Design and Analysis of Magnetorheological Damper Paralleling with Constant Throttling Orifices

Magnetorheological damper (MRD) is a first-rate device for semiactive control of vehicle suspension. However, the traditional MRD with complex inverse model and regulating process is difficult to be applied to the practice. In order to overcome these disadvantages, a new type of MRD paralleling with...

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Veröffentlicht in:Ji xie gong cheng xue bao 2015-04, Vol.51 (8), p.172-177
Hauptverfasser: Peng, Zhizhao, Zhang, Jinqiu, Yue, Jie, Zhang, Lei, Huang, Dashan
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Sprache:chi
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Zusammenfassung:Magnetorheological damper (MRD) is a first-rate device for semiactive control of vehicle suspension. However, the traditional MRD with complex inverse model and regulating process is difficult to be applied to the practice. In order to overcome these disadvantages, a new type of MRD paralleling with constant throttling orifices is proposed. If the current of winding is set to zero, the magnetorheological fluid (MRF) flow through both inactive inducing gap and constant throttling orifices, so the damping is minimum; if the current is set to the maximum value, the inducing gap is plugged by the activated MRF and works as a pressure limiter, so the fluid only flow though the constant throttling orifices until the MRF in the inducing gap is yielded, which means the damping is maximum. The mathematical model of the proposed damper is deduced to provide theoretic foundation for structure design and damping force analysis. The feasibility of this novel MRD is verified by magnetic circuit simulation and damping exper
ISSN:0577-6686
DOI:10.3901/JME.2015.08.172