Europe Aerospace Robotics Market Outlook, 2029

The Europe Aerospace Robotics Market is projected to reach a value exceeding EUR 4.2 billion by 2027, driven by rise in advancement in technology.

According to publisher, The European aerospace robotics market is experiencing significant growth, driven by a focus on efficiency, rising production demands, and Industry 4.0 initiatives. This report provides a concise overview of the market, exploring key insights, dynamics, segments, regional variations, recent developments, and the competitive landscape. Market Insights

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Market Growth: The European aerospace robotics market is projected to reach a value exceeding EUR 4.2 billion by 2027, with a promising CAGR exceeding 12%. This growth signifies the increasing adoption of robotics in various aspects of European aerospace manufacturing and maintenance. Growth Drivers: Several factors are propelling the European aerospace robotics market: Efficiency and Productivity Gains:

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Manmayi Raval

Manmayi Raval

Research Consultant

Robots excel at repetitive tasks with high precision, leading to faster production times and improved quality control in aircraft manufacturing. Example: Airbus utilizes robotic arms for automated drilling and riveting of aircraft fuselage sections, enhancing production line efficiency. Labor Cost Management: Robotics can automate manual labor tasks, reducing reliance on a skilled workforce and associated costs, particularly in high-wage European countries. Example: Robots can handle tasks like painting aircraft wings in cleanroom environments, minimizing health risks and labor costs. Industry 4.0 Focus: Industry 4.0 initiatives across Europe promote automation and smart manufacturing processes, driving the adoption of robotics within the aerospace sector. Example: Germany's Industries 4.0 plan emphasizes advancements in areas like robotics and data exchange, fostering innovation in automated aerospace manufacturing solutions. Market Dynamics

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Manmayi Raval

The European aerospace robotics market is a dynamic environment shaped by several key trends: Advancements in Technology: Developments in AI, machine learning, and sensor technology are leading to more adaptable and intelligent robots for complex aerospace applications. Example: AI-powered robots can learn and adapt to changing manufacturing conditions on aircraft assembly lines, optimizing production processes. Sustainability Concerns: The aerospace industry is increasingly focused on sustainable practices. Robots can contribute by minimizing material waste, optimizing resource utilization, and potentially reducing energy consumption in manufacturing processes. Skilled Workforce Gap: While robots address labor costs, a skilled workforce is still required for programming, maintenance, and overseeing robotic systems. Bridging the digital skills gap is crucial. Market Segments The European aerospace robotics market can be segmented based on various criteria: Robot Type: Articulated Robots: These robots offer high flexibility and a wide range of motion, ideal for tasks like assembly, welding, and painting in various aircraft manufacturing stages. Cartesian Robots: These robots excel in precise linear movements, suitable for tasks like drilling, riveting, and automated inspections on aircraft components. Application: Manufacturing: Robots are employed extensively in aircraft component manufacturing, final assembly lines, and automating various production processes. Maintenance, Repair, and Overhaul (MRO): Robots are increasingly used for automated inspections, non-destructive testing, and assisting with repairs on aircraft. Logistics: Robots can efficiently handle and transport aircraft parts and materials within manufacturing facilities, optimizing supply chains within the aerospace sector. Regional Analysis While Europe functions as a single market, there are variations in market dynamics across different regions: Western Europe: Western Europe holds a dominant position due to a concentration of leading aerospace manufacturers, established robotics players, and a strong focus on automation. Example: Countries like Germany, France, and the United Kingdom are at the forefront of adopting robotic solutions in their aerospace industries. Central and Eastern Europe (CEE): The CEE region is experiencing growth in the aerospace robotics market, driven by government support for automation and a growing aerospace sector. Example: Countries like Poland and the Czech Republic are attracting investments in aerospace manufacturing and implementing robotic solutions to enhance competitiveness. Key Developments The European aerospace robotics market is witnessing continuous innovation: Strategic Collaborations: Partnerships between robotics companies and aerospace manufacturers are accelerating the development and integration of robotic solutions in aircraft production. Example: Airbus partnered with a leading industrial robotics company to develop cobots (collaborative robots) for assisting with tasks on aircraft assembly lines. Focus on User-Friendly Interfaces: Robot manufacturers are developing intuitive programming interfaces and user-friendly control systems to facilitate adoption by human operators within the aerospace sector. Competitive Landscape The European aerospace robotics market is a competitive landscape with established players and emerging companies: European Robotics Specialists: Niche European robotics companies focus on developing solutions specifically tailored to the needs of the European aerospace sector. Example: A company might specialize in robots with explosion-proof designs for handling hazardous materials in aircraft painting processes or robots compliant with strict European safety regulations. Aerospace Manufacturers: Major European aerospace manufacturers like Airbus are investing in research and development of their own robotic solutions to address specific production requirements and integrate seamlessly with existing manufacturing processes. The European aerospace robotics market presents a promising future. As technology advances, regulations evolve, and the focus on sustainability intensifies, we can expect to see even more innovative and efficient robotic solutions take flight across the European aerospace industry.

