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A micromechanical damage model for rocks and concretes under triaxial compression

A micromechanical damage model for rocks and concretes under triaxial compression
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摘要 Based on analysis of deformation in an infinite isotropic elastic matrix containing an embedded elliptic crack, subject to far field triaxial compressive stress, the energy release rate and a mixed fracture criterion are obtained by using an energy balance approach. The additional compliance tensor induced by a single closed elliptic microcrack in a representative volume element and its in-plane growth is derived. The additional compliance tensor induced by the kinked growth of the elliptic microcrack is also obtained. The effect of the microcracks, randomly distributed both in geometric characteristics and orientations, is analyzed with the Taylor's scheme by introducing an appropriate probability density function. A micromechanical damage model for rocks and concretes under triaxial compression is obtained and experimentally verified. Based on analysis of deformation in an infinite isotropic elastic matrix containing an embedded elliptic crack, subject to far field triaxial compressive stress, the energy release rate and a mixed fracture criterion are obtained by using an energy balance approach. The additional compliance tensor induced by a single closed elliptic microcrack in a representative volume element and its in-plane growth is derived. The additional compliance tensor induced by the kinked growth of the elliptic microcrack is also obtained. The effect of the microcracks, randomly distributed both in geometric characteristics and orientations, is analyzed with the Taylor's scheme by introducing an appropriate probability density function. A micromechanical damage model for rocks and concretes under triaxial compression is obtained and experimentally verified.
出处 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2009年第3期323-333,共11页 应用数学和力学(英文版)
基金 supported by the National Natural Science Foundation of China (Nos. 10872220 and 50725414) Japan Society for the Promotion of Science JSPS (No. L08538)
关键词 elliptic microcrack in-plane growth kinked growth energy release rate micro-macro damage model elliptic microcrack, in-plane growth, kinked growth, energy release rate micro-macro damage model
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参考文献10

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