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On developing an optimal design procedure for a bimorph piezoelectric cantilever energy harvester under a predefined volume

机译:在预定体积下开发双压电晶片压电悬臂式能量收集器的最佳设计程序

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A typical vibration harvester is tuned to operate at resonance in order to maximize the power output. There are many design parameter sets for tuning the harvester to a specific frequency, even for simple geometries. This work studies the impact of the geometrical parameters on the harvested power while keeping the resonance frequency constant in order to find the combination of the parameters that optimizes the power under a predefined volume. A bimorph piezoelectric cantilever is considered for the study. It consists of two piezoelectric layers and a middle non-piezoelectric layer and holds a tip mass. A theoretical model was derived to obtain the system parameters and the power as functions of the design parameters. Formulas for the optimal load resistance that provide maximum power capability at resonance and anti-resonance frequency were derived.The influence of the width on the power is studied, considering a constant mass ratio (between the tip mass and the mass of the beam). This keeps the resonance frequency constant while changing the width. The influence of the ratio between the thickness of the middle layer and that of the piezoelectric layer is also studied. It is assumed that the total thickness of the cantilever is constant and the middle layer has the same mechanical properties (elasticity and density) as the piezoelectric layer. This keeps the resonance frequency constant while changing the ratio between the thicknesses. Finally, the influence of increasing the free length as well as of increasing the mass ratio on the power is investigated. This is done by first, increasing each of them individually and secondly, by increasing each of them simultaneously while increasing the total thickness under the condition of maintaining a constant resonance frequency. Based on the analysis of these influences, recommendations as to how to maximize the geometrical parameters within the available volume and mass are presented.
机译:为了使功率输出最大化,典型的振动收集器被调整为在共振下运行。有许多设计参数集,即使对于简单的几何形状,也可以将收割机调整到特定的频率。这项工作研究了几何参数对所采集功率的影响,同时保持谐振频率恒定,以便找到在预定体积下优化功率的参数组合。研究中考虑了双压电晶片压电悬臂。它由两个压电层和一个中间非压电层组成,并保持尖端质量。推导了一个理论模型,以获取系统参数和功率作为设计参数的函数。推导了在谐振和反谐振频率下提供最​​大功率能力的最佳负载电阻的公式。考虑了恒定的质量比(在尖端质量和梁质量之间),研究了宽度对功率的影响。这样可以在改变宽度的同时保持共振频率恒定。还研究了中间层的厚度与压电层的厚度之比的影响。假设悬臂的总厚度是恒定的,并且中间层具有与压电层相同的机械性能(弹性和密度)。这可以在改变厚度之间的比率的同时保持谐振频率恒定。最后,研究了增加自由长度以及增加质量比对功率的影响。首先,在保持恒定共振频率的条件下,在增加总厚度的同时,首先分别增加每个传感器的厚度,然后同时增加每个传感器的厚度,同时增加每个传感器的厚度。在分析这些影响的基础上,提出了有关如何在可用体积和质量内最大化几何参数的建议。

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