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Particle impact dampers: Past, present, and future

机译:颗粒冲击阻尼器:过去,现在和未来

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Particle damping, an effective passive vibration control technology, is developing dramatically at the present stage, especially in the aerospace and machinery fields. The aim of this paper is to provide an overview of particle damping technology, beginning with its basic concept, developmental history, and research status all over the world. Furthermore, various interpretations of the underlying damping mechanism are introduced and discussed in detail. The theoretical analysis and numerical simulation, together with their pros and cons are systematically expounded, in which a discrete element method of simulating a multi-degree-of-freedom structure with a particle damper system is illustrated. Moreover, on the basis of previous studies, a simplified method to analyze the complicated nonlinear particle damping is proposed, in which all particles are modeled as a single mass, thereby simplifying its use by practicing engineers. In order to broaden the applicability of particle dampers, it is necessary to implement the coupled algorithm of finite element method and discrete element method. In addition, the characteristics of experimental studies on particle damping are also summarized. Finally, the application of particle damping technology in the aerospace field, machinery field, lifeline engineering, and civil engineering is reviewed at length. As a new trend in structural vibration control, the application of particle damping in civil engineering is just at the beginning. The advantages and potential applications are demonstrated, whereas the difficulties and deficiencies in the present studies are also discussed. The paper concludes by suggesting future developments involving semi-active approaches that can enhance the effectiveness of particle dampers when used in conjunction with structures subjected to nonstationary excitation, such as earthquakes and similar nonstationary random excitations.
机译:颗粒阻尼是一种有效的被动振动控制技术,在现阶段正在飞速发展,尤其是在航空航天和机械领域。本文的目的是提供粒子阻尼技术的概述,从其基本概念,发展历史和全世界的研究现状开始。此外,详细介绍和讨论了基本阻尼机制的各种解释。系统地阐述了理论分析和数值模拟,以及它们的优缺点,其中阐述了用粒子阻尼器系统模拟多自由度结构的离散元方法。此外,在先前研究的基础上,提出了一种简化的方法来分析复杂的非线性粒子阻尼,其中将所有粒子建模为单个质量,从而简化了实际工程师的使用。为了扩大粒子阻尼器的适用性,有必要实现有限元法和离散元法的耦合算法。此外,还总结了颗粒阻尼实验研究的特点。最后,对粒子阻尼技术在航空航天,机械领域,生命线工程和土木工程中的应用进行了详尽的综述。作为结构振动控制的新趋势,粒子阻尼在土木工程中的应用才刚刚开始。展示了其优点和潜在的应用,同时还讨论了本研究中的困难和不足。本文最后提出了涉及半主动方法的未来发展建议,该方法可与受非平稳激励(例如地震和类似的非平稳随机激励)的结构结合使用时,提高粒子阻尼器的效率。

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