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Mechanical properties and morphology of polypropylene-calcium carbonate nanocomposites prepared by dynamic packing injection molding

机译:动态填充注射成型聚丙烯-碳酸钙纳米复合材料的力学性能和形貌

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摘要

In this article, dynamic packing injection molding (DPIM) technology was used to prepare injection samples of Polypropylene-Calcium Carbonate (PP/CaCO _3) nanocomposites. Through DPIM, the mechanical properties of PPano-CaCO _3 samples were improved significantly. Compared with conventional injection molding (CIM), the enhancement of the tensile strength and impact strength of the samples molded by DPIM was 39 and 144%, respectively. In addition, the tensile strength and impact strength of the PPano-CaCO _3 composites molded by DPIM increase by 21 and 514%, respectively compared with those of pure PP through CIM. According to the SEM, WAXD, DSC measurement, it could be found that a much better dispersion of nano-CaCO _3 in samples was achieved by DPIM. Moreover, γcrystal is found in the shear layer of the DPIM samples. The crystallinity of PP matrix in DPIM sample increases by 22.76% compared with that of conventional sample. The improvement of mechanical properties of PPano-CaCO _3 composites prepared by DPIM attributes to the even distribution of nano-CaCO _3 particles and the morphology change of PP matrix under the influence of dynamic shear stress.
机译:在本文中,动态填充注射成型(DPIM)技术用于制备聚丙烯碳酸钙(PP / CaCO _3)纳米复合材料的注射样品。通过DPIM,PP / nano-CaCO_3样品的机械性能得到了显着改善。与传统的注塑成型(CIM)相比,DPIM成型的样品的拉伸强度和冲击强度分别提高了39%和144%。此外,与通过CIM的纯PP相比,用DPIM模塑的PP /纳米CaCO 3复合材料的拉伸强度和冲击强度分别提高了21%和514%。根据SEM,WAXD,DSC测量,可以发现DPIM实现了样品中纳米CaCO_3更好的分散。此外,在DPIM样品的剪切层中发现了γ晶体。与常规样品相比,DPIM样品中PP基体的结晶度提高了22.76%。 DPIM制得的PP /纳米CaCO_3复合材料的力学性能的提高归因于纳米CaCO_3颗粒的均匀分布和动态剪切应力影响下PP基体的形貌变化。

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