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Articles

Tensile properties of gas tungsten arc weldments in commercially pure titanium, Ti–6Al–4V and Ti–15V–3Al–3Sn–3Cr alloys at different strain rates

Pages 415-422 | Published online: 04 Dec 2013

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Vamsi Krishna K, Gopi Krishna C, Nagendra Polamarasetty, Mahesh Kumar Talari, Vijay N. Nadakuduru & Kishore Babu Nagumothu. (2024) Microstructural Characterization and Mechanical Properties of Metastable Beta and α+β Titanium Alloy Electron Beam Weldments. Fusion Science and Technology 80:1, pages 82-97.
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K. Vamsi Krishna, Sriharitha Rowthu, Vijay N. Nadakuduru, Ganesh Pilla & N. Kishore Babu. (2024) Effect of Welding Speed and Postweld Heat Treatment on Microstructural Characterization and Mechanical Properties of Gas Tungsten Arc Welded Ti-15V-3Al-3Cr-3Sn Joints. Fusion Science and Technology 80:1, pages 68-81.
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K. Vamsi Krishna, M. K. Talari, Bharath Bandi, Sriharitha Rowthu, M. I. Khan, P. Mastanaiah & N. Kishore Babu. (2023) Effect of welding speed on microstructural and mechanical properties of EB Ti-15V-3Al-3Cr-3Sn welds. Materials Science and Technology 39:11, pages 1402-1413.
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A. B. Short. (2009) Gas tungsten arc welding of α + β titanium alloys: a review. Materials Science and Technology 25:3, pages 309-324.
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Articles from other publishers (11)

Аnatoliy A. Klopotov, Mikhail S. Slobodyan, Vacily A. Klimenov, Kirill Kurgan & Artem Ustinov. (2022) <i>In Situ</i> Studies of Strain Fields in Titanium Welds under Tensile Loads by Digital Image Correlation Method. Solid State Phenomena 328, pages 83-92.
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Mikhail S. Slobodyan. (2021) Arc welding of zirconium and its alloys: A review. Progress in Nuclear Energy 133, pages 103630.
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V. Vaithiyanathan, V. Balasubramanian, S. Malarvizhi, Vijay Petley & Shweta Verma. (2019) Establishing relationship between fusion zone hardness and grain size of gas tungsten constricted arc welded thin sheets of titanium alloy. SN Applied Sciences 2:1.
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Haidara Almansour, Robert Sonntag, Wojciech Pepke, Thomas Bruckner, Jan Philippe Kretzer & Michael Akbar. (2019) Impact of Electrocautery on Fatigue Life of Spinal Fusion Constructs—An In Vitro Biomechanical Study. Materials 12:15, pages 2471.
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Vaithiyanathan V, V Balasubramanian, S Malarvizhi, Petley Vijay & Rao A Gourav. (2019) High temperature tensile properties and microstructural characterization of gas tungsten constricted arc welded Ti–6Al–4V alloy. Materials Research Express 6:9, pages 0965d6.
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J. Szusta, N. Tüzün & Ö. Karakaş. (2019) Monotonic mechanical properties of titanium grade 5 (6Al-4V) welds made by microplasma. Theoretical and Applied Fracture Mechanics 100, pages 27-38.
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V. Anil Kumar, R. K. Gupta, Sushant K. Manwatkar, P. Ramkumar & P. V. Venkitakrishnan. (2016) Effect of Prior and Post-Weld Heat Treatment on Electron Beam Weldments of (α + β) Titanium alloy Ti-5Al-3Mo-1.5V. Journal of Materials Engineering and Performance 25:6, pages 2147-2156.
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M. Balasubramanian. (2016) Prediction of optimum weld pool geometry of PCTIG welded titanium alloy using statistical design. Engineering Science and Technology, an International Journal 19:1, pages 15-21.
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Mingxuan Yang, Bojin Qi, Baoqiang Cong, Fangjun Liu & Zhou Yang. (2013) Effect of pulse frequency on microstructure and properties of Ti-6Al-4V by ultrahigh-frequency pulse gas tungsten arc welding. The International Journal of Advanced Manufacturing Technology 68:1-4, pages 19-31.
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Yi-Hsiang Lin, Kan-Hung Hu, Fang-Hsin Kao, Shing-Hoa Wang, Jer-Ren Yang & Chih-Kuang Lin. (2011) Dynamic strain aging in low cycle fatigue of duplex titanium alloys. Materials Science and Engineering: A 528:13-14, pages 4381-4389.
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M. Balasubramanian, V. Jayabalan & V. Balasubramanian. (2008) Effect of microstructure on impact toughness of pulsed current GTA welded α–β titanium alloy. Materials Letters 62:6-7, pages 1102-1106.
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