1. 方法論と範囲
1.1. 調査方法
1.2. 調査目的と調査範囲
2. 定義と概要
3. エグゼクティブ・サマリー
3.1. タイプ別スニペット
3.2. 航空機タイプ別スニペット
3.3. 販売チャネル別スニペット
3.4. 地域別スニペット
4. ダイナミクス
4.1. 影響要因
4.1.1. 推進要因
4.1.1.1. 軽量材料の需要と技術の進歩
4.1.1.2. 世界的な航空交通量の急増と航空機の拡大
4.1.2. 阻害要因
4.1.2.1. 労働力の課題と規制の複雑さ
4.1.3. 機会
4.1.4. 影響分析
5. 産業分析
5.1. ポーターのファイブフォース分析
5.2. サプライチェーン分析
5.3. 価格分析
5.4. 規制分析
5.5. ロシア・ウクライナ戦争の影響分析
5.6. DMI意見
6. タイプ別
6.1. はじめに
6.1.1. 市場規模分析および前年比成長率分析(%), タイプ別
6.1.2. 市場魅力度指数(タイプ別
6.2. ラジアルプライタイヤ
6.2.1. はじめに
6.2.2. 市場規模分析と前年比成長率分析(%)
6.3. バイアスプライタイヤ
7. 航空機タイプ別
7.1. はじめに
7.1.1. 市場規模分析および前年比成長率分析(%)、航空機タイプ別
7.1.2. 市場魅力度指数、航空機タイプ別
7.2. 民間航空機
7.2.1. はじめに
7.2.2. 市場規模分析と前年比成長率分析(%)
7.3. 軍用航空
7.4. ビジネスおよび一般航空
8. 販売チャネル別
8.1. はじめに
8.1.1. 市場規模分析および前年比成長率分析(%), 販売チャネル別
8.1.2. 市場魅力度指数(販売チャネル別
8.2. OEM*市場
8.2.1. 導入
8.2.2. 市場規模分析と前年比成長率分析(%)
9. 持続可能性分析
9.1. 環境分析
9.2. 経済分析
9.3. ガバナンス分析
10. 地域別
10.1. はじめに
10.1.1. 地域別市場規模分析および前年比成長率分析(%)
10.1.2. 市場魅力度指数、地域別
10.2. 北米
10.2.1. 序論
10.2.2. 主な地域別ダイナミクス
10.2.3. 市場規模分析および前年比成長率分析(%), タイプ別
10.2.4. 市場規模分析および前年比成長率分析 (%)、航空機タイプ別
10.2.5. 市場規模分析および前年比成長率分析(%)、販売チャネル別
10.2.6. 市場規模分析および前年比成長率分析(%)、国別
10.2.6.1. 米国
10.2.6.2. カナダ
10.2.6.3. メキシコ
10.3. ヨーロッパ
10.3.1. はじめに
10.3.2. 主な地域別ダイナミクス
10.3.3. 市場規模分析および前年比成長率分析(%), タイプ別
10.3.4. 市場規模分析および前年比成長率分析 (%)、航空機タイプ別
10.3.5. 市場規模分析および前年比成長率分析(%)、販売チャネル別
10.3.6. 市場規模分析および前年比成長率分析(%)、国別
10.3.6.1. ドイツ
10.3.6.2. イギリス
10.3.6.3. フランス
10.3.6.4. イタリア
10.3.6.5. スペイン
10.3.6.6. その他のヨーロッパ
10.4. 南米
10.4.1. はじめに
10.4.2. 地域別主要市場
10.4.3. 市場規模分析および前年比成長率分析(%), タイプ別
10.4.4. 市場規模分析および前年比成長率分析 (%)、航空機タイプ別
10.4.5. 市場規模分析および前年比成長率分析(%)、販売チャネル別
10.4.6. 市場規模分析および前年比成長率分析(%)、国別
10.4.6.1. ブラジル
10.4.6.2. アルゼンチン
10.4.6.3. その他の南米諸国
10.5. アジア太平洋
10.5.1. 序論
10.5.2. 主な地域別ダイナミクス
10.5.3. 市場規模分析および前年比成長率分析(%), タイプ別
10.5.4. 市場規模分析とYoY成長率分析(%)、航空機タイプ別
10.5.5. 市場規模分析および前年比成長率分析(%)、販売チャネル別
10.5.6. 市場規模分析および前年比成長率分析(%)、国別
10.5.6.1. 中国
10.5.6.2. インド
10.5.6.3. 日本
10.5.6.4. オーストラリア
10.5.6.5. その他のアジア太平洋地域
10.6. 中東・アフリカ
10.6.1. 序論
10.6.2. 主な地域別ダイナミクス
10.6.3. 市場規模分析および前年比成長率分析(%), タイプ別
10.6.4. 市場規模分析および前年比成長率分析 (%)、航空機タイプ別
10.6.5. 市場規模分析および前年比成長率分析 (%)、販売チャネル別
11. 競合情勢
11.1.1. 競争シナリオ
11.1.2. 市場ポジショニング/シェア分析
11.1.3. M&A分析
12. 企業プロフィール
12.1. Aviation Tires and Treads*
12.1.1. 会社概要
12.1.2. タイプ別ポートフォリオと説明
12.1.3. 財務概要
12.1.4. 主な開発
12.2. Bridgestone Corporation
12.3. Dunlop Aircraft Tyres Ltd
12.4. Goodyear Tire & Rubber Company
12.5. Michelin
12.6. Petlas
12.7. Sentury Tire USA
12.8. Specialty Tires of America
12.9. Specialty Tires of America, Inc.
12.10. Wilkerson Company, Inc.
リストは網羅的ではありません
13. 付録
13.1. 会社概要とサービス
13.2. お問い合わせ
Global Aircraft Tire Market reached US$ 1.63 billion in 2023 and is expected to reach US$ 2.13 billion by 2031, growing with a CAGR of 13.58% during the forecast period 2024-2031.
