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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Effect of morphology on the brittle ductile transition of polymer blends: 5. The role of CaCO3 particle size distribution in high density polyethylene/CaCO3 composites
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Effect of morphology on the brittle ductile transition of polymer blends: 5. The role of CaCO3 particle size distribution in high density polyethylene/CaCO3 composites

机译:形态对聚合物共混物脆性韧性转变的影响:5. CaCO3粒度分布在高密度聚乙烯/ CaCO3复合材料中的作用

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摘要

The effect of particle size distribution on the brittle ductile transition of high density polyethylene (HDPE)/CaCO3 composites is studied. Fu and coworkers reported that the brittle ductile transition curves of HDPE/CaCO3 composites obtained by plotting impact strength against matrix ligament thickness do not give a master curve. In this work, the splitting of brittle ductile transition master curve of the composites as matrix ligament thickness is smaller than its critical value at brittle ductile transition is demonstrated to be attributable to the effect of CaCO3 particle size distribution on matrix ligament thickness. The critical matrix ligament thickness criterion proposed by Wu is thus valid for the brittle ductile transition of HDPE/CaCO3 composites when the effect of particle size distribution on matrix ligament thickness is considered. The relations of critical particle size and of critical particle volume fraction at brittle ductile transition to particle size distribution are analyzed, respectively. A narrow particle size distribution is favourable to the enhancement of the toughness of polymer composites. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 42]
机译:研究了粒径分布对高密度聚乙烯(HDPE)/ CaCO3复合材料脆性韧性转变的影响。 Fu和他的同事报告说,通过绘制冲击强度对基体韧带厚度的曲线图获得的HDPE / CaCO3复合材料的脆性韧性转变曲线未给出主曲线。在这项工作中,当基质韧带厚度小于其在韧性延性转变时的临界值时,复合材料的脆性延性转变主曲线的分裂被证明是由于CaCO3粒径分布对基质韧度厚度的影响。因此,考虑到粒径分布对基体韧带厚度的影响,Wu提出的临界基体韧带厚度准则对于HDPE / CaCO3复合材料的脆性韧性转变是有效的。分别分析了脆性韧性转变时的临界粒度和临界粒度分数与粒度分布的关系。窄的粒度分布有利于增强聚合物复合材料的韧性。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:42]

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