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首页> 外文期刊>Journal of polymer engineering >Morphology and electrical properties of polypropylene/polyamide 6/glass fiber composites with low carbon black loading
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Morphology and electrical properties of polypropylene/polyamide 6/glass fiber composites with low carbon black loading

机译:低炭黑含量的聚丙烯/聚酰胺6 /玻璃纤维复合材料的形貌和电性能

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The objective of this study is to investigate the electrically conductive properties and percolation thresholds of carbon black (CB)-filled polypropylene (PP)/glass fiber (GF), PP/polyamide 6 (PA6), and PP/PA6/GF composites. Compared to CB-filled PP/GF and PP/PA6 composites, PP/PA6/GF/CB composites exhibited a reduction of the percolation threshold. Under the same CB loading, the surface resistivity of PP/PA6/GF/CB composites was much lower, indicating a better conductivity. According to the morphology images characterized by transmission electron microscopy, CB was preferentially located in the PA6 phase due to the good interaction between CB and PA6 and the lower viscosity of PA6. The addition of GF formed a PA6-coated GF structure. This structure with a relatively long diameter can effectively assist the construction of conductive paths. Meanwhile, GF also played a volume-occupying role and improved the effective concentration of the conductive component in the system. The influences of GF and PA6 mass fraction on the surface resistivity of PP/PA6/GF/CB composites were also explored, respectively. It was found that appropriate amounts of GF and PA6 could effectively increase the electrical conductivity, providing guidance for fabricating an antistatic or conductive material with high comprehensive performance.
机译:这项研究的目的是研究填充炭黑(CB)的聚丙烯(PP)/玻璃纤维(GF),PP /聚酰胺6(PA6)和PP / PA6 / GF复合材料的导电性能和渗透阈值。与CB填充的PP / GF和PP / PA6复合材料相比,PP / PA6 / GF / CB复合材料的渗透阈值降低。在相同的CB负载下,PP / PA6 / GF / CB复合材料的表面电阻率要低得多,表明其导电性更好。根据透射电子显微镜表征的形态图像,由于CB和PA6之间的良好相互作用和较低的PA6粘度,CB优先位于PA6相中。 GF的添加形成了PA6包被的GF结构。具有相对长的直径的这种结构可以有效地辅助导电路径的构造。同时,GF还起到了占据体积的作用,并提高了系统中导电成分的有效浓度。分别探讨了GF和PA6质量分数对PP / PA6 / GF / CB复合材料表面电阻率的影响。发现适量的GF和PA6可以有效地增加导电性,为制备具有高综合性能的抗静电或导电材料提供指导。

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