Effects of Sb on Microstructure and Mechanical Properties of Mg-5.5Al-1.2Y Alloy

C. Li, Quan-an Li, Xing-yuan Zhang, Qing Zhang
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Abstract

The microstructure and mechanical properties of aged Mg-5.5Al-1.2Y magnesium alloy with Sb addition are investigated by optical microscope, SEM and X-ray diffraction analyzer. The results show that with proper content of Sb addition,the microstructure of Mg-5.5Al-1.2Y magnesium alloy is refined obviously and high melting point intermetallic compounds Sb3Y5 and Mg3Sb2 are formed. Meanwhile, the β-Mg17Al12 phase is more distributed. With the increase of Sb addition, the mechanical properties of the alloy at room and elevated temperature increase at first, and then decrease. When the content of Sb is up to 0.5%, the values of tensile strength and elongation at room temperature, 150ºC and 175ºC are up to their maxima synchronously, 241MPa /16.84%, 198MPa/20.27.86% and 169MPa/21.21% respectively.
Sb对Mg-5.5Al-1.2Y合金组织和力学性能的影响
采用金相显微镜、扫描电镜和x射线衍射仪研究了添加Sb的时效Mg-5.5Al-1.2Y镁合金的显微组织和力学性能。结果表明:适当添加Sb后,Mg-5.5Al-1.2Y镁合金组织明显细化,形成高熔点金属间化合物Sb3Y5和Mg3Sb2;同时,β-Mg17Al12相分布更广。随着Sb添加量的增加,合金的室温和高温力学性能先升高后降低。当Sb含量为0.5%时,室温、150℃和175℃的拉伸强度和伸长率同步达到最大值,分别为241MPa /16.84%、198MPa/20.27.86%和169MPa/21.21%。
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