汪舟,男,汉族,1981年9月生,毕业于上海交通大学卡尔斯鲁厄理工学院机械材料专业,博士,教授,现任智慧交通学院院长。
学习及工作经历
2000.09 - 2004.6 武汉理工大学材料科学与工程学院,本科学习
2004.09 - 2006.06 武汉理工大学材料科学与工程学院+硅酸盐建筑材料国家重点实验室(武汉理工大学),工学硕士(本硕连读基地班)学习
2006.09-2011.06 上海交通大学-卡尔斯鲁厄理工学院(机械-材料)联合培养博士(2008年9月至 2010年1月,留学基金委资助赴德国卡尔斯鲁厄理工学院(KIT)联合培养)
2011.07-2012.01 中国航天科技集团第八研究院800研究所,工程师
2012.02-2023.07 武汉理工大学汽车工程学院车辆工程系,讲师,副教授(2018.06-2018.11,美国佐治亚理工学院(GT)访问学者)
2023.08-2024.01 新疆职业大学机械电子学院,院长(中组部,教育部第十一批援疆干部)
2024.02-至今,新疆职业大学智慧交通学院,院长(中组部,教育部第十一批援疆干部)
科研成果方面
(一)科研项目
两级交变载荷下船体节点疲劳损伤规律研究,项目批准号:51879208,国家自然科学基金项目面上项目,起止年限:2019.01-2022.12
高低频复合载荷下船体节点疲劳损伤机理与寿命预测方法研究”,项目批准号:52371335,国家自然科学基金项目面上项目,起止年限:2024.01-2027.12
热应力高能喷丸强化齿轮钢微观结构演变和疲劳机理研究,项目批准号:51405356,国家自然科学基金项目青年基金,起止年限:2015.01-2017.12.
高压发生器适应性改造及探测器三维旋转平台试制,项目批准号:2012WQ050076,国家重大科学仪器专项子项,国家科技部,起止年限:2013.01-2014.12.
多弹丸撞击过程材料动态响对20CrMnTi钢疲劳性能的影响,项目批准号:20130143120015,教育部博士点基金新教师项目,国家教育部,起止年限:2014.01-2016.12.
齿轮零部件材料喷丸强化及抗疲劳机理研究,项目批准号:2012-IV-067,武汉理工大学新任教职博士(后)人员项目,起止年限:2012.04-2014.03.
5.汽车关键零部件复合喷丸强化与抗疲劳性能研究,项目批准号:2013-VII-020,武汉理工大学交叉学科创新研究项目,起止年限:2013.06-2015.05.
6. LTCC材料物理化学性能分析, 2021. 09–2021.12, 项目批准号:20212h0263?北京建筑材料科学研究总院有限公司
7.喷丸工艺对悬架弹簧表面质量残余应力和疲劳寿命影响仿真分析,2021.01 - 2021. 07?项目批准号:20211h0039?,广汽集团广州华德汽车弹簧有限公司
8.汽车空心稳定杆内壁喷丸工艺参数计算分析合同,2021.01-2021.07?项目批准号:20211h0041?,广汽集团广州华德汽车弹簧有限公司
9.汽车稳定杆淬火后各位置变化量计算分析,2021.01-?2021.07,项目批准号:20211h0040,?广汽集团广州华德汽车弹簧有限公司
10. 1122-TJ1600架桥机计算仿真分析,2019. 03?- 2019.05?, 项目批准号:20191h0120,徐工集团工程机械股份有限公司
11.车身异响仿真联合开发项目SNRD??橹苯臃ㄒ煜旆治鲇呕?,2020. 01?- 2021. 01, ?项目批准号:20202h0019?中国汽车工程研究院股份有限公司?
12.海马EN00异响DMU检查分析,2019.09?- 2020.08?,项目批准号:20202h0017?,中国汽车工程研究院股份有限公司
14.高硼硅玻璃管(YT140)环切等级性能评估研究, 2019. 01?- 2020. 01,项目批准号:20192h0055?,中国建筑材料科学研究总院有限公司?。
(二)学术论文
[1] Zhou Wang, Jin Gan, Jiaxi He, Xiaoli Wang, Ying Yang, Ming Shi, Xudong Ren, Investigation of the effects of shot overlap and rigid body assumptions on surface layer characteristics in shot peening simulation, Surface and Coatings Technology, 425 (2021) 127737
[2] Zhou Wang, Ming Shi, Jin Gan*, Xiaoli Wang, Ying Yang, Xudong Ren, The effects of shot distance and impact sequence on the residual stress field in shot peening finite element model, Metals, 11, 462.
