Please wait a minute...
Acta Metall Sin  2011, Vol. 47 Issue (8): 1080-1085    DOI: 10.3724/SP.J.1037.2010.00644
论文 Current Issue | Archive | Adv Search |
MOLECULAR DYNAMICS SIMULATION OF STRUCTURAL CHANGES IN Ti FILMS COVERING OVER THE TiAl ALLOY SUBSTRATE DURING HEATING
ZHANG Lin, LI Wei, LIU Yongli, SUN Benzhe, WANG Jiaqing
Institute of Materials Physics and Chemistry, College of Science, Northeastern University , Shenyang 110819
Cite this article: 

ZHANG Lin LI Wei LIU Yongli SUN Benzhe WANG Jiaqing. MOLECULAR DYNAMICS SIMULATION OF STRUCTURAL CHANGES IN Ti FILMS COVERING OVER THE TiAl ALLOY SUBSTRATE DURING HEATING. Acta Metall Sin, 2011, 47(8): 1080-1085.

Download:  PDF(1026KB) 
Export:  BibTeX | EndNote (RIS)      
Abstract  Structural changes in Ti films covering over Ti or Al atomic layer on the TiAl substrate during heating were investigated by molecular dynamics simulations within the framework of embedded atom method (EAM). On the basis of analyses of bond–pair types, mean square displacements, atomic density functions, and atom packing in different shells, it is shown that the structural changes in the Ti film could involve several stages owing to atomic position interchanging. In addition, the Ti or Al layers play an important role in the structural changes in Ti films.
Key words:  TiAl alloy      film      molecular dynamics      simulation      interface     
Received:  01 December 2010     
ZTFLH: 

TB115

 
Fund: 

Supported by National Basic Research Program of China (No.2011CB606403) and the Fundamental Research Funds for the Central University (No.N90405001)

URL: 

https://www.ams.org.cn/EN/10.3724/SP.J.1037.2010.00644     OR     https://www.ams.org.cn/EN/Y2011/V47/I8/1080

[1] Peng C Q, Huang B Y, He Y H. Powder Metall Technol, 2001; 19: 297

(彭超群, 黄伯云, 贺跃辉. 粉末冶金技术, 2001; 19: 297)

[2] Liu W S, Huang B Y, Zhou K C, Gu S Q. Mater Rev, 2000; 14: 19

(刘文胜, 黄伯云, 周科朝, 顾松青. 材料导报, 2000; 14: 19)

[3] Ma L, Sun Y, He X D. J Aero Mater, 2008; 28: 5

(马李, 孙跃, 赫晓东. 航空材料学报, 2008; 28: 5)

[4] Duarte L I, Ramos A S, Vieira M F, Viana, F, Vieira M T, Kocak M. Intermetallics, 2006; 14: 1151

[5] Xu Q, Chaturvedi MC, Richards N L. Metall Mater Trans, 1999; 30A: 1717

[6] Arenas M F, Acoff V L. Weld J, 2003; 82: 110S

[7] Xu S N, Zhang L, Qi Y, Zhang C B. Physica, 2010; 405B: 632

[8] Zhang L, Xu S N, Zhang C B, Qi Y. Comp Mater Sci, 2009; 47: 162

[9] Zhang L, Zhang C B, Qi Y. Physica, 2009; 404B: 205

[10] Zhang L, Zhang C B, Qi Y. Phys Lett, 2008; 372A: 2874

[11] Zhang L, Sun H X. Solid State Comm, 2009; 149: 1722

[12] Zhang L, Sun H X. Chin J Chem Phys, 2009; 22: 69

[13] Farkas D, Roqueta D, Vilette A, Ternes K. Modell Simul Mater Sci Eng, 1996; 4: 359

