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市场调查报告书
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1744629
汽车液体蓄压器市场预测至 2032 年:按类型、车型、容量、材料、销售管道、应用和地区进行的全球分析Automobile Liquid Accumulator Market Forecasts to 2032 - Global Analysis By Type, Vehicle Type, Capacity, Material, Sales Channel, Application, and By Geography |
根据 Stratistics MRC 的数据,全球汽车液体蓄压器市场预计在 2025 年将达到 20.1 亿美元,到 2032 年将达到 30.2 亿美元,预测期内的复合年增长率为 6.0%。
汽车液体蓄压器是汽车中用于储存压力液压油的压力储存装置,用于各种应用。它们维持恆定的液压,吸收衝击,并支援煞车、悬吊和空调等系统。透过在需要时释放储存的能量,蓄能器可以提高车辆的性能、安全性和舒适性。蓄能器对于传统汽车和电动车都至关重要,尤其是在先进的液压和能量回收系统中。
根据国际能源总署(IEA)在其《2022年全球电动车展望》中预测,电动车销量将进一步成长35%,从2022年的1,000多万辆增至2023年的1,400万辆。
对车辆安全性和舒适性的要求日益提高
汽车液体蓄压器市场对汽车安全性和舒适性的需求日益增长,这得益于消费者不断增长的期望、严格的政府法规以及汽车技术的进步。现代车辆需要高效的液压系统来支援防锁死煞车系统 (ABS) 和电子稳定控制系统 (ESC) 等安全功能。同时,电动车和混合动力汽车的日益普及也要求增强温度控管和悬吊系统,而液体蓄压器在这些系统中发挥关键作用。此外,全球对减少道路交通事故和提高驾驶舒适性的关注也推动了先进蓄能器的应用。
设计和维护的复杂性
液体蓄压器是复杂的部件,需要精密的工程设计才能与车辆的液压和流体系统无缝整合。这种复杂性通常需要安装和维护方面的专业知识,从而增加了整体维护成本和时间。此外,确保蓄能器在各种工作条件下(包括温度波动和压力变化)的可靠性也增加了设计挑战。儘管该技术具有性能优势,但这些因素可能会限制其应用并减缓市场成长,从而阻碍製造商和消费者的购买,尤其是在成本敏感的地区。
对汽车电气化的兴趣日益浓厚
随着电动车 (EV) 成为人们关注的焦点,依赖液体蓄压器的传统液压系统正在被重新评估。这种转变可能会减少某些应用中对传统液体蓄压器的需求。然而,电气化也在推动创新,液体蓄压器正被应用于电动车冷却系统、能源回收和混合动力技术。总体而言,电气化趋势正在推动市场发展,强调与未来汽车平臺相适应的先进且高效的蓄能器设计。
与电动致动器技术的竞争
电动致动器具有控制精确、反应时间更快、维护成本更低以及与车辆电气化趋势相容等优势。这些优点使得电动执行系统比依赖液体蓄压器的传统液压系统更具吸引力。随着汽车製造商优先考虑能源效率以及与高级驾驶辅助系统 (ADAS) 的集成,电动执行技术正在迅速普及。这种转变对液体蓄压器的需求提出了挑战,迫使製造商不断创新和调整其产品,以在以电气化和数数位化重点的不断发展的汽车市场中保持竞争力。
COVID-19的影响
新冠疫情严重衝击了汽车液体蓄压器市场,主要原因是全球汽车产业普遍受到衝击。工厂停工、原料和零件供应链瓶颈以及汽车产销大幅下滑,导致蓄能器需求下降。消费者信心下降,新车购买计画延后。随着经济重启,市场逐渐復苏,但最初的衝击造成了巨大的收益损失,并迫使製造商克服生产计画和物流方面前所未有的挑战。
预计预测期内液压蓄能器部分将成为最大的部分。
预计液压蓄能器将在预测期内占据最大的市场占有率,因为它们可以透过吸收衝击、稳定液压系统和提高能源效率来提升车辆性能。人们对汽车更平稳的行驶、更高的安全性和燃油效率的需求不断增长,推动了其应用。此外,煞车、悬吊和动力转向系统应用的不断扩大以及全球汽车产量的不断增长,也进一步推动了液压蓄能器市场的成长。
预计铝业在预测期内的复合年增长率最高。
在预测期内,铝材市场预计将实现最高成长率,因其重量轻、强度高、耐腐蚀性优异。铝材的使用有助于减轻车辆总重、提高燃油效率并减少排放气体。此外,铝材优异的导热性有利于蓄能器散热,从而提高其性能和耐用性。对轻量化汽车零件的需求不断增长以及环境法规的日益严格是推动铝材在液体蓄压器製造中应用的主要因素。
预计亚太地区将在预测期内占据最大的市场占有率。这得归功于中国和印度等国家快速的工业化和都市化,推动了汽车生产和基础设施建设,从而推动了倡议宣传活动鼓励本土生产,进一步促进了市场扩张。此外,电动车的兴起和严格的安全法规也推动了对高效流体管理解决方案的需求,使该地区成为全球市场成长的主要贡献者。
在预测期内,北美预计将呈现最高的复合年增长率。这是由于对提升车辆安全性和性能的需求日益增长,因为这些部件能够有效管理煞车和悬吊系统中的液压油。电动和混合动力汽车产量的增加、排放法规的日益严格以及汽车製造业的蓬勃发展,都促进了市场的成长。此外,技术进步和消费者对先进汽车系统的日益增长的偏好,也进一步推动了该地区对液体蓄压器的采用。
According to Stratistics MRC, the Global Automobile Liquid Accumulator Market is accounted for $2.01 billion in 2025 and is expected to reach $3.02 billion by 2032 growing at a CAGR of 6.0% during the forecast period. An automobile liquid accumulator is a pressure storage device used in vehicles to store hydraulic fluid under pressure for various applications. It helps maintain consistent fluid pressure, absorb shocks, and support systems like braking, suspension, and air conditioning. By releasing stored energy when needed, accumulators improve vehicle performance, safety, and comfort. They are essential in both conventional and electric vehicles, especially in advanced hydraulic and energy recovery systems.
