輸送機器用複合材料の世界市場予測(~2025):樹脂別、製造プロセス別、繊維別、用途別、輸送タイプ別、地域別

MarketsandMarketsが発行した調査報告書(CH 7678)
◆英語タイトル:Transportation Composites Market by Resin (Thermoplastic and Thermoset), Manufacturing Process, Fiber, Application (Interior, Exterior), Transportation Type (Airways, Roadways, Railways, Waterways), and Region - Global Forecast to 2025
◆商品コード:CH 7678
◆発行会社(リサーチ会社):MarketsandMarkets
◆発行日:2020年6月6日
◆ページ数:172
◆レポート形式:英語 / PDF
◆納品方法:Eメール(受注後24時間以内)
◆調査対象地域:グローバル
◆産業分野:化学
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MarketsandMarkets社は輸送機器用複合材料の世界市場が2020年332億ドルから2025年598億ドルまで、年平均12.5%成長すると見込んでいます。本調査レポートでは、輸送機器用複合材料の世界市場を詳細に調査・分析し、イントロダクション、調査手法、エグゼクティブサマリー、プレミアムインサイト、市場概要、マクロ経済概要・主要傾向、繊維別(ガラス、カーボン、天然、その他)分析、樹脂別分析、製造プロセス別分析、用途別分析、輸送タイプ別分析、地域別分析、競争状況、企業概要などを含め、提供しております。
・イントロダクション
・調査手法
・エグゼクティブサマリー
・プレミアムインサイト
・市場概要
・マクロ経済概要・主要傾向
・輸送機器用複合材料の世界市場規模:繊維別(ガラス、カーボン、天然、その他)
・輸送機器用複合材料の世界市場規模:樹脂別
・輸送機器用複合材料の世界市場規模:製造プロセス別
・輸送機器用複合材料の世界市場規模:用途別
・輸送機器用複合材料の世界市場規模:輸送タイプ別
・輸送機器用複合材料の世界市場規模:地域別
・競争状況
・企業概要
【レポートの概要】

“The transportation composites market is projected to register a CAGR of 12.5% during the forecast period.”
The global transportation composites market size is projected to grow from USD 33.2 billion in 2020 to USD 59.8 billion by 2025, at a CAGR of 12.5% between 2020 and 2025. Transportation composites are extensively used in aerospace & defense, marine, and automotive, among other industries. Composites provide superior properties, such as high abrasion resistance, wear resistance, high modulus, superb strength, enhanced stiffness, low density, excellent chemical resistance, and low creep, which make them suitable for use in automotive components, aircraft structures, interior car panels, and others. However, the global COVID-19 pandemic has forced the aircraft, automobile, and yacht manufacturers to shut down their operations, which is expected to reduce the demand for transportation composites in 2020.

“The resin transfer molding process holds the largest market share in the global transportation composites market in terms of value.”
Resin transfer molding is a vacuum-assisted resin transfer process that uses a flexible solid counter tool for surface compression. This process yields increased laminate compression, high fiber-to-resin ratio, and outstanding strength-to-weight characteristics. It is mainly used to mold components with large surface areas, complex shapes, and smooth finishes. This process is used in the production of aircraft and automotive structures, such as powertrain components and exterior components.

“Interior application is expected to dominate the market in terms of value.”
The interior application is estimated to be the largest segment of the transportation composites market during the forecast period. The roadways sector is one of the major consumers of composites in the interior application, which is primarily driven by the usage of composites in cars. The growing demand for thermoplastic composites in aircraft components owing to their superior strength and low weight is driving the market in the interior application segment. The railways segment is one of the major contributors to the growing demand for composites in the interior application segment.

“Carbon is estimated to be the fastest-growing fiber segment in terms of value.”
Carbon is the fastest-growing fiber segment, which is attributed to the increasing usage of carbon fiber composites in the automotive sector. Owing to superior properties of carbon fiber composites in comparison to glass fiber composites, the former is utilized by aerospace & defense and automotive sectors.
Carbon fiber is twice as strong and 30% lighter than glass fiber. In automotive applications, its utilization began in racing cars as it not only reduces the weight of the vehicle, but its high strength and high rigidity for the monocoque frame also ensure the driver’s safety. It is used in F1 racing cars for all structural components as it also offers crash resistance.

