Wrinkling of soft magneto-active plates
Bin Wu, Michel Destrade

TL;DR
This paper systematically analyzes the wrinkling behavior of soft magneto-active plates under combined magnetic and mechanical loads, deriving explicit bifurcation conditions and exploring effects of various parameters on stability.
Contribution
It introduces a comprehensive theoretical framework for predicting magneto-mechanical wrinkling in SMA plates, including explicit bifurcation equations and stability analysis for different loading modes.
Findings
Antisymmetric wrinkling modes occur before symmetric modes.
Increasing pre-compression or magnetic field destabilizes SMA plates.
Saturation magnetization enhances stability and Euler buckling approximates thin-plate bifurcation.
Abstract
Coupled magneto-mechanical wrinkling has appeared in many scenarios of engineering and biology. Hence, soft magneto-active (SMA) plates buckle when subject to critical uniform magnetic field normal to their wide surface. Here, we provide a systematic analysis of the wrinkling of SMA plates subject to an in-plane mechanical load and a transverse magnetic field?. We consider two loading modes: plane-strain loading and uni-axial loading, and two models of magneto-sensitive plates: the neo-Hookean ideal magneto-elastic model and the neo-Hookean magnetization saturation Langevin model. Our analysis relies on the theory of nonlinear magneto-elasticity and the associated linearized theory for superimposed perturbations. We derive the Stroh formulation of the governing equations of wrinkling, and combine it with the surface impedance method to obtain explicitly the bifurcation equations…
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Taxonomy
TopicsAdvanced Materials and Mechanics · Structural Analysis and Optimization · Vibration Control and Rheological Fluids
