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Derivation of applied stress-crack opening displacement relationships for the evaluation of effective stress intensity factor range

机译:推导应力裂纹开口位移关系以推算有效应力强度因子范围的推导

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Linear elastic fracture mechanics (LEFM) integrated with the interference of fracture surface asperities has been formulated. The asperities are considered to simulate the influence of the microstructures and possibly oxide debris. The applied stress/load-crack opening displacement (COD) relationships in several cases have been derived. In the original LEFM, the stress-COD relationship is represented by a straight line passing through the origin of the stress-COD plot. The insert of one asperity results in a deviation of the stress-COD response from the LEFM relationship, leading to the exhibition of an inflection point (first contact point, sigma_(op)), a larger slope, and a residual COD. In the case of two asperities, the slope and the residual COD of the stress-COD relationship become further larger, and two inflection points emerge. A general stress-COD expression in the case of multiple asperities has been derived. The slope of the stress-COD equation, the residual COD, and the minimum COD all increase with increasing number of asperities for a given loading condition, resulting in a smaller DELTA COD and DELTA sigma_(eff). The number of the inflection points is the same as that of the asperities. To the authors' knowledge, this paper is the first to derive analytically an applied stress-COD curve with a gradual variation below sigma_(op), caused by the asperity-/roughness-, or oxide-induced crack closure.
机译:提出了结合断裂表面凹凸不平的线性弹性断裂力学(LEFM)。粗糙被认为是模拟微观结构和可能的氧化物碎片的影响。在几种情况下,得出了施加的应力/载荷裂纹开口位移(COD)关系。在原始LEFM中,应力-COD关系由一条直线穿过应力-COD图的原点表示。插入一个凹凸不平会导致应力COD响应偏离LEFM关系,从而导致出现拐点(第一个接触点sigma_(op)),更大的斜率和残留的COD。在两个凹凸的情况下,应力-COD关系的斜率和残留COD会更大,并出现两个拐点。得出了多个粗糙情况下的一般应力COD表达。在给定的载荷条件下,应力-COD方程的斜率,残余COD和最小COD都随着粗糙数量的增加而增加,从而导致DELTA COD和DELTA sigma_(eff)较小。拐点的数量与凹凸的数量相同。据作者所知,本文是第一个通过分析得出应力-COD曲线的方法,该曲线的变化幅度低于sigma_(op),这是由粗糙/粗糙度或氧化物引起的裂纹闭合引起的。

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