“Roadways is projected to be the fastest-growing transportation type in terms of value.”
Roadways is expected to be the fastest-growing transportation type. Composites are used in a variety of automotive applications, including cars, military vehicles, buses, commercial vehicles, and motorsports, that include Formula 1 and touring cars. They offer various benefits, such as non-corrosiveness, non-conductivity, flexibility, low maintenance, longevity, and design flexibility. Glass fiber composites are commonly used in automotive applications for interior and exterior components. The lightweight capabilities and high strength of composites reduce vehicle weight and fuel consumption and allow the OEMs to comply with the stringent eco-friendly regulations. Thus, there is a high demand for transportation composites in heavy vehicles. Further, due to COVID-19 and the closure of operations by leading car manufacturers, including Nissan, Ford, and Volkswagen, the demand for composites is expected to take a dip in 2020.

“Thermoplastic is expected to be the fastest-growing resin segment in terms of value.”
The main advantage of thermoplastic resins as matrix materials is that the composite formed can be reshaped and reformed, unlike thermoset resins. The composite formed is easily recyclable. Different types of thermoplastic resins are used as matrix materials in the formation of composites. Complex material shapes can be easily produced using thermoplastic composites. As they can be stored at room temperatures, they can also be used in fabricating large structures.

“APAC is the fastest-growing transportation composites market in terms of volume.”
APAC is projected to be the fastest-growing transportation composites market during the forecast period. The growth of the transportation composites market in APAC is mainly driven by the demand from the aerospace & defense, automotive, and rail industries. However, the outbreak of COVID-19 has posed a negative impact on the aerospace and automotive industries in the APAC region. For instance, China, which is the largest automobile producer in the region, registered a drop of 92% in the sales of cars in the first half of February 2020. The drop in sales of electric vehicles is expected to reduce the demand for transportation composites in the region through 2020-2021.

This study has been validated through primaries conducted with various industry experts, globally. These primary sources have been divided into the following three categories:
• By Company Type- Tier 1- 40%, Tier 2- 33%, and Tier 3- 27%
• By Designation- C Level- 50%, Director Level- 20%, and Others- 30%
• By Region- North America- 20%, Europe- 50%, APAC- 15%, Latin America-5%, MEA-10%,

The report provides a comprehensive analysis of company profiles listed below:
• Hexcel Corporation (US)
• Toray Industries, Inc. (Japan)
• Owens Corning (US)
• Gurit Holding AG (Switzerland)
• Solvay S.A. (Belgium)
• Mitsubishi Chemical Holdings Corporation (Japan)
• Teijin Limited (Japan)
• SGL Group (Germany)
• Royal DSM (Netherlands)
• Jushi Group Co., Ltd. (China)

Research Coverage
This report covers the global transportation composites market and forecasts the market size until 2025. The report includes the market segmentation – Resin (Thermoplastic and Thermoset), Fiber (Carbon, Glass, Natural, and Others), Application (Interior, Exterior, and others), Transportation Type (Airways, Railways, Waterways, and Roadways), Manufacturing Process (Compression Molding, Injection Molding, Resin Transfer Molding, and Others), and Region (Europe, North America, APAC, Latin America, and MEA). Porter’s Five Forces analysis, along with the drivers, restraints, opportunities, and challenges, are discussed in the report. It also provides company profiles and competitive strategies adopted by the major players in the global transportation composites market.

Key benefits of buying the report:
The report will help market leaders/new entrants in this market in the following ways:
1. This report segments the global transportation composites market comprehensively and provides the closest approximations of the revenues for the overall market and the sub-segments across different verticals and regions.
2. The report helps stakeholders understand the pulse of the transportation composites market and provides them with information on key market drivers, restraints, challenges, and opportunities.
3. This report will help stakeholders to understand competitors better and gain more insights to improve their position in their businesses. The competitive landscape section includes the competitor ecosystem and expansion.

Reasons to buy the report:
The report will help market leaders/new entrants in this market by providing them with the closest approximations of the revenues for the overall transportation composites market and the sub-segments. This report will help stakeholders to understand the competitive landscape and gain more insights and position their businesses and market strategies in a better way. The report will also help stakeholders understand the pulse of the transportation composites market and provide them with information on key market drivers, restraints, challenges, and opportunities.

