自传感自供能磁流变减振器研究现状综述
发布时间:2019-02-20 19:46
【摘要】:磁流变减振器具有响应速度快、阻尼可调范围大、能耗低等一系列优势,是当前国内外的研究热点。简要介绍了磁流变阻尼器当前应用现状,分析了制约其广泛应用的两个关键问题,着重对自传感自供能磁流变减振器的研究现状进行了综述。其中,自供能功能的实现原理包括电磁感应原理和压电效应,而反馈电压的大小则反映了相对速度的大小。分析了不同结构自传感自供能磁流变减振器的工作原理和特性,通过综合分析当前研究中存在的问题,阐明了其未来的发展方向。
[Abstract]:Magnetorheological shock absorber has a series of advantages, such as fast response speed, wide damping range, low energy consumption and so on, so it is a hot research topic at home and abroad. In this paper, the current application of Mr damper is briefly introduced, two key problems which restrict its wide application are analyzed, and the research status of magneto-rheological absorber for self-sensing self-supply energy is summarized. Among them, the realization principle of self-supply function includes electromagnetic induction principle and piezoelectric effect, and the magnitude of feedback voltage reflects the magnitude of relative velocity. The working principle and characteristics of the magneto-rheological absorber with self-sensing energy of different structures are analyzed, and the future development direction of the damper is expounded through the comprehensive analysis of the problems existing in the current research.
【作者单位】: 装甲兵工程学院装备试用与培训大队;沈阳军代局驻长春地区军代室;
【分类号】:TB535.1
本文编号:2427196
[Abstract]:Magnetorheological shock absorber has a series of advantages, such as fast response speed, wide damping range, low energy consumption and so on, so it is a hot research topic at home and abroad. In this paper, the current application of Mr damper is briefly introduced, two key problems which restrict its wide application are analyzed, and the research status of magneto-rheological absorber for self-sensing self-supply energy is summarized. Among them, the realization principle of self-supply function includes electromagnetic induction principle and piezoelectric effect, and the magnitude of feedback voltage reflects the magnitude of relative velocity. The working principle and characteristics of the magneto-rheological absorber with self-sensing energy of different structures are analyzed, and the future development direction of the damper is expounded through the comprehensive analysis of the problems existing in the current research.
【作者单位】: 装甲兵工程学院装备试用与培训大队;沈阳军代局驻长春地区军代室;
【分类号】:TB535.1
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