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市場調查報告書
商品編碼
2101541

飛機電動動器市場:市場機會、成長要素、產業趨勢分析及2026-2035年預測

Electromechanical Actuators in Aircraft Market Opportunity, Growth Drivers, Industry Trend Analysis, and Forecast 2026 - 2035

出版日期: | 出版商: Global Market Insights Inc. | 英文 170 Pages | 商品交期: 2-3個工作天內

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簡介目錄

預計到 2025 年,全球飛機用電動執行器市場規模將達到 22 億美元,年複合成長率為 8.6%,到 ​​2035 年將達到 50 億美元。

飛機市場中的機電執行器-IMG1

市場擴張的驅動力主要來自MOAR電動飛機(MEA)平台的日益普及、民航機產量的成長、對飛機輕量化和燃油效率的日益重視、軍用飛機現代化以及不斷擴大的維護、修理和大修(MRO)活動。飛機製造商正穩步用電動作動器技術取代傳統的液壓系統,以提高營運效率、最大限度地減少維護需求並增強整體系統可靠性。向電動飛機的轉型正在民用和國防航空領域持續創造對先進電子機械作動器的需求。對下一代飛機平台的持續投資,以及對節能型飛行系統的需求,正在加速全球的產品應用。隨著航空公司和國防機構優先考慮更高的性能、更低的營運成本和更高的全壽命週期價值,電子機械動器正成為現代飛機架構的重要組成部分。預計持續的技術進步、機身增強以及對飛機系統最佳化的日益重視將在整個預測期內維持市場成長。

市場範圍
開始年份 2025
預測期 2026-2035
上市時的市場規模 22億美元
預測金額 50億美元
複合年成長率 8.6%

隨著飛機向電氣化轉型不斷推進,電子機械執行器在飛機市場中的作用也不斷演變。這是因為在飛機的諸多功能中,電力驅動系統正日益取代傳統的液壓和氣壓技術。這種轉變使得飛機重量更輕、燃油效率更高、運作可靠性更強、維修需求更低。電子機械執行器被廣泛應用於飛機的關鍵系統中,包括飛行控制系統、煞車系統、起落架、推力管理機構以及飛機的各種輔助功能,使其成為下一代飛機平台不可或缺的技術。

到2025年,線性致動器市場佔有率將達到66.8%。該細分市場保持主導地位,主要得益於其在飛機運動控制應用領域的日益普及。在這些應用中,與傳統的液壓執行器相比,線性執行器需要高精度、高承載能力、卓越的運作可靠性和更低的維護成本。此外,線性執行器在支援飛機電氣化的同時還能提供穩定的性能,這進一步增強了其在民用和軍用航空領域的市場需求。

預計到2025年,OEM(目的地設備製造商)細分市場的銷售額將達到18億美元。此細分市場持續成長,主要得益於飛機產量增加、MEA(機械引擎聲學)技術的廣泛應用以及電動執行器系統在飛機生產中日益普及。 OEM執行器之所以備受青睞,是因為它們不僅符合嚴格的認證要求,還能提供高度的系統相容性、長期可靠性以及在飛機整個生命週期內更優異的運作性能。

到2025年,北美飛機電動執行器市場佔有率將達到35.8%。該地區的成長得益於強大的航太製造業基礎、民用和軍用飛機產量的增加以及對飛機電氣化項目投資的不斷擴大。先進航空電子設備的持續發展、國防現代化舉措的推進以及對自主航空技術的日益重視,進一步增強了市場需求。成熟的航太製造商的存在以及對下一代飛機平台的持續投資,將在整個預測期內鞏固北美的主導地位。

