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市場調査レポート
商品コード
1576474
光学コーティングの市場規模、シェア、予測、動向分析:タイプ別、材料別、技術別、用途別、地域別 - 2031年までの世界予測Optical Coatings Market Size, Share, Forecast, & Trends Analysis by Type, Material, Technology, Application, and Geography - Global Forecast to 2031 |
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光学コーティングの市場規模、シェア、予測、動向分析:タイプ別、材料別、技術別、用途別、地域別 - 2031年までの世界予測 |
出版日: 2024年09月01日
発行: Meticulous Research
ページ情報: 英文 220 Pages
納期: 5~7営業日
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光学コーティング市場:タイプ別(反射防止コーティング、高反射コーティング)、材料別、技術別(真空蒸着、電子ビーム蒸着)、用途別(コンシューマーエレクトロニクス、医療、自動車)、地域別 - 2031年までの世界予測」と題するこの調査レポートは、主要5地域の光学コーティング市場を詳細に分析し、現在の市場動向、市場規模、市場シェア、最近の動向、2031年までの予測に重点を置いています。
光学コーティング市場は、2024年から2031年までのCAGは8.1%で、2031年までに259億米ドルに達すると予測されています。
光学コーティング市場の成長には、太陽光発電分野での光学コーティング需要の増加と、光学コーティングプロセスにおける真空蒸着技術の利用拡大が寄与しています。さらに、ヘルスケアやバイオテクノロジー用途での光学コーティング需要の増加は、この市場で事業を展開するプレーヤーに成長機会をもたらすと期待されています。しかし、原材料価格の変動は市場成長に影響を与える重要な課題です。さらに、反射防止コーティングの採用が増加していることは、この市場の顕著な動向です。
(注:SWOT分析は上位5社について提供されます)
Optical Coatings Market by Type (Anti-reflective Coatings, High-reflective Coatings), Material, Technology (Vacuum Deposition, E-beam Deposition), Application (Consumer Electronics, Medical, Automotive), and Geography-Global Forecast to 2031.
The research report titled 'Optical Coatings Market by Type (Anti-reflective Coatings, High-reflective Coatings), Material, Technology (Vacuum Deposition, E-beam Deposition), Application (Consumer Electronics, Medical, Automotive), and Geography-Global Forecast to 2031' provides an in-depth analysis of optical coatings market in five major geographies and emphasizes on the current market trends, market sizes, market shares, recent developments, and forecasts till 2031.
The optical coatings market is projected to reach $25.9 billion by 2031, at a CAGR of 8.1% from 2024 to 2031.
The growth of the optical coatings market is fueled by the increasing demand for optical coatings in the solar power sector and the expanding use of vacuum deposition technology in the optical coating process. Additionally, the increasing demand for optical coatings for healthcare and biotechnology applications is expected to generate growth opportunities for players operating in this market. However, the volatility in raw materials prices is a significant challenge affecting market growth. Furthermore, the increasing adoption of anti-reflective coatings is a prominent trend in this market.
The optical coatings market is segmented by type (anti-reflective coatings, high-reflective coatings, filter coatings, beam splitter coatings, transparent conductive coatings, polarizing coatings) and other coatings; material (silicon dioxide, titanium dioxide, magnesium fluoride, fluorides, germanium, metal coatings, dielectric coatings, and other coating materials); technology (vacuum deposition, e-beam deposition, ion assist e-beam deposition, plasma assist e-beam deposition, advanced plasma sputtering (APS), and other coating technologies); and application (consumer electronics, solar, medical, aerospace & defense, automotive, telecommunication, transportation, and other applications). The study also evaluates industry competitors and analyses the market at the regional and country levels.
