The role of substrate pre-stretch in post-wrinkling bifurcations
Author(s) -
Anesia D. Auguste,
Lihua Jin,
Zhigang Suo,
Ryan C. Hayward
Publication year - 2014
Publication title -
soft matter
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.99
H-Index - 170
eISSN - 1744-6848
pISSN - 1744-683X
DOI - 10.1039/c4sm01038h
Subject(s) - materials science , substrate (aquarium) , wavelength , chaotic , composite material , bifurcation , nanotechnology , optoelectronics , nonlinear system , physics , computer science , geology , oceanography , artificial intelligence , quantum mechanics
When a stiff film on a soft substrate is compressed, the surface of the film forms wrinkles, with tunable wavelengths and amplitudes that enable a variety of applications. As the compressive strain increases, the film undergoes post-wrinkling bifurcations, leading to period doubling and eventually to formation of localized folds or ridges. Here we study the post-wrinkling bifurcations in films on pre-stretched substrates. Through a combination of experiments and simulations, we demonstrate that pre-stretched substrates not only show substantial shifts in the critical strain for the onset of post-wrinkling bifurcations, but also exhibit qualitatively different post-wrinkled states. In particular, we report on the stabilization of wrinkles in films on pre-tensioned substrates and the emergence of 'chaotic' morphologies in films on pre-compressed substrates.
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