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Synergistic toughening effect of SBS and HDPE on the fracture of the PS/HDPE/SBS blends

机译:SBS和HDPE对PS / HDPE / SBS共混物断裂的协同增韧作用

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摘要

The microstructure and mechanical properties of the blends consisting of polystyrene and high-density polyethylene and/or styrene-butadiene-styrene were studied. The HDPE forms long fibers in both the PS/HDPE and PS/HDPE/SBS blends. The binary exhibit declined mechanical properties at all compositions. Mechanism study suggests that craze fromation in PS followed by unstable crack propagation along the weak PS-HDPE interface is the major failure mechanism for the low impact strength of the binary blends. In the ternary blends, the SBS forms a thin layer covering the HDPE fibers, which improves the PS-HDPE interfacial strnegth and mechanical properties of the blends. teh debonding-cavitation at the PS-HDPE interface releases the plastic constraint and enables shear deformation at the crck tip. Moreover, the HDPE-fiber-pullout promotes shear deformation of PS. Both mechanisms greatly improve the toughness of teh ternary blends.
机译:研究了由聚苯乙烯和高密度聚乙烯和/或苯乙烯-丁二烯-苯乙烯组成的共混物的微观结构和力学性能。 HDPE在PS / HDPE和PS / HDPE / SBS共混物中均形成长纤维。在所有组成下,该二元均表现出降低的机械性能。机理研究表明,PS中出现裂纹,然后沿弱PS-HDPE界面不稳定地扩展裂纹,是造成二元共混物冲击强度低的主要破坏机理。在三元共混物中,SBS形成覆盖HDPE纤维的薄层,从而改善了PS-HDPE的界面强度和共混物的机械性能。 PS-HDPE界面处的脱胶空化释放了塑性约束,并在裂缝尖端产生了剪切变形。此外,HDPE纤维拉出促进PS的剪切变形。两种机理都极大地提高了三元共混物的韧性。

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