双腔液固混合介质隔振器刚度阻尼特性分析

李方硕,陈前,周俊辉

振动与冲击 ›› 2016, Vol. 35 ›› Issue (10) : 91-95.

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振动与冲击 ›› 2016, Vol. 35 ›› Issue (10) : 91-95.
论文

双腔液固混合介质隔振器刚度阻尼特性分析

  • 李方硕,陈前,周俊辉
作者信息 +

The properties of the stiffness and damping of dual-chamber liquid and solid mixture vibration isolator

  • Li Fang Shuo,CHEN Qian,Zhou Junhui
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摘要

 双腔液固混合介质隔振器由波纹管式液固混合介质隔振器和附加腔室通过管道联通构成。建立了联通管道内部液柱的运动方程,推导了隔振器非线性动力学模型。为分析隔振器刚度和阻尼特性,将平方阻尼简化成线性阻尼,得到了简谐激励下隔振系统线性简化模型,并求得了隔振系统刚度和损耗因子的表达式。分析了阀门节流开度、振动幅值、激励频率、主腔室刚度对于系统刚度和损耗因子的影响。结果表明,虽然隔振系统刚度和损耗因子受多种因素影响,但是二者上下限只由两个腔室的等效刚度决定。为检验理论模型,进行了动态特性试验,试验结果和理论结果基本一致,证明了动力学模型的可靠性,试验结果还表明液柱共振会造成刚度特性曲线出现峰值,恶化系统的隔振特性。

Abstract

The Bellows type Solid and Liquid Mixture (B-SALiM) vibration isolator, mainly proposed for vibration isolation of heavy machines with low frequency, consists of a multi-layers bellows container filled with SALiM working media including elastic elements and incompressible liquid. The dual-chamber SALiM vibration isolator is a B-SALiM vibration isolator linked with an incompressible pressure vessel by a tube and a valve. Based on the knowledge of fluid mechanics and dynamics, this paper established the nonlinear dynamics model of the novel vibration isolation system. To simplify the analysis of the stiffness and damping,the linear dynamics model and the complex stiffness were derived by simplifying the fluid damping into linear viscous damping when the isolator is excited by sinusoidal signal. Numerical simulation and experiment were done to analyze the properties of the stiffness and loss factor. The results show that the stiffness and loss factor of the dual-chamber SALiM vibration isolator are affected by many factors such as the valve aperture/the main chamber stiffness /the exciting frequency/the vibration level and so on. Experiment was implemented to verify the reliability of the nonlinear dynamic model, the experimental results were generally consistent with the theoretical. It also could be derived from the experimental results that the oil vibration in the tube could cause bad effects on the vibration isolation effectiveness.

关键词

  / 液固混合介质;隔振;双腔;波纹管

Key words

solid-liquid mixture vibration isolation / dual-chamber / bellows

引用本文

导出引用
李方硕,陈前,周俊辉. 双腔液固混合介质隔振器刚度阻尼特性分析[J]. 振动与冲击, 2016, 35(10): 91-95
Li Fang Shuo,CHEN Qian,Zhou Junhui. The properties of the stiffness and damping of dual-chamber liquid and solid mixture vibration isolator[J]. Journal of Vibration and Shock, 2016, 35(10): 91-95

参考文献

[1] 何琳. 潜艇声隐身技术进展[J]. 舰船科学技术, 2006, 28(S2): 9-17.
HE Lin. Development of submarine acoustic stealth technology [J]. SHIP SCIENCE AND TECHNOLOGY,2006, 28(S2): 9-17.
[2] 聂宏,魏小辉. 大型民用飞机起落架关键技术[J]. 南京航空航天大学学报, 2008, 40(04): 427-432.
Nie Hong, Wei Xiaohui. Key Technologies for Landing Gear of Large Civil Aircrafts[J]. Journal of Nanjing University of Aeronautics & Astronautics, 2008, 40(04): 427-432.
[3] 张利国,张嘉钟,贾力萍,等. 空气弹簧的现状及其发展[J]. 振动与冲击, 2007, 26(2): 146-151.
Zhang Liguo, Zhang Jiazhong, Jia Liping, et al. FUTURE AND DEVELOPMENT OF AIR SPRINGS[J]. JOURNAL OF VIBRATION AND SHOCK, 2007, 26(2): 146-151.
[4] Teng H D, Chen Q. Study on vibration isolation properties of solid and liquid mixture[J]. Journal of Sound and Vibration, 2009, 326(1-2): 137-149.
[5] Wa C. Preliminay investigation into mechanical properties and potential applications of a novel shock absorbing liquid[D]. UK: Manchester University, 1999.
[6] Wa C, So O. Preliminary investigation into the mechanical properties of a novel shock absorbing elastomeric composite[J]. Journal of  Materials Processing Technology, 2001, 119: 379-386.
[7] Gao X, Chen Q, Teng H D. Modeling and dynamic properties of a novel solid and liquid mixture vibration isolator[J]. Journal of Sound and Vibration, 2012, 331(16): 3695-3709.
[8] 余慕春,陈前,高雪,等. 分子弹簧的隔振机理与力学性能研究[J]. 力学学报, 2014,46(04): 553-560.
Yu Muchun, Chen Qian, Gao Xue, et al. INVESTIGATION OF MOLECULAR SPRING ON VIBRATIONS ISOLATION MECHANISM AND MECHANICAL PROPERTIES[J].  Chinese Journal of Theoretical and Applied Mechanics, 2014,46(04): 553-560.
[9] Lee J, Kim K. A method of transmissibility design for dual-chamber pneumatic vibration isolator[J]. Journal of Sound and Vibration,2009, 323(1–2): 67-92.
[10] Lee J, Kim K. Modeling of nonlinear complex stiffness of dual-chamber pneumatic spring for precision vibration isolations[J]. Journal of Sound and Vibration,2007, 301(3-5): 909-926.
[11] 顾宏斌,刘晖,吴东苏. 现代起落架缓冲系统的发展[J]. 航空科学技术, 2008(02): 36-41.
Gu Hongbing, Liu Hui, Wu Dongsu. Development of Research on Modern Landing Gear Shock Absorber[J]. AERONAUTICAL SCIENCE AND TECHNOLOGY, 2008(02): 36-41.
 

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