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BEHAVIOR OF A FLUID FILLED SUBSURFACE CRACK UNDER MOVING HERTZIAN LOADING

机译:移动赫兹载荷作用下充填的地下裂缝的行为

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Cracking of a fluid filled subsurface crack is studied by the distributed dislocation technique within the framework of two-dimensional linear elastic fracture mechanics. The opening volume of the horizontal Griffith crack is fully occupied by an incompressible fluid. In the presence of friction, a moving Hertzian line contact load is applied at the surface of the half plane. The induced hydrostatic fluid pressure inside the crack is calculated through an iterative scheme with the restriction that due to the fluid incompressibility there is no change of the crack-opening volume (COV). The stress intensity factors at the tips of the fluid filled crack are analyzed and the effective quadrature formulae are given for the evaluation of the COV. A hypothesis is introduced that the crack propagation is initiated when the elastic strain energy release rate reaches the critical fracture toughness and is arrested when the energy release rate is below the arrest toughness. Based on the energy criterion, predictions will be attempted for determining the load position where the crack propagation/kink commences as well as the growth increment of the branch crack before it is arrested. A step-by-step crack path is constructed for various loading conditions.
机译:在二维线性弹性断裂力学的框架内,通过分布错位技术研究了充液地下裂纹的裂纹。水平格里菲斯裂缝的开口体积被不可压缩的流体完全占据。在存在摩擦的情况下,移动的赫兹线接触载荷施加在半平面的表面。裂纹内部的静水流体压力是通过迭代方案计算的,其限制条件是由于流体的不可压缩性,裂纹开口体积(COV)不变。分析了充液裂纹尖端处的应力强度因子,并给出了有效的正交公式来评价COV。提出了一种假设,即当弹性应变能量释放速率达到临界断裂韧性时,裂纹扩展开始,而当能量释放速率低于阻止韧性时,裂纹扩展被阻止。基于能量标准,将尝试进行预测以确定裂纹扩展/扭结开始的载荷位置以及分支裂纹在被阻止之前的增长增量。针对各种载荷条件构造了逐步的裂纹路径。

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