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Cyclic energy harvesting from pyroelectric materials

机译:从热电材料中收集循环能量

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摘要

A method of continuously harvesting energy from pyroelectric materials is demonstrated using an innovative cyclic heating scheme. In traditional pyroelectric energy harvesting methods, static heating sources are used, and most of the available energy has to be harvested at once. A cyclic heating system is developed such that the temperature varies between hot and cold regions. Although the energy harvested during each period of the heating cycle is small, the accumulated total energy over time may exceed traditional methods. Three materials are studied: a commonly available soft lead zirconate titanate (PZT), a pre-stressed PZT composite, and single-crystal PMN-30PT. Radiation heating and natural cooling are used such that, at smaller cyclic frequencies, the temporal rate of change in temperature is large enough to produce high power densities. The maximum power density of 8.64 ;C;W/cm3 is generated with a PMN-30PT single crystal at an angular velocity of 0.64 rad/s with a rate of 8.5u000b0;C/s. The pre-stressed PZT composite generated a power density of 6.31 ;C;W/cm3, which is 40% larger than the density of 4.48 ;C;W/cm3 obtained from standard PZT.
机译:使用一种创新的循环加热方案,证明了一种从热电材料中连续收集能量的方法。在传统的热释电能量收集方法中,使用静态热源,并且必须立即收集大多数可用能量。开发了一种循环加热系统,以使温度在热区和冷区之间变化。尽管在加热周期的每个周期内收集的能量很小,但随着时间的推移累积的总能量可能会超过传统方法。研究了三种材料:常用的软锆钛酸铅钛酸盐(PZT),预应力PZT复合材料和单晶PMN-30PT。使用辐射加热和自然冷却,以便在较小的循环频率下,温度的瞬时变化率足以产生高功率密度。 PMN-30PT单晶以0.64 rad / s的角速度和8.5u000b0; C / s的速度产生的最大功率密度为8.64; C; W / cm3。预应力PZT复合材料产生的功率密度为6.31; C; W / cm3,比从标准PZT获得的密度为4.48; C; W / cm3大40%。

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