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

Journal Article (2019)
Author(s)

J.P. Groen (Technical University of Denmark (DTU))

J. Wu (TU Delft - Materials and Manufacturing)

Ole Sigmund (Technical University of Denmark (DTU))

Research Group
Materials and Manufacturing
Copyright
© 2019 J.P. Groen, J. Wu, Ole Sigmund
DOI related publication
https://doi.org/10.1016/j.cma.2019.02.031
More Info
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Publication Year
2019
Language
English
Copyright
© 2019 J.P. Groen, J. Wu, Ole Sigmund
Research Group
Materials and Manufacturing
Volume number
349
Pages (from-to)
722-742
Reuse Rights

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Abstract

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.

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