According to the IEA (International Energy Agency), in 2022, Global Electric Vehicle Outlook, sales of electric vehicles are predicted to increase by another 35% this year 2023 to reach 14 MN, from the more than 10 MN that were sold globally in 2022.
Growing demand for vehicle safety and comfort
The growing demand for vehicle safety and comfort in the automobile liquid accumulator market is driven by increasing consumer expectations, stringent government regulations, and advancements in automotive technology. Modern vehicles require efficient hydraulic systems to support safety features like anti-lock braking systems (ABS) and electronic stability control (ESC). Simultaneously, the rising popularity of electric and hybrid vehicles necessitates enhanced thermal management and suspension systems, where liquid accumulators play a crucial role. Additionally, the global focus on reducing road accidents and enhancing driving comfort fuels the adoption of advanced accumulators.
Complexity in design and maintenance
Liquid accumulators are intricate components that require precise engineering to integrate seamlessly with a vehicle's hydraulic or fluid systems. This complexity often demands specialized knowledge for both installation and upkeep, increasing the overall maintenance cost and time. Moreover, ensuring the accumulator's reliability under various operating conditions, such as temperature fluctuations and pressure changes, adds to the design challenges. These factors can deter manufacturers and consumers, particularly in cost-sensitive sectors, limiting widespread adoption and slowing market growth despite the technology's performance benefits.
Increased focus on vehicle electrification
As electric vehicles (EVs) gain prominence, traditional hydraulic systems that rely on liquid accumulators are being re-evaluated, since EVs often use electric or electronic systems for functions previously managed hydraulically. This shift can reduce demand for conventional liquid accumulators in some applications. However, electrification also drives innovation, with liquid accumulators being adapted for use in electric vehicle cooling systems, energy recovery, and hybrid technologies. Overall, the trend toward electrification is pushing the market to evolve, emphasizing advanced, efficient accumulator designs tailored for future vehicle platforms.