Table of Contents

  • 1 Introduction 7
  • 1.1 Industry Definition and Research Scope 7
  • 1.1.1 Industry Definition 7
  • 1.1.2 Research Scope 8
  • 1.2 Research Methodology 11
  • 1.2.1 Overview of Market Research Methodology 11
  • 1.2.2 Market Assumption 12
  • 1.2.3 Secondary Data 12
  • 1.2.4 Primary Data 12
  • 1.2.5 Data Filtration and Model Design 13
  • 1.2.6 Market Size/Share Estimation 14
  • 1.2.7 Research Limitations 15
  • 1.3 Executive Summary 16
  • 2 Market Overview and Dynamics 19
  • 2.1 Market Size and Forecast 19
  • 2.1.1 Impact of COVID-19 on World Economy 20
  • 2.1.2 Impact of COVID-19 on the Market 23
  • 2.1.3 Impact of Russia-Ukraine Conflict: War Slows Economic Recovery 25
  • 2.2 Major Growth Drivers 29
  • 2.3 Market Restraints and Challenges 33
  • 2.4 Emerging Opportunities and Market Trends 36
  • 2.5 Porter’s Fiver Forces Analysis 40
  • 3 Segmentation of Europe Market by Offering 44
  • 3.1 Market Overview by Offering 44
  • 3.2 Robots & Peripherals 46
  • 3.3 Software 47
  • 3.4 Services 48
  • 4 Segmentation of Europe Market by Robot Type 49
  • 4.1 Market Overview by Robot Type 49
  • 4.2 Articulated Robots 51
  • 4.3 Parallel Robots 52
  • 4.4 Linear/Cartesian Robots 53
  • 4.5 SCARA Robots 54
  • 4.6 Collaborative Robots (Cobots) 55
  • 4.7 Other Robot Types 56
  • 5 Segmentation of Europe Market by Component 57
  • 5.1 Market Overview by Component 57
  • 5.2 Controller 59
  • 5.3 Sensor 60
  • 5.4 Drive 61
  • 5.5 End Effector 62
  • 5.5.1 Welding Guns 64
  • 5.5.2 Grippers 65
  • 5.5.3 Robotic Screwdrivers 66
  • 5.5.4 Sanding & Deburring Tools 67
  • 5.5.5 Specialty & Hybrid End Effectors 68
  • 5.5.6 Other End Effectors 69
  • 5.6 Arm Processor 70
  • 5.7 Other Components 71
  • 6 Segmentation of Europe Market by Payload 72
  • 6.1 Market Overview by Payload 72
  • 6.2 Up to 16.00 kg 74
  • 6.3 16.01–60.00 kg 75
  • 6.4 60.01–225.00 kg 76
  • 6.5 More than 225.00 kg 77
  • 7 Segmentation of Europe Market by Application 78
  • 7.1 Market Overview by Application 78
  • 7.2 Material Handling 80
  • 7.3 Drilling & Fastening 81
  • 7.4 Soldering & Welding 82
  • 7.5 Assembling & Disassembling 83
  • 7.6 Painting & Dispensing 84
  • 7.7 Cutting & Processing 85
  • 7.8 Non-Destructive Testing & Inspection 86
  • 7.9 Other Applications 87
  • 8 European Market 2022-2032 by Country 88
  • 8.1 Overview of European Market 88
  • 8.2 Germany 91
  • 8.3 U.K. 93
  • 8.4 France 95
  • 8.5 Spain 97
  • 8.6 Italy 99
  • 8.7 Russia 101
  • 8.8 Rest of European Market 103
  • 9 Competitive Landscape 105
  • 9.1 Overview of Key Vendors 105
  • 9.2 New Product Launch, Partnership, Investment, and M&A 109
  • 9.3 Company Profiles 114
  • ABB Ltd. 114
  • Boston Dynamics 116
  • Comau S.p.A. 117
  • Electroimpact Inc. 118
  • FANUC Corporation 119
  • Festo Inc. 120
  • General Electric Company 121
  • Gudel Group AG 122
  • JH Robotics Inc. 123
  • Kawasaki Heavy Industries Ltd. 124
  • KUKA AG (Midea Group) 125
  • Mtorres 126
  • Nachi-Fujikoshi Corp. 127
  • Oliver Crispin Robotics Limited 128
  • Omron Adept Technology Inc. 129
  • Seiko Epson Corp. 130
  • Staubli International AG 131
  • Teradyne Inc. 132
  • Universal Robots A/S 133
  • Yaskawa Electric Corporation 134
  • RELATED REPORTS 135



