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Published in: Metal Science and Heat Treatment 9-10/2017

21-01-2017 | TITANIUM ALLOYS

Modern Sparingly Alloyed Titanium Alloys: Application and Prospects

Authors: N. A. Nochovnaya, P. V. Panin, E. B. Alekseev, K. A. Bokov

Published in: Metal Science and Heat Treatment | Issue 9-10/2017

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Abstract

Comparative analysis of the properties of domestic and foreign sparingly alloyed titanium alloys is preformed, and the main tendencies and prospects of their development are considered. Recent works of FGUP “VIAM” in the field of creation and approbation of various-purpose low-alloy titanium alloys are reviewed.

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Footnotes
1
K β is the coefficient of β-stabilization of the alloy [6].
 
2
Here and below in the paper the content of elements is given is wt.%, if not indicated otherwise.
 
Literature
1.
go back to reference E. N. Kablov, “Innovative works at FGUP “VIAM” RF State Research Center on implementation of the “Strategic Directions of Advancement of Materials and Methods of their Processing until 2030,” Aviats. Mater. Tekhnol., No. 1(34), 3 – 33 (2015). E. N. Kablov, “Innovative works at FGUP “VIAM” RF State Research Center on implementation of the “Strategic Directions of Advancement of Materials and Methods of their Processing until 2030,” Aviats. Mater. Tekhnol., No. 1(34), 3 – 33 (2015).
2.
go back to reference V. V. Antipov, O. G. Senatorova, N. F. Lukina, et al., “Multilayer metal-polymer composite materials,” Aviats. Mater. Tekhnol., No. S, 226 – 230 (2012). V. V. Antipov, O. G. Senatorova, N. F. Lukina, et al., “Multilayer metal-polymer composite materials,” Aviats. Mater. Tekhnol., No. S, 226 – 230 (2012).
3.
go back to reference E. N. Kablov, V. V. Antipov, and O. G. Senatorova, “Aluminum-glass-reinforced laminates SIAL-1441 and cooperation with Airbus and TUDELFT,” Tsvetn. Met., No. 9(849), 50 – 53 (2013). E. N. Kablov, V. V. Antipov, and O. G. Senatorova, “Aluminum-glass-reinforced laminates SIAL-1441 and cooperation with Airbus and TUDELFT,” Tsvetn. Met., No. 9(849), 50 – 53 (2013).
4.
go back to reference N. A. Nochovnaya, P. V. Panin, E. B. Alekseev, and K. A. Bokov, “Sparingly alloyed titanium alloys for multilayer metal-polymer composite materials,” Trudy VIAM, No. 11, Art. 0.2 (2014) (viam-works.ru). N. A. Nochovnaya, P. V. Panin, E. B. Alekseev, and K. A. Bokov, “Sparingly alloyed titanium alloys for multilayer metal-polymer composite materials,” Trudy VIAM, No. 11, Art. 0.2 (2014) (viam-works.ru).
5.
go back to reference P. Panin, N. Nochovnaya, D. Kablov, and E. Alexeev, “Lowcost titanium alloys for titanium-polymer layered composites,” in: Proc. 29th Congr. Int. Council of the Aeronautical Sciences (ICAS 2014), St. Petersburg, Sept. 7 – 12, 2014 [CD]. P. Panin, N. Nochovnaya, D. Kablov, and E. Alexeev, “Lowcost titanium alloys for titanium-polymer layered composites,” in: Proc. 29th Congr. Int. Council of the Aeronautical Sciences (ICAS 2014), St. Petersburg, Sept. 7 – 12, 2014 [CD].
6.
go back to reference A. A. Il’in, B. A. Kolachev, and I. S. Pol’kin, Titanium Alloys. Composition, Structure, Properties [in Russian], VILS – MATI, Moscow (2009), 520 p. A. A. Il’in, B. A. Kolachev, and I. S. Pol’kin, Titanium Alloys. Composition, Structure, Properties [in Russian], VILS – MATI, Moscow (2009), 520 p.
