Insulated and heat-conductive polybutylene terephthalate/polycarbonate composite material and preparation method thereof
A polybutylene terephthalate and polycarbonate technology, applied in the field of polymer functional composite materials, can solve problems such as inability to guarantee insulation performance, achieve easy large-scale industrial production, facilitate phonon transfer, improve The effect of effective concentration
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Embodiment 1
[0032] 40 parts of polybutylene terephthalate, 20 parts of polycarbonate, 40 parts of boron nitride (surface treated with silane coupling agent KH560 accounting for 1.5 wt% of boron nitride mass) and 1 part of triphenyl phosphite The ester is mixed evenly in a high-speed mixer, and then added to a twin-screw extruder for uniform plasticization, extrusion, and granulation. The twin-screw extrusion temperature is 180-260°C, and the screw speed is 80-100rpm. The obtained pellets were formed into an insulating and heat-conducting composite material by hot pressing, and its properties are shown in Table 1.
Embodiment 2
[0034] Mix 30 parts of polybutylene terephthalate, 10 parts of polycarbonate, 60 parts of alumina (surface treated with silane coupling agent KH550 accounting for 2.0 wt% of alumina mass) and 1 part of stearic acid at high speed Mix evenly in the machine, and then add to the twin-screw extruder for uniform plasticization, extrusion, and granulation. The twin-screw extrusion temperature is 180-260°C, and the screw speed is 90-120rpm. The obtained pellets were formed into an insulating and heat-conducting composite material by hot pressing, and its properties are shown in Table 1.
Embodiment 3
[0036]20 parts of polybutylene terephthalate, 20 parts of polycarbonate, 25 parts of aluminum nitride (surface treated with silane coupling agent KH560 accounting for 1.5 wt% of aluminum nitride mass), 35 parts of aluminum oxide (treated with silane coupling agent KH560 (surface treatment), 1 part of triphenyl phosphite, and 1 part of liquid paraffin were mixed uniformly in a high-speed mixer, and then added to a twin-screw extruder to uniformly plasticize and extrude Extrusion and granulation, the twin-screw extrusion temperature is 180-260°C, and the screw speed is 90-120rpm. The obtained pellets were formed into an insulating and heat-conducting composite material by hot pressing, and its properties are shown in Table 1.
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