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Home » Aerospace and Defense » Aircraft Window Frame Market Report 2030

Aircraft Window Frame Market By Material (Aluminum Alloys, Titanium Alloys, Composite Materials, Steel); By Aircraft Type (Commercial Aircraft, Military Aircraft, Business Jets, Regional Aircraft); By Frame Type (Inner Window Frame, Outer Window Frame); By End-Use (Original Equipment Manufacturer (OEM), Maintenance, Repair, and Overhaul (MRO)); By Geography, Segment revenue estimation, Forecast, 2024-2032.

Published On: SEP-2024   |   Base Year: 2022   |   No Of Pages: 150   |   Historical Data: 2017-2021   |   Formats: PDF   |   Report ID: 31640869

The aircraft window frame market was worth USD 210 billion in 2023 and is expected to be worth USD 333.44 billion by 2030, expanding at a CAGR of 5.95% during the forecast period.

 

The aircraft window frame market is driven by an increasing need for the reduced overall weight of aircraft and associated lower fuel consumption. The global commercial aviation market is predicted to grow beyond $800 billion by 2025; aircraft manufacturers have opted to incorporate composite materials such as carbon fiber, aluminum alloy, and window frames due to their high strength and low weight. For instance, Boeing’s 787 Dreamliner has employed lightweight frames for the windows in order to optimize fuel consumption and overall functionality of the airplane.

 

A new trend in this area is the use of titanium alloys for producing window frames through 3D printing, which has improved durability with high precision and low cost. For example, Airbus has been engaged in applying 3D printing on aircraft parts such as window frames to enhance production efficiency and minimize material loss. A growing preference for advanced materials and new technologies for manufacturing is the prime driver of the aircraft window frame market.

 

The aircraft window frame market offers a vast opportunity owing to the escalating production of commercial and military aircraft. According to the data, the aviation industry is likely to provide more than 39000 aircraft by 2040, which increases the need for lightweight and long-lasting window frames required for increasing the efficiency of fuel. New materials like composite and titanium alloy are used to reduce weight and the sector provides a great chance for manufacturers.

 

For instance, Airbus has been designing and manufacturing 3D-printed titanium window frames from airplanes that make them lighter, stronger, and easier to produce. This innovation reduces wastage of resources and enhances the manufacturing sector towards sustainable manufacturing practices. The aviation industry’s emphasis on cost containment and carbon footprint will spur the growth of this sector through the use of developed materials and technologies.

 

aircraft-window-frame-market-infographics

 

Market Segmentation

By Material:

  • Aluminum Alloys

  • Titanium Alloys

  • Composite Materials

  • Steel

 

By Aircraft Type:

  • Commercial Aircraft

  • Military Aircraft

  • Business Jets

  • Regional Aircraft

 

By Frame Type:

  • Inner Window Frame

  • Outer Window Frame

 

By End-Use:

  • Original Equipment Manufacturer (OEM)

  • Maintenance, Repair, and Overhaul (MRO)

 

By Region

North America

  • US

  • Mexico

  • Canada

  • Rest of North America

 

Europe

  • Switzerland

  • Russia

  • France

  • Germany

  • U.K

  • Finland

  • Turkey

  • Netherlands

  • Belgium

  • Spain

  • Italy

  • Rest of Europe

 

Asia Pacific

  • India

  • China

  • South Korea

  • Japan

  • Singapore

  • Thailand

  • Indonesia

  • Malaysia

  • Philippines

  • Australia

  • Rest of Asia-Pacific

 

LAMEA

  • Brazil

  • Argentina

  • Uruguay

  • Saudi Arabia

  • Rest of LAMEA

 

North America has the largest share in the aircraft window frame market, driven by the prospering aviation industry in the region, along with key players like Boeing and Lockheed Martin. The U. S has been one of the largest manufacturers of both commercial and military aircraft which accounted for more than 40% of international aircraft production. Innovation in window frame technology is being driven by the increasing use of lightweight materials such as aluminium alloys and composites in aircraft production.

 

A recent event is the use of 3D-printed titanium components by Spirit AeroSystems, a major aerospace product supplier in the U.S., on window frames to improve the weight of aircraft, subsequently creating efficiency in the use of fuel. Such advancements and the region's adoption of sustainable and efficient aviation make North America dominant in the aircraft window frame market.

 

Key Players

  • GKN Aerospace

  • Spirit AeroSystems

  • Collins Aerospace

  • Triumph Group

  • PPG Industries, Inc.

