Optical characterization of underwater contact mechanics
ORAL
Abstract
For survival in extreme environments, organisms have evolved adhesive mechanisms and materials. While chemistry of underwater bio-adhesion is a source of valuable insight, the mechanics by which surfaces expel water and come in contact underlies critical understanding of natural solutions and evaluating biomimetic analogs. Hydrophobicity of an adhesive surface has been shown to be crucial in removing water from a hydrophilic substrate, but the resulting contact is typically heterogeneous, with patches of unevacuated water. Here, we present a simple, FTIR-based imaging technique to spatially resolve and quantify thickness of nanoscopic puddles formed between two solids in contact under water. The technique is validated by comparing measured air gap thickness of a glass lens in contact with glass prism with Hertzian contact theory, and then applied to characterize the drainage and formation of patches of water as a soft PDMS lens approaches a glass surface at varying speeds. The work paves the way for better characterization of interfaces in contact under water and can find application in adhesive development, biological study and tribology.
reference: M. Shirota, M. A. van Limbeek, D. Lohse and C. Sun, Eur. Phys. J. E: Soft Matter Biol. Phys., 2017, 40, 54
reference: M. Shirota, M. A. van Limbeek, D. Lohse and C. Sun, Eur. Phys. J. E: Soft Matter Biol. Phys., 2017, 40, 54
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Presenters
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Mengyue Sun
Univ of Akron
Authors
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Mengyue Sun
Univ of Akron
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Sukhmanjot Kaur
Univ of Akron