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热处理工艺对Mg-6Zn-2Sm-0.4Zr镁合金显微组织和力学性能的影响 被引量:9
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作者 张玉 黄晓锋 +3 位作者 马振铎 李雅 马颖 郝远 《中国有色金属学报》 EI CAS CSCD 北大核心 2017年第10期1961-1969,共9页
通过在Mg-6Zn合金中添加0.4%Zr和2%Sm(质量分数)制备出一种新型Mg-6Zn-2Sm-0.4Zr合金;利用光学显微镜(OM)、扫描电镜(SEM)及能谱仪(EDS)、X射线衍射仪(XRD)、显微硬度及力学性能测试研究铸造Mg-6Zn-2Sm-0.4Zr合金在铸态、固溶、时效处... 通过在Mg-6Zn合金中添加0.4%Zr和2%Sm(质量分数)制备出一种新型Mg-6Zn-2Sm-0.4Zr合金;利用光学显微镜(OM)、扫描电镜(SEM)及能谱仪(EDS)、X射线衍射仪(XRD)、显微硬度及力学性能测试研究铸造Mg-6Zn-2Sm-0.4Zr合金在铸态、固溶、时效处理下的显微组织和力学性能的变化。结果表明:合金铸态组织主要由基体α-Mg、晶界处呈连续或半连续分布的(α-Mg+Mg_2Zn_3+Mg_(41)Sm_5)共晶和晶内孤立的点状相组成。合金在440和450℃固溶12~36 h时间范围内,随着时间和温度的增加,固溶效果逐渐增强。当在450℃固溶28 h时获得了较好的显微组织,抗拉强度为230 MPa,伸长率为9.58%。随后经200℃时效6~48 h后,合金的力学性能明显提高,时效强化效应随时间的延长呈先增加后减小的趋势,其中时效12 h时同时出现了抗拉强度和伸长率的峰值258 MPa和14.43%,比铸态的分别提高44 MPa和90.80%。 展开更多
关键词 mg-6zn-2sm-0.4zr镁合金 固溶处理 时效处理 显微组织 力学性能
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Effects of heat treatment on microstructure and mechanical properties of Mg-6Zn-4Sm-0.4Zr alloy
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作者 Xiao-feng Huang Yu Zhang +3 位作者 Feng Guo Jian-chang Yang Ying Ma Yuan Hao 《China Foundry》 SCIE 2018年第2期103-109,共7页
A new rare earth magnesium alloy(Mg-6 Zn-4 Sm-0.4 Zr, wt.%) was prepared by permanent mould casting. The microstructure and mechanical properties of the alloy sample in as-cast and various heat treatment situations we... A new rare earth magnesium alloy(Mg-6 Zn-4 Sm-0.4 Zr, wt.%) was prepared by permanent mould casting. The microstructure and mechanical properties of the alloy sample in as-cast and various heat treatment situations were characterized with an optical microscope(OM), X-ray diffractometer(XRD), scanning electron microscope(SEM) equipped with energy dispersive spectroscope(EDS), transmission electron microscope(TEM) and mechanical tests at room temperature, respectively. The experimental results show that the as-cast alloy mainly consists of α-Mg, eutectic Mg_2Zn_3, MgZnSm and Mg_(41)Sm_5. These eutectic phases with continuous or semicontinuous morphology principally distribute along grain boundaries. Almost all the eutectic compounds dissolve in α-Mg and the grains have no obvious growth trend after optimum solution treatment at 490 °C for 18 h. Meanwhile, the ultimate tensile strength(UTS) of 229 MPa and elongation(EL) to rupture of 9.78% can be achieved through the optimal solution treatment, which increase by 37 MPa and 57.74%, respectively, compared with that of the as-cast alloy. Further aging treatments at 200 °C for different durations lead to the conspicuous increment of mechanical properties and prominent age-hardening response. Peak-aged alloy(treated at 200 °C for 12 h) reveals better mechanical properties(UTS 258 MPa, EL 9.42%, hardness 73.4 HV) compared with the same alloy treated in other aging conditions, which is mainly ascribed to precipitated Mg_2Zn_3 and MgZn_2 phases. Fracture analysis demonstrates that the as-cast alloy belongs to inter-granular and cleavage fracture patterns, while the solutionized alloy(treated at 490 °C for 18 h) reveals trans-granular and quasi-cleavage fracture modes. For the peak-aged alloy, the fracture pattern obeys the mixture of trans-granular and cleavage modes. 展开更多
关键词 mg-6zn-4sm-0.4zr alloy heat treatment microstructure evolution mechanical properties fracture mode
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