The global aircraft tire market is experiencing substantial growth, spurred by an increase in air travel, technological advancements in tire manufacturing and a surge in defense spending. Rising demand for commercial and military aircraft, driven by both new orders and replacements, has led to increased demand for high-performance tires that can endure extreme conditions and high landing frequencies. Tire manufacturers are focusing on producing lighter and more durable tires to meet the performance demands of modern aircraft while enhancing fuel efficiency, reducing emissions and ensuring operational safety.
Asia-Pacific in the global aircraft tire market is growing at the fastest rate compared to other regions. In recent years, significant nations such as China, India and Japan have experienced a sharp rise in the number of passengers, leading to substantial purchases of new airplanes by airlines in the area. The International Air Transport Association (IATA) predicts that by 2030, air travel in Asia will surpass both North America and Europe, the next largest markets. Due to the significant increase in passenger traffic, airlines in the area must acquire additional aircraft to meet the growing demand.
Dynamics
Demand for Lightweight Materials and Technological Advancements
Technological advancements and the integration of lightweight materials are reshaping the aircraft tire market. Innovations such as radial tires, developed for durability and energy efficiency, have gained significant traction, especially in the commercial aviation segment. Major industry players like Michelin and Bridgestone are investing in developing more resilient tire materials, leveraging technologies like Aramid and Kevlar for their high strength-to-weight ratios.
The significance of lightweight components in aircraft for fuel savings is highlighted by the International Air Transport Association (IATA). Using lightweight tires can lead to significant savings in operational costs, which is advantageous for airlines prioritizing sustainability and efficiency. Furthermore, tire makers are integrating sensors and live monitoring systems to enhance safety and maintenance effectiveness.
The systems enable airlines to track tire wear, pressure and temperature, aiding in proactive maintenance and reducing unforeseen downtimes. The Federal Aviation Administration (FAA) has set guidelines mandating periodic inspection and maintenance of aircraft tires, promoting tire safety and enhancing the importance of reliable monitoring systems.
