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Microscopic Mechanical Properties and Injection Molding-Induced Morphology on Polypropylene Rubber Blend

机译:聚丙烯橡胶共混物的微观力学性能和注射成型形态

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摘要

A microdeformation of a simple polymer blend of polypropylene (PP) and ethylene butene rubber (EBR) was investigated in this study. Injection molding-induced morphology close to the surface was analyzed by transmission electron microscope, polarizing optical microscope, and Fourier transform IR spectroscopy. Breakup and coalescence of EBR particles scarcely occurred during the injection process. The EBR particles near the surface were observed as continuous fibers and were gradually changing to the ellipsoidal shape in the depth direction. The morphology in an injection molded specimen was related to depth profiles of mechanical factors, which were microhardness and shear stress measured by a Vickers and a Knoop microindenter and "Surface and Interface Cutting Analysis System," respectively. Crystal structure of PP matrix affected to the rnicrodeformation more strongly than that of EBR phase. The large oriented EBR domains disconnected continuity of the PP matrix and acted as a weak layer in the specimens. Finally, cohesive fracture occurred in the peel test of painted PP/EBR was discussed from a microdeformation point of view.
机译:在这项研究中研究了聚丙烯(PP)和乙烯丁烯橡胶(EBR)的简单聚合物共混物的微形变。通过透射电子显微镜,偏振光学显微镜和傅里叶变换红外光谱分析了注塑成型的表面附近的形貌。在注射过程中几乎不发生EBR颗粒的破裂和聚结。观察到表面附近的EBR颗粒为连续纤维,并且在深度方向上逐渐变为椭圆形。注塑样品中的形貌与机械因素的深度分布有关,这些深度分别是由维氏硬度计和努氏显微压痕仪和“表面和界面切削分析系统”测得的显微硬度和剪切应力。 PP基体的晶体结构比EBR相对电子变形的影响更大。较大的EBR畴断开了PP基质的连续性,并在样品中充当了薄弱层。最后,从微形变的角度讨论了涂漆PP / EBR剥离试验中发生的内聚破裂。

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