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一种基于偏心飞轮的运动转换器的研究与仿真

Research and Simulation of Eccentric Flywheel Based on Motion Transformer
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摘要 根据惯容器是一种力放大机构的本质,同时又根据偏心轮转动时的激振效果,设计出了一种偏心飞轮的运动转换器。将该运动转换器元件应用于减振系统,通过给定系统一定简谐激励,利用Matlab数值仿真,得出系统的幅频曲线。通过与普通减振系统对比,发现所提及的运动转换器元件可以使系统的幅频曲线在共振区域拓宽,并极大地减小了系统的共振峰。另一方面,为了更真实地模拟现实情况,给予了系统一定的随机激励,求解出系统的位移响应,总结了系统位移方差及其衰减比,发现在随机激励的作用下系统比普通的减振器有更好的减振效果。 In this paper,a kind of eccentric flywheel is designed based on the nature of the force amplifying mechanism and the vibration effect of the eccentric rotation.The motion transformer is applied to the vibration isolation system.By giving the system certain harmonic excitation and using Matlab numerical simulation,the amplitude-frequency curve is obtained.Comparing with common vibration isolation system,it is found that the motion transformer mentioned in this paper can broaden the amplitude frequency curve of the system in the resonance region,and greatly reduce the resonance peak of the system.On the other hand,random excitation is given for simulating the real situation better,the displacement response of the system is acquired and the standard deviation of displacement and attenuation ratio of the system is figured out.It is found that the system can achieve better damping effect than the normal shock absorber.
出处 《石家庄铁道大学学报(自然科学版)》 2018年第1期68-73,共6页 Journal of Shijiazhuang Tiedao University(Natural Science Edition)
基金 国家自然科学基金(11372198) 教育部新世纪优秀人才支持计划(NCET-11-0936) 河北省高等学校创新团队领军人才计划(LJRC018) 河北省高等学校高层次人才科学研究项目(GCC2014053) 河北省高层次人才资助项目(A201401001)
关键词 偏心惯容器 减振效果 MATLAB仿真 随机激励 inerter with eccentric wheels vibration-suppressed effective Matlab simulation random excitation
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  • 1张孝良,聂佳梅.摩擦力对滚珠丝杠惯容器频响特性的影响[J].机械科学与技术,2015,34(5):770-774. 被引量:5
  • 2沈荣瀛,卢峥.MTU柴油发电机组隔振装置振动固有特性分析[J].噪声与振动控制,1994,14(3):2-7. 被引量:33
  • 3王光,董邦宜.小中间质量双层隔振试验研究[J].噪声与振动控制,1989,9(4):38-43. 被引量:9
  • 4裘揆,陈乐生,陈大跃.力隔振试验系统的结构设计和性能分析[J].机械工程学报,2007,43(2):168-172. 被引量:8
  • 5SMITH M C. Synthesis of Mechanical Networks: The Inerter[ J]. IEEE Transactions on Automatic Control, 2002, 47 (10): 1648 - 1662.
  • 6SMITH M C. Force - controlling mechanical device, patent pending,lntl. App. No. PCT/GB02/03056, priority date :4 July 2001.
  • 7SMITH M C. Performance Benefits in Passive Vehicle Suspensions Employing Inerters [ J ]. Vehicle System Dynamics, 2004, 42 (4) : 235 - 257.
  • 8CHEN Michael Z Q, Papageorgiou Christos, Scheibe Frank, et al. The Missing Mechanical Circuit Element [ J ]. IEEE Circuits and Systems Magazine, 2009, 9( 1 ) : 10 - 26.
  • 9Papageorgiou Christakis, SMITH M C. Laboratory Experimental Testing of Inerters[ C ]// 44th IEEE Conference on Decision and Control, Seville, Spain, 2005:3351 - 3356.
  • 10Maosheng Xu. The Realisation of Inerter Concept and The Application to Building Suspension[D]. Taibei:National Taiwan University ,2005.

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