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Purpose: In this study, the microstructure and mechanical properties of as-cast Mg-xSn-Al-Zn alloys were investigated. Design/methodology/approach: Ingot was fabricated by a squeeze cast. The alloys were induction melted at 750stopniC in a mild steel crucible under CO2+2%SF6 mixed gas atmosphere and cast into a permanent mould coated with boron nitride spray held at approximately 350 stopniC . Tensile tests were carried out at room temperature in a screw-driven tensile testing machine and crosshead speed was 0.2 mm/min. Microstructural observation was carried out using a optical microscope (OM) and a scanning electron microscope (SEM) equipped with energy dispersive X-ray spectrometer (EDS). Findings: It is found that the tensile strength and elongation decreased at room temperature increased with Sn concentration. As a consequence, 5wt% Sn addition was the one exhibiting the best tensile properties at room temperature. The micro-hardness of the alloy continuously increased with increasing the Sn concentration. Practical implications: The investigations of microstructure of commercially magnesium alloys are important for achieving desired mechanical behaviour of the material. Originality/value: The fracture behaviors of magnesium alloys are investigated.
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Rocznik
Tom
Strony
93--96
Opis fizyczny
Bibliogr. 15 poz.
Bibliografia
- [1] J. Kielbus, T. R. Cibis, Microstructure of AM50 die casting magnesium alloy, Journal of Achievements in Materials and Manufacturing Engineering 18 (2006) 135-138.
- [2] M. Greger, R. Kocich, L. Cizek, L.A. Dobrzański, I. Juricka, Possibliities of mechanical properties and microstructure improvement of magnesium alloys, Archives of Materials Science and Engineering 28/2 (2007) 83-90.
- [3] L.A. Dobrzański, T. Tański, L. Cizek, Influence of Al. addition on structure of magnesium casting alloys, Journal of Achievements in Materials and Manufacturing Engineering 17 (2006) 221-224.
- [4] J. Kielbus, Structure and mechanical properties of casting MSR-B magnesium alloy, Journal of Achievements in Materials and Manufacturing Engineering 18 (2006) 131-134.
- [5] D.H. Kang, S.S. Park, N.J. Kim, Development of creep resistant die cast Mg-Sn-Al-Si alloy, Materials Science Engineering A1413-1414 (2005) 555-560.
- [6] H. Liu, Y. Chen, Y. Tang, S. Wei, C. Niu, The microstructure, tensile properties, and creep behavior of as -cast Mg-(1-10)%Sn alloys, Journal of Alloy Compounds (2008) (in press).
- [7] H. Baker, ASM Specialty Handbook. Magnesium and Magnesium Alloys, ed. Avedesian, ASM International, The Materials Information Society, USA 1999.
- [8] S. Harosh, L. Miller, G. Levi, M. Bamberger, Microstructure and properties of Mg-5.6%Sn-4.4%ZN-2.1%Al alloy, Journal of Materials Science 42 (2007) 9983-9989.
- [9] D.H. Kang, S.S. Park, N.J. Kim, Development of creep resistant die cast Mg-Sn-Al-Si alloy, Materials Science Engineering A 1413-1414 (2005) 555-560.
- [10] Z. Trojanova, Z. Drozd, P. Lukac, A. Chatey, Mechanical properties of a squeeze cast Mg-Al-Sr alloy, Archives of Materials Science and Engineering 29/2 (2008) 97-104.
- [11] N.J. Kim, Design of high performance structural alloys using second phases, Materials Science Engineering A 449- 451 (2007) 51-56.
- [12] G.E Dieter, Mechanical Metallurgy, SI Metric Edition, Mcgraw-Hill, London, 1989.
- [13] J. Bai,Y. Sun, F. Xue, F. Xue, S. Xue, J. Qiang, T. Zhu, Effect of Al contents on microstructures, tensile and creep properties of Mg-Al-Ca alloy, Journal of Alloy Compounds 437 (2007) 247-253.
- [14] D.M. Jiang, C.L. Wang, J. Yu, Z.Z. Gao, Y.T. Shao, Z.M. Hu, Cleavage and intergranular fracture in Al-Mg alloys, Scripta Materialia 49 (2003) 387-392.
- [15] Ch. Jihua, Ch. Zhenhua, Y. Hongge, Effects of Sn addition on microstructure and mechanical properties of Mg-Zn-Al alloys, Journal of Alloy Compounds (in press).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSL9-0030-0020