人才团队

BULL NEW ENERGY

教师团队

黄兴保

作者:    时间 : 2025-10-17      阅读:


 

黄兴保,工学博士(后),副研究员,入选湖南省优青主持国家自然科学青年基金项目,国家自然科学基金联合基金重点项目(单位负责人),湖南省自然科学基金(优青+青基),中国博士后第18批特别资助,中国博士后第75批面上资助,长沙市自然科学基金重点项目等纵向课题7项。获得2023年湖南省博士后创新创业大赛优胜奖(排1)和2024年第七届中国•南宁海(境)外人才创新创业大赛二等奖(排2)。主要从事宽低频非线性振动控制与俘能、空间结构微振动控制、高端装备冲击防护方法研究,实现了振动控制与俘能高效协同关键技术突破;聚焦空间挠性航天器多源微振动控制和瞬态冲击问题,提出了基于能量分流的多稳态减振耗能方法,并研制了一套主动可调的多稳态减振与俘能协同样机。以第一作者/通讯作者发表SCI期刊论文24篇,其中15中科院一区TOP,包括《Applied Energy》、《Energy Conversion and Management》、《Mechanical Systems and Signal Processing》、《Applied Mathematical Modelling》、《International Journal of Mechanical Sciences》等,申请/授权发明专利10余项。

【教育背景】

2018.04—2022.08上海交通大学机械工程工学博士

2013.07—2016.01,青岛理工大学机械工程工学硕士

2008.09—2012.06,青岛理工大学,机械设计制造及其自动化工学学士

【工作经历】

2025.07—至今,星空游戏(StarSky Sports)官方网站,副研究员

2022.09—2025.06,湖南大学,助理研究员、副研究员

2016.09-2017.05,德车桥(株洲)齿轮有限公司,机械设计工程师

2016.03-2016.08,湖南中大创远数控装备有限公司,机械设计工程师

【总体情况】

研究方向:非线性振动控制;振动能量俘获;减隔振一体化;非线性动力学;多物理场耦合建模;自供电传感;流体力学;润滑与摩擦;齿轮传动

论文发表: 24篇唯一一作/通讯 SCI论文(中科院1TOP 15)4EI中文;10篇唯一一作北大核心/CSCD论文。

专利发表:中国发明专利10余项 (3项已授权)

【项目主持、参与】

[1]2024.1-2026.12   国家自然科学青年基金52305103,30w/主持

[2] 2025.1-2028.12   国家自然科学基金铁路基础联合基金重点项目U2468213,78w/单位负责人

[3] 2025.1-2027.12   湖南省自然科学优秀青年基金2025JJ40052,20w/主持

[4] 2024.1-2026.12   湖南省自然科学青年基金2024JJ615,5w/主持

[5] 2025.6-2026.12   中国博士后科学基金特别资助2025T180884,18w/主持

[6] 2024.1-2025.12   中国博士后科学基金面上项目2024M750880,8w/主持

[7] 2023.1-2024.12   长沙市自然科学基金(重点项目)kq2208025, 10w/主持

[8] 2024.1-2027.12   国家自然科学基金面上52378507,参与          

[9] 2018.5 -2020.12  中国航天技术研究院八院预研项目,参与

[10] 2022.3 -2025.12  国家自然科学基金面上52173239,参与

[11] 2018.4-2020.8   中国航空工业传感器有限公司合作项目,参与              

[12] 2017.7-2021.6   国家重点研发计划2017YFF0108001、2017YFF0108003(课题一、课题三),参与/骨干成员

[13] 2019.6-2022.6   国家商用飞机制造工程技术研究中心创新基金项目,参与

【论文与专利发表】

[1] Huang X, Yang B*. Towards novel energy shunt inspired vibration suppression techniques: Principles, designs and applications[J]. Mechanical Systems and Signal Processing, 2023, 182: 109496.

[2] Huang X, Yang B*. Improving energy harvesting from impulsive excitations by a nonlinear tunable bistable energy harvester[J]. Mechanical Systems and Signal Processing, 2021, 158: 107797.

[3] Huang X, Yang B*. Investigation on the energy trapping and conversion performances of a multi-stable vibration absorber[J]. Mechanical Systems and Signal Processing, 2021, 160: 107938.

