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Articles

Swelling during liquid phase sintering of Ti–Ni alloys

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Pages 213-224 | Published online: 19 Jul 2013

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Yongan Huang, Laiqi Zhang, Meng Wang & Mark Aindow. (2019) Fabrication of a multi-phase porous high-temperature Mo–Si–B alloy by in situ reaction synthesis. Powder Metallurgy 62:4, pages 258-266.
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I M Robertson & G B Schaffer. (2011) On sintering of Ti–Ni (–TiB2) alloys to near full density. Powder Metallurgy 54:3, pages 412-419.
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I. M. Robertson & G. B. Schaffer. (2010) Swelling during sintering of titanium alloys based on titanium hydride powder. Powder Metallurgy 53:1, pages 27-33.
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I. M. Robertson & G. B. Schaffer. (2009) Design of titanium alloy for efficient sintering to low porosity. Powder Metallurgy 52:4, pages 311-315.
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I. M. Robertson & G. B. Schaffer. (2009) Effect of residual pressure on vacuum sintering of Ti–Ni alloys. Powder Metallurgy 52:4, pages 316-321.
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Articles from other publishers (11)

Azeez Lawan Rominiyi & Peter Madindwa Mashinini. (2023) Assessment of microstructure, nanomechanical and tribological properties of Ti-xNi alloys fabricated by spark plasma sintering. Heliyon 9:5, pages e15887.
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Azeez Lawan Rominiyi & Peter Madindwa Mashinini. (2022) Spark plasma sintering of discontinuously reinforced titanium matrix composites: densification, microstructure and mechanical properties — a review. The International Journal of Advanced Manufacturing Technology 124:3-4, pages 709-736.
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A L Rominiyi, M B Shongwe, N B Maledi, S O Jeje, B J Babalola & P F Lepele. (2019) Influence of sintering temperature on densification, microstructure and mechanical properties of Ti-6Ni alloy developed via spark plasma sintering. IOP Conference Series: Materials Science and Engineering 655:1, pages 012017.
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Azeez Lawan Rominiyi, Mxolisi Brendon Shongwe, Nthabiseng Maledi, Bukola Joseph Babalola & Peter Apata Olubambi. (2019) Synthesis, microstructural and phase evolution in Ti–2Ni and Ti–10Ni binary alloys consolidated by spark plasma sintering technique. The International Journal of Advanced Manufacturing Technology 104:1-4, pages 1041-1049.
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Mojtaba Salehi, Saeed Maleksaeedi, Muhammad Adib Bin Sapari, Mui Ling Sharon Nai, Ganesh Kumar Meenashisundaram & Manoj Gupta. (2019) Additive manufacturing of magnesium–zinc–zirconium (ZK) alloys via capillary-mediated binderless three-dimensional printing. Materials & Design 169, pages 107683.
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C. Tan, S. F. Li, Y. F. Yang, Q. S. Zhu, C. Q. Hu, Y. Shi & P. P. Lv. (2018) Sintering Response and Equiaxed α-Ti Grain Formation in the Ti Alloys Sintered from Ti@Ni Core–Shell Powders. Metallurgical and Materials Transactions A 49:8, pages 3394-3401.
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Hung-Wei Liu, D. Paul Bishop & Kevin P. Plucknett. (2015) A comparison of Ti–Ni and Ti-Sn binary alloys processed using powder metallurgy. Materials Science and Engineering: A 644, pages 392-404.
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R.Thyagarajan, G.M.D. Cantin, B.P. Kashyap & C.J. Bettles. (2015) Modelling compaction behaviour of nickel–phosphorus and nickel–boron electroless coated titanium powders. Powder Technology 274, pages 53-61.
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R. J. Low, M. Qian & G. B. Schaffer. (2012) Sintering of Titanium with Yttrium Oxide Additions for the Scavenging of Chlorine Impurities. Metallurgical and Materials Transactions A 43:13, pages 5271-5278.
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Hyung Bong Lim, Won-Seung Cho & Cheol Y. Kim. (2012) Effect of particle size distribution of alumina on strength of glass-infiltrated alumina. Ceramics International 38:4, pages 3069-3074.
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I. M. Robertson & G. B. Schaffer. (2010) Refinement of Master Densification Curves for Sintering of Titanium. Metallurgical and Materials Transactions A 41:11, pages 2949-2958.
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