- Authors
- Christoph Steiert Institute of Mechatronic Engineering, Chair of Fluid-Mechatronic Systems, Technische Universität Dresden
- Juliane WeberInstitute of Mechatronic Engineering, Chair of Fluid-Mechatronic Systems, Technische Universität Dresden
- Alexander GalantInstitute of Mechatronic Engineering, Chair of Machine Tools Development and Adaptive Controls, Technische Universität Dresden
- Janine Glänzel
- Jürgen Weber
- title
- Fluid-thermal co-simulation for a high performance concrete machine frame
- Please use the following URL when quoting:
- https://nbn-resolving.org/urn:nbn:de:bsz:14-qucosa2-711616
- conference
- 12th International Fluid Power Conference (12. IFK). Dresden, October 12 – 14, 2020
- original_in_proceeding0
- Volume 1 – Symposium - 1
Erscheinungsort: Dresden
Verlag: Technische Universität Dresden
Erscheinungsjahr: 2020
Bandnummer Schriftenreihe: 1
Seiten: 533-540
DOI: 10.25368/2020.6 - doi
- https://doi.org/10.25368/2020.60
- Abstract (EN)
- Thermo-elastic errors are one of the main drivers for reduced quality of workpieces in machining. Cooling systems can prevent these errors and improve quality. The paper describes a simulation method that takes into account both the temperature field of a machine tool frame and the fluid cooling system. Such simulations can help to improve the thermal stability of the machine tool frame.
- Keywords (DE)
- 12. IFK, Wärmesimulation, Reduzierung der Modellreihenfolge, Kühlsystem, Modellierung
- Keywords (EN)
- 12th International Fluid Power Conference, thermal simulation, model order reduction, cooling system, modeling
- Classification (DDC)
- 620
- Classification (RVK)
- ZQ 5460
- university_publisher
- Technische Universität Dresden, Dresden
- corporation_other
- Dresdner Verein zur Förderung der Fluidtechnik e. V. Dresden, Dresden
- version
- publizierte Version / Verlagsversion
- URN Qucosa
- urn:nbn:de:bsz:14-qucosa2-711616
- Qucosa date of publication
- 25.06.2020
- Document type
- in_proceeding
- Document language
- English
- licence