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A machine has always been, is and will be the technical progress. The basis of every economy is the progressiveness of manufacturing engineering since it manufactures components for all industries. Technical requirements in manufacturing engineering are constantly leading to an increase of the technical level of manufacturing equipment. Profound knowledge of scientific fields precedes a successful fulfilment of the technical requirements. Structural units of manufacturing machines are complex mechanisms that must work reliably and safely with an emphasis on their important function. These units create new objectives for their research and optimization.
Wydawca
Czasopismo
Rocznik
Tom
Strony
66--76
Opis fizyczny
Bibliogr. 21 poz.
Twórcy
autor
- Technical University of Košice Faculty of Manufacturing Technologies Štúrova 31, 080 01 Prešov, Slovakia
autor
- Technical University of Košice Faculty of Manufacturing Technologies Štúrova 31, 080 01 Prešov, Slovakia
autor
- Technical University of Košice Faculty of Manufacturing Technologies Štúrova 31, 080 01 Prešov, Slovakia
autor
- Technical University of Košice Faculty of Manufacturing Technologies Štúrova 31, 080 01 Prešov, Slovakia
Bibliografia
- [1] Remco, I. L.; Henk, N. Dynamics and Bifurcations of NonSmooth Mechanical Systems. Springer. 2004. ISBN 978-3-642-06029-8
- [2] Kasanický, G.; Kohút, P.; Lukášik, M. Teória pohybu a rázu pri analýze a simulácii nehodového deja. Žilinská univerzita. 2001. ISBN 8071005975
- [3] Trebuňa, F; Šimčak, F. Metódy experimentálnej analýzy napätosti. Strojnícka fakulta TU v Košiciach, 2011. ISBN 978-80-553-0766-4
- [4] Trebuňa, F.; Šimčák, F. Odolnosť prvkov mechanických sústav. TUKE, Košice, 2004. ISBN 978-80-807-3148-9
- [5] Trebuňa, F.; Šimčák, F.; Huňady, R. Kmitanie a modálna analýza mechanických sústav. TUKE, 2012. ISBN 978-80-553-1206-4
- [6] Bocko, J.; Segľa, Š.; Huňady, R. Kmitanie mechanických sústav. TUKE. 2016. ISBN 978-80-553-2629-0
- [7] Pavlenko, S.: Dynamické zaťaženie závitovkových prevodov. TUKE. 2006. ISBN 80- 8073-475-5
- [8] Pilc, J.; Stančeková, D.; Mičietová, A. Jednoúčelové stroje a výrobné linky. Žilinská univerzita. 2001. ISBN 80-7100-810-9
- [9] Demeč, P. Výrobná technika - základy stavby. TUKE. 2013. ISBN 978-80-553-1615-4
- [10] Stradiot, J.; Michalíček, M.; Mudrik, J.; Slavkovský, J.; Záhorec, O.; Žiaran, S. Dynamika strojov. 1991. ISBN 80-05-00756-6
- [11] Palko, A. Dopravníky a dopravné systémy. TUKE. 2012. ISBN 978-80-7165-871-9 [12] Jasaň, V.; Košábek, J.; Szuttor, N. Teória dopravných a manipulačných zariadení. Žilinská univerzita. 1989. ISBN 80-05-00125-8
- [13] Kascak, J. et al. Design of an Atypical Construction of Equipment for Additive Manufacturing with a Conceptual Solution of a Printhead Intended for the Use of Recycled Plastic Materials. Appl. Sci., 2021, Vol. 11, p. 2928.
- [14] Majernik, J., Gaspar, S., Husar, J., Pasko, J., Kolinsky, J. Research and Evaluation of the Influence of the Construction of the Gate and the Influence of the Piston Velocity on the Distribution of Gases into the Volume of the Casting. Materials, 2021, Vol. 14, p. 2264.
- [15] Mascenik, J., Pavlenko, S. Innovative broad - Spectrum testing and monitoring of belt transmissions. MM Science Journal, 2018, Vol. Dec., pp. 2706-2709.
- [16] Mital, G., Spisak E., Mulidran, P., Kascak, L., Jezny, T. 3D evaluation of the topography of the surface by abrasive water jet machining technology. MM Science Journal, 2021, Vol. Oct., pp. 4847-4852. [17] Mascenik, J. Implementation of the designed program for calculation and check of chain gears. MM Science Journal, 2019, Vol. Dec., pp. 3431-3434.
- [18] Gaspar, S. et al. Influence of Gating System Parameters of Die-Cast Molds on Properties of Al-Si Castings. Materials, 2021, Vol. 14, 3755.
- [19] Husar, J., Knapcikova, L., Balog, M. Implementation of material flow simulation as a learning tool. Advances in Design, Simulation and Manufacturing. Springer, 2019. [20] Ivanov, V. et al. Using the Augmented Reality for Training Engineering Students. Advances in Design, Simulation and Manufacturing, Springer, 2018. ISBN 9781510872226.
- [21] Mascenik, M., Gaspar, S. Experimental Assessment of Roughness Changes in the Cutting Surface and Microhardness Changes of the Material S 355 J2 G3 after Being Cut by Non-Conventional Technologies. Materials Processing Technology, 2011, Vol. 314, pp. 1944-1947. ISSN 1022-6680
Uwagi
PL
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-bc6a52a3-04fe-448c-893c-02cb622ee878