Aircraft Wheel Scanning System Market Size, Share, Growth and Global Industry Analysis By Type & Application, Regional Insights and Forecast to 2024-2032

Aircraft Wheel Scanning System Market Size, Share, Growth and Global Industry Analysis By Type & Application, Regional Insights and Forecast to 2024-2032



Growth Factors of Aircraft Wheel Scanning System Market

The global aircraft wheel scanning system market size was valued at USD 650.0 million in 2020 and is projected to grow from USD 533.0 million in 2021 to USD 817.0 million by 2028, exhibiting a CAGR of 6.3% during the forecast period of 2021-2028.

The COVID-19 pandemic extensively impacted the Aircraft Wheel Scanning System Market due to decreased air journeys and down-to-earth fleets, leading to reduced calls for protection and inspection—airlines are behind schedule in investing in new scanning technologies to reduce expenses, impeding the aircraft wheel scanning system market growth.

The Aircraft Wheel Scanning System Market is driven by growing air traffic, demand for green protection to limit downtime, and the adoption of computerized inspection technologies that enhance accuracy. Additionally, stringent regulatory protection requirements push airlines to spend money on advanced scanning systems to ensure compliance and operational efficiency.

Automation and performance are critical tendencies in the plane wheel scanning machine marketplace. Automated scanning structures reduce the need for guide inspection, improve efficiency, minimize human mistakes, and expand the global aircraft wheel scanning system market share. Additionally, robotic inspection can conduct complicated inspections with greater accuracy and consistency, enhancing first-rate inspection. These improvements contributed to more secure and more dependable plane operations.

Comprehensive Analysis of Aircraft Wheel Scanning System Market

The aircraft wheel scanning system market is segmented by machine, factor, and plane kind. By machine, it consists of laser three-D scanners, established light three-D scanners, and others. Laser 3D scanners, which permit prototype creation and entry into limited spaces, hold the most critical percentage. However, established light 3-D scanners are projected to grow the fastest, pushed by the excessive call for blue-structured mild scanners, regarded for accuracy and brief scanning. By aspect, the market is divided into hardware, software, and services. Hardware led in 2020 due to the demand for established light scanners, while software is set to develop hastily as real-time three-D test data processing aids in early defect detection. By aircraft type, the market is split among fixed-wing and rotary-wing aircraft. Fixed-wing aircraft held the most significant percentage in 2020, attributed to rising industrial aircraft deliveries. Rotary-wing aircraft are anticipated to grow the fastest, boosted by increasing army helicopter acquisitions in developing areas.

The North America region led the aircraft wheel scanning market by benefitting a size of USD 218.2 million in 2020 due to the presence of important aircraft MRO carrier vendors and OEMs inside the vicinity, which includes groups like Boeing, Textron Aviation Inc., General Dynamics Corporation, and Bombardier Inc., growth is being driven ahead.

The leading players in the Aircraft Wheel Scanning System Market play a significant role in shaping its growth and setting industry standards. Key companies, such as Aeroscan (U.S.), Artec Europe, S.a.r.l. (Luxembourg), Autodesk Inc. (U.S.), Capture 3D, Inc. (California), Carl Zeiss Optotechnik GmbH (Germany), Creaform Inc. (Canada), FARO Technologies, Inc. (U.S.), Fuel3D Technologies Limited (U.K.), Hexagon AB (Sweden), Nikon Metrology NV (Belgium), and Shenzhen HOLON Technology Co., Ltd (China), contribute to a competitive market landscape, driving innovation and advancing technology in the field of aircraft wheel scanning systems.

In March 2020, TP Aerospace Holding A/S set up its first wheel and brake MRO facility in Moscow to strengthen the best manipulation of the plane.

