首页> 外文期刊>Journal of Materials Science >Morphology-tensile behavior relationship in injection molded poly(ethylene terephthalate)/polyethylene and polycarbonate/polyethylene blends (II) - Part II - Tensile behavior
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Morphology-tensile behavior relationship in injection molded poly(ethylene terephthalate)/polyethylene and polycarbonate/polyethylene blends (II) - Part II - Tensile behavior

机译:注塑聚对苯二甲酸乙二醇酯/聚乙烯和聚碳酸酯/聚乙烯共混物的形貌-拉伸行为关系(II)-第二部分-拉伸行为

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The tensile behavior of injection molded poly( ethylene terephthalate) (PET)/polyethylene (PE) and polycarbonate (PC)/PE blends was investigated. For the same blend, due to the difference in the elongated dispersed particle concentration, the specimens molded at higher injection speed had slightly higher tensile strength and modulus than those molded at lower speed. Moreover, the reinforcement effect of PC to PE matrix was more noticeable than PET to PE. For the stress-strain behavior, while the PET/PE blend behaved like a common injection-molded immiscible blend the PC/PE blend unusually underwent twice yielding regardless of the cross head speed. For the PET/PE blend, obvious debonding between the dispersed PET particles and the matrix PE occurred upon elongation, resulting in large grooves and voids behind the particles. The PET particles experienced slight plastic deformation from spheres to ellipsoids. The stress whitening first appeared in the necking zone then extended along cold drawing zone. For the PC/PE blend, the PC particles in the core layer experienced considerable plastic deformation throughout the tensile test. Consequently, most of PC particles in the fractured specimen were deformed into fibers. Owing to comparatively high amount of injection-induced fibers that distributed or transferred the external stress, the specimen of PC/PE blend first deformed evenly in the entire tested zone, characterized by stress whitening in the entire specimen. Then after the first yielding, the stress decreased slowly while the elongation continued. When the elongation reached a certain point, the fibers in the sub-skin layer could no longer endure the external stress, and accordingly the second yield took place. Additionally, the fibrillation of the spherical PC particles in the core layer appeared right after the second yielding point. (C) 2004 Kluwer Academic Publishers. [References: 31]
机译:研究了注塑聚对苯二甲酸乙二醇酯(PET)/聚乙烯(PE)和聚碳酸酯(PC)/ PE共混物的拉伸性能。对于相同的共混物,由于拉长的分散颗粒浓度的差异,在较高注射速度下模塑的样品的拉伸强度和模量比在较低速度下模塑的样品的拉伸强度和模量略高。而且,PC对PE基体的增强作用比PET对PE更明显。对于应力应变行为,尽管PET / PE共混物的行为像普通的注塑不溶混性共混物,但无论十字头速度如何,PC / PE共混物都会经历两次屈服。对于PET / PE共混物,伸长后在分散的PET颗粒和基体PE之间发生明显的脱粘,导致颗粒后面的大的凹槽和空隙。从球形到椭圆形,PET颗粒经历了轻微的塑性变形。应力变白首先出现在颈缩区,然后沿着冷拔区延伸。对于PC / PE共混物,在整个拉伸试验中,芯层中的PC颗粒经历了相当大的塑性变形。因此,断裂试样中的大多数PC颗粒都变形为纤维。由于分布或传递外部应力的注射诱导纤维的数量较高,因此PC / PE共混物的样品首先在整个测试区域内均匀变形,其特征在于整个样品中的应力变白。然后在第一次屈服后,应力缓慢下降,而伸长率继续。当伸长率达到某一点时,皮下层中的纤维不再能承受外应力,因此发生了第二次屈服。另外,在第二屈服点之后立即出现芯层中的球形PC颗粒的原纤化。 (C)2004 Kluwer学术出版社。 [参考:31]

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