Simulation Of Solidification Microstructure Of 30Cr2Ni4Mov Steel Ingot Under Different Intensities Of Mechanical Oscillation Condition

The Minerals, Metals and Materials Society
ShuangYu Du Jieyu Zhang Bo Wang SenYang Qian Jian Zhao
Organization:
The Minerals, Metals and Materials Society
Pages:
8
File Size:
2040 KB
Publication Date:
Jan 1, 2016

Abstract

During the solidification process, the flow pattern of the molten steel has significant influence on the formation of solidification microstructure. In present study, the solidification microstructure of 30Cr2Ni4MoV steel ingot under different intensities of mechanical oscillation(forced convection) was simulated by using ProCAST®software. The results showed that the increase of the intensity of oscillation could restrain the development of the columnar grains and refine the grains. As the intensity of oscillation increased, the proportion of columnar grains decreased and the proportion of equiaxed grains increased. When the intensity of oscillation was at a low level, the effect of refining grains could be improved obviously by increasing the intensity. However, as the intensity increased to over 0.833, the effect of refining grains would not be improved.
Citation

APA: ShuangYu Du Jieyu Zhang Bo Wang SenYang Qian Jian Zhao  (2016)  Simulation Of Solidification Microstructure Of 30Cr2Ni4Mov Steel Ingot Under Different Intensities Of Mechanical Oscillation Condition

MLA: ShuangYu Du Jieyu Zhang Bo Wang SenYang Qian Jian Zhao Simulation Of Solidification Microstructure Of 30Cr2Ni4Mov Steel Ingot Under Different Intensities Of Mechanical Oscillation Condition. The Minerals, Metals and Materials Society, 2016.

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