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STUDY ON LOCALIZATION AND BIFURCATION OF GEOMATER1ALS WITH DAMAGE EFFECT

机译:具有损伤效应的土工材料的局部化和分叉化研究

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To obtain the damage effect in the process of elasto-plasticity deformation of geomaterials, the isotropic damage loading-unloading equation and damage variable are introduced to the non-continuous bifurcation. The critical hardening modulus, localized orientation angle with consideration of stiffness degradation, and dilatancy are set up. The relationship of the localized orientation angle and the maximal hardening modulus depends on the degree of damage, and the initial Poisson's ratio of rock is explored. Comparative analyses are conducted to study the bifurcation of uniaxial tension-compression samples under the conditions of plane stress and plane strain. The variation of the orientation angle of localization and the maximum hardening modulus depends on the initial Poisson's ratio and the degree of damage, and the sum of the orientation angle under tension and compression conditions is 90°. Also, there are plane stress and plane strain cases of the maximum hardening modulus which is independent of the uniaxial compression and tension.
机译:为了获得岩土材料弹塑性变形过程中的损伤效果,将非均匀分叉的各向同性损伤加载-卸载方程和损伤变量引入到非连续分叉中。建立了临界硬化模量,考虑了刚度降低的局部取向角和膨胀率。局部取向角与最大硬化模量之间的关系取决于损伤程度,并探讨了岩石的初始泊松比。进行了比较分析,以研究在平面应力和平面应变条件下单轴拉伸压缩样品的分叉。局部取向角和最大硬化模量的变化取决于初始泊松比和损伤程度,在拉伸和压缩条件下取向角的总和为90°。此外,还有最大硬化模量的平面应力和平面应变的情况,而这种情况与单轴压缩和拉伸无关。

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