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Methode nouvelle de photoelasticimetrie a deux dimensions et a trois dimensions
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84881172553
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Sur la realisation experimentale d'un charmp homogenes de contraintes planes en traction biaxiale a l'etreinte
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The biaxial tensile strain field from a conventional load-splitting tree
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A fracture mechanics approach to high-cycle fatigue crack growth under in-plane biaxial loads
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Realisation experimentale de champs homogenes de contraintes planes en traction et compression biaxiales. La deformation et la rupture des solides soumis a des sollicitatione pluriaxiales
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A method for producing a defined uniform biaxial tensile stress field
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On the investigation of biaxial tension on flat specimens
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Experimental procedure for studying fracture of sheet materials under biaxial loading
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Assessment of the resistance to brittle fracture of sheet materials under conditions of biaxial tension
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Influence of load biaxiality on the fracture load of center cracked sheets
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Crack propagation and residual static strength of stiffened and unstiffened sheets
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Justification of plane specimen geometry for technological testing in biaxial tension
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V. N. Shlyannikov and I. N. Shkanov, "Justification of plane specimen geometry for technological testing in biaxial tension, "Issledovaniya po Teorii Obolochek, No. 21, 32-37 (1988).
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84881160133
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A method for determining fracture toughness characteristics for mixed modes of crack propagation
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V. N. Shlyannikov and V. A. Dolgorukov, "A method for determining fracture toughness characteristics for mixed modes of crack propagation, "Zavod. Lab.,53, 67-71 (1987).
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The behaviour of fatigue cracks subject to applied biaxial stress: A review of experimental evidence
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E. W. Swith and K. J. Pascoe, "The behaviour of fatigue cracks subject to applied biaxial stress: a review of experimental evidence, "Fatigue Eng. Mater. Struct.,6, No. 3, 201-224 (1983).
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Development of a biaxial fatigue testing rig
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Strength of veneer of larch wood in biaxial tension
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[in Russian], Moscow
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I. N. Boitemirova, "Strength of veneer of larch wood in biaxial tension," in:Theoretical Investigation of Building Structures [in Russian], Moscow (1977), pp. 116-121.
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A biaxial-tension creep rupture testing machine
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A testing complex for studying strength of thin-sheet materials in biaxial tension in the temperature range from 20 to 300 K
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A. A. Lebedev, N. R. Muzyka, and Yu. L. Yevetsky, "A testing complex for studying strength of thin-sheet materials in biaxial tension in the temperature range from 20 to 300 K,"Probl. Prochn., No. 1, 109-112 (1985).
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84881189791
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Inform. Letter 65, Inst. for Problems of Strength Naukova Dumka Kiev
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V. N. Gorodetsky, N. R. Muzyka, A. P. Dedukh, et al.,Device for the Calibration of Resistance Strain Gauges Inform. Letter No. 65, Inst. for Problems of Strength [in Russian], Naukova Dumka, Kiev (1976).
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Device for the Calibration of Resistance Strain Gauges
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Gorodetsky, V.N.1
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84881188090
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Calculation and experimental determination of the stress-strain state of piecewise inhomogeneous bodies using a numerical method based on a graph model of a solid
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Abstracts of papers [in Russian], Kiev
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Yu. L. Yevetsky, R. F. Sidorenko, and N. R. Muzyka, "Calculation and experimental determination of the stress-strain state of piecewise inhomogeneous bodies using a numerical method based on a graph model of a solid", All-Union Symp. "Strength of Materials and Structural Elements at a Complex Stress State." Abstracts of papers [in Russian], Kiev (1984), pp. 55-56.
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Yevetsky, Y.L.1
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Application of the method of elementary cells for numerical solution of problems of elasticity theory. Report 1. General postulates of the method of elementary cells
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E. G. Kuzovkov, "Application of the method of elementary cells for numerical solution of problems of elasticity theory. Report 1. General postulates of the method of elementary cells,"Probl. Prochn., No. 12, 104-107 (1982).
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Kuzovkov, E.G.1
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Application of the method of elementary cells for numerical solution of problems of elasticity theory. Report 2. Network model of an elastic body
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E. G. Kuzovkov, "Application of the method of elementary cells for numerical solution of problems of elasticity theory. Report 2. Network model of an elastic body,"Probl. Prochn., No. 2, 37-43 (1983).
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Probl. Prochn.
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Kuzovkov, E.G.1
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A procedure for testing specimens with a biaxial stress state under conditions of low temperatures
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M. V. Zinoviev, V. Ya. Ilyichev, V. A. Rykov, et al., "A procedure for testing specimens with a biaxial stress state under conditions of low temperatures,"Probl. Prochn., No. 5, 123-125 (1972).
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Method of low-cycle testing of materials over a wide range of low temperatures
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V. V. Larionov and N. A. Makhutov, "Method of low-cycle testing of materials over a wide range of low temperatures,"Zavod. Lab.,42, No. 1, 88-91 (1976).
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84881187232
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Device for studying plastic properties of hard materials at cryogenic temperatures
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684390 USSR,Otkryt. Izobr.
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I. A. Gindin, A. F. Lerner, A. R. Ryabokon', et al., "Device for studying plastic properties of hard materials at cryogenic temperatures." Auth. Certif. 684390 USSR,Otkryt. Izobr., No. 33 (1979).
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Gindin, I.A.1
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Optical system of strain measurement for a flat specimen in a cryogenic chamber
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N. R. Muzyka, B. V. Marasin, and A. A. Lebedev, "Optical system of strain measurement for a flat specimen in a cryogenic chamber,"Probl. Prochn., No. 5, 113-115 (1984).
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Probl. Prochn.
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Muzyka, N.R.1
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Setup for testing materials for thermal shock resistance
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Auth. Certif
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N. R. Muzyka, "Setup for testing materials for thermal shock resistance". Auth. Certif. 691731 USSR,Otkryt. Izobr., No. 38 (1979).
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Muzyka, N.R.1
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Setup for testing materials at low temperatures
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Auth. Certif. 1021985 USSR
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A. A. Lebedev and N. R. Muzyka, "Setup for testing materials at low temperatures." Auth. Certif. 1021985 USSR,Otkryt. Izobr., No. 21 (1983).
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Lebedev, A.A.1
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84881183928
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A miniature resistance thermometer for 1.3-300 K
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L. I. Zarubin and I. Yu. Nemish, "A miniature resistance thermometer for 1.3-300 K,"Prib. i Tekh. Eksp., No. 4, p. 260 (1971).
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Prib. I Tekh. Eksp.
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Zarubin, L.I.1
Nemish, I.Yu.2
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