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Morphological evolutions of cast and melt-spun Mg_(97)Zn_1Y_2 alloys during deformation and heat-treating
Authors:WANG Bai-shu  LIU Yong-bing  AN Jian  LI Rong-guang  SU Zhen-guo  CAO Zhan-yi Key Laboratory of Automobile Materials  Ministry of Education
Affiliation:WANG Bai-shu,LIU Yong-bing,AN Jian,LI Rong-guang,SU Zhen-guo,CAO Zhan-yi 1.Key Laboratory of Automobile Materials,Ministry of Education,Department of Materials Science , Engineering,Jilin University,Changchun 130025,China,2.Department of Materials Science , Engineering,Changchun University of Technology,Changchun 130012
Abstract:Mg97Zn1Y2 alloy has been studied as an elevated temperature creep resistant Mg-based alloy for nearly ten years. While,the strength of the cast Mg97Zn1Y2 alloy with long-period stacking(LPS) structure is lower than that of the commercial AZ91 alloy at room temperature. The microstructure evolutions in Mg97Zn1Y2 (molar fraction, %) alloys with LPS phase, processed by rolling and annealing the as-cast alloy and rapidly solidifying/melt-spinning and age treating at different temperatures respectively, were investigated by differential thermal analysis(DTA), X-ray diffraction(XRD), and laser optical microscopy(LOM), scanning electron microscopy (SEM), and transmission electron microscopy(TEM). The evolutionary direction of microstructure prescribed by thermodynamics in the Mg97Zn1Y2 alloy is reflected from experimental data of the as-cast alloy; and the actual evolution paths selected by kinetics are depicted in detail in the as-spun alloy and rolled alloy. The strong influences of thermodynamic nonequilibrium mechanism, which entails the factual complexity of microstructures typically during rapid solidification and deformation processing for strengthening the creep resistant magnesium alloy, are presented.
Keywords:Mg-Zn-Y alloy  rolling  annealing  ageing  microstructure
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