A kind of nylon fiber with anti-ultraviolet performance and preparation method thereof
A nylon fiber, anti-ultraviolet technology, applied in the direction of fiber chemical characteristics, rayon manufacturing, single-component polyamide rayon, etc., can solve the decline of anti-ultraviolet light performance, discount of anti-ultraviolet performance of nylon fiber, small nanoparticles, etc. problem, to achieve the effect of good UV shielding ability, long-lasting anti-UV performance, and ensuring stability
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Embodiment 1
[0029] Embodiment 1: A kind of nylon fiber with anti-ultraviolet performance is prepared according to the following steps:
[0030] S1. Add 0.50 mol triisopropyl borate and 0.28 g sodium isopropoxide to a three-necked flask with a thermometer, a stirrer, and a reflux condenser, then raise the temperature to 100°C, and add 0.51 mol ethyl alcohol dropwise under constant stirring. Diol, heated and refluxed for 90 minutes, then added 0.51mol of 2-amino-3-hydroxypropionic acid, continued to reflux for 120 minutes at 150°C, and distilled off isopropanol under reduced pressure to obtain a chelating compound containing two functional groups. type borate coupling agent.
[0031] S2. Dry the nano-rare earth cerium oxide at 105°C for 2 hours, then add it and the borate coupling agent prepared above in a mass ratio of 100:1 to the high mixer that has been heated to 120°C for 30 minutes. Minutes, after cooling, borate-modified nano rare earth cerium oxide is obtained.
[0032] S3. Mix th...
Embodiment 2
[0033] Embodiment 2: A kind of nylon fiber with anti-ultraviolet performance is prepared according to the following steps:
[0034] S1. Add 0.50 mol triisopropyl borate and 0.28 g sodium isopropoxide to a three-necked flask with a thermometer, a stirrer, and a reflux condenser, then raise the temperature to 100°C, and add 0.52 mol ethyl alcohol dropwise under constant stirring. Diol, heated to reflux for 90 minutes, then added 0.52mol of 2-amino-3-hydroxypropionic acid, continued the reflux reaction at 150°C for 120 minutes, and distilled off isopropanol under reduced pressure to obtain a chelating compound containing bifunctional groups. type borate coupling agent.
[0035] S2. Dry the nano-rare earth cerium oxide at 105°C for 2 hours, and then add it and the borate coupling agent prepared above in a mass ratio of 100:1 to the high mixer that has been heated to 120°C for 45 Minutes, after cooling, borate-modified nano rare earth cerium oxide is obtained.
[0036] S3. Mix th...
Embodiment 3
[0037]Embodiment three: a kind of polyamide fiber with anti-ultraviolet performance is prepared according to the following steps:
[0038] S1. Add 0.50mol triisopropyl borate and 0.28g sodium ethylate to a three-neck flask with thermometer, stirrer, and reflux condenser, then raise the temperature to 100°C, and add 0.52mol ethylene glycol dropwise under constant stirring , heated to reflux for 90 minutes, then added 0.51mol of 2-amino-3-hydroxypropionic acid, continued the reflux reaction at 150°C for 120 minutes, and distilled off isopropanol under reduced pressure to obtain chelated boron with bifunctional groups Ester coupling agent.
[0039] S2. Dry the nano-rare earth cerium oxide at 105°C for 2 hours, and then add it and the borate coupling agent prepared above in a mass ratio of 100:1 to the high mixer that has been heated to 120°C for 45 Minutes, after cooling, borate-modified nano rare earth cerium oxide is obtained.
[0040] S3. Mix the modified nano-rare earth cer...
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