Manufacturing Systems Building and Developing

Article Preview

Abstract:

The paper presents a complex of information aimed at automated production systems structures and simulation. For production systems intergrated structures formation it uses logistic principles for making the internal material flow among various logistic nodes more precise and effective, including respective information flow, here e. g. with use of integrable and compatibile handling and technological systems, as well.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

514-522

Citation:

Online since:

October 2015

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2016 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[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