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Nanostructured membranes for MEMS energy harvester

机译:用于MEMS能量收集器的纳米结构膜

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摘要

The development of embedded systems and autonomous microsystems requires significant progress in the research of MEMS energy converters. Converting mechanical vibrations into electricity is an efficient way to collect environmental energy by using MEMS. Our contribution to this hot topic is based on the study of piezoelectric converters on silicon membranes. Due to the nature of the energy sources such as motorized machines, miniaturized devices working at low frequencies (few hundred hertz) with efficient coupling coefficient are needed and make essential the emergence of innovative solutions. In this work we propose an improved approach based on the insertion of nanostructured porous zones in circular monocrystalline silicon membranes used as resonating structures of piezoelectric converters. We have shown (in previous work) that nanostructured porous silicon exhibits an unexpected low rigidity due to the disordered interconnections of the crystallites in the porous zones (the Young modulus is divided by a factor of 10 for porosities around 50%). Using such porous silicon properties, ring-shaped nanostructured zones allowing the creation of low rigidity membranes combined with central seismic masses were realized and tested. Interesting potentialities for the development of high quality factor devices at low resonant frequencies have been then demonstrated. The effect of the position, the shape and the size of the nanostructured zones on the resonant frequency and the quality factor of the membrane were experimentally investigated. Complementary numerical simulations were performed using ANSYS software on same modelled structures.
机译:嵌入式系统和自治微系统的发展要求MEMS能量转换器的研究取得重大进展。将机械振动转换为电能是使用MEMS收集环境能量的有效方法。我们对这一热门话题的贡献是基于对硅膜上压电转换器的研究。由于机动车辆等能源的性质,需要在低频(几百赫兹)下工作且具有有效耦合系数的小型化设备,这些使创新解决方案的出现至关重要。在这项工作中,我们提出了一种改进的方法,该方法基于在圆形单晶硅膜中插入纳米结构的多孔区域(用作压电转换器的谐振结构)。我们已经证明(在以前的工作中),由于多孔区域中微晶的无序互连,纳米结构的多孔硅表现出了出乎意料的低刚度(孔隙率约为50%时,杨氏模量除以10)。利用这样的多孔硅特性,实现并测试了允许形成低刚性膜并结合中心地震质量的环形纳米结构区。然后已经证明了在低谐振频率下开发高质量因子器件的有趣潜力。实验研究了纳米结构区的位置,形状和大小对膜共振频率和膜品质因数的影响。使用ANSYS软件在相同的模型结构上进行了补充数值模拟。

著录项

  • 来源
  • 会议地点 Budapest(HU)
  • 作者单位

    Institut des Nanotechnologies de Lyon (INL)-UMR5270 CNRS, INSA de Lyon, Universite de Lyon,7 Avenue Jean Capelle Villeurbanne F-69621, France,Laboratoire de Genie Electrique et de Ferroelectricite (LGEF), INSA de Lyon, Universite de Lyon, 7 Avenue Jean Capelle Villeurbanne F-69621, France;

    Institut des Nanotechnologies de Lyon (INL)-UMR5270 CNRS, INSA de Lyon, Universite Lyon1,Universite de Lyon, 7 Avenue Jean Capelle Villeurbanne F-69621, France;

    Institut des Nanotechnologies de Lyon (INL)-UMR5270 CNRS, INSA de Lyon, Universite de Lyon,7 Avenue Jean Capelle Villeurbanne F-69621, France;

    Laboratoire de Genie Electrique et de Ferroelectricite (LGEF), INSA de Lyon, Universite de Lyon, 7 Avenue Jean Capelle Villeurbanne F-69621, France;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    MEMS on silicon; piezoelectric micro generator; porous silicon; self-powered microsystem;

    机译:硅上的MEMS;压电微型发电机多孔硅自供电微系统;
  • 入库时间 2022-08-26 14:01:23

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