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Mechanical Behaviour and Springback Study of an Aluminium Alloy in Warm Forming Conditions

机译:热成形条件下铝合金的力学行为和回弹研究

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This study deals with the mechanical behaviour and material modelling of an AA5754-O alloy at elevated temperature. Experimental shear tests were performed from room temperature up to 200°C, and the material behaviour has been identified with both shear and tensile tests, as a function of temperature. To analyse the influence of temperature during forming over springback, a split-ring test is used. Experimental results are obtained and compared to numerical simulations performed with the finite element in-house code DD3IMP. The numerical process of ring splitting is performed with the in-house code DD3TRIM. The main observed data are force-displacement curves of the punch during forming, cup thickness at the end of forming, and ring gap after splitting. It is shown that all these parameters are strongly dependent on the forming temperature. A correlation is obtained between experimental data and numerical simulation for the evolution of punch force and opening after springback as a function of temperature. The distribution of the tangentialstress in the cup wall is the main factor influencing the springback mechanism in warm forming condition.
机译:该研究涉及升高温度AA5754-O合金的力学行为和材料建模。实验剪切试验从室温下进行,高达200℃,并且通过剪切和拉伸试验鉴定了材料行为,作为温度的函数。为了分析在回弹期间温度的影响,使用分振试验。获得实验结果,与内部码内部代码DD3IMM的有限元进行的数值模拟进行比较。用内部代码DD3TRIM执行环分离的数值处理。主要观察到的数据是在成形结束时形成,杯厚度的冲头的力 - 位移曲线,并且分裂后的环间隙。结果表明,所有这些参数都强烈取决于成形温度。在作为温度的函数之后,在调速和打开后的实验数据和数值模拟之间获得相关性。在杯壁中的切向钟的分布是影响热成形条件下回弹机制的主要因素。

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