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首页> 外文期刊>Journal of Sound and Vibration >Theoretical design and experimental verification of a tunable floating vibration isolation system
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Theoretical design and experimental verification of a tunable floating vibration isolation system

机译:可调浮动隔振系统的理论设计与实验验证

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A fluid-type floating vibration isolation system was developed based on anti-resonance mechanism. The mathematical model was derived for theoretical analysis. The system enables completely isolate vibration at any specific frequency, when the frequency of anti-resonance of the floating vibration isolation system is adjusted to the vibration frequency by tuning the added mass of flowing fluid. Since the approach only alters the inertial force of added mass rather than changing the entire system stiffness, the robustness of the system's static stability remains during a tuning process, and the system can perform vibration isolation superbly at very low frequencies. A prototype of fluid-type floating vibration isolation system was designed, built and tested to validate the mathematical model. The experimental results illustrated a good agreement with the theoretical analysis.
机译:基于反共振机理,开发了一种流体式浮动隔振系统。推导了数学模型以进行理论分析。当通过调整流动流体的附加质量将浮动隔振系统的反共振频率调整为振动频率时,该系统可以完全隔离任何特定频率的振动。由于该方法仅改变增加的质量的惯性力,而不改变整个系统的刚度,因此系统静态稳定性的鲁棒性在调谐过程中保持不变,并且该系统可以在非常低的频率下实现出色的振动隔离。设计,建造和测试了流体式浮动隔振系统的原型,以验证数学模型。实验结果与理论分析吻合良好。

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