arXiv · 1401.0226
Nonuniform growth and topological defects in the shaping of elastic sheets
Abstract
Programming the non-uniform growth of a responsive polymer gel has emerged as a powerful tool to shape sheets into prescribed three dimensional shapes. We demonstrate that shapes with zero Gaussian curvature, except at singularities, produced by the growth-induced buckling of a thin elastic sheet are the same as those produced by the Volterra construction of topological defects in which edges of an intrinsically flat surface are identified. With this connection, we study the problem of choosing an optimal pattern of growth for a prescribed developable surface, finding a fundamental trade-off between optimal design and the accuracy of the resulting shape which can be quantified by the length along which an edge should be identified.
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N. P. Bende, R. C. Hayward, C. D. Santangelo. 2013-12-31. Nonuniform growth and topological defects in the shaping of elastic sheets. https://doi.org/10.1039/c4sm00845f
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