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MEMS低频压电振动能量采集器 被引量:9
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作者 刘颖 王艳芬 +2 位作者 李刚 桑胜波 李朋伟 《光学精密工程》 EI CAS CSCD 北大核心 2014年第9期2476-2482,共7页
设计了基于微机电系统(MEMS)的一阶、二阶传动低频压电振动能量采集器,通过压电效应将低频振动能量转化为电能来解决低频(小于200Hz)振动环境中的能量采集问题。一阶传动能量采集器模型包括一阶传动梁及压电悬臂梁,二阶传动能量采集器... 设计了基于微机电系统(MEMS)的一阶、二阶传动低频压电振动能量采集器,通过压电效应将低频振动能量转化为电能来解决低频(小于200Hz)振动环境中的能量采集问题。一阶传动能量采集器模型包括一阶传动梁及压电悬臂梁,二阶传动能量采集器模型包括一阶传动梁、二阶传动梁及压电悬臂梁。数学建模及有限元分析显示:采集器工作频率随一阶、二阶传动梁及压电悬臂梁材料的杨氏模量的减小均呈单调递减的趋势;传动梁的设计可有效降低采集器的高阶工作频率、拓宽工作带宽;而二阶传动梁可以在1g加速度条件下,获得10.98Hz和44.52Hz两个超低频率的电压峰值(分别为3.18V/g和1.33V/g),使系统工作频率降得更低,50Hz以下的有效工作带宽更宽,更适合与低频振动环境匹配进行能量采集。 展开更多
关键词 低频振动 压电能量采集器 微机电系统 传动梁
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Improvement for design of beam structures in large vibrating screen considering bending and random vibration 被引量:7
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作者 彭利平 刘初升 +2 位作者 宋宝成 武继达 王帅 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第9期3380-3388,共9页
Demand for large vibrating screen is huge in the mineral processing industry. As bending and random vibration are not considered in a traditional design method for beam structures of a large vibrating screen, fatigue ... Demand for large vibrating screen is huge in the mineral processing industry. As bending and random vibration are not considered in a traditional design method for beam structures of a large vibrating screen, fatigue damage occurs frequently to affect the screening performance. This work aims to conduct a systematic mechanics analysis of the beam structures and improve the design method. Total motion of a beam structure in screening process can be decomposed into the traditional followed rigid translation(FRT), bending vibration(BV) and axial linear-distributed random rigid translation(ALRRT) excited by the side-plates. When treated as a generalized single-degree-of-freedom(SDOF) elastic system analytically, the BV can be solved by the Rayleigh's method. Stochastic analysis for random process is conducted for the detailed ALRRT calculation. Expressions for the mechanics property, namely, the shearing force and bending-moment with respect to BV and ALRRT, are derived, respectively. Experimental and numerical investigations demonstrate that the largest BV exists at the beam center and can be nearly ignored in comparison with the FRT during a simplified engineering design. With the BV and FRT considered, the mechanics property accords well with the practical situation with the maximum error of 6.33%, which is less than that obtained by traditional method. 展开更多
关键词 large vibrating screen BEAM bending vibration random vibration mechanics analysis
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