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Fluid-structure interaction modelling of a soft pneumatic actuator
Citation Link: https://doi.org/10.15480/882.3687
Publikationstyp
Journal Article
Publikationsdatum
2021-07-15
Sprache
English
TORE-URI
Enthalten in
Volume
10
Issue
7
Article Number
163
Citation
Actuators 10 (7): 163 (2021)
Publisher DOI
Scopus ID
Publisher
Multidisciplinary Digital Publishing Institute
This paper presents a fully coupled fluid-structure interaction (FSI) simulation model of a soft pneumatic actuator (SPA). Previous research on modelling and simulation of SPAs mostly involves finite element modelling (FEM), in which the fluid pressure is considered as pressure load uniformly acting on the internal walls of the actuator. However, FEM modelling does not capture the physics of the fluid flow inside an SPA. An accurate modelling of the physical behaviour of an SPA requires a two-way FSI analysis that captures and transfers information from fluid to solid and vice versa. Furthermore, the investigation of the fluid flow inside the flow channels and chambers of the actuator are vital for an understanding of the fluid energy distribution and the prediction of the actuator performance. The FSI modelling is implemented on a typical SPA and the flow behaviour inside the actuator is presented. Moreover, the bending behaviour of the SPA from the FSI simulation results is compared with a corresponding FEM simulation.
Schlagworte
fluid-structure interaction (FSI)
soft pneumatic actuator (SPA)
pneumatic networks (PneuNets)
hyperelastic material
DDC Class
600: Technik
620: Ingenieurwissenschaften
Projekt(e)
More Funding Information
This publication was supported by the funding programme “Open Access Publishing” of Hamburg University of Technology (TUHH).
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