1. Global Market – Executive Summary
1.1. Summary Of Key Findings
1.2. Summary Of Key Statistics
1.3. Key Market Characteristics & Attributes
1.4. Opportunity Assessment
1.5. Fact.MR Analysis And Recommendations
2. Global Market Overview
2.1. Market Coverage / Taxonomy
2.2. Market Definition / Scope / Limitations
3. Key Market Trends
3.1. Key Trends Impacting The Market
3.2. Mega Trends
4. Key Success Factors
4.1. Vertical Wise Uptake and Adoption Analysis
4.2. Strategic Promotional Strategies
5. Market Background
5.1. Associated Industry Assessment
5.1.1. Global Oil & Gas Industry Outlook
5.1.2. Global Aerospace and Defense Sector Outlook
5.1.3. Global Construction Industry Outlook
5.1.4. Global Automotive Industry Outlook
5.1.5. Global Power Generation Industry Outlook
5.2. Test Method Adoption Rate Analysis by Key Industries
5.2.1. Visual Testing
5.2.2. Magnetic Particle Testing
5.2.3. Liquid Penetrant Testing
5.2.4. Eddy Current Testing
5.2.5. Ultrasonic Testing
5.2.6. Radiographic Testing
5.3. Investment Feasibility Matrix (For Business)
5.4. Recent Industry Developments
5.5. Market White Space Assessment And Opportunity Analysis
5.6. Porter’s Five Forces Analysis
5.7. Macro-Economic Factors
5.7.1. Global GDP Growth Outlook
5.7.2. Top Companies Historical Growth
5.7.3. Technological Advancements In Non-Destructive Testing
5.7.4. Rapid Industrialization And Urbanization
5.7.5. End Use Sectors Growth Outlook and GVA
5.8. Value Chain Analysis
5.8.1. List Of Key Market Manufacturers
5.8.2. List Of Key Channel Partners
5.8.3. Profitability Margins
5.9. Market Dynamics
5.9.1. Drivers
5.9.2. Industry Challenges
5.9.3. Opportunities
6. Global Market Size (US$ Mn) Analysis And Forecast, 2018-2033
6.1. Historical Market Value (US$ Mn) Analysis, 2018-2022
6.2. Current And Future Market Value (US$ Mn) Forecast, 2023-2033
6.3. Y-O-Y Growth Trend Analysis
7. Global Market Value Analysis And Forecast 2018-2033
7.1. Global Market Value Analysis 2018-2022 And Forecast 2023-2033, By Offering
7.1.1. Services
7.1.2. Equipment
7.2. Global Market Value Analysis 2018-2022 And Forecast 2023-2033, By Test Method
7.2.1. Visual Testing
7.2.2. Magnetic Particle Testing
7.2.3. Liquid Penetrant Testing
7.2.4. Eddy Current Testing
7.2.5. Ultrasonic Testing
7.2.6. Radiographic Testing
7.3. Global Market Value Analysis 2018-2022 And Forecast 2023-2033, By End Use
7.3.1. Oil & Gas
7.3.2. Manufacturing
7.3.3. Aerospace and Defense
7.3.4. Construction
7.3.5. Automotive
7.3.6. Power Generation
7.3.7. Others
7.4. Global Market Value Analysis 2018-2022 And Forecast 2023-2033, By Region
7.4.1. North America
7.4.2. Latin America
7.4.3. Europe
7.4.4. East Asia
7.4.5. South Asia & Oceania
7.4.6. MEA
8. North America Market Value Analysis And Forecast 2018-2033
