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Accelerated Aging Procedures of Bending Piezoelectric Structures Using Electrical Stress Induced Approaches

机译:使用电应力诱导方法加速压电结构弯曲的老化过程

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Vibrational energy harvesting is an alternative solution for replacing batteries in autonomous wireless devices. Besides the performance of piezoelectric energy harvesting generators, the reliability of such structures must be considered when long lifetime is required. In this paper, we propose a new approach based on stress electrically induced to deal with aging of piezoelectric bimorph structure for vibrational energy harvesting. To this end, induced mechanical stress in bimorph structure using electrical solicitation is investigated and compared with mechanical excitation by using finite element modelling. A dedicated test bench was developed. An accelerated aging test of a piezoelectric bimorph operated at 178.5Hz (9x resonance frequency in real use) under a maximum stress of 50MPa using stress electrically induced approach was performed during 4 months. The results are discussed and showed the feasibility of this electrical approach for reliability studies of piezoelectric energy harvesting devices.
机译:振动能量收集是替代自主无线设备中电池的替代解决方案。除了压电式能量收集发电机的性能外,当需要较长的使用寿命时,还必须考虑此类结构的可靠性。在本文中,我们提出了一种基于电感应应力的新方法,以处理压电双压电晶片结构的老化,以收集振动能量。为此,研究了使用电激振在双压电晶片结构中引起的机械应力,并通过有限元建模将其与机械励磁进行了比较。开发了专用的测试台。在4个月内,使用应力电感应方法,在178.5Hz(实际使用时为9x共振频率)下,在最大应力为50MPa的条件下,对压电双压电晶片进行了加速老化测试。讨论了结果,并表明了该电学方法用于压电能量收集装置可靠性研究的可行性。

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