主要研究方向:
(1) 特种减隔振材料(金属橡胶)设计、制备、表征及工程应用
(2) 各类装备减振降噪与冲击防护
(3) 新型智能材料/智能构件/智能作动器研制
(4) 振动主动控制
联系方式
电子邮箱:wuyiwan@fzu.edu.cn
通讯地址:福建省福州市福州大学城乌龙江北大道2号 邮编:350108
教育工作经历:
(1) 2003.09 -2007.06,福州大学机械工程及自动化学院,本科
(2) 2007.09 -2013.12,湖南大学机械与运载工程学院/汽车车身先进设计制造国家重点实验室,硕士/博士
(3) 2014.04 - 至今,福州大学机械工程及自动化学院,教学科研
(4) 2017.09 –至今,福州大学金属橡胶与振动噪声研究所,副所长
近五年科研项目:
1. 主持国家级项目4项(3项在研(140万元,144.59万元,140万元),2项已结题(75.3万元,108万元))
2. 主持国家级重点项目1项(273.08万元,已结题)
3. 主持企业、科研院所项目4项(1项已结题(7.5万元),3项在研(116.4万元,45.3万元,50万元))
近几年代表性论著(第一作者或通讯作者)
1. Bending behavior and damage analysis of ceramic/multi‐strand twisted wire‐based entangled materials sandwich structures,Journal of the American Ceramic Society,2025,(Print) (Online)(SCI)
2. Fatigue Characteristics and Modeling of Lead-Stainless Steel Composite Entangled Metallic Wire Material,Fatigue & Fracture of Engineering Materials & Structures,2025,(Print) (Online)(SCI)
3. Thermal/Vibration Characteristics of Additional Damping Structures with Entangled Metallic Wire Material under High Temperature Environment Files Archived,Mechanics of Advanced Materials and Structures,2025,(Print) (Online)(SCI)
4. Vibration reduction design for ship base using visualized power flow analysis and discrete optimization,Ocean Engineering, 2024, 309, 118494(SCI)
5. Entangled metallic porous material–silicone rubber interpenetrating phase composites with simultaneous high specific stiffness and energy consumption,Composite Structures, 2024, 341, 118213(SCI)
6. Low-velocity impact response of sandwich structures with cores made from entangled metallic wire material - silicone rubber composites, Construction and Building Materials, 2024, 431, 136633(SCI)
7. Research on performance degradation patterns of metal rubber components under the coupling of static compression and full immersion corrosive environment, Materials Today Communications, 2024, 39, 109107 (SCI)
8. Vibration, Buckling and Stability Analyses of Spinning Bi-Directional Functionally Graded Conical Shells,International Journal Of Structural Stability And Dynamics, 2024,(Print) (Online)(SCI)
9. Experimental investigation on mechanical, electrical and fatigue properties of entangled metal wires under cyclic dynamic load test,Journal of Materials Engineering and Performance,2024,(Print) (Online)(SCI)
10. Experimental Study on Static and Dynamic Mechanical Properties of Composite Buffer with Entangled Metallic Wire Materials and Viscous Fluid,Journal of Mechanical Engineering Science,2024,(Print) (Online)(SCI)
11. Mechanics behaviors and electrical conductivity of beryllium bronze alloy entangled metallic wire material: experimental study and theoretical modeling,Journal of materials research and technology, 2024,29:728-737(SCI)
12. Capillary Property of Entangled Porous Metallic Wire Materials and its Application in Fluid Buffers: Theoretical Analysis and Experimental Study,Defence Technology,2024,31:400-416(SCI)
13. Mechanical behavior of entangled metallic wire mesh–silicone rubber interpenetrating phase composites under quasistatic compression,Mechanics of Advanced Materials and Structures,2024,29:129-147 (SCI)
14. Mechanical behavior and improved model of multi-strand entangled metallic wire material,Mathematics and Mechanics of Solids,2024, 29(1): 129-147(SCI)
15. Research on Mechanical Properties and Constitutive Model of High-Damping Metal Wire Mesh,Journal of Materials Engineering and Performance,2023(SCI)
16. Quasistatic and low-velocity impact properties of entangled metallic wire material–silicone rubber composites,Journal of Materials Research and Technology,2023,23:3856-3868(SCI)
17. Free vibration of in-plane bi-directional functionally graded materials rectangular plates with geometric imperfections and general elastic restraints, Aerospace Science and Technology,2023, 132,108045 (SCI)
18. Quasi-static and low-velocity impact mechanical behaviors of entangled porous metallic wire material under different temperatures,Defence Technology,2023,19: 143-152 (SCI)
