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A new approach for the cylindrical cavity expansion problem incorporating deformation dependent of intermediate principal stress

机译:包含变形与中间主应力有关的圆柱孔扩张问题的新方法

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The problem of cylindrical cavity expansion incorporating deformation dependent of intermediate principal stress in rock or soil mass is investigated in the paper. Assumptions that the initial axial total strain is a non-zero constant and the axial plastic strain is not zero are defined to obtain the numerical solution of strain which incorporates deformation-dependent intermediate principal stress. The numerical solution of plastic strains are achieved by the 3-D plastic potential functions based on the M-C and generalized H-B failure criteria, respectively. The intermediate principal stress is derived with the Hook's law and plastic strains. Solution of limited expansion pressure, stress and strain during cylindrical cavity expanding are given and the corresponding calculation approaches are also presented, which the axial stress and strain are incorporated. Validation of the proposed approach is conducted by the published results.
机译:本文研究了在岩体或土体中圆柱孔扩张与变形有关的问题,该变形取决于中间主应力。假定初始轴向总应变是一个非零常数,而轴向塑性应变不为零,则可以得到包含变形相关中间主应力的应变数值解。塑性应变的数值解分别通过基于M-C和广义H-B破坏准则的3-D塑性势函数来实现。中间主应力由胡克定律和塑性应变导出。给出了圆柱孔扩张过程中有限的膨胀压力,应力和应变的求解方法,并给出了相应的计算方法,并结合了轴向应力和应变。所公布方法对所提方法进行了验证。

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