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access icon openaccess Research on the simulation modelling of high-voltage switchgear ring-shaped spring contact force

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References

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      • 1. Li, B.: ‘SF6 high-voltage apparatus design’ (China Machine Press, Beijing, China, 2003, 4st edn. 2015).
    2. 2)
      • 2. Li, B., Zhang, Z.: ‘Design of spring contacts’, High Volt. Appar., 2007, 43, (5), pp. 358360.
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      • 3. Zhang, Z., Li, B.: ‘Design of spring contacts (II)’, High Volt. Appar., 2009, 45, (3), pp. 7072.
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      • 4. Zhang, Z., Song, X., Du, T., et al: ‘Design of spring contacts (III)’, High Volt. Appar., 2011, 47, (5), pp. 8791.
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      • 5. Zhang, Z., Li, B.: ‘Design of spring contacts (IV)’, High Volt. Appar., 2013, 49, (5), pp. 1820.
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      • 6. Li, J.: ‘Application of the canted coil spring to GIS’, High Volt. Appar., 2007, 43, (6), pp. 438439.
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      • 7. Zhang, B., Wang, Z., Lin, S., et al: ‘Loss calculation of AC high voltage apparatus and analysis of its influence factors’, Sci. Technol. Eng., 2016, 16, (13), pp. 214218.
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      • 8. Niu, C., Qiang, R., Rong, M.: ‘Simulation and experimental research on temperature rise of spring contact in steady state’, High Volt. Appar., 2015, 51, (3), pp. 814.
    9. 9)
      • 9. Sun, G., Guan, X., Jin, X., et al: ‘Temperature rise calculation and overheating fault analysis of gas insulated switchgear bus connector based on coupled field theory’, High Volt. Eng., 2014, 40, (11), pp. 34453451.
    10. 10)
      • 10. Jin, X., Huang, S., Xie, Z., et al: ‘Numerical calculation and influence factors analysis of gas insulated switchgear connector contact resistance considering rough surface contact’, Power Syst. Technol., 2015, 39, (6), pp. 17251730.
    11. 11)
      • 11. Xie, Z.: ‘Fault analysis on deficiency depth insert of GIS bus conductor’, High Volt. Appar., 2009, 45, (3), pp. 160163.
    12. 12)
      • 12. Tang, J., Zhou, W., Chen, S.: ‘Contact-impact analysis of gear transmission system’, J. Mech. Eng., 2009, 45, (3), pp. 160163.
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