1. Market – Executive Summary
2. Market Overview
2.1. Market Definition and Introduction
2.2. Market Taxonomy/ Research Scope
3. Market Background and Foundation Data
3.1. Global Construction Material Market Analysis
3.2. Global Glass Market Growth Outlook
3.3. Types of Glass and Their Usability Overview
3.4. Growth Rate Assessment and Shift in Dynamics of Glass
3.5. Market Opportunity Assessment
3.5.1. Total Available Market (US$ million)
3.5.2. Serviceable Addressable Market (US$ million)
3.5.3. Serviceable Obtainable Market (US$ million)
3.6. Market Dynamics
3.6.1. Drivers
3.6.2. Restraints
3.6.3. Opportunities
3.6.4. Trends
3.7. Macro- Economic Factors
3.8. Forecast and Factors – Relevance and Impact
3.9. PESTLE Analysis
3.10. Porter’s Five Force Analysis
3.11. Investment Feasibility Analysis
3.12. Industry Value and Supply Chain Analysis
3.12.1. Value Added at Each Node of Supply Chain
3.12.2. Gross Profitability Margins (at Every Level)
3.12.3. List of Key Participants
3.12.3.1. Operating Margins (at each node of value chain)
3.12.3.2. Key Raw Material Manufacturers
3.12.3.3. Key Manufacturers
3.12.3.4. Key Distributor/Retailers
3.12.3.5. Key End-use Industries
4. Global Demand (Tons) Analysis and Forecast
4.1. Historical Market Volume (Tons) Analysis, 2018-2022
4.2. Current and Future Market Volume (Tons) Projections, 2023-2033
4.3. Y-o-Y Volume Growth Trend Analysis
5. Global Market – Pricing Analysis
5.1. Type and Country-Level Pricing Analysis
5.2. Global Average Pricing Analysis Benchmark
5.3. Factors Influencing Pricing
6. Global Market Value (US$ million) Analysis and Forecast
6.1. Historical Market Value (US$ million) Analysis, 2018-2022
6.2. Current and Future Market Value (US$ million) Projections, 2023-2033
6.2.1. Y-o-Y Growth Trend Analysis
6.2.2. Absolute $ Opportunity Analysis
7. Global Market Analysis and Forecast, By Type
7.1. Introduction / Key Findings
7.2. Historical Market Size (US$ million) and Volume (Tons) Analysis By Type, 2018-2022
7.3. Current and Future Market Size (US$ million) Analysis and Volume (Tons) Forecast By Type, 2023-2033
7.3.1. Low-e-Glass
7.3.2. Special Glass
7.4. Market Attractiveness Analysis By Type
8. Global Market Analysis and Forecast, By Chemical Composition
8.1. Introduction / Key Findings
8.2. Historical Market Size (US$ million) and Volume (Tons) Analysis By Chemical Composition, 2018-2022
8.3. Current and Future Market Size (US$ million) Analysis and Volume (Tons) Forecast By Chemical Composition, 2023-2033
8.3.1. Soda-Lime
8.3.2. Potash-Lime
8.3.3. Potash-Lead
8.4. Market Attractiveness Analysis By Chemical Composition
9. Global Market Analysis and Forecast, By Manufacturing Process
9.1. Introduction / Key Findings
9.2. Historical Market Size (US$ million) and Volume (Tons) Analysis By Manufacturing Process, 2018-2022
9.3. Current and Future Market Size (US$ million) Analysis and Volume (Tons) Forecast By Manufacturing Process, 2023-2033
