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E. S. Gorkunov

MAGNETIC STRUCTURAL–PHASE ANALYSIS. PART II

DOI: 10.17804/2410-9908.2015.3.006-050

The paper continues the discussion of original studies on magnetic structural-phase analysis. Part II deals with the application of structure-insensitive magnetic characteristics to qualitative and quantitative phase analysis. Phase analysis procedures are discussed. Applications of nondestructive testing devices designed for determining the quantity of residual austenite and porosity in industrial products are described.

Keywords: magnetic properties, phase analysis, residual porosity, saturation magnetization, Curie temperature, coercive force, magnetic susceptibility (permeability)

References:

1. Vonsovsky S.V. Magnetizm [Magnetism]. Moscow, Nauka Publ., 1971, 1032 p. (In Russian).
2. Belov K.P. Magnitnye prevrashcheniya [Magnetic Transformations]. Moscow, Fizmatgiz Publ., 1959, 259 p. (In Russian).
3. Margolin Yu.M., Sachavsky A.F. A magnetic study of austenitic steels. Zavodskaya Laboratoriya, 1952, no. 4, pp. 447–452. (In Russian).
4. Sigolaev S.Ya. Thermoparamagnetic analysis of phase transformations in austenitic steel. In: Fiziko–mekhanicheskie issledovaniya metallov [in Physical-Mechanical Study of Metals]. Moscow, Mashgiz Publ., 1953, pp. 5–15. (In Russian).
5. Entin S.D. Studying the effect of plastic deformation on phase transformations in austenitic steels by paramagnetic properties. Fiziko-mekhanicheskie issledovaniya metallov. Moscow, Mashgiz Publ., 1953, pp. 16–28. (In Russian).
6. Gintsburg Ya.S., Margolin Yu.M., Sachavsky A.F. Physical methods for studying slow transformations in high-alloy steel. Zavodskaya Laboratoriya, 1956, no. 9, pp. 1046–1052. (In Russian).
7. Smezhnoy V.L., Miroshnichenko F.D., Kanibolotsky V.G., Stolyarenko A.I. On the technique for determining low alpha-phase contents in austenitic steels. Zavodskaya Laboratoriya, 1970, no. 9, pp. 1083–1086. (In Russian).
8. Snezhnoy V.L., Miroshnichenko F.D., Kanibolotsky V.G., Okhromiy G.A. Effect of the magnetic moment of a paramagnetic matrix on the determination of low α-phase contents in austenitic steels. FMM, 1970, vol. 30, iss. 2, pp. 363–366. (In Russian).
9. Zolotarevsky I.V., Snezhnoy V.L. On the determinability of the magnetic susceptibility of a paramagnetic matrix containing ferromagnetic inclusions. Zavodskaya Laboratoriya, 1978, no. 7, pp. 822–824. (In Russian).
10. Mikheev M.N., Belenkova M.M., Vitkalova R.N., Elkina O.A. Variation of Magnetic Susceptibility in the Aging of β-Titanium Alloys Alloyed with Manganese, Vanadium, and Molibdenum. The Soviet Journal of Nondestructive Testing, 1981, vol. 17, no. 9, pp. 694-698.
11. Gorkunov E.S. Magnetic structural-phase analysis as applied to diagnosing and evaluating the lifetime of products and structural components. Part 1. Diagnostics, Resource and Mechanics of materials and structures, 2015, iss. 1, pp. 6–40. (In Russian). DOI: 10.17804/2410-9908.2015.1.006-040. [24.03.2015].
12. Zeldovich V.I., Komarov I.G. Dilatometric anomaly in a deformed Fe–Ni alloy with γ→α transformation. II Vsesoyuznoe soveshchanie po mekhanizmu i kinetike martensitnykh prevrashcheniy. Kiev, 1973, pp. 103. (In Russian).
13. Zeldovich V.I., Komarov I.G. Dilatometric anomaly in a deformed Fe–Ni alloy with γ→α and α→γ transformations. Metallofizika, 1974, iss. 24, pp. 41–45. (In Russian).