[4] Huang X*, Zhong T. Hydrokinetic energy harvesting from flow-induced vibration of a hollow cylinder attached with a bi-stable energy harvester[J]. Energy Conversion and Management, 2023, 278: 116718.

[5] Huang X*. Exploiting multi-stiffness combination inspired absorbers for simultaneous energy harvesting and vibration mitigation[J]. Applied Energy, 2024, 364: 123124.

[6] Huang X, Wang B, Huang Z, et al. A theoretical model for a low-frequency two-stage hybrid vibration isolator with a nonlinear energy sink and a negative stiffness spring[J]. Applied Mathematical Modelling, 2025: 115948.

[7] Huang X*. Stochastic resonance in a piecewise bistable energy harvesting model driven by harmonic excitation and additive Gaussian white noise[J]. Applied Mathematical Modelling, 2021, 90: 505-526.

[8] Huang X, Wang W, Ding L, Yang B*. Investigating the lubrication mechanism and stiffness of oil-based ferrofluids in spur gear drives[J]. Physics of Fluids, 2021, 33: 043103.

[9] Huang X*, Yang B, Wang Y. A nano-lubrication solution for high-speed heavy-loaded spur gears and stiffness modelling[J]. Applied Mathematical Modelling, 2019, 72: 623-649.

[10] Huang X*, Zhang X, Wang Y. Numerical simulation of ferrofluid-lubricated rough elliptical contact with start-up motion[J]. Applied Mathematical Modelling, 2021, 91: 232-260.

[11] Huang X, Zhou C*, Lu X, Wang. The mixed regime and wear mechanism of elliptical contact in the start-up process considering interface material properties: A theoretical prediction[J]. International Journal of Mechanical Sciences, 2019, 157: 60-74.

[12] Huang X, Huang Z*, Hua X, Chen Z. Investigation on vibration mitigation methodology with synergistic friction and electromagnetic damping energy dissipation[J]. Nonlinear Dynamics, 2023: 1-26.

[13] Zhang X, Huang X*, Wang B*. A quad-stable nonlinear piezoelectric energy harvester with piecewise stiffness for broadband energy harvesting[J]. Nonlinear Dynamics, 2024: 1-20.

[14] Huang X*, Hua X, Chen Z. Exploiting a novel magnetoelastic tunable bi-stable energy converter for vibration energy mitigation[J]. Nonlinear Dynamics, 2024: 1-27.

[15] Cheng H, Fu G, Shi Z, Cui Y, Shang Z, Huang X*, Shi X*. A novel bearing fault diagnosis method based on improved product envelope spectrum Gini coefficient ratio optimization gram[J]. Mechanical Systems and Signal Processing, 2025, 239: 113349.

[16] Wu H, Liu Y, Huang X*, Gong Y, Li Z, Zhao L, Hong Y, Peng Y, Wang B*. An Ammonite-Inspired Wrist-Worn Spiral Piezoelectric Energy Harvester for Multidirectional and Multifrequency Energy Scavenging[J]. IEEE Sensors Journal, 2025. DOI: 10.1109/JSEN.2025.3549461

[17] Huang X, Zhang X, Yang B*. Investigation on the tunable bi-stable clustered energy conversion inspired dynamic vibration absorbers: A theoretical study[J]. Journal of Vibration and Control, 2023: 10775463231164201.

[18] Huang X*. Modeling and Optimization of Electromagnetic Conversion Coupling Coefficient Based on Maxwell’s Magnetic Field Theory[J]. Journal of Vibration Engineering & Technologies, 2023: 1-17.

[19] Huang X*, Zhang X. Investigating the advanced characteristics of SiC based piezoresistive pressure sensors[J]. Materials Today Communications, 2020, 25: 101493.

[20] Huang X*, Yang B, Wang Y. Influences of transient impact and vibration on the lubrication performance of spur gears[J]. Proceedings of the Institution of Mechanical Engineers Part J-Journal of Engineering Tribology, 2021, 235(2): 274-289.

[21] Huang X*, Zhang X, Wang Y. A theoretical investigation on the lubrication mechanism of moving particles in elliptical contact[J]. Physica Scripta, 2020, 95(7): 075213.

