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Published in: Metal Science and Heat Treatment 9-10/2014

01-01-2014

Use of Fractography for Estimating Fracture Resistance of Aluminum Alloys

Authors: I. P. Zhegina, L. V. Morozova

Published in: Metal Science and Heat Treatment | Issue 9-10/2014

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Abstract

Fracture surfaces of aluminum alloys VAD23, AK6, V95, 01911, 1420, 1430, 1440, 1451 are studied after different variants of aging. Common features of formation of fractures are determined depending on the modes of heat treatment, conditions of deformation and presence of impurities in the aluminum alloys. Efficiency of the use of fractography for estimating the working capacity of the aluminum alloys is demonstrated.

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Literature
1.
go back to reference E. N. Kablov, “Strategic directions of development of materials and processes of their treatment for the period of up to 2030,” in: Anniversary Sci.-Eng. Digest, Supplement to the Journal “Aviats. Mater. Tekhnol.” [in Russian], VIAM, Moscow (2012), pp. 7 – 17. E. N. Kablov, “Strategic directions of development of materials and processes of their treatment for the period of up to 2030,” in: Anniversary Sci.-Eng. Digest, Supplement to the Journal “Aviats. Mater. Tekhnol.” [in Russian], VIAM, Moscow (2012), pp. 7 – 17.
2.
go back to reference V. V. Antipov, “Strategy of development of titanium, magnesium, beryllium and aluminum alloys,” Ibid., pp. 157 – 167. V. V. Antipov, “Strategy of development of titanium, magnesium, beryllium and aluminum alloys,” Ibid., pp. 157 – 167.
3.
go back to reference I. N. Fridlyander, V. F. Shamrai, and N. V. Shiryaeva, “Discovery of the effect of aging and creation of Al – Li alloy 1420,” Izv. Akad. Nauk SSSR, Metally, 2, 153 – 157 (1965). I. N. Fridlyander, V. F. Shamrai, and N. V. Shiryaeva, “Discovery of the effect of aging and creation of Al – Li alloy 1420,” Izv. Akad. Nauk SSSR, Metally, 2, 153 – 157 (1965).
4.
go back to reference S. G. Alieva, M. B. Altman, S. M. Ambartsumyan, et al., Commercial Aluminum Alloys, A Reference Book [in Russian], Metallurgiya, Moscow (1984), 528 p. S. G. Alieva, M. B. Altman, S. M. Ambartsumyan, et al., Commercial Aluminum Alloys, A Reference Book [in Russian], Metallurgiya, Moscow (1984), 528 p.
5.
go back to reference V. V. Antipov, V. I. Kolobnev, and L. B. Khokhlatova, “Development of aluminum-lithium alloys and multistage aging modes,” Anniversary Sci.-Eng. Digest, Supplement to the Journal “Aviats. Mater. Tekhnol.” [in Russian], VIAM, Moscow (2012), pp. 183 – 196. V. V. Antipov, V. I. Kolobnev, and L. B. Khokhlatova, “Development of aluminum-lithium alloys and multistage aging modes,” Anniversary Sci.-Eng. Digest, Supplement to the Journal “Aviats. Mater. Tekhnol.” [in Russian], VIAM, Moscow (2012), pp. 183 – 196.
6.
go back to reference I. N. Fridlyander and E. I. Kutaitseva, Aluminum Alloys. Commercial Deformable Sintered and Castable Aluminum Alloys [in Russian], Metallurgiya, Moscow (1972), pp. 133 – 164. I. N. Fridlyander and E. I. Kutaitseva, Aluminum Alloys. Commercial Deformable Sintered and Castable Aluminum Alloys [in Russian], Metallurgiya, Moscow (1972), pp. 133 – 164.
7.
go back to reference Yu. Yu. Klochkova, O. E. Grushko, L. P. Lantsova, et al., “Pilot production of semiproducts from promising aluminum alloy V-1469,” Aviats. Mater. Tekhnol., No. 1, 8 – 12 (2011). Yu. Yu. Klochkova, O. E. Grushko, L. P. Lantsova, et al., “Pilot production of semiproducts from promising aluminum alloy V-1469,” Aviats. Mater. Tekhnol., No. 1, 8 – 12 (2011).