14. Belov K.P. Uprugie, teplovye i elektricheskie yavleniya v ferromagnetikakh [Elastic, thermal and electric phenomena in ferromagnetic materials]. Moscow, GITTL Publ., 1957, pp. 112–117. (In Russian).
15. Eremin N.I., Reshetkina N.A. Magnetic-metallographic phase analysis of austenitic steels. In: Fiziko-mekhanicheskie issledovaniya metallov: sbornik, Moscow, Mashgiz Publ., 1953, pp. 58–71. (In Russian).
16. Lashko N.F., Eremin N.I. Fazovyi analiz i struktura austenitnykh stalei [Phase Analysis and Structure of Austenitic Steels]. Moscow, Mashgiz Publ., 1957. (In Russian).
17. Preobrazhensky A.A. Magnitnye materialy i elementy [Magnetic Materials and Elements]. Moscow, Vysshaya Shkola Publ., 1976, pp. 58–62. (In Russian).
18. Geller Yu.A., Fadyushina M.N. On the application of magnetic-metallographic determination of residual austenite in the steel structure. Zavodskaya Laboratoriya, 1961, no. 5, pp. 562–565. (In Russian).
19. Livshits B.G. Fizicheskie svoistva splavov [Physical Properties of Alloys]. Moscow, Metallurgizdat Publ., 1946. (In Russian).
20. Delle V.A., Kozyrev B.P. A device for studying the isometric transformation of austenite. Zavodskaya Laboratoriya, 1935, no. 10, pp. 1253–1256. (In Russian).
21. Kuznetsov A.A. A method for determining small quantities of residual austenite in steels. Zavodskaya Laboratoriya, 1938, no. 4, pp. 437–440. (In Russian).
22. Grabovsky M.A., Skorobogatov V.I. Electrodynamic magnetometer designed for determining the Curie point temperature of ferromagnetic materials. Zavodskaya Laboratoriya, 1947, no. 1, pp. 52–58. (In Russian).
23. Vorobyov V.G. Magnetometric study of martensite transformation at temperatures below zero. Zavodskaya Laboratoriya, 1951, no. 1, pp. 55–63. (In Russian).
24. Apaev B.A. A magnetic installation designed to study the kinetics of transformations in steel. Zavodskaya Laboratoriya, 1952, no. 1, pp. 105–108. (In Russian).
25. Kubyshkina T.D, Reingold I.A. An anisometer used to study the transformations of overcooled austenite. Zavodskaya  Laboratoriya, 1952, no. 6, pp. 715–719. (In Russian).
26. Reingold I.A., Kovalev K.A. Determination of relative changes in austenite concentration by measuring magnetic induction in the region of low fields. Zavodskaya Laboratoriya, 1954, no. 8, pp. 929–932. (In Russian).
27. Popov A.A., Shklyar R.Sh. On the determination of austenite content from magnetic saturation. Zavodskaya Laboratoriya, 1956, no. 6, pp. 677–685. (In Russian).
28. Permyakov V.G., Naidich Yu.V., Rybak S.A. Differential magnetic technique for studying steels and alloys. Zavodskaya Laboratoriya, 1956, no. 6, pp. 695–699. (In Russian).
29. Egorov G.E., Nazarenko G.T., Moiseev V.P. On evaluating transformations of residual austenite in a barrel band. Zavodskaya Laboratoriya, 1957, no. 1, pp. 52–55. (In Russian).
30. Leontiev B.A., Spektor Ya.I. Akulov’s anisometer as applied to studying stepwise decay of overcooled austenite in steel. Zavodskaya Laboratoriya, 1957, no. 3, pp. 325–326. (In Russian).
31. Kotkis M.A. An austenometer with alternating magnetic field. Zavodskaya Laboratoriya, 1957, no. 8, pp. 970–973. (In Russian).
32. Kozlov K.K. Differential magnetic technique as applied to studying steel in the subcritical range of temperatures. Zavodskaya Laboratoriya, 1963, no. 12, pp. 1461–1463. (In Russian).
33. Medvedev Yu.S., Tomilina T.D. Studying the stability of the austenite of stainless steels by a ponderomotive device. Zavodskaya Laboratoriya, 1964, no. 3, pp. 314. (In Russian).
