The as-cast Mg-8Li-3Al-0.5Mn-xSr(LAM830-xSr, x=0-1.0) alloys were designed and prepared in a vacuum induction furnace under controlled argon atmosphere. The alloys were then processed by hot extrusion, and their mic...The as-cast Mg-8Li-3Al-0.5Mn-xSr(LAM830-xSr, x=0-1.0) alloys were designed and prepared in a vacuum induction furnace under controlled argon atmosphere. The alloys were then processed by hot extrusion, and their microstructural evolution and mechanical properties were analyzed. Results indicate that the LAM830 alloy mainly consists of α-Mg, β-Li, Al2Mn3, and LiMgAl2 phases. Sr addition results in the precipitation of Al-Sr. Moreover, Sr addition results in a fact that the secondary dendrite arm spacing(DAS) of the primary α-Mg phase is obvious refined. Microstructure of the investigated alloys is further refined as a result of the hot extrusion treatment. The content and morphology of the secondary phases have important effects on the mechanical properties of the alloys. The as-extruded LAM830-0.5Sr alloy exhibits an optimal elongation of 22.43% and as-extruded LAM830-0.75 Sr alloy shows an optimal tensile strength of 265.46 MPa.展开更多
在AZ91D镁合金中仅添加Al_4Sr增强相,或复合添加Al_4Sr和石墨烯增强相,分析不同增强相对镁基复合材料的显微组织、耐磨损性能、耐腐蚀性能和高温力学性能的影响。结果表明,复合添合Al_4Sr和石墨烯增强相不仅明显提高材料的高温强度、耐...在AZ91D镁合金中仅添加Al_4Sr增强相,或复合添加Al_4Sr和石墨烯增强相,分析不同增强相对镁基复合材料的显微组织、耐磨损性能、耐腐蚀性能和高温力学性能的影响。结果表明,复合添合Al_4Sr和石墨烯增强相不仅明显提高材料的高温强度、耐磨损性能和耐腐蚀性能,还能改善材料的塑韧性。与未添加增强相的AZ91D镁合金相比,复合添合Al_4Sr和石墨烯增强相可使合金的150℃抗拉强度提高98.9%、屈服强度提高175.2%、断后伸长率基本不变,室温磨损体积减小85.5%,室温腐蚀电位正移198 m V。展开更多
基金Project(2007CB613702)supported by the National Basic Research Program of ChinaProject(2008BB4323)supported by the Natural Science Foundation of Chongqing Science and Technology Commission,ChinaProject(2010DFR50010)supported by the International Scientific and Technological Cooperation Projects,China
文摘The as-cast Mg-8Li-3Al-0.5Mn-xSr(LAM830-xSr, x=0-1.0) alloys were designed and prepared in a vacuum induction furnace under controlled argon atmosphere. The alloys were then processed by hot extrusion, and their microstructural evolution and mechanical properties were analyzed. Results indicate that the LAM830 alloy mainly consists of α-Mg, β-Li, Al2Mn3, and LiMgAl2 phases. Sr addition results in the precipitation of Al-Sr. Moreover, Sr addition results in a fact that the secondary dendrite arm spacing(DAS) of the primary α-Mg phase is obvious refined. Microstructure of the investigated alloys is further refined as a result of the hot extrusion treatment. The content and morphology of the secondary phases have important effects on the mechanical properties of the alloys. The as-extruded LAM830-0.5Sr alloy exhibits an optimal elongation of 22.43% and as-extruded LAM830-0.75 Sr alloy shows an optimal tensile strength of 265.46 MPa.
文摘在AZ91D镁合金中仅添加Al_4Sr增强相,或复合添加Al_4Sr和石墨烯增强相,分析不同增强相对镁基复合材料的显微组织、耐磨损性能、耐腐蚀性能和高温力学性能的影响。结果表明,复合添合Al_4Sr和石墨烯增强相不仅明显提高材料的高温强度、耐磨损性能和耐腐蚀性能,还能改善材料的塑韧性。与未添加增强相的AZ91D镁合金相比,复合添合Al_4Sr和石墨烯增强相可使合金的150℃抗拉强度提高98.9%、屈服强度提高175.2%、断后伸长率基本不变,室温磨损体积减小85.5%,室温腐蚀电位正移198 m V。