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Investigations on Deformation Behavior of AA5754 Sheet Alloy Under Warm Hydroforming Conditions

机译:温热成型条件下AA5754板材的变形行为研究

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Material behavior of AA5754 was investigated under different forming process conditions, including two loading conditions (uniaxial tensile and biaxial bulge), several strain rates (constant strain rates at 0.0013 and 0.0131s, and variable strain rate profiles: increasing and decreasing profiles), and several temperature levels (ambient up to 260 °C). Additional warm hydroforming experiments were conducted using a closed-die set up to understand the forming limits of AA5754. The results from tensile and hydraulic bulge tests as well as closed-die hydroforming experiments suggested that, in general, formability of AA5754 can be significantly improved with slow forming rates (<0.02ls), high forming temperature (>200 °C), and biaxial loading (hydroforming) that can delay strain localization (necking). However, the effect of forming rate did not reveal any significant gain in formability for temperatures below 200 °C. The effect of variable strain rate control was found to be significant only at elevated temperatures (>200 °C), where increasing strain rate resulted in lower formability and decreasing strain rate improved the maximum attainable dome height at temperatures above 200 °C.
机译:在不同的成型工艺条件下研究了AA5754的材料行为,包括两个加载条件(单轴拉伸和双轴凸出),几个应变率(在0.0013和0.0131s时的恒定应变率以及可变应变率曲线:增加和减少曲线)以及几个温度水平(环境温度高达260°C)。使用闭模装置进行了另外的温热液压成型实验,以了解AA5754的成型极限。拉伸和水力膨胀试验以及闭模液压成形实验的结果表明,总体而言,AA5754的可成形性可以通过缓慢的成形速度(<0.02ls),较高的成形温度(> 200°C)和较高的成形速度来显着提高。双轴加载(液压成型)可以延迟应变局部化(颈缩)。然而,对于低于200°C的温度,成型速率的影响并未显示出可成型性的任何显着提高。发现仅在升高的温度(> 200°C)下,可变应变速率控制的效果才显着,其中增加的应变速率导致较低的可成形性,而降低的应变速率则改善了高于200°C的温度下可获得的最大圆顶高度。

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