市場調查報告書
商品編碼
1577212
到 2030 年放射測試設備市場預測:按設備類型、便攜性、技術、組件、應用、最終用戶和地區進行的全球分析Radiographic Testing Equipment Market Forecasts to 2030 - Global Analysis by Equipment Type, Portability, Technology, Component, Application, End User and By Geography |
根據 Stratistics MRC 的數據,2024 年全球放射檢測設備市場規模為 12.6837 億美元,預計到 2030 年將達到 25.5767 億美元,預測期內複合年成長率為 12.4%。
在無損檢測(NDT)中,射線檢測設備是指用於在不損害材料或零件的情況下檢查內部缺陷的儀器和設備。本設備使用 X光或伽馬射線產生影像,顯示各種材料(包括金屬、複合材料和焊接)的結構完整性、缺陷或不規則性。 X光透視經常用於石油和天然氣、汽車和航太等領域,對於安全評估和品管至關重要。
印度統計和規劃部(MOSPI)的數據顯示,COVID-19對建築業、製造業和採礦業總付加價值的影響分別為-13.3%、-6.3%和-14.7%。
對安全和品質保證的需求不斷成長
對安全和品管日益成長的需求是推動放射測試設備市場的主要因素,特別是在石油和天然氣、汽車和航太等領域。如果缺陷未被發現,可能會導致災難性故障、安全風險和重大財務損失,因此公司必須進行徹底檢查,以確保材料和組件的完整性。滿足嚴格品質標準和法律要求的可靠方法是螢光檢查,該方法以其在不損壞材料的情況下識別內部缺陷的能力而聞名。
初始成本高
高昂的初始成本是一個挑戰,特別是對於中小企業而言。數位檢測器、X光發生器和軟體等先進系統所需的大量投資可能超出預算限制,並阻礙公司升級和採用新技術。這種財務負擔可能會減緩市場成長並阻礙基本測試解決方案的廣泛採用,特別是在安全和品質至關重要的領域。
更多採用自動化
放射學測試設備擴大實施自動化,以提高均勻性、準確性和效率。自動化技術可以提高資料分析技能,減少人為錯誤,並加快檢查流程。人工智慧和影像處理的進步使自動化系統能夠更快、更準確地識別缺陷。此外,透過減少人體的輻射暴露,自動化也有助於提高職場的安全性。隨著自動化的優勢變得越來越明顯,對自動化 X 光檢測設備的需求預計將進一步成長。
缺乏技術純熟勞工
技術純熟勞工的缺乏影響了無損檢測(NDT)技術的高效部署和運行,這是放射檢測設備市場的主要障礙。隨著先進的透視系統擴大在工業中採用,對能夠處理這些複雜設備並正確解釋資料的熟練技術人員的需求不斷成長。然而,對合格專業人員的需求與訓練有素的工人的供應之間的脫節正在使業務效率和安全標準面臨風險。這種短缺最終可能會導致測試延遲,從而阻礙螢光檢查市場的擴張和創新。
COVID-19 的影響
COVID-19 大流行對放射影像檢查設備市場產生了重大影響,擾亂了許多行業的生產並減少了需求。營運能力的下降是停工和衛生措施的結果,特別是在傳統上依靠螢光檢查來保證品質的行業,例如建設業和汽車行業。儘管如此,對安全和醫療保健措施的日益關注也推動了對數位和可攜式放射成像解決方案的需求,從而實現了更安全的測試和更嚴格的衛生法規,最終改變了市場動態。
X光設備領域預計在預測期內將是最大的。
由於其多功能性和實惠的價格, X光設備預計將在預測期內佔據最大的市場佔有率。 X光設備適用於多種應用,包括發電、建築、汽車和航太。數位射線照相和電腦斷層掃描 (CT) 是 X 光技術的兩項發展,提高了影像的效率和品質。由於對無損檢測技術以確保產品品質和安全的需求不斷增加,X光檢測設備在各行業中越來越受歡迎。
預計發電業在預測期內複合年成長率最高
預計發電業在預測期內將呈現最高成長率。對可靠、高效電源的需求不斷成長,壓力容器、鍋爐和渦輪機等零件的品管標準也更加嚴格。螢光檢查對於確保這些組件的完整性並避免導致停電的故障至關重要。隨著全球能源格局的變化,對先進放射檢測設備的需求預計將繼續成長。
由於嚴格的安全法和品管要求,預計歐洲地區將在預測期內佔據最大的市場佔有率,特別是在航太和汽車等領域。對維持結構完整性和安全性的重視導致先進射線照相技術的使用增加。此外,自動化數位廣播等技術發展正在提高測試效率和準確性,對製造商很有吸引力。此外,由於正在進行的基礎設施開發和維護計劃,該地區對可靠的無損檢測技術的需求正在增加。
在估計和預測期內,由於發電、汽車和航太等關鍵行業的存在,預計北美地區的成長率最高。這些行業嚴格的品管標準需要先進的射線檢測方法來確保產品的安全性和可靠性。此外,該地區對創新和技術開拓的重視也推動了市場擴張,帶來了新的和增強的放射學測試設備。
According to Stratistics MRC, the Global Radiographic Testing Equipment Market is accounted for $1268.37 million in 2024 and is expected to reach $2557.67 million by 2030 growing at a CAGR of 12.4% during the forecast period. In non-destructive testing (NDT), radiography testing equipment refers to the instruments and apparatus used to inspect materials and components for internal flaws without causing harm. This device uses X-rays or gamma rays to produce images that show the structural integrity, defects, or irregularities in a variety of materials, including metals, composites, and welds. Radiography testing, which is frequently used in sectors including oil and gas, automotive, and aerospace, is crucial for safety evaluations and quality control.
