Numerical investigation of Linear Particle Chain impact dampers with friction

Mohamed Gharib , Mansour Karkoub , Mohammad Ghamary
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引用次数: 5

Abstract

Impact dampers were first introduced in 1934 and the research and development on improving their performance and configuration is still ongoing to date. In this paper, the recently developed Linear Particle Chain (LPC) impact damper is experimentally and numerically studied. The damper was attached to a single-degree-of-freedom structure represented by a spring damper system and released from an initial position. A SOLIDWORKS model for the damper has been developed and numerically simulated using the finite element approach. The Coulomb friction model of the colliding masses is added to the overall structure. The response of the system was analyzed and compared to the experimental results. The simulation model showed a faster decay when the number of balls in the LPC impact damper was increased and when different mass ratios were used which is in agreement with the experimental results.

带摩擦的线性颗粒链冲击阻尼器的数值研究
冲击减震器于1934年首次推出,至今仍在进行改进其性能和配置的研究和开发。本文对新研制的线性颗粒链(LPC)冲击阻尼器进行了实验和数值研究。该减振器安装在以弹簧减振器系统为代表的单自由度结构上,并从初始位置释放。建立了该阻尼器的SOLIDWORKS模型,并采用有限元方法进行了数值模拟。在整体结构中加入了碰撞质量的库仑摩擦模型。对系统的响应进行了分析,并与实验结果进行了比较。仿真模型表明,随着LPC冲击阻尼器球数的增加和质量比的不同,其衰减速度更快,与实验结果相吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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