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Morphology, mechanical, rheological, and thermal properties study on the PTT/ABS/SCF composites

机译:PTT / ABS / SCF复合材料的形貌,机械,流变和热性能研究

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摘要

In order to improve the mechanical properties of the poly(trimethylene terephthalate) (PTT), both maleinized acrylonitrile–butadiene–styrene (ABS) and short carbon fiber (SCF) were melt-blended with PTT to prepare the composites and their morphology and properties were investigated in detail. When ABS content is fixed at 5 wt.% in composites, SCF can significantly improve the tensile and flexural strength as well as the impact strength of the matrix. The SCF has good interface adherence with the matrix. At glassy state, the storage modulus increases much with increasing SCF content. At rubbery state, the composites have larger cold-crystallization rate. At molten state, SCF first serves as lubricants and then as viscosity reinforcing agent for the matrix with increasing SCF. The composites melt exhibits increasing elastic behaviors with SCF. The composites have larger crystallization rate, but this accelerating effect decreases with excessive SCF content. The crystals formed in different composites are quite different in size or perfection.
机译:为了提高聚对苯二甲酸丙二醇酯(PTT)的机械性能,将马来酸化的丙烯腈-丁二烯-苯乙烯(ABS)和短碳纤维(SCF)与PTT熔融共混,以制备复合材料及其形态和性能被详细调查。当复合物中的ABS含量固定为5 wt。%时,SCF可以显着提高基体的拉伸和弯曲强度以及冲击强度。 SCF与矩阵具有良好的接口依从性。在玻璃态下,储能模量随着SCF含量的增加而大大增加。在橡胶态下,复合材料具有较大的冷结晶速率。在熔融状态下,随着SCF的增加,SCF首先充当润滑剂,然后成为基质的增粘剂。复合材料熔体的SCF表现出增加的弹性行为。该复合材料具有较大的结晶速率,但是随着SCF含量的增加,这种加速作用会降低。在不同的复合物中形成的晶体在尺寸或完美度上都大不相同。

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