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February 8, 2026Materials0 citationsOpen Access

Aging Failure Mechanism of Transformer Bushing Sealing Rings Under Multi-Factor Effect

WLWei LiangHLHui LiZWZengchao Wang

Key Points

  • This study aims to understand the aging behavior and failure mechanisms of sealing materials in transformers under various environmental stressors.
  • Examined nitrile rubber (NBR) and fluoroelastomer (FKM) under single and multi-factor aging conditions.
  • Analyzed thermo-oxidative, hygrothermal, and compression stress environments.
  • Conducted multivariate analysis to assess material degradation.
  • NBR shows severe degradation with additive loss and molecular chain crosslinking under multi-factor conditions.
  • Increased compression set and molecular chain scission occur in NBR at high temperatures.
  • FKM maintains stability due to its C-F main chain, demonstrating resilience to stress.

Abstract

The aging and failure of transformer bushing seals under multi-factor effects are significant causes of oil leakage incidents. However, their failure mechanisms under combined environmental stressors remain inadequately understood. This study presents a comprehensive investigation into the aging behavior and failure mechanisms of nitrile rubber (NBR) and fluoroelastomer (FKM) sealing materials subjected to single and multi-factor aging conditions, including thermo-oxidative, hygrothermal, hygrothermal–compression, and hygrothermal–compression–salt environments. NBR undergoes severe degradation under multi-factors, dominated by additive loss and molecular chain crosslinking. At high temperatures, large-scale molecular chain scission occurs, along with increased compression set, microscopic morphological damage, and filler precipitation. In contrast, FKM exhibits excellent stability thanks to its C-F main chain. Stress synergy significantly accelerates the failure of both materials. These findings highlight the need for multivariate analysis to support reliable condition assessment and lifetime prediction and to inform sealing material selection and proactive grid maintenance.

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Cite This Study

Liang et al. (2026) studied this question.

synapsesocial.com/papers/698827c90fc35cd7a8846af9https://doi.org/10.3390/ma19030614
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