English

Deformation and shape of flexible, microscale helices in viscous flow

Fluid Dynamics 2015-08-18 v1 Soft Condensed Matter

Abstract

We examine experimentally the deformation of flexible, microscale helical ribbons with nanoscale thickness subject to viscous flow in a microfluidic channel. Two aspects of flexible microhelices are quantified: the overall shape of the helix and the viscous frictional properties. The frictional coefficients determined by our experiments are consistent with calculated values in the context of resistive force theory. Deformation of helices by viscous flow is well-described by non-linear finite extensibility. Under distributed loading, the pitch distribution is non-uniform and from this, we identify both linear and non-linear behavior along the contour length of a single helix. Moreover, flexible helices are found to display reversible global to local helical transitions at high flow rate.

Keywords

Cite

@article{arxiv.1508.03936,
  title  = {Deformation and shape of flexible, microscale helices in viscous flow},
  author = {Jonathan T. Pham and Alexander Morozov and Alfred J. Crosby and Anke Lindner and Olivia du Roure},
  journal= {arXiv preprint arXiv:1508.03936},
  year   = {2015}
}

Comments

Published version can be found in Physical Review E