首页> 外文期刊>Journal of Sound and Vibration >Prediction methods for the damping effect of multi-unit particle dampers based on the cyclic iterations of a single-unit particle damper
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Prediction methods for the damping effect of multi-unit particle dampers based on the cyclic iterations of a single-unit particle damper

机译:基于单单元粒子阻尼器的循环迭代的多单元粒子阻尼器阻尼效应预测方法

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摘要

Particle damping (PD) has been successfully utilized in numerous aerospace and industrial applications. However, compared with the well-studied single-unit multi-particle dampers, multi-unit multi-particle dampers (MUPDs) have seldom been investigated because of the complex interactions among different damping units. This research presents two damping effect prediction methods that are based on the cyclic iterations of the damping effect of a single-unit particle damper. The first is a numerical method that uses the discrete element method, and the other is a semi-empirical method that adopts damping ratio versus normalized acceleration curves for PD. In both methods, interactions among dampers at different locations are considered. The damping effects of six different MUPDs applied to a wheel structure were experimentally investigated. Four of them, which were named multi-stage MUPDs, consisted of groups of dampers mounted at various radial location (The dampers were located at positions of different acceleration amplitudes.). The damping prediction results of the two proposed iteration methods, together with those of a simplified method that regards the MUPD as a single-unit particle damper with same equivalent particle mass ratio, were compared with experiments. Significant improvements in prediction accuracy for the two iteration methods were observed. (C) 2018 Published by Elsevier Ltd.
机译:粒子阻尼(PD)已成功地利用了许多航空航天和工业应用。然而,与所学习的单单元多粒子阻尼器相比,由于不同阻尼单元之间的复杂相互作用,多单元多粒子阻尼器(MUPDS)很少被研究。该研究呈现了两个阻尼效果预测方法,其基于单单元粒子阻尼器的阻尼效果的循环迭代。首先是使用离散元件方法的数值方法,另一个是采用分割比率对PD的归一化加速曲线采用阻尼比的半经验方法。在这两种方法中,考虑了不同位置的阻尼器之间的相互作用。通过实验研究了六种不同MUPDS的阻尼效应。其中四个被命名为多级MUPDS,由安装在各种径向位置的阻尼器组(阻尼器位于不同加速度幅度的位置。将两种提出的迭代方法的阻尼预测结果与简化方法的阻尼预测结果与实验室的简化方法一起与实验进行了比较了与具有相同当量颗粒质量比的单位颗粒阻尼器。观察到两种迭代方法的预测精度的显着改进。 (c)2018年由elestvier有限公司发布

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