| Literature DB >> 33477271 |
Philipp Metsch1, Dirk Romeis2, Karl A Kalina1, Alexander Raßloff1, Marina Saphiannikova2, Markus Kästner1,3.
Abstract
In the present work, the magneto-mechanical coupling in magneto-active elastomers is investigated from two different modeling perspectives: a micro-continuum and a particle-interaction approach. Since both strategies differ significantly in their basic assumptions and the resolution of the problem under investigation, they are introduced in a concise manner and their capabilities are illustrated by means of representative examples. To motivate the application of these strategies within a hybrid multiscale framework for magneto-active elastomers, their interchangeability is then examined in a systematic comparison of the model predictions with regard to the magneto-deformation of chain-like helical structures in an elastomer surrounding. The presented results show a remarkable agreement of both modeling approaches and help to provide an improved understanding of the interactions in magneto-active elastomers with chain-like microstructures.Entities:
Keywords: magneto-active elastomers; magneto-deformation; magneto-mechanical coupling; magneto-striction
Year: 2021 PMID: 33477271 PMCID: PMC7830580 DOI: 10.3390/ma14020434
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.623