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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >FORMING LIMIT OF AZ31B MAGNESIUM ALLOY SHEET IN THE DEEP DRAWING WITH CROSS-SHAPED DIE
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FORMING LIMIT OF AZ31B MAGNESIUM ALLOY SHEET IN THE DEEP DRAWING WITH CROSS-SHAPED DIE

机译:斜角模具深冲压中AZ31B镁合金板的成形极限

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摘要

Magnesium alloy sheets are usually formed at temperatures between 150 and 300 degrees C because of their poor formability at room temperature. In the present study, the formability of AZ31B magnesium alloy sheets was investigated by the analytical and experimental approaches. First, tensile tests and limit dome height tests were carried out at several temperatures between 25 and 300 degrees C to get the mechanical properties and forming limit diagram (FLD). A FLD-based criterion considering the material temperature during deformation was used to predict the forming limit from a finite element analysis (FEA) of the cross-shaped cup deep drawing process. This criterion proved to be very useful in designing the geometrical parameters of the forming tools and determining optimal process conditions such as tool temperatures and blank shape by the comparison between finite element temperature-deformation analyses and physical try-out. The heating and cooling channels were also optimally designed through heat transfer analyses.
机译:镁合金板由于在室温下的可成形性差而通常在150至300℃的温度下形成。在本研究中,通过分析和实验方法研究了AZ31B镁合金板材的可成形性。首先,在25至300摄氏度之间的几个温度下进行了拉伸测试和极限拱顶高度测试,以获取机械性能和成形极限图(FLD)。基于FLD的考虑变形过程中材料温度的标准用于根据十字形杯深拉过程的有限元分析(FEA)预测成形极限。事实证明,通过比较有限元温度变形分析和物理试验,该标准对于设计成形工具的几何参数以及确定最佳加工条件(例如工具温度和毛坯形状)非常有用。加热和冷却通道也通过传热分析进行了优化设计。

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