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Free-standing thick-film piezoelectric multimorph cantilevers for energy harvesting

机译:用于能量收集的独立式厚膜压电多晶型悬臂

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Piezoelectric materials provide one approach for converting mechanical to electrical energy and can therefore be used to harvest energy from ambient vibration sources. Typically, piezoelectric materials are fabricated onto thin substrates, such as aluminum and stainless steel. These serve as mechanical support platforms to function as a cantilever beam structure. The platforms, however, are non-electro-active and they do not contribute directly to the electrical power output. The aim of this paper is to describe a novel multimorph cantilever structure in a free-standing form. Multimorphs consist of three laminar sections of lead zirconate titanate (PZT) of equal thickness 40 ¿m and length 18 mm were polarized in two modes; series and parallel. An optimum output power of 42 ¿W was measured when the series polarized sample was excited at its resonant frequency of 400 Hz.
机译:压电材料提供一种用于将机械转换为电能的方法,因此可以用于从环境振动源收获能量。通常,压电材料制造在薄基板上,例如铝和不锈钢。这些用作机械支撑平台,以用作悬臂梁结构。然而,平台是非电动的,并且它们不会直接贡献到电力输出。本文的目的是以独立形式描述一种新型多方式悬臂结构。多态体由三个锂锆钛酸盐(PZT)的三个层状部分组成,等厚度40×,长度为18mm以两种模式偏振;系列和平行。当在400Hz的谐振频率激发串联偏振样品时,测量了42±Ã,,ww的最佳输出功率。

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