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Behavior of tension lap splices in high-performance concrete using a new developed technique

Article

Last updated: 05 Jan 2025

Subjects

-

Tags

Lap splice
direct tension
anchor-ended
plate-ended
Behavior of tension lap splices in high-performance concrete using a new developed technique
ICASGE'23

Abstract

An experimental and analytical study on seven specimens of lap splices embedded in high-performance concrete (HPC) prisms without confining reinforcement was performed under direct tension. The experimental program was classified into two groups; first group involved the straight-ended splices, while the second studied a new developed technique based on anchor-ended splices. For straight-ended bars, conventional lap splice was studied as a benchmark. The anchor-ended splices contained embedded steel plates connected to the ends of the spliced bars, by which the slippage of bars was suppressed. It was found that the used technique not only achieved higher capacity at failure, but also a bond induced failure was altered with a rupture of bars at its maximum tensile strength. Finally, an analytical model was proposed in order to predict the ultimate tensile stress of the straight-ended spliced bars. The accuracy of the proposed model was verified against the test results of 137 existing specimens from previous research. The comparison showed good agreement between the results of the proposed model and the test results.

Keywords

Lap splice, direct tension, anchor-ended, plate-ended

Authors

First Name

Tarek

Last Name

Fawzy

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Orcid

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First Name

Abdel-Hakim

Last Name

Khalil

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Orcid

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First Name

Ahmed

Last Name

Atta

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First Name

Hamdy

Last Name

M. Afefy

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First Name

Mohamed

Last Name

Ellithy

Affiliation

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Volume

ICASGE2021

Issue Date

1 Jan 2021

Publish Date

29 May 2022

Link

https://icasge.conferences.ekb.eg/article_1583.html

Order

312

Publication Type

Conference

Publication Title

ICASGE'23

Publication Link

https://icasge.conferences.ekb.eg/

Details

Type

Article

Locale

en

Created At

13 Dec 2022