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Warianty tytułu
Konferencja
12th International Scientific Conference CAM3S'2006, 27-30th November 2006, Gliwice-Zakopane
Języki publikacji
Abstrakty
Purpose: The aim of this work was to show possibilities and conception of more accurate structure and mechanical properties forecasting with use of modified derivative -gradient thermal method. Design/methodology/approach: The main restriction in standard thermal and derivative analysis is one point measurement of temperature in casting with assumed geometry. In this work a modified method is described in which restrictions present in TDA method are overcame and more accurate diagnostic of the liquid material can be conducted. Findings: Structural relations have been shown for local conditions of solidification defined by two derivatives dT/dt and dT/dl. Presented method incorporates up-to-date knowledge about structure influence on operating properties of metallic materials. Research limitations/implications: Proposed methodology can be used for cast matrix composite and alloys properties diagnosis and forecasting. However accurate forecasting requires more detailed mathematical description. Originality/value: Proposed conception enables possibility of structure and operating properties forecasting basing upon one physical measurement - temperature measurement.
Wydawca
Rocznik
Tom
Strony
339--342
Opis fizyczny
Bibliogr. 29 poz., fot., rys.
Twórcy
autor
autor
autor
- Division of Foundry, Institute of Engineering Materials and Biomaterials, Silesian University of Technology, ul. Konarskiego 18 a, 44-100 Gliwice, Poland, marcin.kondracki@polsl.pl
Bibliografia
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- [2] W.A. Tiler, K.A. Jackson, J.W. Rutter, B. Chalmers, Acta Metall., 1953, 1, 428.
- [3] A.M. Kac, Calculation of dendritic structure in castings, Lit. Proizw., v. 7, 1980, p. 2 (in russian).
- [4] D. Ma, P.R. Sam, Model for primar spacing of dendrite arms, Giesserei-Forschung, 1992, v. 44, no. 2, 80 (in german).
- [5] Y. Miyata, T. Suzuki, J. Uno, Cellular and Dendritic Growth-part. I and II, Metall. Trans. v. 16A, 1985, 1799.
- [6] www.mse.mtu.edu.aluminium-silicon alloy castings.
- [7] S. Brown, J.A. Spittle, J.D. Janes, The mould Filling and Solidification of a complex Foundry Casting, J.O.M., 2002, 324.
- [8] F. Mollard, M. Flemings, Transactions of the Metallurgical Society of AIME, v. 239, 1967, 1526.
- [9] J. Liu, Y. Zhan, B. Shang, Lamellar eutectic stable growth - I. Modeling, Acta Metall. Mater., v. 38, 1990, 1625.
- [10] W. Kurtz, D.J. Fisher, Acta Metall., v. 28, 1980, 777.
- [11] S. Khan, R. Eliot, Solidification kinetics of the unmodified aluminum - silicon flake structure. Acta Metall. Mater., v. 41, 1993, 2433.
- [12] S. Khan, A. Ourdjini, R. Eliot, Interflake spacing - growth velocity relationship in Al-Si and AL-CuAL2 eutectic alloys, Mater. Sci. Technol. v. 8, 1992, 516.
- [13] M.H. Burden, J.D. Hunt, Cellular and Dendritic Growth II, J. Cryst. Growth, Trans., vol. 22, 1974, 109.
- [14] M. Flemings, Solidification processing, Met. Trans., New York, Mc Graw-Hill Book Co., v. 5, 1974.
- [15] E. Fraś, Metal and alloys crystallization, WN PWN Warszawa 1992, (in Polish).
- [16] W. Kurz, D.J. Fisher, Fundamentals of solidification, Trans. Tech. Publ., Paris 1984.
- [17] B. Toluoi, A. Hellawell, Phase separation and Undercooling in Al-Si Eutectic Alloy the influence of Freezing Rate and Temperature Gradient, Acta Metall., v. 24, 1976, 565.
- [18] E. Fraś, theoretical fundamentals of crystallization, part 1, Metals and one-phase alloys, WN AGH, Kraków, 1984, (in Polish).
- [19] Y. Miyata, T. Suzuki, J. Uno, Metall. Trans, v. 16A, 1985, 1799.
- [20] J. Braszczynski, Foundry processes theory, PWN, Warszawa, 1989 (in Polish).
- [21] J.C. Jaquet, W. Hotz, Cast Metals, v. 4, nr 4, (1992), 200.
- [22] G. Schindelbacher, GieBerei - Praxis, v. 17, (1995), 309 (in german).
- [23] A.E. Ares, C.E. Schvezov, Metall. And Mater. Trans. V. 31A, 2000, 1611.
- [24] S. Odorizzi, i in.: Servizi Grafici Editoriali, Padva, Italy, 2001 (in italian).
- [25] S. Brown, J.A. Spittle, J.D. Janes, J.of Mater., (2002), 45.
- [26] M. Hajkowski, Mechanical properties of castings forecasting, Wyd. Pol. Pozn., Work no. 376, Poznań, 2003 (in Polish).
- [27] M. Cholewa, Dispersive composite solidification kinetics, Wyd. Pol. Ś1., Scientific Works no. 151, 2005, (in Polish).
- [28] A.W. Orłowicz, M. Mróz, Crystallization rate influence on operating properties of cast C355 alloy, Polish Metallurgy 2002-2006, KM PAN, WN Akapit, Cracow 2006, 437 {in Polish).
- [29] S. Pietrowski, Crystallization, microstructure and mechanical properties of low-silicon Al alloys with Ni, Cu and Mg additions, Polish Metallurgy 2002 – 2006, KM PAN, WN Akapit, Cracow 2006, 403 (in Polish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BOS5-0018-0074