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The influence of loading rate and concurrent microstructural evolution in micrometric talc- and wollastonite-reinforced high isotactic polypropylene composites

机译:滑石和硅灰石增强的高全同立构聚丙烯复合材料的加载速率和同时发生的微观结构演变的影响

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The paper describes the response of neat high isotactic polypropylene (iPP) and talc (iPP-T) and wollastonite (iPP-W)-reinforced polypropylenes to tensile loading rate and the evolution of microstructure during plastic deformation. Unreinforced and reinforced polypropylene materials exhibit significant sensitivity to tensile loading rate (strain rate) and the change in strain rate sensitivity index parameter with strain signifies a change in the micromechanism of plastic deformation and mode of fracture. Plastic deformation in neat high isotactic polypropylene is characterized by craze-tearing and brittle mode of fracture, while both talc- and wollastonite-reinforced polypropylenes are characterized by wedge, ridge-tearing, fibrillation, and brittle fracture. The brittle fracture is associated with debonding of mineral particles from the polypropylene matrix. However, yield stress of all the three materials exhibit similar dependence to loading rate and similar activation volume that suggests similarity in the onset of plastic deformation process.
机译:本文描述了纯高等规聚丙烯(iPP)和滑石(iPP-T)和硅灰石(iPP-W)增强的聚丙烯对拉伸载荷速率的响应以及塑性变形过程中微观结构的演变。未增强和增强聚丙烯材料对拉伸载荷率(应变率)表现出显着的敏感性,并且应变率敏感性指数参数随应变的变化表示塑性变形和断裂模式的微观机制发生了变化。纯高等规聚丙烯的塑性变形以开裂和脆性断裂为特征,而滑石和硅灰石增强的聚丙烯均以楔形,撕裂,原纤化和脆性断裂为特征。脆性断裂与矿物颗粒从聚丙烯基体上脱粘有关。但是,所有这三种材料的屈服应力均显示出对加载速率的相似依赖性和相似的活化体积,这表明塑性变形过程的开始相似。

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