9.3.1. Float Process
9.3.2. Rolled/Sheet Process
9.4. Market Attractiveness Analysis By Manufacturing Process
10. Global Market Analysis and Forecast, By Region
10.1. Introduction
10.2. Historical Market Size (US$ million) and Volume (Tons) Analysis By Region, 2018-2022
10.3. Current Market Size (US$ million) Analysis and Volume (Tons) Forecast By Region, 2023-2033
10.3.1. North America
10.3.2. Latin America
10.3.3. Europe
10.3.4. East Asia
10.3.5. South Asia & Oceania
10.3.6. Middle East & Africa
10.4. Market Attractiveness Analysis By Region
11. North America Market Analysis and Forecast
11.1. Introduction / Key Findings
11.2. Pricing Analysis
11.3. Historical Market Size (US$ million) and Volume (Tons) Trend Analysis By Market Taxonomy, 2018-2022
11.4. Market Size (US$ million) and Volume (Tons) Forecast By Market Taxonomy, 2023-2033
11.4.1. By Country
11.4.1.1. U.S.
11.4.1.2. Canada
11.4.2. By Type
11.4.3. By Chemical Composition
11.4.4. By Manufacturing Process
11.5. Market Attractiveness Analysis
11.5.1. By Country
11.5.2. By Type
11.5.3. By Chemical Composition
11.5.4. By Manufacturing Process
12. Latin America Market Analysis and Forecast
12.1. Introduction / Key Findings
12.2. Pricing Analysis
12.3. Historical Market Size (US$ million) and Volume (Tons) Trend Analysis By Market Taxonomy, 2018-2022
12.4. Market Size (US$ million) and Volume (Tons) Forecast By Market Taxonomy, 2023-2033
12.4.1. By Country
12.4.1.1. Brazil
12.4.1.2. Mexico
12.4.1.3. Argentina
12.4.1.4. Rest of Latin America
12.4.2. By Type
12.4.3. By Chemical Composition
12.4.4. By Manufacturing Process
12.5. Market Attractiveness Analysis
12.5.1. By Country
12.5.2. By Type
12.5.3. By Chemical Composition
12.5.4. By Manufacturing Process
13. Europe Market Analysis and Forecast
13.1. Introduction / Key Findings
13.2. Pricing Analysis
13.3. Historical Market Size (US$ million) and Volume (Tons) Trend Analysis By Market Taxonomy, 2018-2022
13.4. Market Size (US$ million) and Volume (Tons) Forecast By Market Taxonomy, 2023-2033
13.4.1. By Country
13.4.1.1. Germany
13.4.1.2. France
13.4.1.3. Italy
13.4.1.4. Spain
13.4.1.5. U.K.
13.4.1.6. BENELUX
13.4.1.7. Russia
13.4.1.8. Rest of Europe
13.4.2. By Type
13.4.3. By Chemical Composition
13.4.4. By Manufacturing Process
13.5. Market Attractiveness Analysis
13.5.1. By Country
13.5.2. By Type
13.5.3. By Chemical Composition
13.5.4. By Manufacturing Process
14. East Asia Market Analysis and Forecast
14.1. Introduction / Key Findings
14.2. Pricing Analysis
14.3. Historical Market Size (US$ million) and Volume (Tons) Trend Analysis By Market Taxonomy, 2018-2022
14.4. Market Size (US$ million) and Volume (Tons) Forecast By Market Taxonomy, 2023-2033
14.4.1. By Country
14.4.1.1. China
14.4.1.2. Japan
14.4.1.3. South Korea
14.4.2. By Type
14.4.3. By Chemical Composition
14.4.4. By Manufacturing Process
14.5. Market Attractiveness Analysis
14.5.1. By Country
14.5.2. By Type
14.5.3. By Chemical Composition
14.5.4. By Manufacturing Process
15. South Asia & Oceania Market Analysis and Forecast
15.1. Introduction / Key Findings
15.2. Pricing Analysis
15.3. Historical Market Size (US$ million) and Volume (Tons) Trend Analysis By Market Taxonomy, 2018-2022
15.4. Market Size (US$ million) and Volume (Tons) Forecast By Market Taxonomy, 2023-2033
15.4.1. By Country
15.4.1.1. India
15.4.1.2. Thailand
15.4.1.3. Indonesia
