市場調查報告書
商品編碼
1453912
到 2030 年 X 光檢測系統市場預測:按組件、成像技術、尺寸、應用、最終用戶和地區進行的全球分析X-Ray Inspection System Market Forecasts to 2030 - Global Analysis By Component, Imaging Technique, Dimension, Application, End User and By Geography |
根據 Stratistics MRC 的數據,2023 年全球 X 光檢測系統市場規模將達到 23.6 億美元,預計到 2030 年將達到 38.9 億美元,在預測期內年複合成長率為 7.4%。
X 光檢測系統是一種無損檢測技術,利用 X 光穿透材料並產生影像進行分析。該系統通常用於製造、安全和醫療保健等各個行業,以檢測物體中的缺陷、污染物和異常。 X光檢查系統會發出穿過被檢查物體的 X光,根據其吸收特性,緻密材料在影像中顯得更亮或更暗。 X光檢測系統在品管、產品安全保證和安全篩檢中發揮重要作用,可以在不損壞被偵測物體的情況下進行快速、準確的評估。
根據歐盟(EU)的一項研究,63%的老年人死亡是由心臟病和呼吸系統疾病引起的。
對品質保證的需求不斷成長
品質保證已成為尋求保持競爭力、品牌聲譽和客戶滿意度的製造商的首要任務。 X 光檢測系統可準確檢測缺陷、異常和污染物,因此能夠僅將符合高品質標準的產品推向市場。因此,對品質保證日益成長的需求是 X 光檢測系統市場的主要促進因素。
高成本
購買 X 光檢測系統所需的初始投資和持續維護成本給企業,尤其是中小企業 (SME) 帶來了巨大的財務挑戰。這些系統的複雜設計和先進組件導致更高的製造成本,而這些成本往往轉嫁給消費者。此外,監管合規標準和安全法規要求定期校準、測試和認證 X 光檢查系統,從而增加了持續營運成本。因此,高成本是阻礙市場拓展的主要因素。
技術進步
X光源技術的創新,例如微焦點X光源和奈米焦點X光源的引入,提高了緻密材料的滲透性和成像,同時最大限度地減少輻射暴露。這提高了 X 光檢測系統在檢測各種材料和零件時的多功能性和有效性。此外,軟體演算法和影像處理技術的進步增強了資料分析能力,允許自動缺陷識別、測量和分類。
安全問題
安全問題是 X 光檢查系統市場的主要威脅,與輻射暴露相關的潛在健康風險對實施和使用帶來了挑戰。如果管理不當,檢查系統發出的 X 光可能會對操作員和工人造成危險。此外,長期或過度暴露於輻射可能會對健康產生負面影響,包括組織損傷、輻射燒傷和癌症風險增加。
COVID-19 的影響
COVID-19的疫情對X光檢查設備市場產生了重大影響。最初,由於為遏制病毒傳播而實施的封鎖、旅行限制和勞動力短缺,市場遭受了製造業務中斷、供應鏈中斷和計劃延誤。然而,疫情加速了 X 光檢測系統在各行業的採用。在醫療保健領域,用於診斷和監測 COVID-19 患者的醫學影像設備(包括 X 光檢查系統)的需求激增。
預計數位成像領域在預測期內將是最大的
預計數位成像領域將佔據最大佔有率。數位成像技術以數位感測器取代了傳統的基於膠片的 X 光系統,並具有許多優點,包括改進的影像品質、更快的影像擷取、增強的資料儲存以及與基於電腦的分析軟體的無縫整合。此外,X光檢測中的數位成像系統具有高度彈性和擴充性,可滿足不同行業和應用的不同檢測要求。數位成像技術有助於與機器視覺和人工智慧等其他檢測系統無縫整合,形成全面的品管解決方案。
預計電子業在預測期內年複合成長率最高
預計電子業在預測期內將出現良好成長。 X 光檢測系統在電子製造的各個階段(從初始元件檢測到最終產品組裝)發揮關鍵作用。在製造過程中,X光檢測系統用於檢測印刷電路基板(PCB)、半導體封裝、連接器和積體電路等電子元件中的焊接不良、空洞、裂縫和異物等缺陷。這些系統具有無損測試功能,使製造商能夠識別並糾正問題,而不會影響零件的完整性。
在預測期內,亞太地區佔據最大的市場佔有率。該地區的工業基礎設施不斷發展,特別是在製造、汽車、電子和食品加工等行業,對先進檢測技術的需求不斷增加,以確保產品品質、安全性和符合監管標準。此外,人們對食品安全和衛生標準的認知不斷提高,正在推動亞太地區食品和飲料產業採用 X 光檢測系統。
北美的特點是主要行業參與者的強大影響力、堅實的基礎設施和嚴格的監管標準,預計在預測期內將實現盈利成長。該地區的製藥和醫療設備業依靠 X 光檢測系統來確保產品品質並遵守監管要求,包括 FDA 法規。北美重視技術創新、研發和品質保證,是推動 X 光檢測系統市場進步和普及的關鍵地區。
According to Stratistics MRC, the Global X-Ray Inspection System Market is accounted for $2.36 billion in 2023 and is expected to reach $3.89 billion by 2030 growing at a CAGR of 7.4% during the forecast period. An X-ray inspection system is a non-destructive testing technology that utilizes X-rays to penetrate materials and generate images for analysis. These systems are commonly used in various industries, including manufacturing, security, and healthcare, to detect defects, contaminants, or anomalies within objects. They work by emitting X-ray radiation through the object being examined, with denser materials appearing brighter or darker on the resulting image depending on their absorption characteristics. X-ray inspection systems play a critical role in quality control, product safety assurance, and security screening, offering fast and accurate evaluations without damaging the inspected items.
