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Investigating the effect of cold expansion process on the fatigue behavior of aluminum alloy 7075-T6 in double-lap shear joints

机译:研究冷膨胀过程对双搭接剪切接头铝合金7075-T6疲劳行为的影响

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In this paper, the effect of cold expansion process on the fatigue behavior of 7075-T6 aluminum alloy has been investigated both by numerical modeling and conducting experimental tests. In the experimental part, one batch of the specimens without cold expansion and two other batches after being subjected to cold expansions of 1.5% and 4.7% were subjected to cyclic loading in a double-lap shear joint. In the numerical part, finite element simulations of the cold expansion process and loading of the joint were performed and the effect of this process on the stress distribution and the location of the critical zone of the fatigue crack initiation were surveyed. Tangential stresses at different angles around the hole were extracted from the finite element analysis, and after determining the angular position of the surfaces with maximum stresses, crack initiation location in the thickness direction is predicted with an acceptable approximation. The S-N diagrams obtained from the experiments show that the cold expansion process increases fatigue life, and this increase is much more pronounced in lower loads. Also by increasing the percentage of cold expansion from 1.5% to 4.7%, this increase is more appreciable.
机译:本文通过数值模拟和实验测试研究了冷膨胀过程对7075-T6铝合金疲劳行为的影响。在实验部分中,对一批没有冷胀的试样和另外两批分别经受1.5%和4.7%的冷胀的试样在双搭接剪切接头中进行循环加载。在数值部分中,对接头的冷膨胀过程和载荷进行了有限元模拟,并研究了该过程对应力分布和疲劳裂纹萌生关键区域位置的影响。从有限元分析中提取孔周围不同角度的切向应力,在确定具有最大应力的表面的角位置后,以可接受的近似值预测在厚度方向上的裂纹萌生位置。从实验中获得的S-N图表明,冷膨胀过程增加了疲劳寿命,并且这种增加在较低载荷下更加明显。同样,通过将冷膨胀的百分比从1.5%增加到4.7%,这种增加更为明显。

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