Kherson State Maritime Academy, 20 Ushakov ave., Kherson, 73000, Ukraine
Bibliografia
Aginey R.V., Teplinskii Y.A., Kuzbozhev A.S., 2004.: Estimate the stress state of steel pipelines on the anisotropy of the magnetic properties of the metal. // Control. Diagnostics. — N° 9. - 48-50. (in Russian).
Barabaschuk V.I., Kredentser B.P.,Miroshnichenko V.I., 1984.: Design of experiments in engineering, Kiev, Tehnika, 200. (in Russian).
Bida G.V., Kuleev V.G., 1998.: Elastic deformation effect on the magnetic properties of steels with different structure. // Defektoskopiya. N° 11. - 12-26. (in Russian).
Finney D.J., 1970 .: An introduction to the theory of experimental design, Moscow, Nauka, 288. (in Russian).
Gorkunov E. S., Tsar’kova T. P., Smirnov S. V., Vichuzhanin D. I., Kuznetsov V. Yu., Emel’yanov I. G., 2004.: Effect of Deviation from Coaxiality between the Directions of Magnetization and Mechanical Strain on the Results of Magnetic Testing of Elastic Strain in Steels. // Defektoskopiya. - N° 5. - 40-52. (in Russian).
Johnson N., Leone F., 1981.: Statistics and experimental design in engineering and science: Methods of experimental design, Moscow, Mir, 520. (in Russian).
Kuleev V. G., Bida G. V., Atangulova L. A., 2000.: Feasibility of NDT of Ferromagnetic Steel Structures Based on Measurements of Residual Magnetization as a Function of Elastic Stress. // Defektoskopiya. - N° 12. - 7-19. (in Russian).
Kuleev V.G., Gorkunov E.S., 1997.: The mechanisms of the influence of internal and external stresses on the coercive force of ferromagnetic steels. // Defektoskopiya. — N° 11. - p. 3-18. (in Russian).
Kuleev V.G., Mikheev M.N., Rigmant M.B., Nesterenko V.V., Lobanov L.V., Nazarov Y.I., Guzeev S.T., 1985.: To the problem of control the magnetic state of ferromagnetic steel when exposed to magnetic fields and the elastic stresses after region of Rayleigh. // Defektoskopiya. - N° 9. - 33-42. (in Russian).
Kuleev V. G., Tsar’kova T. P., Nichipuruk A. P., 2006.: Effect of Tensile Plastic Deformations on the Residual Magnetization and Initial Permeability of Low-Carbon Steels. // Defektoskopiya. — N° 4. - 61-74. (in Russian).
Langman R., 1990.: Magnetic properties of mildsteel under conductions biaxial stress. // JEEE Trans. on Magn. - Vol. 26, N 4. - 1246-1251.
Maksimadzhi A.I., 1988.: To the captain about the ship's hull strength: Directory, Leningrad, Sudostroyeniye, 224. (in Russian).
Miroshnikov Vadim, Karmanov Nikolay, Kostin Sergey, Martynenko Natalie, 2011.: Calculation of three-dimensional fields in tasks of defectoscopy. // TEKA Kom. Mot. i Energ. Roln. OI.PAN. 11A. 159-168.
Miroshnikov Vadim, Pobeda Tatyana, Kostin Sergey, 2010.: Calculation of quantity characteristics of the field created by local magnetizing devices. // TEKA Kom. Mot. i Energ. Roln. - OL.PAN. 10C. 190-197.
Novikov N.N., Rodionov I.E., Shutko V.F., 2005.: Synchronous motors: a guide for students of electrotechnical and electropower specialties, Yekaterinburg, USTU, 36. (in Russian).
Novikov V. F., Yatsenko T. A., Basharev M. S., 2001.: Coercive Force of Low-Carbon Steels as a Function of Uniaxial Stress. // Defektoskopiya. - N° 11. - 51-57. (in Russian).
Rosenblat M.A., 1966.: Magnetic elements Automation and Computer Engineering, Moscow, Nauka, 720. (in Russian).
Thompson S.M., Tanner B.K., 1994.: The magnetic properties of specially prepared pearlitic steels of varying carbon content as a function of plastic deformation. // J. of Magn. a. Magn. Mat. - N 132. - 71-88.
Zavalniuk O.P., Miroshnikov V.V., 2012.: Magnetic control of ship hulls during cargo and ballast operations. // Visnik of the Volodymyr Dahl East Ukrainian National University. — N° 18 (189). - 76-82. (in Russian).