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Structures and phases transitions of the alloys on the bases of Fe-Al intermetallic phases

Wybrane pełne teksty z tego czasopisma
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Języki publikacji
PL
Abstrakty
EN
Purpose: The paper presents study the results of investigations the influence of the chemical composition and thermal treatment on the microstructures and phases transitions of intermetallics from the Fe-Al system. Design/methodology/approach: Investigated alloys with 28, 38 and 42% at. Al were melted in vacuum induction furnace. Next stage of the preparing was gravity casting for cylindrical graphite moulds in the form of bars. The structure was analyzed after annealing at 1000°C for 24 and 48 h. The phases transitions were carried out by using a DTA method on the Setsys made by Setaram. Findings: The microstructure observations indicated the presence of phases and precipitates in all investigated alloys. In all of the investigated alloys, precipitation of phases present in the structure as a result of the introduction of alloying additions, such as Zr, Cr, Mo and C, is visible. transformations connected with both disorder-order transitions and the initial temperature at which a liquid phase occurred in the alloys had taken place during heating. Research limitations/implications: The investigations showed that the very important in production of intermetallics from Fe-Al system is casting and thermal treatment process. The important is knowledge about the phases transformations in this alloys which taking the informations about the melting points, order – disorder transition and their correlations with structure and in consequence the mechanical properties. Practical implications: The formation of phases and precipitates during the heat treatment in these alloys have not been known until now. This structures aspects are significantly affect the properties of intermetallics from the Fe-Al system. In correlation with temperatures of phases transition they could take the most important informations for technological processing. Originality/value: We needed more details about intermetallic from Fe-Al system for their development. This paper are the valid supplement for development knowledge of the iron aluminides.
Rocznik
Strony
16--19
Opis fizyczny
Bibliogr. 14 poz.
Twórcy
autor
autor
Bibliografia
  • [1] C.T. Liu, V.K Sikka, C.G. Mckamey, Alloy development, Lockheeadv Martin Energy Systems, Oak Ridge National Laboratory, Oak Ridge, Tennessee, 1993.
  • [2] P.I. Ferreira, A.A. Couto, J.C.C. de Paola, The effects of chromium addition and heat treatment on the microstructure and tensile properties of Fe-24Al (at. %), Materials Science and Engineering A192/193 (1995) 165-169.
  • [3] J.W. Lee, C.C. Wu, T.F. Liu, The influence of Cr alloying on microstructures of Fe–Al–Mn–Cr alloys, Scripta Materialia 50 (2004) 1389–1393.
  • [4] A.O Mekhrabov, Effect of ternary alloying elements addition on atomic ordering characteristics of Fe-Al intermetallics, Acta Materialia 47 (1999) 2067-2075.
  • [5] Y.D. Huang, W.Y. Yang, Z.Q. Sun, Effect of the alloying element chromium on the room temperature ductility of Fe3Al intermetallics, Intermetallics 9 (2001) 119-124.
  • [6] S. Kobayashi, S. Zaefferer, A. Schneider, D. Raabe, G. Frommeyer, Optimisation of precipitation for controlling recrystallization of wrought Fe3Al based alloys, Intermetallics 13 (2005) 1296-1303.
  • [7] Y.D. Huang, L. Froyen, Recovery, recrystalization and grain growth in Fe3Al based alloys, Intermetalics, 10 (2002) 443.
  • [8] M. Jabłońska, K. Rodak, G. Niewielski, Characterization of the structure of FeAl alloy after hot deformation, Journal ofAchievements in Materials and Manufacturing Engineering 18 (2006) 107-110.
  • [9] M. Jabłońska, Influence of hot plastic deformation parameters on the structure and properties of the Fe-38Al alloy, PhD Thesis, Faculty of Material Engineering and Metallurgy of the Silesian University of Technology, Katowice, 2005.
  • [10] D.D. Risanti, G. Sauthoff, Strenghtening of iron aluminide alloys by atomic ordering and Laves phase precipitation for high-temperature applications, Intermetallics 13 (2005) 1313-1321.
  • [11] D. Kuc, G. Niewielski, M. Jablonska, I. Bednarczyk, Deformability and recrystallisation of Fe-Al intermetallic phase - base alloy, Journal of Achievements in Materials and Manufacturing Engineering 20 (2006) 143-146.
  • [12] M. Jabłońska, G. Niewielski, E. Hadasik, K. Mokry!ski, W. Szkliniarz, Influence of hot deformation on changes In structure of intermetalics FeAl, Proceedings of the METAL 2003, Hradec nad Moravici, V, 2003.
  • [13] D. Kuc, I. Bednarczyk, G. Niewielski, The influence of deformation on the plasticity and structure of Fe3Al - 5Cr alloy, Journal of Achievements in Materials and Manufacturing Engineering 22/2 (2007) 27-30.
  • [14] M. Jabłońska, K. Rodak, G. Niewielski, Analysis of the structure of the intermetallic FeAl40 after hot deformation, Materials Science 3 (2004) 145-148.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSL9-0029-0003
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