Acta Metallurgica Sinica (English Letters) ›› 2015, Vol. 28 ›› Issue (2): 243-248.DOI: 10.1007/s40195-014-0190-8
• Orginal Article • Previous Articles Next Articles
Xi-Li Lu1, De-Xi Su1, Feng Chen1(), Wei-Li Liu1, Yang-Guang Shi2, Yun-Xiang Tong1, Li Li1
Received:
2014-06-17
Revised:
2014-09-04
Online:
2015-02-10
Published:
2015-07-23
Xi-Li Lu, De-Xi Su, Feng Chen, Wei-Li Liu, Yang-Guang Shi, Yun-Xiang Tong, Li Li. Martensitic Transformation and Its Thermal Cycling Stability in Ni56Mn21Cu4Ga19 High-Temperature Shape Memory Ribbon[J]. Acta Metallurgica Sinica (English Letters), 2015, 28(2): 243-248.
Add to citation manager EndNote|Ris|BibTeX
Fig. 3 DSC curves of the bulk sample and differently treated ribbons subjected to thermal cycling: a bulk sample, b ribbon annealed at 700 °C for 30 min, c ribbon annealed at 700 °C for 5 h, d ribbon annealed at 800 °C for 5 h, e ribbon annealed at 900 °C for 5 h
Sample | Matrix composition | γ phase composition | A p (°C) | M p (°C) | A p-M p (°C) |
---|---|---|---|---|---|
Bulk | Ni53.0Mn20.9Cu5.3Ga20.8 | Ni57.8Mn19.6Cu6.3Ga16.3 | 519 | 463 | 56 |
Ribbon-700 °C/30 min | Ni54.9Mn19.4Cu5.7Ga20 | - | 460 | 395 | 65 |
Ribbon-700 °C/5 h | Ni54.2Mn20.9Cu5.4Ga19.6 | - | 450 | 391 | 59 |
Ribbon-800 °C/5 h | Ni52.9Mn21.1Cu5.5Ga20.5 | Ni60.5Mn18.2Cu7.0Ga14.4 | 517 | 452 | 65 |
Ribbon-900 °C/5 h | Ni52.9Mn21.1Cu5.2Ga20.8 | Ni58.6Mn19.1Cu7.4Ga14.9 | 520 | 459 | 61 |
Table 1 The corresponding composition of the matrix and γ phase, transformation temperatures (A p and M p), and thermal hysteresis (A p-M p). Here, the values of A p and M p were determined from the first thermal cycle
Sample | Matrix composition | γ phase composition | A p (°C) | M p (°C) | A p-M p (°C) |
---|---|---|---|---|---|
Bulk | Ni53.0Mn20.9Cu5.3Ga20.8 | Ni57.8Mn19.6Cu6.3Ga16.3 | 519 | 463 | 56 |
Ribbon-700 °C/30 min | Ni54.9Mn19.4Cu5.7Ga20 | - | 460 | 395 | 65 |
Ribbon-700 °C/5 h | Ni54.2Mn20.9Cu5.4Ga19.6 | - | 450 | 391 | 59 |
Ribbon-800 °C/5 h | Ni52.9Mn21.1Cu5.5Ga20.5 | Ni60.5Mn18.2Cu7.0Ga14.4 | 517 | 452 | 65 |
Ribbon-900 °C/5 h | Ni52.9Mn21.1Cu5.2Ga20.8 | Ni58.6Mn19.1Cu7.4Ga14.9 | 520 | 459 | 61 |
[1] | K. Ullakko, J.K. Huang, C. Kantner, R.C. O’Handley, V.V. Kokorin, Appl. Phys. Lett. 69, 1966 (1996) |
[2] | S.J. Murray, M. Marioni, S.M. Allen, R.C. O’Handley, T.A. Lograsso, Appl. Phys. Lett. 77, 886(2000) |
[3] | A. Sozinov, A.A. Likhachev, N. Lanska, K. Ullakko,Appl. Phys. Lett. 80, 1746(2002) |
[4] | J. Van Humbeeck, J. Eng. Mater. Tech. 121, 98(1999) |
[5] | V.A. Chernenko, E. Cesari, V.V. Kokorin, I.N. Vitenko,Scr. Metall. Mater. 33, 1239(1995) |
[6] | C. Seguí, E. Cesari, J. Font, J. Muntasell, V.A. Chernenko,Scr. Mater. 53, 315(2005) |
