Kunlun spar composite material, Kunlun spar composite material sanitary bath equipment, and preparation method of sanitary bath equipment
A Kunlun spar, composite material technology, applied in the field of bathroom equipment, can solve the problems of consumption of petroleum by-products, low labor efficiency, poor process practicability, etc., to achieve good thermoplastic processability, high defective and scrap rates, mechanical processing good performance
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Embodiment 1
[0043] First, 25 parts of PP, 5 parts of POE, 0.5 parts of antioxidant 1010, 0.3 parts of flow modifier TAF, 0.1 part of fluorescent whitening agent 1,4-2 (benzoxazolyl-2-yl) naphthalene ( O1), 2.1 parts of aramid fiber, 5 parts of 1000 mesh titanium dioxide, 63 parts of 300 mesh wollastonite and 6 parts of 600 mesh white carbon black, blended for 20 minutes by high mixer, and then extruded and granulated by extruder , dried to obtain Kunlun spar particles. Then, the bathtub mold is installed on an injection molding machine, and the Kunlun spar particles prepared above are injection-molded to obtain a finished bathtub.
Embodiment 2
[0045] First, 25 parts of PP, 5 parts of POE, 0.5 parts of antioxidant 1010, 0.5 parts of flow modifier TAF, 4 parts of aramid fiber, 5 parts of 1000 mesh titanium dioxide, 56 parts of 300 mesh wollastonite, 19 parts of 600 mesh Calcium carbonate is blended for 20 minutes by a high-speed mixer, then extruded and granulated by an extruder, and dried to obtain Kunlun spar particles. Then, the bathtub mold was installed on an injection molding machine, and the Kunlun spar particles prepared above were injection-molded. Finally, the finished bathtub is obtained through surface treatment.
[0046] The finished bathtubs obtained in the above-mentioned Examples 1-2 have a ceramic-like surface luster, sound similar to ceramics when knocked, have low surface energy, are not stained, and have self-cleaning properties. The surface pencil hardness reaches 5-6H after testing.
[0047] Basin production
Embodiment 3
[0049] First, 40 parts of PA, 0.8 part of antioxidant 1010, 0.5 part of flow modifier TAF, 0.1 part of fluorescent whitening agent 1,4-2 (benzoxazolyl-2-yl) naphthalene (O1), 1.1 1 part of aramid fiber, 5.5 parts of 800 mesh titanium dioxide, 32 parts of 1200 mesh calcium carbonate, 20 parts of 600 mesh attapulgite, blended for 20 minutes by high mixer, then extruded and granulated by extruder, and dried to obtain Kunlun spar particles. The basin mold is installed on an injection molding machine, and the above-prepared Kunlun spar particles are injection-molded to obtain a finished basin.
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