Surge in Global Air Traffic and Regulatory Support
The aircraft tire market is fueled by the growth of global air traffic due to increasing disposable incomes, rapid urbanization and tourism. The International Civil Aviation Organization (ICAO) reported a year-on-year increase in global passenger traffic, which is expected to grow by approximately 4-5% annually until 2030. The expanding fleet size, especially in emerging economies in the Asia-Pacific and Middle East regions, has led to higher tire replacement demand. Asia-Pacific, led by countries such as China, India and Indonesia, is witnessing exponential growth in air travel demand, driven by low-cost carriers and government initiatives aimed at increasing regional connectivity.
Aircraft tire manufacturers must comply with stringent safety and regulatory standards imposed by aviation authorities, such as the FAA, European Union Aviation Safety Agency (EASA) and other national regulatory bodies. The rules oversee tire design, material makeup and performance testing to guarantee tires meet strict safety standards. EASA, for instance, mandates specific criteria for tire pressure monitoring, tread pattern specifications and puncture resistance to ensure operational safety. The important role of safety regulations is key to inspiring innovation in the aircraft tire sector, pushing manufacturers to meet changing standards.
Workforce Challenges & Regulatory Compliences
Despite growth prospects, the aircraft tire market faces several challenges, such as a shortage of skilled technicians needed for tire maintenance, compounded by regulatory complexities. Due to the advanced technologies and rigorous standards involved in aircraft tire manufacturing and maintenance, companies often struggle to find skilled labor. The International Labour Organization (ILO) highlights the global shortage of skilled workers in sectors requiring specialized expertise, including aerospace maintenance, which could slow down industry growth if not addressed.
Additionally, environmental regulations concerning rubber waste disposal and emissions from manufacturing processes pose further challenges. The European Union, for instance, enforces strict environmental regulations around waste disposal and emissions, prompting manufacturers to adopt sustainable practices, such as using eco-friendly materials and recycling tire waste. Compliance with these regulations can increase production costs, impacting the overall market dynamics.
Segment Analysis
The global aircraft tire market is segmented based on type, aircraft type, sales channel and region.
Growing Demand for Radial Tires
The global aircraft tire market is segmented into radial and bias tires, with radial tires witnessing increased adoption in recent years. Radial tires offer better fuel efficiency, improved heat dissipation and extended tread life, making them highly suitable for commercial and long-haul flights. IATA emphasizes that radial tires contribute to reducing fuel consumption due to their lighter weight, which is critical for cost-sensitive commercial airlines. Consequently, manufacturers are focusing on expanding their radial tire offerings to cater to the commercial aviation sector's demand for fuel-efficient and durable options.
Furthermore, Real-time tire monitoring systems, such as the Tire Pressure Monitoring System (TPMS), are gaining popularity due to their ability to enhance safety and reduce maintenance costs. These systems enable airlines to maintain optimal tire pressure, which is essential for preventing blowouts and excessive tire wear. The FAA mandates that aircraft tire pressure is checked before each flight, underscoring the significance of accurate and real-time monitoring. As predictive maintenance gains prominence in the aviation industry, the adoption of TPMS and similar technologies is expected to rise.
Geographical Penetration
Robust Demand for Aerospace & Defence Sector in North America
North America dominate the global aircraft tire market due to the presence of major aviation hubs, established aerospace industries and a large fleet size in these regions. US, in particular, leads in terms of fleet size and frequency of flights, contributing to high demand for tire replacements. The American aerospace and defense industry's exports totaled US$ 151 billion in 2018, an increase of 5.81% from the previous year, according to a report by the Aerospace Industries Association, further highlight the demand of aircraft tire in the country.
The demand for aircraft, technical development, safety standards and market competition are some of the variables that have an impact on the global market for powered wheels. Although the aerospace industry is robust, especially in US and contributes significantly to the market's growth, there are numerous prominent manufacturers, suppliers and customers present on a global scale.
Competitive Landscape
The major global players in the market include Aviation Tires and Treads, Bridgestone Corporation, Dunlop Aircraft Tyres Ltd, Goodyear Tire & Rubber Company, Michelin, Petlas, Sentury Tire USA, Specialty Tires of America, Specialty Tires of America, Inc. and Wilkerson Company, Inc.
