Tungsten Alloy Radiation Shielding Container

Tungsten Alloy Radiation Shielding Container Picture

1. What's  Tungsten Alloy Radiation Shielding Container?
Tungsten alloy radiation shielding container is high-density radiation protection component manufactured through powder metallurgy, using tungsten as the matrix with nickel, iron, or copper as binders, and mainly designed for the storage, transportation, and handling protection of radioactive materials, isotope sources, and other radiation sources.

2. Features of CTIA’s Tungsten Alloy Radiation Shielding Container
(1) Efficient Radiation Shielding: High density of 17.0–18.5 g/cm³ and high atomic number (Z=74) enable effective attenuation of high-energy radiation such as X-rays and γ-rays for compact shielding designs.
(2) Lead-Free and Long-Term Stability: Lead-free composition and excellent corrosion resistance ensure long-term stability without radioactive contamination risks, making it suitable for radioactive source storage and transportation.
(3) High Strength and Structural Reliability: High tensile strength and wear resistance withstand mechanical loads during transportation and operation, ensuring reliable container structures.
(4) Precision Machining Capability: Precision machining processes, including Computer Numerical Control (CNC) machining and grinding, enable the production of integrated, split, and customized structures.
(5) Material Flexibility: W-Ni-Fe and W-Ni-Cu material systems provide different performance characteristics, with W-Ni-Cu offering non-magnetic or low magnetic permeability properties for magnetic-sensitive environments.

3. Applications of CTIA’s Tungsten Alloy Radiation Shielding Container
(1) Nuclear Medicine: Radioactive drug storage containers, isotope source containers, and medical syringe shielding containers for radiation protection during radioactive material handling.
(2) Industrial Inspection: γ-ray source containers, industrial radioactive source transport containers, and radiation shielding components for non-destructive testing equipment to reduce radiation risks during inspection.
(3) Research Experiments: Radiation source storage devices, isotope research equipment, and nuclear physics experimental shielding structures requiring stable radiation protection.
(4) Advanced Equipment: Specialized inspection equipment, radiation environment systems, and precision systems requiring localized radiation shielding.

4. Specifications of CTIA’s Tungsten Alloy Radiation Shielding Container
(1) Materials: W-Ni-Fe, W-Ni-Cu
(2) Grades: 90W, 92.5W, 95W, 97W
(3) Density: 17.0–18.5 g/cm³
(4) Dimensions: Inner diameter 20–50 mm, height 50–150 mm, wall thickness 6–40 mm, customizable
(5) Structures: Integrated, split, covered, screw-cap, threaded, and customized structures

CTIA GROUP has nearly 30 years of experience in tungsten alloy manufacturing, specializing in the production and precision machining of high-density tungsten alloy shielding containers. Based on radioactive source types, shielding requirements, and application conditions, CTIA offers customized solutions with various material grades, structural designs, and dimensions. Combining mature powder metallurgy technology with precision CNC machining capabilities, CTIA’s tungsten alloy radiation shielding containers deliver reliable radiation protection performance for radioactive material storage, transportation, and handling, and are widely applied in medical, nuclear medicine, industrial inspection, and advanced equipment fields.

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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