[1]. 新型XX轴承关键技术及验证,航空航天联合开发课题,201万,2020-2021,主持
[2]. 滑动轴承油膜厚度超声检测技术开发,企业委托项目,114万,2020-2021,主持
[3]. 磁气混合轴承耦合作用机理及结构融合设计,国家重点研发计划子课题,32万,2019-2022,主持
[4]. 塑料瓦推力轴承膜厚和形变分布超声同步检测方法研究,国家自然科学基金,28万, 2018-2020,主持
[5]. 基于超声原理的塑料瓦推力轴承膜厚和形变分布同步检测方法研究,湖南省自然科学基金,5万,2018-2020,主持
[6]. 基于超声原理的轴承润滑膜厚度检测方法研究,中央高校基本科研业务费项目,25万,2017-2022,主持
[7]. 高DN 值极端温度工况下箔片动压轴承服役特性,国家重点研发计划课题,278万,2019-2022,项目骨干
[8]. 海上大型风电机组用滑动轴承关键技术研究,湖南省科技成果转化及产业化计划,50万,2020-2022,主要参与
[9]. 超临界二氧化碳动力系统用主动/智能气体轴承技术研究,装备预研教育部联合基金,100万,2019-2020年,参与
[10]. 气体动压轴承主动化智能化及其支承转子动力学分析与控制,国家自然科学基金,65万,2019-2022,参与
[1]. Kai Zhang, Ying Wang, Xu Ye, Kai Feng, et al. Broadband low frequency acoustic energy harvesting amplified by sonic crystal metamaterial with double defects, Energy, (submitted)
[2]. Wenjun Li, Kai Zhang, Kai Feng, Yuanlong Cao. Nonlinear Dynamic Performance of Flexure Pivot Tilting Pad Foil Bearing System. Mechanical Systems and Signal Processing. (submitted)
[3]. Jie Zhu, Kai Zhang*, Kai Feng. Experimental measurement of oil film thickness distribution in titling-pad thrust bearings by ultrasonic piezoelectric elements, Journal of Vibration Engineering & Technologies. (revised)
[4]. Minghui Shi, Kai Feng, Kai Zhang*, et al. Experimental and numerical investigation of a self-adapting non-contact ultrasonic motor, Tribology International.2021,(SCI)
[5]. Peng Lyu, Kai Feng, Kai Zhang*, et al. The Performance Evaluation of the Promising High-stability Foil Bearing with Flexure Pivot Tilting Pads. Mechanical Systems and Signal Processing, 2019, (SCI )
[6]. Yuanlong Cao, Ke Yu, Kai Zhang*, etal. Analytical solution of squeeze film and thermoelastic damping in bulk resonators. Sensors and Actuators A: Physical, 2019, (SCI)
[7]. Zhang Kai, Feng Kai, et al. An ultrasonic measurement method for full range of oil film thickness, Part J: Journal of Engineering Tribology, 2019. (SCI)
[8]. Zhang Kai, Meng Qingfeng, Geng Tao, et al. Ultrasonic measurement of lubricant film thickness in sliding Bearings with overlapped echoes[J]. Tribology International, 2015, 88: 89-94.(SCI; EI)
[9]. Zhang Kai, Meng Qingfeng, Chen Wei, et al. Ultrasonic measurement of oil film thickness between the roller and the inner raceway in a roller bearing[J]. Industrial Lubrication and Tribology, 2015, 67 (6): 531-537.(SCI;EI)
[10]. Zhang Kai, Wu Tonghai, Meng Qinghu, et al. Ultrasonic measurement of oil film thickness using piezoelectric element[J]. International Journal of Advanced Manufacturing Technology. 2017, (SCI;EI)
[11]. Zhang Kai, Wu Tonghai, Duan Zhihe, et al. An adaptive approach for recovering overlapping echoes in ultrasonic oil film thickness measurement of thrust bearings[J]. Industrial Lubrication and Tribology.2017, (SCI;EI)
[12]. Kai Feng, Youquan Zhu, Kai Zhang. Influences of Structural Parameters and Materials on the Kinetic Characteristics of Networks Actuator. International Journal of Smart Engineering, 2018,( in press).
[13]. Zhang Kai, Meng Qingfeng, Zhao Wei. Measurement of oil film thickness in cylindrical roller bearing by ultrasound [C]. ASME 12th Biennial Conference on Engineering Systems Design and Analysis, Copenhagen,Denmark, 2014.(EI)
[14]. Zhang Kai, Wu Tonghai, Dou Pan, et al. Measurement of lubrication film thickness of titling-pad thrust bearing by ultrasonic methods[C].( WTC2017)
[15]. Zhang Kai, Deng Mingwei, Zhang Tao, Feng kai. Experimental study of the effect of the base movementon the foil bearing-rotor system stability[C]. 2019 Rotating Machinery Transmission and Controls Conference RMTC 2019, Beijing, China.
[16]. Geng Tao, Meng, Qingfeng; Zhang Kai et al. Ultrasonic measurement of lubricant film thickness in sliding bearings with thin liner[J]. Measurement Science and Technology,2014.(SCI;EI)
[17]. Wang Hongjin, Meng Qingfeng, Zhang Kai. Discussion and experimental verification on the relations of polarization, deformation and induced voltage of piezoelectric material[C]. International Conference on Mechanical and Automation Engineering, 2013. (EI)
[18]. 李映宏,胡小强,张凯*,冯凯. 叠片式气体箔片推力轴承热特性分析[J]. 摩擦学学报. 2019, 39(3):295-303.
[19]. 冯凯,李映宏,张凯*,刘永红等,新型三瓣式径向气体箔片动压轴承热特性分析[J]. 湖南大学学报. 2019.
[20]. 张凯,余可,冯凯等,嵌入弹簧式气体箔片轴承动态特性实验研究[J]. 湖南大学学报. 2019.
[21]. 耿涛,孟庆丰,贾谦,张凯等,薄衬层结构滑动轴承润滑膜厚度的超声检测方法[J]. 西安交通大学学报,2014.(EI:20143600063064)
[22]. 21.武通海, 张凯, 孟庆虎,孟庆丰,袁小阳等,一种滑动轴承全域润滑膜厚分布的 检测方法[P].中国发明专利,授权号:ZL201310260854.9.
[23]. 孟庆丰,耿涛,张凯,袁小阳.薄衬层结构滑动轴承润滑膜厚度的超声检测方法[P]. 中国发明专利,授权号:201410037924.9.
[24]. 武通海、张凯、陈渭等. 一种滚子轴承接触区润滑膜厚度的超声检测装置及方法[P].中国发明专利,申请号:201710210652.1
[25]. 张凯,王高飞,冯凯等,一种全范围润滑膜厚度超声检测装置及方法[P].中国发明专利,申请号201710376266.X.
[26]. 张凯,朱炳辉,冯凯等,一种基于超声波的空气箔片轴承气膜厚度测量系统与方法[P].中国发明专利,申请号:CN201811473404.7.
[27]. 张凯,雷雨露,王瑛,孙东领,冯凯. 一种塑料瓦推力轴承膜厚及形变分布超声同步检测方法[P].中国发明专利,申请号:2020011800440850.
[28]. 张凯,冯凯,朱杰等.一种新型可监控油膜厚度分布的聚合物推力轴承[P].中国发明专利,申请中