Tungsten Radiation Shielding Part for Nuclear, Medical

The production of tungsten radiation shielding components involves a variety of processes to efficiently create components with the required radiation protection properties. These methods may include: Powder metallurgy: Tungsten radiation shielding components can be produced using powder metallurgy technology, which involves pressing tungsten powder into the desired shape and then sintering it at high temperatures to obtain a dense and uniform structure. Machining: Tungsten can also be machined into radiation shielding components through processes such as milling, turning and drilling to obtain the desired size and shape. Injection molding: In some cases, tungsten powder can be mixed with a binder and injected into a mold at high pressure to form radiation shielding parts with complex geometries. Manufacturing: Tungsten radiation shielding components can be manufactured through processes such as rolling, forging and extrusion to produce sheets, plates or other forms with specific thicknesses and compositions.

Each production method has its own advantages and can be chosen based on the specific requirements of the application. If you have any further questions or need more detailed information on how tungsten radiation shields are produced, please feel free to ask!

Tungsten radiation shielding components are commonly used in a variety of industries and applications to provide protection from harmful radiation. These parts are used for: Medical Imaging and Radiation Therapy: Tungsten shielding components are used in X-ray machines, CT scanners, and radiation therapy equipment to protect patients and medical personnel from excessive radiation. Nuclear power plants: Tungsten shielding is used in nuclear reactors and other facilities to contain and attenuate radiation, ensuring the safety of personnel and the surrounding environment. Industrial Radiography: Tungsten radiation shielding components are used in non-destructive testing applications to protect workers from radiation when inspecting materials and structures using radiographic techniques. Aerospace and Defense: Tungsten shielding components are used in the manufacture of aircraft, spacecraft and military equipment to protect sensitive components from radiation in high altitude and space environments. Research and Laboratories: Tungsten radiation shielding components are used in research facilities and laboratories to protect personnel and instruments from potentially hazardous radiation sources.

Tungsten’s high density and excellent radiation absorption properties make it an ideal material for manufacturing radiation shielding components, providing reliable protection in environments where radiation exposure is a concern.

If you have any specific questions about the use of tungsten radiation shielding in a specific industry or application, please feel free to ask for more details!

Product Name Tungsten Radiation Shielding Part
Material W1
Specification Customized
Surface Black skin, alkali washed, polished.
Technique Sintering process, machining 
Meltng point 3400℃
Density 19.3g/cm3

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