Inoculated Slightly Hypereutectic Gray Cast Irons

被引:0
作者
Mihai Chisamera
Iulian Riposan
Stelian Stan
Cristina Militaru
Irina Anton
Michael Barstow
机构
[1] Politehnica University of Bucharest,
来源
Journal of Materials Engineering and Performance | 2012年 / 21卷
关键词
eutectic austenite dendrites; eutectic cell; graphite; hypereutectic gray irons; inoculation; metal matrix;
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学科分类号
摘要
The current experimental investigation in this article was designed to characterize the structure of mold (M) and ladle (L) inoculated, low-S (0.025 wt.% S), low-Al (0.003 wt.% Al), slightly hypereutectic (CE = 4.4-4.5 wt.%) electric melted gray irons, typical for high performance thin-wall castings. It describes the effect of a Ca, Al, Zr-FeSi inoculant addition of 0-0.25 wt.% on structure characteristics, and compares to similar treatments with hypoeutectic irons (3.5-3.6 wt.% CE, 0.025 wt.% S, and 0.003 wt.% Al). A complex structure including primary graphite, austenite dendrites, and eutectic cells is obtained in hypereutectic irons, as the result of nonequilibrium solidification following the concept of a coexisting region. Dendrites appear to be distributed between eutectic cells at higher eutectic undercooling, while in inoculated irons and for lower undercooling, the eutectic cells are “reinforced” by eutectic austenite dendrites. A Zr, Ca, Al-FeSi alloy appears to be an effective inoculant in low S, low Al, gray cast irons, especially for a late inoculation technique, with beneficial effects on both graphite and austenite phases. First, inoculation influenced the nucleation of graphite/eutectic cell, and then their characteristics. A further role of these active elements directly contributed to form nucleation sites for austenite, as complex (Mn,X)S particles.
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页码:331 / 338
页数:7
相关论文
共 40 条
[1]  
Chisamera M(2008)Solidification Pattern of In-Mold and Ladle Inoculated Low Sulfur Hypoeutectic Gray Irons AFS Trans. 116 641-652
[2]  
Stan S(2009)Thermal Analysis Control of In-Mould and Ladle Inoculated Grey Cast Irons China Foundry 6 145-151
[3]  
Riposan I(2004)Investigation of Effect of Residual Al on Solidification Characteristics of Un-Inoculated and Ca/Sr Inoculated Gray Irons AFS Trans. 112 867-877
[4]  
Costache G(2009)Role of Al, Ti, and Zr in Gray Iron Preconditioning/Inoculation J. Mater. Eng. Perform. 18 83-87
[5]  
Barstow M(2010)Three-Stage Model for the Nucleation of Graphite in Grey Cast Iron Mater. Sci. Technol. 26 1439-1447
[6]  
Chisamera M(2009)Complex (Mn, X)S Compounds—Major Sites For Graphite Nucleation in Grey Cast Iron China Foundry 6 352-358
[7]  
Riposan I(2009)Colour Metallography of Cast Iron China Foundry 6 255-267
[8]  
Stan S(2008)Examination of the Solidification Macrostructure of Spheroidal and Flake Graphite Cast Irons Using DAAS and ESDD Mater. Charact. 59 1342-1348
[9]  
Stefan E(2009)Colour Metallography of Cast Iron China Foundry 6 57-69
[10]  
Costache G(1997)Nucleation During Solidification of Cast Irons AFS Trans. 105 89-94