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首页> 外文期刊>Polymer engineering and science >Thermomechanical Properties of Virgin and Recycled Polypropylene Impact Copolymer/CaCO3 Nanocomposites
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Thermomechanical Properties of Virgin and Recycled Polypropylene Impact Copolymer/CaCO3 Nanocomposites

机译:原始和再生聚丙烯抗冲共聚物/ CaCO3纳米复合材料的热力学性能

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摘要

The effect of successive injection moldings on the thermal, rheological, and mechanical properties of a polypropylene impact copolymer (PP) was investigated. The crystal content decreased as the molecular weight decreased due to chain scission with repeated injection molding. The Young modulus and the yield stress remained constant, despite a drop in the strain to break. Virgin and recycled PP matrix were filled with nanosized calcium carbonate (CaCO3) particles. The effect of morphology on the thermal and mechanical properties of nanocomposites of virgin and recycled PP filled with nanosized CaCO3 particles was also studied. The mechanical properties of the nanocomposites were strongly influenced by the intrinsic toughness of the matrix and the concentration and dispersion of the filler. The yield strength and strain of virgin PP decreased gradually, while its Young's modulus increased slightly with increasing CaCO3 loading. These phenomena were less pronounced for the recycled matrix. Incorporation of nanoparticles to virgin matrix produced an increase in tensile stiffness and ductility, when good dispersion of the filler was achieved. However, the impact strength dropped dramatically for high filler contents. A significant increase in impact strength was observed for the recycled
机译:研究了连续注射成型对聚丙烯抗冲共聚物(PP)的热,流变和机械性能的影响。结晶含量随着分子量的降低而降低,这是由于重复注射成型引起的断链所致。尽管断裂应变下降,但杨氏模量和屈服应力保持恒定。原始和回收的PP基体中填充了纳米碳酸钙(CaCO3)颗粒。还研究了形态对填充了纳米CaCO3颗粒的原生和再生PP纳米复合材料的热力学性能的影响。纳米复合材料的机械性能受到基质固有的韧性以及填料的浓度和分散性的强烈影响。原始PP的屈服强度和应变逐渐降低,而其杨氏模量随CaCO3含量的增加而略有增加。对于再生基质,这些现象不太明显。当实现填料的良好分散时,将纳米颗粒掺入原始基质中可提高拉伸刚度和延展性。但是,填料含量高时,冲击强度急剧下降。回收后的冲击强度显着提高

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