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Correlation modeling between morphology and compression behavior of closed-cell al foams based on x-ray computed tomography observations
- Source :
- Metals, Volume 11, Issue 9, Metals, Vol 11, Iss 1370, p 1370 (2021)
- Publication Year :
- 2021
- Publisher :
- MDPI, 2021.
-
Abstract
- In the last decades, great attention has been focused on the characterization of cellular foams, because of their morphological peculiarities that allow for obtaining effective combinations of structural properties. A predictive analytical model for the compressive behavior of closed-cell Al foams, based on the correlation between the morphology of the cellular structure and its mechanical response, was developed. The cells’ morphology of cylindrical specimens was investigated at different steps of compression by X-ray computed tomography, in order to detect the collapse evolution. The structure, typically inhomogeneous at local level, was represented by developing a global virtual model consisting of homogeneous cells ordered in space, that was fitted on the experimentally detected structure at each deformation step. As a result, the main parameters characterizing the two-dimensional cells morphology (equivalent diameter, circularity), processed by the model, allowed to simulate the whole compression stress–strain curve by enveloping those obtained for each step. The model, fitted on the previous foam, was validated by comparing the simulated stress–strain curve and the corresponding experimental one, detected for similar foams obtained by different powder compositions. The effectiveness in terms of an accurate prediction of the compression response up to the final densification regime has been confirmed.
- Subjects :
- Settore ING-IND/21
Morphology (linguistics)
Materials science
Mining engineering. Metallurgy
medicine.diagnostic_test
Metals and Alloys
TN1-997
Al foams
closed cells morphology
compression behavior
analytical modeling
computed tomography
Computed tomography
Compression (physics)
Characterization (materials science)
Compression behavior
Analytical modeling
X ray computed
medicine
Closed cells morphology
General Materials Science
Hydraulic diameter
Tomography
Composite material
Deformation (engineering)
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Metals, Volume 11, Issue 9, Metals, Vol 11, Iss 1370, p 1370 (2021)
- Accession number :
- edsair.doi.dedup.....0e94f9d3d6f2e3fbbed92909e3fac47d