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首页> 外文期刊>The Journal of Strain Analysis for Engineering Design >Predicting forming limit diagrams for AZ31 magnesium alloy and 7050 aluminum alloy by numerical simulation
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Predicting forming limit diagrams for AZ31 magnesium alloy and 7050 aluminum alloy by numerical simulation

机译:用数值模拟预测AZ31镁合金和7050铝合金的形成极限图

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Forming limit diagram (FLD) is the most intuitive method to evaluate and analyze the forming performance of sheet metal, which is widely used in production. To examine the formability of AZ31 magnesium alloy and 7050 aluminum alloy, the simplified bulging models based on the Nakazima experiment are established by ABAQUS finite element (FE) software, and the maximum punch force criterion is adopted as the instability criterion. The forming limit diagrams of 7050 high-strength aluminum alloy at room temperature and AZ31 magnesium alloy at warm working conditions are obtained by extracting the in-plane strain of the adjacent element of the maximum strain element at the moment of instability. Compared with experimental observation shows that the Nakazima virtual model established in this paper can accurately predict FLD. In addition, the influences of lubrication conditions and virtual punching speeds on the bulging process of AZ31 and AA7050 sheet metals are also investigated. The results show that the better the lubrication environment, or the lower the punching speed, the better the formability of the sheet, and reducing the punching speed has a more significant improvement effect on the formability of AZ31 sheets.
机译:形成极限图(FLD)是评估和分析金属板的成形性能的最直观的方法,其广泛用于生产。为了检查AZ31镁合金和7050铝合金的可成形性,基于Nakazima实验的简化凸出模型由ABAQUS有限元(FE)软件建立,并且最大冲击力标准被采用作为不稳定标准。通过在不稳定性时提取最大应变元件的相邻元件的相邻元件的面内应变,获得7050高强度铝合金在室温和AZ31镁合金处的成形限位图。与实验观察相比表明,本文建立的Nakazima虚拟模型可以准确地预测FLD。此外,还研究了润滑条件和虚拟冲压速度对AZ31和AA7050薄片金属的凸出过程的影响。结果表明,润滑环境越好,或较低的冲压速度,较好的片材的可成形性,并且减少冲压速度对AZ31片材的可成形性具有更大的改进效果。

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