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Polypropylene/thermoplastic polyurethane blends: mechanical characterizations, recyclability and sustainable development of thermoplastic materials

机译:聚丙烯/热塑性聚氨酯共混物:热塑性材料的机械特性,可再生性和可持续发展

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摘要

Nowadays, various plastic products plays an important and indispensable role in our daily life. However, plastic cannot be essentially decomposed in the nature and thus led to inevitable damage to the environment. The study aims to recycle thermoplastic materials to attain the purposes of recycling, reuse, and sustainability. Polypropylene (PP) and toughening thermoplastic polyurethane (TTPU) are melt-blended for two cycles, which a small amount of compatibilizer (i.e.polypropylene grafted maleic anhydride, PP-g-MA) is added during the process. The morphology and mechanical properties of the PP/MA/TTPU blends are then measured and investigated. SEM images show that without the compatibilizer, TTPU particles demonstrate a dispersive phase in PP matrix. The presence of compatilizer improves the incompatible situation between TTPU and PP. The impact test results have proven that the incorporation of 20?wt% of TTPU and 5?wt% of compatibilizer helps to improve the interphase problem, thereby yielding the impact strength of 63.01?J/g. The tensile strength test results show that the presence of PP compensates for the insufficient rigidity and high production cost of TTPU. The flexural strength test results show that PP with high stiffness synergizes to the softness and flexural performance of TTPU. It is expected that using the secondary recovery process obtains the added value and sustainable use of plastic products, which is helpful to the sustainable development of the earth.
机译:如今,各种塑料制品在日常生活中起着重要而不可或缺的作用。然而,塑料不能在本质上基本上分解,从而导致对环境的不可避免的损害。该研究旨在循环热塑性材料以实现回收,重用和可持续性的目的。聚丙烯(PP)和增韧热塑性聚氨酯(TTPU)被熔融混合两次循环,该循环在该过程中加入少量的增容剂(即,聚丙烯接枝的马来酸酐,PP-G-MA)。然后测量并研究PP / MA / TTPU共混物的形态和力学性能。 SEM图像表明,没有增容剂,TTPU颗粒在PP矩阵中表现出分散相。康复剂的存在改善了TTPU和PP之间的不相容状态。影响试验结果证明,掺入20?wt%的TTPU和5?Wt%的增容剂有助于改善差异问题,从而产生63.01的冲击强度为63.01〜J / g。拉伸强度试验结果表明,PP的存在补偿了TTPU的不足和高生产成本。弯曲强度测试结果表明,具有高刚度的PP协同为TTPU的柔软性和抗弯性能。预计使用二级恢复过程可以获得塑料制品的附加值和可持续利用,这有助于地球的可持续发展。

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