Tungsten Alloy Radiation Shielding in Industrial Radiography

Tungsten alloy radiation shielding comprises precision shielding and beam-collimation components manufactured from high-density tungsten-based alloys for industrial radiography. CTIA’s tungsten alloy radiation shielding attenuates X-rays, gamma rays, and other high-energy radiation, reducing radiation leakage and scattered radiation while improving radiographic imaging and operational safety. High density, mechanical strength, and precision machinability support compact shielding structures and accurate beam control for inspecting welds, pipelines, pressure vessels, and large industrial components.
1. Features of CTIA’s Tungsten Alloy Radiation Shielding in Industrial Radiography
(1) Effective Radiation Attenuation: Providing effective X-ray and gamma-ray attenuation with density of 16.7–18.8 g/cm³, reducing radiation leakage and scattered radiation during industrial radiography.
(2) Precise Beam Control: Enabling directional beam control through collimators and shielding rings, reducing scattered radiation and improving radiographic image quality.
(3) High Strength and Structural Stability: Maintaining structural integrity under vibration, impact, and prolonged operation through good mechanical strength, hardness, and wear resistance.
(4) Good Environmental Adaptability: Maintaining corrosion resistance and dimensional stability in outdoor inspection, mobile radiography, and demanding industrial environments.
(5) Compact Design for Equipment Integration: Enabling compact shielding structures with high material density while maintaining required radiation attenuation, supporting integration into space-constrained radiographic equipment.
(6) Non-Toxic and Eco-Friendly: Providing a lead-free shielding solution for long-term industrial radiography applications without lead-related contamination concerns.
2. Applications of CTIA’s Tungsten Alloy Radiation Shielding in Industrial Radiography
(1) Petrochemical: Used in radiographic inspection of pressure vessels, pipelines, storage tanks, and welded structures to control radiation propagation and reduce scattered radiation for reliable internal defect detection.
(2) Energy and Power: Used in inspection of boilers, wind power equipment, and critical power components to support weld defect detection and long-term equipment reliability.
(3) Aerospace: Used in inspection of aircraft structures, engine components, and precision castings to identify internal defects such as cracks, porosity, and inclusions through radiographic imaging.
(4) Machinery Manufacturing: Used in inspection of automotive components, large mechanical structures, and metal castings to support quality control and defect identification.
(5) Field Radiography: Used in portable X-ray and gamma-ray radiography equipment to provide radiation protection during equipment maintenance and construction activities.
3. Specifications of CTIA’s Tungsten Alloy Radiation Shielding in Industrial Radiography
(1) Grades: 90WNiFe, 92.5WNiFe, 95WNiFe, 97WNiFe
(2) Tungsten Content: 90%–97%
(3) Density: 16.7–18.8 g/cm³
(4) Types: Plates, blocks, rings, collimators, gamma-ray source containers, customized
(5) Dimensions: Customized
CTIA GROUP draws on nearly 30 years of tungsten alloy expertise to produce precision radiation shielding parts for industrial radiography. CTIA applies controlled alloy formulation, powder metallurgy, precision machining, and dimensional inspection to achieve consistent material density, accurate shielding geometry, and tight critical tolerances, supporting reliable radiation attenuation and precise beam control in demanding inspection systems.
For any inquiry, please contact tungsten alloy manufacturer: CTIA GROUP
Email: sales@chinatungsten.com
Tel: 0086 592 5129696 / 0086 592 5129595
Website: tungsten-alloy.com
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