Żurawski Mateusz, Zalewski Robert
Institute of Machine Design Fundamentals, Warsaw University of Technology, 02-524 Warsaw, Poland.
Materials (Basel). 2022 Sep 5;15(17):6170. doi: 10.3390/ma15176170.
This paper presents experimental studies on a controllable granular damper, whose dissipative properties are provided by the friction phenomenon occuring between loose granular material. In addition, in order to adjust to the current trends in vibration suppression, we built a semi-active device, controlled by a single parameter-underpressure. Such granular structures subjected to underpressure are called Vacuum-Packed Particles. The first section presents the state of the art. A brief description of the most often used intelligent and smart materials for the manufacture of dampers is presented. The main advantages of the proposed device are a simple structure, low construction cost, symmetrical principle of operation, and the ability to change the characteristics of the damper by quickly and suddenly changing the negative pressure inside the granular core. The second section provides a detailed description of the construction and operation principles of the original symmetrical granular damper. A description of its application in the laboratory research test stand is also provided. The third section presents the results of the experimental studies including the recorded damping characteristics of the investigated damper. The effectiveness of the ethylene-propylene-diene grains' application is presented. The two parameters of underpressure and frequency of excitation were considered during the empirical tests. The influence of the system parameters on its global dissipative behavior is discussed in detail. The damper operation characteristics are close to linear, which is positive information from the point of view of the potential adaptive-passive control process. Brief conclusions and the prospective application of vacuum-packed particle dampers are presented in the final section.
本文介绍了一种可控颗粒阻尼器的实验研究,其耗散特性由松散颗粒材料之间发生的摩擦现象提供。此外,为了适应目前的减振趋势,我们构建了一种由单参数负压控制的半主动装置。这种受到负压作用的颗粒结构被称为真空包装颗粒。第一部分介绍了当前的技术水平。简要描述了制造阻尼器最常用的智能材料。所提出装置的主要优点是结构简单、建造成本低、运行原理对称,以及能够通过快速突然改变颗粒芯内部的负压来改变阻尼器的特性。第二部分详细描述了原始对称颗粒阻尼器的结构和运行原理。还介绍了其在实验室研究试验台上的应用。第三部分展示了实验研究结果,包括所研究阻尼器记录的阻尼特性。展示了乙丙二烯颗粒应用的有效性。在实证测试中考虑了负压和激励频率这两个参数。详细讨论了系统参数对其整体耗散行为的影响。阻尼器的运行特性接近线性,从潜在的自适应被动控制过程的角度来看,这是一个积极的信息。最后一部分给出了简要结论以及真空包装颗粒阻尼器的应用前景。