[1] 何琳,徐伟. 舰船隔振装置技术及其进展[J]. 声学学报,2013,38(2):128-136. HE Lin,XU Wei. Naval vessel machinery mounting technology and its recent advances[J]. Acta Acustica,2013,38(2):128-136. [2] 赵成,陈大跃. 潜艇浮筏隔振系统的半主动模糊滑模控制[J]. 机械工程学报,2008,44(2):163-169. ZHAO Cheng,CHEN Dayue. Semi-active fuzzy sliding mode control for floating raft isolation system[J]. Journal of Mechanical Engineering,2008,44(2):163-169. [3] 昝浩,温华兵,范紫岩. 含惯容器的多层隔振系统动态性能研究[J]. 江苏科技大学学报,2015,29(2):131-137. ZAN Hao,WEN Huabing,FAN Ziyan. Study of dynamic property of multi-stage vibration isolation system with inerter[J]. Journal of Jiangsu University of Science and Technology,2015,29(2):131-137. [4] SMITH M C. Synthesis of mechanical networks:The inerter[J]. IEEE Transactions on Automatic Control,2002,47(10):1648-1662. [5] CHEN M Z Q,PAPAGEORGIOU C,SCHEIBE F,et al. The missing mechanical circuit element[J]. IEEE Circuits and Systems Magazine,2009,9(1):10-26. [6] LI Yuehao,CHENG Zhe,HU Niaoqing,et al. Modeling,design and experiments of a ball-screw inerter with mechanical diodes[J]. Journal of Sound and Vibration,2021,504:116121. [7] SHEN Yujie,CHEN Long,YANG Xiaofeng,et al. Improved design of dynamic vibration absorber by using the inerter and its application in vehicle suspension[J]. Journal of Sound and Vibration,2016,361:148-158. [8] YANG Xiaofeng,YAN Long,SHEN Yujie,et al. Optimal design and dynamic control of an ISD vehicle suspension based on an ADD positive real network[J]. IEEE Access,2020,8:94294-94306. [9] 陈龙,张孝良,聂佳梅,等. 基于半车模型的两级串联型ISD悬架性能分析[J]. 机械工程学报,2012,48(6):102-108. CHEN Long,ZHANG Xiaoliang,NIE Jiamei,et al. Performance analysis of two-stage series-connected inerter-spring-damper suspension based on half-car model[J]. Journal of Mechanical Engineering,2012,48(6):102-108. [10] SHI Xiang,ZHU Songye. Dynamic characteristics of stay cables with inerter dampers[J]. Journal of Sound and Vibration,2018,423:287-305. [11] SHI Xiang,SHI Wei,LIN Kun,et al. Optimal design of tuned inerter dampers with series or parallel stiffness connection for cable vibration control[J]. Structural Control and Health Monitoring,2020,28(3):e2673. [12] WANG F C,HONG M F,CHEN C W. Building suspensions with inerters[J]. Proceedings of the Institution of Mechanical Engineers Part C-Journal of Mechanical Engineering Science,2010,224(C8):1605-1616. [13] DI MATTEO A,MASNATA C,PIRROTTA A. Simplified analytical solution for the optimal design of Tuned Mass Damper Inerter for base isolated structures[J]. Mechanical Systems and Signal Processing,2019,134:106337. [14] HU Y L,CHEN M Z Q,SMITH M C. Natural frequency assignment for mass-chain systems with inerters[J]. Mechanical Systems and Signal Processing,2018,108:126-139. [15] CHEN M Z Q,HU Y L,HUANG L X,et al. Influence of inerter on natural frequencies of vibration systems[J]. Journal of Sound and Vibration,2014,333(7):1874-1887. [16] HU Y L,CHEN M Z Q,SHU Z,et al. Analysis and optimisation for inerter-based isolators via fixed-point theory and algebraic solution[J]. Journal of Sound and Vibration,2015,346:17-36. [17] 朱翔,殷学吉,李天匀,等. 基于惯容器的动力反共振隔振器隔振特性分析[J]. 哈尔滨工程大学学报,2016,37(10):1318-1322. ZHU Xiang,YIN Xueji,LI Tianyun,et al. Analysis of the vibration isolation characteristics of dynamic anti-resonance isolators based on an inerter[J]. Journal of Harbin Engineering University,2016,37(10):1318-1322. [18] 高金吉,王维民,何立东,等. 人工自愈与动力机械振动故障靶向抑制[J]. 北京化工大学学报,2018,45(5):135-142. GAO Jinji,WANG Weimin,HE Lidong,et al. Artificial self-recovery and target suppression of power machine vibration faults[J]. Journal of Beijing University of Chemical Technology,2018,45(5):135-142. [19] 高金吉. 人工自愈概论[J]. 机械工程学报,2021,57(2):1-10. GAO Jinji. Overview on artificial self-recovery[J]. Journal of Mechanical Engineering,2021,57(2):1-10. [20] 高金吉. 人工自愈与机器自愈调控系统[J]. 机械工程学报,2018,54(8):83-94. GAO Jinji. Artificial self-recovery and machinery self-recovery regulation system[J]. Journal of Mechanical Engineering,2018,54(8):83-94. |