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首页> 外文期刊>Acta Mechanica >The crack propagation path for a system of surface and subsurface cracks and their interactions due to rolling contact fatigue
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The crack propagation path for a system of surface and subsurface cracks and their interactions due to rolling contact fatigue

机译:表面和地下裂缝系统的裂缝繁殖路径及其相互作用引起的滚动接触疲劳

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In this paper, the rolling contact fatigue crack growth in the presence of multiple cracks and their interactions is studied. The proposed formulation is based on linear elastic fracture mechanics and singular integral equations. The body under the rolling contact is modeled by a half-plane weakened by a set of surface, subsurface and surface-subsurface cracks. Rolling contact is simulated by translational motion of an elliptically distributed force along the half-plane boundary. Several parameters, such as the distance between cracks, the value of initial crack lengths, the value of the friction coefficient, and the initial angle between cracks and the boundary of the half-plane are studied. Results obtained from this investigation are in good agreement in a special case with those reported in the literature. It is observed that in the system of two parallel surface and subsurface cracks with equal lengths, changing the distance between the cracks changes the growth paths, and when this distance increases to a critical value, the cracks grow independently. In addition, in the case of two parallel surface cracks when the left crack is shorter, the cracks have a stronger tendency to join together, which leads to pitting phenomena on the contact surface. Furthermore, in the system of two parallel subsurface cracks, it is seen that fast fracture occurs sooner when the initial angle of the cracks increases. In the system of parallel surface and subsurface cracks, the dominant failure mode is spalling.
机译:本文研究了多种裂缝存在下轧制接触疲劳裂纹生长及其相互作用。所提出的配方基于线性弹性裂缝力学和奇异整体方程。滚动触头下的主体被通过一组表面,地下和表面地下裂缝削弱的半平面模型。通过沿着半平面边界的椭圆分布力的平移运动模拟滚动触点。几个参数,例如裂缝之间的距离,初始裂缝长度的值,摩擦系数的值,以及裂缝之间的初始角度和半平面之间的边界。从本调查中获得的结果在文献中报告的那些特别案件中处于良好的一致。观察到,在两个平行表面和具有相等长度的地下裂缝的系统中,改变裂缝之间的距离改变了生长路径,并且当该距离增加到临界值时,裂缝独立生长。另外,在两个平行表面裂缝的情况下,当左裂纹较短时,裂缝具有更强的加入倾向,这导致接触表面上的点蚀现象。此外,在两个平行地下裂缝的系统中,可以看出,当裂缝的初始角度增加时,快速断裂发生。在平行表面和地下裂缝系统中,主导故障模式正在剥落。

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