▶ 調査レポート

電子ビーム硬化コーティングのグローバル市場(2023~2028):航空宇宙、電気・電子、自動車、包装、その他

• 英文タイトル:Electron Beam Curable Coating Market - Growth, Trends, Covid-19 Impact, and Forecasts (2023 - 2028)

Mordor Intelligenceが調査・発行した産業分析レポートです。電子ビーム硬化コーティングのグローバル市場(2023~2028):航空宇宙、電気・電子、自動車、包装、その他 / Electron Beam Curable Coating Market - Growth, Trends, Covid-19 Impact, and Forecasts (2023 - 2028) / MRC2303B119資料のイメージです。• レポートコード:MRC2303B119
• 出版社/出版日:Mordor Intelligence / 2023年1月
• レポート形態:英文、PDF、150ページ
• 納品方法:Eメール(受注後2-3営業日)
• 産業分類:化学
• 販売価格(消費税別)
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レポート概要
Mordor Intelligence社の本市場調査レポートでは、世界の電子ビーム硬化コーティング市場規模が、2021年に400百万ドルに達し、予測期間中(2022年~2027年)に年平均3%で成長すると展望しています。本書は、電子ビーム硬化コーティングの世界市場について総合的に分析し、イントロダクション、調査手法、エグゼクティブサマリー、市場動向、産業別(航空宇宙、電気・電子、自動車、包装、その他)分析、地域別(中国、インド、日本、韓国、アメリカ、カナダ、メキシコ、ドイツ、イギリス、フランス、イタリア、ブラジル、アルゼンチン、サウジアラビア、南アフリカ)分析、競争状況、市場機会・将来の動向などの項目を整理しています。さらに、参入企業として、ALLNEX GMBH(PTT Global Chemical Public Company Limited)、Abrisa Technologies、Arkema、BASF SE、Dainichiseika Color & Chemicals Mfg Co. Ltd、Covestro AG、Hexion、INX International Ink Co.、PPG Industries Inc.、R&D Coatings LLC、Dai Nippon Printing Co. Ltd、IGM Resinsなどの情報を含んでいます。
・イントロダクション
・調査手法
・エグゼクティブサマリー
・市場動向
・世界の電子ビーム硬化コーティング市場規模:産業別
- 航空宇宙における市場規模
- 電気・電子における市場規模
- 自動車における市場規模
- 包装における市場規模
- その他における市場規模
・世界の電子ビーム硬化コーティング市場規模:地域別
- アジア太平洋の電子ビーム硬化コーティング市場規模
中国の電子ビーム硬化コーティング市場規模
インドの電子ビーム硬化コーティング市場規模
日本の電子ビーム硬化コーティング市場規模

- 北米の電子ビーム硬化コーティング市場規模
アメリカの電子ビーム硬化コーティング市場規模
カナダの電子ビーム硬化コーティング市場規模
メキシコの電子ビーム硬化コーティング市場規模

- ヨーロッパの電子ビーム硬化コーティング市場規模
ドイツの電子ビーム硬化コーティング市場規模
イギリスの電子ビーム硬化コーティング市場規模
イタリアの電子ビーム硬化コーティング市場規模

- 南米/中東の電子ビーム硬化コーティング市場規模
ブラジルの電子ビーム硬化コーティング市場規模
アルゼンチンの電子ビーム硬化コーティング市場規模
サウジアラビアの電子ビーム硬化コーティング市場規模

- その他地域の電子ビーム硬化コーティング市場規模
・競争状況
・市場機会・将来の動向

The electron beam curable coating market was valued at over USD 400 million in 2021, and the market is projected to register a CAGR of greater than 3% during the forecast period (2022-2027).

Due to the COVID-19 outbreak, nationwide lockdown around the world, disruption in manufacturing activities and supply chains, and production halts negatively impacted the market in 2020. However, the conditions started recovering in 2021, thereby restoring the growth trajectory of the market studied during the forecast period.

Key Highlights

  • The major factor driving the market studied is the growing demand for the electron beam curable coating market from various end-user industries.
  • The growing demand for electron beam curable coating from electric vehicles is forecasted to offer various opportunities for the growth of the market over the forecast period.
  • Electron beam curable coating from the aerospace industry is expected to dominate the market studied over the forecast period.
  • The Asia-Pacific region represents the largest market and is also expected to be the fastest-growing market over the forecast period owing to the increasing consumption from countries such as China, India, and Japan.

Electron Beam Curable Coating Market Trends

Growing Demand from the Packaging Industry

  • In the packaging industry, electron beam curable coatings are widely used for food packaging materials such as folding cartons for frozen foods, gable-top cartons for fruit juice packaging, and dry food packaging owing to their low odor and low migration packaging solutions.
  • Moreover, these coatings are also widely adopted in flexible packaging applications owing to their clean, fast, and energy-efficient way of processing coatings in flexible packaging operations. Electron beam curable coatings exhibit properties such as low VOC emissions, instant drying at high production speeds, and high chemical and high abrasion resistance, which makes them ideal for application in various packaging applications.
  • Companies such as PepsiCo are actively engaged in exploring the use of electron beam curable coating and ink in surface print applications for flexible food packaging as an alternative to eliminate the potential use of photoinitiators to migrate into food.
  • In recent years, electron beam curable coatings are increasingly gaining the interest of packaging manufacturers to shift traditional multi-film packaging structures to mono-web packaging structures. As electron beam, curable coatings help reduce the packaging layers by eliminating the use of lamination adhesive between film layers and minimizing the use of photoinitiators in flexible packaging, which makes it suitable for food packaging applications.
  • According to a report published by PMMI, ‘The Association for Packaging and Processing Technologies,’ growth in the global packaging industry was anticipated to reach USD 42.2 billion by 2021, an increase from USD 36.8 billion in 2016, owing to the increasing population, growing sustainability concerns, more spending power in developing regions, and rising demand for smart packaging, among others.
  • India is also one of the major consumers of packaged foods and beverages. According to the Packaging Industry Association of India (PIAI), the packaging industry is expected to grow at a rate of 22% during the forecast period.
  • Hence, owing to the above-mentioned factors, the application of electron beam curable coating from the packaging industry is likely to dominate during the forecast period.

