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271005

Bond Strength of Reinforcing Steel Bars In Self-Compacting Concrete Beams at Shear zone

Article

Last updated: 23 Jan 2023

Subjects

-

Tags

Reinforced Concrete

Abstract

Self-compacting concrete (SCC) represents an innovation in the building industry due to its workability. This type of concrete can flow under its own weight, fill in formwork and pass between bars without need compaction, but the mixture proportions for SCC differ essentially. The higher powder content, limited volume and nominal maximum size of aggregate, larger quantity of superplasticizers make design requirements in achieving the self-compacting concrete. The bond between SCC and reinforcing steel bars is an essential requirement for design of reinforced concrete structures. The current study investigate the effect of various parameters that affect the bond behavior between SCC and steel rebars at the maximum shear strength zone such as : concrete compressive strength, splice length ,concrete cover , the effect of confining steel and level of confinement, Evaluate the applicability of various lap splice equations, in different building codes and standards, for calculating lap splice in self-compacting concrete beams ,Finally compare between bond behavior of lap splice in conventional concrete and SCC.

DOI

10.21608/asge.2019.271005

Keywords

Self-compacting Concrete, bond strength, compaction, Full scale beam, Lap spliced bars

Volume

03

Article Issue

01

Related Issue

37706

Issue Date

2019-02-01

Receive Date

2022-11-23

Publish Date

2019-02-01

Page Start

63

Page End

75

Print ISSN

2785-9509

Online ISSN

2812-5142

Link

https://asge.journals.ekb.eg/article_271005.html

Detail API

https://asge.journals.ekb.eg/service?article_code=271005

Order

271,005

Type

Original Article

Type Code

2,140

Publication Type

Journal

Publication Title

International Journal of Advances in Structural and Geotechnical Engineering

Publication Link

https://asge.journals.ekb.eg/

MainTitle

-

Details

Type

Article

Created At

23 Jan 2023