34. Belous M.V., Vasilev M.A., Cherepin V.T. A magnetometer intended for studying fast processes. Zavodskaya Laboratoriya, 1966, no. 3, pp. 370–371. (In Russian).
35. Solodikin V.I., Belous Yu.V., Koledova T.N., Sidash I.V. Studying the behavior of magnetization of ferromagnetic materials by differential technique. Zavodskaya Laboratoriya, 1969, no. 9, pp. 1088. (In Russian).
36. Apaev B.A., Kraev A.P. The MAG-81BA magnetometric device with high sensitivity of the metering circuit and automatic reading. Zavodskaya Laboratoriya, 1983, no. 5, pp. 33–35. (In Russian).
37. Kuznetsov I.A., Shabalina E.F. Rukovodstvo k laboratornym zanyatiyam po magnitnym izmereniyam i magnitnomu strukturnomu analizu [A Manual to Laboratory Classes on Magnetic Measurements and Magnetic Structural Analysis]. Sverdlovsk, Uralskiy Gosuniversitet Publ., 1966, 160 p. (In Russian).
38. Petzuch М., Stierstadt К. Die Temperaturabhangigkeit des inncren Entmagnetisirungsfactor von Nickel. Zs. angew. Phys, 1967, 22, S. 484–486.
39.Tikadzumi S. Fizika ferromagnetizma. [Physics of Ferromagnetism]. Moscow, Mir Publ., 1983, 302 p. (In Russian).
40. Lyulicheva N.N. Volumetric changes of the carbide phase in steels under tempering. Fizika metallov i metallovedenie, 1957, vol. 4, iss. 2, pp. 319–330. (In Russian).
41. Kuznetsov I.A. On the processes of carbide transformation in steels under tempering. FMM, 1965, vol. 20, iss. 1, pp. 140–142. (In Russian).
42. Parfenov V.V., Yanus R.I. On the effect of austenite on the magnetization curve for steel. ZhTF,1948, vol. 18, iss. 2, pp. 161–166. (In Russian).
43. Parfenov V.V. Studying the commutation curves for steels in the region of high magnetic fields. FMM, 1955, vol. 1, iss. 3, pp. 434–440. (In Russian).
44. Yanus R.I. Magnitnaya defektoskopiya [Magnetic-Field Testing]. Moscow–Leningrad, OGIZ Publ., 1946, 171 p. (In Russian).
45. Vonsovsky S.V., Shur Ya.S. Ferromagnetizm [Ferromagnetism]. Moscow–Leningrad, OGIZ Publ., 1948, 816 p. (In Russian).
46. Akulov N.S. Ferromagnetizm [Ferromagnetism]. Moscow–Leningrad, GITTL Publ., 1939, 187 p. (In Russian).
47. Yanovsky B.M. Zemnoy magnetizm [Terrestrial Magnetism]. Leningrad, Leningradskiy Gosuniversitet Publ., 1978, 592 p. (In Russian).
48. Apaev B.A. Concerning the current contradictions about carbide phases arising in carbon steel under tempering. FMM, 1960, vol. 9, iss. 3, pp. 400–414. (In Russian).
49. Apaev B.A. The process of carbide formation in carbon steel under tempering. Metallovedenie i obrabotka metallov, 1957, no. 1, pp. 2–15. (In Russian).
50. Apaev B.A. On selecting an etalon when determining the quality of austenite in steel by magnetic technique. Zavodskaya Laboratoriya, 1953, no. 3, pp. 315–321. (In Russian).
51. Apaev B.A. Fazovyi magnitnyi analiz splavov [Phase Magnetic Analysis of Alloys]. Moscow, Metallurgiya Publ., 1976. (In Russian).
52. Apaev B.A. Methods for calculating the quantity of austenite in systems with two paramagnetic phases. Zavodskaya Laboratoriya, 1955, no. 2, pp. 168–176. (In Russian).
53. Geller Yu.A. On the magnetic determination of the quantity of residual austenite. Zavodskaya Laboratoriya, 1955, no. 2, pp. 177–181. (In Russian).
54. Gardin A.I. Magnetic determination of residual austenite in rapid tool steel. Zavodskaya Laboratoriya, 1956, no. 3, pp. 303–309. (In Russian).
