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Study on the Anisotropy of Fractured Rock Mass under Unloading Effect

机译:卸荷作用下裂隙岩体的各向异性研究

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Mechanical property of cracks in the excavation process under unloading effect is one of the main issues of unloading rock mass mechanics.In this paper,finite element was used to simulate the anisotropy of fracture and unloading rock mass;all the designed size of specimens is 3mx3m,and the angles between cracks and vertical directions are designed to 0°,8,o36o,52o,82o,90°.The paper also analyzed the calculated results,and obtained the variation law of mechanical properties of the same scale fractured rock when changing with the direction of fracture:first,the orientation of structural plane has a direct impact on the characteristic of unloading when unloading;second,the tensile strength when unloading to damage decreases with the angle of the structural plane;third,the tensile deformation modulus of rock mass decreases significantly with the angle of structural plane,and the compression deformation modulus decreases with it when beginning,but increases with it when the angle of structural plane increases to a certain extent;fourth,the anisotropy of unloading rock mass not only exists in intensity,but also in deformation.
机译:卸荷作用下开挖过程中裂缝的力学特性是卸荷岩体力学的主要问题之一。本文采用有限元模拟裂缝和卸荷岩体的各向异性;试件的设计尺寸均为3mx3m。并将裂纹与垂直方向的夹角设计为0°,8°,o36o,52o,82o,90°。本文还对计算结果进行了分析,得出了同尺寸裂隙岩在变化时的力学性能变化规律。断裂方向:第一,结构平面的方向对卸荷时的卸荷特性有直接影响;第二,卸荷破坏时的抗拉强度随结构平面的角度而减小;第三,结构的拉伸变形模量岩体质量随结构平面的角度而显着减小,压缩变形模量在开始时随其减小,而在开始时随其增大。结构面的倾角在一定程度上增加了;第四,卸荷岩体的各向异性不仅存在于强度上,而且还存在于变形上。

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