Effects of Carbon Content on the Ultimate Tensile Strength in Gray Cast Iron

Author:

Fourlakidis Vasilios1,Diaconu Vasile Lucian2,Diószegi Attila3

Affiliation:

1. Swerea Swecast AB

2. University of Miskolc

3. Jönköping University

Abstract

This paper investigates the effect of different carbon contents and cooling rates on gray iron tensile properties as well on the formation of different microstructure features. Four heats with increasing amount of carbon were cast. Every heat constituted of three cylinders, each of them surrounded by different materials which provided a wide range of solidification rates. The casting specimens were subjected to tensile test measurements and to microstructure examination. The results indicate a clear correlation between cooling rates, ultimate tensile strength (UTS), carbon content and eutectic cell size. Microscopic analysis shows also a relation between the primary phase’s fraction and the number of the eutectic cells.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference10 articles.

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2. Bates C, Alloy element effect on gray iron properties: part II, AFS vol. 94, 1986, pp.889-905.

3. Nakae H, Shin H, Effect of graphite morphology on mechanical properties of cast iron, 64thWorld foundry congress, Paris (2000).

4. H. Jones, W. Kurtz, Growth Temperature and the Limits of Coupled Growth in Unidirectional Solidification of Fe-C Eutectic alloys, Metall. Trans. A, Vol 11, 1980, p.1265.

5. I. Minkof, B. Lux, Graphite growth from metallic solution, The metallurgy of Cast Iron, Georgi Publ. Co. 1974, Geneva, pp.474-491.

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