The Effects of RE-Mg on Thermal Fatigue Resistance of Cast High Speed Steel (HSS) Rolls

Article Preview

Abstract:

The influence of rare earths(RE) and Mg compound modification on eutectic carbide morphology and matrix of high speed steel(HSS) roll was investigated. The results show that the matrix can be refined by the RE-Mg compound modifier, the eutectic carbides are inclined to turn into small lump, whose distribution is homogeneous. After modification, the heat conductivity coefficient of HSS is increased and heat expansion coefficient is decreased. Moreover, RE-Mg modification is able to increase the cycles of thermal fatigue crack initiation and decrease the propagation rate. After cycling 700 times at the condition of heating at 600oC and cooling in 25oC water, the length of thermal fatigue crack is lessened by 41.12%.

You might also be interested in these eBooks

Info:

Periodical:

Materials Science Forum (Volumes 475-479)

Pages:

217-220

Citation:

Online since:

January 2005

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2005 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Hashimoto, M., Kubo, O. and Matsubara, Y., ISIJ International, 44(2004), 372-380.

Google Scholar

[2] Skoblo, T. S., Tokmakov, V. A. and Abramov, A. V., Chen. Met. Bul. Nti., 6(1992), 3-18.

Google Scholar

[3] Xavier, R. R., De Carvalho, E. W. and Sinatora, A., Iron and Steel Technology, 1(2004), 28-33.

Google Scholar

[4] Kim, C. K., Park, J. I., Ryu, J. H. and Lee, S., Metallurgical and Materials Transactions A, 35A(2004), 481-492.

Google Scholar

[5] Chang, Limin, Liu, Jianhua, Zhang, Ruijun, Shao, Li, Yu, Shengxue and Chen, Yan, Journal of Rare Earths, 21(2003), 172-175.

Google Scholar

[6] Wang, Limin, Dang, Ping, Du, Fuying, Zhao, Minshou, Journal of Rare Earths, 121994), 98-201.

Google Scholar

[7] Li, Lijun, Yang, Ruilin and Guo, Zhanli, Journal of Tsinghua University, 39(1999), 23-26.

Google Scholar

[8] Ge, H. L., Youdelis, W. V. and Chen, G. L., Mater. Sci. Technol., 5(1989), 1207-1211.

Google Scholar

[9] Ohno, A., Solidification of metals: Theory, Practice and Application, Beijing, Mechanical Industry Press, 1990, 51-64.

Google Scholar

[10] Klemes, G., Thermal conductivity: Metallic Elements and Alloys, New York, Plenum Press, 1970, 34-47.

Google Scholar

[11] Zhong, Jianhua, Zhang, Jianxin and Fu Qunqiang, Casting Technology, 24(2003), 549-550.

Google Scholar

[12] Park, H. B., Kim, Y. H., Lee B. W. and Rheem K. S., Journal of Nuclear Materials, 231(1996), 204-212.

Google Scholar

[13] Liu, Ning, Xu, Genying, Xu, Yudong and Li, Jian, Transactions of Nonferrous Metals Society of China, 7(1997), 149-154.

Google Scholar

[14] Spera, D. A. and Mowbray, D. F., Thermal fatigue of materials and components, ASTM STP612, Philadephia: ASTM, 1975, 18-25.

Google Scholar