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Numerical and experimental investigations in the damping behavior of particle dampers attached to a vibrating structure

机译:附着在振动结构上的粒子阻尼器阻尼行为的数值和实验研究

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Particle damping is a passive damping technique at which granular material is either filled in a box attached to a vibrating structure or it is filled in holes embedded in the vibrating structure. Due to the structural vibrations, momentum is transferred to the granular material which interacts with each other. As a result, energy is dissipated by impacts and frictional phenomena between the particles.In this paper, a discrete element model is combined with a reduced finite element model. It can be analyzed for a wide frequency range. The accuracy is validated by experiments. The testbed consists of a beam with a free-free boundary condition excited by a shaker and its velocity profile is measured with a laser scanning vibrometer. The particle damper is filled with different steel balls. The discrete element code uses continuous contact models. An efficient contact algorithm is used while a coupling with a finite element model of the structure enables the prediction of the overall system movement.The system is analyzed over a wide frequency range for multiple eigenmodes. The first comparisons of experiments and simulations are performed showing a good agreement of the frequency response and modal parameters. A high dependency of the damping on the position of the particle box and its filling ratio is obtained. (C) 2020 Elsevier Ltd. All rights reserved.
机译:颗粒阻尼是一种被动阻尼技术,其特征在于,颗粒材料填充在附着到振动结构的盒子中,或者填充在嵌入振动结构中的孔中。由于结构振动,动量转移到彼此相互作用的粒状材料中。结果,通过粒子之间的影响和摩擦现象来消散能量。本文的含量,分立元件模型与减少的有限元模型组合。它可以分析宽频范围。实验验证了准确性。试验台由带有自由边界条件的梁组成,通过振动器激发,并且通过激光扫描振动计测量其速度曲线。粒子阻尼器填充有不同的钢球。离散元件代码使用连续的触点型号。使用有效的接触算法,而具有结构的有限元模型的耦合可以预测整体系统运动。在多个特征模型的宽频范围内分析系统。执行实验和仿真的第一次比较显示频率响应和模态参数的良好一致性。获得阻尼在粒子盒的位置及其填充率上的高依赖性。 (c)2020 elestvier有限公司保留所有权利。

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