Sustainability Analysis
Sustainability is increasingly critical in the aircraft tire market as manufacturers work to lessen the environmental impact of tire production and disposal. The International Energy Agency (IEA) highlights the need to reduce carbon emissions across all transportation sectors, including aviation, placing pressure on the industry to adopt greener practices. This shift has driven tire manufacturers to explore eco-friendly materials, including bio-based rubber compounds and recyclable materials, as they strive to minimize their ecological footprint.
Companies such as Michelin have committed to ambitious interim goal of 40% of bio-sourced or recycled materials across all tire lines by 2030 towards 100% by 2050. This commitment not only aligns with global environmental priorities but also showcases the industry’s dedication to responsible manufacturing practices. The aircraft tire industry is striving to achieve a balance between operational performance and environmental stewardship in order to promote a more sustainable future in aviation.
Russia-Ukraine War Impact
The Russia-Ukraine war has significantly impacted the aircraft tire market, especially across Europe, due to disruptions in the supply chain of essential raw materials and components. Ukraine has historically been a key supplier of raw materials such as rubber compounds and industrial metals, crucial for manufacturing aircraft tires and associated electronic components, including tire monitoring sensors. In response, companies are seeking alternative supply sources, which often come at a premium, further inflating production expenses and potentially affecting product availability.
Additionally, the conflict has driven up fuel costs globally, raising operational expenses for airlines, which are now under pressure to minimize costs wherever possible, including tire-related expenditures. The war has intensified regional security concerns, leading European countries to increase defense spending, a portion of which is allocated to military aircraft maintenance and replacement, indirectly spurring demand for high-durability military aircraft tires.
By Type
• Radial-ply Tires
• Bias-ply Tires
By Aircraft Type
• Commercial Aviation
• Military Aviation
• Business and General Aviation
By Sales Channel
• OEM
• Aftermarket
By Region
• North America
o US
o Canada
o Mexico
• Europe
o Germany
o UK
o France
o Italy
o Spain
o Rest of Europe
• South America
o Brazil
o Argentina
o Rest of South America
• Asia-Pacific
o China
o India
o Japan
o Australia
o Rest of Asia-Pacific
• Middle East and Africa
Key Developments
• In May 2024, Japan Airlines (JAL) has expanded its use of Bridgestone Corporation’s advanced tire wear prediction technology to streamline tire replacement schedules for large jet aircraft, including the Airbus A350-900. This collaboration allows JAL to optimize maintenance by forecasting tire replacement needs more accurately, reducing downtime and improving fleet efficiency.
• In June 2023, Michelin introduced a new generation of aircraft tires, the "Michelin Air X Sky Light" designed with improved durability, lightweight construction and reduced CO2 emissions. The new tire line offers extended durability, increasing tire lifespan by 10-20% over previous models.
• In June 2023, Airbus selected Goodyear to supply tires for the new A321XLR, which will begin passenger operations in 2024. The A321XLR will be equipped with Goodyear’s advanced Flight Radial Tire, designed to support long-haul routes with durability and performance in various climates and conditions.
Why Purchase the Report?
• To visualize the global aircraft tire market segmentation based on type, aircraft type, sales channel and region.
• Identify commercial opportunities by analyzing trends and co-development.
• Excel spreadsheet containing a comprehensive dataset of the aircraft tire market, covering all levels of segmentation.
• PDF report consists of a comprehensive analysis after exhaustive qualitative interviews and an in-depth study.
• Product mapping available as excel consisting of key products of all the major players.
The global aircraft tire market report would provide approximately 62 tables, 50 figures and 207 pages.
