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  1. The effect of direct energy deposition arc mode on the porosity of AA5087 aluminum alloy / aut. Martin Sahul, Miroslav Sahul, Marián Pavlík, Ladislav Kolařík, Libor Beránek, Jakub Horváth
    Sahul Martin ; 061000  Sahul Miroslav ; 063700 Pavlík Marián ; 063000 Kolařík Ladislav Beránek Libor Horváth Jakub
    Materials Letters . Vol. 363, (2024), art. no. 136224, s. 1-5
    cold metal transfer CMT Pulse CMT Cycle-Step direct energy deposition arc aluminum alloy porosity hydrogen content
    https://www.sciencedirect.com/science/article/pii/S0167577X24003628
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  2. Effect of Travel Speed on the Properties of 5087 Aluminum Alloy Walls Produced by Wire and Arc Additive Manufacturing / aut. Miroslav Sahul, Marián Pavlík, Martin Sahul, Pavel Kovačócy, Maroš Martinkovič
    Sahul Miroslav ; 063700  Pavlík Marián ; 063000 Sahul Martin ; 061000 Kovačócy Pavel ; 063100 Martinkovič Maroš ; 063400
    Journal of Materials Engineering and Performance . Vol. 33, iss. 16 (2024), s. 8582-8600
    5087 aluminium alloy mechanical properties porosity travel speed wire and arc additive manufacturing
    https://link.springer.com/article/10.1007/s11665-024-09166-3
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  3. Reference Sample for Porosity Evaluation by Non – Destructive Method – Industrial Computed Tomography aut. Michaela Kritikos, Martina Kusá
    Kritikos Michaela ; 063200  Kusá Martina ; 063800
    Towards Industry 5.0 : . S. 164-175
    computed tomography porosity defectoscopy Reference sample for porosity evaluation
    https://link.springer.com/chapter/10.1007/978-3-031-24457-5_14
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  4. Effect of Filler Wire Feed Rate on the Formation of Porosity in Laser Welded Joints of Magnesium Alloy AZ31B–H24 / aut. Maroš Vyskoč
    Vyskoč Maroš ; 067000 
    Metals . Vol. 13, iss. 3 (2023), art. no. 460, s. 1-22
    laser welding filler wire magnesium alloy AZ31B–H24 porosity
    https://www.mdpi.com/2075-4701/13/3/460
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  5. The effect of electron beam oscillation on the porosity of third-generation AW2099 aluminium lithium alloy welded joints / aut. Miroslav Sahul, Martin Sahul, Michaela Kritikos, Maroš Vyskoč
    Sahul Miroslav ; 063700  Sahul Martin ; 061000 Kritikos Michaela ; 063200 Vyskoč Maroš ; 067000
    Materials Letters . Vol. 339, (2023), art. no. 134093, s. 1-4
    aluminium lithium alloy electron beam welding beam oscillation computed tomography porosity
    https://www.sciencedirect.com/science/article/pii/S0167577X23002781?dgcid=author
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  6. Investigation of the Surface Layer Hardness When Grinding Sintered Porous Workpieces / aut. Oleg Zabolotnyi, Tetiana Bozhko, Tetiana Halchuk, Olha Zaleta, Dagmar Cagáňová
    Zabolotnyi Oleg  Bozhko Tetiana Halchuk Tetiana Zaleta Olha Cagáňová Dagmar ; 064000
    Advances in Design, Simulation and Manufacturing V. DSMIE 2022 : . S. 355-364
    isostatic pressing sintered powder material porosity cutting modes microhardness manufacturing innovation
    https://link.springer.com/chapter/10.1007/978-3-031-06025-0_35
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  7. Evaluation of gravitational consolidation of binary powder mixtures by modified Heckel equation / aut. Petra Svačinová, Oliver Macho, Žofie Jarolímová, Martin Kuentz, Ľudmila Gabrišová, Zdenka Šklubalová
    Svačinová Petra  Macho Oliver ; 020040 Jarolímová Žofie Kuentz Martin Gabrišová Ľudmila ; 020040 Šklubalová Zdenka
    Powder technology . Vol. 408, (2022), 9 s., art no. 117729
    binárna zmes gravitačná konsolidácia Kawakita model modifikovaný Heckelov model pórovitosť Varthalisov & Pilpelov model binary mixtures consolidation by gravity modified Heckel model porosity Varthalis & Pilpel model
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  8. Evaluation of Aluminium Alloy (AlSi9Cu3(Fe)) Porosity by Destructive and Non-destructive Method (Computed Tomography) / aut. Michaela Kritikos, Martina Kusá, Martin Kusý
    Kritikos Michaela ; 063200  Kusá Martina ; 063800 Kusý Martin ; 061000
    Digitizing Production Systems : . S. 181-191
    non-destructive testing Computed tomography X-ray porosity
    https://link.springer.com/chapter/10.1007/978-3-030-90421-0_15
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  9. The non-planar surface of carbonate rock sample affecting the behaviour of thermal response and the measurement of thermophysical parameters by Pulse Transient Technique / aut. Rupali Tiwari, Vlastimil Boháč, Peter Dieška, Gregor Götzl
    Tiwari Rupali ; 036000  Boháč Vlastimil Dieška Peter ; 036000 Götzl Gregor
    Thermal Science and Engineering Progress . Vol. 24, (2021), Art. no. 100927 [9] s.
    Pulse Transient Technique slab model Thermal contact resistance porosity Sensitivity coefficients and uncertainty analysis Thermophysical properties of rocks
    https://www.sciencedirect.com/science/article/pii/S2451904921000895
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  10. Porosity Analysis of Additive Manufactured Parts Using CAQ Technology
    Pokorný Peter ; 063200  Václav Štefan ; 063600 Petru Jana Kritikos Michaela ; 063200
    Materials [elektronický zdroj] . Vol. 14, iss. 5 (2021), s. 1-14
    porosity additive technology SLM computer tomography
    https://www.mdpi.com/1996-1944/14/5/1142
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