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Original Articles

Thermodynamic analysis of ageing-induced multiple-stage transformation behaviour of NiTi

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Pages 2083-2102 | Received 06 Oct 2003, Published online: 02 Sep 2006

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Shan Liu, Jie Zhu, Yao Lin, Guangchun Wang & Xiebin Wang. (2021) Effect of stretching-bending deformation and aging treatment on phase transformation behavior and superelasticity of Ti-50.8 at.% Ni alloy. Intermetallics 129, pages 107051.
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Guilherme S. Pandolfi, Suzanny C. Martins, Vicente T.L. Buono & Leandro A. Santos. (2020) Precipitation kinetics of Ti3Ni4 and multistage martensitic transformation in an aged Ni–rich Ni–Ti shape memory alloy. Journal of Materials Research and Technology 9:4, pages 9162-9173.
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B. Naveen Kumar Reddy. (2020) Aging time correlation for near-equiatomic NiTi thin films deposited through direct current magnetron sputtering. Results in Physics 17, pages 103075.
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Darin J. Sharar, Brian F. Donovan, Ronald J. Warzoha, Adam A. Wilson, Asher C. Leff & Brendan M. Hanrahan. (2019) Solid-state thermal energy storage using reversible martensitic transformations. Applied Physics Letters 114:14.
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W.C. Kim, Y.J. Kim, J.S. Kim, Y.S. Kim, M.Y. Na, W.T. Kim & D.H. Kim. (2019) Correlation between the thermal and superelastic behavior of Ni50-xTi35Zr15Cux shape memory alloys. Intermetallics 107, pages 24-33.
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A. Radi, J. Khalil-Allafi, M.R. Etminanfar, S. Pourbabak, D. Schryvers & B. Amin-Ahmadi. (2018) Influence of stress aging process on variants of nano-Ni4Ti3 precipitates and martensitic transformation temperatures in NiTi shape memory alloy. Materials & Design 142, pages 93-100.
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Shuichi Miyazaki. (2017) My Experience with Ti–Ni-Based and Ti-Based Shape Memory Alloys. Shape Memory and Superelasticity 3:4, pages 279-314.
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Q.C. Fan, Y.H. Zhang, Y.Y. Wang, M.Y. Sun, Y.T. Meng, S.K. Huang & Y.H. Wen. (2017) Influences of transformation behavior and precipitates on the deformation behavior of Ni-rich NiTi alloys. Materials Science and Engineering: A 700, pages 269-280.
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Y.X. Tong, K.P. Hu, F. Chen, B. Tian, L. Li & Y.F. Zheng. (2017) Multiple-stage transformation behavior of Ti 49.2 Ni 50.8 alloy with different initial microstructure processed by equal channel angular pressing. Intermetallics 85, pages 163-169.
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Jian Cui. (2016) Comment on: “On the effect of room temperature ageing of Ni-rich Ni Ti alloys”. Scripta Materialia 123, pages 163-165.
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X B Shi, Z Y Ma, J S Zhang, H L Ding, F M Guo, Y Liu & L S Cui. (2015) Grain size effect on the martensitic transformation temperatures of nanocrystalline NiTi alloy. Smart Materials and Structures 24:7, pages 072001.
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S. Kustov, B. Mas, D. Salas, E. Cesari, S. Raufov, V. Nikolaev & J. Van Humbeeck. (2015) On the effect of room temperature ageing of Ni-rich Ni–Ti alloys. Scripta Materialia 103, pages 10-13.
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M. Karimzadeh, M.R. Aboutalebi, M.T. Salehi, S.M. Abbasi & M. Morakabati. (2015) Effects of thermomechanical treatments on the martensitic transformation and critical stress of Ti–50.2at.% Ni alloy. Journal of Alloys and Compounds 637, pages 171-177.
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Xiebin Wang, Sergey Kustov, Kai Li, Dominique Schryvers, Bert Verlinden & Jan Van Humbeeck. (2015) Effect of nanoprecipitates on the transformation behavior and functional properties of a Ti–50.8 at.% Ni alloy with micron-sized grains. Acta Materialia 82, pages 224-233.
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S. Wang, F.M. Guo, D.Q. Jiang, Y. Liu & L.S. Cui. (2014) In situ W–NiTi shape memory alloy composite of high radiopacity. Scripta Materialia 81, pages 4-7.
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B. Karbakhsh Ravari, S. Farjami & M. Nishida. (2014) Effects of Ni concentration and aging conditions on multistage martensitic transformation in aged Ni-rich Ti–Ni alloys. Acta Materialia 69, pages 17-29.
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Shuichi Miyazaki. (2014) Basic Research and Development of Shape Memory Alloys. Materia Japan 53:5, pages 197-208.
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Enwei Qin, Nicolas J. Peter, Mareike Frensemeier, Carl P. Frick, Eduard Arzt & Andreas S. Schneider. (2014) Vickers Indentation Induced One-Way and Two-Way Shape Memory Effect in Austenitic NiTi. Advanced Engineering Materials 16:1, pages 72-79.
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M. Peterlechner, T. Waitz, C. Gammer & T. Antretter. (2011) Martensitic phase transformations of nanocrystalline NiTi shape memory alloys processed by repeated cold rolling. International Journal of Materials Research 102:6, pages 634-642.
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Zhigang Wu, Zhuhong Liu, Hong Yang, Yinong Liu, Guangheng Wu & Robert C. Woodward. (2011) Metallurgical origin of the effect of Fe doping on the martensitic and magnetic transformation behaviours of Ni50Mn40-xSn10Fex magnetic shape memory alloys. Intermetallics 19:4, pages 445-452.
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Fei Jiang, Yinong Liu, Hong Yang, Li Li & Yufeng Zheng. (2009) Effect of ageing treatment on the deformation behaviour of Ti–50.9 at.% Ni. Acta Materialia 57:16, pages 4773-4781.
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Yufeng Zheng, Fei Jiang, Li Li, Hong Yang & Yinong Liu. (2008) Effect of ageing treatment on the transformation behaviour of Ti–50.9at.% Ni alloy. Acta Materialia 56:4, pages 736-745.
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Iulian Radu & D.Y. Li. (2007) Effects of ZrW2O8 and tungsten additions on the temperature range in which a pseudoelastic TiNi alloy retains its maximum wear resistance. Wear 263:1-6, pages 858-865.
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S. C. Mao, X. D. Han, Z. Zhang & M. H. Wu. (2007) The nano- and mesoscopic cooperative collective mechanisms of inhomogenous elastic-plastic transitions in polycrystalline TiNi shape memory alloys. Journal of Applied Physics 101:10.
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Yinong Liu, Melina Blanc, Geraldine Tan, J.I. Kim & S. Miyazaki. (2006) Effect of ageing on the transformation behaviour of Ti–49.5at.% Ni. Materials Science and Engineering: A 438-440, pages 617-621.
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