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Mechanical properties, micro structure, and solidification characteristics of Mg-Zn-Al alloys

机译:Mg-Zn-Al合金的机械性能,微结构和凝固特性

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In this work, three experimental alloys, Mg-14 percent Zn-2 percent Al (ZA 142), Mg-14 percent Zn-4 percent Al (ZA 144), and Mg-14 percent Zn-6 percent Al (ZA 146) were cast and their microstructure and properties characterised. The results show that ZA142 consists of alpha(Mg), and two intermetallic compounds, epsilon (MgZn), and tau (Mg_(32)(Al,Zn)_(49)). The intermetallic phase observed in ZA 144 is tau, whereas the experimental alloy ZA 146 is composed of alpha(Mg), PHI (Al_2Mg_5Zn_2), and a small amount of tau. The solidification range of these experimental alloys is greater than 230 deg C, increasing with a reduction of Al content. Among these three alloys, the ZA 144 shows the best creep resistance, which is substantially superior to that of the well known AZ91 magnesium alloy. However, the elongation of these experimental alloys is less than that of AZ91.
机译:在这项工作中,三种实验合金,Mg-14%Zn-2%Al(ZA 142),Mg-14%Zn-4%Al(ZA 144)和Mg-14%Zn-6%Al(ZA 146)被施放,其微观结构和性质表征。结果表明,ZA142由α(Mg)和两种金属间化合物,ε(MgZN)和Tau(Mg_(32)(Al,Zn)_(49))组成。在ZA 144中观察到的金属间相是TAU,而实验合金ZA 146由α(Mg),PHI(AL_2MG_5ZN_2)组成,以及少量的TAU。这些实验合金的凝固范围大于230℃,随着Al含量的还原而增加。在这三种合金中,ZA 144显示了最佳的抗蠕变性,其基本上优于众所周知的AZ91镁合金。然而,这些实验合金的伸长率小于AZ91的伸长率。

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