4.7 Article

Effects of samarium on microstructures and tensile properties of Mg-5Al-0.3Mn alloy

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ELSEVIER SCIENCE SA
DOI: 10.1016/j.msea.2011.01.109

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Mg-Al-Mn-Sm alloy; Samarium; Microstructures; Tensile properties

资金

  1. NSFC [20921002]
  2. Science Program of Changchun [08YJ09]

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Microstructures and tensile properties of Mg-5Al-0.3Mn-xSm (x = 0, 1, 2 and 3 wt.%) alloys prepared by metal mould casting method were investigated. It was demonstrated that Mg-5Al-0.3Mn alloy was mainly composed of alpha-Mg and beta-Mg17Al12 phases. However, the other two precipitates (Al11Sm3 and Al2Sm) were observed along grain boundaries in the alloys containing Sm. The amount of Al11Sm3 and Al2Sm precipitates was increased with the increment of Sm content. Meanwhile, volume fraction of beta-Mg17Al12 phase was decreased. Moreover, the morphology of (beta-Mg17Al12 was altered from bulk bone-like shape to spherical one. Tensile results showed that Mg-5Al-0.3Mn-2Sm alloy exhibited the highest tensile properties both at room temperature and 150 degrees C. Compared with ultimate tensile strength (UTS), yield strength (YS) and elongation (epsilon) of Mg-5Al-0.3Mn alloy, UTS, YS and e of Mg-5Al-0.3Mn-2Sm alloy were enhanced by 30%, 45% and 35% at room temperature, and by 17,%, 48% and 96% at 150 degrees C, respectively. The improvement of tensile properties was attributed to the decreased amount of beta-Mg17Al12 and its refined morphology, and high thermal stable Al11Sm3 and Al2Sm precipitates which effectively prohibited dislocation movement and grain boundary sliding during deformation process. (C) 2011 Elsevier B.V. All rights reserved.

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