Segmentation Table

ATTRIBUTE

DETAILS

Study Period

2017-2028

Base Year

2020

Forecast Period

2021-2028

Historical Period

2017-2019

Unit

Value (USD Million)

Segmentation

System; Component; Aircraft Type and Geography

By System

Laser 3D Scanner

Structured light 3D Scanner

Other

By Component

Hardware

Software

Services

By Aircraft Type

Fixed-wing Aircraft
  • Commercial aircraft
  • Business Aircraft
  • Military aircraft
  • General Aviation Aircraft
Rotary-wing Aircraft
  • Commercial Helicopter
  • Military Helicopter
By Geography

North America (By System, Component, Aircraft Type, and Country)
  • The U.S. (By Aircraft Type)
  • Canada (By Aircraft Type)
Europe (By System, Component, Aircraft Type, and Country)
  • The U.K. (By Aircraft Type)
  • Germany (By Aircraft Type)
  • France (By Aircraft Type)
  • Russia (By Aircraft Type)
  • Rest of Europe (By Aircraft Type)
Asia Pacific (By System, Component, Aircraft Type, and Country)
  • China (By Aircraft Type)
  • India (By Aircraft Type)
  • Japan (By Aircraft Type)
  • Australia (By Aircraft Type)
  • Rest of Asia Pacific (By Aircraft Type)
Rest of the World (By System, Component, Aircraft Type, and Country)
  • The Middle East & Africa (By Aircraft Type)
  • Latin America (By Aircraft Type)
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1. Introduction
1.1. Research Scope
1.2. Market Segmentation
1.3. Research Methodology
1.4. Definitions and Assumptions
2. Executive Summary
3. Market Dynamics
3.1. Market Drivers
3.2. Market Restraints
3.3. Market Opportunities
4. Key Insights
4.1. Key Industry Developments –Mergers, Acquisitions and Partnerships
4.2. Latest technological Advancements
4.3. Porters Five Forces Analysis
4.4. Supply Chain Analysis
5. Qualitative Insights
5.1. Impact of COVID-19 on the Aircraft Wheel Scanning System Market
5.2. Steps Taken by the Industry/Government/Companies to Overcome the Impact
5.3. Key Developments in the Industry in Response to COVID-19
5.4. Potential Opportunities due to COVID-19 Outbreak
6. Global Aircraft Wheel Scanning System Market Analysis, Insights and Forecast, 2017-2028
6.1. Segmental Definitions
6.2. Market Analysis, Insights and Forecast – By System
6.2.1. Laser 3D Scanner
6.2.2. Structured light 3D Scanner
6.2.3. Other
6.3. Market Analysis, Insights and Forecast – By Component
6.3.1. Hardware
6.3.2. Software
6.3.3. Services
6.4. Market Analysis, Insights and Forecast – By Aircraft Type
6.4.1. Fixed-wing Aircraft
6.4.1.1. Commercial aircraft
6.4.1.2. Business Aircraft
6.4.1.3. Military aircraft
6.4.1.4. General Aviation Aircraft
6.4.2. Rotary-wing Aircraft
6.4.2.1. Commercial Helicopter
6.4.2.2. Military Helicopter
6.5. Market Analysis, Insights and Forecast – By Region
6.5.1. North America
6.5.2. Europe
6.5.3. Asia-Pacific
6.5.4. Rest of the world
7. North America Aircraft Wheel Scanning System Market Analysis, Insights and Forecast, 2017-2028
7.1. Segmental Definitions
7.2. Market Analysis, Insights and Forecast – By System
7.2.1. Laser 3D Scanner
7.2.2. Structured light 3D Scanner
7.2.3. Other
7.3. Market Analysis, Insights and Forecast – By Component
7.3.1. Hardware
7.3.2. Software
7.3.3. Services
7.4. Market Analysis, Insights and Forecast – By Aircraft Type
7.4.1. Fixed-wing Aircraft
7.4.1.1. Commercial aircraft
7.4.1.2. Business Aircraft
7.4.1.3. Military aircraft
7.4.1.4. General Aviation Aircraft
7.4.2. Rotary-wing Aircraft
7.4.2.1. Commercial Helicopter
