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High energy density polymer composites for pulse-power applications

机译:用于脉冲功率应用的高能量密度聚合物复合材料

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In this work, we have investigated the dielectric integrity of P(VDF-HFP)/CCTO and PS/CCTO composites. An attempt has been made to understand the effect of filler preparation method (sol-gel vs. solid state) and loading on dielectric permittivity, loss, DC breakdown, and energy density of the resulting composites. The composites show high dielectric permittivity with increasing addition of CCTO fillers, presumably due to the giant dielectric permittivity exhibited by these fillers. DC breakdown measurements performed by embedding spherical electrodes into composite films show low breakdown strength at very high filler loadings (40 vol. %) possibly due to percolative effects of fillers. Nonetheless, at lower filler loadings (<;20 vol. %), the composites show high permittivities and lower reduction in breakdown strength leading to high calculated energy densities of 12 J/cc. With an optimized filler loading, we have achieved a composite system capable of storing large electric energy desirable for pulse power application.
机译:在这项工作中,我们研究了P(VDF-HFP)/ CCTO和PS / CCTO复合材料的介电完整性。已尝试理解填料制备方法(溶胶-凝胶与固态)和载荷对所得复合材料的介电常数,损耗,DC击穿和能量密度的影响。随着CCTO填料添加量的增加,复合材料显示出高介电常数,这可能是由于这些填料表现出的巨大介电常数所致。通过将球形电极嵌入复合膜中进行的直流击穿测量表明,在很高的填充量(40%(体积))下击穿强度较低,这可能是由于填充剂的渗透作用所致。尽管如此,在较低的填充量(<; 20%(体积))下,复合材料显示出高介电常数和较低的击穿强度降低,从而导致计算出的12 J / cc的高能量密度。通过优化填料填充量,我们获得了一种复合系统,该系统能够存储脉冲功率应用所需的大量电能。

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