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Elasto-plastic analysis of a circular opening considering material dilatancy and elasto-plastic coupling effects

机译:考虑材料膨胀和弹塑性耦合效应的圆形开口弹塑性分析

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摘要

The deformation and fracture of a surrounding rock mass are important bases of underground engineering stability evaluation and bolting design. In this paper, an improved elastic-perfectly plastic-brittle model is employed to analyze the mechanical property weakening behavior of surrounding rock,including the elastic zone, plastic zone, and fracture zone. Examining a circular opening under hydrostatic pressure, material dilatancy, and elasto-plastic coupling were considered for an analytical study of stress and displacement of the surrounding rock. The influences of the supporting force, dilatancy, and elasto-plastic coupling were analyzed for a deep coal mine tunnel. It is shown that the supporting force cannot significantly change the state of the stress distribution, but it has an outstanding influence on the displacement of the surrounding rock. Dilatancy and elasto-plastic coupling can both cause a rapid increase of fractured zone deformation of the surrounding rock. Additionally, the majority of deformation within the surrounding rock was derived from expansion-related deformation of the fractured zone in a residual-strength state.
机译:围岩变形破裂是地下工程稳定性评价和锚杆支护设计的重要依据。本文采用改进的弹塑性-理想塑性-脆性模型,分析了围岩的力学性质弱化行为,包括弹性区、塑性区和破裂区。为了对围岩的应力和位移进行分析研究,考虑了静水压力、材料剪胀和弹塑性耦合作用下的圆形开口检查。分析了深部煤矿巷道支护力、剪胀和弹塑性耦合的影响。结果表明,支护力不能显著改变围岩的应力分布状态,但对围岩位移有显著影响。扩容和弹塑性耦合都会导致围岩破碎带变形迅速增加。此外,围岩内的大部分变形来自残余强度状态下断裂带的膨胀相关变形。

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