Dr. Anna Korniewa-Surmacz

Uwaga, otwiera nowe okno. PDFDrukuj

Phone.: (012) 2952867, room 10, Fax: (012) 2952804

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Employment and positions

Institute of Metallurgy and Materials Science, Polish Academy of Sciences: Ph.D. studies (2004-2008), assistant (2005), assistant professor (2008).

Scientific Carrier

M.Sc.: Ufa State Aviation Technical University, Ufa, Russia, 2004

Ph.D.: Institute of Metallurgy and Materials Science, Polish Academy of Sciences, 2008

Scientific achievements

52 papers, among them 20 citeted by the Institute for Scientific Information in Philadephia.

The most relevant publications during last 5 years

  1. B. Straumal, A. Korneva, P. Zięba, Phase transitions in metallic alloys driven by the high pressure torsion. Archives of Civil and Mechanical Engineering 14 (2014) 242-249.

  2. B. B. Straumal, Yu. O. Kucheev, L. Kurmanaeva, A. R. Kilmametov, Yu. Ivanisenko, B. Baretzky, A. Korneva, P. Zięba, D. A. Molodov, Phase transitions during high pressure torson of Cu-Co alloys, Materials Letters 118 (2014) 111-114.

  3. B.B. Straumal, A. Korneva, O. Kogtenkova, L. Kurmanaeva, P. Zięba, A. Wierzbicka-Miernik, S.N. Zhevnenko, B. Baretzky, Grain boundary wetting and premelting in the Cu-Co alloys, Journal of Alloys and Compounds (2014) 183-187.

  4. A. Korneva, B. Straumal, O. Kogtenkova, Y. Ivanisenko, A. Wierzbicka-Miernik, A. Kilmametov, P. Zieba, Microstructure evolution of Cu - 22 % In alloy subjected to the high pressure torsion, IOP Conf. Series: Materials Science and Engineering 63 (2014) 012093.

  5. B. B. Straumal, A. R. Kilmametov, Yu. O. Kucheev, K. I. Kolesnikova, A. Korneva, P. Zięba, B. Baretzky, Transformation of Hume_Rothery Phases under the Action of High Pressure Torsion, JETP Letters, Vol. 100, No. 6 (2014) 376-379.

  6. A. Korneva, Microstructural changes in Cu-5.8 at.% In alloy caused by high pressure torsion, International Journal of Material Research, 106 (2015) 7 810-812

  7. B. B. Straumal, A. R. Kilmametov, Y. G. Ivanisenko, A. A. Mazilkin, O. A. Kogtenkova, L. Kurmanaeva, A. Korneva, P. Zięba, B. Baretzky, Phase transitions induced by severe plastic deformation: steady-state and equifinality, International Journal of Material Research, 106 (2015) 7 657-664

  8. A. Korneva, B. Straumal, A. Kilmametov, R. Chulist, P. Straumal, P. Zięba, Phase transformations in a Cu-Cr alloy induced by high pressure torsion, Materials Characterization, 114 (2016) 151-156.

  9. A. Korneva, B. Straumal, R. Chulist, A. Kilmametov, G. Cios, P. Bała, N. Schell, P. Zięba, Grain refinement of intermetallic compounds in the Cu-Sn system under high pressure torsion, Materials Letters, 179 (2016) 12-15.

  10. A. Korneva, B. Straumal, A. Kilmametov, G. Cios, P. Bała, P. Zięba, Effect of high pressure torsion on microstructure of Cu - Sn alloys with different content of Hume Rothery phase, Materials Characterization, 118 (2016) 411-416.

Chapters in books:

  1. K. Sztwiertnia, M. Bieda, A. Korneva, Application of orientation mapping in TEM and SEM for study of microstructural evolution during annealing. Example: Aluminum alloy with bimodal particle distribution, InTech, Recrystallization, ISBN: 978-953-51-0122-2 (2012) 43-58

  2. M. Bieda, A. Korneva, K. Sztwiertnia, Orientation Microscopy in Transmission Electron Microscope - Investigations of small Orientations Changes by Means of Orientation Mapping in TEM, InTech, The Transmission Electron Microscope, ISBN: 978-953-51-0450-6, (2012) 51-68

  3. A. Korneva, P. Zięba, Przemiany fazowe w stopach na bazie miedzi wymuszone przez intensywne odkształcenie plastyczne, 65 lat Institutu Metallurgii i Inżynierii Materiałowej im. A. Krupkowskiego Polskiej Akademii Nauk, ISBN: 978-83-60768-41-9, Wydawca: IMIM PAN, (2017) 233-245

Research Projects

Mechanisms of grain refinement during continuous recrystallization process in aluminum alloys with bi-modal distribution of the precipitates. New method obtaining materials with ultra-fine grained structure (Project No. 507 047 31/1152), IMMS PAS, contractor, 2006-2009.

• Improvement of competitive and innovative characteristics of the national industry of non-ferrous metal processing through the preparation of advanced metallic materials and technologies of their production (Project No. PBZ-MNiSW-3/3/2006), Task 1.5: Multiscale, quantitative characteristics of the microstructure of technologically-advanced metallic materials, IMMS PAS, contractor, 2007 - 2010.

• Optimization of the operating properties of had magnetic alloys of the system Fe-Cr-Co. Gradient microstructure magnets. (Projekt N507 530539) IMIM PAS, supervisor, 2010 - 2013.

• Bulk and interfacial phase transformations driven by severe plastic deformation. (International research project N 2011-01-M-ST8-07822), IMMS PAS, contractor, 2011-2014.

Experience gained abroad

Marie Curie Summer Schools, Estremoz, Portugalia, 2007 (10 days).

French-Polish joint meeting, Paris, Francja, 2008 (3 days).

Prizes and awards

2010 - Winner of the Program Pomost

2013 - 3rd Prize for poster contribution on AMT 2013

Main scientific interest
Hard magnetic alloys. Gradiental materials. The influence of intensive deformation on the microstructure, magnetic and miechanical properties of hard magnetic alloys Fe-Cr-Co