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Interacting Effects Induced by Two Neighboring Pits Considering Relative Position Parameters and Pit Depth

机译:考虑相对位置参数和坑深的两个相邻坑引起的相互作用

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摘要

For pre-corroded aluminum alloy 7075-T6, the interacting effects of two neighboring pits on the stress concentration are comprehensively analyzed by considering various relative position parameters (inclination angle θ and dimensionless spacing parameter λ) and pit depth (d) with the finite element method. According to the severity of the stress concentration, the critical corrosion regions, bearing high susceptibility to fatigue damage, are determined for intersecting and adjacent pits, respectively. A straightforward approach is accordingly proposed to conservatively estimate the combined stress concentration factor induced by two neighboring pits, and a concrete application example is presented. It is found that for intersecting pits, the normalized stress concentration factor Ktnor increases with the increase of θ and λ and always reaches its maximum at θ = 90°, yet for adjacent pits, Ktnor decreases with the increase of λ and the maximum value appears at a slight asymmetric location. The simulations reveal that Ktnor follows a linear and an exponential relationship with the dimensionless depth parameter Rd for intersecting and adjacent cases, respectively.
机译:对于预腐蚀铝合金7075-T6,通过考虑各种相对位置参数(倾角θ和无量纲间距参数λ)以及坑深度(d)和有限元,全面分析了两个相邻凹坑对应力集中的相互作用影响方法。根据应力集中的严重程度,分别确定相交和相邻凹坑的极易发生疲劳损伤的临界腐蚀区域。因此,提出了一种简单的方法来保守估计两个相邻凹坑引起的组合应力集中系数,并给出了一个具体的应用示例。发现对于相交的凹坑,归一化应力集中系数Ktnor随θ和λ的增加而增加,并且在θ= 90°时始终达到最大值,而对于相邻凹坑,Ktnor随λ的增加而减小并且出现最大值在稍微不对称的位置。仿真表明,对于相交情况和相邻情况,Ktnor分别与无量纲深度参数Rd遵循线性关系和指数关系。

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