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Published in: Metallurgical and Materials Transactions B 2/2019

28-01-2019

Effect of Thermoelectric Magnetic Convection on Shrinkage Porosity at the Final Stage of Solidification of GCr18Mo Steel Under Axial Static Magnetic Field

Authors: Yuan Hou, Sansan Shuai, Yuanhao Dong, Weidong Xuan, Jiang Wang, Zhenqiang Zhang, Xingfu Ren, Zhongming Ren

Published in: Metallurgical and Materials Transactions B | Issue 2/2019

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Abstract

Adopting effective strategies to eliminate the shrinkage porosity at the final stage of steel solidification is one of the most attractive research subjects for metallurgists. Despite the progress in understanding the thermoelectric magnetic convection (TEMC) in the solidification process, utilization of TEMC for modifying the solidification feeding of steel has been ignored. The effects of TEMC on the shrinkage porosity at the final stage of solidification of GCr18Mo steel were investigated under an axial static magnetic field (ASMF). The morphology and porosity of GCr18Mo steel were investigated quantitatively by X-ray microtomography. We found that the amount of porosity first decreases and then increases with increasing intensity of the ASMF. Meanwhile, the shape of the porosity changed from tortuous to elliptic under the ASMF. On the basis of both the experimental and simulated results, the decrease in porosity is attributed to an adequate development of the TEMC leading to sufficient feeding. This study sheds light on an alternative technique for eliminating the shrinkage porosity at the final stage of steel solidification in industrial applications.

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Metadata
Title
Effect of Thermoelectric Magnetic Convection on Shrinkage Porosity at the Final Stage of Solidification of GCr18Mo Steel Under Axial Static Magnetic Field
Authors
Yuan Hou
Sansan Shuai
Yuanhao Dong
Weidong Xuan
Jiang Wang
Zhenqiang Zhang
Xingfu Ren
Zhongming Ren
Publication date
28-01-2019
Publisher
Springer US
Published in
Metallurgical and Materials Transactions B / Issue 2/2019
Print ISSN: 1073-5615
Electronic ISSN: 1543-1916
DOI
https://doi.org/10.1007/s11663-019-01507-1

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