7.
go back to reference A. I. Khorev, S. P. Belov, and S. G. Glazunov, The Physical Metallurgy of Titanium and its Alloys [in Russian], Metallurgiya, Moscow (1992), 352 p. A. I. Khorev, S. P. Belov, and S. G. Glazunov, The Physical Metallurgy of Titanium and its Alloys [in Russian], Metallurgiya, Moscow (1992), 352 p.
8.
go back to reference M. Niinomi, “Recent trends in titanium research and development in Japan,” in: Proc. 12th World Conf. on Titanium (2011), Vol. 1, pp. 30 – 37. M. Niinomi, “Recent trends in titanium research and development in Japan,” in: Proc. 12th World Conf. on Titanium (2011), Vol. 1, pp. 30 – 37.
9.
go back to reference S. V. Skvortsova, A. A. Filatov, D. A. Dzunovich, and P. V. Panin, “Effect of aluminum content on deformability of titanium alloys at normal temperature,” Tekhnol. Legk. Splavov, No. 3, 40 – 45 (2008). S. V. Skvortsova, A. A. Filatov, D. A. Dzunovich, and P. V. Panin, “Effect of aluminum content on deformability of titanium alloys at normal temperature,” Tekhnol. Legk. Splavov, No. 3, 40 – 45 (2008).
10.
go back to reference E. N. Kablov, O. G. Ospennikova, and A. V. Vershkov, “Rare metals and rare earth elements—materials for recent and future advanced technologies,” Trudy VIAM, No. 2, Art. 01 (2013) (viam-works.ru). E. N. Kablov, O. G. Ospennikova, and A. V. Vershkov, “Rare metals and rare earth elements—materials for recent and future advanced technologies,” Trudy VIAM, No. 2, Art. 01 (2013) (viam-works.ru).
11.
go back to reference I. I. Sokolov and A. E. Raskutin, “New-generation carbon-filled and fiberglass plastics,” Trudy VIAM, No. 4, Art. 09 (2013) (viam-works.ru). I. I. Sokolov and A. E. Raskutin, “New-generation carbon-filled and fiberglass plastics,” Trudy VIAM, No. 4, Art. 09 (2013) (viam-works.ru).
12.
go back to reference V. G. Antashev, N. A. Nochovnaya, V. E. Bolshakov, and E. N. Kablov, Titanium-Base Alloy and Article Fabricated from It, RF Patent No. 2222627 [in Russian], Publ. 27.01.2004. V. G. Antashev, N. A. Nochovnaya, V. E. Bolshakov, and E. N. Kablov, Titanium-Base Alloy and Article Fabricated from It, RF Patent No. 2222627 [in Russian], Publ. 27.01.2004.
13.
go back to reference D. E. Kablov, P. V. Panin, A. A. Shiryaev, and N. A. Nochovnaya, “Experience of application of ALD VAR L200 vacuumarc furnace for melting ingots of refractory alloys based on titanium aluminides,” Aviats. Mater. Tekhnol., No. 2(31), 27 – 33 (2014). D. E. Kablov, P. V. Panin, A. A. Shiryaev, and N. A. Nochovnaya, “Experience of application of ALD VAR L200 vacuumarc furnace for melting ingots of refractory alloys based on titanium aluminides,” Aviats. Mater. Tekhnol., No. 2(31), 27 – 33 (2014).
14.
go back to reference H. Conrad, “Effect of interstitial solutes on the strength and ductility of titanium,” Progr. Mater. Sci., 26(2 – 4), 123 – 403 (1981). H. Conrad, “Effect of interstitial solutes on the strength and ductility of titanium,” Progr. Mater. Sci., 26(2 – 4), 123 – 403 (1981).
15.
