党智敏, 杨旻昊. 高储能薄膜电容器用介质材料研发的挑战与思考[J]. 高电压技术, 2025, 51(5): 2210-2218. DOI: 10.13336/j.1003-6520.hve.20250180
引用本文: 党智敏, 杨旻昊. 高储能薄膜电容器用介质材料研发的挑战与思考[J]. 高电压技术, 2025, 51(5): 2210-2218. DOI: 10.13336/j.1003-6520.hve.20250180
DANG Zhimin, YANG Minhao. Challenges and Reflection on Dielectric Materials for High-energy-density Film Capacitor Application[J]. High Voltage Engineering, 2025, 51(5): 2210-2218. DOI: 10.13336/j.1003-6520.hve.20250180
Citation: DANG Zhimin, YANG Minhao. Challenges and Reflection on Dielectric Materials for High-energy-density Film Capacitor Application[J]. High Voltage Engineering, 2025, 51(5): 2210-2218. DOI: 10.13336/j.1003-6520.hve.20250180

高储能薄膜电容器用介质材料研发的挑战与思考

Challenges and Reflection on Dielectric Materials for High-energy-density Film Capacitor Application

  • 摘要: 薄膜电容器在输变电系统及电动汽车、脉冲电源系统等高科技领域有重要用途,当前受限以双轴拉伸聚丙烯薄膜为介质材料的性能影响,致使电容器存在储能密度低、耐温程度差、充放电循环次数少和寿命低等缺陷,严重影响了金属化干式薄膜电容器性能的进一步提升,无法满足诸多领域对高储能金属化干式薄膜电容器的需求。目前存在的核心问题包括:储能电容器用介质材料综合性能改善较为有限,且实验室研究的高储能聚合物介质材料难以工业化生产,导致无法验证金属化干式薄膜电容器的综合性能。因此,该文提出了在研究思路和研究方法上几个值得探讨的问题,包括材料制备方面的材料复合技术、化学改造材料和涂层改性问题思考以及介质薄膜储能性能强化和高储能电容器设计制造问题思考,以期引起该领域研究人员广泛重视,促进我国高储能薄膜电容器用新型介质材料的研制。

     

    Abstract: Film capacitors are important in high-tech fields such as power transmission and transformation systems, electric vehicles, and pulse power systems. Currently, the performance of capacitors is limited by the biaxially oriented polypropylene film, which leads to low energy storage density, poor temperature resistance, few charge and discharge cycles, and short lifespan of capacitors. This seriously affects the further improvement of the performance of metallized film capacitors and cannot meet the demands of high-energy-density metallized film capacitors in many fields. However, the key issues, including limited improvement in the comprehensive performance of dielectric materials for high-energy-density capacitors, and the difficulty in the industrial production of high-energy-density dielectric polymer materials from the small-sized samples produced in a laboratory, make it difficult to verify the comprehensive performance of metalized film capacitors. Therefore, several important perspectives and advice, including materials composite technology, materials chemical modification, and coating layers modification as well as the energy storage performance enhancement of dielectric films and high-energy-density capacitors design, are proposed in this article to guide the future research direction and promote the development of advanced dielectric materials for high-energy-density film capacitor application in China.

     

/

返回文章
返回