王文玺(副研究员)
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- 曾获荣誉:
2022-12-30曾获荣誉当选:2021年重庆市科技进步一等奖;
2020-08-25曾获荣誉当选:机械工程学报:青年杰出论文奖 - 硕士生导师
- 教师英文名称:Wenxi Wang
- 电子邮箱:
- 所在单位:高端装备机械传动全国重点实验室
- 职务:Associate Researcher
- 学历:研究生(博士后)
- 办公地点:A区机械与运载工程学院(第七教学楼)7504室
- 性别:男
- 联系方式:E-mail:wx.wang@cqu.edu.cn
- 学位:博士学位
- 在职信息:在职
- 毕业院校:北京交通大学
- 所属院系:机械与运载工程学院
- 学科:机械制造及其自动化
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- HE Zhe,LIU Yueming(外),HE Zhe(外),LI Jianyong(外).Investigation of conditions leading to critical transitions between abrasive belt wear modes for rail grinding:WEAR,2021,484-485):-
- 樊文刚,樊文刚(外),王俊达(外),张鑫乐(外),钱畅(外),马腾飞(外).Microscopic contact pressure and material removal modeling in rail grinding using abrasive belt:PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART B-JOURNAL OF ENGINEERING MANUFACTURE,2021,235(1-2):3-12
- 肖贵坚,宋康康(学),刘帅(学),吴源(学).Comprehensive investigation into the effects of relative grinding direction on abrasive belt grinding process:JOURNAL OF MANUFACTURING PROCESSES,2021,62):753-761
- 王文玺,Ferdinando Salvatore(外),Joel Rech(外).Characteristic assessment and analysis of residual stresses generated by dry belt finishing on hard turned AISI52100:JOURNAL OF MANUFACTURING PROCESSES,2020,59):11-18
- 赵超越,李建勇(外),赵超越(外).Forming mechanisms based simulation and prediction of grinding surface roughness for abrasive belt rail grinding:Procedia CIRP,2020,87):503-508
- 王文玺,李建勇(外),吴源(学),樊文刚(外).钢轨砂带打磨残余应力的试验与仿真研究:金刚石与磨料磨具工程,2020,40(3):5-12
- 黄云,刘帅(学),贺毅(学),王文玺,代文韬(学).Prediction of Surface Residual Stress on Titanium Alloy generated by Belt Grinding using Molecular System Dynamics:Procedia CIRP,2020,87):480-484
- 肖贵坚,贺毅(学),宋康康(学),黄云,王文玺,何水(学).Study on the belt grinding method and performance of bionic ribbed structure on titanium alloy sheet:Proceedings of the 14th International Conference on Frontiers of Design and Manufacturing,2020,9):112
- 王文玺,黄云,宋康康(学),何水(学),贺毅(学),刘帅(学).Suppression Study on The Weakly Rigid Contact Chatter in Blisk Grinding with Abrasive Belt:Proceedings of the 14th International Conference on Frontiers of Design and Manufacturing
- 樊文刚,张帅(外),樊文刚(外),王俊达(外),王煦辉(外).TEMPERATURE FIELD OF OPEN-STRUCTURED ABRASIVE BELT RAIL GRINDING USING FEM:INTERNATIONAL JOURNAL OF SIMULATION MODELLING,2020,19(2):346-356