23 Jul, 2026
According to Straits Research, the global industrial computed radiography market size was valued at $418.79 million in 2025 and is projected to grow from $446.88 million in 2026 to $751.24 million by 2034 at a CAGR of 6.71% during the forecast period 2026-2034.
Computed radiography is one type of radiography that is frequently used by a lot of big manufacturing companies. It is used in various industries, including aerospace, oil and gas, industrial gas turbines, medical implants, and prosthetics. Computed radiography, a type of nondestructive testing (NDT), is frequently used in the aerospace industry to guarantee the reliability and security of manufactured parts and assemblies. Computed radiography (CR) scanners are also used in normal lighting conditions, unlike photographic film, and stations can be easily set up next to the X-ray equipment.
Equipment for Non-Destructive Testing Drives the Global Market
Non-destructive testing (NDT) includes inspection, testing, and evaluation of components, supplies, and assemblies. Radiographic examinations are a technician's primary duty in non-destructive testing (NDT). Various types of inspection and application equipment are available to meet various needs. For castings made of aluminum and steel, electrical components, and other manufactured parts, computed radiography (CR) is the best option. Steel castings with incredibly thick walls can be examined using a combination of CR and gamma radiography. It is becoming more common as digital data storage and retrieval spreads. NDT equipment's main objective is to ensure that the infrastructure, services, and goods comply with safety and quality standards and regulations. Despite industry seasonality, a few industries, including oil and gas, are expected to see growth in the market for NDT equipment due to the high demand for routine inspection and testing.
Technological Advancements Creates Tremendous Opportunities
The adoption of Industry 4.0 quickens the digitization of manufacturing, increasing the need for advanced inspection methods, improved results, and conclusive techniques. The automotive manufacturing sector is anticipated to grow significantly due to the ongoing emphasis on introducing self-driving and electric cars. More advanced and portable iterations of the current NDT CR equipment are expected to enable features like machine learning and integration into industrial IoT solutions. As enterprise solutions become more automated, machine learning algorithms can relate the frequency and type of defects to different manufacturing practices, allowing manufacturers to modify their production processes based on these inputs. To produce high-quality products for less money, NDT will likely adopt real-time, automated inspection techniques quickly. NDT techniques for inline monitoring and automated quality assessment systems are another factor contributing to the expectation of rising CR NDT demand across various end-user verticals.
Asia-Pacific is the most significant contributor to the global industrial computed radiography market and is expected to grow at a CAGR of 8.32% during the forecast period. Industrial radiography equipment is currently in demand, especially in developing countries. This popularity propels the semiconductor industry and hastens the global miniaturization of electronic components. These elements are anticipated to benefit the global market for industrial radiography equipment over the forecast period. Most semiconductor foundries worldwide and well-known companies like TSMC, Samsung Electronics, and others are located in the Asia-Pacific region. In addition, Taiwan, South Korea, Japan, and China are essential countries in the area with sizable market shares. Greater China, which consists of Taiwan, China, and Hong Kong, is a geopolitical flashpoint. Many Chinese companies are being forced to invest in their semiconductor foundries due to the US-China trade war, escalating tensions in the area that is home to the best process technology. China's five-year plan, unveiled in March 2021, places a high priority on expanding basic research.
North America is expected to grow at a CAGR of 6.91% during the forecast period. Radiography is useful because the substance being tested is not harmed or altered. It can also be used if accessing the object needs to be restricted. Producers use industrial radiography to ensure their products are undamaged before being sold. Therefore, the significant presence of manufacturing sectors like aerospace and defense, foundries, petrochemicals, automotive, and so forth is examined to contribute to the market growth rate in addition to investments and expansions in the United States and Canada. The industry will probably advance due to North America's expanding semiconductor market and electronics sector. In addition, the growing demand for electronic components in the automotive industry is predicted to increase the demand for semiconductors, which will be advantageous for nondestructive testing tools like industrial computing radiography.
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