go back to reference J. Zhu, A. Kamiya, T. Yamada, W. Shi, and K. Naganuma, “Influence of boron addition on microstructure and mechanical properties of dental cast titanium alloys,” Mater. Sci. Eng. A, 339(1 – 2), 53 – 62 (2003). J. Zhu, A. Kamiya, T. Yamada, W. Shi, and K. Naganuma, “Influence of boron addition on microstructure and mechanical properties of dental cast titanium alloys,” Mater. Sci. Eng. A, 339(1 – 2), 53 – 62 (2003).
16.
go back to reference T. Ando, K. Nakashima, T. Tsuchiyama, and S. Takaki, “Precipitation of fine beta-phase in high nitrogen titanium alloy,” in: Proc. 11th World Conf. on Titanium (2007), Vol. 1, pp. 447 – 450. T. Ando, K. Nakashima, T. Tsuchiyama, and S. Takaki, “Precipitation of fine beta-phase in high nitrogen titanium alloy,” in: Proc. 11th World Conf. on Titanium (2007), Vol. 1, pp. 447 – 450.
17.
go back to reference M. Koike, C. Ahkubo, H. Sato, H. Fujii, and T. Okabe, “Evaluation of cast Ti – Fe – O – N alloys for dental applications,” Mater. Sci. Eng. C, 25(3), 349 – 356 (2005).CrossRef M. Koike, C. Ahkubo, H. Sato, H. Fujii, and T. Okabe, “Evaluation of cast Ti – Fe – O – N alloys for dental applications,” Mater. Sci. Eng. C, 25(3), 349 – 356 (2005).CrossRef
18.
go back to reference T. Furuta, et al., High-Strength Titanium Alloy and Method for Production Thereof, EP Patent 1375690, publ. 02.01.2004. T. Furuta, et al., High-Strength Titanium Alloy and Method for Production Thereof, EP Patent 1375690, publ. 02.01.2004.
19.
go back to reference D. J. Bryan, High Strength Alpha/Beta Titanium Alloy Fasteners and Fastener Stock, US Appl. 2012/0076612, publ. 29.05.2012. D. J. Bryan, High Strength Alpha/Beta Titanium Alloy Fasteners and Fastener Stock, US Appl. 2012/0076612, publ. 29.05.2012.
20.
go back to reference Y. Kosaka, Titanium-Aluminum-Vanadium Alloys and Products Made Therefrom, US Patent 5980655, Titanium Metals Corp., publ. 09.11.1999. Y. Kosaka, Titanium-Aluminum-Vanadium Alloys and Products Made Therefrom, US Patent 5980655, Titanium Metals Corp., publ. 09.11.1999.
21.
go back to reference WO Appl. 2012/012102, Processing of Titanium-Aluminum-Vanadium Alloys and Products Made Thereby, ATI Properties Inc. Publ., publ. 26.01.2012. WO Appl. 2012/012102, Processing of Titanium-Aluminum-Vanadium Alloys and Products Made Thereby, ATI Properties Inc. Publ., publ. 26.01.2012.
22.
go back to reference S. V. Skvortsova, A. A. Il’in, S. Ya. Betsofen, et al., “Anisotropy of mechanical properties and texture of sheet semiproducts from titanium alloys,” Tekhnol. Legk. Splavov, No. 1 – 2, 81 – 87 (2006). S. V. Skvortsova, A. A. Il’in, S. Ya. Betsofen, et al., “Anisotropy of mechanical properties and texture of sheet semiproducts from titanium alloys,” Tekhnol. Legk. Splavov, No. 1 – 2, 81 – 87 (2006).
23.
go back to reference S. V. Skvortsova, D. A. Dzunovich, P. V. Panin, and L. A. Snegireva, “Formation of texture in sheet semiproducts of titanium alloy VT16 under plastic deformation and heat treatment,” Aviats. Prom.-st’, No. 4, 25 – 29 (2007). S. V. Skvortsova, D. A. Dzunovich, P. V. Panin, and L. A. Snegireva, “Formation of texture in sheet semiproducts of titanium alloy VT16 under plastic deformation and heat treatment,” Aviats. Prom.-st’, No. 4, 25 – 29 (2007).
24.
go back to reference A. A. Il’in, S. V. Skvortsova, D. A. Dzunovich, et al., “Effect of parameters of heat and thermomechanical treatment on formation of texture in sheet semiproducts from titanium alloys,” Tekhnol. Mashinostr., No. 8, 8 – 12 (2012). A. A. Il’in, S. V. Skvortsova, D. A. Dzunovich, et al., “Effect of parameters of heat and thermomechanical treatment on formation of texture in sheet semiproducts from titanium alloys,” Tekhnol. Mashinostr., No. 8, 8 – 12 (2012).
