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Novel, Compact Devices for Reducing Fluid-Borne Noise

机译:用于减少流体传播噪声的新型紧凑型装置

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Hydraulic systems pose a particular problem for noise control. Due to the high speed of sound in hydraulic fluids, components typically designed to reduce fluid-borne noise can easily exceed practical size constraints. This paper presents novel solutions to creating compact and effective noise control devices for fluid power systems. A hydraulic silencer is presented that utilizes a voided polymer lining in lieu of a pressurized bladder. Theoretical modeling is developed which predicts device performance and can assist in future design work. Experimental results are presented to demonstrate the performance of the device. Both voided and non-voided liners are tested to show the effect of the voiding on the performance. In addition, theoretical modeling and experimental results are presented for a prototype Helmholtz resonator that is two orders of magnitude smaller than previously developed devices.
机译:液压系统对噪声控制构成了特殊问题。由于液压流体中的高声速,通常设计用于降低流体传播噪声的部件可以容易地超过实用尺寸约束。本文提出了新的解决方案,用于为流体电力系统创建紧凑型噪声控制装置。提出了一种液压消音器,其利用空隙聚合物衬里代替加压膀胱。制定了理论建模,其预测了设备性能,可以帮助未来的设计工作。提出了实验结果来证明装置的性能。测试无效的和非空隙衬垫,以显示空隙对性能的影响。此外,对原型亥姆霍兹谐振器提出了理论建模和实验结果,该谐振器是比以前开发的装置小的两个数量级。

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