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Articles

Powder Metallurgical Processing of Ni–Ti Shape Memory Alloy

Pages 43-47 | Published online: 19 Jul 2013

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Nicole Cameron & Zoheir Farhat. (2019) Fabrication, Characterization, and Evaluation of Monolithic NiTi Nanolaminate Coatings. Tribology Transactions 62:6, pages 1007-1018.
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K. Zangeneh-Madar & N. Barbat. (2018) Preparation of NixTiy compound via Ni plating followed by thermal treatment of Ti powder. Particulate Science and Technology 36:4, pages 395-401.
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N. Barbat & K. Zangeneh-Madar. (2014) Preparation of Ti–Ni binary powder via electroless nickel plating of titanium powder. Powder Metallurgy 57:2, pages 97-102.
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S Parvizi, H R Hafizpour, S K Sadrnezhaad, A Akhondzadeh & M Abbasi Gharacheh. (2011) Neural network prediction of mechanical properties of porous NiTi shape memory alloy. Powder Metallurgy 54:3, pages 450-454.
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S. K. Sadrnezhaad, H. Arami, H. Keivan & R. Khalifehzadeh. (2006) Powder Metallurgical Fabrication and Characterization of Nanostructured Porous NiTi Shape-Memory Alloy. Materials and Manufacturing Processes 21:8, pages 727-735.
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Sayed Khatiboleslam Sadrnezhaad & Omid Lashkari. (2006) Property Change During Fixtured Sintering of NiTi Memory Alloy. Materials and Manufacturing Processes 21:1, pages 87-96.
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S. K. Sadrnezhaad & A. R. Selahi. (2004) Effect of Mechanical Alloying and Sintering on Ni–Ti Powders. Materials and Manufacturing Processes 19:3, pages 475-486.
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Khashayar Khanlari, Maziar Ramezani, Piaras Kelly & Thomas Neitzert. (2018) Effect of Hafnium Addition in 60NiTi Alloy Hardened Under Open Atmosphere Conditions. Metallography, Microstructure, and Analysis 7:4, pages 476-486.
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Crossref
X. Yao, S. Cao, X.P. Zhang & D. Schryvers. (2015) Microstructural Characterization and Transformation Behavior of Porous Ni50.8Ti49.2. Materials Today: Proceedings 2, pages S833-S836.
Crossref
Francesco Stortiero. 2015. Shape Memory Alloy Engineering. Shape Memory Alloy Engineering 215 244 .
Alireza Sadeghi, Abolfazl Babakhani, Seyed Mojtaba Zebarjad & Hassan Mostajabodaveh. (2014) Use of grey relational analysis for multi-objective optimisation of NiTiCu shape memory alloy produced by powder metallurgy process. Journal of Intelligent Material Systems and Structures 25:16, pages 2093-2101.
Crossref
P.S. Liu & G.F. Chen. 2014. Porous Materials. Porous Materials 21 112 .
Bolu Liu, Zili Liu, Xiqin Liu, Wenjing Wang & Lihong Wang. (2013) Effect of sintering temperature on the microstructure and mechanical properties of Ti50Ni50 and Ti47Ni47Al6 intermetallic alloys. Journal of Alloys and Compounds 578, pages 373-379.
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Mansur Ahmed, Dmytro G. Savvakin, Orest M. Ivasishin & Elena V. Pereloma. (2013) The effect of cooling rates on the microstructure and mechanical properties of thermo-mechanically processed Ti–Al–Mo–V–Cr–Fe alloys. Materials Science and Engineering: A 576, pages 167-177.
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X.X. Zhang, H.W. Hou, L.S. Wei, Z.X. Chen, W.T. Wei & L. Geng. (2013) High damping capacity in porous NiTi alloy with bimodal pore architecture. Journal of Alloys and Compounds 550, pages 297-301.
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Thais dos Reis Luz, Eliene Nogueira de Camargo, Vinicius Andre Rodrigues Henriques, Jose Luis de Oliveira & Edevaldo Faria Diniz. Production of Ti-22Nb-6Zr Shape Memory Alloy by Powder Metallurgy. Production of Ti-22Nb-6Zr Shape Memory Alloy by Powder Metallurgy.
