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Effects of Organic Montmorillonite (OMMT) and Pre-Orientation on Property of Poly(l-lactic acid) (PLLA)/Ethylene Propylene Diene Monomer (EPDM) Blends

机译:有机蒙脱土(OMMT)和预取向对聚(L-乳酸)(PLLA)/乙烯丙烯二烯单体(EPDM)共混物性能的影响

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摘要

Poly( -lactic acid)/ethylene propylene diene monomer/organic montmorillonite (PLLA/EPDM/OMMT) samples were melt-compounded and then processed into sheets via two routes, namely, compression-molding and calendering. Tensile performance, morphology, and thermal property of the samples were investigated. Tensile test showed that the incorporation of OMMT resulted in significant enhancement in the tensile ductility of the PLLA/EPDM samples. SEM observation revealed that EPDM domain size decreased largely with increasing OMMT loading, indicating the compatibility of OMMT with PLLA/EPDM blends. Moreover, the elongation at break, tensile yield strength, and modulus of the calendered samples were found to be much higher than those of the compression-molded samples. It can be attributed to the pre-oriented rigid amorphous fraction of PLLA matrix and pre-stretched EPDM phases in the calendered samples produced by the stretching/shearing effect of calendering. Compared to the spherical/ellipsoidal EPDM particles in the compression-molded samples, these stretched EPDM phases with higher aspect ratio in the calendered samples can be more effective to initiate craze, and terminate the craze growing to a crack along transversal direction. Therefore, the calendered samples show a better tensile ductility than the compression-molded ones. Moreover, annealing was carried out to increase the crystallinity of the samples. Tensile performance, morphology, and thermal property of the annealed samples were also systematically investigated.
机译:将聚(-乳酸)/乙烯丙烯二烯单体/有机蒙脱石(PLLA / EPDM / OMMT)样品熔融复合,然后通过压缩成型和压延两种方法加工成片。研究了样品的拉伸性能,形态和热性能。拉伸测试表明,OMMT的引入显着提高了PLLA / EPDM样品的拉伸延展性。 SEM观察表明,随着OMMT负载的增加,EPDM结构域的尺寸大大减小,表明OMMT与PLLA / EPDM共混物的相容性。而且,发现压延样品的断裂伸长率,拉伸屈服强度和模量比压模样品的断裂伸长率,拉伸屈服强度和模量高得多。可以归因于压延的拉伸/剪切效应产生的压延样品中的PLLA基质的预取向刚性非晶态部分和预拉伸的EPDM相。与压缩成型样品中的球形/椭圆形EPDM颗粒相比,这些压延样品中具有更高长宽比的拉伸EPDM相可以更有效地引发裂纹,并终止裂纹沿横向生长成裂纹。因此,压延样品显示出比压模样品更好的拉伸延展性。此外,进行退火以增加样品的结晶度。还系统地研究了退火样品的拉伸性能,形态和热性能。

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