Crystal lattice change modification method for viscose fiber
A technology of viscose fiber and crystal transformation modification, which is applied in the direction of fiber treatment, plant fiber, liquid/gas/steam treatment of a certain length of textile materials, etc., and can solve problems such as unevenness, crystallinity reduction, and fiber erosion. Achieve excellent softness, improve dimensional stability, and soft fibers
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Embodiment 1
[0023] A crystal change modification method of viscose fiber, the viscose fiber with a length of 20mm and a fineness of 0.06tex is placed in a closed container, filled with liquid ammonia, and pressurized at a constant speed of 0.1MPa / min To the modified pressure of 0.5Mpa, keep the pressure for 1min, and then release it to 0.005Mpa within 5 seconds at a depressurization rate of 0.1MPa / s. Then, the modified medium is removed by evaporation in parallel with heating and vacuum pumping, until the pressure drop in the airtight container is 133 Pa, at which point the crystal-modified viscose fiber is obtained. Compared with the microscopic lattice of the viscose fiber, the micro-lattice of the crystal-modified viscose fiber has a pore increase of 8% and a crystallinity reduction of 10%; Compared with the viscose fiber mentioned above, the dye uptake rate is increased by 18%, and the color fastness is increased by 15%.
Embodiment 2
[0025] A crystal change modification method of viscose fiber, the viscose fiber with a length of 50mm and a fineness of 0.18tex is placed in a closed container, filled with liquid ammonia, and pressurized at a constant speed of 0.2MPa / min To the modified pressure of 0.8Mpa, keep the pressure for 3min, and then release it to 0.008Mpa within 4 seconds at a depressurization rate of 0.2MPa / s. Then, the modified medium is removed by evaporation in parallel with heating and vacuum pumping, until the pressure drop in the airtight container is 133 Pa, at which point the crystal-modified viscose fiber is obtained. Compared with the microscopic lattice of the viscose fiber, the microscopic lattice of the crystal-modified viscose fiber has a 9% increase in porosity and a 10% decrease in crystallinity; the crystal-modified viscose fiber and the Compared with the above-mentioned viscose fiber, the dye uptake rate is increased by 20%, and the color fastness is increased by 16%.
Embodiment 3
[0027] A crystal change modification method of viscose fiber, the viscose fiber with a length of 80mm and a fineness of 0.22tex is placed in a closed container, filled with liquid ammonia, and pressurized at a constant speed of 0.3MPa / min To the modified pressure of 1Mpa, keep the pressure for 5min, and then release it to 0.001Mpa within 5 seconds at a depressurization rate of 0.2MPa / s. Then, the modified medium is removed by evaporation in parallel with heating and vacuum pumping, until the pressure drop in the airtight container is 133 Pa, at which point the crystal-modified viscose fiber is obtained. Compared with the microscopic lattice of the viscose fiber, the microscopic lattice of the crystal change modified viscose fiber has a pore increase of 10% and a crystallinity reduction of 15%; Compared with the above-mentioned viscose fiber, the dye uptake rate is increased by 21%, and the color fastness is increased by 19%.
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