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Effect of cooling rates on as-cast microstructures of Mg-9Al-xSi(x=1,3) alloys 被引量:4

Effect of cooling rates on as-cast microstructures of Mg-9Al-xSi(x=1,3) alloys
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摘要 The effects of cooling rates corresponding to different diameters of the steel mould and laser surface melting(LSM)on the as-cast microstructures of Mg-9Al-xSi(x=1,3)(mass fraction,%)alloys were investigated by XRD and OM.The results show that obvious refinement of the alloy microstructure is obtained with increasing cooling rate by conventional ingot metallurgy.However, no evident modified morphologies of both dendritic primary Mg2Si and Chinese script eutectic Mg2Si in the Mg-Al-Si alloy occurs. Surprisingly,the morphologies of Mg2Si phases within the laser-melted Mg-Al-Si alloy transform drastically from both coarse Chinese script shape for the eutectic Mg2Si and dendrite for the primary Mg2Si to fine spherical particles with an average size of about 3μm due to the rapid cooling of the melted layer,and the Mg2Si particulates distribute more uniformly in theα-Mg matrix. The effects of cooling rates corresponding to different diameters of the steel mould and laser surface melting(LSM)on the as-cast microstructures of Mg-9Al-xSi(x=1,3)(mass fraction,%)alloys were investigated by XRD and OM.The results show that obvious refinement of the alloy microstructure is obtained with increasing cooling rate by conventional ingot metallurgy.However, no evident modified morphologies of both dendritic primary Mg2Si and Chinese script eutectic Mg2Si in the Mg-Al-Si alloy occurs. Surprisingly,the morphologies of Mg2Si phases within the laser-melted Mg-Al-Si alloy transform drastically from both coarse Chinese script shape for the eutectic Mg2Si and dendrite for the primary Mg2Si to fine spherical particles with an average size of about 3μm due to the rapid cooling of the melted layer,and the Mg2Si particulates distribute more uniformly in theα-Mg matrix.
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第B07期393-396,共4页 中国有色金属学报(英文版)
基金 Project(LRB05-311)supported by the Postdoctoral Foundation of Heilongjiang Province,China Project(HEUFT05038)supported by the Basic Research Foundation of Harbin Engineering University,China Project(2009AA03Z423)supported by the National High-TechResearch and Development Program of China
关键词 Mg-Al-Si alloys MG2SI MODIFICATION cooling rates MICROSTRUCTURE 铝硅共晶合金 冷却速度 微观组织 XSI Mg2Si 激光表面熔化 球形颗粒
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参考文献15

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