目錄

第1章:調查方法和範圍

第2章執行摘要

第3章 行業洞察

  • 產業生態系分析
    • 供應商情況
    • 利潤率
    • 成本結構
    • 每個階段增加的價值
    • 影響價值鏈的因素
    • 中斷
  • 影響產業的因素
    • 促進因素
      • 擴大「MORE電動飛機(MEA)架構」的應用。
      • 增加民航機產量並擴大機隊規模
      • 對輕型和節能型飛機系統的需求日益成長。
      • 軍用飛機現代化與下一代國防計劃
      • 擴大飛機維修和預測性維護(MRO)活動
    • 產業潛在風險與挑戰
      • 開發和認證電子機械執行器系統的成本很高。
      • 功率密度和溫度控管限制
    • 市場機遇
      • 擴大更多電動飛機(MEA)和混合動力電動飛機項目
      • 擴大預測性維護和智慧執行器技術的應用
  • 成長潛力分析
  • 監理情勢
  • 波特的分析
  • PESTLE分析
  • 技術與創新展望
    • 最新科技趨勢
    • 新興技術
  • 價格趨勢
    • 按地區
    • 依產品
  • 定價策略
  • 新興經營模式
  • 合規要求
  • 專利和智慧財產權分析

第4章 競爭情勢

  • 介紹
  • 企業市佔率分析
    • 按地區
    • 市場集中度分析
  • 主要公司的競爭標竿分析
    • 財務績效比較
      • 收入
      • 利潤率
      • R&D
    • 產品系列比較
      • 產品線寬度
      • 科技
      • 創新
    • 區域擴張比較
      • 全球擴張分析
      • 服務網路覆蓋
      • 按地區分類的市場滲透率
    • 競爭定位矩陣
      • 領導者
      • 挑戰者
      • 追蹤者
      • 小眾玩家
    • 戰略展望矩陣
  • 主要進展
    • 併購
    • 夥伴關係和聯盟
    • 技術進步
    • 擴張和投資策略
    • 數位轉型計劃
  • 新興企業競爭公司和新創企業的發展趨勢

第5章 市場估算與預測:依機制類型分類,2022-2035年

  • 線性致動器
  • 旋轉致動器

第6章 市場估計與預測:依應用領域分類,2022-2035年

  • 飛行控制系統
  • 起落架系統
  • 引擎和短艙系統
  • 飛機公用系統
  • 駕駛室和通道系統
  • 其他

第7章 市場估計與預測:依平台分類,2022-2035年

  • 商業航空
    • 窄體飛機
    • 寬體飛機
    • 支線飛機(噴射機和渦槳飛機)
  • 軍事航空
    • 固定翼戰機
    • 軍用運輸機和巡邏機
  • 公務機及通用航空
  • 旋翼飛機
  • 無人駕駛飛行器(UAV)
  • 先進空中運輸(AAM/eVTOL)

第8章 市場估算與預測:依銷售管道分類,2022-2035年

  • OEM(目的地設備製造商)
  • 售後市場

第9章 市場估計與預測:依地區分類,2022-2035年

  • 北美洲
    • 美國
    • 加拿大
  • 歐洲
    • 德國
    • 英國
    • 法國
    • 西班牙
    • 義大利
  • 亞太地區
    • 中國
    • 印度
    • 日本
    • 澳洲
    • 韓國
  • 拉丁美洲
    • 巴西
    • 墨西哥
    • 阿根廷
  • 中東和非洲
    • 南非
    • 沙烏地阿拉伯
    • UAE

第10章:公司簡介

  • 全球主要公司
    • Moog Inc.
    • Safran SA
    • Parker Hannifin Corporation
    • Honeywell Aerospace
    • Liebherr-Aerospace & Transportation SAS
  • 該地區的主要公司
    • 北美洲
      • Curtiss-Wright Corporation
      • Woodward Inc.
      • TransDigm Group Inc.
      • AMETEK, Inc.
      • Aerospace Controls Corporation
    • 歐洲
      • Saab AB
      • Heroux-Devtek Inc.
      • Umbra Group(UMBRAGROUP SpA)
  • 小眾玩家/顛覆者
    • Triumph Group, Inc.
簡介目錄
Product Code: 16311

The Global Electromechanical Actuators in Aircraft Market was valued at USD 2.2 billion in 2025 and is estimated to grow at a CAGR of 8.6% to reach USD 5 billion by 2035.

