Likozar, Blaž

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  • Likozar, Blaž (1)
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Author's Bibliography

Designing of manufacturing process of reformer integrated in system with HTPEM fuel cell stack

Milošević, Miloš; Mladenović, Goran; Sedmak, Aleksandar; Rakin, Marko; Likozar, Blaž; Ivanović, Ivana; Živanović, Saša

(Belgrade : Faculty of Mechanical Engineering, Innovation Center, 2017)

TY  - CONF
AU  - Milošević, Miloš
AU  - Mladenović, Goran
AU  - Sedmak, Aleksandar
AU  - Rakin, Marko
AU  - Likozar, Blaž
AU  - Ivanović, Ivana
AU  - Živanović, Saša
PY  - 2017
UR  - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/6341
AB  - In this paper is shown designing of manufacturing process of reformer in polymeric electrolyte membrane
(PEM) fuel cell. The process is based on reformer modelling, analyzing of reforming initial geometry and
change of geometry. In addition to the numerical calculation, change of geometry is based on tool path
simulation analysis in order to obtain more efficient reformer production. Before machining, tool path
simulation was performed and generated by PTC Creo/Parametric software. The recommendations for
geometry changing are given in order to decrease of machining costs, and are made so that did not affect
the initial reformer performances. The reformer machining is carried out on a CNC milling machine and Wire
EDM machine.
PB  - Belgrade : Faculty of Mechanical Engineering, Innovation Center
C3  - International Conference of Experimental and Numerical Investigations and New Technologies - CNN TECH
T1  - Designing of manufacturing process of reformer integrated in system with HTPEM fuel cell stack
SP  - 51
UR  - https://hdl.handle.net/21.15107/rcub_technorep_6341
ER  - 
@conference{
author = "Milošević, Miloš and Mladenović, Goran and Sedmak, Aleksandar and Rakin, Marko and Likozar, Blaž and Ivanović, Ivana and Živanović, Saša",
year = "2017",
abstract = "In this paper is shown designing of manufacturing process of reformer in polymeric electrolyte membrane
(PEM) fuel cell. The process is based on reformer modelling, analyzing of reforming initial geometry and
change of geometry. In addition to the numerical calculation, change of geometry is based on tool path
simulation analysis in order to obtain more efficient reformer production. Before machining, tool path
simulation was performed and generated by PTC Creo/Parametric software. The recommendations for
geometry changing are given in order to decrease of machining costs, and are made so that did not affect
the initial reformer performances. The reformer machining is carried out on a CNC milling machine and Wire
EDM machine.",
publisher = "Belgrade : Faculty of Mechanical Engineering, Innovation Center",
journal = "International Conference of Experimental and Numerical Investigations and New Technologies - CNN TECH",
title = "Designing of manufacturing process of reformer integrated in system with HTPEM fuel cell stack",
pages = "51",
url = "https://hdl.handle.net/21.15107/rcub_technorep_6341"
}
Milošević, M., Mladenović, G., Sedmak, A., Rakin, M., Likozar, B., Ivanović, I.,& Živanović, S.. (2017). Designing of manufacturing process of reformer integrated in system with HTPEM fuel cell stack. in International Conference of Experimental and Numerical Investigations and New Technologies - CNN TECH
Belgrade : Faculty of Mechanical Engineering, Innovation Center., 51.
https://hdl.handle.net/21.15107/rcub_technorep_6341
Milošević M, Mladenović G, Sedmak A, Rakin M, Likozar B, Ivanović I, Živanović S. Designing of manufacturing process of reformer integrated in system with HTPEM fuel cell stack. in International Conference of Experimental and Numerical Investigations and New Technologies - CNN TECH. 2017;:51.
https://hdl.handle.net/21.15107/rcub_technorep_6341 .
Milošević, Miloš, Mladenović, Goran, Sedmak, Aleksandar, Rakin, Marko, Likozar, Blaž, Ivanović, Ivana, Živanović, Saša, "Designing of manufacturing process of reformer integrated in system with HTPEM fuel cell stack" in International Conference of Experimental and Numerical Investigations and New Technologies - CNN TECH (2017):51,
https://hdl.handle.net/21.15107/rcub_technorep_6341 .