首页> 外文期刊>International Journal of Fracture >LOCAL MINIMA AND GRADIENTS OF STIFFNESS AND CONDUCTIVITY AS INDICATORS OF STRENGTH REDUCTION OF BRITTLE-ELASTIC MATERIALS
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LOCAL MINIMA AND GRADIENTS OF STIFFNESS AND CONDUCTIVITY AS INDICATORS OF STRENGTH REDUCTION OF BRITTLE-ELASTIC MATERIALS

机译:脆性材料强度折减指标的局部最小值和刚度和导电率梯度

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摘要

It is often suggested in literature to use change in the effective elastic properties (stiffness loss) as an indicator of reduction of strength due to defects such as cracks and pores. We argue that the key parameter is not the reduction of the average (over the specimen) stiffness but its local minimal values caused by formation of defect clusters. These defect clusters can be identified by the emergence of spatial gradients of elastic stiffness on a smaller scale. A convenient tool of detecting these gradients is provided by the elasticity-conductivity connection: the electric conductance gradient is usually easier to measure than the stiffness gradient. This concept is supported by computational and experimental results reported in two accompanying papers published in the present issue (by Sevostianov et al and Caiulo and Kachanov).
机译:在文献中经常建议使用有效弹性性能的变化(刚度损失)作为由于诸如裂缝和孔隙之类的缺陷而导致强度降低的指标。我们认为关键参数不是平均(整个试样)刚度的降低,而是由于缺陷簇的形成而导致的局部最小值。这些缺陷簇可以通过较小规模的弹性刚度空间梯度的出现来识别。弹性-电导率连接提供了一种检测这些梯度的便捷工具:通常,电导率梯度比刚度梯度更容易测量。这一概念得到了本期发表的两篇随附论文(由Sevostianov等人和Caiulo和Kachanov撰写)中的计算和实验结果的支持。

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