首页> 外文期刊>Journal of Macromolecular Science. Physics >The Morphology and Mechanical Properties of Isotactic Polypropylene Injection-Molded Samples with the Presence of beta-Nucleation Agent and Periodical Shear Field
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The Morphology and Mechanical Properties of Isotactic Polypropylene Injection-Molded Samples with the Presence of beta-Nucleation Agent and Periodical Shear Field

机译:存在β-成核剂和周期性剪切场的等规聚丙烯注射成型样品的形貌和力学性能

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摘要

The pressure vibration injection molding (PVIM) method was used to prepare beta-nucleated isotactic polypropylene samples (PVIM beta-iPP samples); a relatively low, periodical shear was imposed on the polymer melt in the mold at the filling and packing stages. The crystal structures and crystal orientation of the PVIM beta-iPP samples were investigated by polarizing light microscopy (PLM), scanning electron microscopy (SEM), and synchrotron two-dimensional wide-angle X-ray diffraction (2D-WAXD). The PLM observations indicated that a cylindrite layer, rather than the transition layer, was found in PVIM beta-iPP samples, which is different from the conventional injection-molded (CIM) samples. In addition, the thickness of the oriented layer of the PVIM samples was obviously greater than that of the CIM samples. The SEM observations demonstrated that a large amount of shish-kebab structures appeared in the shear layer of the PVIM beta-iPP samples; at the same time, numerous beta-spherulites were formed in the core layer. The 2D-WAXD data indicated that orientation homogeneity, to some degree, could be obtained by the periodical shear during PVIM. As a result, the above-mentioned morphology of the PVIM beta-iPP samples leads to potentially useful prominent reinforcement and toughening of the material.
机译:采用压力振动注射成型法(PVIM)制备β-核全同立构聚丙烯样品(PVIMβ-iPP样品)。在填充和填充阶段,对模具中的聚合物熔体施加相对较低的周期性剪切力。通过偏振光显微镜(PLM),扫描电子显微镜(SEM)和同步加速器二维广角X射线衍射(2D-WAXD)研究了PVIMβ-iPP样品的晶体结构和晶体取向。 PLM的观察结果表明,在PVIM beta-iPP样品中发现了一个圆柱状层,而不是过渡层,这与常规的注塑成型(CIM)样品不同。另外,PVIM样品的取向层的厚度明显大于CIM样品的取向层的厚度。 SEM观察表明,PVIM beta-iPP样品的剪切层中出现了大量的烤肉串结构。同时,在核心层中形成了许多β-球晶。 2D-WAXD数据表明,通过PVIM期间的周期性剪切可以在一定程度上获得取向均匀性。结果,PVIM beta-iPP样品的上述形态导致潜在有用的材料显着增强和增韧。

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