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Original Articles

Incommensurate–commensurate transition and nanoscale domain-like structure in iron doped Ti–Ni shape memory alloys

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Pages 67-78 | Received 28 Jul 2005, Accepted 31 Aug 2005, Published online: 21 Feb 2007

Keep up to date with the latest research on this topic with citation updates for this article.

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Mitsuharu Todai, Akio Higaki, Takashi Fukuda & Tomoyuki Kakeshita. (2011) Martensitic transformation from incommensurate state with nano-scale domain structure in a Ti–42Ni–8Fe (at.%) alloy under a compressive stress. Philosophical Magazine Letters 91:1, pages 29-34.
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Mi-Seon Choi, Takuya Yamamoto, Takashi Fukuda, Tomoyuki Kakeshita, Eiji Taguchi & Hirotaro Mori. (2008) Differences between the R-phase and the commensurate phase in iron-doped Ti–Ni shape memory alloys. Philosophical Magazine 88:16, pages 2449-2460.
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Takuya Yamamoto, Mi-Seon Choi, Sho Majima, Takashi Fukuda, Tomoyuki Kakeshita, Eiji Taguchi & Hirotaro Mori. (2008) Iron content and temperature dependences of diffuse scattering in Ti–(50–x)Ni–xFe (6 ≤ x ≤ 10) alloys. Philosophical Magazine 88:7, pages 1027-1035.
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Articles from other publishers (55)

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Taotao Wang, Fangmin Guo, Taotao Ai & Yapeng Li. (2023) Superelastic stability of nanocrystalline Ni47Ti50Fe3 shape memory alloy. Journal of Materials Research and Technology 24, pages 3048-3054.
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Yuru Zha, Daqiang Jiang, Yinong Liu, Genfa Kang, Hui Zhang, Xiaohua Jiang & Lishan Cui. (2023) Elinvar effect in Ti50-xNi41Co9Nbx shape memory alloys. Journal of Materials Research and Technology 23, pages 1761-1766.
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Dong WangYuanchao JiXiaobing RenYunzhi Wang. (2022) Strain Glass State, Strain Glass Transition, and Controlled Strain Release. Annual Review of Materials Research 52:1, pages 159-187.
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Genfa Kang, Hui Zhang, Zhiyuan Ma, Yang Ren, Lishan Cui & Kaiyuan Yu. (2022) Large thermal hysteresis in a single-phase NiTiNb shape memory alloy. Scripta Materialia 212, pages 114574.
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Yuxuan Chen, Yinong Liu, Kaiyuan Yu, Feng Yang, Daqiang Jiang, Yang Ren & Lishan Cui. (2021) Small-scale confined R-phase transformation in Ni47Ti49Fe2-Nb2 alloy. Materialia 20, pages 101262.
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Yuxuan Chen, Ang Li, Zhiyuan Ma, Taotao Wang, Yinong Liu, Kaiyuan Yu, Feng Yang, Daqiang Jiang, Kun Zhao, Hong Yang, Yang Ren & Lishan Cui. (2021) Step-wise R phase transformation rendering high-stability two-way shape memory effect of a NiTiFe-Nb nanowire composite. Acta Materialia 219, pages 117258.
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Fei Xiao, Zhu Li, Hong Chen, Xuejun Jin, Antoni Planes & Takashi Fukuda. (2021) Origin of the inverse elastocaloric effect in a Ni-rich Ti-Ni shape memory alloy induced by oriented nanoprecipitates. Physical Review Materials 5:5.
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K. Niitsu, H. Date & R. Kainuma. (2020) Thermal activation of stress-induced martensitic transformation in Ni-rich Ti-Ni alloys. Scripta Materialia 186, pages 263-267.
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Joohwi Lee, Yuji Ikeda & Isao Tanaka. (2019) Solution effect on improved structural compatibility of NiTi-based alloys by systematic first-principles calculations. Journal of Applied Physics 125:5.
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Yuta Kimura. (2019) Martensitic Transformation and Intermediate-phase at Low Temperatures in Ti-Ni Based AlloysTi-Ni基合金の低温におけるマルテンサイト変態とIntermediate相. Materia Japan 58:1, pages 33-37.
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Z. Chen, Z. Ma, K.Y. Yu, T. Wang, E.G. Fu, G. Zhang & L. Cui. (2018) Strengthening mechanisms in NiTi(NbFe)/amorphous-CuZrAl multilayered thin films. Surface and Coatings Technology 353, pages 247-253.
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Z. H. Wu, D. Vokoun, C. C. Leu & C. T. Hu. (2017) A Two-Way Shape Memory Study on Ni-Rich NiTi Shape Memory Alloy by Combination of the All-Round Treatment and the R-Phase Transformation. Journal of Materials Engineering and Performance 26:12, pages 5801-5810.
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Kodai Niitsu, Yuta Kimura & Ryosuke Kainuma. (2017) Transformation entropy change and precursor phenomena in Ni-rich Ti–Ni shape memory alloys. Journal of Materials Research 32:20, pages 3822-3830.
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P.C. Chang, M.L. Ko, B. Ramachandran, Y.K. Kuo, C. Chien & S.K. Wu. (2017) Comparative study of R-phase martensitic transformations in TiNi-based shape memory alloys induced by point defects and precipitates. Intermetallics 84, pages 130-135.
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Sumanta Samal, Krishanu Biswas & Gandham Phanikumar. (2016) Solidification Behavior in Newly Designed Ni-Rich Ni-Ti-Based Alloys. Metallurgical and Materials Transactions A 47:12, pages 6214-6223.
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Takeshi Nagase, Atsushi Sasaki, Hiroyuki Y. Yasuda, Tomoyuki Terai, Takashi Fukuda & Tomoyuki Kakeshita. (2016) In situ transmission-electron-microscopy observation of solid-state amorphization behavior in Ti50Ni44Fe6 alloy by high-voltage electron microscopy. Acta Materialia 104, pages 201-209.
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Shungui Zuo, Mingjiang Jin, Dan Chen & Xuejun Jin. (2015) Origin of the anelastic behavior in Ti 50 Ni 44 Fe 6 alloy. Scripta Materialia 108, pages 113-116.
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Takashi Fukuda & Tomoyuki Kakeshita. (2015) Reply to comment on “Isothermal nature of the B2–B19′ martensitic transformation in a Ti–51.2Ni (at.%) alloy”. Scripta Materialia 98, pages 71-73.
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Yuta Kimura, Xiao Xu, Toshihiro Omori & Ryosuke Kainuma. (2015) Martensitic Transformation Behaviors with Various Ni Contents in Ti<sub>50&minus;<i>X</i></sub>Ni<sub>40+<i>X</i></sub>Cu<sub>10.0</sub> Alloys. Journal of the Japan Institute of Metals Journal of the Japan Institute of Metals and Materials 79:9, pages 434-440.
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