Electromechanical Actuators in Aircraft Market - IMG1

Market expansion is fueled by the increasing adoption of more electric aircraft (MEA) platforms, rising commercial aircraft production, growing emphasis on reducing aircraft weight and improving fuel efficiency, modernization of military aircraft, and expanding maintenance, repair, and overhaul (MRO) activities. Aircraft manufacturers are steadily replacing conventional hydraulic systems with electric actuation technologies to improve operational efficiency, minimize maintenance requirements, and enhance overall system reliability. The shift toward aircraft electrification is creating sustained demand for advanced electromechanical actuators across both commercial and defense aviation. Continuous investments in next-generation aircraft platforms, combined with the need for energy-efficient onboard systems, are accelerating product adoption worldwide. As airlines and defense organizations prioritize higher performance, lower operating costs, and improved lifecycle value, electromechanical actuators are becoming an essential component of modern aircraft architecture. Ongoing technological advancements, increasing fleet expansion, and greater focus on aircraft system optimization are expected to sustain market growth throughout the forecast period.

Market Scope
Start Year2025
Forecast Year2026-2035
Start Value$2.2 Billion
Forecast Value$5 Billion
CAGR8.6%

The transition toward more electric aircraft continues to reshape the electromechanical actuators in aircraft market, as electrical actuation systems increasingly replace traditional hydraulic and pneumatic technologies across a wide range of aircraft functions. This transformation supports lower aircraft weight, improved fuel economy, enhanced operational reliability, and reduced maintenance requirements. Electromechanical actuators are widely integrated into critical aircraft systems, including flight controls, braking systems, landing gear, thrust management mechanisms, and multiple secondary aircraft functions, making them essential technology for next-generation aviation platforms.

The linear actuators segment accounted for 66.8% share in 2025. The segment maintains its leadership due to increasing deployment across aircraft motion control applications requiring high precision, strong load-bearing capability, superior operational reliability, and lower maintenance compared with conventional hydraulic alternatives. Their ability to deliver consistent performance while supporting aircraft electrification continues to strengthen demand across commercial and military aviation.

The OEM (original equipment manufacturer) segment generated USD 1.8 billion in 2025. Growing aircraft manufacturing volumes, wider implementation of MEA technologies, and increasing integration of electric actuation systems during aircraft production continue to support segment expansion. OEM-installed actuators are preferred because they meet strict certification requirements while delivering high system compatibility, long-term reliability, and enhanced operational performance throughout the aircraft lifecycle.

North America Electromechanical Actuators in Aircraft Market held 35.8% share in 2025. Regional growth is supported by a strong aerospace manufacturing base, increasing production of commercial and military aircraft, and rising investments in aircraft electrification programs. Continuous development of advanced avionics, expanding defense modernization initiatives, and growing focus on autonomous aviation technologies are further strengthening market demand. The presence of established aerospace manufacturers and sustained investments in next-generation aircraft platforms continue to reinforce North America's leadership position throughout the forecast period.

Key players in the global electromechanical actuators in aircraft market include Honeywell Aerospace, Parker Hannifin Corporation, Safran S.A., Liebherr-Aerospace & Transportation SAS, AMETEK, Inc., Curtiss-Wright Corporation, Heroux-Devtek Inc., TransDigm Group Inc., Triumph Group, Inc., Woodward Inc., Saab AB, Aerospace Controls Corporation, Umbra Group (UMBRAGROUP S.p.A.). Companies operating in the electromechanical actuators in aircraft market are adopting several strategies to strengthen their market position and expand their competitive presence. They are investing heavily in research and development to improve actuator efficiency, reduce weight, enhance durability, and support aircraft electrification initiatives. Manufacturers are broadening production capabilities, strengthening partnerships with aircraft OEMs, and expanding long-term supply agreements to secure new aircraft programs. Many companies are also focusing on product innovation through compact designs, intelligent monitoring capabilities, and advanced motion control technologies that improve operational performance.

