The Research Status of Titanium Clad Steel

Article Preview

Abstract:

The main methods for manufacturing titanium clad steel are described, also the mechanisms of cold roll bonding and explosive welding are specifically analyzed. It is showed that two opposing brittle surface layers produced by scratch brushing break up and underlying base metal is extruded through cracks of the broken layers and creates an atom-to-atom bond for cold roll bonding, however, a lot of parameters affect the bonding for explosive welding. Some new ideas for manufacturing titanium clad steel is discussed herein.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 941-944)

Pages:

187-192

Citation:

Online since:

June 2014

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] J.S. Ha and S.I. Hong: Materials and Design Vol. 51 (2013), p.293.

Google Scholar

[2] A. Elrefaey and W. Tillmann: Journal of Alloys and Compounds Vol. 487 (2009), p.639.

Google Scholar

[3] E. Atasoy and N. Kahraman: Materials Characterization Vol. 59 (2008), p.1481.

Google Scholar

[4] R.S. Tashi, S.A.A. A. Mousavi and M.M. Atabaki: Materials and Design Vol. 54 (2014), p.161.

Google Scholar

[5] Y.Q. Deng, G.M. Sheng and C. Xu: Materials and Design Vol. 46 (2013), p.84.

Google Scholar

[6] J.G. Lee, S.J. Hong, M.K. Lee and C.K. Rhee: Journal of Nuclear Materials Vol. 395 (2009), p.145.

Google Scholar

[7] A. Elrefaey and W. Tillmann: Metallurgical and Materials Transactions A Vol. 38A (2007), p.2956.

Google Scholar

[8] M. Eroğlu , T.I. Khan and N. Orhan: Materials Science and Technology Vol. 18 (2002), p.68.

Google Scholar

[9] A. Elrefaey and W. Tillmann: Journal of Materials Processing Technology Vol. 209 (2009), p.2746.

Google Scholar

[10] P. He, X. Yue and J.H. Zhang: Materials Science and Engineering A Vol. 486 (2008), p.171.

Google Scholar

[11] S. Kundu, S. Chatterjee: Materials Science and Engineering A Vol. 527 (2010), p.2714.

Google Scholar

[12] M. Gao, S.W. Mei, Z.M. Wang, X.Y. Li and X.Y. Zeng: Science and Technology of Welding and Joining Vol. 17 (2012), No. 4, p.269.

Google Scholar

[13] D.Y. Liu, Q.X. Yin and S.C. Liu: Transactions of Materials and Heat Treatment Vol. 33 (2012), No. 7, p.106.

Google Scholar

[14] S. Kundu, S. Chatterjee: Materials Characterization Vol. 59 (2008), p.631.

Google Scholar

[15] S. Sam, S. Kundu and S. Chatterjee: Materials and Design Vol. 40 (2012), p.237.

Google Scholar

[16] P. He, J.H. Zhang, R.L. Zhou and X.Q. Li: Materials Characterization Vol. 43 (1999), p.287.

Google Scholar

[17] S. Kundu and S. Chatterjee: Materials Science and Engineering A Vol. 425 (2006), p.107.

Google Scholar

[18] S. Kundu, S. Sam and S. Chatterjee: Materials Science & Engineering A Vol. 560 (2013), p.288.

Google Scholar

[19] S. Kundu and S. Chatterjee: ISIJ International Vol. 50 (2010), p.1460.

Google Scholar

[20] P. Li, J.L. Li, J.T. Xiong, F.S. Zhang and S.H. Raza: Materials Characterization Vol. 68 (2012), p.82.

Google Scholar

[21] M.K. Leea, J.G. Lee, Y.H. Choi, D.W. Kim, C.K. Rhee, Y.B. Lee and S.J. Hong: Materials Letters Vol. 64 (2010), p.1105.

Google Scholar

[22] A. Yamamoto, H. Nakamura, Y. Nishiyama and R. Kurahashi: Nippon Steel Technical Report (1994), No. 62, p.34.

Google Scholar

[23] M. Saboktakin, G. R. Razavi and H. Monajati: International Journal of Applied Physics and Mathematics Vol. 1 (2011), No. 3, p.177.

Google Scholar

[24] http: /www. doc88. com/p-694588413425. html.

Google Scholar

[25] N. Shun-ichi, M. Toshio and W. Tsunemi: JFE Technical Report (2005), No. 5, p.1.

Google Scholar

[26] S.S. Na, J.C. Chang and J.J. Feng: Steel Rolling Technology and Academic Essays (Qin Huangdao, Hebei, China, August 1-3, 2007) p.31.

Google Scholar

[27] W. Zhang and N. Bay: Welding Research Supplement (1997), p.417.

Google Scholar

[28] N. Bay: Welding Research Supplement (1983), p.137.

Google Scholar

[29] M. Ken-ichiro, N. Bay, L. Fratini, F. Micari and A.E. Tekkaya: CIRP Annals-Manufacturing Technology Vol. 62 (2013), p.673.

DOI: 10.1016/j.cirp.2013.05.004

Google Scholar

[30] H.W. Song, Y. Chen, M. Cheng, S.H. Zhang and C.L. Bao: Materials Review A Vol. 25 (2011), p.7.

Google Scholar

[31] Y. SAITO, H. UTSUNOMIYA, N. TSUJI and T. SAKAI: Acta materials Vol. 47 (1999), No. 2, p.579.

Google Scholar

[32] C.Y. He, R.C. Xu, X.P. Ren and H. Li: Nonferrous Metals Vol. 59 (2007), No. 3, p.1.

Google Scholar

[33] H.C. Yu, H.W. Zhang, X.S. Leng, G.Y. Ye and J.C. Yan: Welding Digest of Machinery Manufacturing (2011), No. 2, p.8.

Google Scholar

[34] D.S. Zhao: Mechanism on the Vacuum Hot Rolling-Deformation Bonding of Titanium Alloy and Stainless Steel(Ph.D., Harbin Institute of Technology, China 2010), p.1.

Google Scholar

[35] G.L. Wang, Z.A. Luo, G.M. Xie, L.P. Wang and K. Zhao: Rare Metal Materials and Engineering Vol. 42 (2013), No. 2, p.387.

Google Scholar

[36] Y.M. Zheng: Explosive Welding and Metallic Composite and Their Engineering Application(Central South University Press, China 2002).

Google Scholar

[37] L. Zhang and Z.K. Zhang: Academic Conference of the Eighth National Explosion Mechanics (Ji An, Jiang Xi, China, September 19, 2007) p.439.

Google Scholar

[38] N. Kahraman, B. Gülenc and F. Findik: Journal of Materials Processing Technology Vol. 169 (2005), p.127.

Google Scholar

[39] C. Lu, K. Tieu and D. Wexler: Journal of Materials Processing Technology Vol. 209 (2009), p.4830.

Google Scholar