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Aeroelastic flutter energy harvesting performance from piezoelectric fiber composite array using Pb(Zr,Ti)O_3-Pb(Ni,Nb)O_3 laminates

机译:使用PB(Zr,Ti)O_3-PB(Ni,Nb)O_3层压板的压电纤维复合阵列的空气弹性颤动能量收集性能

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摘要

Macro-fiber composites (MFC) using the 0.23PbZrO(3)-0.36PbTiO(3)-0.41Pb(Ni1/3Nb2/3)O-3(PZ-PT-PNN) ceramic were fabricated for aeroelastic flutter energy harvesters. The microstructure of the MFC driven in a transversal mode was analyzed and the performance of a cantilever array consisting of five MFC cantilevers was demonstrated to harvest fluttering energy against the wind. The Ag-coated PZ-PT-PNN ceramic with good piezoelectric properties ofd(33)(703 pC N--(1)) andk(p)(67.7%) was laminated by an approximately 107 um thick film for the completion of the MFC sandwiched between Cu interdigitated-electrode patterned polyimide films. The MFC was enhanced by attaching it onto an elastic substrate (SUS304) for better strain energy transformed from wind energy. It was shown that excellent energy harvesting performance of 0.14 mW cm(-3)under 100 k omega could be obtained at a wind speed of 10 m s(-1), implying high potential for use in aeroelastic flutter harvester applications.
机译:使用0.23pbzro(3)-0.36pbtio(3)-0.41pb(Ni1 / 3nb2 / 3)O-3(Pz-pt-pnn)陶瓷的宏观 - 纤维复合材料(MFC)用于空气弹性颤动能量收割机制造陶瓷。分析了在横向模式下驱动的MFC的微观结构,并说明由五个MFC悬臂器组成的悬臂阵列的性能被证明在逆风上收获颤动能量。具有良好压电性能的Ag涂覆的PZ-PNN陶瓷(33)(703pc n - (1))和K(p)(67.7%)通过约107μm厚的薄膜层压,以完成MFC夹在Cu interdigated-电极图案化聚酰亚胺膜之间。通过将其附接到弹性基板(SUS304)上来提高MFC,以便从风能变换的更好的应变能量。结果表明,在100kω下的风速下,在10m S(-1)的风速下,可以获得0.14mW cm(-3)的优异能量收集性能,这暗示在空气弹性颤动收割机应用中使用的高潜力。

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