基于磁共振阻尼器的减振系统在弹簧质量变化时的性能改进与能量收集

Energies Pub Date : 2024-07-12 DOI:10.3390/en17143436
Bogdan Sapiński, Ł. Jastrzębski
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摘要

本文涉及一种基于磁流变(MR)阻尼器的减震系统,该系统具有能量收集能力,并考虑到弹簧质量的变化。该系统是一个带电耦合的机械谐波振荡器,通过运动学激励使其运动。作者研究了磁共振减振器控制线圈(减振器控制线圈)在假设的正弦激励频率范围内由电磁采集器产生的电压所产生的交流电直接供电时的系统性能。当阻尼器控制线圈中的电流增大时,这种系统能够减弱近共振频率范围内的振动;但其缺点是在较高频率下振动会放大。为消除这一负面特征,建议在阻尼器控制线圈上并联并联电容器。然后,可以根据阻尼器控制线圈中的电流、弹簧质量和并联电容器的容量对系统进行实验测试,以便根据假定的性能指标评估系统性能。结果表明,在较高的激振频率下,系统性能有明显改善。
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Performance Improvement of an MR-Damper-Based Vibration-Reduction System with Energy Harvesting at Sprung Mass Changes
The present paper is concerned with a magnetorheological (MR)-damper-based vibration-reduction system with energy harvesting capability considering sprung mass changes. The system represents a mechanical harmonic oscillator with electrical coupling, set in motion by kinematic excitation. The authors examine the system performance in the case when the MR damper control coil (damper control coil) is powered directly by the alternating current resulting from the voltage generated in an electromagnetic harvester in the assumed frequency range of sine excitation. Such a system is able to attenuate vibration in the near-resonance frequency range when the current in the damper control coil increases; however, its drawback is vibration amplification at higher frequencies. To eliminate this negative feature, it is proposed to connect shunt capacitors in parallel with the damper control coil. Then, the system can be tested experimentally in terms of current in the damper control coil, sprung mass, and the capacity of shunt capacitors in order to evaluate system performance according to the assumed performance index. The obtained results demonstrate significant improvement in system performance at higher frequencies of excitation.
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