PUBLICATIONS
[95] J. Skiba, M. Kulczyk, S. Przybysz-Gloc, M. Skorupska et al. Effect of microstructure refinement of pure copper on improving the performance of electrodes in electro discharge machining (EDM). Sci Rep 13, 16686, 2023.
[95] J. Skiba, M. Kulczyk, S. Przybysz-Gloc, M. Skorupska et al. Effect of microstructure refinement of pure copper on improving the performance of electrodes in electro discharge machining (EDM). Sci Rep 13, 16686, 2023.
[94] Ł. Maj, Z. Fogarassy, D. Wojtas, A. Jarzębska, F. Muhaffel, A. Sulyok, A. Góral, M. Kulczyk, et al. In-situ formation of Ag nanoparticles in the MAO coating during the processing of cp-Ti. Sci Rep 13, 3230, 2023.
[94] Ł. Maj, Z. Fogarassy, D. Wojtas, A. Jarzębska, F. Muhaffel, A. Sulyok, A. Góral, M. Kulczyk, et al. In-situ formation of Ag nanoparticles in the MAO coating during the processing of cp-Ti. Sci Rep 13, 3230, 2023.
[93] M. Skorupska, M. Kulczyk, P. Denis, D. Grzęda, A. Czajka, J. Ryszkowska, Structural Hierarchy of PA6 Macromolecules after Hydrostatic Extrusion. Materials 16, 3435, 2023.
[93] M. Skorupska, M. Kulczyk, P. Denis, D. Grzęda, A. Czajka, J. Ryszkowska, Structural Hierarchy of PA6 Macromolecules after Hydrostatic Extrusion. Materials 16, 3435, 2023.
[92] S. Przybysz, M. Kulczyk, J. Skiba, M. Skorupska, Anisotropy of structural and mechanical properties in CuCrZr alloy following hydrostatic extrusion proces, Bulletin of the Polish Academy of Sciences Technical Sciences, Vol. 70(4), 2022.
[92] S. Przybysz, M. Kulczyk, J. Skiba, M. Skorupska, Anisotropy of structural and mechanical properties in CuCrZr alloy following hydrostatic extrusion proces, Bulletin of the Polish Academy of Sciences Technical Sciences, Vol. 70(4), 2022.
[91] M. Orłowska, E. Ura-Bińczyk, L. Śnieżek, P. Skudniewski, M. Kulczyk, B. Adamczyk-Cieślak, J. Mizera, Increasing the Mechanical Strength and Corrosion Resistance of Aluminum Alloy 7075 via Hydrostatic Extrusion and Aging. Materials 15, 4577, 2022.
[91] M. Orłowska, E. Ura-Bińczyk, L. Śnieżek, P. Skudniewski, M. Kulczyk, B. Adamczyk-Cieślak, J. Mizera, Increasing the Mechanical Strength and Corrosion Resistance of Aluminum Alloy 7075 via Hydrostatic Extrusion and Aging. Materials 15, 4577, 2022.
[90] J. Skiba, M. Kulczyk, , S. Przybysz-Gloc, M. Skorupska et al. The impact of severe plastic deformations obtained by hydrostatic extrusion on the machinability of ultrafine-grained Ti grade 2 intended for fasteners. Sci Rep 12, 16240, 2022.
[90] J. Skiba, M. Kulczyk, , S. Przybysz-Gloc, M. Skorupska et al. The impact of severe plastic deformations obtained by hydrostatic extrusion on the machinability of ultrafine-grained Ti grade 2 intended for fasteners. Sci Rep 12, 16240, 2022.
[89] M. Orłowska, E. Ura-Bińczyk, L. Śnieżek, P. Skudniewski, M. Kulczyk, B. Adamczyk-Cieślak, K. Majchrowicz, The Influence of Heat Treatment on the Mechanical Properties and Corrosion Resistance of the Ultrafine-Grained AA7075 Obtained by Hydrostatic Extrusion. Materials 15, 4343, 2022.
