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Stress field parameters to predict the fatigue strength of notched components

机译:应力场参数可预测缺口零件的疲劳强度

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The stress field parameters, namely the notch stress intensity factors (N-SIFs) according to a more recent definition, can be used to predict the fatigue behaviour of mechanical components weakened by V-shaped re-entrant corners, where the singularity in the stress distribution makes any failure criterion based on the elastic peak stress no longer applicable. When the notch root radius is small but different from zero, the N-SIF can still be used, since a comprehensive analytical approach is available for open sharp and blunt notches. The fatigue strength reduction factor can be given as a function both of the elastic peak stress (only if it has a finite value) and of the N-SIF (for every notch tip radius value), by assuming that the fatigue strength of notched elements depends on a mean stress value in the critical zone. The welded joints are an example of practical N-SIF use in fatigue strength prediction. In this case not only the fatigue crack initiation life but also the fatigue crack propagation phase are strictly correlated to the N-SIF value for the reason that the residual life is mainly dependent on crack propagation in the zone just govemed by N-SIFs.
机译:应力场参数,即根据最新定义的缺口应力强度因子(N-SIF),可用于预测受V形凹角削弱的机械组件的疲劳行为,其中应力的奇异性分布使得基于弹性峰值应力的任何破坏准则不再适用。当切口的根半径较小但不为零时,仍可以使用N-SIF,因为可以使用全面的分析方法来处理开放的尖锐和钝性切口。通过假定带缺口元素的疲劳强度,可以将疲劳强度降低因子作为弹性峰值应力(仅当其具有有限值时)和N-SIF(对于每个缺口尖端半径值)的函数来给出取决于临界区的平均应力值。焊接接头是在疲劳强度预测中实际使用的N-SIF的示例。在这种情况下,不仅疲劳裂纹萌生寿命而且疲劳裂纹扩展阶段都与N-SIF值严格相关,因为剩余寿命主要取决于刚由N-SIF穿过的区域中的裂纹扩展。

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