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On the isolation properties of semiactive dampers

机译:关于半导体阻尼器的隔离性质

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The primary purpose of this study is to evaluate and better understand the isolation properties of semiactive suspensions. Specifically, this study will answer the question regarding why semiactive dampers are able to isolate at frequencies well below; those for passive dampers, even though they do not add any energy to the system. A single suspension model is used to derive and analytically evaluate the transmissibility properties of passive and semiactive dampers. The results show that for semiactive dampers, the frequency range of isolation and the transmissibility amplitude are functions of xi, the damping ratio. In contrast, the isolation frequency range for passive dampers is completely independent of xi. Furthermore, the results show that for sufficiently large xi, semiactive dampers are able to provide isolation at all frequencies. This feature is useful for many applications, particularly for sensitive machinery that cannot tolerate any overshoot in power-up or power-down, and yet must have good isolation during normal operation. Passive suspensions offer only one of the two aspects, whereas semiactive suspensions offer both. [References: 11]
机译:本研究的主要目的是评估和更好地理解半导体悬浮液的隔离性质。具体而言,该研究将回答关于为什么半视力阻尼器能够在低于频率下隔离的问题;对于被动阻尼器的那些,即使他们没有向系统添加任何能量。单个悬架模型用于导出并分析评估被动和半阻尼器的传动性特性。结果表明,对于半导体阻尼器,隔离频率范围和传输幅度是XI的函数,阻尼比。相反,被动阻尼器的隔离频率范围完全独立于Xi。此外,结果表明,对于足够大的Xi,半视力阻尼器能够在所有频率下提供隔离。此功能对于许多应用是有用的,特别是对于无法容忍上电或断电的任何过冲的敏感机器,并且在正常操作期间必须具有良好的隔离。被动暂停只提供两个方面中的一个,而半决赛暂停则提供两者。 [参考:11]

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