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Influence of the temperature on residual stresses and springback effect in an aluminium alloy

机译:温度对铝合金残余应力和回弹效果的影响

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This study deals with the experimental and numerical investigation of springback in an aluminium alloy at different temperatures. An experimental split-ring test is performed on a AA5754-O alloy using a laboratory drawing device. The influence of temperature during forming over springback is measured from room temperature to 200℃. The temperature is the same for all tools and is maintained constant during all the forming process. The experimental results are compared to numerical simulations performed with the finite element code Abaqus. Material parameters are identified using uniaxial tensile tests at different temperatures and several strain rates in order to take into account both temperature and viscous effects in a coupled thermomechanical constitutive law. The stress and strain states in the cup at the end of the drawing and after springback are analyzed as a function of temperature and a detailed study of stress distributions in the thickness of the blank is proposed. It is shown that the effect of temperature tends to decrease the stress gradient in the cup wall that is directly linked to the decrease of the springback opening of the ring. The distribution of the hoop stress in the cup wall is the main factor influencing the springback mechanism in warm forming condition.
机译:这项研究涉及在不同温度下铝合金回弹的实验和数值研究。使用实验室绘图设备在AA5754-O合金上进行实验性开环测试。在室温至200℃范围内测量成型期间温度对回弹的影响。所有工具的温度均相同,并且在所有成型过程中均保持恒定。将实验结果与使用有限元代码Abaqus进行的数值模拟进行比较。使用单轴拉伸试验在不同温度和几种应变速率下确定材料参数,以便在热力学本构关系中同时考虑温度和粘性效应。分析了图纸末端和回弹后杯中的应力和应变状态随温度的变化,并提出了对毛坯厚度方向上应力分布的详细研究。结果表明,温度的影响趋向于减小杯壁中的应力梯度,该应力梯度与环的回弹开口的减小直接相关。杯壁中环向应力的分布是影响热成型条件下回弹机制的主要因素。

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