15.4.1.4. Malaysia
15.4.1.5. Australia & New Zealand
15.4.1.6. Rest of South Asia & Oceania
15.4.2. By Type
15.4.3. By Chemical Composition
15.4.4. By Manufacturing Process
15.5. Market Attractiveness Analysis
15.5.1. By Country
15.5.2. By Type
15.5.3. By Chemical Composition
15.5.4. By Manufacturing Process
16. Middle East & Africa Market Analysis and Forecast
16.1. Introduction / Key Findings
16.2. Pricing Analysis
16.3. Historical Market Size (US$ million) and Volume (Tons) Trend Analysis By Market Taxonomy, 2018-2022
16.4. Market Size (US$ million) and Volume (Tons) Forecast By Market Taxonomy, 2023-2033
16.4.1. By Country
16.4.1.1. GCC Countries
16.4.1.2. South Africa
16.4.1.3. North Africa
16.4.1.4. Turkiye
16.4.1.5. Rest of Middle East & Africa
16.4.2. By Type
16.4.3. By Chemical Composition
16.4.4. By Manufacturing Process
16.5. Market Attractiveness Analysis
16.5.1. By Country
16.5.2. By Type
16.5.3. By Chemical Composition
16.5.4. By Manufacturing Process
17. Country-level Market Analysis and Forecast
17.1. Introduction / Key Findings
17.1.1. Market Value Proportion Analysis, By Key Countries
17.1.2. Global Vs. Country Growth Comparison
17.2. US Market Analysis
17.2.1. Value Proportion Analysis by Market Taxonomy
17.2.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.2.2.1. By Type
17.2.2.2. By Chemical Composition
17.2.2.3. By Manufacturing Process
17.3. Canada Market Analysis
17.3.1. Value Proportion Analysis by Market Taxonomy
17.3.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.3.2.1. By Type
17.3.2.2. By Chemical Composition
17.3.2.3. By Manufacturing Process
17.4. Brazil Market Analysis
17.4.1. Value Proportion Analysis by Market Taxonomy
17.4.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.4.2.1. By Type
17.4.2.2. By Chemical Composition
17.4.2.3. By Manufacturing Process
17.5. Mexico Market Analysis
17.5.1. Value Proportion Analysis by Market Taxonomy
17.5.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.5.2.1. By Type
17.5.2.2. By Chemical Composition
17.5.2.3. By Manufacturing Process
17.6. Argentina Market Analysis
17.6.1. Value Proportion Analysis by Market Taxonomy
17.6.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.6.2.1. By Type
17.6.2.2. By Chemical Composition
17.6.2.3. By Manufacturing Process
17.7. Germany Market Analysis
17.7.1. Value Proportion Analysis by Market Taxonomy
17.7.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.7.2.1. By Type
17.7.2.2. By Chemical Composition
17.7.2.3. By Manufacturing Process
17.8. France Market Analysis
17.8.1. Value Proportion Analysis by Market Taxonomy
17.8.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.8.2.1. By Type
17.8.2.2. By Chemical Composition
17.8.2.3. By Manufacturing Process
17.9. Italy Market Analysis
17.9.1. Value Proportion Analysis by Market Taxonomy
17.9.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.9.2.1. By Type
17.9.2.2. By Chemical Composition
17.9.2.3. By Manufacturing Process
17.10. Spain Market Analysis
17.10.1. Value Proportion Analysis by Market Taxonomy
17.10.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.10.2.1. By Type
17.10.2.2. By Chemical Composition
17.10.2.3. By Manufacturing Process
17.11. BENELUX Market Analysis
17.11.1. Value Proportion Analysis by Market Taxonomy
17.11.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.11.2.1. By Type
17.11.2.2. By Chemical Composition
