Blue masterbatch resisting corrosion
A corrosion-resistant, blue technology, applied in the field of masterbatch, can solve the problem of poor corrosion resistance of blue masterbatch, and achieve the effect of excellent corrosion resistance and good corrosion resistance
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Embodiment 1
[0008] Taking by weighing Pigment Blue 27 is 14kg, butyl propionate is 3kg, acrylonitrile is 17kg, vitamin E is 2kg, polyurethane is 5kg, lignocellulose is 8kg, magnesium silicate is 1kg, at first the above-mentioned raw materials are mixed with twin screws The mixing time is 30 minutes, and then the twin-screw extruder is used for high-temperature mixing, the temperature is 185 ° C, the screw speed is 220 r / min, and after the screw is extruded and mixed at a high temperature, granulation and drying are performed to obtain a corrosion-resistant material. Blue masterbatch.
Embodiment 2
[0010] The preparation method of blue master batch is the same as that of Example 1, and the specific components are as follows: Pigment Blue 27 is 12kg, butyl propionate is 5kg, acrylonitrile is 13kg, vitamin E is 4kg, polyurethane is 6kg, lignocellulose is 6kg, silicon Magnesium acid is 2kg.
Embodiment 3
[0012] The preparation method of blue master batch is the same as that of Example 1, and the specific components are as follows: Pigment Blue 27 is 10kg, butyl propionate is 7kg, acrylonitrile is 15kg, vitamin E is 3kg, polyurethane is 7kg, lignocellulose is 7kg, silicon Magnesium acid is 1kg.
[0013] The blue masterbatches prepared by the methods of Example 1, Example 2, and Example 3 were respectively put into 25wt%, 30wt%, and 35wt% sodium chloride solution to soak for 20 days. Observe the change of blue masterbatch after 20 days. After 20 days, the blue masterbatch has not changed, and the masterbatch prepared by the present invention has good corrosion resistance.
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