[1]
H. Huang, P. Chuang, Specification, modelling and control of a flexible manufacturing cell, International Journal of Production Research 30 (1992) 2515-2543.
Google Scholar
[2]
M. Kováč, RTK Structure Formation (Tvorba štruktúr RTK), VUKOV, Prešov, 1990 (in Slovak).
Google Scholar
[3]
P. Pernica, Logistics for 21st Century (Logistika pro 21. století), RADIX, Praha, 2005 (in Czech).
Google Scholar
[4]
Š. Valenčík, Integrated Handling at Automated Production (Integrovaná manipulácia v automatizovanej výrobe), Logistics/Logistika 12/3 (2003) (in Slovak).
Google Scholar
[5]
Š. Valenčík, Logistics, Material Flow Technology and Integration within Production Systems (Logistika, technika materiálového toku a integrácia vo výrobných sústavách), AT&P Journal 9 (2004) 9-12 (in Slovak).
Google Scholar
[6]
D. Kučerka, S. Rusnáková, Š. Husár, M. Kučerková, R. Hrmo, Research in engineering pedagogy, in: Proc. 16th International Conferance on Interactive Collaborative Learning, Kazaň; CTI Villach, Kazan, National Research Technological University, 2013, pp.30-35.
Google Scholar
[7]
R. Hrmo, D. Kučerka, L. Krištofiaková, Developing the Information Competencies via E-learning and Assessing the Qualities of E-learning Text, in: Proc. 15th International Conference on Interactive Collaborative Learning and 41st International Conference on Engineering Pedagogy, Villach, (2012).
DOI: 10.1109/icl.2012.6402065
Google Scholar
[8]
R. Hrmo, D. Kučerka, Information competence and evolution of e-learning text with the fog index, Interactive Collaborative learning, in: Proc. 14th International Conference on Interactive Collaborative Learning (ICL 2011) and 11th International Conference Virtual University, 2011, pp.390-394.
DOI: 10.1109/icl.2011.6059612
Google Scholar
[9]
S. Pavlenko, J. Haľko, J. Maščenik, M. Nováková, Machine Parts Design with PC Support, 1st ed., FMT TUKE, Prešov, (2008).
Google Scholar
[10]
J. Maščenik, Š. Gašpár, 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, Advanced Materials Research 314-316 (2011).
DOI: 10.4028/www.scientific.net/amr.314-316.1944
Google Scholar
[11]
Ľ. Bičejová, Abrasive kind and granularity changes affects to water jet technology head vibration during cutting HARDOX material thickness alternation process, Applied Mechanics and Materials 308 (2013) 75-79.
DOI: 10.4028/www.scientific.net/amm.308.75
Google Scholar
[12]
Ľ. Bičejová, Water jet technology head vibration generation due to selected technology parameters fluctuation effect during alloy cutting, Applied Mechanics and Materials 308 (2013) 81-86.
DOI: 10.4028/www.scientific.net/amm.308.81
Google Scholar
[13]
S. Fabian, Ľ. Bičejová, Technological head tilt angle influence analysis to generation of vibration during ceramics material machining by means of AWJ, Applied Mechanics and Materials 616 (2014) 175-182.
DOI: 10.4028/www.scientific.net/amm.616.175
Google Scholar
[14]
Ľ. Bičejová, S. Fabian, Analysis of technological head working pressure, tilt angle and shift impact to its vibrations using AWJ, Applied Mechanics and Materials 616 (2014) 159-166.
DOI: 10.4028/www.scientific.net/amm.616.159
Google Scholar
[15]
J. Haľko, S. Pavlenko, Design strength calculation of cycloidal lantern gear, in: BarSU Herald Scientific and practical journal: Physical and Mathematical Sciences: Engineering Sciences 1 (2013) 58-65.
Google Scholar
[16]
T. Krenický, Implementation of Virtual Instrumentation for Machinery Monitoring, in: Scientific Papers: Operation and Diagnostics of Machines and Production Systems Operational States: Vol. 4, RAM-Verlag, Lüdenscheid, 2011, pp.5-8.
Google Scholar
[17]
L. Sobotová, M., Badida, M., Karková, Water quality in water jet technology, in: Proc. of 13th Int. Multidisciplinary Sci. Geoconference SGEM 2013, 16-22 June, 2013, Albena, Bulgaria, STEF92 Technology, Sofia, 2013, pp.463-470.
DOI: 10.5593/sgem2013/bc3/s12.059
Google Scholar
[18]
M. Badida, L. Sobotová, The requirements of abrasives and their possibilities in recycling in AWJ Technologies, in: Proc. of 13th Int. Multidisciplinary Sci. Geoconference SGEM 2013, 16-22 June, 2013, Albena, Bulgaria, STEF92 Technology, Sofia, 2013, pp.479-486.
DOI: 10.5593/sgem2013/bd4/s18.026
Google Scholar
[19]
T. Krenický, P. Jacko, Simultaneous temperature monitoring using virtualization, in: Scientific Papers: Operation and diagnostics of machines and production systems operational states. Lüdenscheid: RAM-Verlag, 2009, pp.58-62.
Google Scholar