According to the Ministry of Statistic and Program Institute (MOSPI) India, the impact of COVID-19 on Gross value-added on the construction, manufacturing, and mining sector has accounted for -13.3%,-6.3%, and -14.7%, respectively.
Increasing demand for safety and quality assurance
The growing need for safety and quality control is a major factor driving the market for radiography testing equipment, especially in sectors like oil and gas, automotive, and aerospace. As any defects that go undiscovered can result in catastrophic failures, safety risks, and significant financial losses, businesses are placing a high priority on thorough inspection procedures to guarantee the integrity of materials and components. A reliable way to satisfy strict quality standards and legal requirements is through radiography testing, which is well-known for its capacity to identify internal flaws without causing material damage.
High initial costs
High initial costs in radiographic testing equipment pose challenges for organizations, particularly SMEs. The substantial investment required for advanced systems like digital detectors, X-ray generators, and software can exceed budget constraints, potentially deterring companies from upgrading or adopting new technologies. This financial burden can slow market growth and hinder widespread adoption of essential testing solutions, especially in sectors requiring safety and quality.
Growing adoption of automation
Automation is increasingly being used in radiography testing equipment to increase uniformity, accuracy, and efficiency. Automated technologies can improve data analysis skills, decrease human error, and expedite the inspection process. Artificial intelligence and image processing developments are making it possible for automated systems to identify flaws more quickly and precisely. Additionally, by reducing radiation exposure to humans, automation can contribute to increased workplace safety. The need for automated radiography testing equipment is anticipated to increase further as the advantages of automation become more readily apparent.
Skilled labour shortage
The efficient deployment and operation of non-destructive testing (NDT) technologies are impacted by the skilled labour shortage, which is a significant obstacle in the market for radiography testing equipment. Advanced radiography systems are being adopted by industries more and more, which has increased need for skilled technicians that can handle these intricate devices and correctly interpret the data. However, operational effectiveness and safety standards are at danger due to the discrepancy between the demand for qualified specialists and the supply of trained workers. This scarcity can ultimately impede market expansion and innovation in radiography testing by causing inspection delays.
Covid-19 Impact
The COVID-19 pandemic had a major effect on the market for radiography testing equipment, causing manufacturing to be disrupted and demand to fall in a number of industries. Reduced operational capacities were the result of lockdowns and health measures, especially in sectors like construction and automotive that has historically relied on radiography testing for quality assurance. Nonetheless, the heightened emphasis on safety and healthcare measures also fuelled demand for digital and portable radiography solutions, which ultimately changed market dynamics by enabling safer inspections and adherence to strict health regulations.
The X-ray machines segment is expected to be the largest during the forecast period
The X-ray machines segment is predicted to secure the largest market share throughout the forecast period, due to their versatility and affordability. They are appropriate for a variety of uses, such as power generating, construction, automotive, and aerospace. Digital radiography and computed tomography (CT), two developments in X-ray technology, have enhanced the efficiency and quality of images. X-ray equipment are becoming more and more popular across a range of industries due to the growing need for non-destructive testing techniques to guarantee product quality and safety.
The power generation segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the power generation segment is predicted to witness the highest growth rate. Increased demand for dependable and effective power sources has resulted in stricter quality control standards for parts like pressure vessels, boilers, and turbines. In order to guarantee the integrity of these parts and avoid malfunctions that can result in power outages, radiography testing is essential. It is anticipated that the demand for sophisticated radiography testing equipment will continue to grow as the world's energy landscape changes.
The Europe region is projected to account for the largest market share during the forecast period, due to strict safety laws and quality control requirements, especially in sectors like aerospace and automotive. The use of advanced radiography technologies is growing as a result of the emphasis on maintaining structural integrity and safety. Furthermore, technology developments like automation and digital radiography improve testing efficiency and accuracy, which appeals to manufacturers. Additionally, the region's need for trustworthy non-destructive testing techniques is fuelled by continuous infrastructure development and maintenance projects.
During the estimation period, the North America region is forecasted to record the highest growth rate, driven by the existence of important sectors including power generation, automotive, and aerospace. Advanced radiography testing methods are required to guarantee product safety and dependability due to the strict quality control standards in these industries. Moreover propelling market expansion is the region's emphasis on innovation and technological developments, which has resulted in the creation of new and enhanced radiography testing equipment.
Key players in the market
Some of the key players profiled in the Radiographic Testing Equipment Market include General Electric (GE) Inspection Technologies, 3DX-Ray Ltd., Nikon Metrology Inc., Carestream Health, Teledyne DALSA Inc., Canon Inc., YXLON International GmbH (Comet Group), Mettler-Toledo International Inc., Fujifilm Holdings Corporation, Zetec Inc., Olympus Corporation, North Star Imaging Inc., Vidisco Ltd., Hitachi Ltd., Bosello High Technology s.r.l., DURR NDT GmbH & Co. KG, Varian Medical Systems, Rigaku Corporation, VJ Technologies Inc. and Parker Hannifin Corp.
In October 2020, Fujifilm released the FDR D-EVO II, a next-generation digital radiography system that offers enhanced imaging capabilities and user-friendly features.
In July 2020, Olympus introduced the IPLEX G Lite, a lightweight, portable videoscope for internal inspections, improving accessibility and ease of use in various applications.
In March 2020, GE launched a new digital radiography system that enhances inspection efficiency and image quality, targeting the aerospace and energy sectors.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.