7.4.2.2. Military Helicopter
7.5. Market Analysis – By Country
7.5.1. The U.S.
7.5.1.1. Market Analysis, Insights and Forecast – By Aircraft Type
7.5.1.1.1. Fixed-wing Aircraft
7.5.1.1.2. Rotary-wing Aircraft
7.5.2. Canada
7.5.2.1. Market Analysis, Insights and Forecast – By Aircraft Type
7.5.2.1.1. Fixed-wing Aircraft
7.5.2.1.2. Rotary-wing Aircraft
8. Europe Aircraft Wheel Scanning System Market Analysis, Insights and Forecast, 2017-2028
8.1. Segmental Definitions
8.2. Market Analysis, Insights and Forecast – By System
8.2.1. Laser 3D Scanner
8.2.2. Structured light 3D Scanner
8.2.3. Other
8.3. Market Analysis, Insights and Forecast – By Component
8.3.1. Hardware
8.3.2. Software
8.3.3. Services
8.4. Market Analysis, Insights and Forecast – By Aircraft Type
8.4.1. Fixed-wing Aircraft
8.4.1.1. Commercial aircraft
8.4.1.2. Business Aircraft
8.4.1.3. Military aircraft
8.4.1.4. General Aviation Aircraft
8.4.2. Rotary-wing Aircraft
8.4.2.1. Commercial Helicopter
8.4.2.2. Military Helicopter
8.5. Market Analysis – By Country
8.5.1. The U.K.
8.5.1.1. Market Analysis, Insights and Forecast – By Aircraft Type
8.5.1.1.1. Fixed-wing Aircraft
8.5.1.1.2. Rotary-wing Aircraft
8.5.2. Germany
8.5.2.1. Market Analysis, Insights and Forecast – By Aircraft Type
8.5.2.1.1. Fixed-wing Aircraft
8.5.2.1.2. Rotary-wing Aircraft
8.5.3. France
8.5.3.1. Market Analysis, Insights and Forecast – By Aircraft Type
8.5.3.1.1. Fixed-wing Aircraft
8.5.3.1.2. Rotary-wing Aircraft
8.5.4. Russia
8.5.4.1. Market Analysis, Insights and Forecast – By Aircraft Type
8.5.4.1.1. Fixed-wing Aircraft
8.5.4.1.2. Rotary-wing Aircraft
8.5.5. Rest of Europe
8.5.5.1. Market Analysis, Insights and Forecast – By Aircraft Type
8.5.5.1.1. Fixed-wing Aircraft
8.5.5.1.2. Rotary-wing Aircraft
9. Asia-Pacific Aircraft Wheel Scanning System Market Analysis, Insights and Forecast, 2017-2028
9.1. Segmental Definitions
9.2. Market Analysis, Insights and Forecast – By System
9.2.1. Laser 3D Scanner
9.2.2. Structured light 3D Scanner
9.2.3. Other
9.3. Market Analysis, Insights and Forecast – By Component
9.3.1. Hardware
9.3.2. Software
9.3.3. Services
9.4. Market Analysis, Insights and Forecast – By Aircraft Type
9.4.1. Fixed-wing Aircraft
9.4.1.1. Commercial aircraft
9.4.1.2. Business Aircraft
9.4.1.3. Military aircraft
9.4.1.4. General Aviation Aircraft
9.4.2. Rotary-wing Aircraft
9.4.2.1. Commercial Helicopter
9.4.2.2. Military Helicopter
9.5. Market Analysis – By Country
9.5.1. Japan
9.5.1.1. Market Analysis, Insights and Forecast – By Aircraft Type
9.5.1.1.1. Fixed-wing Aircraft
9.5.1.1.2. Rotary-wing Aircraft
9.5.2. China
9.5.2.1. Market Analysis, Insights and Forecast – By Aircraft Type
9.5.2.1.1. Fixed-wing Aircraft
9.5.2.1.2. Rotary-wing Aircraft
9.5.3. India
9.5.3.1. Market Analysis, Insights and Forecast – By Aircraft Type
9.5.3.1.1. Fixed-wing Aircraft
9.5.3.1.2. Rotary-wing Aircraft
9.5.4. Australia
9.5.4.1. Market Analysis, Insights and Forecast – By Aircraft Type
9.5.4.1.1. Fixed-wing Aircraft
9.5.4.1.2. Rotary-wing Aircraft
9.5.5. Rest of Asia Pacific
9.5.5.1. Market Analysis, Insights and Forecast – By Aircraft Type
9.5.5.1.1. Fixed-wing Aircraft
9.5.5.1.2. Rotary-wing Aircraft
10. Rest of the World Aircraft Wheel Scanning System Market Analysis, Insights and Forecast, 2017-2028
10.1. Segmental Definitions
10.2. Market Analysis, Insights and Forecast – By System
10.2.1. Laser 3D Scanner
10.2.2. Structured light 3D Scanner
10.2.3. Other
