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Qualitative study of steel cutting with the use of the narrow jet plasma technology

  • Plasmochemical Methods of Production and Treatment of Materials
  • Published:
Inorganic Materials: Applied Research Aims and scope

Abstract

By metallography and optical interferometry methods, the structure of 09G2S steel cutting seams fabricated with the use of narrow jet plasma technology is analyzed. The high quality of the seams allows welding without the removal of the heat-affected zones. The application of the new narrow jet plasma cutting technology provides high-quality welding seams, high efficiency of the process, and low energy consumption.

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References

  1. Krink, V., Simler, H., and Laurisch, F., Plasmaschneidtechnologie— Erweiteung wirtschaftlicher Anwendungsgebiete, in Proc. Int. Conf. on Cutting Technology (ICCT 2006), Hanover, October 10–11, 2006, Bach, F.-W., Ed., Hannover: Inst. Werkstoffknd., Leibniz Univ., 2006, pp. 18–25.

    Google Scholar 

  2. Kaidalov, A.A., Sovremennye tekhnologii termicheskoi i distantsionnoi rezki konstruktsionnykh materialov (Modern Technologies of the Thermal and Remote-Controlled Cutting of Construction Materials), Kiev: Ekotekhnologiya, 2007.

    Google Scholar 

  3. Zhukov, M.F., Zasypkin, I.M., Timoshevskii, A.N., et al., Elektrodugovye generatory termicheskoi plazmy (Electroarc Generators of Thermal Plasma), Novosibirsk: Nauka, 1999.

    Google Scholar 

  4. Anakhov, S.V., Pykin, Yu.A., and Shakurov, S.A, Structure functional principles of design in electric plasma technologies, Weld. Int., 2014, vol. 28, no. 7, pp. 579–582.

    Article  Google Scholar 

  5. Anakhov, S.V., Printsipy i metody proektirovaniya v elektroplazmennykh i svarochnykh tekhnologiyakh (Principles and Methods of Design in Electroplasma and Welding Technologies), Yekaterinburg: Ross. Gos. Prof.-Pedagog. Univ., 2014.

    Google Scholar 

  6. Anakhov, S.V. and Pykin, Yu.A., Plazmotrony: problema akusticheskoi bezopasnosti. Teplofizicheskie i gazodinamicheskie printsipy proektirovaniya maloshumnykh plazmotronov (Plasmatrons: The Problem of Acoustic Safety. Thermal Physic and Gas-Dynamic Principles of Design of a Low-Noise Plasmatrons), Yekaterinburg: Ural. Otd., Ross. Akad. Nauk, 2012.

    Google Scholar 

  7. Anakhov, S.V., Matushkin, A.V., and Pykin, Yu.A., A new plasmatron for metal cutting proposed for welding: comparative analysis, Vestn. Yuzh.-Ural. Gos. Univ., Metall., 2015, vol. 15, no. 1, pp. 65–69.

    Google Scholar 

  8. Shorshorov, M.Kh., Metallovedenie svarki stali i splavov titana (Metallurgical Theory of the Welding of Steel and Titanium Alloys), Moscow: Nauka, 1965.

    Google Scholar 

  9. Lambert, N., Greday, T., Habraken, L., Dadian, M., and Granjon, H., De Ferri Metallographia, Dusseldorf: Stahleisen, Hyeden and Son, 1983.

    Google Scholar 

  10. Gulyaev, A.P., Metallovedenie (Metallurgical Science), Moscow: Metallurgiya, 1978.

    Google Scholar 

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Correspondence to S. V. Anakhov.

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Original Russian Text © S.V. Anakhov, N.B. Pugacheva, Yu.A. Pykin, A.V. Matushkin, T.M. Bykova, 2016, published in Fizika i Khimiya Obrabotki Materialov, 2016, No. 4, pp. 31–37.

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Anakhov, S.V., Pugacheva, N.B., Pykin, Y.A. et al. Qualitative study of steel cutting with the use of the narrow jet plasma technology. Inorg. Mater. Appl. Res. 8, 400–405 (2017). https://doi.org/10.1134/S2075113317030029

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  • DOI: https://doi.org/10.1134/S2075113317030029

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