8.1. North America Market Value Analysis 2018-2022 And Forecast 2023-2033, By Country
8.1.1. US
8.1.2. Canada
8.2. North America Market Value Analysis 2018-2022 And Forecast 2023-2033, By Offering
8.2.1. Services
8.2.2. Equipment
8.3. North America Market Value Analysis 2018-2022 And Forecast 2023-2033, By Test Method
8.3.1. Visual Testing
8.3.2. Magnetic Particle Testing
8.3.3. Liquid Penetrant Testing
8.3.4. Eddy Current Testing
8.3.5. Ultrasonic Testing
8.3.6. Radiographic Testing
8.4. North America Market Value Analysis 2018-2022 And Forecast 2023-2033, By End Use
8.4.1. Oil & Gas
8.4.2. Manufacturing
8.4.3. Aerospace and Defense
8.4.4. Construction
8.4.5. Automotive
8.4.6. Power Generation
8.4.7. Others
9. Latin America Market Value Analysis And Forecast 2018-2033
9.1. Latin America Market Value Analysis 2018-2022 And Forecast 2023-2033, By Country
9.1.1. Brazil
9.1.2. Mexico
9.1.3. Argentina
9.1.4. Rest Of Latin America
9.2. Latin America Market Value Analysis 2018-2022 And Forecast 2023-2033, By Offering
9.2.1. Services
9.2.2. Equipment
9.3. Latin America Market Value Analysis 2018-2022 And Forecast 2023-2033, By Test Method
9.3.1. Visual Testing
9.3.2. Magnetic Particle Testing
9.3.3. Liquid Penetrant Testing
9.3.4. Eddy Current Testing
9.3.5. Ultrasonic Testing
9.3.6. Radiographic Testing
9.4. Latin America Market Value Analysis 2018-2022 And Forecast 2023-2033, By End Use
9.4.1. Oil & Gas
9.4.2. Manufacturing
9.4.3. Aerospace and Defense
9.4.4. Construction
9.4.5. Automotive
9.4.6. Power Generation
9.4.7. Others
10. Europe Market Value Analysis And Forecast 2018-2033
10.1. Europe Market Value Analysis 2018-2022 And Forecast 2023-2033, By Country
10.1.1. Germany
10.1.2. Italy
10.1.3. France
10.1.4. U.K.
10.1.5. Spain
10.1.6. BENELUX
10.1.7. Russia
10.1.8. Rest Of Europe
10.2. Europe Market Value Analysis 2018-2022 And Forecast 2023-2033, By Offering
10.2.1. Services
10.2.2. Equipment
10.3. Europe Market Value Analysis 2018-2022 And Forecast 2023-2033, By Test Method
10.3.1. Visual Testing
10.3.2. Magnetic Particle Testing
10.3.3. Liquid Penetrant Testing
10.3.4. Eddy Current Testing
10.3.5. Ultrasonic Testing
10.3.6. Radiographic Testing
10.4. Europe Market Value Analysis 2018-2022 And Forecast 2023-2033, By End Use
10.4.1. Oil & Gas
10.4.2. Manufacturing
10.4.3. Aerospace and Defense
10.4.4. Construction
10.4.5. Automotive
10.4.6. Power Generation
10.4.7. Others
11. East Asia Market Value Analysis And Forecast 2018-2033
11.1. East Asia Market Value Analysis 2018-2022 And Forecast 2023-2033, By Country
11.1.1. China
11.1.2. Japan
11.1.3. South Korea
11.2. East Asia Market Value Analysis 2018-2022 And Forecast 2023-2033, By Offering
11.2.1. Services
11.2.2. Equipment
11.3. East Asia Market Value Analysis 2018-2022 And Forecast 2023-2033, By Test Method
11.3.1. Visual Testing
11.3.2. Magnetic Particle Testing
