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Comparison of effect of surface-modified micro-ano-mineral fillers filling in the polypropylene matrix

机译:比较表面改性的微/纳米矿物填料在聚丙烯基体中的填充效果

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摘要

Effect of unmodified and surface-modified micro-ano-calcium carbonate particles on the mechanical properties, crystallization behavior, and thermal properties of polypropylene (PP)/microscale calcium carbonate (micro-CaCO3 (mCC)) and PPanoscale calcium carbonate (nano-CaCO3 (nCC)) composites has been comparatively investigated via melt mixing. Mechanical tests indicated that PPCC composite with the addition of 5-10 wt% nCC is higher than that of virgin PP and even higher than that of PP/mCC composite with the addition of 5-15 wt% mCC. In addition, incorporation of titanate-coupling agent (isopropyl tri-(dioctylpyrophosphato) titanate (JN114)) further increased the mechanical properties of the composites. This improvement in the mechanical properties was evidenced by scanning electron microscopy. The addition of small amounts of JN 114 into PP/mCC and PPCC induces the great change in crystallization behavior of PP matrix. Improved distribution of CaCO3, enhanced crystallization temperature, largely increased the degree of crystallinity, X_c (%), and the heat deformation temperature are achieved for PP/modified-nCC samples.
机译:未改性和表面改性的微/纳米碳酸钙颗粒对聚丙烯(PP)/微尺度碳酸钙(micro-CaCO3(mCC))和PP /纳米尺度碳酸钙的机械性能,结晶行为和热性能的影响纳米CaCO3(nCC))复合材料已通过熔融混合进行了比较研究。力学测试表明,添加5-10 wt%nCC的PP / nCC复合材料比原始PP高,甚至高于添加5-15 wt%mCC的PP / mCC复合材料。此外,掺入钛酸酯偶联剂(异丙基三(二辛基焦磷酸)钛酸酯(JN114))进一步提高了复合材料的机械性能。通过扫描电子显微镜证明了机械性能的改善。在PP / mCC和PP / nCC中添加少量JN 114会引起PP基体结晶行为的巨大变化。对于PP /改性nCC样品,改善了CaCO3的分布,提高了结晶温度,大大提高了结晶度X_c(%)和热变形温度。

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