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Influence of grain structure and slip planarity on fatigue crack growth in low alloying artificially aged 2xxx aluminium alloys

机译:低合金化人工时效2xxx铝合金晶粒组织和滑动平面度对疲劳裂纹扩展的影响

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摘要

The fatigue crack growth behaviour under constant amplitude loading of three low alloying artificially aged 2xxx aluminium alloys with distinct microstructures is analysed. Fatigue crack growth tests show a correlation between fatigue performance and the occurrence of crack closure. Fractography and fracture surface measurements show that rougher surfaces give higher closure levels suggesting a dominating influence of RICC in these alloys. The relationship between the crack path and the microstructure, i.e. grain structure and slip planarity, is assessed semi-quantitatively. A criterion to evaluate the propensity for slip band formation is derived and reasonable correlation is found between the fatigue fracture behaviour of the three alloys and this criterion.
机译:分析了三种低合金化人工时效低的2xxx铝合金组织在恒定振幅载荷下的疲劳裂纹扩展行为。疲劳裂纹扩展测试表明疲劳性能与裂纹闭合的发生之间存在相关性。形貌和断裂表面测量表明,较粗糙的表面给出较高的闭合度,表明RICC在这些合金中起主要作用。半定量评估裂纹路径与微观结构之间的关系,即晶粒结构和滑动平面度。推导了评估滑移带形成倾向的准则,并在这三种合金的疲劳断裂行为与该准则之间找到了合理的相关性。

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