[1]
L.E. Andreeva. Elastic elements of the devices. Engineering, 1981, 455 p.
Google Scholar
[2]
A.N. Peisakhov. Materials of construction materials and technology, 2003, 407 p.
Google Scholar
[3]
V.P. Korsunov. Elastic sensing elements (statics, dynamics, reliability). Saratov University, 1980. 264 p.
Google Scholar
[4]
D.V. Manoshin, implant TG improving the efficiency of manufacturing components and devices in the aircraft industry of precision alloys 36NiCrTiAl. Bulletin of Saratov State Technical University. (2012).
Google Scholar
[5]
V.L. Tkalich. Principles of construction, analysis and mathematical modeling: the dissertation of the doctor of technical sciences: 05. 13. 05. Saint-Petersburg , (2001).
Google Scholar
[6]
N.V. Svyazhina, A. Khaydarov, A.N. Khammatov. Formation of bimetallic permanent connection of the alloy 36NiCrTiAl and steel 12Cr18Ni10Ti. Advanced materials with a hierarchical structure for the new technology, and sustainable designs. Tomsk, 2016, pp.408-411.
Google Scholar
[7]
D.P. Ilyaschenko. Investigation of chemical composition and microstructure of welded joints on steel 12Cr18Ni10Ti taken along various technological schemes. Modern high technologies. (2015).
Google Scholar
[8]
D. Samantaray, A. Chaudhuri, U. Borah, A.K. Bhaduri, P. Dutta. Role of grain boundary ferrite layer in dynamic recrystallization of semi-solid processed type 304L austenitic stainless steel, Materials Letters. – V. 179. – 2016. – P. 65-68.
DOI: 10.1016/j.matlet.2016.05.049
Google Scholar
[9]
I.S. Sterin Fundamentals of engineering materials metallurgy and heat treatment, 2003, 344 p.
Google Scholar
[10]
O.S. Zhelezko, S.A. Malakanov, O.P. Shiryaev. Change resistance to deformation of cold steel grade 12Cr18Ni10Ti during heat treatment. Treatment of solid and laminated materials, № 2, (2015).
Google Scholar
[11]
V.F. Danenko, Y.P. Trykov, L. Gurevich, G.V. Ponkratova, On the inhomogeneous deformation in the transition zone bimetal carbon steel steel 12Cr18Ni10Ti. News of Volgograd State Technical University. (2012).
Google Scholar
[12]
B.T. Tuyakbaev, B.K. Akhmetzhanov, M.K. Skakov. Electron beam treatment of welded joints of the alloy aging. Vestnik NNC Issue, 1 March 2007 pp.39-42.
Google Scholar
[13]
V.A. Petrov, V.F. Suhovarov, L.I. Kveglis-Vershinina, The magnetic properties of the alloy 40 CrNiAl-VI. Phys, 1983, number 1, pp.47-52.
Google Scholar
[14]
R. Bozorth ferromagnetism, publishing foreign literature, Moscow, 1956, 784 p.
Google Scholar
[15]
D.D. Mishin Magnetic Materials, M. Vysshaya school, 1981. 335p.
Google Scholar
[16]
V.S. Zhigalov, S.N. Varnakov, K.P. Polyakova, V.A. Seredkin, G.I. Fraley. Methods for producing magnetic layers, and the study of their physical properties. Sib. GAU Krasnoyarsk, 2008. 164 p.
Google Scholar