【レポートの目次】

1 INTRODUCTION (Page No. – 19)
1.1 OBJECTIVES OF THE STUDY
1.2 MARKET DEFINITION
1.3 MARKET SCOPE
1.3.1 TRANSPORTATION COMPOSITES MARKET SEGMENTATION
1.3.2 YEARS CONSIDERED FOR THE STUDY
1.4 CURRENCY
1.5 UNIT CONSIDERED
1.6 STAKEHOLDERS

2 RESEARCH METHODOLOGY (Page No. – 22)
2.1 RESEARCH DATA
2.1.1 SECONDARY DATA
2.1.1.1 Key data from secondary sources
2.1.2 PRIMARY DATA
2.1.2.1 Key data from primary sources
2.1.2.2 Breakdown of primaries
2.2 MARKET SIZE ESTIMATION
2.3 DATA TRIANGULATION
2.4 ASSUMPTIONS

3 EXECUTIVE SUMMARY (Page No. – 29)

4 PREMIUM INSIGHTS (Page No. – 34)
4.1 ATTRACTIVE OPPORTUNITIES IN THE TRANSPORTATION COMPOSITES MARKET
4.2 TRANSPORTATION COMPOSITES MARKET, BY TRANSPORTATION TYPE AND REGION, 2019
4.3 TRANSPORTATION COMPOSITES MARKET, BY MANUFACTURING PROCESS
4.4 TRANSPORTATION COMPOSITES MARKET, BY FIBER
4.5 TRANSPORTATION COMPOSITES MARKET, BY RESIN
4.6 TRANSPORTATION COMPOSITES MARKET, BY APPLICATION
4.7 TRANSPORTATION COMPOSITES MARKET, BY KEY COUNTRIES

5 MARKET OVERVIEW (Page No. – 38)
5.1 INTRODUCTION
5.2 MARKET DYNAMICS
5.2.1 DRIVERS
5.2.1.1 Increasin g use of composites in commercial aircraft
5.2.1.2 Growing demand for light-weight materials and fuel-efficient vehicles
5.2.1.3 Increasing use of natural fiber composites in automotive applications
5.2.2 RESTRAINTS
5.2.2.1 High processing and manufacturing cost
5.2.2.2 Issue related to recyclability
5.2.2.3 Declining economy due to COVID-19
5.2.3 OPPORTUNITIES
5.2.3.1 Increasing demand from emerging economies
5.2.3.2 Penetration of carbon fiber composites in new applications
5.2.3.3 Growing demand for environment-friendly EVs
5.2.4 CHALLENGES
5.2.4.1 Developing low-cost technologies
5.2.4.2 Market recovery from COVID-19
5.3 PORTER’S FIVE FORCES ANALYSIS
5.3.1 THREAT OF NEW ENTRANTS
5.3.2 THREAT OF SUBSTITUTES
5.3.3 BARGAINING POWER OF SUPPLIERS
5.3.4 BARGAINING POWER OF BUYERS
5.3.5 INTENSITY OF COMPETITIVE RIVALRY

6 MACROECONOMIC OVERVIEW AND KEY TRENDS (Page No. – 45)
6.1 MACROECONOMIC OVERVIEW AND KEY TRENDS IN THE AEROSPACE INDUSTRY
6.1.1 INTRODUCTION
6.1.2 TRENDS AND FORECAST OF GDP
6.1.3 TRENDS IN AEROSPACE INDUSTRY
6.1.3.1 Disruption in the industry
6.1.3.2 Impact on customers’ output & strategies to resume/improve production
6.1.3.3 Impact on customers’ revenue
6.1.3.4 Most affected countries
6.1.3.5 Short-term strategies to manage cost structure and supply chains
6.1.3.6 New opportunities
6.2 MACROECONOMIC OVERVIEW AND KEY TRENDS IN THE AUTOMOTIVE INDUSTRY
6.2.1 INTRODUCTION
6.2.2 TRENDS IN AUTOMOTIVE INDUSTRY
6.2.2.1 Disruption in the industry
6.2.2.2 Impact on revenue generated from customers
6.2.2.3 Most affected countries
6.2.2.4 Short-term strategies to manage cost structure and supply chains
6.2.2.5 Impact on electric vehicle(EV) demand due to lower oil prices
6.2.3 NEW OPPORTUNITIES
6.2.3.1 Measures taken by customers
6.2.3.2 Customers’ perspective on growth

7 TRANSPORTATION COMPOSITES MARKET, BY FIBER (Page No. – 51)
7.1 INTRODUCTION
7.2 GLASS
7.2.1 GLASS FIBER TRANSPORTATION COMPOSITES MARKET, BY REGION
7.3 CARBON
7.3.1 CARBON FIBER TRANSPORTATION COMPOSITES MARKET, BY REGION
7.4 NATURAL
7.4.1 NATURAL FIBER TRANSPORTATION COMPOSITES MARKET, BY REGION
7.5 OTHERS
7.5.1 OTHER FIBERS-BASED TRANSPORTATION COMPOSITES MARKET, BY REGION

