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市场调查报告书
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1904990
全球海军平台维护、修理和大修 (MRO) 市场:2026-2036 年Global Defense MRO - Naval Platforms Market 2026-2036 |
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全球海军平台 MRO 市场预计在 2026 年达到 91.2 亿美元,预计到 2036 年将达到 143.3 亿美元,2026 年至 2036 年的复合年增长率 (CAGR) 为 4.62%。

全球海军平台维护、修理和大修 (MRO) 市场旨在应对军舰、潜艇和支援舰艇在其长达数十年的服役期内所面临的独特挑战。海军MRO涵盖了从例行码头维护和在役维修到大型干船坞翻新、中期现代化改造以及复杂的潜艇大修週期等所有作业。该领域需要考虑许多因素,例如腐蚀性海洋环境、专用推进系统(包括核动力系统)、先进作战系统以及大型舰艇的航空整合。市场结构包括海军造船厂(公立和私人)、原始设备製造商(OEM)服务团队和专业船舶工程公司,所有这些机构都必须在严格的安全、保全和环境法规下运作。海军MRO尤其需要长期规划,并且需要对专用基础设施(例如干船坞、起重机和测试设施)进行大量资本投资。
海军MRO的技术进步主要集中在检测方法、维修技术和规划工具方面。水下无人机和遥控潜水器(ROV)无需靠泊即可对船体和螺旋桨进行详细检查。先进的无损检测方法,包括相控阵超音波检测和数位射线照相,提高了厚船体钢板和关键焊接缺陷检测的精度。雷射扫描技术产生精确的船舱三维模型,以辅助改装规划和零件製造。机器人系统可在狭小空间内执行危险任务,例如油箱清洗和焊接维修。数位孪生技术可对整个船舶系统进行建模,预测维护需求并优化坞修週期。扩增实境系统可指导技术人员在拥挤的机舱内完成复杂的组装和维修程序。这些技术有助于提高工作质量,减少船舶停机时间,并提高在充满挑战的海上维护环境中作业人员的安全。
地缘政治竞争正在推动海军的扩张和现代化计划,随着舰队规模的扩大和老化,MRO需求显着增长。海军舰艇的使用寿命(通常为30-50年)需要多次重大翻新才能保持作战能力并整合新技术。日益频繁的驻防任务、航行自由巡逻和演习,加速了舰艇的磨损和维护需求。不断演变的环境、安全和网路安全标准的监管要求,促使舰艇在其整个生命週期内进行定期升级。预算限制了新舰艇的建造,迫使各国海军投入巨资,透过全面的维护、修理和大修(MRO)计画来延长现有舰艇的使用寿命。此外,舰艇数量减少而舰艇能力提升的趋势,加剧了单艘舰艇无法运作对作战的影响,凸显了高效且可预测的MRO执行的重要性。
海军MRO能力与各地区的造船业和战略海事优先事项密切相关。北美拥有大型公共海军造船厂,与私营部门的能力形成互补,尤其是在复杂的核潜艇大修方面。欧洲各国正在北约框架内透过设施共享和标准化程序来加强海军MRO合作。在亚太地区,随着中国、印度和韩国等国不断扩充海军舰队和配套的维护基础设施,相关能力正在迅速发展。中东国家正在投资建造海军维护、修理和大修(MRO)设施,以支持其日益增长的区域海军雄心,同时减少对外国的依赖。南美国家正致力于透过国际技术合作,维护其规模有限但具有重要战略意义的潜舰和护卫舰能力。一些小岛国正在发展维护与专属经济区保护任务相关的巡逻艇的专业知识。
总部位于韩国的HJ造船株式会社(HJSC)已确认,其已获得美国海军供应系统司令部(NAVSUP)和军事海运司令部(MSC)授予的中期维护(MTA)合同,负责维护4万吨级的刘易斯与克拉克级干货和弹药运输舰“阿米莉亚·艾尔哈特”(USNS Amelia Airhart)。此合约涵盖定期维护和保养活动,以确保舰艇的作战准备状态和任务能力。
这份合约标誌着HJSC自正式进入美国海军维护、修理和大修(MRO)领域以来取得的首个实质成果。战略补给舰的MTA合约的授予,展现了HJSC日益增强的可靠性和技术能力,符合美国海军的严格标准。 "阿米莉亚/埃尔哈特号" 在补给行动中发挥关键作用,负责向舰队单位运输弹药、补给品和干货,为海军的后勤保障提供支援。
这份合约对HJSC具有更广泛的战略意义,其影响远超其直接的营运范围。它确立了HJSC作为美国海军后勤支援框架中新兴国际服务提供者的地位,并标誌着HJSC在支持美国海军后勤需求方面,对盟国造船厂的开放态度日益增强。这也反映了全球伙伴关係在海军维护、维修和大修 (MRO) 活动中日益重要的作用,而这种作用的驱动力是不断扩大的舰队规模以及在地理分散的作战区域内不断增长的维护需求。
按地区
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本章将对未来十年国防 MRO - 海军平台市场进行分析,详细概述其成长情况、发展趋势、技术应用概况以及整体市场吸引力。
本部分讨论了预计将影响该市场的十大技术,以及这些技术可能对整体市场产生的影响。
以上各部分详细涵盖了该市场未来十年的国防MRO-海军平台市场预测。
本部分涵盖了区域国防MRO(海军平台)市场的趋势、驱动因素、限制因素、挑战以及政治、经济、社会和技术因素。此外,还提供了详细的区域市场预测和情境分析。区域分析最后包括主要公司概况、供应商状况和公司基准分析。目前市场规模是基于一切照旧情境估算的。
北美
驱动因素、限制因素与挑战
PEST分析
主要公司
供应商层级结构
公司标竿分析
欧洲
中东
亚太地区