[89] M. Orłowska, E. Ura-Bińczyk, L. Śnieżek, P. Skudniewski, M. Kulczyk, B. Adamczyk-Cieślak, K. Majchrowicz, The Influence of Heat Treatment on the Mechanical Properties and Corrosion Resistance of the Ultrafine-Grained AA7075 Obtained by Hydrostatic Extrusion....
[88] Ł. Maj, D. Wojtas, A. Jarzębska, M. Bieda, K. Trembecka-Wójciga, R. Chulist, W. Kozioł, A. Góral, A. Trelka, K. Janus, J. Kawałko, M. Kulczyk, F. Muhaffel, H. Çimenoğlu, K. Sztwiertnia, Titania coating formation on hydrostatically extruded pure titanium by micro-arc oxidation method, Journal of Materials Science & Technology, 111, pp. 224-235, 2022.
[88] Ł. Maj, D. Wojtas, A. Jarzębska, M. Bieda, K. Trembecka-Wójciga, R. Chulist, W. Kozioł, A. Góral, A. Trelka, K. Janus, J. Kawałko, M. Kulczyk, F. Muhaffel, H. Çimenoğlu, K. Sztwiertnia, Titania coating formation on hydrostatically extruded pure titanium by...
[87] M. Burdek, B. Garbarz, D. Woźniak, M. Adamczyk, J. Skiba, M. Kulczyk. Niekonwencjonalne metody wytwarzania cienkich drutów stalowych do zastosowania jako materiał wsadowy w technologiach przyrostowych. Part 1: Przygotowanie wsadu do ciągnienia drutów. Journal of Metallic Materials, 74, (3-4), pp. 3-12, 2022.
[87] M. Burdek, B. Garbarz, D. Woźniak, M. Adamczyk, J. Skiba, M. Kulczyk. Niekonwencjonalne metody wytwarzania cienkich drutów stalowych do zastosowania jako materiał wsadowy w technologiach przyrostowych. Part 1: Przygotowanie wsadu do ciągnienia drutów. Journal of...
[86] M. Kulczyk, J. Skiba, M. Skorupska, S. Przybysz, J. Smalc-Koziorowska, Influence of Strain Rates during Severe Plastic Strain Processes on Microstructural and Mechanical Evolution in Pure Zinc. Materials 15, 4892, 2022.
[86] M. Kulczyk, J. Skiba, M. Skorupska, S. Przybysz, J. Smalc-Koziorowska, Influence of Strain Rates during Severe Plastic Strain Processes on Microstructural and Mechanical Evolution in Pure Zinc. Materials 15, 4892, 2022.
[85] A. Towarek, W. Jurczak, J. Zdunek, M. Kulczyk, et al. Influence of Hydrostatic Extrusion on the Mechanical Properties of the Model Al-Mg Alloys. J. of Materi Eng and Perform 30, pp. 3502–3509, 2021.
[85] A. Towarek, W. Jurczak, J. Zdunek, M. Kulczyk, et al. Influence of Hydrostatic Extrusion on the Mechanical Properties of the Model Al-Mg Alloys. J. of Materi Eng and Perform 30, pp. 3502–3509, 2021.
[84] B. Skowrońska, T. Chmielewski, M. Kulczyk, J. Skiba, S. Przybysz, Microstructural Investigation of a Friction-Welded 316L Stainless Steel with Ultrafine-Grained Structure Obtained by Hydrostatic Extrusion. Materials 14, 1537, 2021.
[84] B. Skowrońska, T. Chmielewski, M. Kulczyk, J. Skiba, S. Przybysz, Microstructural Investigation of a Friction-Welded 316L Stainless Steel with Ultrafine-Grained Structure Obtained by Hydrostatic Extrusion. Materials 14, 1537, 2021.
[83] W. Pachla, S. Przybysz, A. Jarzębska, M. Bieda, K. Sztwiertnia, M. Kulczyk, J. Skiba, Structural and mechanical aspects of hypoeutectic Zn–Mg binary alloys for biodegradable vascular stent applications, Bioactive Materials, 6, 1, pp. 26-44, 2021.
