A window screen resistant to ultraviolet penetration and preparation method thereof
An anti-ultraviolet and ultraviolet technology, applied in the field of window screens that resist ultraviolet penetration, can solve the problems of general anti-ultraviolet function and insufficient anti-ultraviolet effect of window screens, and achieve the effect of improving anti-ultraviolet ability, significantly anti-ultraviolet performance, and weakening strength.
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Embodiment 1
[0022] A window screen resistant to ultraviolet penetration, which is prepared from the following fibers: 30 g of bamboo fiber, 15 g of corn fiber, 15 g of mulberry silk, 80 g of anti-ultraviolet modified polyester fiber, and 30 g of aramid fiber. Both sides are coated with ultraviolet absorbing layer, wherein the anti-ultraviolet modified polyester fiber is prepared from the following components: polyethylene terephthalate 100 g, polyparaphenylene terephthalamide 50 g, Nano titanium dioxide 4 g, cerium oxide 2 g, nano kaolin 2 g, calcium carbonate 3 g, ultrafine ceramic powder 1 g, vinyl silane coupling agent 0.7 g, viscose fiber 0.2 g.
[0023] A preparation method of a window screen resistant to ultraviolet penetration, comprising the following steps:
[0024] (1) Preparation of anti-ultraviolet modified polyester fiber: After fully mixing all raw material components, they are sent to a screw extruder for extrusion to obtain a mixed masterbatch, and then wet-spun to make an...
Embodiment 2
[0029] A window screen resistant to ultraviolet penetration, which is prepared from the following fibers: 40 g of bamboo fiber, 17.5 g of corn fiber, 17.5 g of mulberry silk, 90 g of anti-ultraviolet modified polyester fiber, and 40 g of aramid fiber. Both sides are coated with UV-absorbing layers, and the UV-resistant modified polyester fiber is prepared from the following components: polyethylene terephthalate 110 g, poly-p-phenylene terephthalamide 55 g, Nano titanium dioxide 5 g, cerium oxide 2.5 g, nano kaolin 3.5 g, calcium carbonate 4 g, ultrafine ceramic powder 2 g, vinyl silane coupling agent 0.9 g, viscose fiber 0.35 g.
[0030] A preparation method of a window screen resistant to ultraviolet penetration, comprising the following steps:
[0031] (1) Preparation of anti-ultraviolet modified polyester fiber: After fully mixing all raw material components, they are sent to a screw extruder for extrusion to obtain a mixed masterbatch, and then wet-spun to make an anti-ul...
Embodiment 3
[0036] A window screen resistant to ultraviolet penetration, which is prepared from the following fibers: 50 g of bamboo fiber, 20 g of corn fiber, 20 g of mulberry silk, 100 g of anti-ultraviolet modified polyester fiber, and 30 g of aramid fiber. Both sides are coated with UV-absorbing layers, and the UV-resistant modified polyester fiber is prepared from the following components: polyethylene terephthalate 120 g, poly-p-phenylene terephthalamide 60 g, Nano titanium dioxide 6 g, cerium oxide 3 g, nano kaolin 5 g, calcium carbonate 5 g, ultrafine ceramic powder 3 g, vinyl silane coupling agent 1.1 g, viscose fiber 0.5 g.
[0037] A preparation method of a window screen resistant to ultraviolet penetration, comprising the following steps:
[0038] (1) Preparation of anti-ultraviolet modified polyester fiber: After fully mixing all raw material components, they are sent to a screw extruder for extrusion to obtain a mixed masterbatch, and then wet-spun to make an anti-ultraviolet ...
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