Polyvinyl chloride composite material for high-light-fastness Textilene mesh and preparation process of Textilene mesh
A technology of polyvinyl chloride and compound materials, which is applied in the fields of rayon manufacture, fiber chemical characteristics, single-component halogenated hydrocarbon artificial filaments, etc., can solve problems such as easy discoloration, improve light fastness, improve sun protection performance, The effect of improving light fastness
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preparation example 1
[0043] Preparation of sunscreen:
[0044]The preparation method of sunscreen is as follows: Weigh 3.85kg of AS-G103 molecular sieve activated powder and 1.15kg of nano-graphene oxide powder, and disperse them in 500ml of ethylene glycol, protect with nitrogen, and heat at 200°C for 12h under the condition of condensation and reflux. , filtered, alternately rinsed with water and ethanol for 3 times, and dried to obtain a molecular sieve activated powder coated with nano-graphene oxide powder on the surface.
preparation example 2
[0046] Preparation of sunscreen:
[0047] The preparation method of the sunscreen is as follows: Weigh 5.33kg of AS-G103 molecular sieve activated powder and 2.67g of nano-graphene oxide powder, and disperse them in 500ml of ethylene glycol, protect with nitrogen, and heat at 220°C for 6h under the condition of condensation and reflux. Filter, rinse with water and ethanol three times alternately, and dry to obtain a molecular sieve activated powder coated with nano-graphene oxide powder on the surface.
preparation example 3
[0049] Preparation of sunscreen:
[0050] The preparation method of the sunscreen is as follows: Weigh 4.64kg of AS-G103 molecular sieve activated powder and 1.86kg of nano-graphene oxide powder, and disperse them in 500ml of ethylene glycol, protect with nitrogen, and heat at 207°C for 10h under the condition of condensation and reflux. , filtered, alternately rinsed with water and ethanol for 3 times, and dried to obtain a molecular sieve activated powder coated with nano-graphene oxide powder on the surface.
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