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吴参

职称:教授

毕业院校:浙江大学

邮件:wucan@hdu.edu.cn

办公地点:

职务:

研究方向:

个人简介

吴参,教授,校聘钱江学者A岗。担任中国机械工程学会摩擦学分会理事、可靠性分会理事、中国石油学会石油炼制分会润滑脂专家委员会委员、全国试验机标准化委员会委员、浙江省机械工程学会摩擦学分会常务理事等。


主要研究兴趣:

1. 特种工况下润滑介质配伍技术

2. 轴承摩擦润滑设计优化技术及动力学仿真

3. 基础件中智慧润滑技术


主持国家自然科学基金项目(2项),国家重点研发计划子课题、浙江省自然科学基金(3项)、省属高校科研基本业务费重点项目等科研项目。在《Applied Surface Science》、《Tribology International》、《Friction》、《Ceramics International》、《Tribology Letters》、《Journal of cleaner production》等领域顶级期刊发表发表SCI论文40余篇,授权发明专利30余项,实施/转让8项。获浙江省科技进步三等奖1次,全国商业联合会科技进步一等奖1次,中国产学研合作创新与促进奖优秀奖。


教育经历

2005.9-2010.9  浙江大学机械工程学系      工学博士   机械设计及理论

2001.9-2005.6  浙江大学能源与机械工程学院  工学学士   机械工程及自动化

工作经历

2010.11-            bob电竞ios 教授、副教授、讲师

2016.7-2016.9       澳大利亚Curtin University访问学者

2017.12-2018.12   新西兰Victoria University of Wellington访问学者

2011.7-2015.7       浙江大学计算机技术博士后流动站&杭州轴承试验中心博士后工作站博士后

社会职务
研究领域
教学与课程
横向科研
纵向科研

[1] 国家自然科学基金面上项目,仿生自输运引导面油脂分布规律及轴承补充供油机制研究,主持

[2] 浙江省自然科学基金重点项目,梯度诱导下超疏油轴承表面油脂自迁移及回补机制研究,主持

[3] 浙江省尖兵科技计划项目,高速高刚性加工中心主轴轴承设计与制造关键技术研究,杭电负责人

[4] 浙江省领雁科技计划项目,高精度高耐久性轴承钢球高性能制造技术与产业化应用,杭电负责人

[5] 国家重点研发计划,滚动轴承超精密制造与检测技术,杭电负责人  

[6] 国家自然科学基金青年项目,柔性支承下高速球轴承蠕滑分析及其动态特性研究,主持

[7] 浙江省自然科学基金一般项目,高速球轴承表面形貌微观调控机理及蠕滑动力学特性研究,主持

[8] 浙江省自然科学基金青年项目,航天固体润滑球轴承的拟动力学分析研究,主持

[9] 省属高校科研基本业务费重点项目,航天固体润滑球轴承的蠕滑动力学及微观表面调控机理研究,主持


论文

陶瓷球轴承

[1]    Can Wu, Yuan Han, Huijun Zhao*, Chen Zheng, Xinglin Li, Jing Ni. Effect of choline chloride/multiple diols deep eutectic solvents on the friction and vibration performance of Si3N4/GCr15 hybrid ceramic ball bearings. Tribology International, 2024, 198: 109845(IF: 6.2,中科院一区Top)

[2]    Can Wu, Zheng Liu, Huijun Zhao, Haining Yang, Xinglin Li, Jing Ni. Effect of the grease thickener on tribological properties of Si3N4/GCr15 contact interface and the performance in hybrid ceramic ball bearing. Ceramics International, 2023, 49:16857-16867. (IF: 5.532,中科院一区Top)

 

轴承表面微结构

[3]  Can Wu, Chen Zheng, Huijun Zhao*, Mariyam Jameelah Ghazali, Yijun Wei, Zefei Zhu. Enhancement of thrust ball bearings performance through biomimetic composite textures: A comparative analysis under grease-starved lubrication condition. Tribology International, 2025, 204: 110483

[4]  Can Wu, Chen Zheng, Paul D. Teal, Yuan Han, Jing Xu, Xinglin Li. Investigation on the performances of thrust ball bearing with a novel oil self-transportation biomimetic composite guiding surface. Alexandria Engineering Journal, 2025, 110: 579-594.    

