Center for Energy Harvesting Materials and Systems (CEHMS), Dept. of Materials Science and Engineering, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061, USA; E-Mails:
Sensors (Basel). 2009;9(8):6362-84. doi: 10.3390/s90806362. Epub 2009 Aug 17.
In this manuscript, we review the progress made in the synthesis of thick film-based piezoelectric and magnetoelectric structures for harvesting energy from mechanical vibrations and magnetic field. Piezoelectric compositions in the system Pb(Zr,Ti)O(3)-Pb(Zn(1/3)Nb(2/3))O(3) (PZNT) have shown promise for providing enhanced efficiency due to higher energy density and thus form the base of transducers designed for capturing the mechanical energy. Laminate structures of PZNT with magnetostrictive ferrite materials provide large magnitudes of magnetoelectric coupling and are being targeted to capture the stray magnetic field energy. We analyze the models used to predict the performance of the energy harvesters and present a full system description.
在本文中,我们回顾了在合成用于从机械振动和磁场中收集能量的厚膜基压电和磁电结构方面取得的进展。系统 Pb(Zr,Ti)O(3)-Pb(Zn(1/3)Nb(2/3))O(3) (PZNT) 中的压电成分由于具有更高的能量密度而显示出提高效率的潜力,因此构成了用于捕获机械能的换能器的基础。PZNT 与磁致伸缩铁氧体材料的层压结构提供了较大的磁电耦合,并被瞄准用于捕获杂散磁场能量。我们分析了用于预测能量收集器性能的模型,并给出了完整的系统描述。