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作 者:李坊平[1] 于文斌[1] 蒋显全[1] 杨青山[2]
机构地区:[1]西南大学材料科学与工程学院,重庆400715 [2]重庆大学材料科学与工程学院,重庆400030
出 处:《北京科技大学学报》2012年第9期1048-1053,共6页Journal of University of Science and Technology Beijing
基 金:重庆市重大科技攻关项目(CSTC2009AB4005)
摘 要:为探索和改善轧制包铝镁合金板的界面结合状况,用气体保护铸造法制备了1060铝板包覆AZ31镁合金铸锭.借助金相显微镜、扫描电镜以及X射线衍射等分析方法,研究了复合铸锭芯材及界面的显微组织和相结构,并进行了硬度测试.发现AZ31镁合金芯材组织由α-Mg基体以及沿晶界分布的不连续网状α-Mg+β-Mg17Al12共晶体组成,是一种典型的铸造离异共晶组织.铸造包铝镁合金锭界面形成扩散溶解层,扩散溶解层由α-Mg固溶体层、共晶层(α-Mg+β-Mg17Al12)、β-Mg17Al12及AlMg化合物层组成,形成具有多层结构的冶金结合界面.提出了浇注AZ31熔体的瞬间在1060铝板表面形成"熔池"并快速凝固的界面形成机制.1060 aluminium cladding AZ31 magnesium alloy composite ingots were prepared under gas protection to investigate and improve the interracial combination. The microstructure, phase constituents and microhardness of the matrix and the interface were studied by use of optical microscopy (OM), scanning electron microscopy (SEM) and X-ray diffraction (XRD). It is found that the microstructure of the as-cast AZ31 magnesium alloy consists mainly of the α-Mg matrix and the typical divorced eutectic of α-Mg and β- MglTA112 phases distributed along grain boundaries. A diffusion fusion layer forms in the interface, leading to a complex metallurgical interface with a multilayer of the α-Mg solid solution zone, the eutectic (α-Mg + β-Mg17A112) zone and the Mg-A1 intermetallic com- pound zone. The Mg-A1 intermetallic compounds are made up of β-MglTA112 and A1Mg. It is proposed that the formation mechanism of the complex interface layer is due to the emergence of a molten bath on the 1060 A1 plate surface at AZ31 melt pouring moment and the rapid solidification subsequently.
关 键 词:镁合金 铝合金 铸锭 铸造 金属复合 扩散 显微组织
分 类 号:TG335.8[金属学及工艺—金属压力加工]
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