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Determination of mechanical properties of P91 steel by means of magnetic Barkhausen emission

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this work, an attempt at determination of mechanical properties by means of a method based on magnetic Barkhausen emission measurements was proposed. The specimens made of P91 steel were subjected to creep or plastic flow which were interrupted after a range of selected time periods in order to achieve specimens with an increasing level of strain. Subsequently, measurements of magnetic Barkhausen emission were carried out, and then static tensile tests were performed in order to check variations of basic mechanical parameters. It is shown that evident relationships between the yield point/ultimate tensile strength and some parameters of the Barkhausen emission exist.
Rocznik
Strony
181--188
Opis fizyczny
Bibliogr. 15 poz., rys., tab.
Twórcy
autor
  • Motor Transport Institute, Warsaw, Poland
  • Institute of Fundamental Technological Research Polish Academy of Sciences, Warsaw, Poland and Motor Transport Institute, Warsaw, Poland
  • Gdansk University of Technology, Gdańsk, Poland
  • Gdansk University of Technology, Gdańsk, Poland
Bibliografia
  • 1. Augustyniak B., 2003, Magnetoelactic Effects and their Application in the Non-Destructive Testing of Materials (in Polish), Wydawnictwo Politechniki Gdańskiej, Gdańsk, Poland
  • 2. Baldev R., Jayakumar T., Moorthy V., Vaidyanatham S., 2001, Characterisation of microstructures, deformation and fatigue damage in different steels using magnetic Barkhausen emission technique, Russian Journal of Nondestructive Testing, 37, 11, 789-798
  • 3. Blaow M., Evans J. T., Shaw B. A., 2007, The effect of microstructure and applied stress on magnetic Barkhausen emission in induction hardened steel, Journal of Materials Science, 42, 4364-4371
  • 4. Gorkunov E.S., Dragoshanskii Yu.N., Mikhovski M., 2000, Barkhausen noise and its utilization in structural analysis of ferromagnetic materials (Review article V), Russian Journal of Nondestructive Testing, 36, 6, 389-417
  • 5. Jiles D.C., 2000, Dynamics of domain magnetization and the Barkhausen effect, Czechoslovak Journal of Physics, 50, 893-988
  • 6. Kleber X., Hug-Amalric A., Merlin J., 2008, Evaluation of proportion of phases and mechanical strength of two-phase steels using Barkhausen noise measurements: application to commercial dual-phase steel, Metallurgical and Materials Transactions A, 1308-volume 39A
  • 7. Mohapatra J.N., Bandyopadhyay N.R., Gunjan M.K., Mitra A., 2010, Study of hightemperature ageing and creep on bainitic 5Cr-0.5Mo steel by magnetic NDE techniques, Journal of Magnetism and Magnetic Materials, 322, 589-595
  • 8. Mohopatra J.N., Ray A.K., Swaminathan J., Mitra A., 2008, Creep behaviour study of virgin and service exposed 5Cr-0.5Mo steel using magnetic Barkhausen emissions technique, Journal of Magnetism and Magnetic Materials, 320, 2284-2290
  • 9. O’Sullivan D., Cotterell M., Cassidy S., Tanner D.A., M´esz´aros O., 2004, Magnetoacoustic emission for the characterisation of ferritic stainless steel microstructural state, Journal of Magnetism and Magnetic Materials, 271, 381-389
  • 10. Panait C., Bendick W., Fuchsmann A., Gourgues-Lorenzon A.-F., Besson J., 2009, Study of the microstructure of the Grade 91 steel after more than 100’000h of creep exposure AT 600◦, 2nd ECCC Creep Conference, Zurich, Switzerland
  • 11. Pesicka J., Kuzel R., Dronhofer A., Eggeler G., 2003, The evolution of dislocation density during heat treatment and creep of tempered martensite ferritic steels, Acta Materialia, 51, 4847-4862
  • 12. Saquet O., Chicois J., Vincent A., 1999, Barkhausen noise from plain carbon steel: analysis of the influence of microstructure, Materials Science and Engineering, A269, 3-82
  • 13. Trillon A., Deneuville F., Petit S., Bisiaux B., 2012, Magnetic Barkhausen noise for hardness checking on steel, 18th World Conference on Nondestructive Testing, 16-20 April 2012, Durban, South Africa
  • 14. Vahista M., Paul S., 2009, Correlation between surface integrity of ground with Barkhausen noise parameters and hysteresis loop characteristics, Materials and Design, 30, 1595-1603
  • 15. Yamuara S., Furuya Y., Watanabe T., 2001, The effect of grain boundary microstructure on Barkhausen noise in ferromagnetic materials, Acta Materialia, 49, 3019-3027
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ad05a6c9-2752-4ab2-9945-ab76025872f1
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