25.
go back to reference K. Takahashi, et al., Titanium Alloy Part and Method of Manufacturing Same, EP Patent 2508643, Nippon Steel Corp., publ. 10.10.2012. K. Takahashi, et al., Titanium Alloy Part and Method of Manufacturing Same, EP Patent 2508643, Nippon Steel Corp., publ. 10.10.2012.
26.
go back to reference US Appl. 2012/0107132, Titanium Alloy with Improved Properties, Titanium Metals. Corp., publ. 03.05.2012. US Appl. 2012/0107132, Titanium Alloy with Improved Properties, Titanium Metals. Corp., publ. 03.05.2012.
27.
go back to reference C. Siemers, P. Jencus, M. Baker, J. Roster, and F. Feyerabend, “A new free matching titanium alloy containing lanthanum,” in: Proc. 11thWorld Conf. on Titanium (2007), Vol. 1, pp. 709 – 712. C. Siemers, P. Jencus, M. Baker, J. Roster, and F. Feyerabend, “A new free matching titanium alloy containing lanthanum,” in: Proc. 11thWorld Conf. on Titanium (2007), Vol. 1, pp. 709 – 712.
28.
go back to reference JP Patent 2006052418, Method for Manufacturing \( \alpha \) + β Type Titanium Alloy, Nippon Sangyo, Honda Motor Co., publ. 23.02.2006. JP Patent 2006052418, Method for Manufacturing \( \alpha \) + β Type Titanium Alloy, Nippon Sangyo, Honda Motor Co., publ. 23.02.2006.
29.
go back to reference T. Hashiki, “Development of a high temperature oxidation-resistant titanium alloy for exhaust systems of motorcycles and automobiles,” in: Proc. 11th World Conf. on Titanium (2007), Vol. II, pp. 1387 – 1390. T. Hashiki, “Development of a high temperature oxidation-resistant titanium alloy for exhaust systems of motorcycles and automobiles,” in: Proc. 11th World Conf. on Titanium (2007), Vol. II, pp. 1387 – 1390.
30.
go back to reference H. Otsuka, K. Takahashi, Y. Itami, H. Fujii, and K. Tokuno, “Formability of newly developed high-performance titanium alloys for automotive exhaust systems,” in: Proc. 11th World Conf. on Titanium (2007), Vol. I, pp. 251 – 254. H. Otsuka, K. Takahashi, Y. Itami, H. Fujii, and K. Tokuno, “Formability of newly developed high-performance titanium alloys for automotive exhaust systems,” in: Proc. 11th World Conf. on Titanium (2007), Vol. I, pp. 251 – 254.
31.
go back to reference K. Mori and H. Fujii, “Effect of Mo and FeTi formation in Ti – Al – Fe based titanium alloys,” in: Proc. 11th World Conf. on Titanium (2007), Vol. I, pp. 729 – 732. K. Mori and H. Fujii, “Effect of Mo and FeTi formation in Ti – Al – Fe based titanium alloys,” in: Proc. 11th World Conf. on Titanium (2007), Vol. I, pp. 729 – 732.
32.
go back to reference M. Abdelkawy, K. Ibrahim, A. Hussein, M. Mhead, and L. Wagner, “Effect of Si-addition as a grain refiner on microstructure and properties of Ti – 6Al – 4V alloys,” in: Proc. 12th World Conf. on Titanium (2012), Vol. II, pp. 845 – 849. M. Abdelkawy, K. Ibrahim, A. Hussein, M. Mhead, and L. Wagner, “Effect of Si-addition as a grain refiner on microstructure and properties of Ti – 6Al – 4V alloys,” in: Proc. 12th World Conf. on Titanium (2012), Vol. II, pp. 845 – 849.
33.
