论文列表
a) 排名及影响因子出处:科睿唯安(原汤森路透)Journal Citation Reports(JCR)“https://jcr.clarivate.com/JCRLandingPageAction.action“.
b) 通讯作者标注*.
[1] Yang Luo*, Natalie Baddour, Ming Liang, Dynamical modeling and experimental validation for tooth pitting and spalling in spur gears,Mechanical Systems and Signal Processing,Volume 119,2019,Pages 155-181.
[2] Yang Luo*, Natalie Baddour, Ming Liang, A shape-independent approach to modelling gear tooth spalls for time varying mesh stiffness evaluation of a spur gear pair, Mechanical Systems and Signal Processing, Volume 120, 2019, Pages 836-852.
[3] Xiao Wu, Yang Luo*, Qimin Li, Juanjuan Shi, A new analytical model for evaluating the time-varying mesh stiffness of helical gears in healthy and spalling cases, Engineering Failure Analysis, Volume 131,2022.
[4] Yang Luo*, Natalie Baddour, Ming Liang, Effects of gear center distance variation on time varying mesh stiffness of a spur gear pair, Engineering Failure Analysis, Volume 75, 2017, Pages 37-53, ISSN 1350-6307.
[5] Yang Luo* ; Natalie Baddour; Guosheng Han; Fei Jiang; Ming Liang, Evaluation of the time-varying mesh stiffness for gears with tooth spalls with curved-bottom features, Engineering Failure Analysis, 2018.6.20, 92: 430~442;
[6] Peng B, Luo Y*, Luo YX, Ma Z. Geometry optimization of the rolling tool for gear roll-forming process. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture. 2021;235(14):2240-2249.
[7] Y. Luo*, N. Baddour, and M. Liang, "Performance Assessment of Gear Condition Indicators in Detecting Progressive Gear Tooth Crack," in ASME 2017 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference, 2017;
[8] Y. Luo*, N. Baddour, and M. Liang, "Dynamical modeling of gear transmission considering gearbox casing" in ASME 2018 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference, 2018;
主持项目
[1] 国家自然科学基金青年基金,高铁传动系统精细化动力学建模及故障振动特征变迁研究,51905052,2020/01–2022/12。
[2] 重庆大学中央高校基本科研项目,面智能制造新技术与新装备,2021/01–2022/12。
[3] 高聚物柔性防渗墙地下深窄槽成型与注浆集成装备 ——中试设备设计及制造,合同金额224万。
[4] 曲轴动平衡分析与结构轻量化研究,桂林福达股份有限公司。
[5] TC4/Ti6Al4V钛合金螺栓螺纹滚压/搓丝工艺研究,中国航空工业标准件制造有限责任公司。