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35022

MODELING OPEN-CELLED ALUMINUM FOAMS STRUCTURE USING 3-D VORONOI DIAGRAM

Article

Last updated: 04 Jan 2025

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Abstract

ABSTRACT
Three dimension (3-D) Voronoi diagram is used to model open-celled Aluminum foam
structures. This model simulates the compression response of open-celled Aluminum
foam. Models of aluminium foam with different relative density and different cell
regularities are used in simulations using ABAQUS. Finite element analysis (FEA)
has been carried out to simulate the compression process on Aluminum Foam up to
15% strain. Stress-strain curve relation is predicted for each model. The results show
good agreement with published experimental and mathematical modeling works. The
developed model could be accepted as a virtual platform for modeling open-celled
Aluminum foam structure.

DOI

10.21608/amme.2018.35022

Keywords

Open-celled Aluminium foam, Computer simulations, Finite element modelling

Authors

First Name

A.

Last Name

Fathy

MiddleName

M.

Affiliation

Graduate student, Dept. of Mech., AASTMT, Cairo, Egypt.

Email

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City

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Orcid

-

First Name

M.

Last Name

Abdelshafy

MiddleName

H.

Affiliation

Egyptian Armed Forces.

Email

-

City

-

Orcid

-

First Name

M.

Last Name

Atia

MiddleName

R. A

Affiliation

Associate professor, Dept. of Mech., AASTMT, Cairo, Egypt.

Email

-

City

-

Orcid

-

Volume

18

Article Issue

18th International Conference on Applied Mechanics and Mechanical Engineering.

Related Issue

5736

Issue Date

2018-04-01

Receive Date

2019-06-16

Publish Date

2018-04-01

Page Start

1

Page End

12

Print ISSN

2636-4352

Online ISSN

2636-4360

Link

https://amme.journals.ekb.eg/article_35022.html

Detail API

https://amme.journals.ekb.eg/service?article_code=35022

Order

76

Type

Original Article

Type Code

831

Publication Type

Journal

Publication Title

The International Conference on Applied Mechanics and Mechanical Engineering

Publication Link

https://amme.journals.ekb.eg/

MainTitle

MODELING OPEN-CELLED ALUMINUM FOAMS STRUCTURE USING 3-D VORONOI DIAGRAM

Details

Type

Article

Created At

22 Jan 2023