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Effect of Texture of AZ31 Magnesium Alloy Sheet on Mechanical Properties and Formability at High Strain Rate

机译:AZ31镁合金薄板织构对高应变速率下力学性能和成形性的影响

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The mechanical properties and formability of AZ31 magnesium alloy strips having different textures were investigated at a high strain rate based on that occuring in mass production by press forming. Forming at a high strain rate on the order of 10{sup}0 s{sup}(-1) requires a high temperature of over 473 K. To obtain accurate stress-strain curves, a high-speed testing machine that can maintain a constant true strain rate was used, and the change in gauge length on a test piece in a furnace was measured during the testing time of about 0.5 s. For the specimens, rolled strips consisting of fine grains (about 10 μm) and an extruded strip consisting of coarse grains (about 40 μm) were used. The {0001} textures of the extruded strip and one of the rolled strips were strongly oriented parallel to the rolled surface, but the texture of another rolling strip had two peaks that were inclined at 5 ~ 15 deg in front of and behind the rolling direction. At the high strain rate of 10{sup}0 s{sup}(-1), elongation decreased for every specimen. Nevertheless, a limiting drawing ratio (LDR) of 2.1 ~ 2.2 was obtained under uniform heating above 503 K in all the specimens except for the extruded strip. The high LDR of the rolled strip having a two-peak texture was maintained in forming at temperatures down to 473 K, in contrast to the LDR of the strongly oriented rolled strip, which reduced rapidly when formed at temperatures less than 503 K.
机译:基于压制成型的批量生产中发生的变形,以高应变速率研究了具有不同织构的AZ31镁合金带材的机械性能和可成型性。要以大约10 {sup} 0 s {sup}(-1)的高应变速率成形,就需要超过473 K的高温。要获得准确的应力-应变曲线,高速测试机可以保持使用恒定的真实应变率,并在约0.5 s的测试时间内测量了炉中试件的标距长度变化。对于样品,使用了由细晶粒(约10μm)组成的轧制条和由粗晶粒(约40μm)组成的挤压型条。挤压带材和其中一个轧制带材的{0001}织构与轧制表面平行地强烈取向,但是另一个轧制带材的织构具有两个峰,它们在轧制方向前后倾斜5〜15度。 。在10 {sup} 0 s {sup}(-1)的高应变速率下,每个样品的伸长率都会降低。然而,在503 K以上均匀加热的条件下,除挤压带材外,所有试样的极限拉拔比(LDR)为2.1〜2.2。与低峰型轧制带材的LDR相比,强取向型轧制带材的LDR在低于503 K的温度下会迅速降低,因此在低至473 K的温度下仍可保持具有两个峰值结构的轧制带材的高LDR。

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