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Electro-caloric behaviors of lead-free Bi 0.5Na 0.5TiO 3-BaTiO 3 ceramics

机译:无铅Bi 0.5Na 0.5TiO 3-BaTiO 3陶瓷的电热行为

摘要

Electro-caloric (EC) properties of lead-free Ba 0.5Na 0.5TiO 3-xBaTiO 3 (BNT-xBT) ceramics prepared by citrate method are investigated at temperatures of 30-250°C. Based on thermodynamics calculations, BNT-xBT (x00, 0.05, 0.06, 0.1, 0.25, 0.3) are found to show EC effects different with other lead-based or lead-free ferroelectric ceramics, i.e., they absorb heats (refrigeration effect) during the processes of field application while other ferroelectric ceramics show refrigeration effect during the processes of field removal. The EC temperature change of BNT-xBT can be as large as 2.1°C under an electric field of 60 kV/cm, which is larger than most of the lead-free ferroelectric bulk ceramics. When x is close to the morphotropic phase boundary (x∼0.06-0.1), the EC temperature change of BNT-xBT shows a maximum near the ferroelectric to anti-ferroelectric transition temperature, which is characterized by dynamic mechanical analysis. This study suggests that these lead-free ferroelectric materials are promising in the practical application as EC coolers.
机译:研究了柠檬酸盐法制备的无铅Ba 0.5Na 0.5TiO 3-xBaTiO 3(BNT-xBT)陶瓷在30-250°C的电热(EC)性能。根据热力学计算,发现BNT-xBT(x00,0.05,0.06,0.1,0.25,0.3)表现出与其他基于铅或无铅的铁电陶瓷不同的EC效应,即它们在吸收过程中吸收热量(制冷效应)。其他铁电陶瓷在除场过程中表现出制冷效果。在60 kV / cm的电场下,BNT-xBT的EC温度变化可以高达2.1°C,这比大多数无铅铁电体陶瓷要大。当x接近同晶相边界(x〜0.06-0.1)时,BNT-xBT的EC温度变化在铁电至反铁电转变温度附近显示出最大值,其特征在于动态力学分析。这项研究表明,这些无铅铁电材料作为EC冷却器在实际应用中很有希望。

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