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Topographic De-adhesion in the Viscoelastic Limit

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arxiv 2209.09387 v1 pith:NF4SESUH submitted 2022-09-19 physics.app-ph cond-mat.soft

classification physics.app-phcond-mat.soft
keywords de-adhesionbiofoulantselastictopographicviscoelasticfactorsloadingmany
verification ladder T0 review T1 audit T2 compute T3 formal
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The superiority of many natural surfaces at resisting soft, sticky biofoulants has inspired the integration of dynamic topography with mechanical instability to promote self-cleaning artificial surfaces. The physics behind this novel mechanism is currently limited to elastic biofoulants where surface energy, bending stiffness, and topographical wavelength are key factors. However, the viscoelastic nature of many biofoulants causes a complex interplay between these factors with time-dependent characteristics such as material softening and loading rate. Here, we enrich the current elastic theory of topographic de-adhesion using analytical and finite element models to elucidate the non-linear, time-dependent interaction of three physical, dimensionless parameters: biofoulant's stiffness reduction, product of relaxation time and loading rate, and the critical strain for short-term elastic de-adhesion. Theoretical predictions, in good agreement with numerical simulations, provide insight into tuning these control parameters to optimize surface renewal via topographic de-adhesion in the viscoelastic regime.

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