Ceramic-polymer composite for high energy density capacitors

J. Borchardt, J. Alexander, K. Slenes
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引用次数: 8

Abstract

he U.S. Department of Defense vision for future weapons systems requires the development of electrical pulsers that exceed current state-of-the-art in energy storage density by an order of magnitude or more. Capacitors made from composite dielectric materials consisting of ceramic nanoparticles in a polymer matrix show promise for attaining these goals. TPL Inc. and Sandia National Laboratories have teamed to investigate the limits of these new materials for use in high energy density and high power capacitor designs. The major challenges encountered thus far are quality control in the processing of the materials as well as mechanical stresses resulting from the thermal curing process while forming prototype capacitor devices. This paper reports on the development progress of the composite dielectric for high energy density capacitors.
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高能量密度电容器用陶瓷-聚合物复合材料
美国国防部对未来武器系统的愿景要求开发比当前最先进的能量存储密度高出一个数量级或更多的电脉冲器。由聚合物基体中的陶瓷纳米颗粒组成的复合介电材料制成的电容器有望实现这些目标。TPL公司和桑迪亚国家实验室已经合作研究这些新材料在高能量密度和高功率电容器设计中使用的限制。到目前为止,遇到的主要挑战是材料加工中的质量控制,以及在形成原型电容器器件时由热固化过程产生的机械应力。本文报道了高能量密度电容器用复合介质的研究进展。
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