Muhammad Hussain Ismail, Russell Goodall, Hywel A. Davies & Iain Todd. (2012) Formation of microporous NiTi by transient liquid phase sintering of elemental powders. Materials Science and Engineering: C 32:6, pages 1480-1485.
Crossref
Wen Chen, Shubo Wang, Jianbang Ge, Shuqiang Jiao & Hongmin Zhu. (2012) Electrochemical synthesis of Nb5Si3 intermetallic compound from molten calcium chloride salt. Intermetallics 25, pages 66-69.
Crossref
Sorush Parvizi, Vahid Hasannaeimi, Ehsan Saebnoori, Taghi Shahrabi & Sayed Khatiboleslam Sadrnezhaad. (2012) Fabrication of porous NiTi alloy via powder metallurgy and its mechanical characterization by shear punch method. Russian Journal of Non-Ferrous Metals 53:2, pages 169-175.
Crossref
Fu-Cheng Yen & Kuen-Shyang Hwang. (2011) Microstructures, Mechanical Properties, and Shape Memory Characteristics of Powder Metallurgy Ti51Ni49 Modified with Boron. Metallurgical and Materials Transactions A 43:2, pages 687-696.
Crossref
N. A. Braga, M. R. Baldan & N. G. Ferreira. (2011) From micro to nanocrystalline diamond grown on 3D porous titanium matrix. Journal of Materials Science 47:1, pages 23-40.
Crossref
Yu Xuan Li, Zhen Duo Cui, Xian Jin Yang & Sheng Li Zhu. (2011) The Porous TiNb<sub>24</sub>Zr<sub>4</sub> Alloys with Controllable Porosity Fabricated by Conventional Sintering. Advanced Materials Research 335-336, pages 797-804.
Crossref
Fu-Cheng Yen, Kuen-Shyang Hwang, Shyi-Kaan Wu & Shiau-Han Wu. (2011) TiNi Shape Memory Alloys with High Sintered Densities and Well-Defined Martensitic Transformation Behavior. Metallurgical and Materials Transactions A 42:8, pages 2431-2441.
Crossref
L. W. Ma, C. Y. Chung, Y. X. Tong & Y. F. Zheng. (2011) Properties of Porous TiNbZr Shape Memory Alloy Fabricated by Mechanical Alloying and Hot Isostatic Pressing. Journal of Materials Engineering and Performance 20:4-5, pages 783-786.
Crossref
Fu-Cheng Yen & Kuen-Shyang Hwang. (2011) Shape memory characteristics and mechanical properties of high-density powder metal TiNi with post-sintering heat treatment. Materials Science and Engineering: A 528:15, pages 5296-5305.
Crossref
Hong Bo Sun, Xing Ke Zhao, Lan Lan, Ji Hua Huang & Hua Zhang. (2010) Preparation of High-Porosity NiTi Alloys by Powder Sintering with NaCl Pre-Forming. Advanced Materials Research 152-153, pages 1342-1345.
Crossref
Shuqiang Jiao, Linlin Zhang, Hongmin Zhu & Derek J. Fray. (2010) Production of NiTi shape memory alloys via electro-deoxidation utilizing an inert anode. Electrochimica Acta 55:23, pages 7016-7020.
Crossref
D. Cluff & S.F. Corbin. (2010) The influence of Ni powder size, compact composition and sintering profile on the shape memory transformation and tensile behaviour of NiTi. Intermetallics 18:8, pages 1480-1490.
Crossref
Zhao Yu-xia, He Guang-ping & Gao De-wen. (2009) Micro in-pipe robot mechanical structure design of Shape Memory Alloy driving. Micro in-pipe robot mechanical structure design of Shape Memory Alloy driving.
S.F. Corbin & D. Cluff. (2009) Determining the rate of (β-Ti) decay and its influence on the sintering behavior of NiTi. Journal of Alloys and Compounds 487:1-2, pages 179-186.
Crossref
M. Whitney, S.F. Corbin & R.B. Gorbet. (2009) Investigation of the influence of Ni powder size on microstructural evolution and the thermal explosion combustion synthesis of NiTi. Intermetallics 17:11, pages 894-906.
