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FLUIDIC COMPOSITE TUNED VIBRATION ABSORBERS

机译:流体复合调谐振动吸收器

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摘要

This paper presents a novel Tuned Vibration Absorber (TVA) using Fluidic Flexible Matrix Composites (F~2MC). Fiber reinforcement of the F~2MC tube kinematically links the internal volume with axial strain. Coupling of a fluid-filled F~2MC tube through a fluid port to a pressurized air accumulator can suppress primary mass forced vibration at the tuned absorber frequency. 3-D elasticity model for the tube and a lumped fluid mass develops a 4th-order model of an F~2MC-mass system. The model provides a closed form isolation frequency that depends mainly on the port inertance, orifice flow coefficient, and the tube parameters. A small amount of viscous damping in the orifice increases the isolation bandwidth. With a fully closed orifice, the zero disappears and the system has a single resonant peak. Variations in the primary mass do not change the isolation frequency, making the F~2MC TVA robust to mass variations. Experimental results validate the theoretical predictions in showing a tunable isolation frequency that is insensitive to primary mass variations, and a 94% reduction in forced vibration response relative to the closed-valve case.
机译:本文提出了一种使用流体柔性基体复合材料(F〜2MC)的新型调谐振动吸收器(TVA)。 F〜2MC管的纤维增强在运动学上将内部体积与轴向应变联系在一起。充满流体的F〜2MC管通过流体端口与增压空气蓄能器的耦合可以抑制调谐质量的吸收器频率下的一次质量强迫振动。管的3D弹性模型和集总流体质量建立了F〜2MC质量系统的4阶模型。该模型提供了一个封闭形式的隔离频率,该频率主要取决于端口的惯性,节流孔系数和管道参数。孔口中的少量粘性阻尼会增加隔离带宽。在孔口完全关闭的情况下,零消失,系统只有一个共振峰。初级质量的变化不会改变隔离频率,从而使F〜2MC TVA对质量变化具有鲁棒性。实验结果验证了理论预测的结果,即显示了对主要质量变化不敏感的可调隔离频率,并且相对于闭阀情况,强制振动响应降低了94%。

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