Flame-retardant high-color fastness printed fabric
A technology with high color fastness and printing, applied in the direction of layered products, synthetic resin layered products, chemical instruments and methods, etc., can solve the problems of poor flame retardancy, not resistant to washing, easy to burn, etc., and achieve high color fastness. , the effect of excellent flame retardant performance
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Embodiment 1
[0012] A flame-retardant high-color fastness printing fabric, comprising: a knitted fabric base layer, a printing layer, and a polyurethane film layer, and the knitted fabric base layer is woven from flame-retardant polyester fiber, viscose fiber, carbon fiber, coffee carbon fiber blended yarn According to the mass percentage calculation, the content of the flame-retardant polyester fiber is 70%, the content of the viscose fiber is 15%, the content of the carbon fiber is 10%, and the content of the coffee carbon fiber is 5%, the printing layer is formed on the surface of the knitted fabric base layer by a thermal transfer printing process, and the polyurethane film layer is heat-pressed on the printing layer.
[0013] Wherein, the flame-retardant polyester fiber is prepared by melt-spinning polyester chips, a flame retardant, and nano-silica.
[0014] The ink used in the thermal transfer printing process is water-based flame-retardant printing ink.
[0015] The thickness of t...
Embodiment 2
[0017] A flame-retardant high-color fastness printing fabric, comprising: a knitted fabric base layer, a printing layer, and a polyurethane film layer, and the knitted fabric base layer is woven from flame-retardant polyester fiber, viscose fiber, carbon fiber, coffee carbon fiber blended yarn According to mass percentage calculation, the content of the flame-retardant polyester fiber is 72%, the content of the viscose fiber is 12%, the content of the carbon fiber is 9%, and the content of the coffee carbon fiber is 7%, the printing layer is formed on the surface of the knitted fabric base layer by a thermal transfer printing process, and the polyurethane film layer is heat-pressed on the printing layer.
[0018] Wherein, the flame-retardant polyester fiber is prepared by melt-spinning polyester chips, a flame retardant, and nano-silica.
[0019] The ink used in the thermal transfer printing process is water-based flame-retardant printing ink.
[0020] The thickness of the po...
Embodiment 3
[0022] A flame-retardant high-color fastness printing fabric, comprising: a knitted fabric base layer, a printing layer, and a polyurethane film layer, and the knitted fabric base layer is woven from flame-retardant polyester fiber, viscose fiber, carbon fiber, coffee carbon fiber blended yarn According to the mass percentage calculation, the content of the flame-retardant polyester fiber is 75%, the content of the viscose fiber is 10%, the content of the carbon fiber is 8%, and the content of the coffee carbon fiber is 7%, the printing layer is formed on the surface of the knitted fabric base layer by a thermal transfer printing process, and the polyurethane film layer is heat-pressed on the printing layer.
[0023] Wherein, the flame-retardant polyester fiber is prepared by melt-spinning polyester chips, a flame retardant, and nano-silica.
[0024] The ink used in the thermal transfer printing process is water-based flame-retardant printing ink.
[0025] The thickness of th...
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Abstract
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