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个人信息Personal Information
教授 博士生导师 硕士生导师
性别:男
毕业院校:南京航空航天大学
学历:博士研究生毕业
学位:工学博士学位
在职信息:在职
所在单位:机电与信息工程学院
入职时间:2011-03-09
办公地点:知行北楼305室
联系方式:rzliuyong@163.com
电子邮箱:rzliuyong@163.com
Ultrasonic vibration-aided electrochemical drill-grinding of SLM-printed Hastelloy X based on analysis of its electrochemical behavior
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所属单位:Shandong University, Weihai
发表刊物:Electrochemistry Communications
关键字:Ultrasonic vibration aided electrochemical drill-grindingElectrochemical behaviorSelective laser meltingHastelloy XSmall holes
摘要:Selective laser melting (SLM) technology is one of the research hotspots of additive manufacturing technology, and Hastelloy X is a material which is widely used in the aerospace field. However, the forming accuracy and surface quality of Hastelloy X holes printed by SLM often do not meet engineering requirements and need further processing. Therefore, ultrasonic vibration-aided electrochemical drill-grinding technology (UAECDG) was proposed as a method for machining small holes with high quality on SLM-printed Hastelloy X workpieces. Firstly, the electrochemical behavior of SLM-printed Hastelloy X was investigated, and its microstructure and corrosion resistance were studied using electron backscattered diffraction (EBSD). Secondly, numerical simulation of the electrochemical drill-grinding process was performed. Thirdly, a series of experiments was carried out to explore the influence of electrode shape, electrical parameters and ultrasonic vibrations on the quality of the small holes. Finally, the UAECDG method with a hemispherical electrode was successfully used to machine with high precision small holes with a diameter of 1215.0 ± 5 μm, surface roughness of 0.446 μm and a taper of less than 1.5 degrees on a 1.2 mm thick SLM-printed Hastelloy X workpiece. This demonstrated the usefulness of UAECDG technology for machining small holes in a SLM-printed superalloy.
全部作者:Kan Wang, Tengfei Peng, Wenchao Guan
第一作者:Tong Shu
论文类型:Research Paper
通讯作者:Yong Liu
论文编号:10.1016/j.elecom.2022.107208
文献类型:Journal article
卷号:135
页面范围:107208
ISSN号:1388-2481
是否译文:否
发表时间:4459-03-01