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作 者:刘卫萍[1] LIU Weiping(Department of Mechanical and Electrical Engineering, Sichuan Vocational College of Information Technology, Guangyuan 628040, Chin)
机构地区:[1]四川信息职业技术学院机电工程系,四川广元628040
出 处:《材料开发与应用》2018年第2期73-78,共6页Development and Application of Materials
基 金:四川省教育厅科研项目(17ZB0065)
摘 要:针对Mg-Gd-Y合金塑性较差的问题,研究了固溶态和不同温度锻造加工态高强Mg-Gd-Y合金的组织与性能。结果表明,固溶态Mg-Gd合金的晶粒尺寸不均匀,平均尺寸约225μm;当锻造加工温度为440℃和410℃时,合金中第二相的数量较多,大量弥散分布的第二相的存在可以抑制动态再结晶的形成;随着锻造加工温度的降低,Mg-Gd合金的抗拉强度和屈服强度呈现逐渐升高的趋势,在锻造加工温度为470℃时,Mg-Gd合金的断后伸长率达到最大值19.2%,降低锻造加工温度至440℃和410℃时,断后伸长率反而有所降低;固溶态Mg-Gd合金的拉伸断口呈现脆性断裂的特征;锻造加工温度为500℃的拉伸断口呈现混合断裂特征,而锻造加工温度为410℃、440℃和470℃时Mg-Gd合金的断口都呈现为韧性断裂特征。In order to solve the problem of poor plasticity of Mg-Gd-Y alloy,the microstructure and properties of Mg-Gd-Y alloys of solid solution state and forged at different temperatures were studied. The results showed that the grain size of solid solution Mg-Gd alloy was not uniform,and the average size was about 225 μm; when the forging temperatures were 440 ℃ and 410 ℃,the number of second phases in the alloys were large,and a large number of dispersed second phases could inhibit the formation of dynamic recrystallization; with the decreasing of forging temperature,the tensile strength and yield strength of Mg-Gd alloy showed increasing trend; when the forging temperature was 470 ℃,the elongation of Mg-Gd alloy reached the maximum value of 19. 2%,and when the forging temperatur reduced to 440 ℃ and 410 ℃,the elongation decreased; the tensile fracture surface of the solid solution Mg-Gd alloy showed the feature of brittle fracture,and the tensile fracture surface at the temperature of500 ℃ was mixed fracture,while the fracture surfaces of the Mg-Gd alloys were characterized by ductile fracture at 470 ℃,440 ℃ and 410 ℃.
分 类 号:TG146.2[一般工业技术—材料科学与工程]
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