[14] Ruda M, Farkas D, Abriata J. Phys Rev, 1996; 54B: 9765

[15] Zhang L, Wang S Q, Ye H Q. Chin Phys, 2006; 15: 610

[16] Honeycutt J D, Andersen H C. J Phys Chem, 1987; 91: 4950

[17] Clarke A S, Jonsson H. Phys Rev, 1993; 47E: 3975
[1] BI Zhongnan, QIN Hailong, LIU Pei, SHI Songyi, XIE Jinli, ZHANG Ji. Research Progress Regarding Quantitative Characterization and Control Technology of Residual Stress in Superalloy Forgings[J]. 金属学报, 2023, 59(9): 1144-1158.
[2] CHEN Jia, GUO Min, YANG Min, LIU Lin, ZHANG Jun. Effects of W Concentration on Creep Microstructure and Property of Novel Co-Based Superalloys[J]. 金属学报, 2023, 59(9): 1209-1220.
[3] LU Nannan, GUO Yimo, YANG Shulin, LIANG Jingjing, ZHOU Yizhou, SUN Xiaofeng, LI Jinguo. Formation Mechanisms of Hot Cracks in Laser Additive Repairing Single Crystal Superalloys[J]. 金属学报, 2023, 59(9): 1243-1252.
[4] ZHANG Haifeng, YAN Haile, FANG Feng, JIA Nan. Molecular Dynamic Simulations of Deformation Mechanisms for FeMnCoCrNi High-Entropy Alloy Bicrystal Micropillars[J]. 金属学报, 2023, 59(8): 1051-1064.
[5] SI Yongli, XUE Jintao, WANG Xingfu, LIANG Juhua, SHI Zimu, HAN Fusheng. Effect of Cr Addition on the Corrosion Behavior of Twinning-Induced Plasticity Steel[J]. 金属学报, 2023, 59(7): 905-914.
[6] ZHANG Lu, YU Zhiwei, ZHANG Leicheng, JIANG Rong, SONG Yingdong. Thermo-Mechanical Fatigue Cycle Damage Mechanism and Numerical Simulation of GH4169 Superalloy[J]. 金属学报, 2023, 59(7): 871-883.
[7] ZHAO Pingping, SONG Yingwei, DONG Kaihui, HAN En-Hou. Synergistic Effect Mechanism of Different Ions on the Electrochemical Corrosion Behavior of TC4 Titanium Alloy[J]. 金属学报, 2023, 59(7): 939-946.
[8] WANG Furong, ZHANG Yongmei, BAI Guoning, GUO Qingwei, ZHAO Yuhong. First Principles Calculation of Al-Doped Mg/Mg2Sn Alloy Interface[J]. 金属学报, 2023, 59(6): 812-820.
[9] LI Qian, SUN Xuan, LUO Qun, LIU Bin, WU Chengzhang, PAN Fusheng. Regulation of Hydrogen Storage Phase and Its Interface in Magnesium-Based Materials for Hydrogen Storage Performance[J]. 金属学报, 2023, 59(3): 349-370.
[10] SHEN Zhao, WANG Zhipeng, HU Bo, LI Dejiang, ZENG Xiaoqin, DING Wenjiang. Research Progress on the Mechanisms Controlling High-Temperature Oxidation Resistance of Mg Alloys[J]. 金属学报, 2023, 59(3): 371-386.
[11] LIU Laidi, DING Biao, REN Weili, ZHONG Yunbo, WANG Hui, WANG Qiuliang. Multilayer Structure of DZ445 Ni-Based Superalloy Formed by Long Time Oxidation at High Temperature[J]. 金属学报, 2023, 59(3): 387-398.
[12] XIA Dahai, JI Yuanyuan, MAO Yingchang, DENG Chengman, ZHU Yu, HU Wenbin. Localized Corrosion Mechanism of 2024 Aluminum Alloy in a Simulated Dynamic Seawater/Air Interface[J]. 金属学报, 2023, 59(2): 297-308.
[13] CHEN Kaixuan, LI Zongxuan, WANG Zidong, Demange Gilles, CHEN Xiaohua, ZHANG Jiawei, WU Xuehua, Zapolsky Helena. Morphological Evolution of Fe-Rich Precipitates in a Cu-2.0Fe Alloy During Isothermal Treatment[J]. 金属学报, 2023, 59(12): 1665-1674.
[14] WANG Chongyang, HAN Shiwei, XIE Feng, HU Long, DENG Dean. Influence of Solid-State Phase Transformation and Softening Effect on Welding Residual Stress of Ultra-High Strength Steel[J]. 金属学报, 2023, 59(12): 1613-1623.
[15] ZHANG Kaiyuan, DONG Wenchao, ZHAO Dong, LI Shijian, LU Shanping. Effect of Solid-State Phase Transformation on Stress and Distortion for Fe-Co-Ni Ultra-High Strength Steel Components During Welding and Vacuum Gas Quenching Processes[J]. 金属学报, 2023, 59(12): 1633-1643.
No Suggested Reading articles found!