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Original Articles

Fabrication of low-cost Ti-1Al-8V-5Fe by powder metallurgy with TiH2 and FeV80 alloy

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Pages 1869-1873 | Received 10 Jan 2017, Accepted 20 Feb 2017, Published online: 11 Apr 2017

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Read on this site (5)

Padmakumar A. Bajakke, Vinayak R. Malik & Anand S. Deshpande. (2019) Particulate metal matrix composites and their fabrication via friction stir processing – a review. Materials and Manufacturing Processes 34:8, pages 833-881.
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Yanan Zhang, Qiangguo Li, Xing Guo & Yungui Chen. (2019) The sintering densification and microstructure evolutions of Ti-1Al-8V-5Fe alloy with Si additions. Materials and Manufacturing Processes 34:8, pages 907-914.
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Yanan Zhang, Chunming Wang, Xing Guo & Yungui Chen. (2019) Sintering densification behaviors of Ti-1Al-8V-5Fe alloy based on TiH2 and TiH1.5 powders. Materials and Manufacturing Processes 34:8, pages 921-926.
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Yanan Zhang, Zhong Zhang, Shaopeng Liu, Yuhang Wei, Sufen Xiao & Yungui Chen. (2018) The powder metallurgy performance of Ti-1Al-8V-5Fe alloys with unsaturated titanium hydride. Materials and Manufacturing Processes 33:16, pages 1830-1834.
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Yanan Zhang, Chunming Wang, Yeguang Zhang, Yuhang Wei, Sufen Xiao & Yungui Chen. (2018) TiH2-based Ti-1Al-8V-5Fe PM alloys with different addition methods of alloying elements. Materials and Manufacturing Processes 33:8, pages 849-855.
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Articles from other publishers (12)

Fang Yang, Yanli Li, Zhi Guo, Yanru Shao, Cunguang Chen & Zhimeng Guo. (2023) Chloro-deoxidation Behavior of Titanium Powder with SnCl2 Addition. JOM 75:7, pages 2578-2589.
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T. Chen, C. Suryanarayana & C. Yang. (2023) Advanced titanium materials processed from titanium hydride powder. Powder Technology 423, pages 118504.
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Srinivas Prabhu, Padmakumar Bajakke & Vinayak Malik. (2021) A review on in-situ aluminum metal matrix composites manufactured via friction stir processing: meeting on-ground industrial applications. World Journal of Engineering 18:6, pages 956-970.
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M.S.K.K.Y. Nartu, S. Dasari, A. Sharma, S.A. Mantri, Shashank Sharma, Mangesh V. Pantawane, B. McWilliams, K. Cho, Narendra B. Dahotre & R. Banerjee. (2021) Omega versus alpha precipitation mediated by process parameters in additively manufactured high strength Ti–1Al–8V–5Fe alloy and its impact on mechanical properties. Materials Science and Engineering: A 821, pages 141627.
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S V Akhonin, V Yu Belous, R V Selin & V A Kostin. (2021) Influence of TIG Welding Thermal Cycle on Temperature Distribution and Phase Transformation in Low-cost Titanium Alloy. IOP Conference Series: Earth and Environmental Science 688:1, pages 012012.
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Wenjie Li, Fanhao Zeng, Lei Li, Ziwei Wang, Honghao Liu, Yirui Peng & Yi Gu. (2020) Spark plasma sintering of Ti–1Al–8V–5Fe alloy: densification mechanism and grain growth. Applied Physics A 126:9.
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Caterina Chirico, Sophia Alexandra Tsipas, Pablo Wilczynski & Elena Gordo. (2020) Beta Titanium Alloys Produced from Titanium Hydride: Effect of Alloying Elements on Titanium Hydride Decomposition. Metals 10:5, pages 682.
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Bhupendra Sharma, Sanjay Kumar Vajpai, Mie Kawabata, Takayoshi Nakano & Kei Ameyama. (2020) Microstructure and Mechanical Behavior of Ti–25Nb–25Zr Alloy Prepared from Pre-Alloyed and Hydride-Mixed Elemental Powders. MATERIALS TRANSACTIONS 61:4, pages 562-566.
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I. FARÍAS, L. OLMOS, O. JIMÉNEZ, M. FLORES, A. BRAEM & J. VLEUGELS. (2019) Wear modes in open porosity titanium matrix composites with TiC addition processed by spark plasma sintering. Transactions of Nonferrous Metals Society of China 29:8, pages 1653-1664.
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Yanan Zhang, Xing Guo, Yungui Chen & Qiangguo Li. (2019) Effect of compaction pressure on the densification, microstructure, and mechanical properties of Ti‐1Al‐8V‐5Fe alloy based on TiH 2 and HDH‐Ti powders . Micro & Nano Letters 14:8, pages 906-910.
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Yuhang Wei, Chunming Wang, Yeguang Zhang, Libo Mei, Sufen Xiao & Yungui Chen. (2018) The Compactibility of Unsaturated Titanium Hydride Powders. Journal of Materials Engineering and Performance 27:11, pages 5752-5761.
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Hamid Azizi, Hatem Zurob, Bipasha Bose, S. Reza Ghiaasiaan, Xiang Wang, Simon Coulson, Vlad Duz & A.B. Phillion. (2018) Additive manufacturing of a novel Ti-Al-V-Fe alloy using selective laser melting. Additive Manufacturing 21, pages 529-535.
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