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Poly(lactic acid)-thermoplastic poly(ether)urethane composites synergistically reinforced and toughened with short carbon fibers for three-dimensional printing

机译:聚(乳酸) - 热塑性聚(醚)氨基甲酸酯复合材料在短碳纤维中协同增强和增韧,用于三维印刷

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摘要

In this study, we prepared short-carbon-fiber (CF)-reinforced poly(lactic acid) (PLA)-thermoplastic polyurethane (TPU) blends by melt blending. The effects of the initial fiber length and content on the morphologies and thermal, rheological, and mechanical properties of the composites were systematically investigated. We found that the mechanical properties of the composites were almost unaffected by the fiber initial length. However, with increasing fiber content, the stiffness and toughness values of the blends were both enhanced because of the formation of a TPU-mediated CF network. With the incorporation of 20 wt % CFs into the PLA-TPU blends, the tensile strength was increased by 70.7%, the flexural modulus was increased by 184%, and the impact strength was increased by 50.4%. Compared with that of the neat PLA, the impact strength of the CF-reinforced composites increased up to 1.92 times. For the performance in three-dimensional printing, excellent mechanical properties and a good-quality appearance were simultaneously obtained when we printed the composites with a thin layer thickness. Our results provide insight into the relationship among the CFs, phase structure, and performance, as we achieved a good stiffness-toughness balance in the PLA-TPU-CF ternary composites. (c) 2018 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2018, 135, 46483.
机译:在这项研究中,我们通过熔融共混制备了短碳纤维(CF) - 重新胁迫的聚(乳酸)(PLA) - 热塑性聚氨酯(TPU)共混物。初始纤维长度和含量对复合材料的形态和热,流变学和力学性能的影响得到了系统地研究。我们发现复合材料的机械性能几乎不受光纤初始长度的影响。然而,随着纤维含量的增加,由于TPU介导的CF网络形成,共混物的刚度和韧性均增强。通过将20wt%CF掺入PLA-TPU共混物中,拉伸强度升高70.7%,弯曲模量增加184%,冲击强度增加了50.4%。与整洁PLA相比,CF增强复合材料的冲击强度增加高达1.92倍。对于三维印刷的性能,当我们用薄层厚度印刷复合材料时,同时获得优异的机械性能和高质量的外观。我们的结果提供了对CFS,相结构和性能之间的关系的洞察力,因为我们在PLA-TPU-CF三元复合材料中实现了良好的刚度 - 韧性平衡。 (c)2018 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2018,135,46483。

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