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Plastic Deformation Behavior of Mg-Li Alloys at Ambient and Elevated Temperatures

机译:镁锂合金在环境下的塑性变形行为及升高温度

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The deformation behavior of three kinds of Mg-Li alloys with different test conditions at ambient and elevated temperatures was studied, and the optimized deformation conditions were obtained. The results showed that the addition of lithium increases the plasticity, but little bit decreases in strength of the alloy. However, the strength may be enhanced through the addition of aluminum into the alloy due to the phase precipitation in the alloy matrix. It is also found that elongation depends mainly on both test temperature and strain rate, and the maximum elongation occurs at 350°C and 5x10~(-4)s~(-1) for α-alloy, 350°C and 5x10~(-4)s~(-1) for β-alloy, and 400°C, 5x10~(-4)s~(-1) for α+β alloy. Further study revealed that the dual-phase α+β alloy exhibited superplastic deformation behavior at a certain condition under which the structures were refined and the texture was disappeared.
机译:研究了在环境和升高温度下具有不同试验条件的三种Mg-Li合金的变形行为,得到了优化的变形条件。结果表明,锂的添加增加了可塑性,但合金强度略有降低。然而,由于合金基质中的相沉淀,通过将铝加入合金中可以通过加入合金而增强强度。还发现伸长率主要取决于测试温度和应变速率,并且在350℃和5×10〜(-4)〜(-1)的最大伸长率为α合金,350°C和5×10〜( -4)S〜(-1)对于β合金,400℃,5×10〜(-4)S〜(-1)用于α+β合金。进一步的研究表明,双相α+β合金在整个条件下表现出完善的一定条件的超塑性变形行为,并且纹理消失。

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