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首页> 外文期刊>Microelectronic Engineering >Increased mechanical robustness of piezoelectric magnetoelastic vibrational energy harvesters
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Increased mechanical robustness of piezoelectric magnetoelastic vibrational energy harvesters

机译:压电磁弹性振动能量采集器的机械强度更高

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摘要

This work presents a cantilever based broadband piezoelectric magnetoelastic vibration energy harvester with increased mechanical robustness. The energy harvester is fabricated using KOH etching to define the cantilever and the proof mass is made using micromachined Fe foils which together with a pair of miniature magnets provides the magnetoelastic properties. KOH etching leads to very sharp corners at the anchoring point of the cantilever which makes the cantilever fragile. The mechanical robustness of the energy harvesters is increased using a lithography-free two-step fabrication process where a thermal oxidation is used for corner rounding. The corner rounding at the anchoring point lowers the stress concentration and thereby increases the robustness of the device. The radius of curvature for the corner depends linearly on the thickness of the oxide. Both enhanced and non-enhanced beams are excited at increasing frame accelerations. The conventional beams break at frame accelerations of around 3 g while the enhanced break at almost twice as much, 5.7 g. The devices are characterized electrically by impedance measurements in both their linear and non linear regime. The magnetoelastic behaviour can be adjusted by varying the beam-magnet distance which allows for both spring softening and spring hardening.
机译:这项工作提出了基于悬臂的宽带压电磁弹性振动能量采集器,具有增强的机械强度。能量收集器是使用KOH蚀刻法制造的,以定义悬臂,而检验质量是使用微加工的Fe箔制成的,该箔与一对微型磁体一起提供了磁弹性特性。 KOH蚀刻会导致悬臂的锚定点出现非常尖锐的角,这使悬臂变得脆弱。能量收集器的机械强度通过使用无光刻的两步制造工艺来提高,在该工艺中,热氧化用于倒圆角。固定点处的拐角圆角降低了应力集中,从而提高了设备​​的坚固性。拐角的曲率半径线性地取决于氧化物的厚度。增强和未增强的光束都以增加的帧加速度被激发。传统的光束以大约3 g的帧加速度破裂,而增强后的光束几乎以5.7 g的两倍破裂。器件的线性和非线性状态均通过阻抗测量来进行电气表征。磁弹性行为可以通过改变梁与磁铁之间的距离来调整,从而使弹簧软化和弹簧硬化。

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