Publication detail

Dynamic Analysis of Multispindle Lathe

HADRABA, P. HADAŠ, Z.

English title

Dynamic Analysis of Multispindle Lathe

Type

conference paper

Language

en

Original abstract

The vibration analysis of a production machine is a key factor of its func-tionality, service life and occupational safety. Simulation models are very important for dynamics analysis and its contribution to the improvement of a mechanical design and mechanism failure prevention. This paper deals with models and dynamic analyses of a multi-spindle lathe. The whole process is presented on the example of one actuator of the multi spindle automatic lathe. The analysis is based on electromechanical linear models, which are simulated using Matlab/Simulink. Models of this mechanism were validated with experimental measurements. The simulation results are used for the speed control optimization.

English abstract

The vibration analysis of a production machine is a key factor of its func-tionality, service life and occupational safety. Simulation models are very important for dynamics analysis and its contribution to the improvement of a mechanical design and mechanism failure prevention. This paper deals with models and dynamic analyses of a multi-spindle lathe. The whole process is presented on the example of one actuator of the multi spindle automatic lathe. The analysis is based on electromechanical linear models, which are simulated using Matlab/Simulink. Models of this mechanism were validated with experimental measurements. The simulation results are used for the speed control optimization.

Keywords in English

Production Machine · Lathe · Vibration · Dynamics · Simulink.

Released

01.01.2018

Publisher

Springer International Publishing

Location

Brno

ISBN

978-3-319-65959-6

ISSN

2194-5365

Book

Mechatronics 2017 Recent Technological and Scientific Advances

Edition number

1

Pages from–to

321–329

Pages count

9

BIBTEX


@inproceedings{BUT142867,
  author="Petr {Hadraba} and Zdeněk {Hadaš},
  title="Dynamic Analysis of Multispindle Lathe",
  booktitle="Mechatronics 2017 Recent Technological and Scientific Advances",
  year="2018",
  month="January",
  pages="321--329",
  publisher="Springer International Publishing",
  address="Brno",
  isbn="978-3-319-65959-6",
  issn="2194-5365"
}