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Journal article

Homogenization-based stiffness optimization and projection of 2D coated structures with orthotropic infill

From

Solid Mechanics, Department of Mechanical Engineering, Technical University of Denmark1

Department of Mechanical Engineering, Technical University of Denmark2

Delft University of Technology3

This paper concerns compliance minimization and projection of coated structures with orthotropic infill material in 2D. The purpose of the work is two-fold. First, we introduce an efficient homogenization-based approach to perform topology optimization of coated structures with orthotropic infill material.

The design space is relaxed to allow for a composite material description, which means that designs with complex microstructures can be obtained on relatively coarse meshes. Second, a method is presented to project the homogenization-based designs on a fine but realizable scale. A novel method to adaptively refine the lattice structure is presented to allow for a regular spacing of the infill.

Numerical experiments show excellent behavior of the projected designs, with structural performance almost identical to the homogenization-based designs. Furthermore, a reduction in computational cost of at least an order of magnitude is achieved, compared to a related approach in which the infill is optimized using a density-based approach.

Language: English
Year: 2019
Pages: 722-742
ISSN: 18792138 and 00457825
Types: Journal article
DOI: 10.1016/j.cma.2019.02.031
ORCIDs: Groen, Jeroen P. , 0000-0003-4237-1806 and Sigmund, Ole

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