Composite inflaming-retarding and high-temperature-resisting blended yarn for protective garment
A blended yarn and composite flame-retardant technology, applied in the field of protective clothing blended yarn, can solve the problems of insufficient mechanical properties and comfort, poor flame-retardant durability, etc., to make up for the defects of poor mechanical properties and good hygroscopicity , The effect of good mechanical properties of the product
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Embodiment 1
[0016] A composite flame-retardant and high-temperature-resistant blended yarn for protective clothing, the raw materials of which include by weight: 5 parts of polyester fiber, 60 parts of adhesive fiber, 15 parts of acrylic fiber, 30 parts of lyocell, and 15 parts of aramid fiber. The blending process is spun into yarn.
Embodiment 2
[0018] A composite flame-retardant and high-temperature-resistant blended yarn for protective clothing, the raw materials of which include by weight: 15 parts of polyester fiber, 30 parts of adhesive fiber, 35 parts of acrylic fiber, 15 parts of lyocell, and 35 parts of aramid fiber. The blending process is spun into yarn.
Embodiment 3
[0020] A composite flame-retardant and high-temperature-resistant blended yarn for protective clothing, the raw materials of which include by weight: 10 parts of polyester fiber, 50 parts of adhesive fiber, 20 parts of acrylic fiber, 22 parts of lyocell, and 28 parts of aramid fiber. The blending process is spun into yarn.
[0021] The polyester fiber is prepared by the following process: 15 parts of ceramic soil, 10 parts of magnesium hydroxide, and 30 parts of silicon dioxide are evenly mixed by weight and then sintered to obtain the first prefabricated material with a particle size of 0.5-1.5 microns; 1 part of Angelica dahurica , 2 parts of honeysuckle, 1 part of Houttuynia cordata, add water and decoct for 10 hours, add the first prefabricated material, 1 part of coupling agent, 5 parts of antimony trioxide, 1 part of trichlorethylene, soak for 60 hours, filter, add 100 parts of polyester and mix well , extruded, sliced, melted, extruded, and spun to obtain polyester fibe...
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