11.3.3. Liquid Penetrant Testing
11.3.4. Eddy Current Testing
11.3.5. Ultrasonic Testing
11.3.6. Radiographic Testing
11.4. East Asia Market Value Analysis 2018-2022 And Forecast 2023-2033, By End Use
11.4.1. Oil & Gas
11.4.2. Manufacturing
11.4.3. Aerospace and Defense
11.4.4. Construction
11.4.5. Automotive
11.4.6. Power Generation
11.4.7. Others
12. South Asia & Oceania Market Value Analysis And Forecast 2018-2033
12.1. South Asia & Oceania Market Value Analysis 2018-2022 And Forecast 2023-2033, By Country
12.1.1. India
12.1.2. Thailand
12.1.3. Indonesia
12.1.4. Malaysia
12.1.5. Australia & New Zealand
12.1.6. Rest Of SAO
12.2. South Asia & Oceania Market Value Analysis 2018-2022 And Forecast 2023-2033, By Offering
12.2.1. Services
12.2.2. Equipment
12.3. South Asia & Oceania Market Value Analysis 2018-2022 And Forecast 2023-2033, By Test Method
12.3.1. Visual Testing
12.3.2. Magnetic Particle Testing
12.3.3. Liquid Penetrant Testing
12.3.4. Eddy Current Testing
12.3.5. Ultrasonic Testing
12.3.6. Radiographic Testing
12.4. South Asia & Oceania Market Value Analysis 2018-2022 And Forecast 2023-2033, By End Use
12.4.1. Oil & Gas
12.4.2. Manufacturing
12.4.3. Aerospace and Defense
12.4.4. Construction
12.4.5. Automotive
12.4.6. Power Generation
12.4.7. Others
13. Middle East & Africa Market Value Analysis And Forecast 2018-2033
13.1. Middle East & Africa Market Value Analysis 2018-2022 And Forecast 2023-2033, By Country
13.1.1. GCC Countries
13.1.2. Turkey
13.1.3. South Africa
13.1.4. Northern Africa
13.1.5. Rest Of MEA
13.2. Middle East & Africa Market Value Analysis 2018-2022 And Forecast 2023-2033, By Offering
13.2.1. Services
13.2.2. Equipment
13.3. Middle East & Africa Market Value Analysis 2018-2022 And Forecast 2023-2033, By Test Method
13.3.1. Visual Testing
13.3.2. Magnetic Particle Testing
13.3.3. Liquid Penetrant Testing
13.3.4. Eddy Current Testing
13.3.5. Ultrasonic Testing
13.3.6. Radiographic Testing
13.4. Middle East & Africa Market Value Analysis 2018-2022 And Forecast 2023-2033, By End Use
13.4.1. Oil & Gas
13.4.2. Manufacturing
13.4.3. Aerospace and Defense
13.4.4. Construction
13.4.5. Automotive
13.4.6. Power Generation
13.4.7. Others
14. Global Market – Emerging Countries Analysis
14.1. Market Proportion Analysis, By Key Countries
14.2. Global Vs. Country Growth Comparison
14.3. China Market Value Analysis And Forecast 2018-2033
14.3.1. China Market Value Analysis 2018-2022 And Forecast 2023-2033, By Offering
14.3.1.1. Services
14.3.1.2. Equipment
14.3.2. China Market Value Analysis 2018-2022 And Forecast 2023-2033, By Test Method
14.3.2.1. Visual Testing
14.3.2.2. Magnetic Particle Testing
14.3.2.3. Liquid Penetrant Testing
14.3.2.4. Eddy Current Testing
14.3.2.5. Ultrasonic Testing
14.3.2.6. Radiographic Testing
