1. Remote fibre laser welding of advanced high strength martensitic steelUrban Prijanovič, Marica Tonkovič-Prijanovič, Uroš Trdan, Matej Pleterski, Matija Jezeršek, Damjan Klobčar, 2020, original scientific article Keywords: advanced high-strength steel, laser welding, automotive industry, tensile-shear strength, hardness, heat affected zone (HAZ), microstructure Full text (file, 14,16 MB) This document has more files! More... |
2. Studies on structural, mechanical and erosive wear properties of ZA-27 alloy-based micro-nanocompositesAleksandar Vencl, Mara Kandeva, Elena Zadorozhnaya, Petr Svoboda, Michal Michalec, Aleksandar Milivojević, Uroš Trdan, 2021, original scientific article Keywords: ZA-27 alloy, micro-nanocomposites, compocasting, microstructures, hardness, erosive wear Full text (file, 10,36 MB) This document has more files! More... |
3. New methodology of dynamical material response of dissimilar FSWed Al alloy joint under high strain rate laser shock loadingMohammad Ayad, Lucas Lapostolle, Alexandre Rondepierre, Corentin Le Bras, Selen Ünaldi, Črtomir Donik, Damjan Klobčar, Laurent Berthe, Uroš Trdan, 2022, original scientific article Keywords: friction stir welding, FSW, dissimilar Al alloys, laser induced shock wave propagation, VISAR analysis, dynamic simulation Full text (file, 7,01 MB) This document has more files! More... |
4. Energy density effect of laser alloyed TiB$_2$/TiC/Al composite coatings on LMZ/HAZ, mechanical and corrosion propertiesDunja Ravnikar, Uroš Trdan, Aleš Nagode, Roman Šturm, 2020, original scientific article Keywords: laser surface alloying (LSA), ceramic coatings on Al alloy, microstructure, laser melted/heat affected zone (LMZ/HAZ), microhardness, wear, corrosion Full text (file, 4,25 MB) This document has more files! More... |
5. Improvement of corrosion resistance of AA2024-T3 using femtosecond laser peening without protective and confining mediumUroš Trdan, Sano Tomokazu, Damjan Klobčar, Yuji Sano, Janez Grum, Roman Šturm, 2018, original scientific article Keywords: aluminium, aluminium alloy 2024-T3, polarization, scanning electron microscope - SEM, intergranular corrosion, pitting corrosion Full text (file, 6,59 MB) This document has more files! More... |
6. Effects of laser shock processing on high cycle fatigue crack growth rate and fracture toughness of aluminium alloy 6082-T651Zoran Bergant, Uroš Trdan, Janez Grum, 2016, original scientific article Keywords: laser shock processing, fatigue crack growth, aluminium alloys, residual sresses, fracture toughness Full text (file, 1,29 MB) This document has more files! More... |
7. Application of massive laser shock processing for improvement of mechanical and tribological propertiesUroš Trdan, M. Skarba, Juan Antonio Porro, José Luis Ocaña, Janez Grum, 2018, original scientific article Keywords: laser shock processing, aluminium alloy, wear, microhardness, residual stress, microstructure Full text (file, 2,05 MB) This document has more files! More... |
8. Electrochemical and DFT studies of laser-alloyed TiB2/TiC/Al coatings on aluminium alloyDunja Ravnikar, Ravi Shanker Rajamure, Uroš Trdan, Narendra B. Dahotre, Janez Grum, 2018, original scientific article Keywords: laser coating of aluminum alloy EN AW 6082-T651, TiC-TiB2, pitting corrosion Full text (file, 998,02 KB) This document has more files! More... |
9. Modeling of multi-edge effects in the case of laser shock loadings applied on thin foilsMohammad Ayad, Pierre M. Lapostolle, Alexandre Rondepierre, Corentin Le Bras, M. Scius-Bertrand, Selen Ünaldi, Uroš Trdan, Y. Rouchausse, J. Grassy, T. Maillot, 2022, original scientific article Keywords: aluminum alloys, laserski shock waves, numerical simulation, Johnson-Cook model Full text (outside link) |
10. Transition from superhydrophilic to superhydrophobic state of laser textured stainless steel surface and its effect on corrosion resistanceUroš Trdan, Matej Hočevar, Peter Gregorčič, 2017, original scientific article Keywords: stainless steel, polarization, SEM, intergranular corrosion, passivity, pitting corrosion Full text (file, 794,24 KB) This document has more files! More... |