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Mass loaded resonance of a single unit impact damper caused by impacts and the resulting kinetic energy influx

机译:冲击和由此产生的动能流入引起的单个单元冲击阻尼器的质量加载共振

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摘要

This paper presents experimental and numerical investigations of resonance vibrations of an impact damper other than at its original resonance frequency. In the numerical modelling of impacts, the principle of conservation of momentum is employed. An improved scheme is proposed for identifying the time of contact and calculation of the state variables after impact. This scheme avoids false detection of collisions and embodies collisions or contacts with infinitesimally small differences in velocities. Descriptions of the motion trajectories and how the relative phase of the impact contributes to the momentum transfer and degree of damping are presented. Numerical simulations are in good agreement with experimental results with respect to the general performance and the shift in resonance which occurs with large amplitude excitation. The novel feature of this paper is the modelling of the mass loading effect of impacts through the transfer of kinetic energy.
机译:本文介绍了除其原始共振频率以外的减振器共振振动的实验和数值研究。在冲击的数值模拟中,采用了动量守恒的原理。提出了一种改进的方案,用于确定接触时间和冲击后状态变量的计算。该方案避免了错误的碰撞检测,并体现了速度或速度上的微小差异的碰撞或接触。介绍了运动轨迹以及冲击的相对相位如何影响动量传递和阻尼程度的描述。数值模拟与实验结果在总体性能以及大振幅激励下发生的共振位移方面与实验结果非常吻合。本文的新颖特征是通过动能的传递来模拟冲击的质量负荷效应。

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