An all-round protective ct protective clothing
A protective and protective clothing technology, applied in the field of all-round protective CT protective clothing, can solve the problems of heavy weight, patient damage, injury, etc., and achieve the effect of outstanding substantive characteristics, convenient wearing, and convenient wearing.
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Embodiment 1
[0018] Select 40 parts of copper-lead alloy, 30 parts of aluminum-lead alloy, 15 parts of tungsten, 15 parts of bismuth, and 15 parts of tin as the spraying material, and select 40 parts of bamboo charcoal fiber as the carrier material, that is, the base fiber. The base fiber enters from one end of the plasma spraying furnace, and the other end is horizontally arranged, the fiber passes through the vacuum furnace at a constant speed and the above-mentioned spraying material is placed on the electrode of the furnace cavity, and the spraying material is sprayed under the action of a magnetic field Metal fibers made onto a carrier material. Finally, the warp and weft interweaving of metal fibers is made into a radiation-proof layer.
Embodiment 2
[0020] 70 parts of copper-lead alloy, 50 parts of aluminum-lead alloy, 25 parts of tungsten, 25 parts of bismuth, and 25 parts of tin are selected as the spraying material, and 60 parts of hemp fiber are selected as the carrier material, that is, the base fiber. The above method is also used to prepare metal fibers, and finally the metal fibers are interwoven in warp and weft to form a radiation protection layer.
Embodiment 3
[0022] 55 parts of copper-lead alloy, 40 parts of aluminum-lead alloy, 20 parts of tungsten, 20 parts of bismuth, and 20 parts of tin are selected as the spraying material, and 50 parts of bamboo charcoal fiber and hemp fiber are selected as the carrier material, that is, the base fiber. The above method is also used to prepare metal fibers, and finally the metal fibers are interwoven in warp and weft to form a radiation protection layer.
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