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- W2320723839 abstract "This study is to explore the controllable ratio of damping characteristics based on a multielectrode electrorheological(MER) flow mode damper, and the MER damper is applied to suppress the vibration system to evaluate the effectiveness. The parallel multielectrode electrorheological(PMER) damper and the serial multielectrode electrorheological(SMER) dampers are designed, fabricated, tested, and analyzed the controllable ratio of damping performances of MER dampers. The design method for ER dampers based on the requirements of the system damper such as controllable damping force, controllable ratio and the ratio of rebound damping force and compression damping force is described. From experimental results, the SMER damper can produce a relatively high damping force with short stroke and low effective ER fluid by selecting appropriate electrode length, electrode gap and number of electrodes. The SMER damper is applied to the single-degree-of-freedom model of a vibration system. Semiactive vibration control systems equipped with the SMER dampers and motion controllers are designed for the evaluation of the performance of the SMER dampers. The experimental results of the semi-active control system have demonstrated that the displacement and the acceleration power spectral density are significantly reduced by applying the semi-active control on the SMER dampers. The time and frequency response of the displacement and the acceleration indicate the effectiveness of the design of the SMER damper." @default.
- W2320723839 created "2016-06-24" @default.
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- W2320723839 date "2005-06-01" @default.
- W2320723839 modified "2023-10-18" @default.
- W2320723839 title "DESIGN AND TESTING OF A MULTIELECTRODE ELECTRORHEOLOGICAL DAMPER" @default.
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- W2320723839 doi "https://doi.org/10.1142/9789812702197_0142" @default.
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