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30066

Effect of air gap on the structural response of aluminum foam protected reinforced concrete panels

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Last updated: 22 Jan 2023

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Abstract

ABSTRACT
This paper comprises computational investigation on the effect of air gap clearance on the dynamic behavior of aluminum foam- air gap- reinforced concrete (RC) panel interaction under the effect of various blast loads. A parametric study was performed using hydro-code software (i.e. AUTODYN 3D) in order to investigate the effect of considering material of low mechanical impedance (i.e. Air) between the protection panel and RC panel. The parameters studied are the thickness of aluminum foam, air gap thickness, the weight of explosive charge, and thickness of RC panel. A set of published experimental tests was used to validate the developed numerical models of protected and unprotected RC panels. In the numerical simulations, the dynamic behavior of reinforced concrete and aluminum foam materials as porous materials were defined utilizing different Equations of State (EOS) and strength models. Time-dependent results of the response of the tested RC panels are analyzed, discussed and utilized to obtain the suitable aluminum foam and air gap thicknesses for each case to maintain the maximum deflection of each RC panel within its elastic limit.

DOI

10.21608/iccae.2018.30066

Keywords

Concrete slabs, Aluminum Foam, Air gap, blast loadings

Authors

First Name

Mohamed

Last Name

Mahmoud

MiddleName

M.

Affiliation

Capt. Eng., Defense Systems Studies Center.

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First Name

Sameh

Last Name

Mahfouz

MiddleName

Y.

Affiliation

Assoc. Prof., Head of Construction and Building Engineering Department, College of Engineering and Technology (Smart Village), Arab Academy for Science, Technology, and Maritime Transport.

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Orcid

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First Name

Hassan

Last Name

Farag

MiddleName

M.

Affiliation

Maj. Gen. (Ret.) Dr., Military Technical College.

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Orcid

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Volume

12

Article Issue

12th International Conference on Civil and Architecture Engineering

Related Issue

5224

Issue Date

2018-04-01

Receive Date

2019-04-14

Publish Date

2018-04-01

Page Start

1

Page End

13

Print ISSN

2636-4379

Online ISSN

2636-4387

Link

https://iccae.journals.ekb.eg/article_30066.html

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https://iccae.journals.ekb.eg/service?article_code=30066

Order

26

Type

Original Article

Type Code

834

Publication Type

Journal

Publication Title

The International Conference on Civil and Architecture Engineering

Publication Link

https://iccae.journals.ekb.eg/

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Article

Created At

22 Jan 2023