[5]  Can Wu, Yingwei Wu, Huijun Zhao*, Shuaishuai Li, Jing Ni, Xinglin Li. Influence of hardness of nanoparticle additive in PTFE solid lubricant on tribological properties of GCr15 steel with bionic texture. Tribology International, 189(2023): 108915. (IF: 6.2,中科院一区Top)

[6]    Can Wu, Kai Yang, Jing Ni*,Shuigen Lu, Lidan Yao, Xinglin Li. Investigations for vibration and friction torque behaviors of thrust ball bearing with self-driven textured guiding surface[J]. Friction, 2022, 11: 894-910 (IF: 4.924,中科院一区Top)

 

轴承润滑脂

[7]  Can Wu, Haitao Zheng, Mengmeng Liu*, Qiang Xia, Lidan Yao, Zefei Zhu. Regulatory mechanism of grafted alkyl chain length of carbon quantum dots as additives on the tribological properties of lithium greases. Applied Surface Science, 2025, 682: 161667.

[8]  Can Wu, Qiang Xia, Shuaishuai Li, Jing Ni, Haining Yang, Huijun Zhao. Effect of carbon quantum dots’ surface functional groups on tribological performance of polyethylene glycol. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 2024, 238(16): 8400-8416. 

[9]  Can Wu, Shuaishuai Li, Jing Ni, Lidan Yao, Qiang Xia. Effect of structure of ZnO and SiO2 core-shell composite nanoparticles as lubricant additive on tribological properties of greases. Applied Surface Science, 2024, 657: 159745 (IF: 7.392,中科院一区Top)

[10] Can Wu, Shuaishuai Li,Ying Chen*, Lidan Yao, Xinglin Li, Jing Ni.Tribological properties of chemical composite and physical mixture of ZnO and SiO2 nanoparticles as grease additives[J]. Applied Surface Science, 2023, 612: 155932. (IF: 7.392,中科院一区Top)

[11] Can Wu, Yuyang Hong, Jing Ni*,Paul D. Teal, Lidan Yao, Xinglin Li.Investigation of mixed hBN/Al2O3 nanoparticles as additives on grease performance in rolling bearing under limited lubricant supply[J].Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2023, 659: 130811. (IF: 5.518,中科院二区)

[12] Can Wu, Yijia Xie, Huijun Zhao*, Haining Yang, Xinglin Li, Jing Ni. Effects of hBN and CaCO3 Nanoparticles on Tribological and Vibration Properties of Polyurea Grease on Rolling Bearing[J]. Tribology Letters, 2022, 70: 95. (IF: 3.327,中科院二区)

[13]Can Wu, Zheng Liu, Jing Ni*,Kai Yang, Haining Yang, Xinglin Li. Improved tribological and bearing vibration performance of calcium sulfonate complex grease dispersed with MoS2 and oxide nanoparticles[J].Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 2022, 237(8): 1941-1955. (IF: 1.758,中科院四区)

[14]Can Wu, Kai Yang, Ying Chen*, Jing Ni, Lidan Yao, Xinglin Li.Investigation of friction and vibration performance of lithium complex grease containing nano-particles on rolling bearing[J]. Tribology International, 2021, 155: 106761. (IF: 5.62,中科院一区Top)

[15]Can Wu, Ruifeng Xiong, Jing Ni*, Lidan Yao, Lei Chen, Xinglin Li. Effects of CuO nanoparticles on friction and vibration behaviors of grease on rolling bearing[J]. Tribology International, 2020, 152: 106552. (IF: 5.62,中科院一区Top)

[16]Can Wu, Ruifeng Xiong, Jing Ni*, Paul D. Teal, Maolai Cao, Xinling Li. Effect of grease on bearing vibration performance caused by short-time high temperature exposure[J]. Journal of the Brazilian Society of Mechanical Sciences and Engineering, 2019, 42: 69. (IF: 2.361,中科院四区)

 

 

加工与绿色切削液

[17]Jing Ni, Zhi Cui, Can Wu*, Jingbo Sun, Jiangheng Zhou. Evaluation of MQL broaching AISI 1045 steel with sesame oil containing nano-particles under best concentration[J]. Journal of Cleaner Production, 2021, 320: 128888. (IF: 11.072,中科院一区Top)

[18]Jing Ni, Yongfeng Yang, Can Wu*.Assessment of water-based fluids with additives in grinding disc cutting process[J]. Journal of Cleaner Production, 2019, 212: 593-601. (IF: 11.072,中科院一区Top)

[19]Jing Ni, Jianrong Lang, Can Wu*. Effect of surface texture on the transverse vibration for sawing[J]. The International Journal of Advanced Manufacturing Technology, 2017, 92: 4543-4551. (IF: 3.563,中科院三区)

 

其他振动方向研究

[20]Can WU, Jing Ni, Yang X, et al. Research on the tympanic membrane free vibration model based on thin plate theory[J]. Journal of Mechanics in Medicine & Biology, 2017(9):1750079. (IF: 0.883,中科院四区)

