arXiv · 1607.02271
Rearrangement zone around a crack tip in a double self-assembled transient network
Abstract
We investigate the nucleation and propagation of cracks in self-assembled viscoelastic fluids, which are made of surfactant micelles reversibly linked by telechelic polymers. The morphology of the micelles can be continuously tuned, from spherical to rod-like to wormlike, thus producing transient double networks when the micelles are sufficiently long and entangled, and transient single networks otherwise. For a single network, we show that cracks nucleate when the sample deformation rate involved is comparable to the relaxation time scale of the network. For a double network, by contrast, significant rearrangements of the micelles occur as a crack nucleates and propagates. We show that birefringence develops at the crack tip over a finite length, $ξ$, which corresponds to the length scale over which micelles alignment occur. We find that $ξ$ is larger for slower cracks, suggesting an increase of ductility.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Guillaume Foyart, Christian Ligoure, Serge Mora, Laurence Ramos. 2016-09-15. Rearrangement zone around a crack tip in a double self-assembled transient network. https://doi.org/10.1021/acsmacrolett.6b00516
Cite the original work for its findings. Save a collection to share your selection of sources.