期刊文献+

半主动控制液力悬置的模拟和实验研究 被引量:6

Simulation and Experimental Study of Semi-Active Control Hydraulic Mount
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摘要 设计开发了一种阻尼可调式半主动控制液力悬置 ,通过调节惯性通道的截面积可以改变减振器动刚度和滞后角的峰值发生频率和最大峰值的幅值 ,从而达到改变减振器动特性的目的 .双层隔振实验台上的实验结果表明在输入激励幅值不变的情况下 ,通过改变惯性通道的截面积可以在各种激振频率下得到最佳的隔振效果 ,在实际应用中可以根据发动机的实际转速实时调节减振器的惯性通道截面积 。 A new semi active controlled hydraulic mount was developed. Its dynamic characteristics can be improved by adjusting the cross section of its inertia channel. Theoretical analysis and system test show that the design of the semi active absorber is reasonable and effective. The dynamic stiffness and damping performance of the hydraulic mount could be changed through adjusting the cross sectional area of the inertia channel. Test results on a double mass system show that the optimum vibration isolation effect could be obtained at different exciting frequencies by adjusting the cross section area of inertia channel.
出处 《北京理工大学学报》 EI CAS CSCD 2000年第5期570-575,共6页 Transactions of Beijing Institute of Technology
基金 部级预研项目
关键词 减振器 液力悬置 半主动控制 结构设计 vibration absorber hydraulic mount semi active control
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参考文献3

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同被引文献42

  • 1胡旭林,杨光.ER流体性能的仿真研究[J].长春工业大学学报,2005,26(2):166-168. 被引量:4
  • 2史文库,郑瑞清,闵海涛.发动机电致伸缩液压悬置隔振特性的仿真研究[J].系统仿真学报,2005,17(10):2504-2507. 被引量:7
  • 3马岩,杨春梅.微米长薄片木纤维切削加工功率的理论计算方法与效益分析[J].林业科学,2006,42(3):44-47. 被引量:16
  • 4许沧粟,黄承修,郦光明.键合图理论在发动机电流变液力悬置中的应用[J].机械工程学报,2006,42(5):219-223. 被引量:7
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  • 6Hamid Reza Karimi. Optimal vibration control of vehicle engine-body system using haar functions [J]. International Journal of Control, Automation, and Systems,2006,4(6) :714-724.
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  • 8Aaron A. Geisberger. Hydraulic engine mount modeling, parameter identification and experimental validation [D]: [ Master' s Degree Thesis]. [S. l. ]: University of Waterloo,2000.
  • 9Thanh Quoc Truong. Optimal switching parameter control of semi-active engine mount[C]. Gyeonggi- Do., Korea: ICCASS2005,Kintex, Gyeonggi-Do. , Korea, 2005.
  • 10G. Kim, R. Singh. A study of passive and adaptive hydraulic engine mount systems with emphasis on non-linear eharaeteristies[J]. Journal of Sound and Vibration, 1995,179(3) :427-453.

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