Tungsten-molybdenum-nickel-iron alloy radiation protection and guidance material is a special alloy material mainly used in the field of radiation protection and guidance. It is an alloy composed of tungsten as a matrix and adding a small amount of nickel, iron, molybdenum and other alloying elements. It has a series of excellent physical and chemical properties.
Among them, tungsten alloy has high density, so its shielding performance is very high. Research shows that radiation protection capabilities are closely related to material density. The greater the density, the better the shielding performance. In addition, the linear attenuation ability of tungsten alloy against gamma rays gives it great advantages in the field of shielding parts. Compared with traditional shielding materials such as lead, tungsten alloy is not only more efficient and can achieve twice the shielding performance of lead, but is also lighter, reducing weight by 25% to 50%. More importantly, tungsten alloy eliminates the toxic hazards caused by lead, reduces the cost of mixed waste disposal, and is environmentally friendly.
Therefore, tungsten-molybdenum-nickel-iron alloy radiation protection and guidance materials have broad application prospects in the field of radiation protection in medical and industrial equipment. Whether it is a medical X-ray machine, CT machine, or industrial radiation detection equipment, this alloy material can provide efficient and safe radiation protection.
In general, tungsten-molybdenum-nickel-iron alloy radiation protection and guidance materials provide important solutions for the field of radiation protection with their excellent shielding performance and environmental protection characteristics.
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