  • Mitsubishi Heavy Industries

  • LMI Aerospace

  • FACC AG

  • Magellan Aerospace

  • Elbit Systems Ltd.

 

Aircraft Window Frame Market Report Coverage

Report Attribute

Details

Forecast Period

2024 – 2032

Market Size Value in 2023

USD 210 Billion

Revenue Forecast by 2030

USD 333.44 Billion

Overall Growth Rate

CAGR of 5.95% (2024 – 2030)

Base Year for Estimation

2023

Historical Data

2017 – 2021

Unit

USD Billion, CAGR (2024 – 2030)

Segmentation

By Material, By Aircraft Type, By Frame Type, By End-Use, By Geography

By Material

Aluminum Alloys, Titanium Alloys, Composite Materials, Steel

By Aircraft Type

Commercial Aircraft, Military Aircraft, Business Jets, Regional Aircraft

By Frame Type

Inner Window Frame, Outer Window Frame

By End-Use

Original Equipment Manufacturer (OEM), Maintenance, Repair, and Overhaul (MRO)

By Region

North America, Europe, Asia-Pacific, Latin America, Middle East & Africa

Country Scope

U.S., Germany, China, Japan, India, UK, France, Brazil, etc.

Market Drivers

Growth in commercial aviation, demand for lightweight and durable materials, rising aircraft fleet size

Customization Option

Available upon request

 

Frequently Asked Question About This Report

The aircraft window frame market was valued at USD 210 billion in 2023 and is projected to reach USD 333.44 billion by 2030, growing at a CAGR of 5.95% during the forecast period.

Growth is primarily driven by the need to reduce aircraft weight and fuel consumption. The use of lightweight and high-strength materials such as carbon fiber, aluminum alloys, and titanium alloys—particularly with 3D printing—is a major trend. These advancements improve durability, reduce material waste, and support sustainable manufacturing practices.

Key players include Boeing, Airbus, and Spirit AeroSystems. These companies are investing in advanced materials and manufacturing technologies like 3D printing to produce lightweight and durable window frames.

North America holds the largest market share, supported by the strong presence of major aerospace manufacturers such as Boeing and Lockheed Martin. The U.S. alone accounts for over 40% of global aircraft production, driving demand for advanced window frame technologies.

The Original Equipment Manufacturer (OEM) segment leads the market, as new aircraft production continues to grow to meet rising demand in commercial and military aviation.

.

Table of Contents

1.    AIRCRAFT WINDOW FRAME MARKET – PRODUCTION VOLUME BY REGION, (2024 – 2030)
1.1. North America
1.2. Europe
1.3. Asia Pacific
1.4. Latin America
1.5. Middle East & Africa
2.    AIRCRAFT WINDOW FRAME MARKET – REVENUE ($MILLION), BY REGION, (2024 – 2030)
2.1. North America
2.2. Europe
2.3. Asia Pacific
2.4. Latin America
2.5. Middle East & Africa
3.    MARKET SHARE ANALYSIS – AIRCRAFT WINDOW FRAME MARKET
3.1. Top 20 Players with Product Mix, Revenue, and Sales Volume
3.2. Market Share, 2023
3.3. Market by Material and End Use Outlook Analysis
4.    HISTORIC TRENDS IN AIRCRAFT WINDOW FRAME MARKET
5.    EMERGING MARKET TRENDS
6.    NORTH AMERICA AIRCRAFT WINDOW FRAME MARKET ANALYSIS BY SEGMENT (COUNTRY-LEVEL ANALYSIS)
6.1. North America Aircraft window frame Historical Market ($MILLION), (2017 – 2023)
6.2. North America Aircraft window frame Market ($MILLION) and Forecasts (2024 – 2030)
6.3. North America Aircraft window frame Market Material ($MILLION), and Forecasts (2024 – 2030), By Material

6.3.1. Aluminum Alloys
6.3.2. Titanium Alloys
6.3.3. Composite Materials
6.3.4. Steel
6.4. North America Aircraft window frame Market Material ($MILLION), and Forecasts (2024 – 2030), By Aircraft Type

6.4.1. Commercial Aircraft
6.4.2. Military Aircraft
6.4.3. Business Jets
6.4.4. Regional Aircraft
6.5. North America Aircraft window frame Market Material ($MILLION), and Forecasts (2024 – 2030), By Frame Type

