Waterproof and environment-friendly sportswear fabric with high wear resistance
A highly wear-resistant and sporty technology, applied in the direction of yarn, single-component polyester rayon, fiber chemical characteristics, etc., can solve problems such as poor air permeability, and achieve enhanced waterproof and breathable performance, enhanced wear resistance, and protection. Not affected by radiation
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Embodiment 1
[0033] The preparation process of described polyester fiber is:
[0034] 1. First, under stirring, add 6.0g of tungsten powder into 10ml of alcohol solution, then add H under stirring 2 o 2 40ml to obtain the tungsten source; then dissolve 6ml of the above-mentioned tungsten source and 3.9g of polyvinylpyrrolidone in 10ml of alcohol solution, stir evenly, reflux at 80°C for 2h to obtain a mixed sol, dry the mixed sol at 90°C for 2h, Then calcined at 550°C for 10h to obtain WO 3 Nanoparticles; sodium polyacrylate, potassium hydroxide particles, bentonite, kaolin, carbon black, carbon nanotubes, Al 2 o 3 Nanoparticles and WO 3 The nanoparticles are mixed evenly according to the mass ratio, vacuum dehydrated at 90°C for 4h, ground by a ball mill for 3h, and then calcined for 8h, wherein the calcining temperature is 650°C to obtain a water-absorbing composite powder;
[0035] 2. After the polyester chips are dried, the polyester chips and the water-absorbing composite powder...
Embodiment 2
[0038] The preparation process of described polyester fiber is:
[0039] 1. First, under stirring, add 6.0g of tungsten powder into 10ml of alcohol solution, then add H under stirring 2 o 2 40ml to obtain the tungsten source; then dissolve 6ml of the above-mentioned tungsten source and 3.9g of polyvinylpyrrolidone in 10ml of alcohol solution, stir evenly, reflux at 80°C for 2h to obtain a mixed sol, dry the mixed sol at 90°C for 2h, Then calcined at 550°C for 10h to obtain WO 3 Nanoparticles; sodium polyacrylate, potassium hydroxide particles, bentonite, kaolin, carbon black, carbon nanotubes, Al 2 o 3 Nanoparticles and WO 3 The nanoparticles are mixed evenly according to the mass ratio, vacuum dehydrated at 90°C for 4h, ground by a ball mill for 3h, and then calcined for 8h, wherein the calcining temperature is 650°C to obtain a water-absorbing composite powder;
[0040] 2. After the polyester chips are dried, the polyester chips and the water-absorbing composite powder...
Embodiment 3
[0043] The preparation process of described polyester fiber is:
[0044] 1. First, under stirring, add 6.0g of tungsten powder into 10ml of alcohol solution, then add H under stirring 2 o 2 40ml to obtain the tungsten source; then dissolve 6ml of the above-mentioned tungsten source and 3.9g of polyvinylpyrrolidone in 10ml of alcohol solution, stir evenly, reflux at 80°C for 2h to obtain a mixed sol, dry the mixed sol at 90°C for 2h, Then calcined at 550°C for 10h to obtain WO 3 Nanoparticles; sodium polyacrylate, potassium hydroxide particles, bentonite, kaolin, carbon black, carbon nanotubes, Al 2 o 3 Nanoparticles and WO 3 The nanoparticles are mixed evenly according to the mass ratio, vacuum dehydrated at 90°C for 4h, ground by a ball mill for 3h, and then calcined for 8h, wherein the calcining temperature is 650°C to obtain a water-absorbing composite powder;
[0045] 2. After the polyester chips are dried, the polyester chips and the water-absorbing composite powder...
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