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市场调查报告书
商品编码
1747130
日本汽车维修保养市场规模、份额、趋势及预测(按类型、服务、最终用途产业和地区),2025 年至 2033 年Japan Motor Repair and Maintenance Market Size, Share, Trends and Forecast by Type, Service, End Use Industry, and Region, 2025-2033 |
2024年,日本汽车维修保养市场规模达19.694亿美元。展望未来, IMARC Group预计到2033年,该市场规模将达到21.809亿美元,2025-2033年期间的复合年增长率(CAGR)为1.14%。汽车老化、消费者对汽车寿命的更高要求、电动车普及率的成长以及道路安全法规的加强,共同推动市场的发展。汽车保有量的增加和诊断技术的进步也推动了对专业维修保养服务的需求。
电动车(EV)维修服务的成长
随着日本电动车普及率的加快,汽车维修和保养产业正在转变。例如,根据行业报告,预计到 2025 年,日本电动车市场的收入将达到约 72 亿日圆。电动车需要专业的维修技能、诊断工具和安全规程,因此需要增加对技术人员培训和设备升级的投资。传统汽车修理厂正在调整其服务模式,将高压电池诊断、软体更新和电动传动系统维修纳入其中。此外,基于连网汽车资料的预测性维护需求正在上升,这有助于车主减少非计划性停机时间。这一趋势促使业内人士与电动车製造商合作,以获得技术专长和认证。纯电动车服务中心的出现是这项转变的另一个标誌,使日本的维修生态系统能够长期与国家电气化目标和环境永续目标保持一致。
整合先进的诊断和远端资讯处理工具
技术整合正在改变日本各地的汽车维修业务。维修中心越来越依赖先进的诊断软体、远端资讯处理平台和基于人工智慧的系统,以便更精确、更快速地识别故障。这些技术透过提供引擎性能、排放和零件磨损的即时资料,提高了预防性维护和纠正性维护的效率。维修厂正在投资基于云端的系统,以集中管理服务历史记录、维护计划和零件。此外,车辆远端资讯处理技术的应用实现了远端诊断,使维修厂能够提前准备好工具和零件,从而最大限度地缩短维修时间。向数位化工作流程的转变不仅提高了营运透明度,也使服务提供者能够满足消费者不断变化的需求,从而获得更快速、数据驱动的服务体验。例如,2024 年 8 月,旭化成工程公司在汉堡的 SMM 2024 展会上展示了其基于云端的 V-MO 远洋船舶引擎预测性维护系统。 V-MO 与商船三井 (MOL) 共同开发,使用振动感测器资料和云端分析来监测马达健康状况并预测故障,从而可以在船舶抵达港口之前安排维修,从而减少船舶停工时间。
市场研究报告也对竞争格局进行了全面的分析。报告涵盖了市场结构、关键参与者定位、最佳制胜策略、竞争仪錶板和公司评估象限等竞争分析。此外,报告还提供了所有主要公司的详细资料。
The Japan motor repair and maintenance market size reached USD 1,969.4 Million in 2024. Looking forward, IMARC Group expects the market to reach USD 2,180.9 Million by 2033, exhibiting a growth rate (CAGR) of 1.14% during 2025-2033. The market is driven by an aging vehicle fleet, rising consumer demand for vehicle longevity, growth in electric vehicle adoption, and increased road safety regulations. Expanding vehicle ownership and advancements in diagnostic technologies are also contributing to the demand for professional repair and maintenance services.
Growth in Electric Vehicle (EV) Maintenance Services
As electric vehicle adoption accelerates in Japan, the motor repair and maintenance sector is undergoing a shift. For instance, as per industry reports, Japan's electric vehicle market is expected to generate around ¥US$7.2 billion in revenue in 2025. EVs require specialized maintenance skills, diagnostic tools, and safety protocols, leading to increased investment in technician training and equipment upgrades. Traditional garages are adapting their service models to include high-voltage battery diagnostics, software updates, and electric drivetrain servicing. Additionally, the demand for predictive maintenance based on connected vehicle data is rising, helping owners reduce unplanned downtime. This trend is prompting industry players to collaborate with EV manufacturers to gain technical expertise and certification. The emergence of EV-only service centers is another sign of this transition, positioning Japan's repair ecosystem for long-term alignment with national electrification goals and environmental sustainability targets.
Integration of Advanced Diagnostic and Telematics Tools
Technological integration is transforming motor repair operations across Japan. Repair centers are increasingly relying on advanced diagnostic software, telematics platforms, and AI-based systems to identify faults with greater precision and speed. These technologies enhance efficiency in both preventive and corrective maintenance by offering real-time data on engine performance, emissions, and component wear. Workshops are investing in cloud-based systems that centralize service history, maintenance schedules, and parts management. Moreover, the use of vehicle telematics enables remote diagnostics, allowing garages to prepare tools and parts in advance, minimizing repair times. The shift toward digital workflows is not only improving operational transparency but also aligning service providers with evolving consumer expectations for faster, data-driven service experiences. For instance, in August 2024, Asahi Kasei Engineering showcased its cloud-based V-MO predictive maintenance system for ocean vessel motors at SMM 2024 in Hamburg. V-MO, co-developed with Mitsui O.S.K. Lines (MOL), uses vibration sensor data and cloud analytics to monitor motor health and predict failures, allowing for repairs to be scheduled before port arrival, thus reducing vessel downtime.
The market research report has also provided a comprehensive analysis of the competitive landscape. Competitive analysis such as market structure, key player positioning, top winning strategies, competitive dashboard, and company evaluation quadrant has been covered in the report. Also, detailed profiles of all major companies have been provided.