17.11.2.3. By Manufacturing Process
17.12. Russia Market Analysis
17.12.1. Value Proportion Analysis by Market Taxonomy
17.12.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.12.2.1. By Type
17.12.2.2. By Chemical Composition
17.12.2.3. By Manufacturing Process
17.13. U.K. Market Analysis
17.13.1. Value Proportion Analysis by Market Taxonomy
17.13.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.13.2.1. By Type
17.13.2.2. By Chemical Composition
17.13.2.3. By Manufacturing Process
17.14. China Market Analysis
17.14.1. Value Proportion Analysis by Market Taxonomy
17.14.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.14.2.1. By Type
17.14.2.2. By Chemical Composition
17.14.2.3. By Manufacturing Process
17.15. Japan Market Analysis
17.15.1. Value Proportion Analysis by Market Taxonomy
17.15.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.15.2.1. By Type
17.15.2.2. By Chemical Composition
17.15.2.3. By Manufacturing Process
17.16. South Korea Market Analysis
17.16.1. Value Proportion Analysis by Market Taxonomy
17.16.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.16.2.1. By Type
17.16.2.2. By Chemical Composition
17.16.2.3. By Manufacturing Process
17.17. India Market Analysis
17.17.1. Value Proportion Analysis by Market Taxonomy
17.17.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.17.2.1. By Type
17.17.2.2. By Chemical Composition
17.17.2.3. By Manufacturing Process
17.18. ASEAN Countries Market Analysis
17.18.1. Value Proportion Analysis by Market Taxonomy
17.18.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.18.2.1. By Type
17.18.2.2. By Chemical Composition
17.18.2.3. By Manufacturing Process
17.19. Australia Market Analysis
17.19.1. Value Proportion Analysis by Market Taxonomy
17.19.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.19.2.1. By Type
17.19.2.2. By Chemical Composition
17.19.2.3. By Manufacturing Process
17.20. GCC Countries Market Analysis
17.20.1. Value Proportion Analysis by Market Taxonomy
17.20.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.20.2.1. By Type
17.20.2.2. By Chemical Composition
17.20.2.3. By Manufacturing Process
17.21. Turkiye Market Analysis
17.21.1. Value Proportion Analysis by Market Taxonomy
17.21.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.21.2.1. By Type
17.21.2.2. By Chemical Composition
17.21.2.3. By Manufacturing Process
17.22. South Africa Market Analysis
17.22.1. Value Proportion Analysis by Market Taxonomy
17.22.2. Volume (Tons) and Value (US$ million) Analysis and Forecast by Market Taxonomy, 2018-2033
17.22.2.1. By Type
17.22.2.2. By Chemical Composition
17.22.2.3. By Manufacturing Process
18. Market Structure Analysis
18.1. Market Analysis by Tier of Companies
18.2. Market Concentration of Players
18.3. Market Share Analysis of Top Players
18.4. Market Presence Analysis
19. Competition Analysis
19.1. Competition Dashboard
19.2. Competition Benchmarking of Products
19.3. Competition Deep Dive:
19.3.1. China Glass Holdings
19.3.1.1. Overview
19.3.1.2. Product Portfolio
19.3.1.3. Key Financials
19.3.1.4. Sales Footprint
19.3.1.5. SWOT Analysis
19.3.1.6. Key Developments
19.3.1.7. Strategy Overview
19.3.2. Saint Gobain
19.3.2.1. Overview
19.3.2.2. Product Portfolio
19.3.2.3. Key Financials
19.3.2.4. Sales Footprint
19.3.2.5. SWOT Analysis
19.3.2.6. Key Developments
19.3.2.7. Strategy Overview
19.3.3. PPG Industries