Table of Contents

Chapter 1 Methodology and Scope

  • 1.1 Market scope and definition
  • 1.2 Research design
    • 1.2.1 Research approach
    • 1.2.2 Data collection methods
  • 1.3 Data mining sources
    • 1.3.1 Global
    • 1.3.2 Regional/Country
  • 1.4 Base estimates and calculations
    • 1.4.1 Base year calculation
    • 1.4.2 Key trends for market estimation
  • 1.5 Primary research and validation
    • 1.5.1 Primary sources
  • 1.6 Forecast model
  • 1.7 Research assumptions and limitations

Chapter 2 Executive Summary

  • 2.1 Industry 360° synopsis, 2022 - 2035
  • 2.2 Key market trends
    • 2.2.1 Mechanism type trends
    • 2.2.2 Application trends
    • 2.2.3 Platform trends
    • 2.2.4 Sales channel trends
    • 2.2.5 Regional trends
  • 2.3 TAM Analysis, 2026-2035
  • 2.4 CXO perspectives: Strategic imperatives

Chapter 3 Industry Insights

  • 3.1 Industry ecosystem analysis
    • 3.1.1 Supplier Landscape
    • 3.1.2 Profit Margin
    • 3.1.3 Cost structure
    • 3.1.4 Value addition at each stage
    • 3.1.5 Factor affecting the value chain
    • 3.1.6 Disruptions
  • 3.2 Industry impact forces
    • 3.2.1 Growth drivers
      • 3.2.1.1 Growing adoption of More Electric Aircraft (MEA) architecture
      • 3.2.1.2 Increasing commercial aircraft production and fleet expansion
      • 3.2.1.3 Rising demand for lightweight and fuel-efficient aircraft systems
      • 3.2.1.4 Military aircraft modernization and next-generation defense programs
      • 3.2.1.5 Expansion of aircraft retrofit and predictive maintenance (MRO) activities
    • 3.2.2 Industry pitfalls and challenges
      • 3.2.2.1 High development and certification costs of electromechanical actuator systems
      • 3.2.2.2 Power density and thermal management limitations
    • 3.2.3 Market opportunities
      • 3.2.3.1 Expansion of more electric aircraft (MEA) and hybrid-electric aircraft programs
      • 3.2.3.2 Growing adoption of predictive maintenance and smart actuator technologies
  • 3.3 Growth potential analysis
  • 3.4 Regulatory landscape
    • 3.4.1 North America
    • 3.4.2 Europe
    • 3.4.3 Asia Pacific
    • 3.4.4 Latin America
    • 3.4.5 Middle East & Africa
  • 3.5 Porter's analysis
  • 3.6 PESTEL analysis
  • 3.7 Technology and Innovation landscape
    • 3.7.1 Current technological trends
    • 3.7.2 Emerging technologies
  • 3.8 Price trends
    • 3.8.1 By region
    • 3.8.2 By product
  • 3.9 Pricing Strategies
  • 3.10 Emerging Business Models
  • 3.11 Compliance Requirements
  • 3.12 Patent and IP analysis

Chapter 4 Competitive Landscape, 2025

  • 4.1 Introduction
  • 4.2 Company market share analysis
    • 4.2.1 By region
      • 4.2.1.1 North America
      • 4.2.1.2 Europe
      • 4.2.1.3 Asia Pacific
      • 4.2.1.4 Latin America
      • 4.2.1.5 Middle East & Africa
    • 4.2.2 Market concentration analysis
  • 4.3 Competitive benchmarking of key players
    • 4.3.1 Financial performance comparison
      • 4.3.1.1 Revenue
      • 4.3.1.2 Profit margin
      • 4.3.1.3 R&D
    • 4.3.2 Product portfolio comparison
      • 4.3.2.1 Product range breadth
      • 4.3.2.2 Technology
      • 4.3.2.3 Innovation
    • 4.3.3 Geographic presence comparison
      • 4.3.3.1 Global footprint analysis
      • 4.3.3.2 Service network coverage
      • 4.3.3.3 Market penetration by region
    • 4.3.4 Competitive positioning matrix
      • 4.3.4.1 Leaders
      • 4.3.4.2 Challengers
      • 4.3.4.3 Followers
      • 4.3.4.4 Niche players
    • 4.3.5 Strategic outlook matrix
  • 4.4 Key developments
    • 4.4.1 Mergers and acquisitions
    • 4.4.2 Partnerships and collaborations
    • 4.4.3 Technological advancements
    • 4.4.4 Expansion and investment strategies
    • 4.4.5 Digital transformation initiatives
  • 4.5 Emerging/ startup competitors landscape

