Publication detail

Transport duty cycle simulation of electro-hydro-mechanical drive unit for mixing drum

KRIŠŠÁK, P. JAKUBOVIČ, J. ZAVADINKA, P.

Czech title

Simulace pracovního cyklu elektro-hydro-mechanického pohonu míchacího bubnu

English title

Transport duty cycle simulation of electro-hydro-mechanical drive unit for mixing drum

Type

conference paper

Language

en

Original abstract

This paper presents a short description and simulation result of drive unit for a mixing drum. The drive unit is disposed on a motor vehicle. Compared with prior art, the new system can exhibit further improvement of the mixing drum drive system efficiency. The intention is to avoid unnecessary exhaust gas and noise emissions in transport duty cycle.

Czech abstract

Tento článek krátce představuje pohonnou jednotku míchacího bubnu umístěného na nákladním automobilu a simulační výsledky jeho chování. V porovnání s dnes používaným řešením nový systém může být vylepšený v oblasti efektivity míchacího systému. Cílem je vyhnout se produkci zbytečných spalin a hluku během práce této jednotky.

English abstract

This paper presents a short description and simulation result of drive unit for a mixing drum. The drive unit is disposed on a motor vehicle. Compared with prior art, the new system can exhibit further improvement of the mixing drum drive system efficiency. The intention is to avoid unnecessary exhaust gas and noise emissions in transport duty cycle.

Keywords in English

mixing drum, drive unit, motor vehicle

RIV year

2013

Released

09.10.2013

Publisher

Springer International Publishing

Location

Cham, Heidelberg, New York, Dordrecht, London

ISBN

978-3-319-02293-2

Book

Mechatronics 2013: Recent Technological and Scientific Advances

Pages from–to

235–241

Pages count

7

BIBTEX


@inproceedings{BUT105922,
  author="Peter {Kriššák} and Jan {Jakubovič} and Peter {Zavadinka},
  title="Transport duty cycle simulation of electro-hydro-mechanical drive unit for mixing drum",
  booktitle="Mechatronics 2013: Recent Technological and Scientific Advances",
  year="2013",
  month="October",
  pages="235--241",
  publisher="Springer International Publishing",
  address="Cham, Heidelberg, New York, Dordrecht, London",
  isbn="978-3-319-02293-2"
}