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Relaxor ferroelectric transduction for high frequency vibration energy harvesting

机译:放松的高频振动能量收集铁电转换

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This paper reports on the design, modelling and measured response of a high frequency vibration energy harvester that uses relaxor ferroelectric transduction. The ultimate goal is to build a harvester capable of extracting energy from the kilohertz frequency vibrations associated with the gear meshing-frequencies of a Bell 206B-1 Kiowa helicopter main rotor transmission. During operation the transmission oil temperature is 80 degrees C-100 degrees C. The harvester will be mounted externally to the transmission casing and is expected to operate at elevated temperatures. The prototype harvester reported in this paper uses a [011]c cut PIN-PMN-PT single crystal transducer configured for operation in d(32) transverse extension mode. Modelling was done by adapting an existing lumped element mathematical model to include the d(32 )transducer orientation, from which an analytical transfer function was developed. The temperature dependence of the piezoelectric charge constant, d(32) , the transducer capacitance, C, and the change in short circuit stiffness were measured from room temperature to 100 degrees C for input into the model. The model predictions were compared to measured output of a prototype harvester over load resistances in the range 10 K Omega-10 M Omega, and shown to be valid for predicting voltage and power levels for loads under 1 M Omega. The model was used to optimise the design of the harvester, and predicts that the optimised design will generate a maximum average output power of 210 mW while operating at 100 degrees C and driven by the measured Bell 206B-1 Kiowa main transmission vibrations near 1900 Hz.
机译:本文报道了一种利用松弛铁电转换的高频振动能量收割机的设计,建模和测量响应。最终目标是建立一个能够从与铃铛206b-1 kiowa直升机主转子传输的齿轮啮合频率相关联的千赫兹频率振动中提取能量的收割机。在操作期间,变速器油温为80℃-100摄氏度。收割机将在外部安装到传动壳体上,并且预期在高温下操作。本文报道的原型收割机采用[011] C切割PIN-PMN-PT单晶换能器,用于在D(32)横向延伸模式下操作。通过调整现有的集总元素数学模型来包括D(32)换能器方向来完成建模,从中开发了分析转移功能。压电电荷常数,D(32),换能器电容,C和短路刚度变化的温度依赖性从室温到100摄氏度测量到模型中。比较模型预测以使原型收割机的输出在10k Omega-10M Omega范围内的负载电阻上测量,并显示有效地用于预测1 Mω下的负载的电压和功率水平。该模型用于优化收割机的设计,并预测优化的设计将在100摄氏度下运行并由测量的铃声206b-1 kiowa主传动振动驱动,以100摄氏度在1900 Hz上的主传动振动下产生210 mW的最大平均输出功率。 。

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