Wear resistant polymer material
A technology of polymer materials and wear-resistant agents, applied in the field of wear-resistant materials, can solve the problems of long-term use, poor surface hardness, and products are easily scratched, so as to make up for insufficient wear-resistant defects and high surface wear resistance. , the effect of a wide range of applications
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Embodiment 1
[0026] Choose the raw material of following parts by weight:
[0027]
[0028] The ABS material, glass fiber, anti-wear agent, coupling agent, antioxidant, and lubricant in the above parts by weight are mixed, plasticized, extruded and granulated, and cooled to make a wear-resistant polymer material. During extrusion granulation, a twin-screw extruder is used to melt and blend the raw materials at a temperature range of 210° C. at a speed of 170 rpm, and then extrusion granulation.
Embodiment 2
[0030] Choose the raw material of following parts by weight:
[0031]
[0032] The ABS material, glass fiber, anti-wear agent, coupling agent, antioxidant, and lubricant in the above parts by weight are mixed, plasticized, extruded and granulated, and cooled to make a wear-resistant polymer material. During extrusion granulation, a twin-screw extruder is used to melt and blend the raw materials at a temperature range of 230° C. at a speed of 210 rpm, and then extrusion granulation.
Embodiment 3
[0034] Choose the raw material of following parts by weight:
[0035] Preferably adopt the raw material of following parts by weight to make:
[0036]
[0037] The ABS material, glass fiber, anti-wear agent, coupling agent, antioxidant, and lubricant in the above parts by weight are mixed, plasticized, extruded and granulated, and cooled to make a wear-resistant polymer material. During extrusion granulation, a twin-screw extruder is used to melt and blend the raw materials at a temperature range of 220° C. at a speed of 180 rpm, and then extrusion granulation.
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