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Acta Metall Sin  2011, Vol. 47 Issue (10): 1277-1284    DOI: 10.3724/SP.J.1037.2011.00167
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EFFECT OF LASER WELDING PARAMETERS ON THE TRANSFORMATION TEMPERATURE OF TiNi ALLOY
YANG Chenggong 1, SHAN Jiguo 1,2, WEN Peng 1,2, REN Jialie 1
1. Department of Mechanical Engineering, Tsinghua University, Beijing 100084
2. Key Laboratory for Advanced Materials Processing Technology, Ministry of Education, Tsinghua University,Beijing 100084
Cite this article: 

YANG Chenggong SHAN Jiguo WEN Peng REN Jialie. EFFECT OF LASER WELDING PARAMETERS ON THE TRANSFORMATION TEMPERATURE OF TiNi ALLOY. Acta Metall Sin, 2011, 47(10): 1277-1284.

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Abstract  Nd:YAG laser and fiber laser were employed to weld Ti–50.7%Ni (atomic fraction) alloy, the effects of laser welding parameters on phase transformation temperatures, microstructure and chemical composition of weld metals were investigated by using DSC, SEM and EDS. The results show that phase transformation temperatures of base metal and weld metal are much different, and the start recovery temperature of weld joints are lower about 40 ℃ than that of base metal. Such difference is resulted from the changes of microstructure and Ni content in the matrix, which is related to the contents of element C, O and N, the size and quantity of Ni–riched precipitate, as well as the burning loss of Ni during laser welding. Laser welding with low heat input and high laser power density results in big difference of phase transformation temperature due to the high content of element N and O, small size and quantity of precipitate, little burning loss as well as the high Ni content in the matrix.
Key words:  laser welding      shape memory alloy      transformation temperature      Ni content in the matrix     
Received:  28 March 2011     
ZTFLH: 

TG456.7

 

URL: 

https://www.ams.org.cn/EN/10.3724/SP.J.1037.2011.00167     OR     https://www.ams.org.cn/EN/Y2011/V47/I10/1277

[1] Zhao L C, Cai W, Zheng Y F. Shape Memory Effect and Superelasticity in Alloys. Beijing: National Defense Industry Press, 2002: 5

(赵连成, 蔡伟, 郑玉峰. 合金的形状记忆效应和超弹性. 北京: 国防工业出版社, 2002: 5)

[2] Xu Z Y. Shape Memory Materials. Shanghai: Shanghai Jiaotong University Press, 2002: 18

(徐祖耀. 形状记忆材料. 上海: 上海交通大学出版社, 2002: 18)

[3] Funakubo H, translate by Qian D F. Shape Memory Alloy. Beijing: China Machine Press, 1984: 85

(Funakubo H 著, 千东范  译. 形状记忆合金. 北京: 机械工业出版社, 1984: 85)

[4] Ren J L, Wu A P. Joining of Advanced Materials. Beijing: China Machine Press, 2000: 335

(任家烈, 吴爱萍. 先进材料的连接. 北京: 机械工业出版社, 2000: 335)

[5] Falvo A, Furgiuele F M, Maletta C. Mater Sci Eng, 2005; A412: 235

[6] Hsu Y T, Wang Y R, Chen C. Metall Mater Trans, 2001; 32A: 569

[7] Falvo A, Furgiuele F M, Maletta C. Mater Sci Eng, 2008; A481–482: 647

[8] Gugel H, Schuermann A, TheisenW. Mater Sci Eng, 2008; A481–482: 668

[9] Wang W, Chen G, Chen L, Zhao X K, Huang J H. Appl Laser, 2008; 28: 199

(王蔚, 陈庚, 陈俐, 赵兴科, 黄继华. 应用激光. 2008; 28: 199)

[10] Tang W, Sundmann B, Sandstrom R, Quiu C. Acta Mater, 1999; 47: 3457

[11] Frenzel J, George E P, Dlouhy A, Somsen Ch, Wagner M F X, Eggeler G. Acta Mater, 2010; 58: 3444

[12] Khalil–Allafi J, Dlouhy A, Eggeler G. Acta Mater, 2002; 50: 4255

[13] Fan G, Chen W, Yang S, Zhu J H, Ren X B, Otsuka K. Acta Mater, 2004; 52: 4351

[14] Krishna V B, Bose S, Bandyopadhyay A. Metall Mater Trans, 2007; 38A: 1097

[15] Otsuka K, Mayman C M. Shape Memory Materials. Cambridge: Cambridge University Press, 1998: 49
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