Diffusion and Absorption Behaviors of Small Gas Molecules in EPDM and NBR Sealing Materials for C5F10O Insulated Switchgears

IEEE Transactions on Dielectrics and Electrical Insulation(2023)

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摘要
Performance of the sealing materials is a crucial factor that determines the reliability of C 5 F 10 O gas mixture insulated switchgears. In this paper, we investigate the transport behaviors of small gas molecules present in C 5 F 10 O gas mixture within EPDM and NBR. By conducting MD and GCMC simulations on the established EPDM and NBR cells, the diffusion coefficients, solubilities, and permeability coefficients of O 2 , N 2 , CO, CO 2 , CF 3 H, CF 4 and CF 2 O in EpDM and NBR were calculated. The molecular diameter, free volume, radial distribution function, isosteric heat, and absorption site of the simulation models were further analyzed to understand the factors contributing to the differences in transport behavior. The results suggest that the diffusion coefficients of gases within NBR are lower than those of EPDM, because NBR has greater structural density, stronger intermolecular forces and less free volume. Moreover, the solubility of the seven gases is primarily determined by isosteric heat and absorption site distribution between the gas and rubber. Based on the calculation results of the permeability coefficients, NBR is a better choice over EPDM for sealing C 5 F 10 O/N 2 or C 5 F 10 O/air insulated equipment, while the latter is preferable for C 5 F 10 O/CO 2 insulated equipment. The leakage of CF 3 H, CF 4 , and CO is much slower and poses minimal to no hazards. Notably, the toxic gas CF 2 O has high permeability coefficients in both EPDM and NBR, making it advisable to take appropriate safety measures when using either of the sealing medium for C 5 F 10 O related equipment.
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SF6 alternative gas,C5F10O gas mixture,diffusion coefficient,solubility,gas sealing,penetration coefficient
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