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Impact-induced fracture mechanisms of immiscible PC/ABS (50/50) blends

机译:冲击诱导的不混溶PC / ABS的断裂机制(50/50)混合

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This paper presents a study on fracture mechanisms of polycarbonate (PC)/ acrylonitrile-butadiene-styrene (ABS) (50/50) blends with different ABS types under a drop weight impact test (DWIT) using a circular sheet specimen. Formation of secondary crack indicated by a stress-whitening layer on the mid-plane of scattered specimens and secondary surface of fracture perpendicular to primary fracture surface were captured under scanning electron microscope (SEM). Although the both blends finally failed in brittle modes, SEM observation showed that their secondary fracture mechanisms were completely different. Observation through the thickness of the etched PC/ABS specimen samples using SEM also clearly showed that PC and ABS were immiscible. The immiscibility between PC and ABS was indicated by presence of their layer structures through the thickness of the blends. It was revealed that layer of ABS structure was influenced by size of rubber particle and this latter parameter then affected micro structure and fracture mechanisms of the blends. Impact-induced fracture mechanisms of the blends due to such microstructures are discussed in this paper. It was also pointed out that the secondary cracking was likely caused by interface delamination between PC and ABS layers in the core due to transverse shear stress generated during the impact test.
机译:本文介绍了使用圆形片样品在下降重量冲击试验(DWIT)下用不同ABS类型的聚碳酸酯(PC)/丙烯腈 - 丁二烯 - 苯乙烯(50/50)的裂缝机制的研究。在扫描电子显微镜(SEM)下捕获由散射试样的中平面和垂直于初级断裂表面的断裂的次级表面上的应力 - 白化层的次要裂缝。虽然两个共混物最终以脆性模式失败,但SEM观察结果表明它们的二级断裂机制是完全不同的。使用SEM的蚀刻PC / ABS样本样品的厚度观察也清楚地显示了PC和ABS不混溶。通过它们的层结构通过共混物的厚度表示PC和ABS之间的不混溶。揭示了ABS结构层受橡胶颗粒的尺寸的影响,后者参数受到混合物的微结构和断裂机制。本文讨论了由于这种微观结构引起的混合物的冲击诱导的断裂机制。还指出,由于在冲击试验期间产生的横向剪切应力,通过PC和ABS层之间的接口分层可能引起二次开裂。

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