Study on Titanium Alloy/Stainless Steel Welding Methods

Article Preview

Abstract:

In this paper, the research status and development trend of titanium alloy/stainless steel joining technology is reviewed. Characteristics and problems of titanium alloy/stainless steel jointing are analyzed. And then advantages and disadvantages of various jointing methods are compared.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

72-76

Citation:

Online since:

April 2015

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2015 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] J. Song, A. Kostka, M. Veehlnayer and D. Raabe: Mater. Sci. Eng. A . Vol. 528(2011), pp.2641-2647.

Google Scholar

[2] Zhang Yingyin: Harbin Institute of Technology. (2006).

Google Scholar

[3] Ye Lei: Journal of Aeronautical Materials. Vol. 4(2008), pp.19-23.

Google Scholar

[4] SUN Z and KARPPI R: J. Mater. Process. Technol. Vol. 59(1996), pp.257-267.

Google Scholar

[5] Wang Ting, Zhang Binggang and Feng Jicai: Transactions of the China Welding Institution. Vol. 31(2010, pp.53-56.

Google Scholar

[6] HIRAGA H, FUKATSU K and OGAWA K: Quarterly Journal of the Japan Welding Society. Vol. 19(2002), pp.717-726.

Google Scholar

[7] Wang Ting, Zhang Binggang and Feng Jicai: Rare Metal Materials and Engineering. Vol. 40(2011), pp.49-53.

Google Scholar

[8] Wang Ting, Zhang Binggang and Chen Guoiqng: Transaction of Nonferrous Metal Society of China. Vol. 20(2010), pp.1829-1834.

Google Scholar

[9] Ting Wang, Binggang Zhan, Guoqing Chen and Jicai Feng: Transactions of JWRI. Vol. 39(2010), pp.1-3.

Google Scholar

[10] Ting Wang, Binggang Zhang, Guoqing Chen and Jicai Feng: J. Mater. Eng. Perform. Vol. 10(2012).

Google Scholar

[11] WANG T, ZHANG B and CHEN G Q: Vacuum. Vol. 94(2013) , pp.41-47.

Google Scholar

[12] Wang Ting,Zhang Binggang and Feng Jicai: Rare Metal Materials and Engineering. Vol. 43(2014), pp.1209-1213.

Google Scholar

[13] Gao M, Mei S. W, Wang Z M, Li X Y and Zeng X Y: Science and Technology of Welding and Joining. Vol. 17 (2012), pp.269-276.

Google Scholar

[14] I. Tomashehu, P. Sallamand, H. Andrzejewski and D. Grevey: Intennetallics. Vol. 19(2011), pp.1466-1473.

Google Scholar

[15] Nizamettin Kahraman, Behcet Gulenc and Fehim Findik. J: Mater. Sci. Technol. Vol. 169(2005), p.127–132.

Google Scholar

[16] S.A.A. Akbari Mousavi and P. Farhadi Sartangi: Mater. Sci. Eng. Vol. 494(2008), pp.329-336.

Google Scholar

[17] Fang Jixiang and Zhao Kang: Transactions of Materials and Heat Treatment. Vol. 23(2002), pp.32-36.

Google Scholar

[18] FUJI A, NORTH T H and AMEYAMA K: Mater. Sci. Technol. Vol. 8(1992), pp.219-235.

Google Scholar

[19] FUJI A, AMEYAMA K and NORTH T H: J. Mater. Sci. 31 (1996), pp.819-827.

Google Scholar

[20] Dey H. C, Ashfaq M, Bhaduri A. K and Prasad Rao K. J: Mater. Process. Technol. Vol. 209(2009), p.5862–5870.

Google Scholar

[21] LEE W B, KIM M G and KOO J M: J. Mater. Sci. Vol. 39(2004), pp.1125-1128.

Google Scholar

[22] LEE W B, KIM Y J and JUNG S B: Intermetallics. Vol. 12(2004), pp.671-678.

Google Scholar

[23] Won-Bae Lee, Young-Jig Kim and Seung-Boo Jung: Intermetallics. Vol. 12 (2004), pp.671-678.

Google Scholar

[24] Литвин Л В: Автоматич-еская СваРка. 9(1986), pp.39-41.

Google Scholar

[25] M. Fazel-Najafabadi, S.F. Kashani-Bozorg and A. Zarei-Hanzaki: Mater. Des. Vol. 32(2011), pp.1824-1832.

DOI: 10.1016/j.matdes.2010.12.026

Google Scholar

[27] M. Ghosh and S. Chatterjee: Mater. Sci. Technol. Vol. 48(2002), pp.393-399.

Google Scholar

[28] Yuan Xinjian: Chongqing University. (2006).

Google Scholar

[29] Han Jing and Sheng Guanmin: Transactions of the China Welding Institution. Vol. 29(2008), pp.37-40.

Google Scholar

[30] S. Kundu and M. Ghosh: Mater. Sci. Technol. Vol. 2005, pp.154-160.

Google Scholar

[31] Sam S, Kundu S and Chatterjee S: Mater. Des. Vol. 40(2012), p.237–244.

Google Scholar

[32] Kundu S and Chatterjee S. Mater. Charact. Vol. 59(2008), pp.631-637.

Google Scholar

[33] Sun Ronglu and Li Muqing: Transactions of the China Welding Institution. Vol. 17(1996), pp.212-218.

Google Scholar

[34] Yang Zhongbo: Harbin Institute of Technology. (2013).

Google Scholar

[35] Dong Zhihong and Fan Hongyuan: Effects of Ag- based Brazing Filler Metals on Ti Alloy/ST Brazing Seam. (2003).

Google Scholar

[36] Yang Jing and Lan Xuping: Nuclear Power Engineering. Vol. 2(2008), pp.61-65.

Google Scholar

[37] YUE X, HE P and FENG J C: Materials Characterization. Vol. 59(2008), pp.1721-1727.

Google Scholar

[38] LEE M K, PARK J J and LEE G J: Journal of Nuclear Materials. Vol. 409(2011), pp.183-187.

Google Scholar

[39] SHIUE R K, WU S K and CHAN C H: Metall. Mater. Trans. A. Vol. 37(2006), pp.2207-2217.

Google Scholar

[40] SHIUE R K, WU S K and SHIUE J Y: Mater. Sci. Eng. A . Vol. 488(2008), pp.186-194.

Google Scholar

[41] MIYAZAWA Y. CHANG C S, SATO H: Mater. Sci. Forum Vol. 539-543(2007), pp.4031-4035.

Google Scholar

[42] LEE M K, LEE J G and CHOI Y H: Mater. Lett. Vol. 64(2010), pp.1105-1108.

Google Scholar

[43] Yang Zhonglin: Dalian University of Technology. (2013).

Google Scholar

[44] Chen Mingjie: Hefei University of Technology. (2011).

Google Scholar