14.3.3. China Market Value Analysis 2018-2022 And Forecast 2023-2033, By End Use
14.3.3.1. Oil & Gas
14.3.3.2. Manufacturing
14.3.3.3. Aerospace and Defense
14.3.3.4. Construction
14.3.3.5. Automotive
14.3.3.6. Power Generation
14.3.3.7. Others
14.4. India Market Value Analysis And Forecast 2018-2033
14.4.1. India Market Value Analysis 2018-2022 And Forecast 2023-2033, By Offering
14.4.1.1. Services
14.4.1.2. Equipment
14.4.2. India Market Value Analysis 2018-2022 And Forecast 2023-2033, By Test Method
14.4.2.1. Visual Testing
14.4.2.2. Magnetic Particle Testing
14.4.2.3. Liquid Penetrant Testing
14.4.2.4. Eddy Current Testing
14.4.2.5. Ultrasonic Testing
14.4.2.6. Radiographic Testing
14.4.3. India Market Value Analysis 2018-2022 And Forecast 2023-2033, By End Use
14.4.3.1. Oil & Gas
14.4.3.2. Manufacturing
14.4.3.3. Aerospace and Defense
14.4.3.4. Construction
14.4.3.5. Automotive
14.4.3.6. Power Generation
14.4.3.7. Others
14.5. Mexico Market Value Analysis And Forecast 2018-2033
14.5.1. Mexico Market Value Analysis 2018-2022 And Forecast 2023-2033, By Offering
14.5.1.1. Services
14.5.1.2. Equipment
14.5.2. Mexico Market Value Analysis 2018-2022 And Forecast 2023-2033, By Test Method
14.5.2.1. Visual Testing
14.5.2.2. Magnetic Particle Testing
14.5.2.3. Liquid Penetrant Testing
14.5.2.4. Eddy Current Testing
14.5.2.5. Ultrasonic Testing
14.5.2.6. Radiographic Testing
14.5.3. Mexico Market Value Analysis 2018-2022 And Forecast 2023-2033, By End Use
14.5.3.1. Oil & Gas
14.5.3.2. Manufacturing
14.5.3.3. Aerospace and Defense
14.5.3.4. Construction
14.5.3.5. Automotive
14.5.3.6. Power Generation
14.5.3.7. Others
15. Country Analysis – Market Analysis 2018-2022 And Forecast 2023-2033
15.1. US Market
15.1.1. Market Demand Analysis And Forecast By Market Taxonomy
15.1.1.1. By Offering
15.1.1.2. By Test Method
15.1.1.3. By End Use
15.2. Canada Market
15.2.1. Market Demand Analysis And Forecast By Market Taxonomy
15.2.1.1. By Offering
15.2.1.2. By Test Method
15.2.1.3. By End Use
15.3. Brazil Market
15.3.1. Market Demand Analysis And Forecast By Market Taxonomy
15.3.1.1. By Offering
15.3.1.2. By Test Method
15.3.1.3. By End Use
15.4. Argentina Market
15.4.1. Market Demand Analysis And Forecast By Market Taxonomy
15.4.1.1. By Offering
15.4.1.2. By Test Method
15.4.1.3. By End Use
15.5. Germany Market
15.5.1. Market Demand Analysis And Forecast By Market Taxonomy
15.5.1.1. By Offering
15.5.1.2. By Test Method
15.5.1.3. By End Use
15.6. France Market
15.6.1. Market Demand Analysis And Forecast By Market Taxonomy
15.6.1.1. By Offering
15.6.1.2. By Test Method
15.6.1.3. By End Use
15.7. Italy Market
15.7.1. Market Demand Analysis And Forecast By Market Taxonomy
15.7.1.1. By Offering
15.7.1.2. By Test Method
15.7.1.3. By End Use
15.8. Spain Market
15.8.1. Market Demand Analysis And Forecast By Market Taxonomy