55. Permyakov V.G., Belous M.V. Carbide transformations in steel under tempering. FMM, 1957, vol. 4, iss. 3, pp. 490–499. (In Russian).
56. Permyakov V.G., Belous M.V. On magnetic technique of quantitative carbide analysis of carbon steels. I. FMM, 1960, vol. 10, iss. 2, pp. 317–320. (In Russian).
57. Belous M.V., Cherepin V.T., Vasiliev M.A. Prevrashcheniya pri otpuske stali [Transformations during Steel Tempering]. Moscow, Metallurgiya Publ., 1973, 232 p. (In Russian).
58. Meskin V.S. Ferromagnitnye splavy [Ferromagnetic Alloys]. Moscow–Leningrad, ONTI–NKTP Publ., 1937, 791 p. (In Russian).
59. Geller Yu.A. Instrumentalnye stali [Tool Steels]. Moscow, Metallurgiya Publ., 1968, 568 p. (In Russian).
60. Kuznetsov I.A. Thermoelectric Sensors for Testing the Quality of Materials and Parts without Destroying These. The Soviet Journal of Nondestructive Testing, 1973, vol. 9, no. 1, pp. 1–6.
61. Mikheev M.N., Tomilov G.S., Pomukhin M.F., Rzyankin K.G., Utkina V.A. Magnetic testing of the quality of quenching and tempering of ball and roller bearing parts. Zavodskaya Laboratoriya, 1956, no. 5, pp. 549–555. (In Russian).
62. Tomilov G.S., Mikheev M.N., Pomukhin M.F., Utkina V.A.  Magnetic testing of the quality of heat-treated bearing parts. Zavodskaya Laboratoriya, 1959, no. 4, pp. 448–453. (In Russian).
63. Mikheev M.N., Surin G.V., Tomilov G.S. A differential magnetic device for testing the quality of heat treatment. Zavodskaya Laboratoriya, 1960, no. 11, pp. 1306–1308. (In Russian).
64. Mikheev M.N., Tomilov G.S., Rzyankin K.G., Pomukhin M.F., Utkina V.A. Magnetic testing of the quenching and tempering of ball and roller bearing parts. Trudy Instituta fiziki metallov AN SSSR, 1959, iss. 21, pp. 181–197. (In Russian).
65. Ponomarev Yu.F., Tabachnik V.P., Fridman L.A., Yanus R.I. Studying a differential magnetic device with a ferro-sensor. Trudy Instituta fiziki metallov AN SSSR, 1967, iss. 26, pp. 143–148. (In Russian).
66. Shteblein F., Steinits R. A new device with a double yoke for testing magnetic steel. Zavodskaya Laboratoriya, 1935, no. 11, pp. 1370–1376. (In Russian).
67. Mikheev M.N., Popov B.V. Magnetic testing of the microstructure of cast-iron piston rings. Izv. AN SSSR (OTN), 1943, no. 3 – 4, pp. 58–67. (In Russian).
68. Mikheev M.N. On magnetic testing of rolls. Materialy soveshchaniya po valkam kholodnoi prokatki: Trudy Uralmashzavoda [Materials of the Conference on Cold-Rolling Rolls : Transactions of the “Uralmash” Plant]. 1963, pp. 130. (In Russian).
69. Mikheev, M.N., Neizvestnov B.M., Bida G.V., Surin G.V., and Morozova V.M. Magnetic Inspection of the Heat Treatment Quality of Large Bearing Parts. The Soviet Journal of Nondestructive Testing, 1977, vol. 13, no. 4, pp. 478-481.
70. Mikheev M.N., Morozova V.M., Bochenkov V.S., Remez N.V., and Surin G.V. Magnetic Heat Treatment Quality Testing of Rolls for Cold Rolling Mills. The Soviet Journal of Nondestructive Testing, 1969, July-August, no.4, pp.471-477.
71. Fridman L.A., Tabachnik V.P. On the Use of Artificial Standards for a Differential Magnetic Device. The Soviet Journal of Nondestructive Testing, 1969, July-August, no. 4, pp. 449–452.
72. Mikheev M. N., Gorkunov E. S., Antonov A. V., Shirobokov M. I., and. Nikitin V. V. Differential Measuring Instrument of Magnetic Characteristics. The Soviet Journal of Nondestructive Testing, 1982, vol.18, no.12, pp. 982–984.
