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Optimization of springback for AZ31 magnesium alloy sheets in the L-bending process based on the Taguchi method

机译:基于Taguchi方法的AZ31镁合金板材L弯工艺回弹优化

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摘要

Springback is a primary issue which is encountered during most sheet metal bending processes. Using the Taguchi method, this study investigates the springback of L-bending with a step in the die through simulation and experiments for AZ31 magnesium alloy sheets at different temperatures. The process parameters for bending springback in this study include: lower punch radius, die clearance, step height, and step distance; we use a Taguchi L9 orthogonal array to design the combinations for the experiments. The results of ANOVA analysis show that, for each bending temperature, the process parameters that affect springback occur in the following order: step height (greatest), lower punch radius (next), die clearance (smaller), and step distance (smallest). In addition, with the increase of the bending temperature, the angle of springback decreases. The optimal parameter combinations at each bending temperature from the signal-to-noise response are all the same, namely, a die radius of 2 mm, die clearance of 0.5 mm, step height of 0.1 mm, and step distance of 2 mm. When the bending temperatures are 100°C, 150°C, and 200°C, the angles after springback of the optimal experimental parameter combination are 91.06°, 90.63°, and 89.84°, respectively.
机译:回弹是大多数钣金弯曲过程中遇到的主要问题。通过使用Taguchi方法,通过在不同温度下对AZ31镁合金薄板进行仿真和实验,研究了L形弯曲的回弹,并在模具中形成了台阶。本研究中弯曲回弹的工艺参数包括:较低的冲头半径,模具间隙,台阶高度和台阶距离;我们使用Taguchi L9正交阵列来设计实验组合。 ANOVA分析的结果表明,对于每个弯曲温度,影响回弹的工艺参数按以下顺序出现:台阶高度(最大),下冲头半径(下一个),模具间隙(更小)和台阶距离(最小) 。另外,随着弯曲温度的升高,回弹角减小。根据信噪响应在每个弯曲温度下的最佳参数组合都是相同的,即模头半径为2 mm,模头间隙为0.5 mm,步长为0.1 mm,步距为2 mm。当弯曲温度为100°C,150°C和200°C时,最佳实验参数组合回弹后的角度分别为91.06°,90.63°和89.84°。

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