Table 1. Snapshot of Europe Aerospace Robotics Market in Balanced Perspective, 2022-2032 17
Table 2. World Economic Outlook, 2021-2031 21
Table 3. World Economic Outlook, 2021-2023 22
Table 4. Scenarios for Economic Impact of Ukraine Crisis 26
Table 5. Main Product Trends and Market Opportunities in Europe Aerospace Robotics Market 36
Table 6. Europe Aerospace Robotics Market by Offering, 2022-2032, $ mn 44
Table 7. Europe Aerospace Robotics Market by Robot Type, 2022-2032, $ mn 49
Table 8. Europe Aerospace Robotics Market by Component, 2022-2032, $ mn 57
Table 9. Europe Aerospace Robotics Market: End Effectors by Type, 2022-2032, $ mn 63
Table 10. Europe Aerospace Robotics Market by Payload, 2022-2032, $ mn 72
Table 11. Europe Aerospace Robotics Market by Application, 2022-2032, $ mn 78
Table 12. Europe Aerospace Robotics Market by Country, 2022-2032, $ mn 90
Table 13. Germany Aerospace Robotics Market by Robot Type, 2022-2032, $ mn 92
Table 14. Germany Aerospace Robotics Market by Component, 2022-2032, $ mn 92
Table 15. Germany Aerospace Robotics Market by Application, 2022-2032, $ mn 92
Table 16. U.K. Aerospace Robotics Market by Robot Type, 2022-2032, $ mn 94
Table 17. U.K. Aerospace Robotics Market by Component, 2022-2032, $ mn 94
Table 18. U.K. Aerospace Robotics Market by Application, 2022-2032, $ mn 94
Table 19. France Aerospace Robotics Market by Robot Type, 2022-2032, $ mn 96
Table 20. France Aerospace Robotics Market by Component, 2022-2032, $ mn 96
Table 21. France Aerospace Robotics Market by Application, 2022-2032, $ mn 96
Table 22. Spain Aerospace Robotics Market by Robot Type, 2022-2032, $ mn 98
Table 23. Spain Aerospace Robotics Market by Component, 2022-2032, $ mn 98
Table 24. Spain Aerospace Robotics Market by Application, 2022-2032, $ mn 98
Table 25. Italy Aerospace Robotics Market by Robot Type, 2022-2032, $ mn 100
Table 26. Italy Aerospace Robotics Market by Component, 2022-2032, $ mn 100
Table 27. Italy Aerospace Robotics Market by Application, 2022-2032, $ mn 100
Table 28. Russia Aerospace Robotics Market by Robot Type, 2022-2032, $ mn 102
Table 29. Russia Aerospace Robotics Market by Component, 2022-2032, $ mn 102
Table 30. Russia Aerospace Robotics Market by Application, 2022-2032, $ mn 102
Table 31. Aerospace Robotics Market in Rest of Europe by Country, 2022-2032, $ mn 104
Table 32. Breakdown of World Market by Key Vendor, 2022, % 107
Table 33. Recent News about Product Launch & Development 110
Table 34. Recent News about Collaborations & Partnerships 111
Table 35. ABB Ltd.: Company Snapshot 114
Table 36. ABB Ltd.: Business Segmentation 115
Table 37. ABB Ltd.: Product Portfolio 115



