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Original Articles

Phase transformations in sputtered thin films of Tix(Ni, Cu)1−x II: Displacive transformations

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Pages 191-219 | Received 21 Aug 1996, Accepted 13 Nov 1996, Published online: 20 Aug 2006

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Xianglong Meng, Morio Sato & Akira Ishida. (2011) A novel lattice correspondence of B19 → B19′ transformation in Ti–Ni–Cu shape memory alloy thin film. Philosophical Magazine Letters 91:5, pages 344-353.
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L. Chang & D.S. Grummon. (1997) Structure evolution in sputtered thin films of Ti (Ni, Cu)1− I: Diffusive transformations. Philosophical Magazine A 76:1, pages 163-189.
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Articles from other publishers (26)

Dong Sun, Shuyong Jiang, Peng Lin, Bingyao Yan, Hao Feng, Ming Tang & Yanqiu Zhang. (2024) High yield stress and narrow phase transformation hysteresis of thermomechanical-processing NiTiCu shape memory alloy. Materials Science and Engineering: A 897, pages 146340.
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Akira Ishida. (2015) Effects of Grain Size and Co Addition on the Transformation Temperatures of Ti–Ni–Zr Thin Films. Shape Memory and Superelasticity 1:4, pages 408-417.
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Maryam Mohri & Mahmoud Nili-Ahmadabadi. (2015) Functionally Graded Shape-Memory and Pseudoelastic Response in Ni-Rich/Ti-Rich and Vice Versa NiTi Multilayer Thin Films Deposited on Si(111). JOM 67:7, pages 1585-1593.
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Maryam Mohri, Mahmoud Nili‐Ahmadabadi & Julia Ivanisenko. (2014) On the Super‐Elastic and Phase Transformation of a Novel Ni‐Rich/NiTiCu Bi‐Layer Thin Film. Advanced Engineering Materials 17:6, pages 856-865.
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Maryam Mohri, Mahmoud Nili-Ahmadabadi, Julia Ivanisenko, Ruth Schwaiger, Horst Hahn & Venkata Sai Kiran Chakravadhanula. (2015) Microstructure and mechanical behavior of a shape memory Ni–Ti bi-layer thin film. Thin Solid Films 583, pages 245-254.
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Maryam Mohri, Mahmoud Nili-Ahmadabadi & Venkata Sai Kiran Chakravadhanula. (2015) Crystallization study of amorphous sputtered NiTi bi-layer thin film. Materials Characterization 103, pages 75-80.
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Robert Zarnetta, Pio John S. Buenconsejo, Alan Savan, Sigurd Thienhaus & Alfred Ludwig. (2012) High-throughput study of martensitic transformations in the complete Ti–Ni–Cu system. Intermetallics 26, pages 98-109.
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R. Zarnetta, S. Kneip, Ch. Somsen & A. Ludwig. (2011) High-throughput characterization of mechanical properties of Ti–Ni–Cu shape memory thin films at elevated temperature. Materials Science and Engineering: A 528:21, pages 6552-6557.
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Y. Motemani, M.J. Tan, T.J. White & A. Banas. (2011) Evolution of structural, surfacial and mechanical properties of titanium–nickel–copper thin films during rapid thermal annealing. Surface and Coatings Technology 205:10, pages 3147-3157.
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Y. Motemani, M.J. Tan, T.J. White & W.M. Huang. (2011) Rapid thermal annealing of Ti-rich TiNi thin films: A new approach to fabricate patterned shape memory thin films. Materials & Design 32:2, pages 688-695.
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R Zarnetta, M Ehmann, A Savan & A Ludwig. (2010) Identification of optimized Ti–Ni–Cu shape memory alloy compositions for high-frequency thin film microactuator applications. Smart Materials and Structures 19:6, pages 065032.
