Issue 18, 2023

Dynamically tunable lamellar surface structures from magnetoactive elastomers driven by a uniform magnetic field

Abstract

Stimuli responsive materials are key ingredients for any application that requires dynamically tunable or on-demand responses. In this work we report experimental and theoretical investigation of magnetic-field driven modifications of soft-magnetic elastomers whose surface was processed by laser ablation into lamellar microstructures that can be manipulated by a uniform magnetic field. We present a minimal hybrid model that elucidates the associated deflection process of the lamellae and explains the lamellar structure frustration in terms of dipolar magnetic forces arising from the neighbouring lamellae. We experimentally determine the magnitude of the deflection as a function of magnetic flux density and explore the dynamic response of lamellae to fast changes in a magnetic field. A relationship between the deflection of lamellae and modifications of the optical reflectance of the lamellar structures is resolved.

Graphical abstract: Dynamically tunable lamellar surface structures from magnetoactive elastomers driven by a uniform magnetic field

Supplementary files

Article information

Article type
Paper
Submitted
04 Jan 2023
Accepted
11 Apr 2023
First published
12 Apr 2023
This article is Open Access
Creative Commons BY license

Soft Matter, 2023,19, 3357-3365

Dynamically tunable lamellar surface structures from magnetoactive elastomers driven by a uniform magnetic field

I. Straus, G. Kokot, G. Kravanja, L. Hribar, R. Kriegl, M. Shamonin, M. Jezeršek and I. Drevenšek-Olenik, Soft Matter, 2023, 19, 3357 DOI: 10.1039/D3SM00012E

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