个人信息Personal Information
教授
博士生导师
硕士生导师
任职 : 中国体视学会材料科学分会理事;中国体视学会金相分会理事
性别:男
毕业院校:东北大学
学位:博士
所在单位:材料科学与工程学院
学科:材料学
办公地点:新三束实验室(4号楼)305
联系方式:13390512391
电子邮箱:wynmm@dlut.edu.cn
Effect of solution heat treatment on the precipitation behavior and strengthening mechanisms of electron beam smelted Inconel 718 superalloy
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论文类型:期刊论文
发表时间:2017-03-24
发表刊物:MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING
收录刊物:SCIE、EI、Scopus
卷号:689
页面范围:257-268
ISSN号:0921-5093
关键字:Inconel 718; Electron beam smelting; Microstructure; Vickers hardness; Precipitation strengthening
摘要:Inconel 718 superalloy was fabricated by electron beam smelting (EBS) technique. The effect of solution heat treatment on the precipitation behavior and mechanical properties of EBS 718 superalloys were studied, the strengthening mechanisms were analyzed and related to the mechanical properties. The results indicate that the optimized microstructures can be acquired by means of EBS, which is attributed to the rapid cooling rate of approximately 280 degrees C/min. The solution heat treatment shows a great impact on the microstructures, precipitation behavior and mechanical properties of EBS 718 superalloy. The y(') (') phase shows an apt to precipitate at relatively lower solution temperatures followed by aging, while the y(') precipitates are prone to precipitate at higher, temperatures. When solution treated at 1150 degrees C, the y(') precipitates are dispersively distributed in the matrix with size and volume fraction of 8.43 nm and 21.66%, respectively, a Vickers hardness of approximately 489 HV0.1 is observed for the aged superalloy. The precipitation strengthening effect of EBS 718 superalloy could be elucidated by considering the interaction between the dislocations and y(') (')/y(') precipitates. The shearing of y' is resisted by the coherency strengthening and formation of antiphase boundary (APB), which shows equal effect as weakly coupled dislocation (WCD) model. And for y(') ('), the strengthening effect is much more prominent with the primary strengthening mechanism of ordering. Moreover, it is interestingly found that the strengthening mechanism of stacking fault (SF) shearing coexists with APB shearing, and SF shearing plays a major role in strengthening of EBS 718 superalloy.