Flame retardant polyacrylic and polyester fiber and its production process
A technology of acrylic fiber and production method, which is applied in the field of acrylic fiber, and can solve the problems of affecting other properties of the fiber and failing to improve flame retardancy, etc.
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Embodiment 1
[0037] Polymerization liquid flow rate (L / H) 3500
[0038] Antimony pentoxide colloidal solution flow rate (L / H) 13
[0039] Dimethylformamide solution flow rate (L / H) 220
[0040] Content of antimony pentoxide in fiber (%) 1.44
[0041] The limiting oxygen index (%) obtained by testing the fiber produced under the above conditions is 31
Embodiment 2
[0043] Polymerization liquid flow rate (L / H) 3500
[0044] Antimony pentoxide colloidal solution flow rate (L / H) 27
[0045] DMF solution flow rate (L / H) 180
[0046] Content of antimony pentoxide in fiber (%) 3.12
[0047]The limiting oxygen index (%) obtained by testing the fibers produced under the above conditions is 32.2
Embodiment 3
[0049] Polymerization liquid flow rate (L / H) 3500
[0050] Antimony pentoxide colloidal solution flow rate (L / H) 42
[0051] DMF solution flow rate (L / H) 160
[0052] Content of antimony pentoxide in fiber (%) 5.76
[0053] The limiting oxygen index (%) obtained by testing the fiber produced under the above conditions is 34
[0054] The antimony pentoxide flame retardant is evenly distributed inside the highly flame-resistant acrylic fiber manufactured according to the above-mentioned production method, and the content ratio is 1.44-5.76%. Due to the synergistic effect of antimony and chlorine, the flame retardant performance of the fiber is greatly improved, and its limiting oxygen index value can reach 34%; at the same time, because the chlorine content is not increased, the high flame retardant acrylic fiber Other performance indicators can still maintain the quality level of ordinary acrylic chlorine fiber flame-retardant fibers, and some indicators can even exceed the ...
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