Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5018456 | Mechanics of Materials | 2017 | 31 Pages |
Abstract
This paper presents a M-Integral based failure description of the elasto-plastic materials containing multiple defects, such as voids, subjected to biaxial loading conditions. A non-dimensional Î -parameter is defined, and a novel failure criterion based on the Î -parameter is proposed to assess the multi-defected media. Analytical, numerical and experimental investigations are conducted to evaluate the Î -parameter for different types of problems in order to elucidate the Î -parameter based failure criterion. The explicit definition of the Î -parameter is first derived from the case of elastic inclusion problems in plane elasticity being subject to biaxial loading conditions. And then the Î -parameter is regarded as a damage driving force, and its critical value indicates the occurrence of failure of elasto-plastic materials with defects under biaxial loading. This Î -parameter based failure criterion is further validated through a series of numerically elasto-plastic analyses of cruciform biaxial specimens containing multiple and randomly distributed local defects. In addition, an experimental procedure on evaluating the Î -parameter for elasto-plastic materials is proposed by using the digital image correlation.
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Authors
Li Q., Guo Y.L., Hou J.L., Zhu W.J.,