Competition from electric actuation technologies
Electric actuators offer advantages such as precise control, faster response times, reduced maintenance, and compatibility with vehicle electrification trends. These benefits make electric actuation systems increasingly attractive compared to traditional hydraulic systems that depend on liquid accumulators. As automakers prioritize energy efficiency and integration with advanced driver-assistance systems (ADAS), electric actuation technologies are rapidly gaining traction. This shift challenges the demand for liquid accumulators, pushing manufacturers to innovate and adapt their products to remain competitive in an evolving automotive landscape focused on electrification and digitalization.
Covid-19 Impact
The COVID-19 pandemic severely impacted the Automobile Liquid Accumulator Market, primarily due to widespread disruptions in the global automotive industry. Factory shutdowns, supply chain bottlenecks for raw materials and components, and a significant drop in vehicle production and sales led to reduced demand for accumulators. Consumer confidence declined, deferring new car purchases. While the market saw a gradual recovery as economies reopened, the initial shock caused substantial revenue losses and forced manufacturers to navigate unprecedented challenges in production planning and logistics.
The hydraulic accumulators segment is expected to be the largest during the forecast period
The hydraulic accumulators segment is expected to account for the largest market share during the forecast period, due to their ability to improve vehicle performance by absorbing shocks, stabilizing hydraulic systems, and enhancing energy efficiency. Growing demand for smoother rides, increased safety, and fuel efficiency in vehicles drives adoption. Additionally, expanding applications in braking, suspension, and power steering systems, along with rising automotive production globally, further propel market growth for hydraulic accumulators.
The aluminum segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the aluminum segment is predicted to witness the highest growth rate, due to its lightweight, high strength, and excellent corrosion resistance. Its use helps reduce overall vehicle weight, improving fuel efficiency and lowering emissions. Additionally, aluminum's superior thermal conductivity enhances heat dissipation in accumulators, boosting performance and durability. Growing demand for lightweight automotive components and stricter environmental regulations are key drivers promoting aluminum adoption in liquid accumulator manufacturing.
During the forecast period, the Asia Pacific region is expected to hold the largest market share due to rapid industrialization and urbanization in countries like China and India are fueling increased vehicle production and infrastructure development, thereby elevating the demand for advanced hydraulic systems. Government initiatives, such as India's 'Make-in-India' campaign, are promoting local manufacturing, further boosting market expansion. Additionally, the rising adoption of electric vehicles and stringent safety regulations are propelling the need for efficient fluid management solutions, positioning the region as a significant contributor to the global market growth.
Over the forecast period, the North America region is anticipated to exhibit the highest CAGR, owing to rising demand for enhanced vehicle safety and performance, as these components efficiently manage hydraulic fluids in braking and suspension systems. Increasing production of electric and hybrid vehicles, stricter emission regulations, and growing automotive manufacturing contribute to market growth. Additionally, technological advancements and rising consumer preference for advanced automotive systems further propel the adoption of liquid accumulators in the region.
Key players in the market
Some of the key players profiled in the Automobile Liquid Accumulator Market include HYDAC International GmbH, Parker-Hannifin Corporation, Bosch Rexroth AG, Eaton Corporation Plc., Freudenberg Sealing Technologies, Nippon Accumulator Co., Ltd., Roth Hydraulics GmbH, HAWE Hydraulik SE, STAUFF, PMC Hydraulics, Buccma, Hydro Leduc, Delta Electronics, Inc., DENSO Corporation, and MAHLE GmbH.
In February 2025, Bosch and Johnson Matthey (JM) have agreed terms to accelerate future projects together. The agreement confirms both parties' intentions to develop and produce catalyst coated membranes (CCM) for use in fuel cell stacks. Transforming and decarbonising the automotive industry requires a mix of powertrain systems and solutions across different vehicle classes.
In June 2023, Eaton inaugurated the expanded Electrical plant in Puducherry. With this expansion, the plant aims to double the capacity of its Medium voltage assembly lines while incorporating enhanced infrastructure. The new block spans an impressive 40,000 square feet and is laid out with cutting-edge manufacturing lines to produce ACBs (Air Circuit Breakers) and MCCBs (Molded Case Circuit Breakers) to ably serve the Electrical Industry deploying the state-of-the-art LEAN manufacturing concepts.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.