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Effect of graphite and carbon fiber contents on the morphology and properties of thermally conductive composites based on polyamide 6

机译:石墨和碳纤维含量对聚酰胺6基导热复合材料形态和性能的影响

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Composites of polyamide 6 (PA 6), powdered synthetic graphite and pitch-based carbon fiber were melt processed to explore the effect of the filler contents on the anisotropic properties of the resulting composites. Optical microscopy and mechanical properties were used to determine the dispersion of graphite and carbon fiber in the PA 6 matrix. The relationship between the structure and properties showed the anisotropic filler orientation along the three principal directions. Thermal expansion in the flow direction and transverse direction decreased as filler content increased for all composites, but the decrease in the flow direction was much more significant. This anisotropic orientation also influenced the thermal conductivity of the composites resulting in an increased in-plane thermal conductivity up to 25 times that of pure PA 6. Thermography shows good agreement with the thermal conductivity results.
机译:对聚酰胺6(PA 6),粉末状合成石墨和沥青基碳纤维的复合材料进行熔融加工,以探讨填料含量对所得复合材料各向异性性能的影响。使用光学显微镜和机械性能来确定石墨和碳纤维在PA 6基体中的分散性。结构与性能之间的关系显示出沿三个主要方向的各向异性填料取向。对于所有复合材料,随着填料含量的增加,在流动方向和横向的热膨胀减小,但是在流动方向上的减小更为显着。这种各向异性的取向也影响了复合材料的热导率,导致面内热导率提高了25倍,是纯PA 6的25倍。热成像显示与热导率结果吻合良好。

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