Crossref
O. Scalzo, S. Turenne, M. Gauthier & V. Brailovski. (2009) Mechanical and Microstructural Characterization of Porous NiTi Shape Memory Alloys. Metallurgical and Materials Transactions A 40:9, pages 2061-2070.
Crossref
D.S. Li, Y.P. Zhang, X. Ma & X.P. Zhang. (2009) Space-holder engineered porous NiTi shape memory alloys with improved pore characteristics and mechanical properties. Journal of Alloys and Compounds 474:1-2, pages L1-L5.
Crossref
H. Li, B. Yuan, Y. Gao, C. Y. Chung & M. Zhu. (2009) High-porosity NiTi superelastic alloys fabricated by low-pressure sintering using titanium hydride as pore-forming agent. Journal of Materials Science 44:3, pages 875-881.
Crossref
Tokujiro Yamamoto, Hiroyuki Kato, Yoshihiro Murakami, Hisamichi Kimura & Akihisa Inoue. (2008) Martensitic transformation and microstructure of Ti-rich Ti–Ni as-atomized powders. Acta Materialia 56:20, pages 5927-5937.
Crossref
Hu Guoxin, Zhang Lixiang, Fan Yunliang & Li Yanhong. (2008) Fabrication of high porous NiTi shape memory alloy by metal injection molding. Journal of Materials Processing Technology 206:1-3, pages 395-399.
Crossref
Guoxin Hu & Lixiang Zhang. (2008) Numerical investigation of sintering porous NiTi shape memory alloy by self-propagating high-temperature synthesis. Computational Materials Science 42:4, pages 558-563.
Crossref
Ph Imgrund, A Rota, H Schmidt & G Capretti. (2008) μ-MIM: Making the most of NiTi. Metal Powder Report 63:5, pages 21-24.
Crossref
M. Whitney, S.F. Corbin & R.B. Gorbet. (2008) Investigation of the mechanisms of reactive sintering and combustion synthesis of NiTi using differential scanning calorimetry and microstructural analysis. Acta Materialia 56:3, pages 559-570.
Crossref
F. Neves, I. Martins, J.B. Correia, M. Oliveira & E. Gaffet. (2008) Mechanically activated reactive extrusion synthesis (MARES) of NiTi. Materials Science and Engineering: A 473:1-2, pages 336-341.
Crossref
Razieh Khalifehzadeh, Saeed Forouzan, Hamed Arami & S.K. Sadrnezhaad. (2007) Prediction of the effect of vacuum sintering conditions on porosity and hardness of porous NiTi shape memory alloy using ANFIS. Computational Materials Science 40:3, pages 359-365.
Crossref
Chen Ti Hu & Yu Chang Chen. (2007) Difficulties with Ti-Ni Powder Metallurgy Process and Multi-Stage Sintering Technique for TiNi SMA. Materials Science Forum 539-543, pages 2663-2668.
Crossref
Byung Sun Han, Young Rang Uhm, Min Ku Lee, Jin Ju Park, Chang Kyu Rhee & G.M. Kim. (2007) Synthesis Of Ti<sub>50</sub>Ni<sub>50</sub> Alloy Nanopowders Synthesized by Modified Levitational Gas Condensation Method. Solid State Phenomena 119, pages 263-266.
Crossref
K. Kitamura, T. Kuchida, T. Inaba, M. Tokuda & Y. Yoshimi. (2006) Shape memory characteristics of TiNi casting alloys made by using self-propagating high-temperature synthesis. Materials Science and Engineering: A 438-440, pages 675-678.
Crossref
J. Mentz, M. Bram, H. P. Buchkremer & D. Stöver. (2006) Improvement of Mechanical Properties of Powder Metallurgical NiTi Shape Memory Alloys. Advanced Engineering Materials 8:4, pages 247-252.
Crossref
B.B. Panigrahi & M.M. Godkhindi. (2006) Dilatometric sintering study of Ti–50Ni elemental powders. Intermetallics 14:2, pages 130-135.
Crossref
E. Schöller, L. Krone, M. Bram, H. P. Buchkremer & D. Ståaver. (2005) Metal injection molding of shape memory alloys using prealloyed NiTi powders. Journal of Materials Science 40:16, pages 4231-4238.
