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Analysis of PMN-PT and PZT circular diaphragm energy harvesters for use in implantable medical devices

机译:用于植入式医疗设备的PMN-PT和PZT圆形隔膜能量采集器的分析

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This paper presents current work on a project to demonstrate the feasibility of harvesting energy for medical devices from internal biomechanical forces using piezoelectric transducer technology based on PMN-PT. The energy harvesting device in this study is a partially covered, simply-supported PMN-PT unimorph circular plate to capture biomechanical energy and to provide power to implanted medical devices. Power harvesting performance for the piezoelectric energy harvesting diaphragm structure is examined analytically. The analysis includes comprehensive modeling and parametric study to provide a design primer for a specific application. An expression for the total power output from the devices for applied pressure is shown, and then used to determine optimal design parameters. It is shown that the device's deflections and stresses under load are the limiting factors in the design. While the primary material choice for energy harvesting today is PZT, an advanced material, PMN-PT, which exhibits improved potential over current materials, is used.
机译:本文介绍了一个项目的当前工作,该项目演示了使用基于PMN-PT的压电换能器技术从内部生物力学力为医疗设备收集能量的可行性。本研究中的能量收集装置是部分覆盖的,简单支撑的PMN-PT单晶片圆形板,可捕获生物机械能并为植入的医疗装置提供动力。分析性地检查了压电能量收集隔膜结构的能量收集性能。分析包括全面的建模和参数研究,以提供针对特定应用的设计基础。显示了设备在施加压力时输出的总功率的表达式,然后用于确定最佳设计参数。结果表明,器件在负载下的变形和应力是设计中的限制因素。虽然当今用于能量收集的主要材料选择是PZT,但使用的是先进材料PMN-PT,与当前材料相比,PMN-PT具有更高的潜力。

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