Toward numerical modeling and experimental full-field validation of non-planar 3D-printed components - source code and data

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Hauptverfasser: Ewougsi Tekeu, Christian-Lionel, Tröger, Jendrik-Alexander, Afshari, Arash, Inkermann, David, Hartmann, Stefan
Format: Recurso digital
Sprache:Englisch
Veröffentlicht: Zenodo 2026
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author Ewougsi Tekeu, Christian-Lionel
Tröger, Jendrik-Alexander
Afshari, Arash
Inkermann, David
Hartmann, Stefan
author_facet Ewougsi Tekeu, Christian-Lionel
Tröger, Jendrik-Alexander
Afshari, Arash
Inkermann, David
Hartmann, Stefan
contents <p>The dataset contains source code and data generated during the investigation of modeling and experimental validation of non-planar 3D-printed specimens. The Python source code for the continuous interpolation of G-code coordinates applies to both planar and non-planar specimens and returns the spatially varying preferred directions of anisotropy for a given spatial discretization using finite elements. Material routines for the constitutive models of orthotropy and transversal isotropy are provided as Fortran code. The experimental validation data are provided as force-displacement data from an uniaxial tensile test on non-flat specimen geometries. Axial displacements are determined using 3D digital image correlation, enabling efficient compensation of rigid body movements.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18541375
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Toward numerical modeling and experimental full-field validation of non-planar 3D-printed components - source code and data
Ewougsi Tekeu, Christian-Lionel
Tröger, Jendrik-Alexander
Afshari, Arash
Inkermann, David
Hartmann, Stefan
non-planar 3D-printing
fused filament fabrication
anisotropy
interpolation
finite element analysis
experimental validation
<p>The dataset contains source code and data generated during the investigation of modeling and experimental validation of non-planar 3D-printed specimens. The Python source code for the continuous interpolation of G-code coordinates applies to both planar and non-planar specimens and returns the spatially varying preferred directions of anisotropy for a given spatial discretization using finite elements. Material routines for the constitutive models of orthotropy and transversal isotropy are provided as Fortran code. The experimental validation data are provided as force-displacement data from an uniaxial tensile test on non-flat specimen geometries. Axial displacements are determined using 3D digital image correlation, enabling efficient compensation of rigid body movements.</p>
title Toward numerical modeling and experimental full-field validation of non-planar 3D-printed components - source code and data
topic non-planar 3D-printing
fused filament fabrication
anisotropy
interpolation
finite element analysis
experimental validation
url https://doi.org/10.5281/zenodo.18541375