Influence of Sulfur and Manganese Contents on Texture and Fish-Scale Resistance of DC03EK Cold-Rolled Enamel Steel

Author:

Dong Fu Tao1,Du Lin Xiu1,Liu Xiang Hua1,Jiao Jing Min2

Affiliation:

1. Northeastern University

2. Guofeng Iron and Steel Co., Ltd.

Abstract

In the this paper, the compositions design with low carbon and addition of sulfur and manganese which can enhance fish-scale resistance by MnS as hydrogen trap was adopted to produce DC03EK cold-rolled enamel steel. The effect of sulfur and manganese contents on formability and fish-scale resistance of DC03EK cold-rolled enamel steel was investigated. Results show that yield strength, ultimate tensile strength, elongation, work hardening exponent and average plastic strain ratio of the steel with sulfur content of 0.024wt% and manganese content of 0.22wt% is 133 MPa, 310 MPa, 36.8%, 0.22 and 1.46, respectively, showing the well formability. And its hydrogen penetration time and diffusion coefficient is higher than 12 min and lower than 9.26×10-7 cm2/s, respectively, showing excellent fish-scale resistance. However, for the steel with sulfur content of 0.012wt% and manganese content of 0.12wt%, even though better formability is obtained, the fish-scale resistance is poor with hydrogen penetration time of 4.7 min and hydrogen diffusion coefficient of 2.36×10-6 cm2/s which is far from the expectation of steel for enamel.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference16 articles.

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2. Q. Sun, X. Wang, Effect of RE, Ti and Nb on properties of ULC cold-rolled steel sheets for enameling use, Iron and Steel. 39 (2004) 59-62.

3. X. Ren, W. Chu, J. Li, et al., Effect of MnS inclusions on hydrogen diffusion in steel, Journal of University of Science and Technology Beijing. 29 (2007) 232-236.

4. T. Otsuka, T. Tanabe, Hydrogen diffusion and trapping process around MnS precipitates in alpha Fe examined by tritium autoradiography, Journal of Alloys and Compounds. 446 (2007) 655-659.

5. J. Shinozaki, I. Muto, T. Omura, et al., Local dissolution of MnS inclusion and microstructural distribution of absorbed hydrogen in carbon steel, Journal of The Electrochemical Society. 158 (2011) C302-C309.

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