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Published in: Metal Science and Heat Treatment 1-2/2018

16-06-2018

Scientific Foundations for Creation of Sheet Materials with Specified Crystallography of Structure for Aerospace Applications

Authors: F. V. Grechnikov, Ya. A. Erisov

Published in: Metal Science and Heat Treatment | Issue 1-2/2018

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Abstract

A yield criterion allowing explicitly for crystal lattice constants and parameters of crystallographic orientation is developed. The possibility of application of this criterion for intensification of processes of deformation of sheet materials from aluminum alloys is considered. Regular features of changes in the crystallographic orientation of structure under rolling and heat treatment of sheets are determined.

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Literature
1.
go back to reference E. N. Kablov, “Materials and chemical technologies for aircraft engineering,” Vest. Ross. Akad. Nauk, 82(6), 520 – 530 (2012). E. N. Kablov, “Materials and chemical technologies for aircraft engineering,” Vest. Ross. Akad. Nauk, 82(6), 520 – 530 (2012).
2.
go back to reference F. V. Grechnikov, Deformation of Anisotropic Materials: Resources of Intensification [in Russian], Mashinostroenie, Moscow (1998), 445 p. F. V. Grechnikov, Deformation of Anisotropic Materials: Resources of Intensification [in Russian], Mashinostroenie, Moscow (1998), 445 p.
3.
go back to reference S. Güngör and L. Edwards, “Effect of surface texture on the initiation and propagation of small fatigue cracks in a forged 6082 aluminum alloy,” Mater. Sci. Eng. A, 160(1), 17 – 24 (1993).CrossRef S. Güngör and L. Edwards, “Effect of surface texture on the initiation and propagation of small fatigue cracks in a forged 6082 aluminum alloy,” Mater. Sci. Eng. A, 160(1), 17 – 24 (1993).CrossRef
4.
go back to reference X. J. Wu, W. Wallace, M. D. Raizenne, and A. K. Koul, “The orientation dependence of fatigue-crack growth in 8090 Al – Li plate,” Metall. Mater. Trans. A, 25(3), 575 – 588 (1994).CrossRef X. J. Wu, W. Wallace, M. D. Raizenne, and A. K. Koul, “The orientation dependence of fatigue-crack growth in 8090 Al – Li plate,” Metall. Mater. Trans. A, 25(3), 575 – 588 (1994).CrossRef
5.
go back to reference V. S. Smirnov and V. D. Durnev, Texture Formation in Metals under Rolling [in Russian], Metallurgiya, Moscow (1971), 254 p. V. S. Smirnov and V. D. Durnev, Texture Formation in Metals under Rolling [in Russian], Metallurgiya, Moscow (1971), 254 p.
6.
go back to reference A. I. Rudskoy, V. V. Paromov, and E. F. Sil’nikova, “Evolution of texture under rolling of aluminum with longitudinal-vertical plane boundaries,” Nauch.-Tekh. Vedom. SPbGPU, No. 84, 103 – 108 (2009). A. I. Rudskoy, V. V. Paromov, and E. F. Sil’nikova, “Evolution of texture under rolling of aluminum with longitudinal-vertical plane boundaries,” Nauch.-Tekh. Vedom. SPbGPU, No. 84, 103 – 108 (2009).
7.
go back to reference A. I. Rudskoy and V. A. Lunev, The Theory and Technology of the Rolling Production [in Russian], Nauka, St. Petersburg (2005), 540 p. A. I. Rudskoy and V. A. Lunev, The Theory and Technology of the Rolling Production [in Russian], Nauka, St. Petersburg (2005), 540 p.
8.
go back to reference V. Yu. Aryshenskii, A. F. Grechnikova, and Ya. A. Erisov, “Effect of texture and structure parameters on the ultimate change of the shape of sheathing sheets under stretch forming,” Vest. Samarsk. Gos. Aerokosm. Univ. Im. Akad. S. P. Koroleva, No. 2(33), 142 – 148 (2012). V. Yu. Aryshenskii, A. F. Grechnikova, and Ya. A. Erisov, “Effect of texture and structure parameters on the ultimate change of the shape of sheathing sheets under stretch forming,” Vest. Samarsk. Gos. Aerokosm. Univ. Im. Akad. S. P. Koroleva, No. 2(33), 142 – 148 (2012).
9.
go back to reference F. V. Grechnikov, V. V. Antipov, Ya. A. Erisov, and A. F. Grechnikova, “Raising the adaptability to manufacture of aluminum glass-fiber plastics by forming effective crystallographic texture in sheets from alloy V95,” Izv. Vyssh. Ucheb. Zaved., Tsvet. Metall., No. 6, 38 – 43 (2014). F. V. Grechnikov, V. V. Antipov, Ya. A. Erisov, and A. F. Grechnikova, “Raising the adaptability to manufacture of aluminum glass-fiber plastics by forming effective crystallographic texture in sheets from alloy V95,” Izv. Vyssh. Ucheb. Zaved., Tsvet. Metall., No. 6, 38 – 43 (2014).
10.
go back to reference F. V. Grechnikov and Y. A. Erisov, “Virtual material model with the given crystallographic orientation of the structure,” Key Eng. Mater., 684, 134 – 142 (2016).CrossRef F. V. Grechnikov and Y. A. Erisov, “Virtual material model with the given crystallographic orientation of the structure,” Key Eng. Mater., 684, 134 – 142 (2016).CrossRef
11.
go back to reference Ya. A. Erisov, F. V. Grechnikov, and S. V. Surudin, “Criterion of plasticity of anisotropic medium with allowance for the crystallography of structure and its experimental verification,” Vest. Magnitogorsk. Gos. Tekh. Univ. Im. G. I. Nosova, 14(4), 42 – 49 (2016). Ya. A. Erisov, F. V. Grechnikov, and S. V. Surudin, “Criterion of plasticity of anisotropic medium with allowance for the crystallography of structure and its experimental verification,” Vest. Magnitogorsk. Gos. Tekh. Univ. Im. G. I. Nosova, 14(4), 42 – 49 (2016).
12.
go back to reference E. V. Aryshenskii, A. M. Ovodenko, and E. D. Beglov, “Development of a method for designing the process of hot rolling of aluminum ribbon in a continuous group of stands with allowance for broadening of the metal and flattening of the rolls,” Proizvod. Prokata, No. 12, 06 – 13 (2012). E. V. Aryshenskii, A. M. Ovodenko, and E. D. Beglov, “Development of a method for designing the process of hot rolling of aluminum ribbon in a continuous group of stands with allowance for broadening of the metal and flattening of the rolls,” Proizvod. Prokata, No. 12, 06 – 13 (2012).
13.
go back to reference O. Engler and K. Lucke, “Mechanisms of recrystallization texture formation in aluminum alloys,” Scr. Metall. Mater., 27, 1527 – 1532 (1992).CrossRef O. Engler and K. Lucke, “Mechanisms of recrystallization texture formation in aluminum alloys,” Scr. Metall. Mater., 27, 1527 – 1532 (1992).CrossRef
Metadata
Title
Scientific Foundations for Creation of Sheet Materials with Specified Crystallography of Structure for Aerospace Applications
Authors
F. V. Grechnikov
Ya. A. Erisov
Publication date
16-06-2018
Publisher
Springer US
Published in
Metal Science and Heat Treatment / Issue 1-2/2018
Print ISSN: 0026-0673
Electronic ISSN: 1573-8973
DOI
https://doi.org/10.1007/s11041-018-0233-2

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