A self-powered, self-sensing magnetorheological damper

Chao Chen, W. Liao
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引用次数: 32

Abstract

Magnetorheological (MR) dampers are promising for semi-active vibration control of various dynamic systems. In the current MR damper system, separate power supply and dynamic sensor are required. This paper is aimed to propose and investigate a self-powered, self-sensing MR damper, which integrates energy harvesting, sensing and MR damping technologies into one device. This multifunctional integration will bring great benefits such as size and weight reduction, energy saving, lower cost, higher reliability, and less maintenance for the use of MR damper systems. It will advance the technology of various dynamic systems such as machine tools, robots, prosthetics, and suspension systems. In this paper, a prototype of self-powered, self-sensing MR damper was designed, fabricated, and tested. Theoretical analysis and experimental study on power generation were conducted. The velocity-sensing method was investigated. The MR damping forces were also studied experimentally. Finally, the interactions among three functions were discussed.
一种自供电、自传感磁流变阻尼器
磁流变阻尼器在各种动力系统的半主动振动控制中具有广阔的应用前景。在目前的磁流变阻尼器系统中,需要单独的电源和动态传感器。本文旨在提出和研究一种自供电、自传感的磁流变阻尼器,它将能量收集、传感和磁流变阻尼技术集成到一个设备中。这种多功能集成将带来巨大的好处,如尺寸和重量减轻,节能,降低成本,更高的可靠性,更少的维护使用MR阻尼器系统。它将推动各种动态系统的技术,如机床、机器人、假肢和悬挂系统。本文设计、制作并测试了一种自供电、自传感磁流变阻尼器的原型。对发电进行了理论分析和实验研究。对速度传感方法进行了研究。对磁流变阻尼力进行了实验研究。最后,讨论了三个函数之间的相互作用。
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