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Effect of solute atoms on grain boundary sliding in magnesium alloys

机译:溶质原子对镁合金晶界滑动的影响

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摘要

The effect of solid-solution alloying on grain boundary sliding (GBS) was investigated using pure magnesium and six kinds of Mg-X (X = Ag, Al, Li, Pb, Y and Zn) dilute binary solid solutions with an average grain size of 10 μm. A sharp increase in damping capacity caused by GBS was observed above a certain temperature. The temperature at which a sharp increase in damping capacity occurred depended on the alloying element. The addition of Y and Ag markedly increased the onset temperature (more than 100 K) for a sharp increase in damping capacity, whereas the addition of Zn, Al and Li slightly increased the onset temperature (less than 50 K) as compared with that for pure magnesium. Tensile tests at a temperature of 423 K revealed that the higher the onset temperature, the lower the strain rate sensitivity of the flow stress. It is suggested that the former elements (Y and Ag) are more effective in suppressing GBS in magnesium alloys than the latter ones (Zn, Al and Li). The suppression of GBS was associated with low grain boundary energy, and the extent to which the energy is reduced depended on the alloying element. It was suggested that the change in the lattice parameter (the so-called c/a ratio) affects the grain boundary energy, and thus, the occurrence of GBS.
机译:使用纯镁和六种Mg-X(X = Ag,Al,Li,Pb,Y和Zn)稀释的具有平均晶粒尺寸的二元固溶体研究了固溶合金化对晶界滑动(GBS)的影响10μm。在一定温度以上观察到由GBS引起的阻尼能力急剧增加。阻尼能力急剧增加的温度取决于合金元素。 Y和Ag的添加显着提高了起始温度(大于100 K),从而显着提高了阻尼能力,而Zn,Al和Li的添加与之相比,则稍微提高了起始温度(小于50 K)。纯镁。在423 K的温度下进行的拉伸试验表明,起始温度越高,流动应力的应变率敏感性越低。建议前者元素(Y和Ag)比后者元素(Zn,Al和Li)更有效地抑制镁合金中的GBS。 GBS的抑制与低的晶界能有关,能量减少的程度取决于合金元素。建议晶格参数的变化(所谓的c / a比)影响晶界能,从而影响GBS的发生。

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