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首页> 外文期刊>Journal of Vibration and Acoustics >Fluidic Composite Tunable Vibration Isolators
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Fluidic Composite Tunable Vibration Isolators

机译:流体复合可调隔振器

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摘要

Coupling a fluidic flexible matrix composite (F~2MC) to an air-pressurized fluid port produces a fundamentally new class of tunable vibration isolators. This Fluidlastic device provides significant vibration reduction at an isolation frequency that can be tuned over a broad frequency range. The material properties and geometry of the F~2MC element, as well as the port inertance, determine the isolation frequency. A unique feature of this device is that the port inertance depends on pressure so the isolation frequency can be adjusted by changing the air pressure. For constant port inertance, the isolation frequency is largely independent of the isolated mass so the device is robust to changes in load. A nonlinear model is developed to predict isolator length and port inertance. The model is linearized and the frequency response calculated. Experiments agree with theory, demonstrating a tunable isolation range from 9 Hz to 36 Hz and transmitted force reductions of up to 60 dB at the isolation frequency.
机译:将流体柔性基质复合材料(F〜2MC)与空气加压流体端口耦合会产生根本上新型的可调振动隔离器。这种流体弹性装置在隔离频率上可显着降低振动,该隔离频率可在很宽的频率范围内进行调节。 F〜2MC元件的材料特性和几何形状以及端口惯性决定了隔离频率。该设备的独特之处在于端口惯性取决于压力,因此可以通过改变气压来调节隔离频率。对于恒定的端口惯性,隔离频率在很大程度上与隔离的质量无关,因此该器件可抵抗负载变化。开发了一个非线性模型来预测隔离器的长度和端口惯性。将模型线性化并计算频率响应。实验与理论相符,证明了9 Hz至36 Hz的可调隔离范围,并且在隔离频率下传递力降低了60 dB。

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