73. Entin S.D. Magnetic technique for testing the quality of the heat treatment of work rolls. Trudy TsNIITMASh. Valki kholodnoy prokatki. Part I. Tekhnologiya proizvodstva. Moscow, 1970, pp. 61–63. (In Russian).
74. Landa V.A. Instruments for magnetic testing of the quality of heat-treated tools made of rapid tool steel. Pribory magnitnogo kontrolya kachestva termicheskoy obrabotki instrumenta iz bystrorezhushchey stali. In: Novye metody kontrolya i defektoskopii [New Methods of Testing and Defectoscopy]. Kiev, Gostekhizdat Publ., 1958, pp. 114–120. (In Russian).
75. Varlamova S.S., Varlamov V.I. Application of an MT-2 magnetic thickness meter for continuous testing of the quality of heat-treated tool steels. Zavodskaya Laboratoriya, 1971, no. 3, pp. 378. (In Russian).
76. Pribory dlya nerazrushayushchego kontrolya materialov i izdeliy. Kn.2: spravochnik [Instruments for Nondestructive Testing of Materials and Products. Book 2. : reference book]. Moscow, Mashinostroenie Publ., 1976, 327 p. (In Russian).
77. Rozhdestvensky S.M. Elektromagnitnye metody defektoskopii. In: S. T. Nazarov, ed. Modern Methods of Nondestructive Material Testing. Moscow, Mashgiz Publ., 1961, pp. 194–563. (In Russian).
78. Gorodinsky I.A. Magnitnye i elektricheskie metody ispytaniya metallov (defektoskopiya) [Magnetic and Electric Methods for Metal Testing (Defectoscopy)]. Moscow–Leningrad, Gosplanizdat Publ., 1940, pp. 33–120. (In Russian).
79. Ulyanov A.I., Gorkunov E.S. Magnetic Structural Inspection of Sintered Powder Steels (Survey). Russian Journal of Nondestructive Testing, 1995, vol. 31, no.1, pp. 1-53.
80. Sterkhov G.V., Zapol’skikh V.P., Aleksandrov I.G., Isaev V.A. Magnetic Testing of the Microstructure of Porous Powder Metallurgy Components. The Soviet Journal of Nondestructive Testing, 1974, vol. 10, no. 3, pp. 353-355.
81. Sterkhov G.V., Zapolskikh V.P., Aleksandrov I.G., Isaev V.A. Testing the Microstructure and Porosity of Metalloceramic Objects by Reference to Two Magnetic Characteristics. The Soviet Journal of Nondestructive Testing, 1975, vol. 11, no. 3, pp. 341-345.
82. Sterkhov G.V., Mikheev M.N., Surin G.V. Application of a DMS-1 differential magnetic structuroscope for testing the structure and porosity of metal-ceramic products. VIII Vsesoyuznaya nauchno-tekhnicheskaya konferentsiya po nerazrushayushchim metodam kontrolya [VIII All-Union Scientific and Technical Conference on Nondestructive Testing Methods]. Kishinev, 1977, pp. 190–193. (In Russian).
83. Ulyanov A.I., Sterkhov G.V., Ermolaev V.G., Faizullin R.G. On the feasibility of nondestructive testing of sintered steel 30NM. In: Fizika i elektronika tverdogo tela. Izhevsk, Udmurtsky Gosuniversitet Publ., 1982, iss. 5, pp. 129–133. (In Russian).
84. Shcherbinin V.E., Gorkunov E.S. Magnitnyi control kachestva metallov [MagneticTesting of the Quality of Metals]. Ekaterinburg, UrO RAN Publ., 1996, 264 p. (In Russian).
85. Gorkunov E.S., Zakharov V.A. Coercimeters with Magnetic Attachments (Review). Russian Journal of Nondestructive Testing, 1995, vol.31, no.8, pp. 625-641.


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Gorkunov E. S. Magnetic Structural–phase Analysis. Part Ii // Diagnostics, Resource and Mechanics of materials and structures. - 2015. - Iss. 3. - P. 6-50. -
DOI: 10.17804/2410-9908.2015.3.006-050. -
URL: http://eng.dream-journal.org/issues/2015-3/2015-3_34.html
(accessed: 04/20/2024).

 

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