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Advances in structural vibration control application of magneto-rheological visco-elastomer 被引量:1

Advances in structural vibration control application of magneto-rheological visco-elastomer
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摘要 Magneto-rheological visco-elastomer (MRVE) as a new smart material developed in recent years has several significant advantages over magneto-rheological liquid. The adjustability of structural dynamics to random environmental excitations is required in vibration control. MRVE can supply considerably adjustable damping and stiffness for structures, and the adjustment of dynamic properties is achieved only by applied magnetic fields with changeless structure design. Increasing researches on MRVE dy- namic properties, modeling, and vibration control application are presented. Recent advances in MRVE dynamic properties and structural vibration control application including composite structural vibration mitigation under uniform magnetic fields, vibration response characteristics improvement through harmonic parameter distribution, and optimal bounded parametric control design based on the dynamical programming principle are reviewed. Relevant main methods and results introduced are beneficial to understanding and researches on MRVE application and development. Magneto-rheological visco-elastomer (MRVE) as a new smart material developed in recent years has several significant advantages over magneto-rheological liquid. The adjustability of structural dynamics to random environmental excitations is required in vibration control. MRVE can supply considerably adjustable damping and stiffness for structures, and the adjustment of dynamic properties is achieved only by applied magnetic fields with changeless structure design. Increasing researches on MRVE dy- namic properties, modeling, and vibration control application are presented. Recent advances in MRVE dynamic properties and structural vibration control application including composite structural vibration mitigation under uniform magnetic fields, vibration response characteristics improvement through harmonic parameter distribution, and optimal bounded parametric control design based on the dynamical programming principle are reviewed. Relevant main methods and results introduced are beneficial to understanding and researches on MRVE application and development.
出处 《Theoretical & Applied Mechanics Letters》 CAS CSCD 2017年第2期61-66,共6页 力学快报(英文版)
基金 supported by the National Natural Science Foundation of China(11572279,11432012,and U1234210) the Zhejiang Provincial Natural Science Foundation of China(LY15A020001) the Hong Kong Polytechnic University Fund(1-BBY5)
关键词 Magneto-theological visco-elastomer Controllable sandwich structures Nonlinear stochastic vibrationPeriodic parameter distributionOptimal control Magneto-theological visco-elastomer Controllable sandwich structures Nonlinear stochastic vibrationPeriodic parameter distributionOptimal control
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