Novel antiradiation coating
A radiation protection and coating technology, applied in reactors, nuclear engineering, shielding, etc., can solve problems such as stuffy heat, high price, and bulky materials, and achieve stable performance and low cost
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Embodiment 1
[0012] The new type of radiation protection coating of the present invention, calculated in parts by weight, includes 12 parts of ceramic particles, 15 parts of erbium oxide, 18 parts of nano ferrite, 9 parts of lead fiber, 10 parts of tungsten alloy fiber, and accelerator 3 parts, 2 parts binder, 24 parts water.
[0013] The accelerator is N,N-tetramethyldithiodithiocarbamide.
[0014] The binder is polyvinyl alcohol.
Embodiment 2
[0016] The new type of radiation protection coating of the present invention, calculated in parts by weight, includes 16 parts of ceramic particles, 20 parts of erbium oxide, 24 parts of nano ferrite, 10 parts of lead fiber, 12 parts of tungsten alloy fiber, and accelerator 4 parts, 5 parts binder, 26 parts water.
[0017] The accelerator is N,N-tetramethyldithiodithiocarbamide.
[0018] The binder is polyvinyl alcohol.
Embodiment 3
[0020] The new type of radiation protection coating of the present invention, calculated in parts by weight, includes 18 parts of ceramic particles, 23 parts of erbium oxide, 26 parts of nano-ferrite, 11 parts of lead fiber, 13 parts of tungsten alloy fiber, and accelerator 5 parts, 4 parts binder, 28 parts water.
[0021] The accelerator is N,N-tetramethyldithiodithiocarbamide.
[0022] The binder is polyvinyl alcohol.
[0023] The raw materials of the invention are easy to obtain, low cost, and the prepared ionizing radiation protection material has stable performance, can effectively protect β, X, and γ rays, and is light, thin, and breathable.
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