Asia-Pacific Region to Dominate the Market

  • The Asia-Pacific region is expected to dominate the market for electron beam curable coating during the forecast period. The rising demand for electron beam curable coating from the aerospace industry and growing application in the automotive and electronic sector in developing countries like China, India, and Japan are expected to drive the demand for electron beam curable coating in this region.
  • The largest producers of electron beam curable coating are located in the Asia-Pacific region. Some of the leading companies in the production of electron beam curable coating include PPG Industries Inc, ALLNEX NETHERLANDS BV, Hexion, BASF, and RAHN AG.
  • The packaging industry in China is expected to register tremendous growth, to reach CNY 2 trillion by 2025. According to Interpak, in China, in the foodstuff packaging category, total packaging is expected to reach 447 billion units in 2023. This positive momentum in the packaging industry is expected to ignite the market demand for the electron beam curable coatings market in the country.
  • The Asia-Pacific automotive manufacturing industry is the largest in the world, with a production share of around 60% in 2021. According to OICA, the total automotive production stood at 46.73 million units in 2021, registering a growth of 6% compared to 2020, driving the demand for the electron beam curable coatings market.
  • Moreover, in India, at present, there are 153 airports, and it is anticipated to increase to 190-200 by FY 2040, and the rising fleet size is expected to escalate the number of airplanes to 1,100 by 2027.​
  • The total production value of the electronics industry in Japan was around JPY 9.96 trillion in 2020, which was 96.6% of the production value compared to the previous year. However, the electronics industry production till August 2021 increased to JPY 7.193 trillion, which was 113.4% of the first eight months’ value in 2020, thereby increasing the consumption of electron mean curable coatings in the region.
  • Due to the above-mentioned factors, the market for electron beam curable coating in the Asia-Pacific region is projected to grow significantly during the study period.

Electron Beam Curable Coating Market Competitor Analysis

The electron beam curable coating market is consolidated in nature, with only a few major players dominating the market. Some of the major companies (not in any particular order) include PPG Industries Inc., Arkema, BASF SE, IGM Resins, and ALLNEX GMBH (PTT Global Chemical Public Company Limited).

Additional Benefits:

  • The market estimate (ME) sheet in Excel format
  • 3 months of analyst support
レポート目次

1 INTRODUCTION
1.1 Study Assumptions
1.2 Scope of the Study

2 RESEARCH METHODOLOGY

3 EXECUTIVE SUMMARY

4 MARKET DYNAMICS
4.1 Drivers
4.1.1 Increasing Applications Across Various End-user Industries
4.1.2 Other Drivers
4.2 Restraints
4.2.1 High Cost in the Manufacturing Involved
4.2.2 Other Restraints
4.3 Industry Value Chain Analysis
4.4 Porter’s Five Forces Analysis
4.4.1 Bargaining Power of Suppliers
4.4.2 Bargaining Power of Buyers
4.4.3 Threat of New Entrants
4.4.4 Threat of Substitute Products and Services
4.4.5 Degree of Competition
4.5 Process Analysis

5 MARKET SEGMENTATION
5.1 End-user Industry
5.1.1 Aerospace
5.1.2 Electrical and Electronics
5.1.3 Automotive
5.1.4 Packaging
5.1.5 Other End-user Industries (Batteries)
5.2 Geography
5.2.1 Asia-Pacific
5.2.1.1 China
5.2.1.2 India
5.2.1.3 Japan
5.2.1.4 South Korea
5.2.1.5 Rest of Asia-Pacific
5.2.2 North America
5.2.2.1 United States
5.2.2.2 Canada
5.2.2.3 Mexico
5.2.3 Europe
5.2.3.1 Germany
5.2.3.2 United Kingdom
5.2.3.3 France
5.2.3.4 Italy
5.2.3.5 Rest of Europe
5.2.4 South America
5.2.4.1 Brazil
5.2.4.2 Argentina
5.2.4.3 Rest of South America
5.2.5 Middle-East
5.2.5.1 Saudi Arabia
5.2.5.2 South Africa
5.2.5.3 Rest of Middle-East

6 COMPETITIVE LANDSCAPE
6.1 Mergers and Acquisitions, Joint Ventures, Collaborations, and Agreements
6.2 Market Share Analysis**/Ranking Analysis
6.3 Strategies Adopted by Leading Players
6.4 Company Profiles
6.4.1 ALLNEX GMBH(PTT Global Chemical Public Company Limited)
6.4.2 Abrisa Technologies
6.4.3 Arkema
6.4.4 BASF SE
6.4.5 Dainichiseika Color & Chemicals Mfg Co. Ltd
6.4.6 Covestro AG
6.4.7 Hexion
6.4.8 INX International Ink Co.
6.4.9 PPG Industries Inc.
6.4.10 R&D Coatings LLC
6.4.11 Dai Nippon Printing Co. Ltd
6.4.12 IGM Resins

7 MARKET OPPORTUNITIES AND FUTURE TRENDS
7.1 Growth in the Electric Vehicles Market