利用电磁阻尼进行振动隔离的实验研究

Mechanics Pub Date : 2024-04-23 DOI:10.5755/j02.mech.34759
Easu Dakshnamoorthy, Ralph H. Ryntathiang, Sarang, Sivakumar, Sidharth Krishna VINOD KUMAR
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引用次数: 0

摘要

本研究介绍了一项实验调查,重点是利用电磁阻尼技术减少振动。目的是探索电磁阻尼在减轻不良振动和增强系统稳定性方面的有效性。实验使用了单度垂直约束弹簧-质量系统、两对电磁铁、Lab VIEW 软件、加速度计和 DAQ 卡。在不同的通电条件下使用了 SWG17 和 SWG19 线圈电磁铁,以评估电磁阻尼系统的有效性。系统地改变了激励频率、振幅和电磁阻尼力等参数,并分析了它们对隔振的影响。结果表明,电磁阻尼系统能在一定频率和振幅范围内有效地隔离基座引起的振动。实验数据显示,在较低频率(6 Hz 以下)下,加速度有效值振幅与未通电电磁铁的系统相同;在较高频率(10 Hz 以上)下,SDVC 系统中所有 2V、4V 和 6V 通电电磁铁的加速度有效值振幅变化微乎其微。在较高频率的底座激励下,顶板出现了明显的隔离现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Study of Vibration Isolation Using Electromagnetic Damping
This study presents an experimental investigation focused on the reduction of vibrations using electromagnetic damping techniques. The objective is to explore the effectiveness of electromagnetic damping in mitigating undesirable vibrations and enhancing system stability. A single-degree vertically constrained spring-mass system, two pairs of electromagnets, Lab VIEW software, an accelerometer, DAQ card were used for the experimentation. SWG 17 and SWG19 coil electromagnets were used in different conditions of energization to evaluate the effectiveness of the electromagnetic damping system. The parameters such as excitation frequency, vibration amplitude, and electromagnetic damping force are systematically varied and their effects on vibration isolation are analysed. The results demonstrate that the electromagnetic damping system effectively isolates base induced vibrations across a range of frequencies and amplitudes. The experimental data reveal  that at lower frequencies, upto 6Hz the amplitude of RMS acceleration was same as that of the system without energizing the electromagnet and at higher frequencies, above 10 Hz, all 2V,4V and 6V of energized electromagnets in the SDVC system  showed negligible  variation in the  RMS amplitude of acceleration. A substantial isolation of top plate was observed at higher frequencies of base excitation.    
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