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首页> 外文期刊>Journal of Materials Science >Enhanced dielectric properties of polyvinylidene fluoride-based composite films with layered perovskite KCa2Na3Nb6O19-derived fillers
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Enhanced dielectric properties of polyvinylidene fluoride-based composite films with layered perovskite KCa2Na3Nb6O19-derived fillers

机译:具有层状钙钛矿KCA2NA3NB6O19衍生填料的聚偏二氟乙烯基复合膜的增强介电性能

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摘要

A polyvinylidene fluoride (PVDF)-based composite film embedded with plate-like fillers was investigated as a novel dielectric composite material that can serve as a candidate film capacitor. Plate-like particles of the dielectric Ca2Na3Nb6O19(CNN6) filler material were prepared through liquid-phase exfoliation of KCa(2)Na(3)Nb(6)O(19)synthesized by a conventional solid-state reaction method. CNN6 fillers with an average aspect ratio of 2.0 were successfully dispersed in a PVDF matrix without large aggregation using a solution blending and casting method. The resultant CNN6/PVDF composite film exhibited higher breakdown strength than a dielectric PVDF-based composite embedded with spherical BaTiO(3)fillers. The superiority of the plate-like filler particles over spherical filler particles was qualitatively confirmed by finite element simulation using a simplified filler/matrix model. A CNN6/PVDF composite film with a thickness of 3.8 mu m exhibited a high capacitance density of 10.1 F m(-3), which was three times higher than that of a biaxially oriented polypropylene film currently used for film capacitors in the power control units of hybrid vehicles.
机译:将聚偏二氟乙烯(PVDF)基嵌有板状的填料进行了研究作为可以用作候选薄膜电容器的新型介电性复合材料的复合膜。板状介电Ca2Na3Nb6O19的颗粒(CNN6)填充材料是通过KCA的液相剥离(2)制备的Na(3)的Nb(6)O(19)通过常规的固相反应法合成。 CNN6填料具有2.0的平均纵横比均成功分散在PVDF矩阵而不使用溶液共混和铸造方法大聚集。将所得CNN6 / PVDF复合膜显示出比电介质复合嵌入有球面的BaTiO基于PVDF的(3)填料更高的击穿强度。板状过球形填料颗粒填料粒子的优越性定性通过使用简化的填料/基体模型的有限元仿真确认。甲CNN6 / PVDF的厚度为3.8微米的复合膜M对显示出10.1女男(-3),这比目前在电力控制单元用于薄膜电容器的双轴取向聚丙烯薄膜的高三倍高电容密度的混合动力汽车。

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