Figure 1. Research Method Flow Chart 11
Figure 2. Bottom-up Approach and Top-down Approach for Market Estimation 14
Figure 3. Europe Market Forecast in Optimistic, Conservative and Balanced Perspectives, 2022-2032 16
Figure 4. Europe Aerospace Robotics Market, 2022-2032, $ mn 19
Figure 5. Impact of COVID-19 on Business 23
Figure 6. Primary Drivers and Impact Factors of Europe Aerospace Robotics Market 29
Figure 7. World Smart Factory Market, 2019-2026, $ mn 32
Figure 8. Primary Restraints and Impact Factors of Europe Aerospace Robotics Market 33
Figure 9. Investment Opportunity Analysis 37
Figure 10. Porter’s Fiver Forces Analysis of Europe Aerospace Robotics Market 40
Figure 11. Breakdown of Europe Aerospace Robotics Market by Offering, 2022-2032, % of Revenue 45
Figure 12. Europe Addressable Market Cap in 2023-2032 by Offering, Value ($ mn) and Share (%) 45
Figure 13. Europe Aerospace Robotics Market by Offering: Robots & Peripherals, 2022-2032, $ mn 46
Figure 14. Europe Aerospace Robotics Market by Offering: Software, 2022-2032, $ mn 47
Figure 15. Europe Aerospace Robotics Market by Offering: Services, 2022-2032, $ mn 48
Figure 16. Breakdown of Europe Aerospace Robotics Market by Robot Type, 2022-2032, % of Sales Revenue 50
Figure 17. Europe Addressable Market Cap in 2023-2032 by Robot Type, Value ($ mn) and Share (%) 50
Figure 18. Europe Aerospace Robotics Market by Robot Type: Articulated Robots, 2022-2032, $ mn 51
Figure 19. Europe Aerospace Robotics Market by Robot Type: Parallel Robots, 2022-2032, $ mn 52
Figure 20. Europe Aerospace Robotics Market by Robot Type: Linear/Cartesian Robots, 2022-2032, $ mn 53
Figure 21. Europe Aerospace Robotics Market by Robot Type: SCARA Robots, 2022-2032, $ mn 54
Figure 22. Europe Aerospace Robotics Market by Robot Type: Collaborative Robots (Cobots), 2022-2032, $ mn 55
Figure 23. Europe Aerospace Robotics Market by Robot Type: Other Robot Types, 2022-2032, $ mn 56
Figure 24. Breakdown of Europe Aerospace Robotics Market by Component, 2022-2032, % of Sales Revenue 58
Figure 25. Europe Addressable Market Cap in 2023-2032 by Component, Value ($ mn) and Share (%) 58
Figure 26. Europe Aerospace Robotics Market by Component: Controller, 2022-2032, $ mn 59
Figure 27. Europe Aerospace Robotics Market by Component: Sensor, 2022-2032, $ mn 60
Figure 28. Europe Aerospace Robotics Market by Component: Drive, 2022-2032, $ mn 61
Figure 29. Europe Aerospace Robotics Market by Component: End Effector, 2022-2032, $ mn 62
Figure 30. Europe Aerospace Robotics Market by End Effector: Welding Guns, 2022-2032, $ mn 64
Figure 31. Europe Aerospace Robotics Market by End Effector: Grippers, 2022-2032, $ mn 65
Figure 32. Europe Aerospace Robotics Market by End Effector: Robotic Screwdrivers, 2022-2032, $ mn 66
Figure 33. Europe Aerospace Robotics Market by End Effector: Sanding & Deburring Tools, 2022-2032, $ mn 67