15.8.1.1. By Offering
15.8.1.2. By Test Method
15.8.1.3. By End Use
15.9. U.K. Market
15.9.1. Market Demand Analysis And Forecast By Market Taxonomy
15.9.1.1. By Offering
15.9.1.2. By Test Method
15.9.1.3. By End Use
15.10. BENELUX Market
15.10.1. Market Demand Analysis And Forecast By Market Taxonomy
15.10.1.1. By Offering
15.10.1.2. By Test Method
15.10.1.3. By End Use
15.11. Russia Market
15.11.1. Market Demand Analysis And Forecast By Market Taxonomy
15.11.1.1. By Test Method
15.11.1.2. By Offering
15.11.1.3. By End Use
15.12. Japan Market
15.12.1. Market Demand Analysis And Forecast By Market Taxonomy
15.12.1.1. By Offering
15.12.1.2. By Test Method
15.12.1.3. By End Use
15.13. South Korea Market
15.13.1. Market Demand Analysis And Forecast By Market Taxonomy
15.13.1.1. By Offering
15.13.1.2. By Test Method
15.13.1.3. By End Use
15.14. Thailand Market
15.14.1. Market Demand Analysis And Forecast By Market Taxonomy
15.14.1.1. By Offering
15.14.1.2. By Test Method
15.14.1.3. By End Use
15.15. Indonesia Market
15.15.1. Market Demand Analysis And Forecast By Market Taxonomy
15.15.1.1. By Offering
15.15.1.2. By Test Method
15.15.1.3. By End Use
15.16. Malaysia Market
15.16.1. Market Demand Analysis And Forecast By Market Taxonomy
15.16.1.1. By Offering
15.16.1.2. By Test Method
15.16.1.3. By End Use
15.17. Australia & New Zealand Market
15.17.1. Market Demand Analysis And Forecast By Market Taxonomy
15.17.1.1. By Offering
15.17.1.2. By Test Method
15.17.1.3. By End Use
15.18. GCC Countries Market
15.18.1. Market Demand Analysis And Forecast By Market Taxonomy
15.18.1.1. By Offering
15.18.1.2. By Test Method
15.18.1.3. By End Use
15.19. Egypt Market
15.19.1. Market Demand Analysis And Forecast By Market Taxonomy
15.19.1.1. By Offering
15.19.1.2. By Test Method
15.19.1.3. By End Use
15.20. South Africa Market
15.20.1. Market Demand Analysis And Forecast By Market Taxonomy
15.20.1.1. By Offering
15.20.1.2. By Test Method
15.20.1.3. By End Use
15.21. Turkey Market
15.21.1. Market Demand Analysis And Forecast By Market Taxonomy
15.21.1.1. By Offering
15.21.1.2. By Test Method
15.21.1.3. By End Use
16. Competitive Assessment
16.1. Global Market Structure
16.2. Global Market Competition – A Dashboard View
16.3. Global Market Company Share Analysis
16.4. Global Competitor Market Footprint Matrix
16.5. Key Participants Market Presence (Intensity Mapping) By Region
17. Company Profiles
17.1. General Electric
17.1.1. Overview
17.1.2. Product Portfolio
17.1.3. Profitability By Market Segments (Product/Region)
17.1.4. Sales Footprint
17.1.5. Strategy Overview
17.2. Nikon Metrology NV
17.2.1. Overview
17.2.2. Product Portfolio
17.2.3. Profitability By Market Segments (Product/Region)
17.2.4. Sales Footprint
17.2.5. Strategy Overview
17.3. Olympus Corp.
17.3.1. Overview
