[1]
A. Imai, Pipe Conveyor Development , Benchmark and Future Trend, BULK SOLIDS HANDL. (n. d. ).
Google Scholar
[2]
P. Michalik, V. Molnár, G. Fedorko, M. Weiszer, An Experimental Test Rig for Measuring the Strength of Pipe Conveyor Belts, Bulk Solids Handl. 33 (2013) 52–55.
Google Scholar
[3]
G. Fedorko, V. Molnár, J. Živčák, M. Dovica, N. Husáková, Metrotomography - A progressive method for conveyor belt analysis, Bulk Solids Handl. 33 (2013) 56–60.
DOI: 10.1016/j.engfailanal.2012.10.014
Google Scholar
[4]
M. Fiľo, J. Markovič, G. Ižaríková, P. Trebuňa, Geometric Transformations in the Design of Assembly Systems, Am. J. Mech. Eng. 1 (2013) 434–437.
Google Scholar
[5]
M. Fiľo, J. Markovič, M. Kliment, P. Trebuňa, PLM Systems and Tecnomatix Plant Simulation , a Description of the Environment , Control Elements , Creation Simulations and Models, Am. J. Mech. Eng. 1 (2013) 165–168.
Google Scholar
[6]
J.J. del Coz Díaz, P.J. García Nieto, J.A. Vilán Vilán, A. Martín Rodríguez, J.R. Prado Tamargo, A. Lozano Martínez-Luengas, Non-linear analysis and warping of tubular pipe conveyors by the finite element method, Math. Comput. Model. 46 (2007).
DOI: 10.1016/j.mcm.2006.12.034
Google Scholar
[7]
O. Schilling, M. Westerwald, J. Wiedenroth, T. Gmbh, ABAQUS FE Analysis of a Pipe Conveyor Using Solids with Embedded Truss Elements and Shells with Rebar Layers, in: NAFEMS Semin. "Simulating Compos. Mater. Struct., Bad Kissingen, Germany, 2007: p.1.
Google Scholar
[8]
K. Madac, V. Durkac, J. Kral, Design of applications for CAD system Creo Parametric 1. 0, Int. Sci. Her. 4 (2012) 278–284.
Google Scholar
[9]
J. Kral, J. Kral jr., K. Madac, A. Pavlik, Creation of 3D parametric surfaces in CAD systems, Acta Mech. Slovaca. 12 (2008) 223–228.
Google Scholar
[10]
http: /www. simpop. cn/en/ArticleShow. asp?ArticleID=264, (n. d. ).
Google Scholar