298
19 Other Variants of Plasticity Theories
Fig. 19.5 Calculation pattern of fracture evolution in the vicinity of an outcropped coal formation
formation zone. If we mean real geological conditions of a deposit taking into
account cleavage fractures and other geological faults, predictions in Fig. 19.5
cannot be adopted even as a rough approximation of reality.
There are also efforts [6] of using synergetic methods in the technology of
improving the durability of non-ferrous alloys.
References
1. G. Backhaus, Zur analytischen darstellung des material verhalten in plastiaschen bereich.
ZAMM. Bd. 51, 471–477 (1971)
2. S. Batdorf, B. Budiansky, Splitting tests: an alternative to determine the dynamic tensile
strength of ceramic materials, in NACA TC1871 (1949), pp. 1–31
3. S. Batdorf, B. Budiansky, Polyaxial stress-strain relations of a strain-hardening metal. J. Appl.
Mech. 21(76), 323–326 (1954)
4. R. Bellman, Dinamicheskoe programmirovanie [Dynamic programming] (Inostrannaya literatura Publ., Moscow, 1960)
5. J. Bishop, and R. Hill, A theoretical derivation of the plastic properties of a polycrystalline
face-centered metal. Philos. Mag. 42, 1298–1307 (1951)
6. D. Borshchevskaya, povyshenie dolgovechnosti splava amg6m s pozitsii sinergeticheskogo
podkhoda [Increasing the durability of the AMg6M alloy from the position of a synergistic
approach]. Vestnik KHNADU [Bulletin of the Kharkov National Road University] 54, 101–
106 (2011)
19 Other Variants of Plasticity Theories
Fig. 19.5 Calculation pattern of fracture evolution in the vicinity of an outcropped coal formation
formation zone. If we mean real geological conditions of a deposit taking into
account cleavage fractures and other geological faults, predictions in Fig. 19.5
cannot be adopted even as a rough approximation of reality.
There are also efforts [6] of using synergetic methods in the technology of
improving the durability of non-ferrous alloys.
References
1. G. Backhaus, Zur analytischen darstellung des material verhalten in plastiaschen bereich.
ZAMM. Bd. 51, 471–477 (1971)
2. S. Batdorf, B. Budiansky, Splitting tests: an alternative to determine the dynamic tensile
strength of ceramic materials, in NACA TC1871 (1949), pp. 1–31
3. S. Batdorf, B. Budiansky, Polyaxial stress-strain relations of a strain-hardening metal. J. Appl.
Mech. 21(76), 323–326 (1954)
4. R. Bellman, Dinamicheskoe programmirovanie [Dynamic programming] (Inostrannaya literatura Publ., Moscow, 1960)
5. J. Bishop, and R. Hill, A theoretical derivation of the plastic properties of a polycrystalline
face-centered metal. Philos. Mag. 42, 1298–1307 (1951)
6. D. Borshchevskaya, povyshenie dolgovechnosti splava amg6m s pozitsii sinergeticheskogo
podkhoda [Increasing the durability of the AMg6M alloy from the position of a synergistic
approach]. Vestnik KHNADU [Bulletin of the Kharkov National Road University] 54, 101–
106 (2011)