8 TRANSPORTATION COMPOSITES MARKET, BY RESIN (Page No. – 58)
8.1 INTRODUCTION
8.2 THERMOSET
8.2.1 EPOXY
8.2.2 POLYESTER
8.2.3 VINYL ESTER
8.2.4 OTHERS
8.3 THERMOPLASTIC
8.3.1 POLYPHENYLENE SULPHIDE (PPS)
8.3.2 POLYAMIDE (PA)
8.3.3 POLYPROPYLENE (PP)
8.3.4 OTHERS

9 TRANSPORTATION COMPOSITES MARKET, BY MANUFACTURING PROCESS (Page No. – 65)
9.1 INTRODUCTION
9.2 INJECTION MOLDING PROCESS
9.3 COMPRESSION MOLDING PROCESS
9.4 RESIN TRANSFER MOLDING PROCESS (RTM)
9.5 OTHERS

10 TRANSPORTATION COMPOSITES MARKET, BY APPLICATION (Page No. – 69)
10.1 INTRODUCTION
10.2 INTERIOR
10.2.1 TRANSPORTATION COMPOSITES MARKET IN INTERIOR APPLICATION, BY REGION
10.3 EXTERIOR
10.3.1 TRANSPORTATION COMPOSITES MARKET IN EXTERIOR APPLICATION, BY REGION
10.4 OTHERS
10.4.1 TRANSPORTATION COMPOSITES MARKET IN OTHER APPLICATIONS, BY REGION

11 TRANSPORTATION COMPOSITES MARKET, BY TRANSPORTATION TYPE (Page No. – 75)
11.1 INTRODUCTION
11.2 AIRWAYS
11.2.1 CIVIL
11.2.2 DEFENSE
11.3 RAILWAYS
11.3.1 METROS AND MONORAILS
11.3.2 PASSENGER RAILS
11.3.3 HIGH SPEED AND BULLET TRAINS
11.4 WATERWAYS
11.4.1 POWERBOAT
11.4.2 SAILBOAT
11.4.3 CRUISE SHIP
11.4.4 OTHERS
11.5 ROADWAYS
11.5.1 AUTOMOTIVE
11.5.2 RECREATIONAL VEHICLES
11.5.3 BUS, TRUCKS, AND OTHER HEAVY VEHICLES

