓬勃發展的電動車市場,北美地區正經歷加速成長。大型汽車和農業機械製造商大力投資先進的轉向解決方案,促成了其高複合年成長率。受嚴格的燃油經濟性標準和消費者對高性能汽車的需求的影響,轉向解決方案的採用率正在上升。此外,該地區正致力於開發乘用車和農業機械的自動駕駛功能,這進一步推動了對精密電動輔助轉向系統的需求。
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.