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The damping performance of a single particle impact damper

机译:单颗粒冲击阻尼器的阻尼性能

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摘要

This paper presents results from computer simulations used to investigate the damping performance of a single particle vertical impact damper over a wide range of excitation frequencies and amplitudes, particle-to-structure mass ratios, lid clearance ratios, structural damping ratios, and coefficients of restitution. Measurements of the damping performance, particle flight times, and structure contact times are presented. Performance at both the structure's undamped natural frequency and off-resonant conditions are studied in depth. Maximum damping at a fixed oscillation frequency occurs at an optimal lid height that increases with increasing mass ratio, increasing structural damping ratio, but decreases with coefficient of restitution. The corresponding maximum degree of damping increases with increasing mass ratio and coefficient of restitution, but decreases with increasing structural damping ratio. Field plots of the damping ratio are also presented as functions of oscillation amplitude and frequency to demonstrate the damper performance over a range of design parameters and operating conditions. (c) 2004 Elsevier Ltd. All rights reserved.
机译:本文介绍了计算机模拟的结果,该模拟用于研究单个颗粒垂直冲击阻尼器在大范围的激励频率和振幅,颗粒与结构的质量比,盖间隙率,结构阻尼比以及恢复系数的阻尼性能。 。给出了阻尼性能,颗粒飞行时间和结构接触时间的测量值。深入研究了结构在无阻尼固有频率和非谐振条件下的性能。在固定的振荡频率下,最大阻尼发生在最佳盖高度处,该高度随着质量比的增加,结构阻尼比的增加而增加,但随着恢复系数的降低而减小。相应的最大阻尼度随质量比和恢复系数的增加而增加,但随结构阻尼比的增加而减小。阻尼比的现场图也作为振荡幅度和频率的函数呈现,以证明在一系列设计参数和工作条件下的阻尼器性能。 (c)2004 Elsevier Ltd.保留所有权利。

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