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Formability testing of AZ31B magnesium alloy tube at elevated temperature

机译:AZ31B镁合金管在高温下的成形性测试

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Magnesium alloy is a promising material for reaching the goal of weight reduction in automotive and aerospace industry. The mechanical properties of AZ31B seamless tube were tested by ring hoop tension test and compared with the results by axial tension test. Hydro-bulge test and newly proposed flatten-hydro-bulge test were also carried out to evaluate the formability of the tube. The effect of forming temperature and flattening displacement on the maximum expansion ratio and bursting pressure were measured and discussed. A tubular part with curved axis and different cross-sections was then manufactured successfully. It was found that the changing tendency of total elongation in hoop direction is quite different with that along axial direction. As temperature increased from RT. to 300℃, two peaks of total elongation in hoop direction occurred at about 150℃ and 300℃. In hydro-bulge test, the maximum expansion ratio increased as temperature increasing and reached the maximum value about 30% at 170℃, then decreased quickly at higher temperature until 230℃. In flatten-hydro-bulge test, flattening deformation has significant effect on the subsequent hydro-bulging process, and both maximum expansion ratio and bursting pressure decreased as flattening displacement increased. This should be taken into account during part design and process determining.
机译:镁合金是实现汽车和航空航天工业轻量化目标的一种有前途的材料。通过环箍拉伸试验测试了AZ31B无缝管的力学性能,并与轴向拉伸试验的结果进行了比较。还进行了水胀测试和新提出的扁平水胀测试来评估管的可成形性。测量并讨论了成形温度和扁平位移对最大膨胀比和爆破压力的影响。然后成功地制造了具有弯曲轴和不同横截面的管状部件。结果表明,环向总伸长率的变化趋势与轴向方向的变化趋势有很大不同。随着温度从室温升高。到300℃时,分别在150℃和300℃出现了两个沿箍方向的总伸长峰。在水力膨胀试验中,最大膨胀率随温度升高而增加,并在170℃达到最大值约30%,然后在较高温度下迅速降低直至230℃。在展平水胀试验中,展平变形对随后的水胀过程具有显着影响,并且随着展平位移的增加,最大膨胀率和爆破压力均降低。在零件设计和过程确定过程中应考虑到这一点。

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