Application of Sliding Guides to Feeder Device in Aggressive Environments

Article Preview

Abstract:

The article deals with the renovation of an automatic feeder device into an industrial washing machine that removes dirt, residues of cutting oil and coolant after previous machining. The old feeding device showed frequent disturbances. It was therefore necessary to propose a solution that would eliminate common failure. The choice is sliding guides to resulted mainly from the summary of the factors resulting from aggressive environments at the application site and the presence of minor impurities after previous machining.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

353-360

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] J. Šebo, J. Svetlík, The design and economic evaluation of an automated work place on montage, Transfer of innovations 18 (2010) 99-102.

Google Scholar

[2] E. Farkašová, E. Drabiková, Methodological questions of financial analysis, in: Key competences in the area of business: reviewed scientific papers, EkF TUKE, Košice, 2012 pp.69-75.

Google Scholar

[3] J. Šebo, J. Buša, P. Demeč, J. Svetlík, Optimal replacement time estimation for machines and equipment based on cost function, Metalurgija 52/1 (2013) 119-122.

Google Scholar

[4] K. Židek, V. Maxim, Rate programmable machines - PLC (part 1): exterior architecture PLC, Elektrotechnik 1/1 (2009) 60-61.

Google Scholar

[5] M. Fabian, E. Spišák, Designing and production with the aid of CA technology, 1st ed., Brno, CCB, (2009).

Google Scholar

[6] P. Korba, J. Piľa, Application of CAx systems when designing the construction of nodes of a helicopter 1st ed., Zakład Poligraficzny Wisla, Puławy, (2013).

Google Scholar

[7] P. Korba, J. Piľa, J. Sabo, M. Antoško, The use of CAX systems as a tool to reduce the economic costs in the aviation industry, in: Proc. of 14th Int. Multidisciplinary Sci. Conf. on Informatics, Geoinformatics and Remote Sensing SGEM 2014, Vol. 1, 17-26, June, 2014, Albena, Bulgaria, STEF92 Technology Ltd., Sofia, 2014, pp.385-392.

DOI: 10.5593/sgem2014/b21/s7.049

Google Scholar

[8] J. Svetlík, R. Kreheľ, J. Dobránsky, Statement resources, technical conditions of bearings in robotic equipment with vibrodiagnostic system using, Acta Mechanica Slovaca 13/2-A (2009) 219-224.

Google Scholar

[9] R. Kreheľ, J. Dobránsky, Design and implementation of the technical condition of the bearing measurement using a vibrodiagnostického system, Fine mechanics and optics 53/3 (2008) 80-81.

Google Scholar

[10] 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

[11] R. Kreheľ, J. Dobránsky, Contactless sensing components of machinery and equipment oscillatory, Drives and their industry window: Linear technique, MM Industry spectrum 11 (2009) 62-63.

Google Scholar