TMF Influence on Weld Structure at the Welding of 12X18H9T

Author:

Razmyshlyaev Alexander D.1,Ahieieva Marina V.2,Lavrova Elena V.1

Affiliation:

1. Priazovsky State Technical University

2. Donbass State Machine-Building Academy

Abstract

The transverse magnetic field (TMF) use allows to obtain follow effects: increasing the electrode melting coefficient, reducing the base metal penetration depth and grinding the weld metal structural components. The paper analyzed the existing literature data about the TMF influence on the refinement of the weld metal structure. It is experimentally shown that the alternating TMF influence of 6 Hz frequency reduces the grain size of weld metal is almost twice in comparison with the welding process without the TMF influence at submerged arc welding of plates of austenitic steel type 12X18H9T (X10CrNiTi18-9). The average grains size is 7-6 index, when welding without the TMF influence and the average grains size of the weld metal corresponds to 8 index, with separate inclusions of grains with 7 index when welding with the TMF influence. This is should increase the yield strength value of the weld metal in accordance with the data of Hall – Petch.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference13 articles.

1. Chernysh, V.P.; Kuznetsov, V.D.; Briskman, A.N.; Shelenkov, G.M.: Welding with electromagnetic stirring. Kiev: Tekhnika, 1983, p.127.

2. Razmyshlyaev, A.D.; Mironova, M.V.: Magnetic control of formation of rollers and welds at arc surfacing and welding. Mariupol: PSTU, 2009, p.242.

3. Villafuerte J. C., Kerr H. W. Electromagnetic stirring and grain refinement in stainless steel GTA welds. Welding journal. No 1. Vol. 69 (1990). pp.1-13.

4. Malinovski-Brodnicka M., G. den Ouden, Vink W. J. P. Effect of electromagnetic stirring on GTA welds in austenitic stainless steel. Welding journal. No 2. Vol 69 (1990), pp.52-59.

5. Ryzhov, R. N.: The effect of pulsed electromagnetic influences on the formation and crystallization of welds. Automatic welding. No 2 (2007), pp.56-58.

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