[3] Zhou Wang, Xiaoli Wang*, Haiming Huang, Jin Gan, Ying Yang, Jiaxi He, Ming Shi, Effect of High-Energy Shot Peening on Surface Nanocrystallization and Integrity of AISI 4140 Steel: A Numerical and Experimental Investigation, Journal of Materials Engineering and Performance, https://doi.org/10.1007/s11665-021-05821-1,2021
[4] Hanlie Zhong, Zhou Wang*, Jin Gan, Xiaoli Wang, Ying Yang, Jiaxi He, Tingting Wei, Xunpeng Qin, Numerical simulation of martensitic transformation plasticity of 42CrMo steel based on spot continual induction hardening model, Surface and Coatings Technology, 385 (2020) 125428. (SCI)
[5] Haiming Huang, Zhou Wang*, Jin Gan, Ying Yang, Xiaoli Wang, Jiaxi He, Xiaoyan Gan, The study of universality of a method for predicting surface nanocrystallization after high energy shot peening based on finite element analysis, Surface and Coatings Technology, 358 (2019) 617-627. (SCI) (JCRQ1)
[6] Xiaoli Wang, Zhou Wang*,Gang Wu, Jin Gan, Yiang Yang, Haiming Huang, Jiaxi He, Hanlie Zhong, Combining the finite element method and response surface methodology for optimization of shot peening parameters, International Journal of Fatigue, 129 (2019) 105231 (SCI)
[7] Xiaoli Wang, Qingshuai Meng, Zhou Wang*, Jin Gan, Yiang Yang, Xunpeng Qin, Kai Gao, Hanlie Zhong, Man Cheng, Xiaoyan Gan, Prediction of the surface characteristic of 42CrMo after spot continual induction hardening based on a novel co-simulation method, Surface and Coatings Technology, 375 (2019) 252-266. (SCI)
[8]Jin Gan*, Kai Zhao, Zhou Wang, Xiaoli Wang, Weiguo Wu, Fatigue damage of designed T-type specimen under different proportion repeating Two-Step variable amplitude loads, Engineering Fracture Mechanics 221 (2019) 106684 (SCI)
[9] Gang Wu, Zhou Wang*, Jin Gan, Ying Yang, Qingshuai Meng, Shun Wei, Haiming Huang, FE analysis of shot-peening-induced residual stresses of AISI 304 stainless steel by considering mesh density and friction coefficient, Surface Engineering, 35 (2019) 242-254.
[10] Junjie Huang, Zhou Wang*, Jin Gan, Gang Wu, Qingshuai Meng, Investigation of fatigue performance improvement in SiCw/Al composites with different modified shot peening treatments by considering surface mechanical properties, , Journal of Alloys and Compounds, 728 (2017) 169-178, (SCI)
[11] Kai Gao, Xunpeng Qin*, Xuliang Chen, Zhou Wang, Zhenhua Zhu, Man Cheng, Effect of curved surface shape and feed velocity on microstructure and mechanical performance of gray cast iron after spot continual induction hardening, Journal of Materials Engineering and Performance. 26 (2017) 1993-2002. (SCI)
