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Crystalline properties of melt-processed polyamide 6 matrix multiscale hybrid composites

机译:熔融加工聚酰胺6基质多尺度杂交复合材料的结晶性能

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We investigated the crystalline properties of injection-molded polyamide 6 matrix composites containing carbon nanotubes and microfibers (basalt and carbon). We showed with differential scanning calorimetry tests that microfibers affect crystalline properties differently. Basalt fibers do not have a nucleating effect, while carbon fibers do, to a small extent. Carbon nanotubes acted as nucleating agents themselves, but in composites reinforced with microfibers they increased the crystallinity even more. Due to the nucleating effect of the nanotubes, crystallization started at a higher temperature in each composite. We observed synergistic effects concerning nucleation in hybrid composites. We decomposed the crystalline melting curves to determine the characteristics of the crystallite types and proved that the presence of nanotubes facilitated the formation of -type crystallites. We showed that nanotubes have a double effect: They have a nucleating effect regarding crystallinity, and they inhibit the movement of polyamide molecules relative to each other, which decreases the tendency to crystallize. Therefore, nanotube content has an optimum concerning crystallization. This is in accordance with tensile mechanic properties.
机译:我们研究了含有碳纳米管和微纤维(玄武岩和碳)注塑成型的聚酰胺6基复合材料的结晶性能。我们发现与微纤维结晶的影响不同性质差示扫描量测试。玄武岩纤维不具有成核作用,而碳纤维做的,一个小的范围。碳纳米管充当成核剂本身,而是与微纤维增强复合材料,这更加增加了结晶。由于纳米管的成核效果,结晶开始在每个复合更高的温度。我们观察到关于混杂复合材料核协同效应。我们分解结晶熔化曲线以确定所述微晶种的特性以及证明了纳米管的存在促进了微晶型的形成。我们发现,纳米管具有双重效果:他们有关于结晶成核作用,它们可以抑制聚酰胺分子彼此相对运动,从而降低结晶倾向。因此,纳米管内容具有关于结晶最佳。这是根据拉伸机械性能。

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