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Threshold shear strain for Dynamic Ramberg-Osgood Model in Soils based on thermomechanics

机译:基于热机械的土壤动态Ramberg-Osgood模型的阈值剪切菌株

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The threshold shear strain is a fundamental property of the soil behavior subjected to cyclic loading. Starting from the unloading and reloading hysteretic curves of dynamic Ramberg-Osgood model, construct small-strain dynamic dissipation function and explain small-strain dynamic characteristics by use of the skeleton curve back stress assumption. The plotting results of yield curves in true stress space indicate that there exist two threshold shear strains which are defined as the first threshold shear strain and the second threshold shear strain respectively which represent boundaries between fundamentally different dynamic characteristics of cyclic soil behavior. The yields of soil are controlled by the constant friction coefficient, the variable friction coefficient and dilatancy-related microstructural changes respectively. Both the first threshold shear strain and the second threshold shear strain do depend significantly on the maximum dynamic shear modulus coefficient and exponent. Comparison between the two threshold shear strain values and shear modulus reduction curves obtained on exactly the same soils confirms that the soil behavior is considerably at nonlinear at γ_cc >γ_(t2) the secant shear modulus, Gs, of the four soils studied is between 0.6 and 0.8 of its maximum value.
机译:阈值剪切菌株是对循环载荷进行的土壤行为的基本性质。从卸载和重新加载动态Ramberg-Osgood模型的滞后曲线开始,通过使用骨架曲线背应力假设来构造小型应变动态耗散功能并解释小应变动态特性。真应力空间中产量曲线的绘图结果表明,存在两个阈值剪切菌株,其定义为第一阈值剪切应变和第二阈值剪切应变,其表示循环土壤行为的基本不同的动态特性之间的边界。土壤产量由恒定摩擦系数,可变摩擦系数和膨胀相关的微观结构变化。第一阈值剪切应变和第二阈值剪切应变均均显着取决于最大动态剪切模量系数和指数。在完全相同的土壤上获得的两个阈值剪切应变值和剪切模量减少曲线之间的比较证实,在研究的四个土壤中的γ_CC>γ_(T2)的非线性下,土壤行为在非线性下进行了相当大的情况。其最大值的0.8。

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