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Tunable fluidic composite mounts for vibration absorption

机译:可调节的流体复合材料安装座,用于吸收振动

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Tuned vibration absorbers have been shown to reduce the forced vibration response at a specific frequency for many applications. This paper presents a novel absorber using fluidic flexible matrix composites (F~2MC). Fiber reinforcement of the F~2MC tube kinematically links the internal volume with axial strain so that fluid flows in and out of an axially vibrating tube. Coupling of an F~2MC tube through a fluid port to a pressurized air accumulator produces a novel absorber that can suppress vibration at the tuned absorber frequency. A 3-D elasticity model for the tube and a lumped model for the fluid mass produce a fourth-order F~2MC-mass model. The analytical closed-form isolation frequency is derived and shown to depend primarily on the port inertance, orifice flow coefficient, and the tube parameters. Viscous damping in the orifice can be adjusted to reduce the resonant peak and broaden the isolation bandwidth. With a fully closed orifice, the zero disappears and the system has a single resonant peak. For a constant port inertance, variations in the primary mass do not change the isolation frequency, making the F~2MC absorber robust to mass variations. Experimental results validate the theoretical predictions by demonstrating a tunable isolation frequency that is insensitive to primary mass variation as well as a 94% reduction in forced vibration response relative to the closedvalve case at the isolation frequency.
机译:已经表明,对于许多应用而言,调谐式减振器可以降低特定频率下的强制振动响应。本文提出了一种使用流体柔性基质复合材料(F〜2MC)的新型吸收剂。 F〜2MC管的纤维增强在运动学上将内部空间与轴向应变联系在一起,从而使流体流入和流出轴向振动管。 F〜2MC管通过流体端口与增压空气蓄能器的耦合产生了一种新型的吸收器,它可以抑制调谐吸收器频率下的振动。管的3D弹性模型和流体质量的集总模型产生了四阶F〜2MC质量模型。得出了解析的闭合形式的隔离频率,并显示出该频率主要取决于端口的惯性,孔口流量系数和管参数。可以调节孔中的粘性阻尼,以减小谐振峰值并加宽隔离带宽。在孔口完全关闭的情况下,零消失,系统只有一个共振峰。对于恒定的端口惯性,主要质量的变化不会改变隔离频率,从而使F〜2MC吸收器对质量变化具有鲁棒性。实验结果通过展示对主要质量变化不敏感的可调隔离频率以及相对于隔离阀在隔离频率下的强制振动响应降低了94%,验证了理论预测。

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