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University of Cambridge

Concentrated Gauss Curvature in Shape-Programmed Shells

Abstract

dc:description.abstract

In this thesis we will design new patterns of deformation in shape-programmed sheets, pushing forward the paradigm of `metric mechanics', in which active shells respond to stimuli by undergoing large spontaneous deformations. Our focus will be on novel ways to program Gauss curvature, motivated by its deep mechanical consequences - principally it imparts strength, since Gauss-curved shells cannot be flattened without expensive stretch. Concentrated Gauss curvature will be of particular interest, offering qualitatively new mechanics, and interesting theoretical challenges. Specifically we will explore the Gauss curvature encoded in deformation patterns containing topological defects, holes, and seams - all features where Gauss curvature is generically concentrated. Finally we will address the load-bearing and lifting capacity of shape-programmed cones, which have become a classic example, and whose strength ultimately stems from their Gauss-curved tips. This will reveal many surprises, including new thin-limit results for buckling of conical shells, exhibiting unexpected scalings and holding broad implications within and beyond shape programming.

Degree

thesis:*
Name dc:type.qualificationname
Doctor of Philosophy (PhD)
Level dc:type.qualificationlevel
Doctoral
Grantor dc:publisher.institution
University of Cambridge
Year dc:date.issued
2023

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Duffy, Daniel
Advisor dc:contributor.advisor
  • Biggins, John

Subjects

dc:subject × 7

Rights

dc:rights
Language dc:language
eng

Identifiers

dc:identifier.*
DOI dc:identifier.doi
https://doi.org/10.17863/CAM.105659
OAI identifier oai:identifier
oai:www.repository.cam.ac.uk:1810/363715

Chain of custody

source
Harvested from
Cambridge University
Base URL
api.repository.cam.ac.uk/server/oai/request
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
citation

Duffy, Daniel. Concentrated Gauss Curvature in Shape-Programmed Shells. Doctoral thesis, University of Cambridge, 2023. https://doi.org/10.17863/CAM.105659