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The role of filler volume fraction in the strain-rate dependence of calcium carbonate-reinforced polyethylene

机译:填料体积分数在碳酸钙增强聚乙烯的应变率依赖性中的作用

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摘要

A study of the influence of filler volume fraction on the strain-rate dependence of CaCO3-reinforced polyethylene was carried out. Tensile tests were done at different strain rates ranging from 0.008 to 2.0 min(-1), whereas the CaCO3 amount was varied from 0.10 to 0.40. In the range of strain rates in this study, it was found that increasing strain rate generally increased yield stress and Young's modulus, but decreased yield strain for both unfilled and filled polyethylene. The increase in the filler volume fraction resulted in the decrease in the degree of strain-rate dependence of yield stress and strain. The decrease in strain-rate dependence of the composite changed into strain-rate independence when the filler content was beyond 0.20, and more pronounced at a high strain rate than a low strain rate. (C) 1998 John Wiley & Sons, Inc. [References: 19]
机译:研究了填料体积分数对CaCO3增强聚乙烯的应变率依赖性的影响。拉伸试验是在0.008至2.0 min(-1)的不同应变速率下进行的,而CaCO3的含量从0.10至0.40不等。在本研究的应变率范围内,发现增加应变率通常会增加屈服应力和杨氏模量,但对于未填充和填充的聚乙烯均会降低屈服应变。填料体积分数的增加导致屈服应力和应变的应变率依赖性程度降低。当填料含量超过0.20时,复合材料的应变率依赖性降低变为应变率独立性,并且在高应变率下比低应变率下更加明显。 (C)1998 John Wiley&Sons,Inc. [参考:19]

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