Application of piezoelectric composites to control operation of a gas foil bearing – prototype design and testing

Essential parts of rotating machineries are supporting nodes, i.e., bearing systems. They assure required rotational degrees of freedom and feature desired load carrying capacity. Following the specificity of a technical solution considered, various types of bearings may be taken into account to eff...

Full description

Bibliographic Details
Main Authors: A Martowicz, P Zdziebko, J Roemer, G Żywica, P Bagiński, A Andrearczyk
Format: Article
Language:English
Published: MULTIPHYSICS 2022-12-01
Series:International Journal of Multiphysics
Online Access:http://journal.multiphysics.org/index.php/IJM/article/view/840
_version_ 1797710752066306048
author A Martowicz
P Zdziebko
J Roemer
G Żywica
P Bagiński
A Andrearczyk
author_facet A Martowicz
P Zdziebko
J Roemer
G Żywica
P Bagiński
A Andrearczyk
author_sort A Martowicz
collection DOAJ
description Essential parts of rotating machineries are supporting nodes, i.e., bearing systems. They assure required rotational degrees of freedom and feature desired load carrying capacity. Following the specificity of a technical solution considered, various types of bearings may be taken into account to effectively address the requirements regarding the speed and load. Specifically, gas foil bearings (GFB) are used in high-speed and lightly-loaded rotating machineries, e.g., auxiliary power units. In fact, they can operate up to several hundreds of thousands rpm, also for a wide temperature range. The current work reports an application of piezoelectric composites to control operation of a GFB. The authors present the developed bearing’s prototype installation which is equipped with a specialized multifunctional structural component that advantageously allows to both characterize GFB’s operational parameters and modify them. The experimental results confirm the usability of the proposed actively-controlled configuration of a GFB.
first_indexed 2024-03-12T06:55:48Z
format Article
id doaj.art-1fca0ac47ada42fb9a4ce32902cedb20
institution Directory Open Access Journal
issn 1750-9548
2048-3961
language English
last_indexed 2024-03-12T06:55:48Z
publishDate 2022-12-01
publisher MULTIPHYSICS
record_format Article
series International Journal of Multiphysics
spelling doaj.art-1fca0ac47ada42fb9a4ce32902cedb202023-09-03T00:01:35ZengMULTIPHYSICSInternational Journal of Multiphysics1750-95482048-39612022-12-0116442543510.21152/1750-9548.16.4.425839Application of piezoelectric composites to control operation of a gas foil bearing – prototype design and testingA MartowiczP ZdziebkoJ RoemerG ŻywicaP BagińskiA AndrearczykEssential parts of rotating machineries are supporting nodes, i.e., bearing systems. They assure required rotational degrees of freedom and feature desired load carrying capacity. Following the specificity of a technical solution considered, various types of bearings may be taken into account to effectively address the requirements regarding the speed and load. Specifically, gas foil bearings (GFB) are used in high-speed and lightly-loaded rotating machineries, e.g., auxiliary power units. In fact, they can operate up to several hundreds of thousands rpm, also for a wide temperature range. The current work reports an application of piezoelectric composites to control operation of a GFB. The authors present the developed bearing’s prototype installation which is equipped with a specialized multifunctional structural component that advantageously allows to both characterize GFB’s operational parameters and modify them. The experimental results confirm the usability of the proposed actively-controlled configuration of a GFB.http://journal.multiphysics.org/index.php/IJM/article/view/840
spellingShingle A Martowicz
P Zdziebko
J Roemer
G Żywica
P Bagiński
A Andrearczyk
Application of piezoelectric composites to control operation of a gas foil bearing – prototype design and testing
International Journal of Multiphysics
title Application of piezoelectric composites to control operation of a gas foil bearing – prototype design and testing
title_full Application of piezoelectric composites to control operation of a gas foil bearing – prototype design and testing
title_fullStr Application of piezoelectric composites to control operation of a gas foil bearing – prototype design and testing
title_full_unstemmed Application of piezoelectric composites to control operation of a gas foil bearing – prototype design and testing
title_short Application of piezoelectric composites to control operation of a gas foil bearing – prototype design and testing
title_sort application of piezoelectric composites to control operation of a gas foil bearing prototype design and testing
url http://journal.multiphysics.org/index.php/IJM/article/view/840
work_keys_str_mv AT amartowicz applicationofpiezoelectriccompositestocontroloperationofagasfoilbearingprototypedesignandtesting
AT pzdziebko applicationofpiezoelectriccompositestocontroloperationofagasfoilbearingprototypedesignandtesting
AT jroemer applicationofpiezoelectriccompositestocontroloperationofagasfoilbearingprototypedesignandtesting
AT gzywica applicationofpiezoelectriccompositestocontroloperationofagasfoilbearingprototypedesignandtesting
AT pbaginski applicationofpiezoelectriccompositestocontroloperationofagasfoilbearingprototypedesignandtesting
AT aandrearczyk applicationofpiezoelectriccompositestocontroloperationofagasfoilbearingprototypedesignandtesting