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Influence of Li 2 Sb Additions on Microstructure and Mechanical Properties of Al-20Mg 2 Si Alloy

机译:Li 2 Sb的添加对Al-20Mg 2 Si合金组织和力学性能的影响

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It is found that Li 2 Sb compound can act as the nucleus of primary Mg 2 Si during solidification, by which the particle size of primary Mg 2 Si decreased from ~300 to ~15–25 μm. Owing to the synergistic effect of the Li 2 Sb nucleus and adsorption-poisoning of Li atoms, the effect of complex modification of Li-Sb on primary Mg 2 Si was better than that of single modification of Li or Sb. When Li-Sb content increased from 0 to 0.2 and further to 0.5 wt.%, coarse dendrite changed to defective truncated octahedron and finally to perfect truncated octahedral shape. With the addition of Li and Sb, ultimate compression strength (UCS) of Al-20Mg 2 Si alloys increased from ~283 to ~341 MPa and the yield strength (YS) at 0.2% offset increased from ~112 to ~179 MPa while almost no change was seen in the uniform elongation. Our study offers a simple method to control the morphology and size of primary Mg 2 Si, which will inspire developing new Al-Mg-Si alloys with improved mechanical properties.
机译:发现Li 2 Sb化合物可在凝固过程中作为初级Mg 2 Si的核,其初级Mg 2 Si的粒度从〜300降低至〜15-25μm。由于Li 2 Sb核的协同作用和Li原子的吸附 - 中毒,致铬Sb对伯Mg 2 Si的复杂改性的影响优于Li或Sb的单一改性。当Li-Sb含量从0增加到0至0.2且进一步为0.5重量%时,粗枝条改变为有缺陷的截短的八面体,最后是完美的截断的八面体形状。随着Li和Sb的添加,Al-20mg 2 Si合金的最终压缩强度(UCS)从〜283增加到283至〜341MPa,屈服强度(Ys)在0.2%偏置时从〜112增加到〜179MPa时增加在均匀的伸长率下没有看到任何变化。我们的研究提供了一种控制伯Mg 2 Si的形态和尺寸的简单方法,这将激发新的Al-Mg-Si合金,改善机械性能。

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