[83] W. Pachla, S. Przybysz, A. Jarzębska, M. Bieda, K. Sztwiertnia, M. Kulczyk, J. Skiba, Structural and mechanical aspects of hypoeutectic Zn–Mg binary alloys for biodegradable vascular stent applications, Bioactive Materials, 6, 1, pp. 26-44, 2021.
[82] M. Skorupska, M. Kulczyk, S. Przybysz, J. Skiba, J. Mizeracki, J. Ryszkowska, Mechanical Reinforcement of Polyamide 6 by Cold Hydrostatic Extrusion. Materials 14, 6045. 2021.
[82] M. Skorupska, M. Kulczyk, S. Przybysz, J. Skiba, J. Mizeracki, J. Ryszkowska, Mechanical Reinforcement of Polyamide 6 by Cold Hydrostatic Extrusion. Materials 14, 6045. 2021.
[1] M. Kulczyk, W. Pachla, A. Mazur, R. Diduszko, H. Garbacz, M. Lewandowska, W. Łojkowski, K. J. Kurzydłowski, Microstructure and mechanical properties of nickel deformed by hydrostatic extrusion, Materials Science- Poland, 23 (3), pp. 839-846, 2005.
[1] M. Kulczyk, W. Pachla, A. Mazur, R. Diduszko, H. Garbacz, M. Lewandowska, W. Łojkowski, K. J. Kurzydłowski, Microstructure and mechanical properties of nickel deformed by hydrostatic extrusion, Materials Science- Poland, 23 (3), pp. 839-846, 2005.
[2] W. Pachla, A. Morawski, P. Kováč, I. Hušek, A. Mazur, T. Lada, R. Diduszko,T. Melišek, V. Štrbík, M. Kulczyk, Properties of hydrostatically extruded in situ MgB 2 wires doped with SiC, Superconductor Science and Technology, 19 (1), pp. 1-8, 2006.
[2] W. Pachla, A. Morawski, P. Kováč, I. Hušek, A. Mazur, T. Lada, R. Diduszko,T. Melišek, V. Štrbík, M. Kulczyk, Properties of hydrostatically extruded in situ MgB 2 wires doped with SiC, Superconductor Science and Technology, 19 (1), pp. 1-8, 2006.
[3] A. Daniszewska, W. Łojkowski, H. Fecht, K. J. Kurzydlowski, U. Narkiewicz, G. A. Salishchev, M. J. Zehetbauer, M. Kulczyk, M. Chmielecka, D. Kuzmenko, Metallic nano-materials and nanostructures: Development of technology roadmap, Diffusion and Defect Data Pt.B: Solid State Phenomena, 114 , pp. 345-392, 2006.
[3] A. Daniszewska, W. Łojkowski, H. Fecht, K. J. Kurzydlowski, U. Narkiewicz, G. A. Salishchev, M. J. Zehetbauer, M. Kulczyk, M. Chmielecka, D. Kuzmenko, Metallic nano-materials and nanostructures: Development of technology roadmap, Diffusion and Defect Data Pt.B:...
[4] J. Budniak, M. Lewandowska, W. Pachla, M. Kulczyk, K. J. Kurzydłowski, The influence of hydrostatic extrusion on the properties of an austenitic stainless steel, Diffusion and Defect Data Pt.B: Solid State Phenomena, 114 , pp. 57-62, 2006.
[4] J. Budniak, M. Lewandowska, W. Pachla, M. Kulczyk, K. J. Kurzydłowski, The influence of hydrostatic extrusion on the properties of an austenitic stainless steel, Diffusion and Defect Data Pt.B: Solid State Phenomena, 114 , pp. 57-62, 2006.
[5] M. Kulczyk, W. Pachla, A. Świderska-Sroda, N. Krasilnikov, R. Diduszko, A. Mazur, W. Lojkowski, K. J. Kurzydlowski, Combination of ECAP and hydrostatic extrusion for UFG microstructure generation in nickel, Diffusion and Defect Data Pt.B: Solid State Phenomena, 114 , pp. 51-56, 2006.
