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Microscopic study on stress-strain relation of granular materials 被引量:2

Microscopic study on stress-strain relation of granular materials
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摘要 A biaxial shearing test on granular materials is numerically simulated by distinct element method (DEM). The evolution of the microstructures of granular materials during isotropic compression and shearing is investigated, on which a yield function is derived. The new yield function has a similar form as the one used in the modified Cam-clay model and explains the yield characteristics of granular materials under the isotropic compression and shear process through the change of the contact distribution N(θ) defining the contacts at particle contact angle θ. A biaxial shearing test on granular materials is numerically simulated by distinct element method (DEM). The evolution of the microstructures of granular materials during isotropic compression and shearing is investigated, on which a yield function is derived. The new yield function has a similar form as the one used in the modified Cam-clay model and explains the yield characteristics of granular materials under the isotropic compression and shear process through the change of the contact distribution N(θ) defining the contacts at particle contact angle θ.
出处 《Chinese Science Bulletin》 SCIE EI CAS 2009年第23期4349-4357,共9页
基金 Supported by the National Natural Science Foundation of China (Grant Nos. 10672050, 10872016)
关键词 微观结构 应力应变关系 颗粒物质 颗粒材料 各向同性 剪切过程 离散单元法 产量性状 DEM, granular materials, yield surface, microstructure
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