Optimization of laboratory hot rolling of brittle Fe-40at.%Al-Zr-B aluminide
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Schindler, Ivo
Hadasik, Eugeniusz
Kopeček, Jaromír
Kawulok, Petr
Fabík, Richard
Opěla, Petr
Rusz, Stanislav
Kawulok, Rostislav
Jabłońska, Magdalena
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De Gruyter
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Abstract
Use of the protective steel capsules enabled to manage the laboratory hot flat rolling of the extremely brittle as-cast aluminide Fe-40at.%Al-Zr-B with the total height reduction of almost 70 %. The hot rolling parameters were optimized to obtain the best combination of deformation temperature (from 1160°C up to 1240°C) and rolling speed (from 0.14 m·s−1 to 0.53 m·s−1). The resistance against cracking and refinement of the highly heterogeneous cast microstructure were the main criteria. Both experiments and mathematical simulations based on FEM demonstrated that it is not possible to exploit enhanced plasticity of the investigated alloy at low strain rates in the hot rolling process. The heat flux from the sample to the working rolls is so intensive at low rolling speed that even the protective capsule does not prevent massive appearance of the surface transverse cracking. The homogeneity and size of product’s grain was influenced significantly by temperature of deformation, whereas the effect of rolling speed was relatively negligible. The optimal forming parameters were found as rolling temperature 1200°C and the rolling speed 0.35 m·s−1. The effective technology of the iron aluminide Fe-40at.% Al-Zr-B preparation by simple processes of melting, casting and hot rolling was thus established and optimized.
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Archives of Metallurgy and Materials. 2015, vol. 60, issue 3, p. 1693-1701.