[12] Xunpeng Qin*, Kai Gao, Zhenhua Zhu, Xuliang Chen, Zhou Wang, Prediction and optimization of phase transformation region after spot continual induction hardening process using response surface method, Journal of Materials Engineering and Performance, 26 (2017) 4578-4594. (SCI)
[13] Xunpeng Qin*, Kai Gao, Zhou Wang, Xuliang Chen, Effect of Spot Continual Induction Hardening on the Tribological Performance of Grey Cast Iron with Curved Surface, Tribology Transactions, 2017, DOI: 10.1080/10402004.2017.1300969. (SCI)
[14] Di Sun, Jin Gan* ,Zhou Wang, Peng Luo, Weiguo Wu, Experimental and analytical investigation of fatigue crack propagation of T-welded joints considering the effect of boundary condition, Fatigue & Fracture of Engineering Materials and Structures, 40(6) (2017) 894-908. (SCI)
[15] Di Sun, Jin Gan*, Zhou Wang, Wei-guo Wu, Experimental study on Fatigue Characteristics of T-welded Joint under Repeating Two-step Load, Proceedings of the Twenty-seventh (2017) International Ocean and Polar Engineering Conference San Francisco, CA, USA, June 25-30, 146-153
[16] Man Cheng, Zhou Wang*, Xunpeng Qin, Kai Gao, Yong Wang, Experimental study about the effect of heating power of spot induction hardening on material properties of 42CrMo, The 3nd International Conference on Advanced High Strength Steel and Press Hardening ICHSU 2016, 2016/08/25-2016/08/27, pp 199-208, 西安. (EI)
[17] Peng Luo, Zhou Wang*, Gang Wu, Yong Wang, Man Cheng, Literature review on state of the art in shot peening in the last decade (2006-2015), The 3nd International Conference on Advanced High Strength Steel and Press Hardening ICHSU 2016, 2016/08/25-2016/08/27, pp 455-468, 西安. (EI)
[18] Jin Gan, Di Sun, Zhou Wang*, Peng Luo, Weiguo Wu, The effect of shot peening on fatigue life of Q345D T-welded joint, Journal of Constructional Steel Research, 126 (2016) 74-82. (SCI)
[19] Chen Ni, Lin Hua*, Xiaokai Wang, Zhou Wang, Xunpeng Qin, Zhou Fang, Coupling method of magnetic memory and eddy current nondestructive testing for retired crankshafts, Journal of Mechanical Science and Technology, 30(7) (2016) 3097-3104. (SCI)
[20] Gao Kai, Wang Zhou*, Qin Xunpeng, Zhu Shengxiao, Numerical analysis of 3D spot continual induction hardening on curved surface of AISI 1045 steel, Journal of Central South University, 23 (2016) 1152-1162. (SCI)
[21] Lechun Xie*, Chengxi Wang, Liqiang Wang, Zhou Wang*, Chuanhai Jiang, Weijie Lu, Viencent Ji, Numerical analysis and experimental validation on residual stress distribution of titanium matrix composite after shot peening treatment, Mechanics of Materials, 99 (2016) 2-8. (SCI)
