Preparation method of PEGMA/PEGDA hydrogel fiber having ultrafast-anisotropically water-absorption performance
An anisotropic, water-absorbing technology, applied in fiber processing, fiber chemical characteristics, spinning solution preparation, etc., can solve the unrealized continuous and controllable preparation of chemically cross-linked hydrogel fibers and limit the application of hydrogel materials and other problems, to achieve the effect of stable fiber structure and good water absorption performance
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Embodiment 1
[0031] Weigh 3g of PEGMA monomer and 0.15g of photoinitiator IRGACURE2959 at room temperature, and stir in the dark until the photoinitiator is completely dissolved, and then polymerize PEGMA with an ultraviolet light source with a wavelength of 400nm to prepare long-chain PEGMA; weigh 4g of deionized water, 3g of PEGDA ( Mw=300), 0.03g IRGACURE2959, ultrasonic dispersion, magnetic stirring at room temperature in the dark for 6h until IRGACURE2959 is completely dissolved to obtain spinning solution. A capillary with an inner diameter of 0.6 mm and a length of 2 cm is used as a spinning nozzle, and a propulsion pump is used to pass the spinning solution into a deionized water bath at a propulsion rate of 2 ml / h, and the spinning nozzle is immersed in the water bath 0.5 cm below the liquid surface. Set a 90° ultraviolet point light source at a distance of 8 mm from the spinneret, with a wavelength of 400 mm, and a spot distance of 5 mm from the spinning solution. The linear spee...
Embodiment 2
[0036]Weigh 1g of PEGMA monomer and 0.05g of photoinitiator IRGACURE2959 at room temperature, ultrasonically disperse, and stir in the dark until the photoinitiator is completely dissolved, then polymerize PEGMA with a UV light source with a wavelength of 400nm to prepare long-chain PEGMA; weigh 2g of deionized water , 7g PEGDA (Mw=300), 0.35g IRGACURE2959, and magnetically stirred for 6h at room temperature in the dark until IRGACURE2959 was completely dissolved to obtain a spinning solution. Using a capillary with an inner diameter of 1.0 mm and a length of 2 cm as the spinning nozzle, the spinning solution is passed into the coagulation bath by a propulsion pump at a propulsion rate of 10 ml / h, and the spinning nozzle is immersed 2 cm below the water bath surface. Set a 90° ultraviolet point light source at a distance of 5 mm from the spinneret, with a wavelength of 325 mm, and a spot distance of 8 mm from the spinning solution. The linear speed of the drum with a diameter ...
Embodiment 3
[0038] Weigh 7g of PEGMA monomer and 0.35g of photoinitiator IRGACURE2959 at room temperature, ultrasonically disperse, and stir in the dark until the photoinitiator is completely dissolved, then polymerize PEGMA with a UV light source with a wavelength of 400nm to prepare long-chain PEGMA; weigh 1g of deionized water , 2g PEGDA (Mw=300), 0.10g IRGACURE2959, and magnetically stirred for 6h at room temperature in the dark until IRGACURE2959 was completely dissolved to obtain a spinning solution. A capillary with an inner diameter of 0.8 mm and a length of 2 cm is used as a spinning nozzle, and a propulsion pump is used to pass the spinning liquid into the coagulation bath at a propulsion rate of 2 ml / h, and the spinning nozzle is immersed 1 cm below the surface of the water bath. Set an 80° ultraviolet point light source at a distance of 6 mm from the spinneret, with a wavelength of 295 mm, and a spot distance of 5 mm from the spinning solution. The line speed of the roller wit...
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