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January 22, 2026Energies8 citationsOpen Access

Research Progress on Polymer Materials in High-Voltage Applications: A Review

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XPXuxuan PanZWZhuo WangHHHao Hu

Key Points

  • This review explores advancements in polymer materials tailored for high-voltage applications, focusing on enhancing insulation performance.
  • Systematic summary of polymer modification strategies
  • Evaluation of nanofiller reinforcement techniques
  • Review of plasma surface engineering applications
  • Analysis of self-healing insulating polymers
  • Discussion on artificial intelligence applications in materials design
  • Emergence of multi-scale structural control techniques
  • Enhanced dielectric strength and reliability of polymers
  • Increased resistance to electrical treeing and degradation
  • Improved long-term operational performance in high-voltage systems
  • Potential for accelerated development of next-generation polymer materials

Abstract

High-voltage equipment imposes increasingly stringent demands on polymeric insulating materials, particularly in terms of dielectric strength, space charge suppression, thermo-electrical stability, and interfacial reliability. Conventional polymers are prone to critical failure modes under high electric fields, including electrical treeing, partial discharge, interfacial degradation, and thermo-oxidative aging. This review systematically summarizes recent advances in polymer modification strategies specifically designed for high-voltage applications, covering nanofiller reinforcement, plasma surface engineering, and the development of self-healing insulating polymers. Multi-scale structural control and interface engineering, aligned with the specific requirements of high-voltage environments, have emerged as pivotal approaches to enhance insulation performance. Moreover, the integration of artificial intelligence-driven materials design, digital characterization, and application-oriented modeling holds significant promise for accelerating the development of next-generation high-voltage polymeric systems, thereby offering robust materials solutions for the reliable long-term operation of high-voltage equipment.

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Cite This Study

Pan et al. (2026) studied this question.

synapsesocial.com/papers/6971bdad642b1836717e24c3https://doi.org/10.3390/en19020504
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