市场调查报告书
商品编码
1609463
非破坏性检验·检验 (NDT) 市场评估:技术·服务·终端用户产业·各地区的机会及预测 (2018-2032年)Non-Destructive Testing and Inspection Market Assessment, By Technique, By Service, By End-use Industry, By Region, Opportunities and Forecast, 2018-2032F |
预计全球无损检测和测试 (NDT) 市场规模将从 2024 年的 135.1 亿美元增长到 2032 年的 290 亿美元,预测期内复合年增长率为 10.02%。
无损检测和检验 (NDT) 在所有产业(包括航空航太、汽车、石油和天然气)的设备诊断中发挥重要作用。自动化、流程优化、增强的资料管理、通讯和流程连接都包含在这项工业转变中。这会减少人为干预,并鼓励系统使用先进的软体工具和感测器来自动执行常见操作、维护、监控和故障排除。先进的感测器、仪器、机器人和自动化预计将支援有效的测试和检查。
随着对工作场所安全和预防的日益关注,各国政府正在对各行业的操作设备进行审计。人工智慧的引入对市场产生了重大影响,机器学习和人工智慧融入无损检测领域是革命性的。由人工智慧支援的演算法可以检查大量数据、发现趋势并以以前难以想像的准确性做出预测。透过应用人工智慧自动侦测缺陷、提高准确性和加快检查速度,NDT 变得更加有效。人工智慧演算法分析大量资料以识别模式和异常,消除人为错误和检查时间,将整体材料完整性和安全性评估置于更可操作和线性的轨道上。
本报告提供全球非破坏性检验·检验 (NDT) 的市场调查,彙整市场定义和概要,市场规模的转变·预测,各种区分·地区/各主要国家的详细分析,产业结构,影响市场成长因素的分析,案例研究,竞争情形,主要企业简介等资讯。
Global non-destructive (NDT) testing and inspection market is projected to witness a CAGR of 10.02% during the forecast period 2025-2032, growing from USD 13.51 billion in 2024 to USD 29 billion in 2032.
Non-destructive testing and inspection play a crucial role in equipment diagnosis across industries, including aerospace, automotive, and oil and gas. Automation, process optimization, enhanced data management, communication, and process connectivity have all been embraced by this industrial shift. As a result, less human intervention is required, and systems are encouraged to use sophisticated software tools and sensors to automate general operation, maintenance, monitoring, and troubleshooting. Advanced sensors, instrumentation, robotics, and automation are anticipated to support effective testing and inspection.
The higher focus on workplace safety and prevention leads to governments auditing the operational equipment across the industries. The addition of artificial intelligence heavily influences the market. Incorporating machine learning and artificial intelligence (AI) into the NDT sector is revolutionary. Algorithms driven by AI can examine enormous volumes of data, spot trends, and produce forecasts with previously unheard-of precision. NDT becomes more effective with the application of artificial intelligence (AI) in automating defect detection, increasing accuracy, and speeding up inspections. The AI algorithms analyze large data masses to identify patterns and anomalies, eliminating human error and inspection times, thus taking assessments of entire materials regarding their integrity and safety into a more viable and straighter-line trajectory.
For instance, in September 2024, the Indian Institute of Technology (IIT) Kharagpur launched projects on AI-enabled Non-destructive Testing and Inspection for weld defect analysis. Led by the Centre of Excellence in Advanced Manufacturing Technology (CoEAMT) of the institute, iWeld, an AI-enabled NDT software, is an innovative solution developed for Garden Reach Shipbuilders & Engineers (GRSE) Kolkata, Ministry of Defence. The second solution, "iToFD", under a project funded by (TiH) of IIT Kharagpur, revolutionizes the detection and sizing of weld defects using ultrasonic time-of-flight diffraction (ToFD) data.
Expanding Industrial Equipment and Regulations to Fuel Market Growth
As industries adopt more sophisticated machinery and equipment, the complexity of components also rises. The sophisticated NDT methods could perform checks on complex configurations and materials without destruction. Digital radiography phased array ultrasonic testing and advanced eddy current testing have become part and parcel of requirements to be met for greater precision and efficiency in inspection. Sectors like aerospace, automotive, and, most importantly, energy increasingly turn to NDT as a means through which NDT offers assured integrity for their systems. For example, in aerospace, NDT is required to maintain safety in aircraft manufacturing standards, and even the most minor defective element can cause catastrophic failures.
The rise in safety regulations across various sectors is a major driver for the NDT market. Organizations like OSHA enforce strict compliance measures that require regular inspections to ensure workplace safety and product integrity. The need to adhere to these regulations compels industries to implement robust NDT practices to avoid penalties and ensure operational continuity. Other than OSHA, non-profit organizations and agencies like the Construction Industry Research and Information Association (CIRIA) also add workspace safety and security guidelines.
For instance, in January 2022, CIRIA introduced new guidelines for Non-destructive Testing and Inspection (NDT). By encouraging a more knowledgeable and, eventually, successful use of NDT techniques within the industry, this book seeks to raise an understanding of NDT in civil engineering and help the sector reach its full potential. From asset creation and construction to asset operation and disposal and decommissioning, the publication gives a broad overview of the application of NDT specifically for civil engineering structures (bridges, tunnels, retaining walls, culverts, and so forth) and the benefits it can offer at every stage of their life cycle.
