Effect of mechanical stirring on the solidification structure of medium-carbon steel
Wei Kong
Abstract
Wei Kong
Abstract
The effect of various stirring parameters on the solidification structure of medium-carbon steel during the initial stage of solidification was studied in this paper.The results showed that with different stirring processing time,the macrostructure was refined and equiaxed crystal also increased,as well as columnar crystal reduced and the proportion of equiaxed grains enhanced with the increasing stirring time;by changing the depth inserted into liquid steel,it can be seen that the proportion of equiaxed crystal zone significantly increased,grain size was refined and distributed more evenly with the increase of insertion depth;By changing stirring rate,it was inferred that the slower the stirring rate,the larger the proportion of equiaxed grains.The mechanism of these phenomena were also analyzed.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The effect of various stirring parameters on the solidification structure of medium-carbon steel during the initial stage of solidification was studied in this paper.The results showed that with different stirring processing time,the macrostructure was refined and equiaxed crystal also increased,as well as columnar crystal reduced and the proportion of equiaxed grains enhanced with the increasing stirring time;by changing the depth inserted into liquid steel,it can be seen that the proportion of equiaxed crystal zone significantly increased,grain size was refined and distributed more evenly with the increase of insertion depth;By changing stirring rate,it was inferred that the slower the stirring rate,the larger the proportion of equiaxed grains.The mechanism of these phenomena were also analyzed.
Key concepts: Equiaxed crystals, Materials science, Metallurgy, Liquid steel, Crystal (programming language), Carbon fibers, Carbon steel, Composite material