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Experimental study on thermal and mechanical behavior of polypropylene, talc/polypropylene and polypropylene/clay nanocomposites

机译:聚丙烯,滑石/聚丙烯和聚丙烯/粘土纳米复合材料热力学性能的实验研究

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摘要

In the present paper, thermal and mechanical behavior of neat polypropylene, 40 wt.% talc-filled polypropylene and 5 wt.% silicate-clay filled polypropylene nanocomposite were tested and evaluated. TGA and DSC results show that rilling the talc particle or nano clay into polypropylene can increase the decomposition temperature, but has no effect on glass transition temperature and melt temperature. Tensile results show that 40 wt.% talc particle can increase the modulus, but decrease the yield strength, 5 wt.% nano clay can improve both modulus and yield strength by 90 and 5%, respectively. Fatigue results show that the nanophased polypropylene exhibited the highest fatigue performance, and fatigue strength coefficient, σ_f, of nanophased polypropylene was 13.3% higher than that of the neat propyropylene and 50% higher than that of talc-filled polypropylene. At last, a three-parameter non-linear constitutive equation was developed to describe strain rate depend strain softening behavior of three materials.
机译:在本文中,测试和评估了纯聚丙烯,40 wt。%滑石粉填充的聚丙烯和5 wt。%硅酸盐粘土填充的聚丙烯纳米复合材料的热力学性能。 TGA和DSC结果表明,将滑石颗粒或纳米粘土钻孔到聚丙烯中可以提高分解温度,但对玻璃化转变温度和熔融温度没有影响。拉伸结果表明40wt。%的滑石颗粒可以增加模量,但是降低屈服强度,5wt。%的纳米粘土可以分别将模量和屈服强度提高90%和5%。疲劳结果表明,纳米相聚丙烯表现出最高的疲劳性能,并且纳米相聚丙烯的疲劳强度系数σ_f比纯丙丙烯高13.3%,比滑石填充聚丙烯高50%。最后,建立了一个三参数非线性本构方程来描述三种材料的应变率相关应变软化行为。

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