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Effect of temperature, strain rate and fibre orientation on the plastic flow behaviour and formability of AZ31 magnesium alloy

机译:温度,应变速率和纤维取向对AZ31镁合金塑性流动行为和成形性的影响

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摘要

The sheet formability of AZ31 magnesium alloy has been widely investigated by means of uniaxial tensile and hemispherical punch tests, performed at different temperatures and strain rates, using samples with different fibre orientations. The results of the uniaxial tensile tests were analysed in terms of flow curves, ductility and microstructural evolution. They show that the flow stress decreases and ductility increases as temperature rises and strain rate reduces; the ductility is almost independent of the fibre orientation that, however, slightly affects the flow stress values. The formability, described by the forming limit curves (FLCs), improves with increasing temperature and decreasing strain rate. Moreover, formability along the rolling direction (RD) is higher than that along the transversal one (TD), even if the FLCs obtained along the TD have a larger extension in the drawing side than the ones along the RD. Such behaviours were related to the constitutive parameters and microstructure developed during deformation.
机译:AZ31镁合金的板材成形性已通过在不同温度和应变速率下使用具有不同纤维取向的样品进行的单轴拉伸和半球形冲压试验得到了广泛研究。根据流动曲线,延展性和微观结构演变分析了单轴拉伸试验的结果。他们表明,随着温度的升高和应变率的降低,流动应力降低,延展性提高。延展性几乎与纤维取向无关,但是会稍微影响流动应力值。用成形极限曲线(FLC)描述的可成形性随温度升高和应变速率降低而提高。此外,即使沿TD获得的FLC在拉伸侧的延伸大于沿RD获得的FLC的延伸,其沿轧制方向(RD)的可成形性也比沿横向TD(TD)的可成形性高。这种行为与变形过程中的本构参数和微观结构有关。

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