[22] Huang X*, Yang B, Wang Y, Zhou C. Influences of impulse excitation and vibration on thermoelastohydrodynamic characteristics of spur gear drive[J]. Lubrication Science, 2020, 32(6): 292-308.

[23] Huang X*. A theoretical calculation for carrier concentration and resistance prediction[J]. Physica Scripta, 2020, 95(6): 065228.

[24] Huang X, Wang Y*. Transient elastohydrodynamic lubrication analysis of spur gears running-in considering effects of solid particles and surface roughness[J]. Industrial Lubrication and Tribology, 2016, 68: 183-190.

[25] S Fang, X Wang, X Zhang, K Wu, T Yan, X Chuai, X Huang, X Li, Z Lai, S Dong, WH Liao. High output, lightweight and small-scale rotational piezoelectric energy harvester utilizing internal impact effect[J]. Energy Conversion and Management, 2024, 322: 119180.

[26] Liu D, Ni C, Wang Y,  Zhu L, Lu W, Huang X. Effect of anisotropic property on machining response of selective laser melted Ti6Al4V alloys in high-speed milling[J]. Journal of Manufacturing Processes, 2025, 145: 158-171.

[27] Liu D, Ni C, Wang Y, Zhu L, Zong C, Wang X, Huang X. Cutting force modeling in high-speed machining of selective laser melted Ti6Al4V alloys based on a modified constitutive model considering thermally activated effect. Science China Technological Sciences 68.3 (2025): 1320202.

[28] Lu, W., Ni, C., Wang, Y., Zong, C., Liu, D., & Huang, X.. Surface Integrity and Machining Mechanism of Al 7050 Induced by Multi-Physical Field Coupling in High-Speed Machining. Lubricants, 2025,13(2): 47.

[29] 黄兴保,张啸,杨斌堂*.可调双稳态阵列式非线性吸振器的俘能与减振性能优化研究[J]. 振动工程学报,已录用. (EI、机械工程领域T1级期刊)

[30] 崔磊,黄兴保,杨斌堂.水下仿生贝壳电磁驱动器动力学分析[J].噪声与振动控制,2022,42(05):13-20.

[31] 杨斌堂,黄兴保,张啸,张茂胜. 摩擦阻尼与驱动限位执行器. 国家发明专利,ZL201910635788.6.授权公告号:CN110332258B. 已授权.

[32] 黄兴保,陈政清,华旭刚,张啸. 电磁、电涡流阻尼协同减振与能量回收一体化装置. 国家发明专利,2023. (已公开)

[33] 黄兴保,华旭刚,陈政清,侯家成,王标. 电磁阻尼耗能与能量回收悬架减振装置及其阻尼控制方法. 国家发明专利,2024. (已公开)

[34] 黄兴保,陈政清,华旭刚,张弘毅,黄智文. 基于能量分流的振动冲击智能控制方法及其系统. 国家发明专利,2024. (已公开)

[35] 杨斌堂,张啸,黄兴保,杨诣坤,王卫军,丁立超. 着陆缓冲系统落震试验装置及方法. 国家发明专利,ZL202110291248.8. 已授权.

[36] 王优强,黄兴保,刘前,董宁. 带有磁性镍基合金涂层齿轮. 国家发明专利,ZL201410842156.4,授权公告号:CN104633045A

[37] 黄兴保,王优强,刘前,董宁. 一种可应用于混凝土输送泵的摆动齿轮装置. 实用新型专利,ZL201420860544.0, 授权公告号:CN204371639U

[38] 王标,侯家成,黄兴保. 自传感与自供能主被动一体化智能减振器. 国家发明专利,2024. (已公开)

[39] 王标,聂齐毅,黄兴保,张静宇. 一种带有周向沟槽结构的高速电主轴空气静压轴承. 国家发明专利,2024. (已公开)

【所获奖项】

1.2024第七届中国·南宁海(境)外人才创新创业大赛二等奖

2.2023湖南省首届博士后创新创业大赛优胜奖

3.2024湖南大学赫曦博士后

4.2022上海交通大学优秀毕业生

【联系方式】

电话:86-18818219350  E-mail:huangxb@whu.edu.cn

ResearchGate: https://www.researchgate.net/profile/Xingbao-Huang





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