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Regular Papers

Indentation behaviour and wear resistance of pseudoelastic Ti–Ni alloy

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Pages 328-332 | Published online: 19 Jul 2013

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Guozheng Kang & Wenyi Yan. (2010) Scaling relationships in sharp conical indentation of shape memory alloys. Philosophical Magazine 90:5, pages 599-616.
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N. D. Long & J. H. Zhu. (2003) Cavitation erosion resistance of Fe-26Mn-6Si-7Cr-1Cu shape memory alloy. Materials Science and Technology 19:12, pages 1733-1736.
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Articles from other publishers (26)

Jagadish Parida, Subash Chandra Mishra & Ajit Behera. (2023) Microstructure and Mechanical Properties of Ti50Ni(50-X)FeX Alloys Fabricated by Powder Metallurgy Process. Metallurgical and Materials Transactions A 54:7, pages 2585-2604.
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Dongzhe Zhang, Zhiyong Hu, Yunze Li & Weilong Cong. (2022) Excellent damping properties and their correlations with the microstructures in the NiTi alloys fabricated by laser-directed energy deposition. Journal of Manufacturing Processes 84, pages 965-976.
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Dongzhe Zhang, Yunze Li & Weilong Cong. (2022) In-situ synthesis of high-quality pseudoelastic NiTi alloys with intrinsic Ni4Ti3 phase precipitation using laser DED. Journal of Manufacturing Processes 74, pages 308-318.
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Mohammad Sattari, Mahmoud Kadkhodaei, Saleh Akbarzadeh, Reyhane Gholami & Ali Beheshti. (2022) Wear in superelastic shape memory alloys: A thermomechanical analysis. Wear 488-489, pages 204139.
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Dongzhe Zhang, Yunze Li & Weilong Cong. (2021) Multi-scale pseudoelasticity of NiTi alloys fabricated by laser additive manufacturing. Materials Science and Engineering: A 821, pages 141600.
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Dongzhe Zhang, Yunze Li, Hui Wang & Weilong Cong. (2021) An investigation on Ni4Ti3 phase precipitation and its effects in laser directed energy deposition of TiC–NiTi composites. Materials Science and Engineering: A 809, pages 140976.
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Dongzhe Zhang, Yunze Li, Hui Wang & Weilong Cong. (2020) Ultrasonic vibration-assisted laser directed energy deposition in-situ synthesis of NiTi alloys: Effects on microstructure and mechanical properties. Journal of Manufacturing Processes 60, pages 328-339.
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Yunxue Wang, Renbo Xu, Shengmou Hu, Fuquan Tu & Weiwei Jin. (2017) Research combining experiment and FEM analysis on sliding wear behaviors and mechanisms of TiNi alloy. Wear 386-387, pages 218-222.
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M. Arciniegas, Y. Gaillard, J. Peña, J.M. Manero & F.J. Gil. (2009) Thermoelastic phase transformation in TiNi alloys under cyclic instrumented indentation. Intermetallics 17:10, pages 784-791.
Crossref
S. Chatterjee & G. P. Carman. (2007) High friction interface with pseudoelastic NiTi. Applied Physics Letters 91:2.
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Ren Bo Xu, Li Shan Cui & Yan Jun Zheng. (2007) Influence of Carburization on Mechanical Behaviors of NiTiCu Alloy under Dynamic Impact Loading. Materials Science Forum 546-549, pages 2233-2236.
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Jiu Jun Xu, Xiao Yin Cheng, Kun Dong & Yu Qing Sun. (2007) The Effect of Mechanical Property on the Erosive Behaviour of NiTi SMAs. Key Engineering Materials 334-335, pages 1057-1060.
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Yang-Tse Cheng, Wangyang Ni, Yijun Zhang & David S. Grummon. 2007. IUTAM Symposium on Mechanical Behavior and Micro-Mechanics of Nanostructured Materials. IUTAM Symposium on Mechanical Behavior and Micro-Mechanics of Nanostructured Materials 211 217 .
Linmao Qian, Qingping Sun & Xudong Xiao. (2006) Role of phase transition in the unusual microwear behavior of superelastic NiTi shape memory alloy. Wear 260:4-5, pages 509-522.
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C.H. Tang, F.T. Cheng & H.C. Man. (2006) Laser surface alloying of a marine propeller bronze using aluminium powder. Surface and Coatings Technology 200:8, pages 2602-2609.
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Carl P. Frick, Alicia M. Ortega, Jeffrey Tyber, A.El.M. Maksound, Hans J. Maier, Yinong Liu & Ken Gall. (2005) Thermal processing of polycrystalline NiTi shape memory alloys. Materials Science and Engineering: A 405:1-2, pages 34-49.
Crossref
Wangyang Ni, Yang-Tse Cheng & David S. Grummon. (2011) Tribological Applications of Shape Memory and Superelastic Effects. MRS Proceedings 843.
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F.T. Cheng, K.H. Lo & H.C. Man. (2003) NiTi cladding on stainless steel by TIG surfacing process. Surface and Coatings Technology 172:2-3, pages 308-315.
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Y.C Luo, R Liu & D.Y Li. (2002) Investigation of the mechanism for the improvement in wear resistance of nano-TiN/TiC/TiNi composite: a study combining experiment and FEM analysis. Materials Science and Engineering: A 329-331, pages 768-773.
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Wangyang Ni, Yang-Tse Cheng & David S. Grummon. (2002) Recovery of microindents in a nickel–titanium shape-memory alloy: A “self-healing” effect. Applied Physics Letters 80:18, pages 3310-3312.
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F.T Cheng, P Shi & H.C Man. (2001) Correlation of cavitation erosion resistance with indentation-derived properties for a NiTi alloy. Scripta Materialia 45:9, pages 1083-1089.
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Rong Liu & D.Y Li. (2001) Modification of Archard’s equation by taking account of elastic/pseudoelastic properties of materials. Wear 251:1-12, pages 956-964.
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H.Z Ye, R Liu, D.Y Li & R.L Eadie. (2001) Wear and friction of a new wear-resistant material. Composites Science and Technology 61:7, pages 987-994.
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Wangyang Ni & David S. Grummon. (2011) Nanoindentaion and Wear Behavior of Nickel-Titanium Alloys and Thin Films. MRS Proceedings 697.
Crossref
Tiancheng Zhang & D.Y. Li. (2000) An experimental study on the erosion behavior of pseudoelastic TiNi alloy in dry sand and in aggressive media. Materials Science and Engineering: A 293:1-2, pages 208-214.
Crossref
Guangfeng Shi, Lunxiang Li, Zhenglei Yu, Pengwei Sha, Qing Cao, Zezhou Xu, Yuiting Liu, Yunting Guo, Jiashun Si & Jiabao Liu. (2022) Effect of Crystallographic Anisotropy on Phase Transformation and Tribological Properties of Ni-Rich Niti Shape Memory Alloy Fabricated by Lpbf. SSRN Electronic Journal.
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