17.3.2. Product Portfolio
17.3.3. Profitability By Market Segments (Product/Region)
17.3.4. Sales Footprint
17.3.5. Strategy Overview
17.4. Zetec, Inc.
17.4.1. Overview
17.4.2. Product Portfolio
17.4.3. Profitability By Market Segments (Product/Region)
17.4.4. Sales Footprint
17.4.5. Strategy Overview
17.5. Eddyfi Technologies
17.5.1. Overview
17.5.2. Product Portfolio
17.5.3. Profitability By Market Segments (Product/Region)
17.5.4. Sales Footprint
17.5.5. Strategy Overview
17.6. Fisher Technologies, Inc.
17.6.1. Overview
17.6.2. Product Portfolio
17.6.3. Profitability By Market Segments (Product/Region)
17.6.4. Sales Footprint
17.6.5. Strategy Overview
17.7. Ashtead Technology Ltd.
17.7.1. Overview
17.7.2. Product Portfolio
17.7.3. Profitability By Market Segments (Product/Region)
17.7.4. Sales Footprint
17.7.5. Strategy Overview
17.8. Mistras Group, Inc.
17.8.1. Overview
17.8.2. Product Portfolio
17.8.3. Profitability By Market Segments (Product/Region)
17.8.4. Sales Footprint
17.8.5. Strategy Overview
17.9. Yxlon International GmbH
17.9.1. Overview
17.9.2. Product Portfolio
17.9.3. Profitability By Market Segments (Product/Region)
17.9.4. Sales Footprint
17.9.5. Strategy Overview
17.10. Sonatest Ltd.
17.10.1. Overview
17.10.2. Product Portfolio
17.10.3. Profitability By Market Segments (Product/Region)
17.10.4. Sales Footprint
17.10.5. Strategy Overview
18. Fact.MR Research Methodology
19. Disclaimer & Contact Information
| ※参考情報 非破壊検査(NDT)は、材料や構造物の内部または表面の欠陥や異常を、その材料や構造物を破壊することなく検出するための技術です。この検査は、製造過程や使用中の製品における品質保証、保守、監視の目的で広く利用されています。非破壊検査は、製品の安全性と信頼性を確保するために重要な役割を果たします。 非破壊検査にはいくつかの種類があります。代表的な手法には、超音波検査、放射線検査、磁粉検査、浸透検査、Visual (目視) 検査があります。それぞれの手法には特徴があり、特定の用途に応じて適切な検査方法が選ばれます。 超音波検査は、高周波の音波を使用して物質内部の欠陥を検出する方法です。音波が材料内を伝わる際に、欠陥や異常によって反射や屈折が生じます。この性質を利用して、内部のひび割れや空洞を検出することができます。造船や航空機の部品、パイプラインの検査などで広く使用されています。 放射線検査は、X線やγ線を用いる方式で、対象物内の内部構造を可視化するのに役立ちます。放射線を透過させ、その透過の度合いによって内部欠陥を判断します。この手法は、厚い金属部品や溶接部の検査に特に効果があります。ただし、放射線を使用するため、適切な安全対策が必要です。 磁粉検査は、磁場を利用して表面および近表面の欠陥を検出する方法です。この方法は、主に鉄などの磁性材料に適用されます。まず、対象物に磁場を掛け、その後、磁粉を散布します。表面に亀裂がある場合、磁粉がその亀裂に引き寄せられ、可視化されます。この手法は、鉄道や航空機の部品の検査によく使われています。 浸透検査は、液体を使用して表面の微細な亀裂を発見する方法です。対象物の表面に浸透液を塗布し、一定時間放置した後、表面を清掃します。続いて、発光剤などの現像剤を加え、亀裂の部分に液体が引き寄せられることで、視覚的に確認することができます。この検査は、鋳造品や溶接部の検査に有効です。 目視検査は、最も基本的な非破壊検査手法であり、対象物の表面を目視で確認する方法です。専門家が視覚や手感によって欠陥や異常を発見することができます。目視検査は、他の非破壊検査の前段階として使用されることが多いです。 非破壊検査は多くの産業分野で利用されています。航空宇宙、製造業、エネルギー、土木建築、船舶など、多岐にわたる分野において、製品の安全性や信頼性向上を目的に活用されています。特に、事故や故障が重大な影響をもたらすクリーンエネルギー施設や交通機関では、この検査技術が不可欠です。 関連技術としては、デジタル画像処理やAI(人工知能)を活用した解析技術が注目されています。これにより、検査後のデータ解析が効率化され、欠陥の自動検出や予測保全が可能になります。特に、ビッグデータ解析を活用した故障予測や状態監視の技術は、今後ますますその重要性を増すことでしょう。 非破壊検査は、材料や構造物の安全性を守るだけでなく、設備の寿命を延ばし、経済的な損失を防ぐためにも不可欠な技術です。今後も新たな技術の進展とともに、非破壊検査の重要性はますます高まると考えられています。 |
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