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  4. Datasets for structural and mechanical properties of nanoporous networks from FIB reconstruction
 
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Datasets for structural and mechanical properties of nanoporous networks from FIB reconstruction

Citation Link: https://doi.org/10.15480/882.15230
Type
Compiled Data
Date Issued
2025-07-30
Author(s)
Li, Yong  orcid-logo
Helmholtz-Zentrum Hereon  
Researcher
Li, Yong  orcid-logo
Helmholtz-Zentrum Hereon  
Hu, Kaixiong  
Wuhan University of Technology  
Lilleodden, Erica  
Fraunhofer Institute for Microstructure of Materials and Systems  
Huber, Norbert  orcid-logo
Hamburg University of Technology  
Data Collector
Li, Yong  orcid-logo
Helmholtz-Zentrum Hereon  
Hu, Kaixiong  
Wuhan University of Technology  
Contact
Li, Yong  orcid-logo
Helmholtz-Zentrum Hereon  
Language
English
DOI
https://doi.org/10.15480/882.15230
TORE-URI
https://hdl.handle.net/11420/55753
Cites
10.1080/14786435.2016.1222087
Abstract
This dataset includes 3D tomographic reconstruction image files, volume mesh files for finite element simulations, and data on the structural and mechanical properties of nanoporous gold (NPG) structures. It serves as a supplement to a dataset paper, with the corresponding DOI provided in the “Related Identifiers” section. Detailed descriptions of the data, as well as the procedures for their preparation and curation, are presented in that paper.
The base material, nanoporous gold, was fabricated via a dealloying process and has a solid fraction of approximately 0.30. NPG samples with ligament sizes ranging from 20 nm to 400 nm were prepared through dealloying and subsequent thermal annealing. Tomographic TIFF files were obtained via Focused Ion Beam/Scanning Electron Microscopy (FIB/SEM) 3D reconstruction, with the procedure detailed in Philosophical Magazine (2016, 96(32–34), 3322–3335).
Based on the 3D image data, new simulations and analyses were performed. The resulting structural and mechanical property data of nanoporous gold are reported for the first time in the dataset paper and are archived here. This dataset provides a valuable database for the study of nanoporous network materials and can be reused for numerical simulations, additive manufacturing, and machine learning applications within the materials science community.
Subjects
nanoporous gold
dealloying
coarsening
FIB/SEM tomograph
connectivity
finite element
volume mesh
Young’s modulus
yield stress
Poisson’s ratio
DDC Class
620.11: Engineering Materials
Funding(s)
SFB 986: Teilprojekt B02 - Feste und leichte Hybridwerkstoffe auf Basis nanoporöser Metalle  
SFB 986: Subproject B09 - Microstructure-based classification and mechanical analysis of nanoporous metals by machine learning  
Funding Organisations
Deutsche Forschungsgemeinschaft (DFG)  
License
https://creativecommons.org/licenses/by/4.0/
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s400nm_4_poisson_ratio_data.zip

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s400nm_3_stress_strain_data.zip

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35.4 KB

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s400nm_2_volume_meshing_file.zip

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1.15 GB

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s400nm_1_3D_tomographic_image.zip

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13.69 MB

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s350nm_4_poisson_ratio_data.zip

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s350nm_3_stress_strain_data.zip

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28.21 KB

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s350nm_2_volume_meshing_file.zip

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991.74 MB

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s350nm_1_3D_tomographic_image.zip

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4.39 MB

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s200nm_4_poisson_ratio_data.zip

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7.79 KB

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s200nm_3_stress_strain_data.zip

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17.44 KB

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