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Temperature Field Analysis for PZT Pyroelectric Cells for Thermal Energy Harvesting

机译:用于热能收集的PZT热释电电池的温度场分析

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摘要

This paper proposes the idea of etching PZT to improve the temperature variation rate of a thicker PZT sheet in order to enhance the energy conversion efficiency when used as pyroelectric cells. A partially covered electrode was proven to display a higher output response than a fully covered electrode did. A mesh top electrode monitored the temperature variation rate and the electrode area. The mesh electrode width affected the distribution of the temperature variation rate in a thinner pyroelectric material. However, a pyroelectric cell with a thicker pyroelectric material was beneficial in generating electricity pyroelectrically. The PZT sheet was further etched to produce deeper cavities and a smaller electrode width to induce lateral temperature gradients on the sidewalls of cavities under homogeneous heat irradiation, enhancing the temperature variation rate.
机译:本文提出了蚀刻PZT的想法,以提高较厚的PZT片材的温度变化率,以提高用作热释电电池时的能量转换效率。事实证明,部分覆盖的电极比完全覆盖的电极显示出更高的输出响应。网状顶部电极监测温度变化率和电极面积。网状电极的宽度影响较薄的热电材料中温度变化率的分布。然而,具有较厚热电材料的热电电池有利于热电发电。进一步蚀刻PZT板,以产生更深的腔体和更小的电极宽度,从而在均匀的热辐射下在腔体的侧壁上引起横向温度梯度,从而提高了温度变化率。

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