Technological Advancements, Including IoT and AI Integration, to Shape the Market Dynamics
Non-destructive testing and inspection are majorly influenced by adding and integrating new technologies, especially the Internet of Things and predictive maintenance. AI-driven NDT has revolutionized data analysis by enabling the extraction of valuable insights from vast amounts of inspection data. Through machine learning algorithms, AI can recognize patterns, trends, and anomalies in NDT data that might be difficult or impossible for human inspectors to see.
With the integration of AI, NDT is capable of real-time monitoring, significantly enhancing the ability to detect and address issues as they occur. By continuously analyzing data from sensors and other monitoring devices, AI-powered systems can predict potential failures or defects in critical components. This predictive maintenance approach allows you to proactively address issues before they escalate into costly and hazardous problems, increasing safety and operational efficiency.
For instance, in August 2022, AI start-up ALEIA and Omexom NDT Engineering & Services (VINCI Energies SA), along with the acoustics lab Laboratoire d'Acoustique de l'Universite du Mans (LAUM) UMR CNRS, announced the launch of the AUTEND project, which aims to use AI to expedite nuclear power plant inspections. As the pace and volume of inspections at nuclear sites are quickly on the rise, the AUTEND project is designed to streamline and speed up the tasks of field analysts by utilizing AI technology for the automatic recognition of areas that need to be examined.
Manufacturing Segment Becomes the Biggest Segment with Advanced Technology and Upgrades
Based on the end-use industry, the manufacturing segment holds the largest share of the NDT and inspection market. The segment is propelled by constant product quality checks and technological advancements in manufacturing processes. The development of NDT methods is vital for ensuring that products comply with safety standards and are defect-free, and this can help manufacturers prevent costly recalls 3. Moreover, the increasing complexity of manufactured components necessitates advanced testing techniques and maintained operational integrity in various sectors, such as automotive and aerospace 24. As manufacturers focus on the reliability and efficiency of the final product, adopting NDT technologies is essential for optimizing processes and product safety, thus making them a dominant force in the NDT market.
For instance, in October 2023, the renowned surface damage assessment tool VXintegrity, which is available to all non-destructive testing (NDT) service providers in various industries, was updated by Creaform (AMETEK, Inc.) to the 3.0 version. The software update offers an easy-to-use method for those who own assets to gain access to FEA simulations for Level III evaluations and to use American Petroleum Institute (API) 579 standard tools for effortless Level I and II evaluations.
North America Leads the Non-Destructive Testing and Inspection Market
North America holds the major share of the market. This dominance is projected to continue as industries increasingly adopt NDT techniques for quality assurance and safety compliance. The region benefits from stringent safety regulations enforced by organizations like OSHA and PHMSA, which mandate regular inspections across various sectors, including oil and gas, aerospace, and manufacturing. These regulations enhance the demand for reliable NDT services to ensure compliance and operational safety. The presence of numerous training institutes and a skilled workforce in North America supports the effective implementation of NDT techniques. The availability of expertise ensures high-quality service delivery, making it an attractive region for NDT operations. Companies from the United States and Canada experiment with the NDT tools while targeting specific industries.
For instance, in October 2024, United States' NDT Global launched a new 56-inch ultrasonic inline inspection tool, developed in partnership with Aramco, to meet the specific inspection needs of large-diameter pipelines. The tool can navigate complex pipeline networks while delivering precise crack and metal loss detection.
Future Market Scenario (2025-2032F)
The rise of 3D imaging and digital radiography is likely to enhance defect detection and analysis in NDT, providing detailed visuals for better decision-making.
Robotic systems and drones are increasingly utilized for inspections in hazardous or hard-to-reach areas, improving efficiency and safety.
These technologies enable faster data processing and anomaly detection, allowing for proactive maintenance strategies in NDT.
The implementation of embedded sensors allows continuous asset assessment, facilitating immediate responses to detected anomalies.
Key Players Landscape and Outlook
The non-destructive testing and inspection market is characterized by a competitive landscape where key players adopt various strategies to enhance their market presence and meet the evolving demands of the maritime industry. A significant focus is on innovation and technological advancement, with companies investing in research and development to create efficient propulsion systems, including hybrid and electric solutions that comply with stringent environmental regulations. Many players are also pursuing strategic partnerships and collaborations to leverage complementary strengths, share resources, and accelerate the development of advanced technologies. Additionally, sustainability is emphasized as companies seek to reduce emissions and improve fuel efficiency in response to growing regulatory pressures and consumer demand for greener solutions.
For instance, in February 2022, Wartsila Corporation announced its collaboration with Solstad Offshore for fleet decarbonization, with a goal of achieving a 50% reduction in CO2 emissions by 2030. The agreement aims to identify, evaluate, and implement solutions that will enhance fuel efficiency and substantially decrease greenhouse gas (GHG) emissions from offshore vessels.
All segments will be provided for all regions and countries covered
Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work.