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Effect of Sm on the Microstructure and Mechanical Property of Mg-xSm-0.4Zn-0.3Zr Alloys

机译:Sm对Mg-xSm-0.4Zn-0.3Zr合金组织和力学性能的影响

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The effect of Sm content (2, 4, 6, 8wt.%) on the microstructures and mechanic properties of gravity casting Mg-xSm-0.4Zn-0.3Zr alloys were investigated. The results showed that the cast alloy mainly consists of a-Mg matrix and Mg41Sm5 phase distributed at the grain boundaries, and the amount of the second phase increased with the rise of Sm content. After the solution treatment (T4), the second phase disappeared, however small amount of cuboid-like phase were found inside the grain, and its volume fraction also increases with the rise of Sm content. It is found in the age hardening curves of the alloys at 175, 200, and 225 °C that the alloys with various components almost showed the same trend of age hardening. While the higher the Sm content, the harder the alloy. With the Sm content increases, the yield strength (TYS) of cast alloys (F state) were obviously improved, however the tensile strength (UTS) became lower because of the quick drop of the elongation. The elongations of solid solution (T4) and aging (T6) alloy became lower, while the yield strength and tensile strength increased at first and then decreased. The optimized component is Mg-4Sm-0.4Zn-0.3Zr, which the mechanic properties at T6 state are: TYS=131MPa; UTS=261MPa; δ=6.8%.
机译:研究了Sm含量(2、4、6、8wt。%)对重力铸造Mg-xSm-0.4Zn-0.3Zr合金的组织和力学性能的影响。结果表明,铸造合金主要由α-Mg基体和分布在晶界的Mg41Sm5相组成,第二相的含量随Sm含量的增加而增加。固溶处理(T4)后,第二相消失,但在晶粒内部发现少量长方体状相,其体积分数也随Sm含量的增加而增加。在175、200和225°C的时效硬化曲线中发现,具有各种成分的合金几乎显示出相同的时效硬化趋势。 Sm含量越高,合金越硬。随着Sm含量的增加,铸造合金(F态)的屈服强度(TYS)明显提高,但由于延伸率的快速下降,抗拉强度(UTS)降低。固溶体(T4)和时效(T6)合金的伸长率降低,而屈服强度和抗拉强度先升高后降低。优化后的组分为Mg-4Sm-0.4Zn-0.3Zr,其在T6态下的力学性能为:TYS = 131MPa; UTS = 261MPa; δ= 6.8%。

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