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Yu. N. Saraev, S. V. Gladkovsky, S. V. Lepikhin, D. A. Dvoynikov, I. S. Kamantsev, V. E. Veselova

INFLUENCE OF WELDING TECHNOLOGY ON THE STRUCTURE, MECHANICAL PROPERTIES AND FRACTURE TOUGHNESS OF 09G2S STEEL WELDED JOINTS

DOI: 10.17804/2410-9908.2017.5.023-042

The effect of direct current welding and adaptive pulse welding with current modulation on the structure and mechanical properties of a 09G2S steel welded joint under tensile and impact bending testing, as well as on its static, dynamic and cyclic crack resistance characteristics (fracture toughness), is comparatively evaluated. The efficiency of using the welding process with current modulation to increase the brittle fracture resistance of products and structural components made of low-carbon steel to operate in low-temperature climates is shown.

Acknowledgments: The study was supported by the Russian Scientific Foundation (Project No.16-19-10010)

Keywords: welded joints, weld metal, heat-affected zone, pulse arc welding, microstructure, residual stresses, impact strength, fracture toughness

References:

  1. Grabin V.F., Denisenko A.V. Metallovedeniye Svarki Nizko- i Srednelegirovannykh Staley [Material Science of Welding Low- and Medium-Alloy Steels]. Kiev, Naukova Dumka Publ., 1978, 256 p. (In Russian).
  2. Livshits L.S., Khakimov A.N. Metallovedeniye Svarki i Termicheskaya Obrabotka Svarnykh Soyedineniy [Material Science of Welding and Heat Treatment of Welded Joints]. Moscow, Mashinostroenie Publ, 1989, 336 p. (In Russian).
  3. Makhutov N. A., Lyglayev A. V., Bolshakov A. M. Khladostoykost (Metod Inzhenernoy Otsenki) [Cold Resistance (Engineering Evaluation Method)]. Novosibirsk, SB RAS Publ., 2011, 195 p. (In Russian).
  4. Goritsky V.M. Primenenie Kharakteristik Udarnoy Vyazkosti v Inzhenernoy Praktike [Application of Fracture Toughness Characteristics in Engineering Practice]. Moscow, Metallurgizdat Publ., 2016, 304 p. (In Russian).
  5. Saraev Yu.N., Poletika I.M., Kozlov A.V., Khomchenko E.G. Formation of the structure and properties of welds under conditions of heat input during pulse welding. Fizicheskaya Mezomekhanika, Spets. Vypusk, 2005, no. 8, pp. 137–140. (In Russian).
  6. Gorkunov E.S., Saraev Yu.N., Zadvorkin S.M., Putilova E.A. The effect of technological welding conditions on the physical and mechanical properties of the metal of different zones of low-alloy steel welds. Voprosy Materialovedeniya, 2015, no. 1 (81), pp. 120–126 (In Russian).
  7. Saraev Yu.N., Gladkovsky S.V., Golikov N.I., Veselova V.E. Improving the service properties of metal structures working under conditions of low climatic temperatures by methods of adaptive pulsed arc welding. Svarochnoye Proizvodstvo, 2015, no. 11, pp. 33–40. (In Russian).
  8. Saraev Yu.N., Bezborodov V.P., Gladovsky S.V., Golikov N.I. Properties of the welded joints of manganese steel made by low-frequency pulsed arc welding. Russian Metallurgy, 2017, no. 4, pp. 287–292. DOI: 10.1134/S0036029517040206
  9. Saraev Yu.N., Bezborodov V.P., Gladovskiy S.V., Golikov N.I. Improving the reliability of metallic structures in service in the conditions with low climatic temperatures by efficient application of advanced methods of modification of the zone of the welded joint. Welding International, 2017, vol. 31, no. 8, pp. 631–636. DOI: 10.1080/09507116.2017.1307512
  10. Botvina L.R. Razrusheniye. Kinetika, Mekhanizmy, Obshchiye Zakonomernosti [Fracture. Kinetics, General Regularities]. Moscow, Nauka Publ., 2008, 334 p. (In Russian).
  11. Terentiev V.F. Ustalostnaya Prochnost Metallov i Splavov [Fatigue Strength of Metals and Alloys]. Moscow, Intermet Inzhiniring Publ., 2002, 288 p. (In Russian).
  12. Rusakov A.A. Rentgenografiya Metallov [X-ray Diffraction of Metals]. Moscow, Atomizdat Publ., 1977, 480 p. (In Russian).
  13. Pugacheva N.B., Michurov N.S., Trushina E.B. Peculiarities of the structure of welded aluminum alloy joints. Diagnostics, Resource and Mechanics of materials and structures, 2015, iss. 5, pp. 58–71. Available at: http://dream-journal.org/issues/2015-5/2015-5_43.html
  14. Honeycombe R.W.K. Plasticheskaya Deformatsiya Metallov [Plastic Deformation of Metals]. Moscow, Mir Publ., 1972, 408 p. (In Russian).


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Article reference

Influence of Welding Technology on the Structure, Mechanical Properties and Fracture Toughness of 09g2s Steel Welded Joints / Yu. N. Saraev, S. V. Gladkovsky, S. V. Lepikhin, D. A. Dvoynikov, I. S. Kamantsev, V. E. Veselova // Diagnostics, Resource and Mechanics of materials and structures. - 2017. - Iss. 5. - P. 23-42. -
DOI: 10.17804/2410-9908.2017.5.023-042. -
URL: http://eng.dream-journal.org/issues/content/article_143.html
(accessed: 11/21/2024).

 

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