According to the European Union survey, 63% of the deaths are caused by heart disease or respiratory diseases in the geriatric age group.
Rising need for quality assurance
Quality assurance has become a top priority for manufacturers seeking to maintain competitiveness, brand reputation, and customer satisfaction. These X-ray inspection systems enable manufacturers to identify defects, anomalies, and contaminants with precision, ensuring that only products meeting high-quality standards reach the market. As a result, the rising need for quality assurance serves as a prominent driver in the X-ray inspection system market.
High cost
The initial investment required for purchasing X-ray inspection systems, along with ongoing maintenance expenses, pose significant financial challenges for businesses, particularly small and medium-sized enterprises (SMEs). The intricate design and sophisticated components of these systems contribute to their high manufacturing costs, which are often passed on to consumers. Moreover, regulatory compliance standards and safety regulations mandate periodic calibration, testing, and certification of X-ray inspection systems, adding to the ongoing operational costs. Therefore, high cost is a significant factor hampering market expansion.
Technological advancements
Innovations in X-ray source technology, such as the introduction of microfocus and nanofocus X-ray sources, enable better penetration and imaging of dense materials while minimizing radiation exposure. This improves the versatility and effectiveness of X-ray inspection systems in inspecting a wide range of materials and components. Additionally, advancements in software algorithms and image processing techniques have led to enhanced data analysis capabilities, enabling automated defect recognition, measurement, and classification.
Safety concerns
Safety concerns represent a significant threat in the X-ray inspection system market, posing challenges to adoption and usage due to potential health risks associated with radiation exposure. X-ray radiation emitted by inspection systems can pose hazards to operators and workers if not adequately managed. Moreover, prolonged or excessive exposure to radiation can lead to adverse health effects, including tissue damage, radiation burns, and an increased risk of cancer.
Covid-19 Impact
The COVID-19 pandemic had a significant impact on the X-ray inspection system market. Initially, the market experienced disruptions in manufacturing operations, supply chain disruptions, and project delays due to lockdowns, travel restrictions, and workforce shortages imposed to curb the spread of the virus. However, the pandemic also accelerated the adoption of X-ray inspection systems in various industries. In the healthcare sector, there was a surge in demand for medical imaging equipment, including X-ray inspection systems, to diagnose and monitor COVID-19 patients.
The digital imaging segment is expected to be the largest during the forecast period
The digital imaging segment is estimated to hold the largest share. Digital imaging technology replaces traditional film-based X-ray systems with digital sensors, offering numerous advantages such as improved image quality, faster image acquisition, enhanced data storage, and seamless integration with computer-based analysis software. Furthermore, digital imaging systems in X-ray inspection offer greater flexibility and scalability, accommodating various inspection requirements across different industries and applications. Digital imaging technology facilitates seamless integration with other inspection systems, such as machine vision or artificial intelligence, for comprehensive quality control solutions.
The electronics segment is expected to have the highest CAGR during the forecast period
The electronics segment is anticipated to have lucrative growth during the forecast period. X-ray inspection systems play a crucial role in various stages of electronics manufacturing, from initial component testing to final product assembly. During the manufacturing process, X-ray inspection systems are used to detect defects such as soldering defects, voids, cracks, and foreign materials in electronic components like printed circuit boards (PCBs), semiconductor packages, connectors, and integrated circuits. These systems provide non-destructive testing capabilities, allowing manufacturers to identify and rectify issues without compromising the integrity of the components.
Asia Pacific commanded the largest market share during the extrapolated period. The region's expanding industrial infrastructure, particularly in sectors such as manufacturing, automotive, electronics, and food processing, is fueling the demand for advanced inspection technologies to ensure product quality, safety, and compliance with regulatory standards. Moreover, increasing awareness about food safety and hygiene standards is driving the adoption of X-ray inspection systems in the food and beverage sector across the Asia Pacific region.
North America is expected to witness profitable growth over the projection period, characterized by a strong presence of key industry players, robust infrastructure, and stringent regulatory standards. The pharmaceutical and medical device industries in this region utilize X-ray inspection systems for product quality assurance and compliance with regulatory requirements, including FDA regulations. With a strong emphasis on innovation, research and development, and quality assurance, North America remains a key region driving advancements and adoption in the X-ray inspection system market.
Key players in the market
Some of the key players in the X-Ray Inspection System Market include Mettler-Toledo International, Inc., Vitrox Corporation Berhad, North Star Imaging, Inc., VJ Group, Inc., Baker Hughes Company, Nikon Metrology, Inc, Test Research, Inc., YXLON International GmbH, Viscom AG, Nordson Corporation, Saki Corporation, Ametek, INC., GOPEL Electronic GmbH, Shenzhen Unicomp Technology Co., Ltd., Scienscope International and Comet Group
In January 2023, Baker Hughes, an energy technology company, announced a strategic collaboration with Corva, a Houston-based company that delivers cloud-based well construction digital solutions, to bolster oil and gas customers' rig visualization and drive enhanced decision making across the well lifecycle.
In February 2022, Comet Group has launched new computed tomography system UX 50. Boasting a 450 kV output, the UX50 is ideal for examining dense and sizable components, offering unparalleled flexibility due to the option of equipping it with either flat-panel detectors, line detectors, or both.
In May 2021, Nikon Metrology and Mena3D announced that they are expanding their sales partnership and mutual approach in providing state-of-the art metrology and optical inspection solutions in the Middle East and North Africa regions.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.