8.
go back to reference I. N. Fridlyander, K. V. Chuistov, A. L. Berezina, and N. I. Kolobnev, Aluminum-Lithium Alloys. Structure and Properties [in Russian], Naukova Dumka, Kiev (1992), 192 p. I. N. Fridlyander, K. V. Chuistov, A. L. Berezina, and N. I. Kolobnev, Aluminum-Lithium Alloys. Structure and Properties [in Russian], Naukova Dumka, Kiev (1992), 192 p.
9.
go back to reference I. P. Zhegina, L. B. Khokhlatova, and N. I. Kolobnev, “Effect of conditions of hot deformation on fracture behavior of aluminum-lithium alloys,” Tekhnol. Legk. Splav., No. 6, 30 – 32 (1996). I. P. Zhegina, L. B. Khokhlatova, and N. I. Kolobnev, “Effect of conditions of hot deformation on fracture behavior of aluminum-lithium alloys,” Tekhnol. Legk. Splav., No. 6, 30 – 32 (1996).
10.
go back to reference I. N. Fridlyander, O. E. Grushko, V. V. Antipov, et al., “Aluminum-lithium alloys,” Anniversary Sci.-Eng. Digest, Supplement to the Journal “Aviats. Mater. Tekhnol.” [in Russian], VIAM, Moscow (2007), pp. 163 – 171. I. N. Fridlyander, O. E. Grushko, V. V. Antipov, et al., “Aluminum-lithium alloys,” Anniversary Sci.-Eng. Digest, Supplement to the Journal “Aviats. Mater. Tekhnol.” [in Russian], VIAM, Moscow (2007), pp. 163 – 171.
11.
go back to reference V. I. Lukin, E. N. Ioda, A. V. Bazeskin, et al., “Elevation of reliability of welded joints of high-strength Al – Li alloy 1461,” Svar. Proivod., No. 11, 14 – 17 (2010). V. I. Lukin, E. N. Ioda, A. V. Bazeskin, et al., “Elevation of reliability of welded joints of high-strength Al – Li alloy 1461,” Svar. Proivod., No. 11, 14 – 17 (2010).
12.
go back to reference V. I. Lukin, E. N. Ioda, A. V. Bazeskin, et al., “Fracture behavior of welded joints of aluminum alloy V-1469 formed by friction welding with mixing,” Svar. Proivod., No. 4, 26 – 30 (2011). V. I. Lukin, E. N. Ioda, A. V. Bazeskin, et al., “Fracture behavior of welded joints of aluminum alloy V-1469 formed by friction welding with mixing,” Svar. Proivod., No. 4, 26 – 30 (2011).
13.
go back to reference L. P. Botvina, Fracture: Kinetics, Mechanisms, General Laws [in Russian], Nauka, Moscow (2008), 334 p. L. P. Botvina, Fracture: Kinetics, Mechanisms, General Laws [in Russian], Nauka, Moscow (2008), 334 p.
14.
go back to reference E. I. Mamaeva (ed.), Mechanical Engineering. Encyclopedia, Vol. II-1: Physicomechanical Properties, Tests of Metallic Materials [in Russian], Mashinostroenie, Moscow (2010), pp. 758 – 762. E. I. Mamaeva (ed.), Mechanical Engineering. Encyclopedia, Vol. II-1: Physicomechanical Properties, Tests of Metallic Materials [in Russian], Mashinostroenie, Moscow (2010), pp. 758 – 762.
17.
go back to reference G. V. Klevtsov, L. P. Botvina, N. A. Klevtsova, and L. V. Limar’, Fractodiagnostics of Fracture of Metallic Materials and Structures [in Russian], MISiS, Moscow (2007), 259 p. G. V. Klevtsov, L. P. Botvina, N. A. Klevtsova, and L. V. Limar’, Fractodiagnostics of Fracture of Metallic Materials and Structures [in Russian], MISiS, Moscow (2007), 259 p.
Metadata
Title
Use of Fractography for Estimating Fracture Resistance of Aluminum Alloys
Authors
I. P. Zhegina
L. V. Morozova
Publication date
01-01-2014
Publisher
Springer US
Published in
Metal Science and Heat Treatment / Issue 9-10/2014
Print ISSN: 0026-0673
Electronic ISSN: 1573-8973
DOI
https://doi.org/10.1007/s11041-014-9656-6

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