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Theoretical Study on Decomposition Mechanism of Insulating Epoxy Resin Cured by Anhydride
Xiaoxing Zhang1, Yunjian Wu2, Xiaoyu Chen3
1School of Electrical Engineering, Wuhan University, Wuhan 430072, China. xiaoxing.zhang@outlook.com.
Abstract:
High temperatures caused by partial discharge results in the decomposition of insulating epoxy resins in electrical equipment. In this paper, the ReaxFF force field is used to investigate the decomposition process of epoxy resins cured by anhydride and the formation mechanisms of small-molecule gases. Results show that the initiation reaction is the cleavage of an ester bond linked with an epoxy resin. Produced by the decomposition of ester groups, CO₂ is the first and most abundant product. Meanwhile, CH₂O can be generated through three main ways, although the process still depends on the decomposition of epoxy functional groups. H₂O is produced by free radical collision and dehydration. The production of small-molecule gases has the following sequence: CO₂, CH₂O, CO, and H₂O. The produced gases have the following order according to amount: CO₂, CH₂O, H₂O, and CO.
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