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Design, fabrication and characterisation of free-standing thick-film piezoelectric cantilevers for energy harvesting

机译:用于能量收集的独立式厚膜压电悬臂的设计,制造和表征

摘要

Research into energy harvesting from ambient vibration sources has attracted great interest over the last few years, largely due to the rapid development in the areas of wireless technology and low power electronics. One of the mechanisms for converting mechanical vibration to electrical energy is the use of piezoelectric materials, typically operating as a cantilever in a bending mode, which generate a voltage across the electrodes when they are stressed. Traditionally, the piezoelectric materials are deposited on a non-electro-active substrate and are physically clamped at one end to a rigid base, which serves as a mechanical supporting platform. In this research, a three dimensional thick-film structure in the form of a free-standing cantilever incorporated with piezoelectric materials is proposed. The advantages of this structure include minimising the movement constraints on the piezoelectric, thereby maximising the electrical output and offering the ability for integration with other microelectronic devices. A series of free-standing composite cantilevers in the form of unimorphs were fabricated and characterised for their mechanical and electric properties. The unimorph structure consists of a pair of silver/palladium (Ag/Pd) electrodes sandwiching a laminar layer of lead zirconate titanate (PZT). An extended version of this unimorph, in the form of multimorph was fabricated to improve the electrical output performance, by increasing the distance of the piezoelectric layer from the neutral axis of the structure. This research also discusses the possibility of using an array of free-standing cantilevers in harvesting vibration energy in a broader bandwidth from an unpredictable ambient environment.
机译:在过去的几年中,对从环境振动源收集能量的研究引起了极大的兴趣,这主要是由于无线技术和低功率电子学领域的飞速发展。将机械振动转换为电能的机制之一是压电材料的使用,通常在弯曲模式下以悬臂的方式工作,当压电材料受力时会在电极上产生电压。传统上,压电材料沉积在非电活性衬底上,并在一端物理地夹紧在刚性基座上,该刚性基座用作机械支撑平台。在这项研究中,提出了一种独立的悬臂形式并结合了压电材料的三维厚膜结构。这种结构的优点包括使对压电的运动约束最小化,从而使电输出最大化,并提供与其他微电子器件集成的能力。制作了一系列单压电晶片形式的独立式复合悬臂,并对其机械和电性能进行了表征。单压电晶片结构由一对夹着钛酸锆钛酸铅(PZT)层状层的银/钯(Ag / Pd)电极组成。通过增加压电层到结构中性轴的距离,以多晶形的形式制造了此单晶形的扩展版本,以改善电输出性能。这项研究还讨论了使用一系列独立式悬臂在无法预测的周围环境中以更宽的带宽收集振动能量的可能性。

著录项

  • 作者

    Kok Swee Leong;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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