Damage and fracture of metallic materials at high temperatures (in Czech) SKLENICKA, V., SAXL, I. Key words: cavitation, fracture state, fractographic conferences, high temperature damage, metallic materials vol. 37 (1999), no. 3, pp. 145 - 152 Article | Full text not availableDuctile fracture surface morphology of amorphous metallic alloys (in Slovak) MISKUF, J., CSACH, K., OCELIK, V., BENGUS, V. Z., TABACHNIKOVA, E. D., DUHAJ, P. Key words: amorphous metallic alloys, fracture morphology, amorphous ribbon vol. 37 (1999), no. 3, pp. 153 - 164 Article | Full text not available Thermodynamic and fractographic aspects of phosphorus segregation at grain boundaries in low-alloy steels (in Slovak) JANOVEC, J. Key words: thermodynamics, fractography, phosphorus segregation, low alloy steels vol. 37 (1999), no. 3, pp. 165 - 172 Article | Full text not available Shape memory in CuZnAl alloy with dual-phase microstructure (in Slovak) LONGAUER, S., MAKROCZY, P., JANAK, G., LONGAUEROVA, M. Key words: shape memory effect, α/β microstructure, Cu-Zn-Al, martensite vol. 37 (1999), no. 3, pp. 173 - 183 Article | Full text not available Application of fractal analysis to evaluation of fracture surfaces in high-strength structural steels (in Czech) MAZANCOVA, E., MAZANEC, K. Key words: fractal analysis, fractal dimension, linear toughness parameter, surface roughness parameter, granular bainite, M/A particles vol. 37 (1999), no. 3, pp. 184 - 190 Article | Full text not available Strength and deformation characteristics of microalloyed steel with the yield point of 500 MPa at impact loading (in Slovak) MICHEL, J., CIZMAROVA, E., ORUZINSKA, S. Key words: strength, deformation, strenghtening, impact loading, microalloyed steel, microstructure vol. 37 (1999), no. 3, pp. 191 - 199 Article | Full text not available Effect of water environment on fatigue-crack growth of low-alloy high-strength steel (in Czech) MATOCHA, K., TVRDY, M., PAHUTA, P., HYSPECKA, L. Key words: fatigue-crack growth behaviour, high-strength steel, loading frequency, range of stress intensity factor, hydrogen embrittlement vol. 37 (1999), no. 3, pp. 200 - 208 Article | Full text not available
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