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电流变阻尼器的动态特性实验研究 被引量:7

Experimental Investigations on Damping Properties of Electrorheological Fluid Damper
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摘要 设计制造了一种多层滑动极板式电流变阻尼器 ,使用自制的电流变液 ,采用正弦激励 ,进行了这种电流变阻尼器的阻尼特性试验。研究了电流变阻尼器的载荷 位移迟滞特性和载荷 速率迟滞特性 ,同时研究分析了这种电流变阻尼器的周期能耗特性及等效粘性阻尼特性。结果表明 ,阻尼器的周期能耗量随外加电场强度的增加而增加 ,外加电场强度越大 ,阻尼器的等效阻尼系数越大。阻尼器的阻尼特性体现为库仑阻尼和粘性阻尼的组合 ,其中随外加电场强度可控的主要是库仑阻尼力 ,而且库仑阻尼力不仅与外加电场强度有关 ,也与阻尼器的运动速度有关。该阻尼器系统是一个强非线性系统 ,极板间电流变液在低剪切应变率时表现为Bingham塑性流体 ,在高剪切应变率时流变性态比较复杂 。 A type of sliding multi-electrode electrorheological fl uid damper has been designed and manufactured. Dynamic experiments were perform ed to measure its damping characteristics by sine excitation. The force-displa cement and force-velocity hysteretic characteristics of the damper were studied and its cyclic energy dissipation and equivalent viscous damping properties wer e also analyzed. The results show that the cyclic energy dissipation of the damp er and equivalent damping coefficient increase with increasing electric field st rength. The damping characteristics represent a combination of viscous damping a nd Coulomb damping, and the latter is dominant in the controllable damping force of the damper. The phenomenon, appearing multi-enclosed domains in the F vs V hysteretic cycles when the movement of the damper is fast, manifests that rheolo gical behaviors of ER fluid is related to the shear strain rate of fluid between electrodes. On other words, the damper is a nonlinear system, its dynamic chara cteristics will be influenced by the applied electric field and velocity of the damper.
作者 李斌 杨智春
机构地区 西北工业大学
出处 《应用力学学报》 CAS CSCD 北大核心 2003年第1期81-84,共4页 Chinese Journal of Applied Mechanics
关键词 电流变液 电流变阻尼器 动态特性 等效阻尼 迟滞特性 ER damper, dynamic test, equivalent damping, hyste retic characteristics.
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  • 1徐顺香,瞿伟廉,袁润章.采用电流变阻尼器汽车悬架的半主动控制研究[J].汽车工程,2004,26(5):593-595. 被引量:11
  • 2郝田,陈一泓,徐懋,许元泽.电流变学研究进展[J].力学进展,1994,24(3):315-335. 被引量:40
  • 3刘明尧,胡业发,周祖德.磁力轴承转子系统非线性支承特性的研究[J].中国机械工程,2005,16(15):1377-1379. 被引量:3
  • 4褚福磊,张正松,冯冠平.碰摩转子系统的混沌特性[J].清华大学学报(自然科学版),1996,36(7):52-57. 被引量:88
  • 5杨飏,欧进萍.新型电流变智能隔震装置的结构隔震效果分析[J].工程力学,2007,24(7):140-145. 被引量:2
  • 6Benjeddou A. Advances in hybrid active-passive vibration and noise control via piezoelectric and constrained layer treatments[J]. Journal of Vibration and Control. 2001,7:565-602.
  • 7Hagood N W, Floton A V. Damping of structural vibration with piezoelectric materials and passive electrical networks[J]. Journal of Sound and Vibration. 1991, 146(2): 243-268.
  • 8Liao W H, Wang K W. On the active-passive hybrid vibration control actions of structures with active constrained layer treatments[C]. Design Engineering Technical Conference. ASME. 3 part c(1995): 125-140.
  • 9Janocha H, Stiebel C H, Wurty T H. Power amplifiers for piezoelectric actuators in responsive systems for active vibration control[M]. Ed. A. Preumont, Kluwer Academic Publishers. Dordrecht/Boston/London, 2002.
  • 10Liao W H, Wang K W. A new active constrained layer configuration with enhanced boundary actions[J]. Smart Materials and Structures, 1996. 5: 638-648.

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