[21]Can WU, Lei Chen, Jing Ni, Jing Xu. Modeling and experimental verification of a new muffler based on the theory of quarter-wavelength tube and the Helmholtz muffler[J]. SpringerPlus, 2016, 5: 1366-1380 (IF: 1.667)

[22]Can WU, Ying Chen, M. S. H. Al-Furjan, Jing Ni, Xiao Yang. Free vibration model and theoretical solution of the tympanic membrane[J]. Computer Assisted Surgery, 2016, supp1: 62-69(IF: 2.357,中科院四区)

 



著作
专利成果

[1]     吴参, 夏强, 刘铮, 李帅帅. 氮化硅陶瓷球表面嫁接氮掺杂碳量子点的成膜方法. ZL202111611586.1

[2]     吴参, 谢一嘉, 杨凯, 李兴林. 基础油自驱动到接触区的轴承及其内外圈加工方法. ZL202010946206.9

[3]     吴参, 杨凯, 陈颖, 李兴林. 推力球轴承光干涉线性油膜厚度检测试验台及其检测方法. ZL202010543082.X

[4]     吴参, 洪誉阳, 杨凯, 李兴林. 微织构自驱动油滴的脂润滑球轴承及其微织构加工方法. ZL202011007547.6

[5]     吴参, 刘铮, 杨凯, 李兴林. 微织构辅助接触区润滑的深沟球轴承及其内外圈加工方法. ZL202011009535.7

[6]     吴参, 杨凯, 陈颖, 李兴林. 一种推力球轴承光干涉线性油膜厚度检测方法. ZL202010542411.9

[7]     吴参, 陈颖, 李兴林, 曹茂来. 一种等寿命轮毂轴承的设计方法. ZL201711054953.6

[8]     吴参, 熊锐峰, 周春林, 李兴林, 常振, . 一种测量滚动轴承摩擦力矩的装置及方法. ZL201910344090.9

[9]     吴参, 董国宝, 熊锐峰, 李兴林, 常振. 测量滚动轴承摩擦力矩的电磁驱动装置及其测量方法. ZL201910344104.7

[10]  吴参, 熊锐峰, 李兴林, 倪敬. 一种带润滑油道的冲压保持架及加工方法. ZL201810803500.7

[11]  吴参, 倪敬, 李兴林, 许静. 汽车发动机张紧轮轴承振动试验台及其振动测试方法. ZL201711054353.X

[12]  吴参, 熊锐峰, 李兴林, 倪敬. 汽车发动机张紧轮轴承寿命模拟试验机及其模拟方法. ZL201711054345.5

[13]  吴参, 于大川, 许巧林, 张琪, . 一种锻炼腿部脚部的复健方法. ZL201810776332.7

[14]  吴参, 徐嘉伟, 俞明煜, 赖璐文. 一种汽车水泵轴连轴承轴向游隙测量设备. ZL201610410797.1

[15]  吴参, 沈拓, 俞明煜, 赖璐文, 倪敬. 一种水泵轴连轴承径向跳动快速检测仪. ZL201610414427.5

[16]  吴参, 徐嘉伟, 赖璐文, 俞明煜. 一种汽车水泵轴连轴承径向游隙测量设备. ZL201610408401.X

[17]  吴参, 方施棋, 田燕萍, 倪敬, 许静. 一种离合器自调心分离轴承动态调心量试验机. ZL201510323177.X

[18]  吴参, 彭鹏, 倪敬, 许静. 一种离合器自调心分离轴承动态调心力试验机. ZL201510283239.9

[19]  吴参, 李兴林, 顾伟. 一种轴承尺寸精度自动检测装置. ZL201310366883.3

[20]  吴参, 顾伟, 李兴林. 一种管道径向螺栓焊接对中辅助机构. ZL201310366626.X

[21]  吴参, 胡剑, 周波, 徐兵科. 一种传动机构综合展示教具. ZL201410220583.9

[22]  吴参, 董浙广, 倪敬, 龚友平. 一种汽车轮毂轴承单元防尘性能模拟试验机. ZL201410219400.1

[23]  吴参, 郭辉, 倪敬, 李兴林. 一种汽车轮毂轴承摩擦力矩试验台. ZL201410277005.9

[24]  吴参, 沈进文, 倪敬, 李兴林. 一种薄壁轴承套圈内外径气动测量装置. ZL201410277055.7

[25]  吴参, 汤天蛟, 李兴林, 倪敬. 一种轴承内外套圈圆度测量装置. ZL201410276156.2


荣誉及奖励
软件成果