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Mechanical properties and morphologies of polypropylene/single-filler or hybrid-filler calcium carbonate composites

机译:聚丙烯/单填料或混合填料碳酸钙复合材料的力学性能和形貌

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Three types of polypropylene (PP) with different intrinsic toughness were used to study the, mechanical properties and morphologies of the PP composites filled with single-filler and hybrid-filler of calcium carbonate particles. The calcium carbonate particles used were with average particle sizes of 25 mu m (CC25), and 0.07 mu m (CC0.07), respectively. A hybrid-filler CaCO3 named CC25/CC0.07 was used as a mixture of CC25 and CC0.07 (CC25/CC0.07 weight ratio = 1:1). It was found that the type of PP and the particle size of inorganic filler were the two important factors for the determination of mechanical properties of the composites. And the general mechanical properties of the composites filled with hybrid-filler CaCO3 were better than those of the composites filled with single-filler CaCO3, but the synergistic hybridization effect of the hybrid-filler CaCO3 did not exist. The major toughening mechanism of the PP/CC25 composites was the cavitation of the matrix caused by CC25, and the major toughening mechanism of the PP/CC0.07 composites was the pinning effect introduced by CC0.07. For the PP/CC25/CC0.07 composites, the cavitation of the matrix caused by CC25 and the pinning effect introduced by CC0.07 existed simultaneously. And when the intrinsic toughness of the matrix was large enough, the major factor to toughen PP was the pinning effect introduced by CC0.07, otherwise the major factor to toughen PP was the cavitation of the matrix caused by CC25.
机译:使用三种具有不同固有韧性的聚丙烯(PP)来研究填充碳酸钙颗粒的单填料和杂填料的PP复合材料的力学性能和形貌。所使用的碳酸钙颗粒的平均粒径分别为25μm(CC25)和0.07μm(CC0.07)。使用名为CC25 / CC0.07的混合填料CaCO3作为CC25和CC0.07的混合物(CC25 / CC0.07重量比= 1:1)。发现PP的类型和无机填料的粒径是确定复合材料机械性能的两个重要因素。混合填料CaCO3填充的复合材料的一般力学性能优于单一填料CaCO3填充的复合材料,但不存在杂化填料CaCO3的协同杂化作用。 PP / CC25复合材料的主要增韧机理是CC25引起的基体空化,而PP / CC0.07复合材料的主要增韧机理是CC0.07引入的钉扎效应。对于PP / CC25 / CC0.07复合材料,同时存在CC25引起的基体空化和CC0.07引入的钉扎效应。当基体的固有韧性足够大时,增韧PP的主要因素是CC0.07引入的钉扎效应,否则增韧PP的主要因素是CC25引起的基体空化。

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