[7] | Y.F. Wang, J.M. Wang, C.B. Jiang, H.B. Xu, Acta Metall. Sin. (Engl. Lett.) 19, 171(2006) |
[8] | I. Glavatskyy, N. Glavatska, A. Dobrinsky, J.U. Hoffmann, O. Söderberg, S.P. Hannula, Scr. Mater. 56, 565(2007) |
[9] | Y.Q. Ma, S.Y. Yang, W.J. Jin, X.J. Liu, J. Alloys Compd. 471, 570(2009) |
[10] | H.B. Xu, Y. Li, C.B. Jiang,Mater. Sci. Eng. A 438-440, 1065(2006) |
[11] | Y.Q. Ma, S.Y. Yang, C.P. Wang, X.J. Liu,Scr. Mater. 58, 918(2008) |
[12] | J.M. Wang, H.F. Wang, C.B. Jiang, Mater. Sci. Eng. A 578, 256 (2013) |
[13] | S.Y. Yang, Y. Liu, C.P. Wang, X.J. Liu,Acta Mater. 60, 4255(2012) |
[14] | Z.H. Liu, H. Liu, X.X. Zhang, M. Zhang, X.F. Dai, H.N. Hu, J.L. Chen, G.H. Wu, Phys. Lett. A 329, 214 (2004) |
[15] | S. Aich, S. Das, I.A. Al-Omari, P. Alagarsamy, S.G. Chowdhury, M. Chakraborty, J.E. Shield, D.J. Sellmyer, J. Appl. Phys. 105, 07A943 (2009) |
[16] | F. Chen, Y.X. Tong, Y.J. Huang, B. Tian, L. Li, Y.F. Zheng, Intermetallics 36, 81 (2013) |
[17] | J. Van Humbeeck, J. Janssen, N. Mwamba, L. Delaey, Scr. Metall. 18, 893(1984) |
[18] | K. Seki, H. Kura, T. Sato, T. Taniyama, J. Appl. Phys. 103, 063910(2008) |
[19] | Y.Q. Ma, C.B. Jiang, G. Feng, H.B. Xu,Scr. Mater. 48, 365(2003) |
[20] | Y.X. Tong, P.C. Jiang, F. Chen, B. Tian, L. Li, Y.F. Zheng, D.V. Gunderov, R.Z. Valiev, Intermetallics 49, 81 (2014) |
[1] | Xiaohui Shi, Zuhan Cao, Zhiyuan Fan, Junwei Qiao. Texture Evolution Behavior and Its Triggered Mechanical Anisotropy of CP Ti During Severe Cold Rolling and Subsequent Annealing [J]. Acta Metallurgica Sinica (English Letters), 2020, 33(9): 1271-1282. |
[2] | Song-Wei Wang, Hong-Wu Song, Yan Chen, Shi-Hong Zhang, Hai-Hong Li. Evolution of Annealing Twins and Recrystallization Texture in Thin-Walled Copper Tube During Heat Treatment [J]. Acta Metallurgica Sinica (English Letters), 2020, 33(12): 1618-1626. |
[3] | Pengfei Gao, Weijian Chen, Feng Li, Beijia Ning, Zhengzhi Zhao. Quasi-Situ Characterization of Deformation in Low-Carbon Steel with Equiaxed and Lamellar Microstructure Treated by the Quenching and Partitioning Process [J]. Acta Metallurgica Sinica (English Letters), 2020, 33(12): 1657-1665. |
[4] | Sohail Ahmad, Li-Feng Lv, Li-Ming Fu, Huan-Rong Wang, Wei Wang, Ai-Dang Shan. Effect of Annealing on Microstructure and Mechanical Properties of Ultrafine-Grained Low-Carbon Medium-Manganese Steel Produced by Heavy Warm Rolling [J]. Acta Metallurgica Sinica (English Letters), 2019, 32(3): 361-371. |
[5] | Yang Wu, Yun-Chang Xin, Xiang-Sheng Xia, Bo Feng, Yan-Bin Wang, Zu-De Zhao. Influence of Annealing Treatments on Microstructure and Mechanical Properties of an Extruded Mg AZ31/Al 7050 Laminate [J]. Acta Metallurgica Sinica (English Letters), 2019, 32(2): 227-234. |
