Plastic alloy used for shell of washing machine and preparation method thereof
A technology for plastic alloys and washing machines, applied in the field of plastics, can solve the problems of poor weather resistance and solvent resistance, difficult to meet production requirements, poor processing fluidity, etc., to achieve good fluidity, improve fatigue and aging resistance, and process fluidity. boosted effect
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[0073] Correspondingly, the present invention also provides a method for preparing a plastic alloy for a washing machine casing, comprising the following steps: dissolving 6-10 parts by weight of a KH792 type silane coupling agent in a solvent, and then adding 3-5 parts by weight of molybdenum disulfide and 3-4 parts by weight of wollastonite are reacted, excess solvent is removed, and the first mixture is obtained after drying; 55-75 parts by weight of chlorinated polyether, 12-16 parts by weight of polyamide, 16-18 parts by weight of polyphenylene sulfide , 12-18 parts by weight of aramid fiber, 3-5 parts by weight of polybutylene terephthalate and 5-8 parts by weight of ethylene-vinyl acetate copolymer are mixed, and the second mixture is obtained after stirring; the second The mixture is heated to 70-80°C, then the first mixture, 1-2 parts by weight of antioxidant and 1-3 parts by weight of lubricant are added, and the third mixture is obtained after stirring; the third mix...
Embodiment 1
[0088] The raw material formulation of the composite engineering plastic alloy is as follows, in parts by weight:
[0089] 58 parts of chlorinated polyether;
[0090] 14 parts polyamide;
[0091] 16 parts of polyphenylene sulfide;
[0092] 13 parts of aramid fiber;
[0093] 3 copies of PBT;
[0094] KH7927 copies;
[0095] 4 parts of molybdenum disulfide;
[0096] 5 parts of ethylene-vinyl acetate copolymer (EVA);
[0097] 3 parts wollastonite;
[0098] Antioxidant 2 parts;
[0099] 1 part lubricant;
[0100] The preparation process of composite engineering plastic alloy and its injection molding process are as follows:
[0101] Step 1, pretreat molybdenum disulfide and wollastonite, dissolve KH792 of corresponding weight in 40 parts by weight of ethanol solvent, add molybdenum disulfide and wollastonite of corresponding weight parts and stir at room temperature for 45min, heat up to Continue stirring at 60°C for 30 minutes to ensure the coupling of the silane coupli...
Embodiment 2
[0108] The raw material formulation of the composite engineering plastic alloy is as follows, in parts by weight:
[0109] 65 parts of chlorinated polyether;
[0110] 14 parts polyamide;
[0111]16 parts of polyphenylene sulfide;
[0112] 16 parts of aramid fiber
[0113] 4 copies of PBT;
[0114] KH7927 copies;
[0115] Molybdenum disulfide 4 parts
[0116] 7 parts of ethylene-vinyl acetate copolymer (EVA);
[0117] 4 parts wollastonite;
[0118] Antioxidant 2 parts;
[0119] 2 parts lubricant;
[0120] The preparation process of composite engineering plastic alloy and its injection molding process are as follows:
[0121] Step 1, pretreat molybdenum disulfide and wollastonite, dissolve KH792 of corresponding weight in 40 parts by weight of ethanol solvent, add molybdenum disulfide and wollastonite of corresponding weight parts and stir at room temperature for 60min, heat up to Continue stirring at 60°C for 30 minutes to ensure the coupling of the silane coupling ag...
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