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Effect of Mg Addition on the Structure and Properties of Al-4.5 Cu-3.4 Fe <i>In-Situ</i>Cast Composite
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作者 Nurul Afsar Chowdhury Md. Arifur Rahman Khan Sajib Aninda Dhar 《Journal of Materials Science and Chemical Engineering》 2020年第3期66-73,共8页
Ternary Al-4.5 (wt%) Cu-3.4 (wt%) Fe in-situ composite was prepared at 1100&#176;C by conventional casting method. However, this particular alloy contains larger needle-shaped intermetallics of Al3Fe phase. These ... Ternary Al-4.5 (wt%) Cu-3.4 (wt%) Fe in-situ composite was prepared at 1100&#176;C by conventional casting method. However, this particular alloy contains larger needle-shaped intermetallics of Al3Fe phase. These exert adverse effect on the mechanical properties of the alloys. The larger shape and uneven orientation of the intermetallic were found to be responsible for the degradation of properties. The main purpose of this study was to modify the geometry of those needles by adding magnesium (Mg) as a fourth material. A series of alloys were prepared by adding 4, 6, 8, 10, wt% Mg in Al-4.5 (wt%) Cu-3.4 (wt%) Fe alloy. Microstructures were observed by optical microscopy. Mechanical properties like ultimate tensile strength, % elongation, % area reduction, hardness and wear test were determined. The study revealed that Mg transformed the needles of Al3Fe into globular shape which gave the alloys better mechanical properties. 展开更多
关键词 Metal Matrix Composites (mmcs) intermetallic compounds AL-CU-FE Alloy in-situ COMPOSITE Mg ADDITION
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原位金属基复合材料的制备原理及工艺 被引量:8
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作者 崔春翔 吴人洁 王浩伟 《材料开发与应用》 CAS 1995年第5期35-39,共5页
简述了原位自生增强体金属基复合材料的制备原理及工艺。基于热力学和动力学原理,讨论了自生增强体的形成机制,展望了这种新型复合材料的工业应用前景。
关键词 原位 金属复合材料 增强体 金属间化合物
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