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Enhance the damping density of eddy current and electromagnetic dampers

机译:增强涡流和电磁阻尼器的阻尼密度

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Over the past decades, a great variety of dampers have been developed and applied to mechanical, aerospace, and civil structures to control structural vibrations. This study is focused on two emerging damper types, namely, eddy current dampers (ECDs) and electromagnetic damper (EMDs), both of which are regarded as promising alternatives to commonly applied viscous fluid dampers (VFDs) because of their similar mechanical behavior. This study aims to enhance the damping densities of ECDs and EMDs, which are typically lower than those of VFDs, by proposing new designs with multiple improvement measures. The design configurations, mechanisms, and experimental results of the new ECDs and EMDs are presented in this paper. The further comparison based on the experimental results revealed that the damping densities of the proposed ECD and EMD designs are comparable to those of market-available VFDs. Considering ECDs and EMDs are solid-state dampers without fluid leakage problems, the results obtained in this study demonstrate a great prospect of replacing conventional VFDs with the improved ECDs and EMDs in future large-scale applications.
机译:在过去的几十年中,已经开发出了各种各样的阻尼器,并应用于机械,航空航天和民用结构来控制结构振动。该研究专注于两个出现的阻尼器类型,即涡流阻尼器(ECD)和电磁阻尼器(EMD),这两者被认为是由于其类似的机械行为而被认为是普通施加粘性流体阻尼器(VFDS)的有前途的替代品。本研究旨在通过提出具有多种改进措施的新设计,增强了欧洲经济委员会和EMDS的阻尼密度,其通常低于VFDS。本文介绍了新ECD和EMD的设计配置,机制和实验结果。基于实验结果的进一步比较显示,所提出的ECD和EMD设计的阻尼密度与市场可用VFDS的阻尼密度相当。考虑到ECD和EMD是固态阻尼器,没有流体泄漏问题,本研究中获得的结果表明,在未来的大规模应用中,用改进的ECDS和EMDS更换传统VFD的巨大前景。

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