Target Audience 2024
• Manufacturers/ Buyers
• Industry Investors/Investment Bankers
• Research Professionals
• Emerging Companies
1. Methodology and Scope
1.1. Research Methodology
1.2. Research Objective and Scope of the Report
2. Definition and Overview
3. Executive Summary
3.1. Snippet by Type
3.2. Snippet by Aircraft Type
3.3. Snippet by Sales Channel
3.4. Snippet by Region
4. Dynamics
4.1. Impacting Factors
4.1.1. Drivers
4.1.1.1. Demand for Lightweight Materials and Technological Advancements
4.1.1.2. Surge in Global Air Traffic and Fleet Expansion
4.1.2. Restraints
4.1.2.1. Workforce Challenges and Regulatory Complexities
4.1.3. Opportunity
4.1.4. Impact Analysis
5. Industry Analysis
5.1. Porter's Five Force Analysis
5.2. Supply Chain Analysis
5.3. Pricing Analysis
5.4. Regulatory Analysis
5.5. Russia-Ukraine War Impact Analysis
5.6. DMI Opinion
6. By Type
6.1. Introduction
6.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Type
6.1.2. Market Attractiveness Index, By Type
6.2. Radial-ply Tires*
6.2.1. Introduction
6.2.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
6.3. Bias-ply Tires
7. By Aircraft Type
7.1. Introduction
7.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Aircraft Type
7.1.2. Market Attractiveness Index, By Aircraft Type
7.2. Commercial Aviation*
7.2.1. Introduction
7.2.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
7.3. Military Aviation
7.4. Business and General Aviation
8. By Sales Channel
8.1. Introduction
8.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Sales Channel
8.1.2. Market Attractiveness Index, By Sales Channel
8.2. OEM*
8.2.1. Introduction
8.2.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
9. Sustainability Analysis
9.1. Environmental Analysis
9.2. Economic Analysis
9.3. Governance Analysis
10. By Region
10.1. Introduction
10.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Region
10.1.2. Market Attractiveness Index, By Region
10.2. North America
10.2.1. Introduction
10.2.2. Key Region-Specific Dynamics
10.2.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Type
10.2.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Aircraft Type
10.2.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Sales Channel
10.2.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
10.2.6.1. US
10.2.6.2. Canada
10.2.6.3. Mexico
10.3. Europe
10.3.1. Introduction
10.3.2. Key Region-Specific Dynamics
10.3.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Type
10.3.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Aircraft Type
10.3.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Sales Channel
10.3.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
10.3.6.1. Germany
10.3.6.2. UK
10.3.6.3. France
10.3.6.4. Italy
10.3.6.5. Spain
10.3.6.6. Rest of Europe
10.4. South America
10.4.1. Introduction
10.4.2. Key Region-Specific Dynamics
10.4.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Type
10.4.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Aircraft Type
10.4.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Sales Channel
10.4.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
10.4.6.1. Brazil
10.4.6.2. Argentina
10.4.6.3. Rest of South America
10.5. Asia-Pacific
10.5.1. Introduction
10.5.2. Key Region-Specific Dynamics
10.5.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Type
