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首页> 外文期刊>Journal of Microscopy >High-resolution electron microscope observation of interface microstructure of a cast Al-Mg-Si-Bi-Pb(6262)/Al2O3p composite
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High-resolution electron microscope observation of interface microstructure of a cast Al-Mg-Si-Bi-Pb(6262)/Al2O3p composite

机译:铸造Al-Mg-Si-Bi-Pb(6262)/ Al2O3p复合材料界面微观结构的高分辨率电子显微镜观察

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High-resolution electron microscopy was employed to characterize the interface structure of a cast Al-Mg-Si-Bi-Pb aluminium(6262)-based composite reinforced by cr alumina particles with a trace of beta alumina in order to investigate the behaviour of alloying elements in cast composites, Except for a few primary Mg2Si particles, few reaction products were detected at the interface of Al/alpha -Al2O3 due to the unfavourable reaction kinetics during the squeeze-casting process. The Mg2Si particle has an orientation relationship with alpha -Al2O3 of [011](Mg2Si)//[1 (2) over bar 10](alpha -Al2O3) (1 (1) over bar1)(Mg2Si)//(0006)(alpha -Al2O3). A significant amount of MgAl2O4 was found on the surface of the beta -Al2O3 particles, which is in contrast to the small degree of reaction found on alpha -Al2O3 particles, MgAl2O4 and beta -Al2O3 particles have the following orientation relationship: [011](MgA12O4)//[1 (2) over bar 10](beta -Al2O3) (1 (1) over bar1) (MgAl2O4)//(0006)(beta -Al2O3). The similar crystal structure of beta -Al2O3 to MgAl2O4 favours MgAl2O4 nucleation and growth on the surface of beta -Al2O3. Interfacial energy minimization dominates the atomic structure of the interface with the result that close packed planes and directions in the Al2O3 reinforcement and reaction products are parallel to the interfaces. Bi and Pb were found in the form of metallic nanometre particles between Al2O3 particles, or between the MgAl2O4 and Al2O3 particles, or in the open channels of beta -Al2O3 filled by the Al matrix. [References: 25]
机译:为了研究合金化行为,采用了高分辨率电子显微镜来表征由铬氧化铝颗粒增强的铸造Al-Mg-Si-Bi-Pb铝(6262)基复合材料的界面结构。除了少量的初生Mg2Si颗粒外,由于挤压铸造过程中不利的反应动力学,在Al / alpha -Al2O3的界面上几乎检测不到反应产物。 Mg2Si粒子与杆10上的[011](Mg2Si)// [1(2)的alpha -Al2O3的取向关系](杆1上的alpha -Al2O3)(1(1))(/ Mg2Si)//(0006) (α-Al2O3)。在β-Al2O3颗粒的表面发现大量MgAl2O4,这与在α-Al2O3颗粒上发现的小反应度相反,MgAl2O4和β-Al2O3颗粒具有以下取向关系:[011]( MgAl 2 O 4)// [1(2)在条10上](β-Al2O3)(1(1)在bar1上)(MgAl2O4)//(0006)(β-Al2O3)。 β-Al2O3与MgAl2O4相似的晶体结构有利于MgAl2O4在β-Al2O3表面成核和生长。界面能的最小化控制了界面的原子结构,结果是Al2O3增强材料和反应产物中紧密堆积的平面和方向平行于界面。发现Bi和Pb以Al2O3颗粒之间,MgAl2O4和Al2O3颗粒之间,或Al基质填充的β-Al2O3的开放通道中的金属纳米颗粒形式存在。 [参考:25]

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