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Lead-Free Sodium Potassium Niobate Based Piezoelectric Thick Film Bimorph Structure for Energy Harvesting

机译:无铅铌酸钾钠基压电厚膜双压电晶片结构的能量收集

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Vibrational energy harvesting is a very promising way to replace batteries in many types of application like industry, infrastructure, aeronautic or healthcare. Piezoelectric based energy harvesting are commonly employed to scavenge mechanical energy from environmental vibrations in which resonance frequencies are mostly below 200 Hz. Piezoelectric materials that are generally based on lead zirconate titanate (PZT)are increasingly prohibited in many areas in the world for their toxicity to human health and to the environment. A serious alternative to PZT is the sodium potassium niobate (KNN)which presents appropriate properties like its Curie temperature, its coupling coefficient and its density. In this paper we propose to integrate a KNNSr (strontium doped sodium potassium niobate)ceramic in a bimorph structure in a cantilever beam configuration to scavenge vibrational energy in the frequency range of 25 Hz (for medical application). A thinned bulk approach is chosen for the fabrication of the bimorph in order to maintain the good properties of the bulk ceramic. Vibrational measurements demonstrate a power density of 13μW/G2/cm3and a resonance frequency of 24 Hz which is highly compatible with external vibrations at low frequencies.
机译:在工业,基础设施,航空或医疗保健等许多类型的应用中,振动能量收集是一种非常有前途的更换电池的方法。基于压电的能量收集通常用于从环境振动中清除机械能,在该环境振动中,共振频率大多低于200 Hz。在世界上许多地区,越来越多地普遍禁止使用通常以锆酸钛酸铅(PZT)为基础的压电材料,因为它们对人体健康和环境具有毒性。铌酸钾钠(KNN)是PZT的一种重要替代品,它具有适当的特性,例如居里温度,耦合系数和密度。在本文中,我们建议将KNNSr(锶锶铌酸钾钠)陶瓷以双压电晶片结构集成在悬臂梁配置中,以消除25 Hz频率范围内的振动能量(用于医疗应用)。为了保持块状陶瓷的良好性能,选择了变薄的块状方法来制造双压电晶片。振动测量表明功率密度为13μW/ G 2 / cm 3 谐振频率为24 Hz,与低频外部振动高度兼容。

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