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Digital material laboratory: Wave propagation effects in open-cell aluminium foams
- Source :
- Repositorio EAFIT, Universidad EAFIT, instacron:Universidad EAFIT
- Publication Year :
- 2012
- Publisher :
- Elsevier, 2012.
-
Abstract
- This paper is concerned with numerical wave propagation effects in highly porous media using digitized images of aluminum foam -- Starting point is a virtual material laboratory approach -- The Aluminum foam microstructure is imaged by 3D X-ray tomography -- Effective velocities for the fluid-saturated media are derived by dynamic wave propagation simulations -- We apply a displacement-stress rotated staggered fnite-difference grid technique to solve the elastodynamic wave equation -- The used setup is similar to laboratory ultrasound measurements and the computed results are in agreement with our experimental data -- Theoretical investigations allow to quantify the influence of the interaction of foam and fluid during wave propagation – Together with simulations using an artificial dense foam we are able to determine the tortuosity of aluminum foam
- Subjects :
- Materials science
Wave propagation
Acoustics
Engineering laboratories
chemistry.chemical_element
MATERIALES POROSOS
X-ray computed
Modelos computacionales
Modelado geométrico
Tortuosity
Permeability
Espumas de aluminio
Aluminium
ULTRASONIDO
General Materials Science
Point (geometry)
LABORATORIOS DE INGENIERÍA
Porous materials
Ultrasonics
Tomography
Digital material
Mechanical Engineering
Tomography, X-ray computed
General Engineering
PERMEABILIDAD
Microstructure
Wave equation
PROPAGACIÓN DE ONDAS
TOMOGRAFÍA COMPUTARIZADA POR RAYOS X
chemistry
Image processing - Digital techniques
Mechanics of Materials
PROCESAMIENTO DIGITAL DE IMÁGENES
POROSIDAD
Porosity
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Repositorio EAFIT, Universidad EAFIT, instacron:Universidad EAFIT
- Accession number :
- edsair.doi.dedup.....509b43b58b1ab93993a3d161089b0936