Figure 34. Europe Aerospace Robotics Market by End Effector: Specialty & Hybrid End Effectors, 2022-2032, $ mn 68
Figure 35. Europe Aerospace Robotics Market by End Effector: Other End Effectors, 2022-2032, $ mn 69
Figure 36. Europe Aerospace Robotics Market by Component: Arm Processor, 2022-2032, $ mn 70
Figure 37. Europe Aerospace Robotics Market by Component: Other Components, 2022-2032, $ mn 71
Figure 38. Breakdown of Europe Aerospace Robotics Market by Payload, 2022-2032, % of Revenue 73
Figure 39. Europe Addressable Market Cap in 2023-2032 by Payload, Value ($ mn) and Share (%) 73
Figure 40. Europe Aerospace Robotics Market by Payload: Up to 16.00 kg, 2022-2032, $ mn 74
Figure 41. Europe Aerospace Robotics Market by Payload: 16.01–60.00 kg, 2022-2032, $ mn 75
Figure 42. Europe Aerospace Robotics Market by Payload: 60.01–225.00 kg, 2022-2032, $ mn 76
Figure 43. Europe Aerospace Robotics Market by Payload: More than 225.00 kg, 2022-2032, $ mn 77
Figure 44. Breakdown of Europe Aerospace Robotics Market by Application, 2022-2032, % of Revenue 79
Figure 45. Europe Addressable Market Cap in 2023-2032 by Application, Value ($ mn) and Share (%) 79
Figure 46. Europe Aerospace Robotics Market by Application: Material Handling, 2022-2032, $ mn 80
Figure 47. Europe Aerospace Robotics Market by Application: Drilling & Fastening, 2022-2032, $ mn 81
Figure 48. Europe Aerospace Robotics Market by Application: Soldering & Welding, 2022-2032, $ mn 82
Figure 49. Europe Aerospace Robotics Market by Application: Assembling & Disassembling, 2022-2032, $ mn 83
Figure 50. Europe Aerospace Robotics Market by Application: Painting & Dispensing, 2022-2032, $ mn 84
Figure 51. Europe Aerospace Robotics Market by Application: Cutting & Processing, 2022-2032, $ mn 85
Figure 52. Europe Aerospace Robotics Market by Application: Non-Destructive Testing & Inspection, 2022-2032, $ mn 86
Figure 53. Europe Aerospace Robotics Market by Application: Other Applications, 2022-2032, $ mn 87
Figure 54. Breakdown of European Aerospace Robotics Market by Country, 2022 and 2032, % of Revenue 89
Figure 55. Contribution to Europe 2023-2032 Cumulative Market by Country, Value ($ mn) and Share (%) 90
Figure 56. Aerospace Robotics Market in Germany, 2022-2032, $ mn 91
Figure 57. Aerospace Robotics Market in U.K., 2022-2032, $ mn 93
Figure 58. Aerospace Robotics Market in France, 2022-2032, $ mn 95
Figure 59. Aerospace Robotics Market in Spain, 2022-2032, $ mn 97
Figure 60. Aerospace Robotics Market in Italy, 2022-2032, $ mn 99
Figure 61. Aerospace Robotics Market in Russia, 2022-2032, $ mn 101
Figure 62. Aerospace Robotics Market in Rest of Europe, 2022-2032, $ mn 103
Figure 63. Growth Stage of Europe Aerospace Robotics Industry over the Forecast Period 105

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Europe Aerospace Robotics Market Outlook, 2029

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