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R. Zarnetta, D. König, C. Zamponi, A. Aghajani, J. Frenzel, G. Eggeler & A. Ludwig. (2009) R-phase formation in Ti39Ni45Cu16 shape memory thin films and bulk alloys discovered by combinatorial methods. Acta Materialia 57:14, pages 4169-4177.
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Kai-Nan Lin, Shyi-Kaan Wu & Ling-Mei Wu. (2009) Martensitic Transformation of Cold-Rolled and Annealed Ti<SUB>50</SUB>Ni<SUB>40</SUB>Cu<SUB>10</SUB> Shape Memory Alloy. MATERIALS TRANSACTIONS 50:11, pages 2637-2642.
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X.L. Meng, M. Sato & A. Ishida. (2008) Structure of martensite in Ti-rich Ti–Ni–Cu thin films annealed at different temperatures. Acta Materialia 56:14, pages 3394-3402.
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M. Cai, Y.Q. Fu, S. Sanjabi, Z.H. Barber & J.T. Dickinson. (2007) Effect of composition on surface relief morphology in TiNiCu thin films. Surface and Coatings Technology 201:12, pages 5843-5849.
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Lei Zhang, Chaoying Xie & Jiansheng Wu. (2007) Effect of annealing temperature on surface morphology and mechanical properties of sputter-deposited Ti–Ni thin films. Journal of Alloys and Compounds 427:1-2, pages 238-243.
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A. Ishida, M. Sato, K. Ogawa & K. Yamada. (2006) Shape memory behavior of Ti–Ni–Cu thin films. Materials Science and Engineering: A 438-440, pages 683-686.
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Sigurd Thienhaus, Christiane Zamponi, Holger Rumpf, Jae Hattrick-Simpers, Ichiro Takeuchi & Alfred Ludwig. (2011) High-throughput characterization of shape memory thin films using automated temperature-dependent resistance measurements. MRS Proceedings 894.
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Michael J Vestel & David S Grummon. (2004) Precipitates and lamellar microstructures in NiTi films. Materials Science and Engineering: A 378:1-2, pages 437-442.
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Michael J Vestel, David S Grummon, Ronald Gronsky & Albert P Pisano. (2003) Effect of temperature on the devitrification kinetics of NiTi films. Acta Materialia 51:18, pages 5309-5318.
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Ralf HassdorfJ&uuml;rgen FeydtRen&eacute; PascalSigurd ThienhausMarkus Boese, Tobias SterzlBernhard WinzekMichael Moske. (2002) Phase Formation and Structural Sequence of Highly-Oriented MBE-Grown NiTiCu Shape Memory Thin Films. MATERIALS TRANSACTIONS 43:5, pages 933-938.
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D.S. Grummon & Jinping Zhang. (2001) Stress in Sputtered Films of Near-Equiatomic TiNiX on (100) Si: Intrinsic and Extrinsic Stresses and Their Modification by Thermally Activated Mechanisms. physica status solidi (a) 186:1, pages 17-39.
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T Matsunaga, S Kajiwara, K Ogawa, T Kikuchi & S Miyazaki. (2001) Internal structures and shape memory properties of sputter-deposited thin films of a Ti–Ni–Cu alloy. Acta Materialia 49:11, pages 1921-1928.
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H. Rösner, P. Schloßmacher, A.V. Shelyakov & A.M. Glezer. (2001) The influence of coherent ticu plate-like precipitates on the thermoelastic martensitic transformation in melt-spun Ti50Ni25Cu25 shape memory alloys. Acta Materialia 49:9, pages 1541-1548.
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A.L. Roytburd, T.S. Kim, Quanmin Su, J. Slutsker & M. Wuttig. (1998) Martensitic transformation in constrained films. Acta Materialia 46:14, pages 5095-5107.
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Manfred Wuttig, Eckhard Quandt, Alfred Ludwig & Bernhard Winzek. (2011) Shape Memory and Magnetostrictive Materials for Mems. MRS Proceedings 546.
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