南美洲
本章涵盖该市场的主要国防项目以及最新的市场新闻和专利申请。此外,本章也提供国家层级的十年市场预测和情境分析。
美国
国防项目
最新消息
专利
当前市场技术成熟度
加拿大
义大利
法国
德国
荷兰
比利时
西班牙
瑞典
希腊
澳洲
南非
印度
中国
俄罗斯
南非韩国
日本
马来西亚
新加坡
巴西
机会矩阵帮助读者了解该市场中高机会细分领域。
本报告总结了我们专家对此市场分析潜力的意见。
The Global MRO-Naval market is estimated at USD 9.12 billion in 2026, projected to grow to USD 14.33 billion by 2036 at a Compound Annual Growth Rate (CAGR) of 4.62% over the forecast period 2026-2036.

The Global Defense Maintenance, Repair, and Overhaul (MRO) market for Naval Platforms addresses the unique challenges of sustaining warships, submarines, and support vessels through their multi-decade service lives. Naval MRO encompasses everything from routine dockside maintenance and voyage repairs to extensive dry-dock refurbishments, mid-life modernizations, and complex submarine overhaul cycles. This sector must account for corrosive marine environments, specialized propulsion systems (including nuclear), sophisticated combat systems, and the integration of aviation facilities on larger vessels. The market structure involves naval shipyards (both public and privatized), OEM service teams, and specialized marine engineering firms operating within stringent safety, security, and environmental regulations. Naval MRO represents particularly long planning horizons and substantial capital investment in specialized infrastructure like dry docks, cranes, and testing facilities.
Technological advancement in naval MRO focuses on inspection methodologies, repair techniques, and planning tools. Underwater drones and remotely operated vehicles enable detailed hull and propeller inspections without dry-docking. Advanced non-destructive testing methods-including phased array ultrasonics and digital radiography-improve defect detection in thick hull plating and critical welds. Laser scanning creates precise 3D models of ship compartments to support modification planning and parts fabrication. Robotic systems perform hazardous tasks like tank cleaning and weld repair in confined spaces. Digital twin technology models entire vessel systems to predict maintenance needs and optimize dry-dock periods. Augmented reality systems guide technicians through complex assembly and repair procedures in crowded machinery spaces. These technologies enhance work quality, reduce vessel immobilization time, and improve worker safety in challenging maritime maintenance environments.
