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  4. Uncertainty quantification of spruce wood: Compression test and images of material orientation
 
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Uncertainty quantification of spruce wood: Compression test and images of material orientation

Citation Link: https://doi.org/10.15480/882.15956
Type
Experimental Data
Version
1.0
Date Issued
2026-05-06
Author(s)
Krüger, Jan Christoph  orcid-logo
Strukturmechanik im Leichtbau M-24  
Kriegesmann, Benedikt  orcid-logo
Strukturmechanik im Leichtbau M-24  
Contact
Kriegesmann, Benedikt  orcid-logo
Strukturmechanik im Leichtbau M-24  
Language
English
DOI
https://doi.org/10.15480/882.15956
TORE-URI
https://hdl.handle.net/11420/57825
Used equipment
Spindelprüfmachine Zwick/Roell Z010  
Is Supplement To
10.15480/882.17010
Abstract
This data corresponds to the dissertation "Scalable gradient-based approaches for topology and shape optimization under uncertainty".

It contains measurment data of compession tests of spruce specimens with the dimensions (l/w/t 50/10/5 mm). The specimens are tested in fiber direction. The filenames indicate the positions of the specimens on the original sheet. The first two numbers indicate the position in x-direction, the second two numbers indicate the position in y-direction. The letter A/B/C indicates the sheet number.

Secondary, it contains scans of the surface of several spruce sheet, where the annual rings are perpendicular to the surface.

In addition it contains the compression test data of topology optimized designs.

Finally it also contains the manufacturing documents for the test setup.
Subjects
Compression tests
fiber orientation
wood properties
robust design optimization
DDC Class
620.11: Engineering Materials
Funding(s)
Form- und Topologieoptimierung imperfektionssensitiver Strukturen bei streuender Geometrie  
Funding Organisations
Deutsche Forschungsgemeinschaft (DFG)  
License
https://creativecommons.org/licenses/by/4.0/
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README.txt

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CompressionTests.zip

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8.44 MB

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CutImagesRadial.zip

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153.09 MB

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CutImagesTangential.zip

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5.84 MB

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Design.zip

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145.3 KB

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designExperiments.zip

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753.81 KB

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