Feasibility of nondestructive determination of the fatigue limit of steel 20H2M

Author:

Novikov V. F.,Semenov V. V.,Bakharev M. S.,Isakov V. V.

Publisher

Pleiades Publishing Ltd

Subject

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

Reference17 articles.

1. Mel’gui, K.M., Magnitnyi kontrol’ mekhanicheskikh svoistv stalei (Magnetic Inspection of Mechanical Properties of Steels), Minsk: Nauka i Tekhnika, 1980.

2. Mikheev, M.N. and Bida, G.V., Magnetic Inspection of Mechanical Properties of Low-Carbon and Low-Alloyed Steel Rolled Stock, Tezisy dokl. VIII Vsesoyuznoi nauchno-tekhnicheskoi konferentsii po nerazrushayushchim metodam kontrolya (Proc. of VIII All-Union Scientific and Technical Conference on Methods of Nondestructive Testing), Chisinau: 1977, pp. 107–109.

3. Yakirevich, D.I. and Dolgintsev, V.D., Studying Fatigue of a Ferromagnet Plate Using Higher-Harmonic Technique, Tezisy dokl. Vtoroi Vsesoyuznoi mezhvuzovskoi konferentsii po elektromagnitnym metodam kontrolya (Proc. of the Second All-Union Interollege Conference on Electromagnetic Methods of Inspection), Riga: 1975, pp. 75–79.

4. Ruuskanen, P. and Kettunen, P., Two Ferromagnetic Methods for the Evaluation of the Fatigue Limit in Polycrystalline Iron, NDT Int., 1980, vol. 13, no. 3, pp. 105–108.

5. Novikov, V.F., Rybnikova, O.I., and Nassonov, V.V., On the Sensitivity of Magnetoelastic Effect upon Bending Vibrations to Initial Stages of Plastic Deformation, Defektoskopiya, 1997, no. 11, pp. 26–32.

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1. Electromagnetic Witness Transducers of Pre-Fracture of Structures;Russian Journal of Nondestructive Testing;2019-08

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