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Morphology and mechanical behavior of isotactic polypropylene with different stereo-defect distribution in injection molding

机译:注射成型过程中具有不同立体缺陷分布的全同立构聚丙烯的形貌和力学行为

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Large amount of work has been published on the isotacticity-properties relationship of isotactic polypropylene (iPP). However, the stereo-defect distribution dependence of morphology and mechanical properties of iPP injection molding samples is still not clear. In this study, two different isotactic polypropylene (iPP) resins (PP-A and PP-B) with similar average isotacticity but different stereo-defect distribution were selected to investigate the morphology evolution and mechanical properties (tensile and notching) of their injection molding samples using differential scanning calorimetry (DSC), dynamic mechanical analysis (DMA), 2D wide angle X-ray diffraction (2D-WAXD), and scanning electron microscope (SEM). The results of DMA showed that the molecular movement ability of PP-A (with less uniform distribution of stereo-defect) was stronger than that of PP-B, meanwhile the analysis of DSC and SEM suggested that after injection molding, smaller spherullites, and crystals with higher perfection had formed in the specimens of PP-A. The resulting of tensile properties of PP-A were found to be better than that of PP-B. The results of morphology evolution by SEM observation and 2D-WAXD showed that PP-A is more likely to occur interspherulite deformation and can disperse the tensile stress more efficiently, and therefore, its crystal structure can withstand a greater force when tensile stress is applied. On the other hand, PP-B has larger spherulites and boundaries, and low perfection of lamellaes, and the intraspherulte deformation tend to take place. It is easier for the crystal of PP-B to be broken up and reoriented along the tensile direction.
机译:关于全同立构聚丙烯(iPP)的全同立构规整度-性能关系已发表了大量工作。但是,iPP注射成型样品的形态和机械性能的立体缺陷分布依赖性仍然不清楚。在这项研究中,选择两种不同的全同立构聚丙烯(iPP)树脂(PP-A和PP-B),它们具有相同的平均全同立构规整度和不同的立体缺陷分布,以研究其注塑成型的形态演变和力学性能(拉伸和缺口)样品使用差示扫描量热法(DSC),动态力学分析(DMA),二维广角X射线衍射(2D-WAXD)和扫描电子显微镜(SEM)。 DMA的结果表明,PP-A(立体缺陷的均匀分布较不均匀)的分子运动能力强于PP-B,而DSC和SEM的分析表明,注射成型后,球晶较小,且PP-A样品中形成了较高完美度的晶体。发现PP-A的拉伸性能比PP-B更好。通过SEM观察和2D-WAXD进行的形貌演变结果表明,PP-A更有可能发生球晶变形,并且可以更有效地分散拉伸应力,因此,当施加拉伸应力时,其晶体结构可以承受更大的力。另一方面,PP-B具有较大的球晶和边界,并且薄片的完美度较低,并且倾向于发生球内变形。 PP-B的晶体更容易破裂并沿拉伸方向重新定向。

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