19. Experimental study on the mechanical properties and impact behaviors of entangled metallic wire material under repeated low-velocity impacts,2022,Mechanics of Advanced Materials and Structures,2023,30(12): 2506-2516(SCI)
20. Experimental and Numerical Research on a Pipe Element Passing through Bulkhead with Symmetrical Elastic Installation,Symmetry,2022,14, 453(SCI)
21. Study of the Dynamic Model and Vibration Performance of Pot-Shaped Metal Rubber,Materials,2022,15, 5878(SCI)
22. Analysis and Experimental Research on Vibration Reduction in Ship High-Temperature Pipeline Based on Long Coated Damping Structure,Journal of Marine Science and Engineering,2021,9, 838(SCI)
23. Experimental investigation on static and dynamic energy dissipation characteristics of composite sandwich structure with entangled metallic wire materials and disc springs.Materials Research Express,2021,8,106507(SCI)
24. Experimental and Constitutive Model on Dynamic Compressive Mechanical Properties of Entangled Metallic Wire Material under Low-Velocity Impact,Materials,2020,13(6):1396(SCI)
25. Integrated Control of Differential Braking and Active Aerodynamic Control for Improving High Speed Stability of Vehicles,International Journal of Automotive Technology,2020,21(1):61-70(SCI)
26. Energy Dissipation Characteristics and Parameter Identification of Symmetrically Coated Damping Structure of Pipelines under Different Temperature Environment,Symmetry,2020,12(8):1283(SCI)
27. Influence of Core Thickness and Boundary Condition on the Modal Characteristics of Composite Structure with Metallic Damping Core,Shock and Vibration,2020,9720167(SCI)
28. Mechanical Behavior of Entangled Metallic Wire Materials under Quasi-Static and Impact Loading,Materials,2019,12(20):3392(SCI)
29. A Constitutive Model of Plate-Like Entangled Metallic Wire Material in Wide Temperature Range,Materials,2019,12(16):2538(SCI)
30. Research on Vibration Reduction Design of Foundation with Entangled Metallic Wire Material under High Temperature,Shock and Vibration,2019,7297392(SCI)
31. Experimental Investigation of Thermal Modal Characteristics for a Ship’s Foundation under 300°C,Shock and Vibration,2019,2714930(SCI)
32. 一种新型波纹管式复合阻尼隔振器的设计及其力学特性研究,湖南大学学报,2025(已录用)
33. 宽温域高阻尼金属橡胶力学特性研究及建模,宇航材料工艺,2024(已录用)
34. 金属橡胶材料在不同表面处理工艺下的腐蚀行为及静载压缩蠕变特性研究,中国表面工程,2023(已录用)
35. 金属橡胶力/电学性能试验研究,宇航材料工艺,2023(已录用)
36. 盆形金属橡胶三向动态力学性能试验研究,兵器材料科学与工程,2023,46(1): 27-34
37. 盆形金属橡胶三向准静态试验研究,机械强度,2023,45(2): 331-340
38. 半球形金属橡胶构件变刚度特性研究及建模,福州大学学报(自然科学版),2022,50(6):856-862
39. 金属橡胶/碟簧叠层复合结构阻尼特性及其非对称迟滞模型参数识别,振动与冲击,2022,41(20):270-276+314
40. 正负刚度并联隔振系统建模与性能分析,噪声与振动控制. 2022,42(05):268-273
41. 金属橡胶包覆阻尼结构高温力学建模与试验,中国机械工程. 2022,33(11):1294-1301
42. 管路弹性密封穿舱结构设计研究,舰船科学技术. 2022,44(14):30-34
43. 金属波纹管高温振动试验系统研制,计算机测量与控制. 2021,29(08):228-232
44. 状结构可变边界热振耦合试验系统研制,计算机测量与控制,2020,28(4):241-245
45. 新型落锤冲击试验系统研制,计算机测量与控制,2020,28(2):262-266
46. 高温环境船舶基座振动功率流特性研究,机械科学与技术,2019,38(8):1289-1295
近几年授权发明专利(第一发明人)
1. 双电机涡轮增压发电装置及其控制方法
2. 主动空气动力辅助控制的车辆稳定性控制方法及系统
3. 一种梯度多孔金属橡胶制动盘及其工作方法
4. 连续梯度密度金属橡胶结构及其制备方法
5. 一种主动悬架装置及其控制方法
6. 基于金属橡胶与磁流变效应的半主动减振抗冲装置
7. 基于金属橡胶与磁流变效应的复合减振器及其工作方法
8. 基于金属橡胶的一种多功能清理器
9. 直径无级可调的金属橡胶毛坯缠绕芯轴及使用方法
10. 宽温域三向金属橡胶减振装置及其工作方法
11. 基于金属橡胶的减振基座及工作方法
12. 一种基于金属橡胶的高阻尼复合减振器及其工作方法
13. 基于金属橡胶的减振冷却镗刀刀具及其制造方法
14. 一种基于金属橡胶的负泊松比超材料结构及工作方法
获奖情况
1. 2023年获厦航奖教金
2.2022年福建省级高层次人才(B类)
3.2021年11月获中国发明协会2021年度发明创业创新奖二等奖(排名第2)
4.2021年12月福州大学机械学院优秀教师奖
5.2018年9月获福州大学第十九届青年教师“最佳一节课”竞赛三等奖
6.2019/2020/2021/2022年指导硕士生获校优秀学位论文
7. 2022年指导硕士生获省优秀学术硕士学位论文
社会兼职
1.中国机械工程学会高级会员,中国汽车工程学会会员
2.中国机械工程、振动与冲击、湖南大学学报、南昌大学学报、Composites Communications、Rare Metal Materials and Engineering、Defence Technology、Machines、Actuators、Vibrations、International journal of automative technology、International Journal of Structural Stability and Dynamics、Shock and Vibration、Materials、Mathematical Problems in Engineering等国内外期刊审稿人
毕业研究生去向
航天二院、航天九院、中国航发、三江航天、东风汽车技术中心、比亚迪、吉利汽车、小鹏汽车、东风日产、中国重汽、宁德时代、中联、三一、孚能科技、哈尔滨工业大学、重庆大学、福州大学。