首页> 外文期刊>Journal of Materials Engineering and Performance >Biaxial Fatigue Crack Growth Behavior in Aluminum Alloy 5083-H116 Under Ambient Laboratory and Saltwater Environments
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Biaxial Fatigue Crack Growth Behavior in Aluminum Alloy 5083-H116 Under Ambient Laboratory and Saltwater Environments

机译:实验室和盐水环境下5083-H116铝合金的双轴疲劳裂纹扩展行为

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摘要

Crack growth of aluminum alloy 5083 was investigated when subjected to the in-plane biaxial tension-tension fatigue with stress ratio of 0.5 under ambient laboratory and saltwater environments. Cruciform specimens with a center hole, containing a notch and precrack at 45A degrees to the specimen's arms, were tested in a biaxial fatigue test machine. Two biaxiality ratios, lambda A = 1 and lambda = 1.5, were studied. For lambda = 1, crack propagated along a straight line collinearly with the precrack, while for lambda = 1.5 case, the crack path was curved and non-collinear with the precrack. Uniaxial fatigue tests were also conducted. Crack growth rates were faster under the biaxiality fatigue in comparison to uniaxial fatigue at a given crack driving force (Delta K (I) or Delta G) in both environments. Further, an increase in biaxiality ratio increased the crack growth rate, i.e., faster for lambda = 1.5 case than lambda = 1 case. Both biaxial fatigue and saltwater environment showed detrimental effects on the fatigue crack growth resistance of 5083, and its combination is highly detrimental when compared to uniaxial fatigue.
机译:在环境实验室和盐水环境下,当应力为0.5的面内双轴拉伸-拉伸疲劳时,研究了铝合金5083的裂纹扩展。在双轴疲劳试验机中对带有中心孔的十字形试样进行了测试,该十字形试样带有一个与试样臂成45A度的缺口和预裂纹。研究了两个双轴比,λA = 1和λ= 1.5。对于lambda = 1,裂纹沿着与预裂纹共线的直线传播,而对于lambda = 1.5情况,裂纹路径是弯曲的且与precrack非共线。还进行了单轴疲劳测试。在给定的裂纹驱动力(Delta K(I)或Delta G)下,双轴疲劳在单轴疲劳下的裂纹扩展速度要快于双轴疲劳。此外,双轴比的增加增加了裂纹的生长速率,即,对于λ= 1.5的情况比λ= 1的情况更快。双轴疲劳和盐水环境都对5083的抗疲劳裂纹扩展性产生不利影响,并且与单轴疲劳相比,其组合具有很大的有害性。

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