19.3.3.1. Overview
19.3.3.2. Product Portfolio
19.3.3.3. Key Financials
19.3.3.4. Sales Footprint
19.3.3.5. SWOT Analysis
19.3.3.6. Key Developments
19.3.3.7. Strategy Overview
19.3.4. Corning International
19.3.4.1. Overview
19.3.4.2. Product Portfolio
19.3.4.3. Key Financials
19.3.4.4. Sales Footprint
19.3.4.5. SWOT Analysis
19.3.4.6. Key Developments
19.3.4.7. Strategy Overview
19.3.5. AGC Co
19.3.5.1. Overview
19.3.5.2. Product Portfolio
19.3.5.3. Key Financials
19.3.5.4. Sales Footprint
19.3.5.5. SWOT Analysis
19.3.5.6. Key Developments
19.3.5.7. Strategy Overview
19.3.6. Kyocera Co
19.3.6.1. Overview
19.3.6.2. Product Portfolio
19.3.6.3. Key Financials
19.3.6.4. Sales Footprint
19.3.6.5. SWOT Analysis
19.3.6.6. Key Developments
19.3.6.7. Strategy Overview
19.3.7. Nippon Sheet Glass Co., Ltd.
19.3.7.1. Overview
19.3.7.2. Product Portfolio
19.3.7.3. Key Financials
19.3.7.4. Sales Footprint
19.3.7.5. SWOT Analysis
19.3.7.6. Key Developments
19.3.7.7. Strategy Overview
19.3.8. Fuyao Glass Industry Group
19.3.8.1. Overview
19.3.8.2. Product Portfolio
19.3.8.3. Key Financials
19.3.8.4. Sales Footprint
19.3.8.5. SWOT Analysis
19.3.8.6. Key Developments
19.3.8.7. Strategy Overview
19.3.9. Guardian Industries
19.3.9.1. Overview
19.3.9.2. Product Portfolio
19.3.9.3. Key Financials
19.3.9.4. Sales Footprint
19.3.9.5. SWOT Analysis
19.3.9.6. Key Developments
19.3.9.7. Strategy Overview
19.3.10. Vitro Glass
19.3.10.1. Overview
19.3.10.2. Product Portfolio
19.3.10.3. Key Financials
19.3.10.4. Sales Footprint
19.3.10.5. SWOT Analysis
19.3.10.6. Key Developments
19.3.10.7. Strategy Overview
19.3.11. Other Players
19.3.11.1. Overview
19.3.11.2. Product Portfolio
19.3.11.3. Key Financials
19.3.11.4. Sales Footprint
19.3.11.5. SWOT Analysis
19.3.11.6. Key Developments
19.3.11.7. Strategy Overview
20. Assumptions & Acronyms Used
21. Research Methodology
| ※参考情報 建築用ガラスは、建物の内外装に使用される特殊なガラスであり、建築物のデザインや機能性、エネルギー効率に重要な役割を果たしています。ガラスは透過性があり、光を取り入れつつ外部からの視線を遮ることができ、その透明感や美しさから建築物において多く使用されています。また、近年はエコロジーや省エネが重視される中で、建築用ガラスの技術も大きく進化しています。 建築用ガラスにはいくつかの種類があります。まず、単板ガラスは、最も基本的なタイプであり、単層のガラスです。これは一般的な窓やパーティションに使用されますが、熱や音の遮断性能は他の種類に比べて劣ります。 次に、複層ガラスは、2枚以上のガラスを重ね合わせて作られたもので、ガラスの間に空気やガスが封入されているため、断熱性や防音性が高くなります。これにより、建物内の温度調節が容易になり、エネルギー効率の向上にも寄与します。たとえば、ペアガラスやトリプルガラスと呼ばれるものが該当します。 また、強化ガラスは、熱処理を施して強度を増したもので、衝撃や圧力に対して優れた耐性を持っています。これにより、特に安全性が求められる場所や高層ビルの窓などに使用されています。さらに、ライフスタイルの多様化に伴い、耐衝撃ガラスや防弾ガラスも需要が高まっています。 特殊ガラスとしては、Low-Eガラスや熱線反射ガラスがあります。Low-Eガラスは、特殊なコーティングが施されており、紫外線や赤外線を反射することで、室内の温度を一定に保つことができます。これにより、冷暖房の効率が向上し、エネルギーコストを削減することが可能です。熱線反射ガラスも同様に、外部からの熱を反射し、室内の温度上昇を抑える効果があります。 建築用ガラスの用途は非常に広範で、多岐にわたります。一般的な住宅の窓や戸、商業ビルのショーウィンドウやカーテンウォール、公共施設の透明な壁など、さまざまな場面で使われています。また、ガラスパネルを使用したファサードデザインや、スカイライトのような天井の一部としても利用されています。これにより、空間に開放感をもたらし、自然光を取り入れることができます。 近年、建築用ガラスはスマート技術と融合することで、さらに進化しています。たとえば、調光機能を持つガラスや、自動的に温度調節を行うガラスなどがあります。これらの技術により、快適な室内環境を実現するだけでなく、エネルギーの効率的な利用も可能となります。 さらに、建築用ガラスはサステイナビリティへの対応も求められています。リサイクル可能な材料としての特性があり、廃棄物の削減やエネルギー消費の低減にも寄与します。今後は、環境への配慮がますます重要視される中で、より持続可能なガラスの開発が期待されます。 建築用ガラスの関連技術には、製造工程の改善や新しいコーティング技術、強度試験方法などがあります。これにより、ガラス製品の性能向上やコスト削減が図られています。さらに、デジタル技術を活用した設計ツールやシミュレーション技術も進化しており、より効率的で創造的なデザインが可能となっています。 建築用ガラスは、デザイン性と機能性を兼ね備えた重要な要素であり、未来の建築物においてますます重要な役割を果たすでしょう。技術の進化とともに、多様化するニーズに対応するため、常に革新が求められる分野でもあります。建築用ガラスがもたらす可能性は無限大であり、今後の展望に期待が寄せられています。 |
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