[1]
Depouhon A., Detournay E.: Instability regimes and self-excited vibrations in deep drilling systems. Journal of Sound and Vibration. Vol. 333, Issue 7, 31 March 2014, p.2019-(2039).
DOI: 10.1016/j.jsv.2013.10.005
Google Scholar
[2]
Mousavi S., Gagnol V., Ray P.: Machining prediction of spindle-self-vibratory drilling head. Journal of Materials Processing Technology. Vol. 213, Issue: 12, pp: 2119-2125.
DOI: 10.1016/j.jmatprotec.2013.06.012
Google Scholar
[3]
Oender O., Paris H., Rech J.: Influence of twist drill geometry on chip split with self vibratory drilling head. Mechanics & Industry vol. 13, issue 1, pp.11-16.
DOI: 10.1051/meca/2012007
Google Scholar
[4]
Świć A., Zubrzycki J., Taranenko V.: Modelling and systemic analysis of models of dynamic systems of shaft machining. Applied Mechanics and Materials Vol. 282 (2013) pp.211-220.
DOI: 10.4028/www.scientific.net/amm.282.211
Google Scholar
[5]
Zubrzycki J., Abakumow A., Taranenko G., Taranenko W.: Badania eksperymentalne charakterystyk układu dynamicznego procesu technologicznego toczenia. W: Zagadnienia pękania i skrawania materiałów plastycznych. Monografia, red. Józef Jonak. Wyd. LTN, Lublin (2008).
Google Scholar
[6]
Zubrzycki J., Świć A., Taranenko V.: Mathematical model of the hole drilling process and typical automated process for designing hole drilling operations. Applied Mechanics and Materials Vol. 282 (2013) pp.221-229.
DOI: 10.4028/www.scientific.net/amm.282.221
Google Scholar
[7]
Baláž V., Vagaš M., Semjon J., Hajduk M.: Design of automated robotized system with two robots / 2013. In: Computer Aided Production Engineering. - Lublin: Lublin University of Technology, 2013 P. 131-136.
Google Scholar
[8]
Semjon J., Hajduk M., Jánoš R., Vagaš M.: Modular Welding Fixtures for Robotic Cells. In: Applied Mechanics and Materials. Vol. 309 (2013), pp.80-87.
DOI: 10.4028/www.scientific.net/amm.309.80
Google Scholar
[9]
Semjon J., Hajduk M., Jánoš, R., Tuleja P.: Procedure selection bearing reducer twinspin for robotic arm. In: Applied Mechanics and Materials. Vol. 245 (2013), pp.261-266.
DOI: 10.4028/www.scientific.net/amm.245.261
Google Scholar
[10]
Vagaš M., Hajduk M., Semjon J., Páchniková L., Jánoš R.: The view to the current state of robotics. In: Advanced Materials Research. Vol. 463-464 (2012), pp.1711-1714.
DOI: 10.4028/www.scientific.net/amr.463-464.1711
Google Scholar
[11]
M. Hajduk: The era of massive use of robots. In: MM Science Journal. No. october (2011), pp.340-344. - ISSN 1803-1269.
Google Scholar
[12]
M. Hajduk, P. Jenčík, J. Jezný, L. Vargovčík: Trends in industrial robotics development. In: Applied Mechanics and Materials Vol. 2013, no. 282(2013), pp.1-2013, ISSN 1660-9336.
DOI: 10.4028/www.scientific.net/amm.282.1
Google Scholar
[13]
Baláž V., Vagaš M., Semjon J., Hajduk M., Koukolová L.: Metodický rámec navrhovania štruktúr paletizačno-montážnych robotických buniek. In: Robotics and Intelligent Manufacturing Systems: zborník príspevkov z medzinárodnej konferencie, Košice, TU, 2013 pp.93-98.
Google Scholar