Minimum dimensions of the elementary cell of the polycrystal having the average mechanical properties of the macrovolume
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Keywords
Mechanical Property Elementary Cell Minimum Dimension Average Mechanical Property
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Literature Cited
- 1.A. A. Il'yushin and V. S. Lenskii, Strength of Materials [in Russian], Fizmatigz, Moscow (1959).Google Scholar
- 2.V. V. Volotin, I. I. Gol'denblat, and A. F. Smirnov, Engineering Mechanics. Current State and Development Prospects [in Russian], Stroiizdat, Moscow (1972), pp. 65–98.Google Scholar
- 3.V. A. Lomakin, L. V. Kuksa, and Yu. N. Bakhtin, “The scale effect of the elastic properties of polycrystalline materials,” Prikl. Mekh., No. 9, 10–15 (1982).Google Scholar
- 4.L. V. Kuksa, “Practical application of the results of examination of microheterogeneity of plastic deformation of real polycrystalline alloys,” in: Proceedings of All-Union Symposium on the Problems of Theory of Plasticity in Modern Technology [in Russian], Moscow University, Moscow (1958).Google Scholar
- 5.M. A. Drozd, Determination of the Mechanical Properties of Metal without Fracturing [in Russian], Metallurgiya, Moscow (1965).Google Scholar
- 6.L. V. Kuksa and V. A. Vasil'ev, “A device for lowering the indentor in the microhardness meter,” Inventor's Certificate No. 627381, USSR, 18.8.1978, Byulletin No. 37.Google Scholar
- 7.V. K. Grigorovich, “Examination of the anisotropy of the mechanical properties of metals, semiconductors, and the minerals by the microhardness method,” in: Methods of Microhardness Testings. Devices [in Russian], Nauka, Moscow (1965), pp. 223–230.Google Scholar
- 8.S. I. Lebedeva, “Application of the microhardness method in mineralogy,” in: Methods of Microhardness Testings. Devices [in Russian], Nauka, Moscow (1965), pp. 191–200.Google Scholar
- 9.A. V. Gur'ev and G. V. Malovechko, “Determination of the anisotropy of mechanical properties in microregions of polycrystalline metals by the microhardness testing method,” in: New Developments in Microhardness Testing [in Russian], Nauka, Moscow (1974), pp. 191–197.Google Scholar
- 10.V. E. Gmurman, Theory of Probability and Mathematical Statistics [in Russian], Vysshaya Shkola, Moscow (1977).Google Scholar
- 11.G. V. Malovechko, “Reliability of determination of microhardness in polycrystalline metals,” in: Physical Metallurgy and Strength of Materials [in Russian], No. 6 (1974), pp. 148–151.Google Scholar
- 12.V. K. Grigorovich, Hardness and Microhardness of Metals [in Russian], Nauka, Moscow (1976).Google Scholar
- 13.M. S. Drozd and Yu. I. Slavskii, “Examination of the plastically deformed volume around a conical indentation in connection with the susceptibility of metal to uniform deformation,” in: Physical Metallurgy and Strength of Materials [in Russian], No. 6 (1974), pp. 105–113.Google Scholar
- 14.Ya. B. Fridman, Mechanical Properties of Metals [in Russian], Vol. 1, Mashinostroenie, Moscow (1974).Google Scholar
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