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Residual Stress Behavior of Rolled Aluminum Alloy A2024T3 in a Thin Plate During Cyclic-Tension Fatigue Studied Using Ultrasonic Horizontally Polarized Shear Waves

机译:超声水平极化剪切波在循环拉伸疲劳过程中薄板轧制铝合金A2024T3的残余应力行为

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摘要

The cyclic-tension fatigue in a rolled thin-plate of aluminum alloy Al-4Cu-lMg was evaluated nondestructively using a horizontally polarized shear wave (SH) transmission method under optimized measuring and analyzing conditions. The propagation time of the SH waves, which contained elements of reflected waves, had three distinct stages, the first, middle and final ones, during the fatigue process. The variation of the propagation time was dominated by the residual-stress field during the fatigue progress, as an acoustoelastic effect. The change in the stage of the variation can be elucidated by balance points for the redistribution of the residual stress, which clearly told us the degree of progression of the fatigue in the thin plate.
机译:在优化的测量和分析条件下,采用水平极化剪切波(SH)传输方法对铝合金Al-4Cu-1Mg轧制薄板的循环张力疲劳进行了无损评估。包含反射波元素的SH波的传播时间在疲劳过程中具有三个不同的阶段,第一,中间和最后一个阶段。传播时间的变化以疲劳弹性过程中的残余应力场为主。可以通过残余应力的重新分布平衡点来阐明变化阶段的变化,这清楚地告诉了我们薄板疲劳的发展程度。

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