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Fatigue crack growth in thin aluminium alloy sheets under loading sequences with periodic overloads

机译:周期性载荷作用下铝合金薄板疲劳裂纹扩展

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摘要

This study analyses the fatigue crack growth behaviour in thin AlMgSi1-T6 aluminium alloy sheets under several loading sequences containing periodic overloads. The observed fatigue crack growth behaviour is compared to constant amplitude loading and discussed in terms of type of loading sequence, intermediate baseline cycles and stress ratio. The crack closure parameter U was obtained for periodic single overload tests and compared with the crack growth transients. Crack retardation increases with overload periodicity and decreases with stress ratio increase. Higher crack growth retardation was observed under loading sequences with decreasing load levels in comparison to increasing ones as well as under loading sequences with extended periodicity. In spite of some discrepancy, attributed to the quick change of the closure levels, it is clear that plasticity-induced crack closure plays an important role on the load interaction effects observed in this aluminium alloy.
机译:这项研究分析了AlMgSi1-T6铝合金薄板在多次包含周期性过载的加载序列下的疲劳裂纹扩展行为。将观察到的疲劳裂纹扩展行为与恒定振幅载荷进行比较,并根据载荷顺序类型,中间基线周期和应力比进行讨论。裂纹闭合参数U是通过定期单次过载测试获得的,并与裂纹扩展瞬变进行了比较。裂纹延迟随着过载周期的增加而增加,而随着应力比的增加而减小。与增加的载荷顺序相比,在载荷顺序减小的载荷序列下以及在周期性延长的载荷序列下,观察到更高的裂纹扩展延迟。尽管存在一些差异,这归因于闭合水平的快速变化,但很明显,塑性诱导的裂纹闭合在这种铝合金中观察到的载荷相互作用效应中起着重要作用。

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