10.3. Market Analysis, Insights and Forecast – By Component
10.3.1. Hardware
10.3.2. Software
10.3.3. Services
10.4. Market Analysis, Insights and Forecast – By Aircraft Type
10.4.1. Fixed-wing Aircraft
10.4.1.1. Commercial aircraft
10.4.1.2. Business Aircraft
10.4.1.3. Military aircraft
10.4.1.4. General Aviation Aircraft
10.4.2. Rotary-wing Aircraft
10.4.2.1. Commercial Helicopter
10.4.2.2. Military Helicopter
10.5. Market Analysis – By Sub-Region
10.5.1. The Middle East & Africa
10.5.1.1. Market Analysis, Insights and Forecast – By Aircraft Type
10.5.1.1.1. Fixed-wing Aircraft
10.5.1.1.2. Rotary-wing Aircraft
10.5.2. Latin America
10.5.2.1. Market Analysis, Insights and Forecast – By Aircraft Type
10.5.2.1.1. Fixed-wing Aircraft
10.5.2.1.2. Rotary-wing Aircraft
11. Competitive Analysis
11.1. Global Market Share Analysis (2020)
11.2. Competition Dashboard
11.3. Comparative Analysis – Major Players
11.4. Company Profiles (Overview, Products & services, SWOT analysis, Recent developments, strategies, financials (based on availability))
11.4.1. Aeroscan (The U.S.)
11.4.1.1. Overview,
11.4.1.2. Products & services,
11.4.1.3. SWOT analysis,
11.4.1.4. Recent developments,
11.4.1.5. strategies,
11.4.1.6. financials (based on availability)
11.4.2. Artec Europe, S.a.r.l. (Luxembourg)
11.4.2.1. Overview,
11.4.2.2. Products & services,
11.4.2.3. SWOT analysis,
11.4.2.4. Recent developments,
11.4.2.5. strategies,
11.4.2.6. financials (based on availability)
11.4.3. Autodesk Inc. (The U.S.)
11.4.3.1. Overview,
11.4.3.2. Products & services,
11.4.3.3. SWOT analysis,
11.4.3.4. Recent developments,
11.4.3.5. strategies,
11.4.3.6. financials (based on availability)
11.4.4. Capture 3D, Inc. (California)
11.4.4.1. Overview,
11.4.4.2. Products & services,
11.4.4.3. SWOT analysis,
11.4.4.4. Recent developments,
11.4.4.5. strategies,
11.4.4.6. financials (based on availability)
11.4.5. Carl Zeiss Optotechnik GmBH (Germany)
11.4.5.1. Overview,
11.4.5.2. Products & services,
11.4.5.3. SWOT analysis,
11.4.5.4. Recent developments,
11.4.5.5. strategies,
11.4.5.6. financials (based on availability)
11.4.6. Creaform Inc. (Canada)
11.4.6.1. Overview,
11.4.6.2. Products & services,
11.4.6.3. SWOT analysis,
11.4.6.4. Recent developments,
11.4.6.5. strategies,
11.4.6.6. financials (based on availability)
11.4.7. FARO Technologies, Inc. (The U.S.)
11.4.7.1. Overview,
11.4.7.2. Products & services,
11.4.7.3. SWOT analysis,
11.4.7.4. Recent developments,
11.4.7.5. strategies,
11.4.7.6. financials (based on availability)
11.4.8. Fuel3D Technologies Limited (The U.K.)
11.4.8.1. Overview,
11.4.8.2. Products & services,
11.4.8.3. SWOT analysis,
11.4.8.4. Recent developments,
11.4.8.5. strategies,
11.4.8.6. financials (based on availability)
11.4.9. Hexagone AB (Sweden)
11.4.9.1. Overview,
11.4.9.2. Products & services,
11.4.9.3. SWOT analysis,
11.4.9.4. Recent developments,
11.4.9.5. strategies,
11.4.9.6. financials (based on availability)
11.4.10. Nikon Metrology NV (Belgium)
11.4.10.1. Overview,
11.4.10.2. Products & services,
11.4.10.3. SWOT analysis,
11.4.10.4. Recent developments,
11.4.10.5. strategies,
11.4.10.6. financials (based on availability)
11.4.11. Shenzhen HOLON Technology Co., Ltd (China)
11.4.11.1. Overview,
11.4.11.2. Products & services,
11.4.11.3. SWOT analysis,
11.4.11.4. Recent developments,
11.4.11.5. strategies,
11.4.11.6. financials (based on availability)

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