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Warianty tytułu
Języki publikacji
Abstrakty
An attempt was made to determine phase composition of commercial aluminium alloys using X-ray diffraction. Samples for phase composition analysis were selected from the group of aluminium alloys covered by the EN 573-3:2013 standard [1]. Representative samples were taken from eight groups of alloys with different chemical composition (at least one sample from each group). The diffraction intensity was measured with a standard X-ray diffractometer in Bragg-Brentano geometry in a way that allowed identification of the weakest diffraction peaks. As a results of the performed research it has been shown that X-ray phase analysis can be used to identify the matrix of aluminium alloys, Si and crystalline intermetallic phases such as Mg2Si, Al93.38Cu6.02Fe24Si16.27, Al4.01MnSi0.74, MgZn2, Al17 (Fe3.2Mn0.8)Si2, Al65Cu20Fe15, and Cu3Mn2Al. The detectability limit of the above-mentioned phases is better than 0.5%. The research has also shown that X-ray phase analysis is applicable in the investigation of phase transformations taking place in aluminium alloys.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
1315--1319
Opis fizyczny
Bibliogr. 19 poz., fot., rys., tab.
Twórcy
autor
- Łukasiewicz Research Network - Institute of Non-Ferrous Metals, Light Metals Division, 19 Piłsudskiego Str., Skawina, 32-050, Poland
autor
- Łukasiewicz Research Network - Institute of Non-Ferrous Metals, Light Metals Division, 19 Piłsudskiego Str., Skawina, 32-050, Poland
autor
- Łukasiewicz Research Network - Institute of Non-Ferrous Metals, Light Metals Division, 19 Piłsudskiego Str., Skawina, 32-050, Poland
Bibliografia
- [1] EN 573-3 Aluminium and aluminium alloys. Chemical composition and form of wrought products. Chemical composition and form of products.
- [2] B. D. Cullity, S. R. Stock, Elements of X-ray Diffraction, Prentice Hall, Third Edition, 2001.
- [3] Z. Bojarski, E. Łągiewka, Rentgenowska analiza strukturalna, Wyd. Uniwersytetu Śląskiego, Katowice 1995.
- [4] Powder Diffraction File. Release 2018, PDF-4+, International Centre for Diffraction Data, Pensylvania, USA 2018.
- [5] Z. Bonderek, S. Rzadkosz, Mechanizacja procesów rafinacji ciekłych stopów, VIII Konferencja Odlewnicza, Technical 2005.
- [6] F. Zhang, L. E. Levine, A. J . Allen, C. E. Campbell, A. A. Creuzinger, N. Kazantseva, J. Ilavsky, In situ structural characterization of ageing kinetics in aluminium alloy 2014 across angstrom-to-micrometer length scales 111, 385-398 (2016).
- [7] N. Saunders, Cost 507 - Thermochemical database for light metal alloys 2, 28-33 (1991).
- [8] G. Trambly de Laissardière, D. Nguyen-Manh, D. Mayou, Indirect Mn-Mn pair interaction induces pseudogap in density of states of Al(Si)-Mn approximants, J. Non-Chris. Solids 334-335, 347-351 (2004), DOI: 10.1016/j.jnoncrysol.2003.11.068
- [9] S. Shankar, Y. Riddle, Makhlouf M. Makhlouf, Eutectic Solidification of Aluminium-Silicon Alloys, Metallurgical and Materiaals Transformactions A 35A, 3038 (2004).
- [10] L. F. Mondolfo, Aluminium Alloys: Structure and Properties, Butterworths, London 1976.
- [11] E. Kovács-Csetényi, C. R. Vassel, I. Kovács, Determination of the Solubility of Si in Dilute Al-Si Alloys by Low-Temperature Resistivity Measurements, Phys. Stat. Sol. 17, K123 (1966).
- [12] S. W. Banovic, T. Foecke, Metall. Mater. Trans. 34A6, 657 (2003).
- [14] G. Mrówka-Nawrotnik, J. Sieniawski, M. Wierzbicka, Intermetallic phase particles in 6082 aluminium alloy, Archives of Materials Science and Engineering 28, 2, 69-76 (2007).
- [15] M. Mezbahul-Islam, A. Omar Mostafa, M. Medraj, Essential Magnesium Alloys Binary Phase Diagrams and their Termochemical Data, Journal of Materials 1 (2014).
- [16] J. J. Park, L. L. Wyman, WADC Tech. Rep. 57-504, Astia Document No. AD142110, 1-27 (1957), Published in Phase Diagrams of Binary Magnesium Alloys, 1988.
- [17] L. Lityńska-Dobrzyńska, J. Dutkiewicz, W. Maziarz, A. Góral, Microstructure of Rapidly Solidified Al2Zn3Mg1.5Cu Alloy with Zr and Sc Addition, Institute of Metallurgy and Materials Science, Polish Academy of Sciences, 25 Reymonta Street, Kraków.
- [18] Xiaomei Li, M. J. Starink, Analysis of Precipitation and Dissolution in Overaged 7xxx Aluminium Alloys Using DSC, Sci Forum 331-337, 1071-1076 (2000).
- [19] M. Warmuzek, A. Gazda, J. Sieniawski, G. Mrówka, Processes of the Formation of the Fe(Mn)-Bearing Intermetallic Phases in the Al-Fe(Mn)-Si Alloys. Foundry Research Institute, Kraków.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c9c10929-67c7-462c-bcb4-3332117d09c1