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Results: 6

Authors: ORLOVA A BURSIK J KUCHAROVA K SKLENICKA V
Citation: A. Orlova et al., MICROSTRUCTURAL DEVELOPMENT DURING HIGH-TEMPERATURE CREEP OF 9-PERCENT CR STEEL, Materials science & engineering. A, Structural materials: properties, microstructure and processing, 245(1), 1998, pp. 39-48

Authors: SKLENICKA V
Citation: V. Sklenicka, HIGH-TEMPERATURE INTERGRANULAR DAMAGE AND FRACTURE, Materials science & engineering. A, Structural materials: properties, microstructure and processing, 234, 1997, pp. 30-36

Authors: KLOC L SKLENICKA V
Citation: L. Kloc et V. Sklenicka, TRANSITION FROM POWER-LAW TO VISCOUS CREEP-BEHAVIOR OF P-91 TYPE HEAT-RESISTANT STEEL, Materials science & engineering. A, Structural materials: properties, microstructure and processing, 234, 1997, pp. 962-965

Authors: HAUPT A MUNZ D SCHEIBE W SCHINKE B SCHMITT R SKLENICKA V
Citation: A. Haupt et al., HIGH-TEMPERATURE CREEP AND CYCLIC DEFORMATION-BEHAVIOR OF AISI-316 L(N) AUSTENITIC STEEL AND ITS MODELING WITH UNIFIED CONSTITUTIVE-EQUATIONS, Nuclear Engineering and Design, 162(1), 1996, pp. 13-20

Authors: VASINA R LUKAS P KUNZ L SKLENICKA V
Citation: R. Vasina et al., INTERACTION OF HIGH-CYCLE FATIGUE AND CREEP IN 9-PERCENT-CR-1-PERCENT-MO STEEL AT ELEVATED-TEMPERATURE, Fatigue & fracture of engineering materials & structures, 18(1), 1995, pp. 27-35

Authors: KUNZ L LUKAS P SKLENICKA V
Citation: L. Kunz et al., INFLUENCE OF NOTCHES AND CRACKS ON LIFETI ME OF 2,25CR-1MO STEEL UNDER FATIGUE CREEP CONDITIONS, Kovove materialy, 31(1), 1993, pp. 76-86
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