Refinement Effect of Pulse Magneto-Oscillation on Solidification Structure of Medium Carbon Steel

The Minerals, Metals and Materials Society
Yufeng Cheng Zhenxing Yin Xin Cao Yongyong Gong Renxing Li Qijie Zhai
Organization:
The Minerals, Metals and Materials Society
Pages:
6
File Size:
1600 KB
Publication Date:
Jan 1, 2012

Abstract

"This paper investigated the refinement effect of pulse magneto-oscillation (PMO) on the solidification structures of medium carbon steel S45C in metal mould. The induction coil was positioned at the middle of ingot. The results showed that solidification structure of the treated ingots was remarkably modified with a transformation from well-developed dendritic structures to small dendritic structures or globular structures compared to the untreated ingot. The area fraction of modified microstructure regions reached more than 80 percent. A further experimental investigation had been done to understand the influence of refinement effect on the solidification structure under different mould size. Theoretical analysis demonstrated that the mechanism for the refinement of solidification structure was that PMO promoted nucleation near the mould walls and changed the interface temperature gradient and concentration gradient in liquid, eventually leading to a transition from the columnar crystals to the equiaxed crystals.IntroductionIn recent two decades, the electromagnetic processing of materials (EPM) has been widely used in many fields such as ironmaking, steelmaking, and solidification processing [1-6], where EPM can control melt flow, modify melt shape, reduce macro-segregation and refine microstructure. Pulse magneto-oscillation [7-9] (PMO), as a novel technique of EPM, has a remarkable effect on grain refinement and high potentiality to be used in industrial production. Compared with ultrasound refinement technique, PMO can be easily employed to metal solidification processing for long time in no contact with hot metal liquid by using a water-cooled coil. Another important advantage is that PMO needs smaller energy compared to pulsed magnetic field which needs a very high current to obtain a strong magnetic field to get a satisfactory effect. These advantages mentioned above are beneficial for industrial application, which make it potential to be widely used in future. Gong et al. [7] have studied the refinement effect of PMO on pure aluminum and find that PMO can significantly modify the solidification structure of pure aluminum. Li et al. [9] have reported the effect of temperature field on solidification structure under the influence of PMO. On the basis of these works, this paper has studied the effect of PMO on solidification process of medium carbon steel S45C in a metal mould, which can also provide some information for industrial application of this new technique."
Citation

APA: Yufeng Cheng Zhenxing Yin Xin Cao Yongyong Gong Renxing Li Qijie Zhai  (2012)  Refinement Effect of Pulse Magneto-Oscillation on Solidification Structure of Medium Carbon Steel

MLA: Yufeng Cheng Zhenxing Yin Xin Cao Yongyong Gong Renxing Li Qijie Zhai Refinement Effect of Pulse Magneto-Oscillation on Solidification Structure of Medium Carbon Steel. The Minerals, Metals and Materials Society, 2012.

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