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SIMULATION AND EXPERIMENT ON WARM HYDROFORMING OF AZ31 MAGNESIUM ALLOY TUBE

机译:AZ31镁合金管温暖液压成型模拟与实验

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The wrinkling behavior of an AZ31B magnesium alloy tube was investigated by simulation at different loading paths and at different temperatures. The effects of strain rate, internal pressure and temperature on the wrinkles were studied. Stress-strain track was analyzed in the quasi-static strain state graph of the plane stress processing to explain the changing of the wrinkles' shape, radius and wall thickness. It is shown that shape of the wrinkles wave along the axial direction keeps the sine wave character. The radius and thinning at the top zone of the wrinkles and the width of the wrinkles increased with the temperature, the internal pressure or the axial feeding. Moreover, hydro-formability of wrinkled parts was investigated and the improvement was observed. Finnally, as an application of using wrinkled parts as preform prior to the final calibration, a magnesium alloy tubular part with 50% expansion ratio was formed.
机译:通过不同负载路径和不同温度的模拟研究了AZ31B镁合金管的皱纹行为。研究了应变率,内部压力和温度对皱纹的影响。在平面应力处理的准静态应变状态图中分析应力 - 应变轨道,以解释皱纹形状,半径和壁厚的变化。结果表明,沿轴向的皱纹波的形状保持正弦波特征。皱纹顶部区域的半径和变薄和皱纹的宽度随温度,内部压力或轴向进料而增加。此外,研究了皱纹部件的水力可形成性,并观察到改善。在最终校准之前使用皱纹部件作为预制件的施加,形成具有50%膨胀比的镁合金管状部分。

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