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Pyroelectric waste heat energy harvesting using relaxor ferroelectric 8/65/35 PLZT and the Olsen cycle

机译:使用弛豫铁电8/65/35 PLZT和Olsen循环收集热电废热能

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Waste heat can be directly converted into electrical energy by performing the Olsen cycle on pyroelectric materials. The Olsen cycle consists of two isothermal and two isoelectric field processes in the electric displacement versus electric field diagram. This paper reports on the electrical energy generated by lanthanum-doped lead zirconate titanate (8/65/35 PLZT) subjected to the Olsen cycle. The material was alternately dipped into a cold and a hot silicone oil bath under specified electric fields. A maximum energy density of 888Jl ~1/cycle was obtained with a 290νm thick 8/65/35 PLZT sample for temperatures between 25 and 160°C and electric fields cycled between 0.2 and 7.5MVm ~1. To the best of our knowledge, this is the largest pyroelectric energy density experimentally measured with multiple cycles. It corresponded to a power density of 15.8Wl ~1. The electrical breakdown strength and therefore the energy and power densities of the material increased as the sample thickness was reduced from 720 to 290νm. Furthermore, a physical model for estimating the energy harvested by ferroelectric relaxors was further validated against experimental data for a wide range of electric fields and temperatures.
机译:通过对热电材料进行Olsen循环,可以将废热直接转换为电能。奥尔森循环由两个等温过程和两个等电场过程组成,分别是电位移与电场的关系图。本文报道了经历奥尔森循环的镧掺杂锆钛酸铅钛酸酯(8/65/35 PLZT)产生的电能。将该材料在规定的电场下交替浸入冷热硅油浴中。当温度在25至160°C之间且电场在0.2至7.5MVm〜1之间循环时,使用290νm厚的8/65/35 PLZT样品可获得888Jl〜1 /循环的最大能量密度。据我们所知,这是通过多次循环实验测得的最大热电能量密度。它对应于15.8Wl〜1的功率密度。随着样品厚度从720vm减少到290vm,材料的电击穿强度以及相应的能量和功率密度都会增加。此外,还针对大量电场和温度的实验数据进一步验证了用于估计铁电弛豫器收集的能量的物理模型。

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