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副教授 硕士生导师
入职时间:
2017-07-06
所在单位:
机电工程学院
学历:
博士研究生毕业
办公地点:
机电楼A412
性别:
男
联系方式:
18202764498@163.com
学位:
博士学位
在职信息:
在职
毕业院校:
华中科技大学
学科:
机械工程
论文成果
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论文成果
[1]A new high-speed observation system for evaluating the spark location in WEDM of Inconel 718
[2]One-step fabrication of the wear-resistant superhydrophobic structure on SiCp/Al composite surface by WEDM
[3]Machining characteristics of 65 vol.% SiCp/Al composite in micro-WEDM
[4]Investigation of the Surface Properties and Wear Properties of AISI H11 Steel Treated by Auxiliary Heating Plasma Nitriding 等级Q2.COATINGS
[5]Ph.D., Hongzhi Yan; Kabongo djo Bakadiasa; Zhaojun Yan; Fenglin Han; Zhi Chen.Chen Zhi et al. Sustainable production of high-uniformity workpiece surface quality in wire electrical discharge machining by fabricating surface microstructure on wire electrode.等级 Q1[J].Journal of Cleaner Production, 2020
[6]Fenglin Han, Hongbing Zhou, Zhaojun Yan, Zhi Chen*, Bakadiasa kabongo djo, Hongzhi Yan.Chen Zhi, et al. Attainment of high corner accuracy for thin-walled sharp-corner part by WEDM based on magnetic field assisted method and parameters optimization. 等级Q2[J].The International Journal of Advanced Manufacturin, 2020
[7]Chen Z. et al. Study on the white layer in wire electrical discharge trim cutting of bearing steel GCr15[J]. Journal of Advanced Manufacturing Technology, 等级:Q2
[8]Chen Z. et al. Investigation on a novel surface microstructure wire electrode for improving machining efficiency and surface quality in WEDM[J]. Journal of Advanced Manufacturing Technology, 等级:Q2
[9]Chen Z. et al. Improvement of the machining characteristics in WEDM based on specific discharge energy and magnetic field assisted method [J]. Journal of Advanced Manufacturing Technology, 等级:Q2
[10]Chen Z. ZhangY. , et al. Modeling and reducing workpiece corner error due to wire deflection in WEDM rough corner-cutting [J] Journal of Manufacturing Processes, 2018, 36:557-564. 等级:Q1
[11]Chen Z, Zhang G, Han F, et al. Determination of the optimal servo feed speed by thermal model during multi-pulse discharge process of WEDM[J]. International Journal of Mechanical Sciences, 2018.等级:Q1
[12]Zhang G, Zhang Y, Chen Z, et al. Magnetic-assisted method and multi-objective optimization for improving the machining characteristics of WEDM in trim cutting magnetic material[J]. Wireless Internet Technology, 2017:1-18.(通讯作者) 等级:Q2
[13]Chen Z, Zhang G. Study on magnetic field distribution and electro-magnetic deformation in wire electrical discharge machining sharp corner workpiece[J]. International Journal of Advanced Manufacturing Technology, 2018:1-11. 等级:Q2
[14]Chen Z, Zhang G, Yan H. A high-precision constant wire tension control system for improving workpiece surface quality and geometric accuracy in WEDM[J]. Precision Engineering, 2018. 等级:Q1
[15]Chen Z, Huang Y, Han F, et al. Numerical and experimental investigation on laser transmission welding of fiberglass-doped PP and ABS[J]. Journal of Manufacturing Processes, 2018, 31: 1-8. 等级:Q1
[16]Chen Z, Zhang Y, Zhang G, et al. Theoretical and experimental study of magnetic-assisted finish cutting ferromagnetic material in WEDM[J]. International Journal of Machine Tools & Manufacture, 2017, 123.等级:Q1 Top1
[17]Chen Z, Huang Y, Huang H, et al. Three-dimensional characteristics analysis of the wire-tool vibration considering spatial temperature field and electromagnetic field in WEDM[J]. International Journal of Machine Tools & Manufacture, 2015, 92:85-96. 等级:Q1 Top1
[18]Chen Z, Huang Y, Zhang Z, et al. An analysis and optimization of the geometrical inaccuracy in WEDM rough corner cutting[J]. International Journal of Advanced Manufacturing Technology, 2014, 74(5-8):917-929. 等级:Q2
[19]Zhang G, Chen Z, Zhang Z, et al. A macroscopic mechanical model of wire electrode deflection considering temperature increment in MS-WEDM process[J]. International Journal of Machine Tools & Manufacture, 2014,等级Q1,Top1
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