10.5.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Aircraft Type
10.5.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Sales Channel
10.5.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
10.5.6.1. China
10.5.6.2. India
10.5.6.3. Japan
10.5.6.4. Australia
10.5.6.5. Rest of Asia-Pacific
10.6. Middle East and Africa
10.6.1. Introduction
10.6.2. Key Region-Specific Dynamics
10.6.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Type
10.6.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Aircraft Type
10.6.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Sales Channel
11. Competitive Landscape
11.1.1. Competitive Scenario
11.1.2. Market Positioning/Share Analysis
11.1.3. Mergers and Acquisitions Analysis
12. Company Profiles
12.1. Aviation Tires and Treads*
12.1.1. Company Overview
12.1.2. Type Portfolio and Description
12.1.3. Financial Overview
12.1.4. Key Developments
12.2. Bridgestone Corporation
12.3. Dunlop Aircraft Tyres Ltd
12.4. Goodyear Tire & Rubber Company
12.5. Michelin
12.6. Petlas
12.7. Sentury Tire USA
12.8. Specialty Tires of America
12.9. Specialty Tires of America, Inc.
12.10. Wilkerson Company, Inc.
LIST NOT EXHAUSTIVE
13. Appendix
13.1. About Us and Services
13.2. Contact Us
| ※参考情報 航空機用タイヤは、航空機の運行において重要な役割を果たす部品です。これらのタイヤは、離陸や着陸時の衝撃を吸収し、地上を走行する際の安定性や操縦性を確保します。航空機用タイヤには、特殊な設計と技術が必要であり、飛行機の運航安全に大きく寄与しています。 航空機用タイヤの種類は主に、主輪用タイヤと補助輪用タイヤに分けられます。主輪用タイヤは、主翼下に配置されるタイヤで、通常、二つまたはそれ以上のタイヤが一つの車輪に取り付けられています。これに対して、補助輪用タイヤは、主に尾翼部分(後部)に位置し、航空機が静止しているときや地上走行の際に役立ちます。 特殊な条件下での使用を考慮して、航空機用タイヤは高い耐久性を持っています。これらのタイヤは、高速回転する際の熱、圧力、そして摩耗に耐えることが求められます。そのため、使用される素材や設計は、高精度かつ性能を重視したものとなっています。通常、航空機用タイヤは、ナイロンやポリエステルなどの合成繊維とラバーを組み合わせた特殊なゴムから製造されます。 タイヤの用途は多岐にわたりますが、最も重要なのは離着陸の際の安全性です。航空機が着陸する際、タイヤは一定の速度で滑走路に接触し、その衝撃を緩和する役割を果たします。また、タイヤはグリップの確保や、滑走路での停止距離の短縮にも寄与しています。これにより、悪天候や滑りやすい条件でも、安全な運航が可能となります。 航空機用タイヤには、いくつかの関連技術が存在します。タイヤのインフレーションシステムはその一つで、高圧空気がタイヤ内に充填されることで、必要な強度と耐久性を確保します。また、タイヤの摩耗状況をモニタリングするためのセンサー技術も発展しており、リアルタイムで状態を確認することが可能です。これにより、適切なメンテナンスが行われ、安全性が向上します。 さらに、最新の航空機タイヤ技術では、環境への配慮も求められています。リサイクル可能な素材の使用や、耐久性を高めることで、新しいタイヤを製造する際の資源消費を削減する努力が進められています。また、タイヤの設計段階から燃費効率を考慮することも重要です。航空機が地上を移動する際の抵抗を減らすことで、より高い燃費効率を実現し、環境への影響を軽減することができます。 メンテナンスと管理も航空機用タイヤにおいては欠かせない要素です。使用する前には必ず状態チェックを行い、摩耗状態や亀裂がないか確認する必要があります。また、タイヤが使用される過程での摩耗は避けられないため、定期的にタイヤを交換することが求められます。これにより、運航中のトラブルを未然に防ぐことができます。 加えて、航空機用タイヤの技術革新も進行中です。新しい製造プロセスや材料が研究されており、今後の航空機用タイヤはさらに高性能化と耐久性向上を目指すことが期待されます。自動運転技術や電動航空機の増加にともない、航空機用タイヤも新たな課題に直面しているため、今後の技術発展が注目されます。 航空機用タイヤは、航空機の安全運航と効率的な運行に欠かせない要素です。厳しい条件下での性能を発揮し、日々の運行を支える重要な部品であり、これからもその進化が続くでしょう。安全性や環境への配慮を忘れず、航空機用タイヤの役割はますます重要になっていくと考えられます。 |
*** 航空機用タイヤの世界市場に関するよくある質問(FAQ) ***
・航空機用タイヤの世界市場規模は?
→DataM Intelligence社は2023年の航空機用タイヤの世界市場規模を16.3億米ドルと推定しています。
・航空機用タイヤの世界市場予測は?
→DataM Intelligence社は2031年の航空機用タイヤの世界市場規模を21.3億米ドルと予測しています。
・航空機用タイヤ市場の成長率は?
→DataM Intelligence社は航空機用タイヤの世界市場が2024年~2031年に年平均13.6%成長すると展望しています。
・世界の航空機用タイヤ市場における主要プレイヤーは?
→「Aviation Tires and Treads、Bridgestone Corporation、Dunlop Aircraft Tyres Ltd、Goodyear Tire & Rubber Company、Michelin、Petlas、Sentury Tire USA、Specialty Tires of America、Specialty Tires of America, Inc.、Wilkerson Company, Inc.など ...」を航空機用タイヤ市場のグローバル主要プレイヤーとして判断しています。
※上記FAQの市場規模、市場予測、成長率、主要企業に関する情報は本レポートの概要を作成した時点での情報であり、最終レポートの情報と少し異なる場合があります。
*** 免責事項 ***
https://www.globalresearch.co.jp/disclaimer/