go back to reference A. Suzuki and T. Noda, High Strength Ti Alloy and Its Production Method, JP Patent 2004010963, publ. 15.02.2004. A. Suzuki and T. Noda, High Strength Ti Alloy and Its Production Method, JP Patent 2004010963, publ. 15.02.2004.
34.
go back to reference Titanium Alloy Incorporated with Boron Added, JP Patent 2004277873, Nippon Sangyo, publ. 07.10.2004. Titanium Alloy Incorporated with Boron Added, JP Patent 2004277873, Nippon Sangyo, publ. 07.10.2004.
35.
go back to reference P. Garcia Esteban et al., Low-Cost Titanium Alloys and Methods for Preparation Thereof, WO Appl. 2010/015723, publ. 11.02.2010. P. Garcia Esteban et al., Low-Cost Titanium Alloys and Methods for Preparation Thereof, WO Appl. 2010/015723, publ. 11.02.2010.
36.
go back to reference V. V. Tetyukhin, V. I. Zakharov, and I. V. Levin, Titanium-Base Alloy and Method of Heat Treatment of Large-Size Semiproducts from This Alloy, RF Patent 216904 [in Russian], publ. 20.06.2001. V. V. Tetyukhin, V. I. Zakharov, and I. V. Levin, Titanium-Base Alloy and Method of Heat Treatment of Large-Size Semiproducts from This Alloy, RF Patent 216904 [in Russian], publ. 20.06.2001.
37.
go back to reference V. V. Tetyukhin, V. I. Zakharov, and I. V. Levin, Titanium-Based Alloy, RF Patent 2169782 [in Russian], publ. 06.05.2006. V. V. Tetyukhin, V. I. Zakharov, and I. V. Levin, Titanium-Based Alloy, RF Patent 2169782 [in Russian], publ. 06.05.2006.
38.
go back to reference I. V. Levin, Titanium-Based Alloy, Patent EP 1882752 [in Russian], publ. 03.06.2099. I. V. Levin, Titanium-Based Alloy, Patent EP 1882752 [in Russian], publ. 03.06.2099.
39.
go back to reference V. V. Tetjukhin, et al., Titanium-Based Alloy, US Patent 6632396, publ. 14.10.2003. V. V. Tetjukhin, et al., Titanium-Based Alloy, US Patent 6632396, publ. 14.10.2003.
40.
go back to reference Alpha-Beta Ti – Al – V – Mo – Fe Alloy, US Patent 6786985, Titanium Metals Corp., publ. 07.09.2004. Alpha-Beta Ti – Al – V – Mo – Fe Alloy, US Patent 6786985, Titanium Metals Corp., publ. 07.09.2004.
41.
go back to reference Y. Kosaka and K. Takahashi, “Recent development of titanium and its alloys in automotive and motorcycle applications,” in: Proc. 11th World Conf. on Titanium (2007), Vol. II, pp. 1383 – 1386. Y. Kosaka and K. Takahashi, “Recent development of titanium and its alloys in automotive and motorcycle applications,” in: Proc. 11th World Conf. on Titanium (2007), Vol. II, pp. 1383 – 1386.
42.
go back to reference Titanium Alloy Having Excellent High-Temperature Oxidation and Corrosion Resistance, US Patent 7166367, Kobe Steel Ltd., publ. 23.01.2007. Titanium Alloy Having Excellent High-Temperature Oxidation and Corrosion Resistance, US Patent 7166367, Kobe Steel Ltd., publ. 23.01.2007.
43.
go back to reference Alpha Plus Beta Type Titanium Alloy, US Appl. 2009/0169416, Morris Manning Martin LLP, publ. 02.07.2009. Alpha Plus Beta Type Titanium Alloy, US Appl. 2009/0169416, Morris Manning Martin LLP, publ. 02.07.2009.
Metadata
Title
Modern Sparingly Alloyed Titanium Alloys: Application and Prospects
Authors
N. A. Nochovnaya
P. V. Panin
E. B. Alekseev
K. A. Bokov
Publication date
21-01-2017
Publisher
Springer US
Published in
Metal Science and Heat Treatment / Issue 9-10/2017
Print ISSN: 0026-0673
Electronic ISSN: 1573-8973
DOI
https://doi.org/10.1007/s11041-017-0047-7

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