Tungsten alloy shielding wall
Why use tungsten alloy shielding wall?
Compared with traditional shielding materials, such as lead and boron -carbonized, the same weight shielding material, the smaller tungsten alloy shielding wall, density is higher. Compared with the same weight, compared with the same weight, the volume of the tungsten alloy shielding wall is only 1/3 of the lead, but the high density makes it have the same ray absorption as the lead.
After the weight of the tungsten alloy shielding wall is determined, because the density of tungsten alloy is higher, the thickness of the wall can be thinner, but the ray absorption capacity is higher. This is why tungsten alloy shielding materials have become the best raw materials for tungsten alloy shielding walls.
When the shielding design is performed, the thickness of the shielding material can be calculated according to the total weakening multiple reached by the shielding layer.
Formula: K = E0.693 D / △ 1/2
K: The total weakening multiple of the shielding layer
△ 1/2: The half -value value of the shielding material
D: The thickness of the shielding layer, the unit thickness of the unit is the same as the thickness of the half -value layer. When the thickness thickness of the half -value layer is converted into the thickness of the material, it can be obtained by removing the density of the material.
What is tungsten alloy shielding wall?
The design principle of tungsten alloy shielding wall comes from the half -life principle of radioactive elements, and by absorbing the shielded element particles to achieve the purpose of reducing the amount of radiation. The electrons in the charged particles react to the electrons in the material, lose energy, and launch attenuation. The tungsten alloy shielding wall is weakened by weakening the optoelectronics, so that the light electrons will occur at attenuation, thereby achieving the purpose of shielding X -rays and γ -rays. The neutron can be attenuated by binding elastic scattering and non -elastic scattering. Most neutron radiation shielding materials include two processes: elastic scattering and non -elastic scattering. The tungsten alloy shielding walls we produce are all high -quality products. Tungsten alloy shielding wall
Nuclear power plants, industrial fields, medical X -ray systems, radioactive isotope, accelerators and many other fields have the serious problem of radioactivity. Tungsten alloy shielding walls can shield radiation and provide us with the best protection. Shielding radiation and providing the best radiation protection for staff is the focus of work. Tungsten alloy shielding walls can absorb harmful rays. Therefore, tungsten alloy shielding walls are the first choice for solving problems. Tungsten alloy shielding wall parts can provide protection for staff and structural substances, and can also provide radiation protection for electronic equipment and photosensitive negatives.
The impact and penetration of radiation are determined by the type of radiation. The indirect electrical ionization radiation, including neutron radiation, X -ray, and γ -rays is obviously different from direct electrode radiation. Tungsten alloy shielding wall can absorb charged particles. Through the interaction between the metal particles contained in the tungsten alloy shielding wall, the tungsten alloy shielding wall can be combined with other shielded materials to provide better radiation protection. We strictly produce tungsten alloy shielding walls in accordance with your requirements.
If you are interested in the wall shielding wall of tungsten alloy, please contact us: sales@magotanmetals.com info@magotanmetals.com,