Crossref
C. Shearwood, Y.Q. Fu, L. Yu & K.A. Khor. (2005) Spark plasma sintering of TiNi nano-powder. Scripta Materialia 52:6, pages 455-460.
Crossref
E. Schüller, M. Bram, H.P. Buchkremer & D. Stöver. (2004) Phase transformation temperatures for NiTi alloys prepared by powder metallurgical processes. Materials Science and Engineering: A 378:1-2, pages 165-169.
Crossref
W. Maziarz, J. Dutkiewicz, J. Van Humbeeck & T. Czeppe. (2004) Mechanically alloyed and hot pressed Ni–49.7Ti alloy showing martensitic transformation. Materials Science and Engineering: A 375-377, pages 844-848.
Crossref
S.L. Zhu, X.J. Yang, F. Hu, S.H. Deng & Z.D. Cui. (2004) Processing of porous TiNi shape memory alloy from elemental powders by Ar-sintering. Materials Letters 58:19, pages 2369-2373.
Crossref
Yongqing Fu & Christopher Shearwood. (2004) Characterization of nanocrystalline TiNi powder. Scripta Materialia 50:3, pages 319-323.
Crossref
E. Schüller, O.A. Hamed, M. Bram, D. Sebold, H.P. Buchkremer & D. Stöver. (2004) Hot Isostatic Pressing (HIP) of Elemental Powder Mixtures and Prealloyed Powder for NiTi Shape Memory Parts. Advanced Engineering Materials 5:12, pages 918-924.
Crossref
A.M. Locci, R. Orrù, G. Cao & Z.A. Munir. (2003) Field-activated pressure-assisted synthesis of NiTi. Intermetallics 11:6, pages 555-571.
Crossref
M Bram, A Ahmad-Khanlou, H.P Buchkremer & D Stöver. (2002) Vacuum plasma spraying of NiTi protection layers. Materials Letters 57:3, pages 647-651.
Crossref
M. Bram, A. Ahmad-Khanlou, A. Heckmann, B. Fuchs, H.P. Buchkremer & D. Stöver. (2002) Powder metallurgical fabrication processes for NiTi shape memory alloy parts. Materials Science and Engineering: A 337:1-2, pages 254-263.
Crossref
G.E. Monastyrsky, J. Van Humbeeck, V.I. Kolomytsev & N.Koval Yu. (2002) Powder metallurgical processing of Ni–Ti–Zr alloys undergoing martensitic transformation—part II. Intermetallics 10:6, pages 613-624.
Crossref
Tae-hyun Nam & Sang-ho Kang. (2002) Effect of ball milling conditions on the microstructure and the transformation behavior of Ti−Ni and Ti−Ni−Cu shape memory alloy powders. Metals and Materials International 8:2, pages 145-150.
Crossref
G.E Monastyrsky, V Odnosum, J Van Humbeeck, V.I Kolomytsev & Yu.N Koval. (2002) Powder metallurgical processing of Ni–Ti–Zr alloys undergoing martensitic transformation: part I. Intermetallics 10:1, pages 95-103.
Crossref
Yanqing Su, Yuan Liu, Guizhong Liu, JingJie Guo, Daming Xu & Jun Jia. (2001) Molding of temperature field for the induction skull melting process of Ti-47Ni-9Nb. Metallurgical and Materials Transactions A 32:11, pages 2895-2902.
Crossref
Sang Ho Kang, Shin Goo Hur, Hee Woo Lee & Tae Hyun Nam. (2000) Microstructures and transformation behavior of Ti-Ni-Cu shape memory alloy powders fabricated by ball milling method. Metals and Materials 6:4, pages 381-387.
Crossref
Bing-Yun Li, Li-Jian Rong & Yi-Yi Li. (2000) Stress–strain behavior of porous Ni–Ti shape memory intermetallics synthesized from powder sintering. Intermetallics 8:5-6, pages 643-646.
Crossref
Bing-Yun Li, Li-Jian Rong, Xing-Hong Luo & Yi-Yi Li. (1999) Transformation behavior of sintered porous NiTi alloys. Metallurgical and Materials Transactions A 30:11, pages 2753-2756.
Crossref

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