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Published on: February 13, 2018
Nucleation and propagation of solitary Schallamach waves
Koushik Viswanathan1, Anirban Mahato1, Srinivasan Chandrasekar1
1Center for Materials Processing and Tribology Purdue University, West Lafayette, Indiana 47907-2023, USA.
Abstract:
We isolate single Schallamach waves--detachment fronts that mediate inhomogeneous sliding between an elastomer and a hard surface--to study their creation and dynamics. Based on measurements of surface displacement using high-speed in situ imaging, we establish a Burgers vector for the waves. The crystal dislocation analogs of nucleation stress, defect pinning, and configurational force are demonstrated. It is shown that many experimentally observed features can be quantitatively described using a conventional model of a dislocation line in an elastic medium. We also highlight the evolution of nucleation features, such as surface wrinkles, with consequences for interface delamination.
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