[6] | Yong-Jin Wang, Ren-Bo Song, Ren-Feng Song. Phase Transformation and Carbide Precipitation of Functional Gradient Semi-solid 9Cr18 Steel [J]. Acta Metallurgica Sinica (English Letters), 2018, 31(8): 823-830. |
[7] | Li-Na Wang, Ping Yang, Ting Jin, Wei-Min Mao. Different Mechanisms of ε-M and α′-M Variant Selection and the Influencing Factors of ε-M Reversion During Dynamic Tension in TRIP Steel [J]. Acta Metallurgica Sinica (English Letters), 2018, 31(5): 449-455. |
[8] | Wei Zhang, Xin Zhang, Qian Wang, Qing-Suo Liu. Gamma-phase influence on shape memory properties in Ni-Mn-Co-Ga-Gd high-temperature shape memory alloys [J]. Acta Metallurgica Sinica (English Letters), 2018, 31(5): 471-476. |
[9] | Hao Sun, Suo-Zhu Bai, Dan-Dan Yao, Bin Yao, Zhan-Hui Ding, Yong-Feng Li. Preparation and Characterization of Amorphous W-B-C Alloy and Solid Solutions of C in Tungsten Borides [J]. Acta Metallurgica Sinica (English Letters), 2018, 31(4): 380-388. |
[10] | Zhong-Yuan Feng, Xin-Jie Di, Shi-Pin Wu, Dong-Po Wang, Xiao-Qian Liu. Comparison of Microstructure and Residual Stress Between TIG and MAG Welding Using Low Transformation Temperature Welding Filler [J]. Acta Metallurgica Sinica (English Letters), 2018, 31(3): 263-272. |
[11] | Sang-Soo Shin, Hong-Kyu Kim, Jae-Chul Lee, Ik-Min Park. Effect of Sub-T g Annealing on the Corrosion Resistance of the Cu-Zr Amorphous Alloys [J]. Acta Metallurgica Sinica (English Letters), 2018, 31(3): 273-280. |
[12] | Ya-Nan Zhao, Shu-Yong Jiang, Yan-Qiu Zhang, Yu-Long Liang. Influence of Fe Addition on Phase Transformation, Microstructure and Mechanical Property of Equiatomic NiTi Shape Memory Alloy [J]. Acta Metallurgica Sinica (English Letters), 2017, 30(8): 762-770. |
[13] | Ming-Hui Cai, Hong-Shou Huang, Hai-Jun Pan, Sheng-Hui Sun, Hua Ding, Peter Hodgson. Microstructure and Tensile Properties of a Nb-Mo Microalloyed 6.5Mn Alloy Processed by Intercritical Annealing and Quenching and Partitioning [J]. Acta Metallurgica Sinica (English Letters), 2017, 30(7): 665-674. |
[14] | Xin Zhang, Jie-He Sui, Yong-Chao Lei, Wei Cai. Microstructure and Optical Properties of Ti54.5Ni45.5 Nanocrystalline Thin Film [J]. Acta Metallurgica Sinica (English Letters), 2017, 30(12): 1231-1235. |
[15] | Yang-Huan Zhang, Wei Zhang, Jin-Liang Gao, Ze-Ming Yuan, Wen-Gang Bu, Yan Qi. A Comparison Study of Hydrogen Storage Thermodynamics and Kinetics of YMg11Ni Alloy Prepared by Melt Spinning and Ball Milling [J]. Acta Metallurgica Sinica (English Letters), 2017, 30(11): 1040-1048. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||