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Multilayer Ceramics for Electrocaloric Cooling Applications

机译:用于电热冷却应用的多层陶瓷

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摘要

The electrocaloric effect of 0.92Pb(Mg1/3Nb2/3)O-3-0.08PbTiO(3) (PMN-8PT) bulk ceramics and multilayer ceramic (MLC) structures is reported. The results are compared to lead-free, barium-titanate-based materials. Phase transition temperature and electrocaloric temperature change could be altered by targeted doping and this is discussed with the help of dielectric and electrocaloric measurements. By reduction of single layer thickness in MLCs, electrical loads and thus electrocaloric temperature changes of PMN-8PT based multilayers could be increased. Simulations that outline the intrinsic cooling performance of electrocaloric MLC components in dependence of the multilayer design and operation frequency for two different modes of heat transfer are presented. The performance of the fabricated MLC layout for a driving frequency of 1Hz is discussed in detail and an optimum layout by varying of design parameters derived. Additionally, the effect of driving frequency on the electrocaloric cooling power is investigated.
机译:报道了0.92pb(Mg1 / 3nb2 / 3)O-3-0.08pbtio(3)(PMN-8pt)块状陶瓷和多层陶瓷(MLC)结构的电热量效应。将结果与无铅钡 - 钛酸钡基材料进行比较。通过靶向掺杂可以改变相变温度和电热温度变化,并且借助介电和电热测量讨论这一点。通过降低MLC中的单层厚度,电负载和因此可以增加PMN-8PT的多层的电热温度变化。展示了概述电热敏MLC部件的固有冷却性能,依赖于多层设计和操作频率两种不同的传热模式的仿真。通过改变设计参数,详细讨论了1Hz驱动频率的制造的MLC布局的性能,并通过改变设计参数来讨论最佳布局。另外,研究了驱动频率对电热冷却功率的影响。

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