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Parametric design of an electrorheological shock absorber with the mixed-mode

Parametric design of an electrorheological shock absorber with the mixed-mode
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摘要 A mathematical model based on an electrorheological (ER) shock absorber with the mixed-mode is presented. Its application to the parametric design of an electrorheological fluid shock absorber with the simulation calculation performed by program MATLAB demonstrates that the model can predict the behavior of ER shock absorbers satisfactorily, shorten the design period of an electrorheological shock absorber, and reduce the cost in the prototype manufacturing. The strength analysis based on a three-dimensional finite element model for the electrorheological shock absorber confirm that the structure design of the ER shock absorber is reasonable, and the stress distribution is uniform. A mathematical model based on an electrorheological (ER) shock absorber with the mixed-mode is presented. Its application to the parametric design of an electrorheological fluid shock absorber with the simulation calculation performed by program MATLAB demonstrates that the model can predict the behavior of ER shock absorbers satisfactorily, shorten the design period of an electrorheological shock absorber, and reduce the cost in the prototype manufacturing. The strength analysis based on a three-dimensional finite element model for the electrorheological shock absorber confirm that the structure design of the ER shock absorber is reasonable, and the stress distribution is uniform.
作者 郑玲
出处 《Journal of Chongqing University》 CAS 2003年第2期16-19,共4页 重庆大学学报(英文版)
基金 the National Natural Science Foundation of China (No: 51035030) and the Applied and Basic Research Foundation of Chongqing University
关键词 参数设计 减震器 数学模型 MATLAB 压力分布 汽车 semi- active suspension ER shock absorber design
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参考文献8

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