12 TRANSPORTATION COMPOSITES MARKET, BY REGION (Page No. – 86)
12.1 INTRODUCTION
12.1.1 TRANSPORTATION COMPOSITES MARKET SIZE, BY REGION
12.2 NORTH AMERICA
12.2.1 NORTH AMERICA: TRANSPORTATION COMPOSITES MARKET SIZE, BY TRANSPORTATION TYPE
12.2.2 NORTH AMERICA: TRANSPORTATION COMPOSITES MARKET SIZE, BY COUNTRY
12.2.2.1 US
12.2.2.1.1 US: TRANSPORTATION COMPOSITES MARKET SIZE
12.2.2.2 Canada
12.2.2.2.1 CANADA: TRANSPORTATION COMPOSITES MARKET SIZE
12.3 EUROPE
12.3.1 EUROPE: TRANSPORTATION COMPOSITES MARKET SIZE, BY TRANSPORTATION TYPE
12.3.2 EUROPE: TRANSPORTATION COMPOSITES MARKET SIZE, BY COUNTRY
12.3.2.1 France
12.3.2.1.1 FRANCE: TRANSPORTATION COMPOSITES MARKET SIZE
12.3.2.2 Germany
12.3.2.2.1 GERMANY: TRANSPORTATION COMPOSITES MARKET SIZE
12.3.2.3 UK
12.3.2.3.1 UK: TRANSPORTATION COMPOSITES MARKET SIZE
12.3.2.4 Italy
12.3.2.4.1 ITALY: TRANSPORTATION COMPOSITES MARKET SIZE
12.3.2.5 Spain
12.3.2.5.1 SPAIN: TRANSPORTATION COMPOSITES MARKET SIZE
12.3.2.6 Russia
12.3.2.6.1 RUSSIA: TRANSPORTATION COMPOSITES MARKET SIZE
12.3.2.7 Rest of Europe
12.3.2.7.1 REST OF EUROPE: TRANSPORTATION COMPOSITES MARKET SIZE
12.4 APAC
12.4.1 APAC: TRANSPORTATION COMPOSITES MARKET SIZE, BY TRANSPORTATION TYPE
12.4.2 APAC: TRANSPORTATION COMPOSITES MARKET SIZE, BY COUNTRY
12.4.2.1 Japan
12.4.2.1.1 JAPAN: TRANSPORTATION COMPOSITES MARKET SIZE
12.4.2.2 China
12.4.2.2.1 CHINA: TRANSPORTATION COMPOSITES MARKET SIZE
12.4.2.3 South Korea
12.4.2.3.1 SOUTH KOREA: TRANSPORTATION COMPOSITES MARKET SIZE
12.4.2.4 India
12.4.2.4.1 INDIA: TRANSPORTATION COMPOSITES MARKET SIZE
12.4.2.5 Rest of APAC
12.4.2.5.1 REST OF APAC: TRANSPORTATION COMPOSITES MARKET SIZE
12.5 MEA
12.5.1 MEA: TRANSPORTATION COMPOSITES MARKET SIZE, BY TRANSPORTATION TYPE
12.5.2 MEA: TRANSPORTATION COMPOSITES MARKET SIZE, BY COUNTRY
12.5.2.1 Saudi Arabia
12.5.2.1.1 SAUDI ARABIA: TRANSPORTATION COMPOSITES MARKET SIZE, BY TRANSPORTATION TYPE
12.5.2.2 UAE
12.5.2.2.1 UAE: TRANSPORTATION COMPOSITES MARKET SIZE, BY TRANSPORTATION TYPE
12.5.2.3 Rest of MEA
12.5.2.3.1 REST OF MEA: TRANSPORTATION COMPOSITES MARKET SIZE, BY TRANSPORTATION TYPE
12.6 LATIN AMERICA
12.6.1 LATIN AMERICA: TRANSPORTATION COMPOSITES MARKET SIZE, BY TRANSPORTATION TYPE
12.6.2 LATIN AMERICA: TRANSPORTATION COMPOSITES MARKET SIZE, BY COUNTRY
12.6.2.1 Brazil
12.6.2.1.1 BRAZIL: TRANSPORTATION COMPOSITES MARKET SIZE, BY TRANSPORTATION TYPE
12.6.2.2 Mexico
12.6.2.2.1 MEXICO: TRANSPORTATION COMPOSITES MARKET SIZE, BY TRANSPORTATION TYPE
12.6.2.3 Rest of Latin America
12.6.2.3.1 REST OF LATIN AMERICA: TRANSPORTATION COMPOSITES MARKET SIZE, BY TRANSPORTATION TYPE

13 COMPETITIVE LANDSCAPE (Page No. – 120)
13.1 INTRODUCTION
13.2 COMPETITIVE LEADERSHIP MAPPING
13.2.1 DYNAMIC DIFFERENTIATORS
13.2.2 INNOVATORS
13.2.3 VISIONARY LEADERS
13.2.4 EMERGING COMPANIES
13.3 STRENGTH OF PRODUCT PORTFOLIO
13.4 BUSINESS STRATEGY EXCELLENCE
13.5 MARKET RANKING
13.6 COMPETITIVE SCENARIO
13.6.1 NEW PRODUCT DEVELOPMENT
13.6.2 PARTNERSHIP
13.6.3 JOINT VENTURE AND MERGER & ACQUISITION
13.6.4 EXPANSION

14 COMPANY PROFILES (Page No. – 132)
(Business Overview, Products Offered, Recent Developments, SWOT Analysis, Winning Imperatives, Development and Growth Strategies, Threat from Competition, Right to Win)*
14.1 HEXCEL CORPORATION
14.2 TORAY INDUSTRIES INC.
14.3 TEIJIN LIMITED
14.4 SOLVAY
14.5 MITSUBISHI CHEMICAL HOLDINGS CORPORATION
14.6 GURIT HOLDING AG
14.7 JUSHI GROUP
14.8 SGL GROUP
14.9 OWENS CORNING
14.10 ROYAL DSM
14.11 OTHER COMPANIES
14.11.1 LEE AEROSPACE
14.11.2 NORCO COMPOSITES & GRP
14.11.3 BOMBARDIER
14.11.4 LOCKHEED MARTIN
14.11.5 FEADSHIP
14.11.6 BOEING
14.11.7 ALSTOM
14.11.8 KAWASAKI HEAVY INDUSTRIES, LTD.
14.11.9 MAGNA INTERNATIONAL INC.
14.11.10 AIRBUS



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