Chapter 5 Market Estimates and Forecast, By Mechanism Type, 2022 - 2035 (USD Million)

  • 5.1 Key trends
  • 5.2 Linear Actuators
  • 5.3 Rotary Actuators

Chapter 6 Market Estimates and Forecast, By Application, 2022 - 2035 (USD Million)

  • 6.1 Key trends
  • 6.2 Flight Control Systems
  • 6.3 Landing Gear Systems
  • 6.4 Engine & Nacelle Systems
  • 6.5 Aircraft Utility Systems
  • 6.6 Cabin & Access Systems
  • 6.7 Others

Chapter 7 Market Estimates and Forecast, By Platform, 2022 - 2035 (USD Million)

  • 7.1 Key trends
  • 7.2 Commercial Aviation
    • 7.2.1 Narrowbody Aircraft
    • 7.2.2 Widebody Aircraft
    • 7.2.3 Regional Aircraft (Jet & Turboprop)
  • 7.3 Military Aviation
    • 7.3.1 Fixed-Wing Combat Aircraft
    • 7.3.2 Military Transport & Patrol Aircraft
  • 7.4 Business Jets & General Aviation
  • 7.5 Rotorcraft
  • 7.6 Unmanned Aerial Vehicles (UAVs)
  • 7.7 Advanced Air Mobility (AAM/eVTOL)

Chapter 8 Market Estimates and Forecast, By Sales Channel, 2022 - 2035 (USD Million)

  • 8.1 Key trends
  • 8.2 OEM (Original Equipment Manufacturer)
  • 8.3 Aftermarket

Chapter 9 Market Estimates and Forecast, By Region, 2022 - 2035 (USD Million)

  • 9.1 Key trends
  • 9.2 North America
    • 9.2.1 U.S.
    • 9.2.2 Canada
  • 9.3 Europe
    • 9.3.1 Germany
    • 9.3.2 UK
    • 9.3.3 France
    • 9.3.4 Spain
    • 9.3.5 Italy
  • 9.4 Asia Pacific
    • 9.4.1 China
    • 9.4.2 India
    • 9.4.3 Japan
    • 9.4.4 Australia
    • 9.4.5 South Korea
  • 9.5 Latin America
    • 9.5.1 Brazil
    • 9.5.2 Mexico
    • 9.5.3 Argentina
  • 9.6 Middle East and Africa
    • 9.6.1 South Africa
    • 9.6.2 Saudi Arabia
    • 9.6.3 UAE

Chapter 10 Company Profiles

  • 10.1 Global Key Players
    • 10.1.1 Moog Inc.
    • 10.1.2 Safran S.A.
    • 10.1.3 Parker Hannifin Corporation
    • 10.1.4 Honeywell Aerospace
    • 10.1.5 Liebherr-Aerospace & Transportation SAS
  • 10.2 Regional key players
    • 10.2.1 North America
      • 10.2.1.1 Curtiss-Wright Corporation
      • 10.2.1.2 Woodward Inc.
      • 10.2.1.3 TransDigm Group Inc.
      • 10.2.1.4 AMETEK, Inc.
      • 10.2.1.5 Aerospace Controls Corporation
    • 10.2.2 Europe
      • 10.2.2.1 Saab AB
      • 10.2.2.2 Heroux-Devtek Inc.
      • 10.2.2.3 Umbra Group (UMBRAGROUP S.p.A.)
  • 10.3 Niche Players/Disruptors
    • 10.3.1 Triumph Group, Inc.