Geopolitical competition driving naval expansion and modernization programs generates substantial MRO demand as fleets grow and age simultaneously. Extended service lives of naval vessels-often 30-50 years-necessitate multiple major refurbishment cycles to maintain operational capability and integrate new technologies. Increasing operational tempos for presence missions, freedom of navigation patrols, and exercises accelerate wear and maintenance requirements. Regulatory compliance with evolving environmental, safety, and cybersecurity standards mandates regular upgrades throughout vessel lifecycles. Budget constraints that limit new construction force navies to invest more heavily in extending existing hulls through comprehensive MRO programs. Additionally, the trend toward fewer but more capable vessels increases the operational impact of any single ship being unavailable, raising the premium on efficient, predictable MRO execution.
Naval MRO capabilities correlate closely with regional shipbuilding industries and strategic maritime priorities. North America maintains extensive public naval shipyards supplemented by private sector capacity, particularly for complex nuclear submarine overhaul. European nations increasingly collaborate on naval MRO through shared facilities and standardized procedures within NATO frameworks. The Asia-Pacific region shows rapid capability development as countries like China, India, and South Korea expand both naval fleets and supporting maintenance infrastructure. Middle Eastern nations invest in naval MRO facilities to support growing regional naval ambitions while reducing dependence on foreign support. South American countries focus on sustaining limited but strategically important submarine and frigate capabilities through international technical partnerships. Small island nations develop specialized expertise in patrol boat maintenance relevant to their exclusive economic zone protection missions.
South Korea-based HJ Shipbuilding & Construction (HJSC) confirmed the signing of a Mid-Term Availability (MTA) contract with the U.S. Navy's Naval Supply Systems Command (NAVSUP) and the Military Sealift Command (MSC) for the USNS Amelia Earhart, a 40,000-ton Lewis and Clark-class dry cargo and ammunition vessel. The agreement covers scheduled maintenance and sustainment activities aimed at ensuring the vessel's operational readiness and mission availability.
This contract represents HJSC's first concrete milestone following its formal entry into the U.S. Navy maintenance, repair, and overhaul domain. Securing an MTA assignment for a strategic logistics vessel underscores the company's growing credibility and technical capability in meeting stringent U.S. Navy standards. The Amelia Earhart plays a vital role in replenishment operations, supporting sustained naval deployments by transporting ammunition, provisions, and dry cargo to fleet units.
Beyond its immediate operational scope, the agreement holds broader strategic significance for HJSC. It positions the company as an emerging international service provider within the U.S. naval sustainment ecosystem and signals increasing openness to allied shipyards supporting U.S. naval logistics requirements. The contract also reflects the expanding role of global partnerships in naval MRO activities, particularly as fleet sizes grow and maintenance demands increase across geographically dispersed theaters of operation.
By Region
By Component
By Vessel Type
The 10-year Defense MRO - Naval Platforms Market analysis would give a detailed overview of Defense MRO - Naval Platforms Market growth, changing dynamics, technology adoption overviews and the overall market attractiveness is covered in this chapter.
This segment covers the top 10 technologies that is expected to impact this market and the possible implications these technologies would have on the overall market.
The 10-year Defense MRO - Naval Platforms Market forecast of this market is covered in detailed across the segments which are mentioned above.
The regional Defense MRO - Naval Platforms Market trends, drivers, restraints and Challenges of this market, the Political, Economic, Social and Technology aspects are covered in this segment. The market forecast and scenario analysis across regions are also covered in detailed in this segment. The last part of the regional analysis includes profiling of the key companies, supplier landscape and company benchmarking. The current market size is estimated based on the normal scenario.
North America
Drivers, Restraints and Challenges
PEST
Key Companies
Supplier Tier Landscape
Company Benchmarking
Europe
Middle East
APAC
South America
This chapter deals with the key defense programs in this market, it also covers the latest news and patents which have been filed in this market. Country level 10 year market forecast and scenario analysis are also covered in this chapter.
US
Defense Programs
Latest News
Patents
Current levels of technology maturation in this market
Canada
Italy
France
Germany
Netherlands
Belgium
Spain
Sweden
Greece
Australia
South Africa
India
China
Russia
South Korea
Japan
Malaysia
Singapore
Brazil
The opportunity matrix helps the readers understand the high opportunity segments in this market.
Hear from our experts their opinion of the possible analysis for this market.