[22] Kai Gao, Xunpeng Qin*, Zhou Wang, Shengxiao Zhu, Zhongming Gan, Effect of magnetizer geometry on the spot induction heating process, Journal of Materials Processing Technology, 231 (2016) 125-136. (SCI)
[23] Shengxiao Zhu, Zhou Wang*, Xunpeng Qin, Huajie Mao, Kai Gao, Theoretical and experimental analysis of two-pass spot continual induction hardening process of AISI 1045 steel, Journal of Materials Processing Technology, 229 (2016) 814-825. (SCI)
[24] Kai Gao, Xunpeng Qin*, Zhou Wang, Shengxiao Zhu, Effect of spot continual induction hardening on the microstructure of steels: Comparison between AISI 1045 and 5140 steels, Materials Science and Engineering: A 651 (2016) 535-547. (SCI)
[25] Shengxiao Zhu, Zhou Wang*, Xunpeng Qin, Huajie Mao, Kai Gao, Prediction of Phase Transformation and Hardness Distribution of AISI 1045 Steel After Spot Continual Induction Hardening, Journal of Materials Engineering and Performance 24 (2015) 3919-3932. (SCI)
[26] 申建国,汪舟*,卢伟,罗素晖,王晓丽,罗雄,郑文文,汪帆星,张旭,有限元模拟和神经网络相结合的喷丸处理SAE9254钢疲劳寿命预测,机械工程材料,第48卷,第7期:77-84页,2024年
[27]任旭东,汪舟*, 卢伟,罗素晖,王晓丽,邓小云,刘浩均,郑世祺,张旭,基于 FEM–DEM 的空心稳定杆内壁喷丸仿真分析,表面技术,第52卷,第1期:410-420页,2023年
[28]石明, 汪舟*, 甘进, 杨莹, 王晓丽, 任旭东, 申建国, 邱斌, 基于GA-BP神经网络的喷丸样品表层硬度预测模型,表面技术,第51卷,第1期:332-338页,357页 2022年
[29] 韦婷婷,汪舟,罗素晖,卢伟,王晓丽,邓小云,赵清波,于津伟,汽车横向稳定杆用60Si2MnA 钢淬火变形的数值模拟,材料热处理学报,第43卷,第6期:163-174页,2022年
[30] 钟汉烈,汪舟*,甘进,王晓丽,杨莹,闫占乱,韦婷婷,基于ABAQUS-Matlab对42CrMo钢表面感应淬火奥氏体化参数的研究,表面技术,第49卷,第9期:266-273页,2020年
[31] 何嘉禧,汪舟*,甘进,杨莹,王晓丽,石明,任旭东,二次喷丸42CrMo钢表面完整性的数值模拟研究,表面技术,第49卷,第9期:216-223页,2020年
基于FRANC3D和ABAQUS联合仿真三维疲劳裂纹扩展分析及寿命预测,熊勋,杨莹*,汪舟,甘进,王晓丽,盖文岳,李杨,武汉理工大学学报(交通科学与工程版)第44卷,第3期,506-512页,2020年
[32] 魏顺,汪舟*,杨莹,王晓丽,钟汉烈,田哲文,喷丸改善Q235B对接焊接头残余应力场的有限元分析,热加工工艺,第49卷,第9期:122-129,2020年
[33]孟庆帅,汪舟*,甘进,杨莹,伍刚,钟汉烈,熊勋,高恺,甘小燕,喷丸强化改善点式移动感应淬火42CrMo钢残余应力数值模拟分析,表面技术,第47卷,第9期:12-20页,2018年
[34] 罗鹏,汪舟*,甘进,杨莹,伍刚,42CrMo钢超声喷丸强化模拟与实验研究,武汉理工大学学报,第39卷,第4期:1-8页,2017年
[35] 朱生霄,秦训鹏*,汪舟,毛华杰,高恺,多道次点式连续移动感应淬火数值模拟,中国表面工程,第28卷,第3期:122-130页,2015年 (EI)
(三)发明专利
[1] 汪舟,郑世祺,王晓丽,杨莹,叶明鑫,熊维杰,夏煜辰,李杜,申建国,高压水射流喷丸的模拟方法,专利号:ZL 2022 1 0628266.0
[2] 汪舟,张旭, 王晓丽,杨莹,曾思明,王昱杰,贾沛松,王腾龙,申建国,汪帆星,一种汽车悬架弹簧冷抛丸强化残余应力预测方法,专利号:ZL 2022 1 0661377.6
[3] 汪舟,邱文科,叶海涛,王广启,刘叶青,朱庆良,一种承载大扭矩的方程式赛车碳纤维半轴及其制备方法,专利授权号:ZL 2017 1 0297700.5
[4] 吴卫国,郭国虎,李佳卫,叶云凌,王昭宇,甘进,汪舟,一种基于液压机构的组合式支架装置,专利授权号:ZL201621147729.2
[5] 吴卫国,李佳卫,叶云凌,郭国虎,王昭宇,甘进,汪舟,一种高海况并靠隔离浮体,专利授权号:ZL201621147431.1
[6] 秦训鹏,高恺,华林,汪舟,朱生霄,袁振宇,汽车车身覆盖件成形模具型面感应加热淬火强化方法,申请公布号:CN 104388655 A
[7] 华林,刘艳雄,王孝文,汪舟,庄武豪,一种超声波辅助淬火的工艺方法及装置,申请公布号:CN 103333995 A
个人荣誉方面
1.数字化新时代面向工科生的教育指导机制研究与实践、湖北省科技信息成果三等奖、2019-2020;
2.2017中国汽车工程学会巴哈大赛本科院校组年度二等奖指导老师(武汉理工大学);2018,2019, 2021年获得中国汽车工程学会巴哈大赛本科院校组年度一等奖指导老师(武汉理工大学)。
3.2016,2018武汉理工大学青年教师教学竞赛院一等奖,2020武汉理工大学青年教师教学竞赛院二等奖。