Variational Level Set Method for Topology Optimization of Origami Fold Patterns

Author:

Ye Qian1,Gu Xianfeng David23,Chen Shikui1

Affiliation:

1. State University of New York at Stony Brook Department of Mechanical Engineering, , Stony Brook, NY 11794

2. State University of New York at Stony Brook Department of Computer Science, , Stony Brook, NY 11794 ;

3. State University of New York at Stony Brook Department of Applied Math and Statistics, , Stony Brook, NY 11794

Abstract

Abstract With specific fold patterns, a 2D flat origami can be converted into a complex 3D structure under an external driving force. Origami inspires the engineering design of many self-assembled and re-configurable devices. This work aims to apply the level set-based topology optimization to the generative design of origami structures. The origami mechanism is simulated using thin shell models where the deformation on the surface and the deformation in the normal direction can be simplified and well captured. Moreover, the fold pattern is implicitly represented by the boundaries of the level set function. The folding topology is optimized by minimizing a new multiobjective function that balances kinematic performance with structural stiffness and geometric requirements. Besides regular straight folds, our proposed model can mimic crease patterns with curved folds. With the folding curves implicitly represented, the curvature flow is utilized to control the complexity of the folds generated. The performance of the proposed method is demonstrated by the computer generation and physical validation of two thin shell origami designs.

Funder

Directorate for Engineering

Ford Motor Company

Stony Brook University

Publisher

ASME International

Subject

Computer Graphics and Computer-Aided Design,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

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