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Force transmissibility and vibration power flow behaviour of inerter-based vibration isolators

机译:基于过程的振动隔离器的力传递和振动功率流动

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This paper investigates the dynamics and performance of inerter-based vibration isolators. Force/displacement transmissibility and vibration power flow are obtained to evaluate the isolation performance. Both force and motion excitations are considered. It is demonstrated that the use of inerters can enhance vibration isolation performance by enlarging the frequency band of effective vibration isolation. It is found that adding inerters can introduce anti-resonances in the frequency-response curves and in the curves of the force and displacement transmissibility such that vibration transmission can be suppressed at interested excitation frequencies. It is found that the introduction of inerters enhances inertial coupling and thus have a large influence on the dynamic behaviour at high frequencies. It is shown that force and displacement transmissibility increases with the excitation frequency and tends to an asymptotic value as the excitation frequency increases. In the high-frequency range, it was shown that adding inerters can result in a lower level of input power. These findings provide a better understanding of the effects of introducing inerters to vibration isolation and demonstrate the performance benefits of inerter-based vibration isolators.
机译:本文调查了基于中间振动隔离器的动态和性能。获得力/位移传递和振动功率流动以评估隔离性能。考虑力量和运动激发。证明使用惰性剂可以通过扩大有效振动隔离的频带来提高振动隔离性能。发现添加惰性体可以在频率响应曲线中引入抗共振,并且在力和位移传递的曲线中,可以在感兴趣的激励频率下抑制振动传输。结果发现惰性的引入增强了惯性耦合,因此对高频处的动态行为具有很大影响。结果表明,随着激发频率的增加,力和位移透射性随着激发频率增加并且趋于渐近值。在高频范围内,显示添加惰性物可以导致较低的输入功率。这些发现可以更好地理解引入惰性的振动隔离的影响,并展示了基于中间的振动隔离器的性能优势。

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