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Effects of compositions of filler, binder and porosity on elastic and fracture properties of nuclear graphite

机译:填料,粘结剂和孔隙率的组成对核石墨弹性和断裂性能的影响

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摘要

Physical mechanisms at different length scales have to be taken into account while predicting the overall failure of nuclear graphite structures of advanced gas cooled graphite reactors. In this paper, the effect of composition of meso graphite phases and porosity on the aggregate elastic properties is predicted using the Eshelby homogenisation method. Results indicate an overall decrease in elastic modulus with an increase in porosity. Subsequently, the moduli at different porosity levels are used to predict the critical strain energy release rates for crack propagation of graphite, and fracture behaviour is studied using compact tension and four point bending tests. Compared to flexural strength at zero porosity level, significant reduction in strength of up to 80% at 30% porosity level is observed. Evolution of flexural strength due to porosity is also compared against available experimental values of graphite from UK nuclear plants.
机译:在预测先进气冷式石墨反应堆的核石墨结构的整体失效时,必须考虑不同长度尺度的物理机制。在本文中,使用Eshelby均质化方法预测了介孔石墨相的组成和孔隙率对骨料弹性性能的影响。结果表明,随着孔隙率的增加,弹性模量总体下降。随后,使用不同孔隙度下的模量来预测石墨裂纹扩展的临界应变能释放速率,并使用紧凑张力和四点弯曲试验研究断裂行为。与零孔隙率水平下的抗弯强度相比,在30%孔隙率水平下,强度显着降低了80%。还将孔隙率引起的弯曲强度的变化与英国核电厂提供的石墨的实验值进行了比较。

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  • 作者

    Sun Wei;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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