[5] M. Kulczyk, W. Pachla, A. Świderska-Sroda, N. Krasilnikov, R. Diduszko, A. Mazur, W. Lojkowski, K. J. Kurzydlowski, Combination of ECAP and hydrostatic extrusion for UFG microstructure generation in nickel, Diffusion and Defect Data Pt.B: Solid State Phenomena,...
[6] P. Widlicki, H. Garbacz, M. Lewandowska, W. Pachla, M. Kulczyk, K. J. Kurzydlowski, The influence of hydrostatic extrusion on the microstructure of 6082 aluminium alloy, Diffusion and Defect Data Pt.B: Solid State Phenomena, 114 , pp. 145-150, 2006.
[6] P. Widlicki, H. Garbacz, M. Lewandowska, W. Pachla, M. Kulczyk, K. J. Kurzydlowski, The influence of hydrostatic extrusion on the microstructure of 6082 aluminium alloy, Diffusion and Defect Data Pt.B: Solid State Phenomena, 114 , pp. 145-150, 2006.
[7] K. Samsel, H. Garbacz, K. J. Kurzydłowski, M. Kulczyk, Zastosowanie wyciskania hydrostatycznego do zagęszczania kompozytów na osnowie fazy międzymetalicznej Ti3Al, Kompozyty, R.7 nr3, pp.130-134, 2007.
[7] K. Samsel, H. Garbacz, K. J. Kurzydłowski, M. Kulczyk, Zastosowanie wyciskania hydrostatycznego do zagęszczania kompozytów na osnowie fazy międzymetalicznej Ti3Al, Kompozyty, R.7 nr3, pp.130-134, 2007.
[8] P. Kováč, I. Hušek, W. Pachla, M. Kulczyk, Properties of seven-filament in situ MgB 2/Fe composite deformed by hydrostatic extrusion, drawing and rolling, Superconductor Science and Technology, 20 (7), art. no. 004, pp. 607-610, 2007.
[8] P. Kováč, I. Hušek, W. Pachla, M. Kulczyk, Properties of seven-filament in situ MgB 2/Fe composite deformed by hydrostatic extrusion, drawing and rolling, Superconductor Science and Technology, 20 (7), art. no. 004, pp. 607-610, 2007.
[9] M. Kulczyk, W. Pachla, A. Mazur, M. Suś-Ryszkowska, N. Krasilnikov, K. J. Kurzydłowski, Producing bulk nanocrystalline materials by combined hydrostatic extrusion and equal-channel angular pressing, Materials Science- Poland, 25 (4), pp. 991-999, 2007.
[9] M. Kulczyk, W. Pachla, A. Mazur, M. Suś-Ryszkowska, N. Krasilnikov, K. J. Kurzydłowski, Producing bulk nanocrystalline materials by combined hydrostatic extrusion and equal-channel angular pressing, Materials Science- Poland, 25 (4), pp. 991-999, 2007.
[10] W. Pachla, M. Kulczyk, M. Suś-Ryszkowska, A. Mazur, K. J. Kurzydłowski, Nanocrystalline titanium produced by hydrostatic extrusion, Journal of Materials Processing Technology, 205 (1-3), pp. 173-182, 2008.
[10] W. Pachla, M. Kulczyk, M. Suś-Ryszkowska, A. Mazur, K. J. Kurzydłowski, Nanocrystalline titanium produced by hydrostatic extrusion, Journal of Materials Processing Technology, 205 (1-3), pp. 173-182, 2008.
[11] P. Kováč, W. Pachla, I. Hušek, M. Kulczyk, T. Melišek, T. Holúbek, R. Diduszko, M. Reissner, Multicore MgB 2 wires made by hydrostatic extrusion, Physica C: Superconductivity and its Applications, 468 (24), pp. 2356-2360, 2008.
[11] P. Kováč, W. Pachla, I. Hušek, M. Kulczyk, T. Melišek, T. Holúbek, R. Diduszko, M. Reissner, Multicore MgB 2 wires made by hydrostatic extrusion, Physica C: Superconductivity and its Applications, 468 (24), pp. 2356-2360, 2008.