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A novel method for improving fatigue life of friction stir spot welded joints using localized plasticity

机译:利用局部塑性提高搅拌摩擦点焊接头疲劳寿命的新方法

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This study introduces a new method for enhancing the life and strength of friction stir spot welded (FSSW) joints using a localized plasticity process. The aim of this investigation is to evaluate the effect of cold expansion on the improvement of fatigue life of FSSW joints in aluminum alloy 7075-T6 plates through conducting experimental and numerical procedures. In the experimental section, the fatigue tests were carried out using constant amplitude load control servo-hydraulic fatigue testing machine on the as-welded and cold expanded FSSW joints with cold expansion level of 3.3%. In the numerical part, three-dimensional finite element models were implemented to calculate stress and strain distributions in two batches of specimens using two multi-axial fatigue criteria: Smith-Watson-Topper and Fatemi-Socie. The obtained experimental and numerical S-N data revealed that the cold expansion method could improve the fatigue life of FSSW joints in all load ranges so that in high cycle regimes, it could improve the fatigue life up to 6 times. Although the results revealed that there is a relatively good agreement between estimated fatigue lives and experimental data in reasonable fatigue life regime, considering the fatigue crack growth life can lead to better estimation.
机译:这项研究介绍了一种新的方法,可以通过局部塑性过程来提高搅拌摩擦点焊(FSSW)接头的寿命和强度。这项研究的目的是通过进行实验和数值程序来评估冷膨胀对铝合金7075-T6板中FSSW接头疲劳寿命的影响。在实验部分,疲劳试验是使用恒定振幅负载控制伺服液压疲劳试验机在焊接后的冷胀FSSW接头上进行的,该接头的冷胀率为3.3%。在数值部分,使用三维有限元模型,使用两个多轴疲劳准则:Smith-Watson-Topper和Fatemi-Socie,计算了两批样品中的应力和应变分布。获得的实验和数值S-N数据表明,冷膨胀方法可以改善FSSW接头在所有载荷范围内的疲劳寿命,因此在高循环工况下,疲劳寿命可以提高6倍。尽管结果表明,在合理的疲劳寿命范围内,疲劳寿命估算值与实验数据之间具有相对较好的一致性,但考虑到疲劳裂纹扩展寿命可以带来更好的估算。

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