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Study on Nonlinear Damage Creep Model for Rocks under Cyclic Loading and Unloading

机译:循环载荷下岩石非线性损伤蠕变模型研究

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To determine the nonlinear creep characteristics of rocks under cyclic loading and unloading conditions, a nonlinear Kelvin model and damage viscoplastic model are proposed. The models are connected in series with a linear elastic body to establish a nonlinear damage creep model. The differential damage constitutive equations of the proposed creep model under one-dimensional and three-dimensional stress states are derived based on the creep mechanics and elasticity theory. The damage and unloading creep equations are then obtained based on the superposition principle, and a simple and feasible method for determining the model parameters is determined. Finally, the step cyclic loading and unloading creep test data for lherzolite and limestone are used to verify the rationality and feasibility of the nonlinear damage creep model. The results show that the theoretical creep curves of the nonlinear damage creep model are consistent with the experimental curves which indicates that the proposed model can not only determine the creep properties of lherzolite and limestone under cyclic loading and unloading but also determine the nonlinear characteristics of rocks in the transient and steady-state creep stages and particularly within the accelerating creep stage.
机译:为了确定环状装卸条件下岩石的非线性蠕变特性,非线性Kelvin模型和损伤​​粘塑性模型提出。这些模型被串联连接与线性弹性体建立一个非线性损伤蠕变模型。所提出的蠕变模型的下一维和三维应力状态的差动损害本构方程是基于蠕变力学和弹性理论导出。然后,损坏和卸载蠕变等式基于叠加原理获得,并且确定用于确定所述模型参数的简单且可行的方法。最后,对于橄榄岩,石灰石步骤环状装卸蠕变试验数据被用来验证的非线性损伤蠕变模型的合理性和可行性。该结果表明,该非线性损伤蠕变模型的理论蠕变曲线与实验曲线,该曲线表明,该模型不仅能确定橄榄岩,石灰石的蠕变特性在循环加载和卸载,而且确定岩石的非线性特性一致在瞬态和稳态蠕变阶段和特别是在加速蠕变阶段。

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