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Formability of Magnesium Alloy AZ31B from Room Temperature to 125 ℃ Under Biaxial Tension

机译:室温至125℃双轴拉伸下镁合金AZ31B的成形性

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Magnesium AZ31B sheets of 2 mm thickness were stretch formed using a 101.6 mm diameter punch at room temperature and subsequent increments from 25 to 125 ℃. Surface strains were measured using a digital image correlation method in order to ensure that biaxial stretching was achieved. The punch height versus load curve was found to be the same for temperatures of 25 and for 50 ℃, while at 75 ℃ the load for a given punch height was less. This difference seems to indicate a change in deformation mechanism between 50 and 75 ℃. Electron Backscatter Diffraction (EBSD) was used to quantify features of the microstructure in the as-received and the strained specimens. Rather than a sudden transition from twinning to slip at low temperatures, it appears that twinning gradually decreases and slip activity increases as temperatures rise across the range from 25 to 125 ℃. This confirms recent predictions found in the literature. The twin activity predominantly involves the formation of compression twins which rapidly transform further to create secondary twins for easier strain accommodation.
机译:在室温下使用直径为101.6 mm的冲头对2 mm厚的镁AZ31B片材进行拉伸成型,然后从25℃升高至125℃。使用数字图像相关方法测量表面应变,以确保实现双轴拉伸。发现在温度为25和50℃时,冲头高度与负载的曲线相同,而在75℃下,给定冲头高度的负载较小。这种差异似乎表明在50到75℃之间变形机制发生了变化。电子背散射衍射(EBSD)用于量化接收和应变样品中的微观结构特征。并不是在低温下从孪晶突然转变为滑移,而是随着温度在25至125℃范围内升高,孪晶逐渐减少,滑移活性增加。这证实了文献中的最新预测。双胞胎活动主要涉及压缩双胞胎的形成,该压缩双胞胎迅速转变以产生次级双胞胎,以便于应变适应。

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