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个人简介

2002年9月至2009年1月就读于中原工学院机电学院机械设计制造及其自动化专业,2006年9月获工学学士学位,2009年1月获工学硕士学位。2012年9月至2016年9月就读于西安交通大学机械工程学院机械工程专业,获工学博士学位。2016年6月至今中原工学院机电学院讲师,校级青年骨干教师,硕士生导师。 获奖情况 1. 西安交通大学第五届NSK机械工程学优秀论文成果奖 2. 2016届西安交通大学优秀毕业生(博士) 3. 2019年河南省教学技能竞赛工科一等奖

研究领域

1. 机械振动噪声分析控制与利用 2. 现代纺织装备技术与系统 3. 先进制造工艺装备及其自动化

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

1. Li Mingming, Wang Dongqiang, Chen Wenguang Dong Xuewu, Yu Hechun. Comments on "Theoretical and simulation analysis of abrasive particles in centrifugal barrel finishing: Kinematics mechanism and distribution characteristics"[J]. Powder Technology, 2019, 353: 433-436(SCI: IE9LE). 2. Wang Dongqiang, Wu Chengjun, A novel prediction method of vibration and acoustic radiation for rectangular plate with particle dampers [J]. Journal of Mechanical Science and Technology, 2018, 32(7): 3483‑3485 (SCI: GN5CW). 3. Wang Dongqiang, Wu Chengjun, Yang Ruichao. Prediction of vibration response and acoustic radiation of a thin-walled box with particle dampers using multiphase flow theory of gas-particle[J]. Noise Control Engineering Journal, 2016, 64(1): 85‑98 (SCI: DG3XV). 4. Wang Dongqiang, Wu Chengjun. A novel prediction method of vibration and acoustic radiation for rectangular plate with particle dampers [J]. Journal of Mechanical Science and Technology, 2016, 30(3): 1021‑1035 (SCI: DG7AX). 5. Wang Dongqiang, Wu Chengjun. Vibration Response Prediction of Plate with Particle Dampers Using Cosimulation Method[J]. Shock and Vibration, 2015, 2015(Article ID 270398): 14 pages (SCI: CX2RK). 6. Wang Dongqiang, Wu Chengjun. Parameter estimation and arrangement optimization of particle dampers on the cantilever rectangular plate[J]. Journal of Vibroengineering, 2015, 17 (5): 2503-2520 (SCI: CP6QT). 7. Wang Dongqiang, Wu Chengjun, Yang Ruichao. Free Vibration of the Damping Beam Using Co-simulation Method Based on the MFT [J]. International Journal of Acoustics and Vibration, 2015. 20(4): 251-257 (SCI: CZ5CJ). 8. Wu Chengjun, Wang Dongqiang; Yang Ruichao, et al. Acoustic radiation response prediction of thin-walled box with particle dampers using multiphase flow theory of gas-particle[C]. Proceedings of the 43rd International Congress on Noise Control Engineering, Melbourne, Australia, November 16-19, 2014: 617-624 (EI: 20150900584863). 9. Wang Dongqiang, Wu Chengjun, Yang Ruichao, et al. Forced vibration of the particle-damping beam based on multiphase flow theory of gas-particle[C]. Proceedings of the 21st International Congress on Sound & Vibration, Beijing, China, 13-17 July, 2014: 114-121 (EI: 20150700526219). 10. Wang Dongqiang, Wu Chengjun, Yang Ruichao. An insight into the analytical models of granular particle damping [J]. Advanced Materials Research, 2013, 819: 13-19 (EI: 20134316904802). 11. 吴成军,杨瑞超,王东强.基于气体-颗粒两相流理论的颗粒阻尼悬臂梁振动响应预估[J].机械工程学报,2013,49(10):53-61 (EI:20132516433070).

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