Antistatic flame-retardant nylon
A flame-retardant nylon and antistatic technology, applied in the field of nylon, can solve the problems of insufficient antistatic and flame retardancy of polyamide fibers, and achieve excellent antistatic and flame retardancy effects
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Embodiment 1
[0025] Weigh 600 grams of polyamide fibers and dry them at 90°C for 4 hours, then mix them with 80 grams of germanium dioxide, 130 grams of antimony trioxide, 50 grams of γ-aminopropyl triethoxysilane, methyl methacrylate- 50 grams of butadiene-styrene copolymer and 8 grams of monoglyceride stearate were stirred for 5 minutes at 1100 rpm in a high-speed mixer, and released after being uniform. Put the mixed material into the twin-screw extruder with a length-to-diameter ratio (L / D) of 40. The processing temperature of the twin-screw extruder: the temperature in the first zone is 180°C, the temperature in the second zone is 185°C, and the temperature in the third zone is 180°C. The temperature of the fourth zone is 195°C, the temperature of the fourth zone is 210°C, the temperature of the fifth zone is 215°C, the temperature of the sixth zone is 225°C, the temperature of the seventh zone is 235°C, the temperature of the eighth zone is 240°C, and the speed of the main engine is 3...
Embodiment 2
[0027] Antistatic flame retardant nylon was prepared in the same manner as in Example 1, except that germanium dioxide was not used.
Embodiment 3
[0029] Antistatic flame retardant nylon was prepared in the same manner as in Example 1, except that antimony trioxide was not used.
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