Based on type, the optical coatings market is segmented into anti-reflective coatings, high-reflective coatings, filter coatings, beam splitter coatings, transparent conductive coatings, polarizing coatings, and other coatings. In 2024, the anti-reflective coatings segment is expected to account for the largest share of over 37.0% of the market. The large market share of this segment is attributed to the growing use of anti-reflective (AR) coatings to enhance the durability and longevity of optical components. Additionally, the rising adoption of optical coatings to improve image contrast and clarity across various applications-such as microscopy, photography, and display technologies-further supports the significant market share. Moreover, the anti-reflective coatings segment is poised to register the highest CAGR during the forecast period.
Based on material, the optical coatings market is segmented into silicon dioxide, titanium dioxide, magnesium fluoride, fluorides, germanium, metal coatings, dielectric coatings, and other coating materials. In 2024, the silicon dioxide segment is expected to account for the largest share of the market. The large market share of this segment is driven by the increasing adoption of silicon dioxide in optical coatings to ensure high light transmission in lenses, filters, and mirrors. Its growing use in both single-layer and multi-layer optical coatings helps to reduce surface reflections and enhance light transmission. Moreover, silicon dioxide improves the mechanical strength of optical coatings, thereby extending the lifespan of optical components.
Based on technology, the optical coatings market is segmented into vacuum deposition, e-beam deposition, ion-assisted deposition, plasma-assisted e-beam deposition, advanced plasma sputtering (APS), and other coating technologies. In 2024, the vacuum deposition segment is expected to account for the largest share of over 40.0% of the market, and it is also poised to register the highest CAGR during the forecast period. The large market share of this segment is attributed to the rising use of vacuum electron deposition in optical coatings, which allows for precise control over layer thickness and composition. The growth of this technology ensures consistent optical performance across various elements, such as lenses and mirrors. Furthermore, vacuum deposition offers benefits like low scatter, high transmission efficiency, and minimal absorption, making it increasingly popular for a wide range of optical coatings.
Based on application, the optical coatings market is segmented into consumer electronics, solar, medical, aerospace & defense, automotive, telecommunication, transportation, and other applications. In 2024, the consumer electronics segment is expected to account for the largest share of over 41.0% of the market. However, the aerospace & defense segment is poised to register the highest CAGR during the forecast period. The rapid growth of this segment is driven by the increasing preference for optical coatings that protect environmental factors such as moisture, dust, and abrasion. Additionally, these coatings play a crucial role in the defense industry by enhancing the performance, safety, and efficiency of high-altitude aircraft, satellites, and military equipment.
Based on geography, the optical coatings market is segmented into North America, Europe, Asia-Pacific, Latin America, and the Middle East & Africa. In 2024, North America is expected to account for the largest share of over 38% of the market. However, the market in Asia-Pacific is poised to register the highest CAGR of over 9.5% during the forecast period. The rapid growth of this regional market is fueled by the rising demand for optical coatings across diverse industries, including automotive, healthcare, and electronics. Furthermore, the expansion of the automotive sector, which employs optical coatings for advanced safety features, is significantly contributing to this growth in the region.
The key players operating in the optical coatings market are DuPont de Nemours, Inc. (U.S.), Carl Zeiss AG (Germany), Nippon Sheet Glass Co., Ltd. (Japan), Inrad Optics, Inc. (U.S.), PPG Industries, Inc. (U.S.), Newport Corporation (A Subsidiary of MKS Instruments, Inc.) (U.S.), Coherent Corp. (U.S.), ALLUXA, INC. (A Subsidiary of Enpro Inc.) (U.S.), Materion Corporation (U.S.), Reynard Corporation (U.S.), Chroma Technology Corp. (U.S.), Cascade Optical Corporation (U.S.), Abrisa Technologies (U.S.), Surface Optics Corporation (U.S.), and Optimax Systems, Inc. (U.S.).
Optical Coatings Market Assessment-by Type
Optical Coatings Market Assessment-by Material
Optical Coatings Market Assessment-by Technology
Optical Coatings Market Assessment-by Application
Optical Coatings Market Assessment-by Geography
(Note: SWOT Analysis Will Be Provided for the Top 5 Companies)