6.5.1. Inner Window Frame
6.5.2. Outer Window Frame
6.6. North America Aircraft window frame Market Material ($MILLION), and Forecasts (2024 – 2030), By End-Use

6.6.1. Original Equipment Manufacturer (OEM)
6.6.2. Maintenance, Repair, and Overhaul (MRO)
6.7. North America Aircraft window frame Market Material ($MILLION), and Forecasts (2024 – 2030), By Geography
6.7.1. USA
6.7.2. Canada
6.7.3. Rest of North America
7.    USA AIRCRAFT WINDOW FRAME MARKET ANALYSIS BY SEGMENT (COUNTRY-LEVEL ANALYSIS)
8.    EUROPE AIRCRAFT WINDOW FRAME MARKET ANALYSIS BY SEGMENT (COUNTRY-LEVEL ANALYSIS)
8.1. Europe Aircraft window frame Historical Market ($MILLION), (2017 – 2023)
8.2. Europe Aircraft window frame Market ($MILLION) and Forecasts (2024 – 2030)
8.3. Europe Aircraft window frame Market Material ($MILLION), and Forecasts (2024 – 2030), By Material
8.4. Europe Aircraft window frame Market Material ($MILLION), and Forecasts (2024 – 2030), By Aircraft Type
8.5. Europe Aircraft window frame Market Material ($MILLION), and Forecasts (2024 – 2030), By Frame Type
8.6. Europe Aircraft window frame Market Material ($MILLION), and Forecasts (2024 – 2030), By End-Use
8.7. Europe Aircraft window frame Market Material ($MILLION), and Forecasts (2024 – 2030), By Geography
8.7.1. Germany
8.7.2. France
8.7.3. UK
8.7.4. Italy
8.7.5. Spain
8.7.6. Rest of Europe
9.    APAC AIRCRAFT WINDOW FRAME MARKET ANALYSIS BY SEGMENT (COUNTRY-LEVEL ANALYSIS)
9.1. APAC Aircraft window frame Historical Market ($MILLION), (2017 – 2023)
9.2. APAC Aircraft window frame Market ($MILLION) and Forecasts (2024 – 2030)
9.3. APAC Aircraft window frame Market Material ($MILLION), and Forecasts (2024 – 2030), By Material
9.4. APAC Aircraft window frame Market Material ($MILLION), and Forecasts (2024 – 2030), By Aircraft Type
9.5. APAC Aircraft window frame Market Material ($MILLION), and Forecasts (2024 – 2030), By Frame Type
9.6. APAC Aircraft window frame Market Material ($MILLION), and Forecasts (2024 – 2030), By End-Use
9.7. APAC Aircraft window frame Market Material ($MILLION), and Forecasts (2024 – 2030), By Geography
9.7.1. China
9.7.2. Japan
9.7.3. South Korea
9.7.4. India
9.7.5. Australia
9.7.6. Rest of APAC
10.    LATIN AMERICA AIRCRAFT WINDOW FRAME MARKET ANALYSIS BY SEGMENT (COUNTRY-LEVEL ANALYSIS)
10.1. Latin America Aircraft window frame Historical Market ($MILLION), (2017 – 2023)
10.2. Latin America Aircraft window frame Market ($MILLION) and Forecasts (2024 – 2030)
10.3. Latin America Aircraft window frame Market Material ($MILLION), and Forecasts (2024 – 2030), By Material
10.4. Latin America Aircraft window frame Market Material ($MILLION), and Forecasts (2024 – 2030), By Aircraft Type
10.5. Latin America Aircraft window frame Market Material ($MILLION), and Forecasts (2024 – 2030), By Frame Type
10.6. Latin America Aircraft window frame Market Material ($MILLION), and Forecasts (2024 – 2030), By End-Use
10.7. Latin America Aircraft window frame Market Material ($MILLION), and Forecasts (2024 – 2030), By Geography
10.7.1. Brazil
10.7.2. Argentina
10.7.3. Rest of Latin America
11.    COMPANY PROFILES:
11.1. GKN Aerospace
11.1.1. Company Overview  
11.1.2. Company Snapshot  
11.1.3. Operating business segments
11.1.4. Product offered and Revenue
11.1.5. Production & Sales
11.2. Spirit AeroSystems
11.3. Collins Aerospace
11.4.  TRIUMPH GROUP
11.5. PPG Industries, Inc.
11.6. Mitsubishi Heavy Industries
11.7. OTHER MARKET PLAYERS

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