Nonlinear finite-element analysis for rc beams strengthened with fabric-reinforced cementitious matrix

Other Title(s)

التحليل اللاخطي للكمرات الخرسانية المسلحة و المقواة بوسط إسمنتي مسلح بنسيج من الألياف

Joint Authors

Hasanayn, Yahya A.
Dirar, Ahmad Atiyyah M.
Arafah, Ahmad Arafah
Naja, Muhammad

Source

Journal of Engineering Sciences

Issue

Vol. 48, Issue 4 (31 Jul. 2020), pp.554-576, 23 p.

Publisher

Assiut University Faculty of Engineering

Publication Date

2020-07-31

Country of Publication

Egypt

No. of Pages

23

Main Subjects

Engineering & Technology Sciences (Multidisciplinary)

Topics

Abstract EN

Because of the shortcomings of the externally bonded system that mainly consists of epoxy and FRP sheets, the fabric-reinforced cementitious matrix, (FRCM) represents a viable solution in the strengthening of reinforced concrete beams.

The FRCM layers consist of fabric mesh embedded in an inorganic stabilized cementitious mortar.

Many experimental studies examined the impact of strengthening of RC beams with the FRCM layers, but the numerical investigations are limited.

This study is therefore aimed at introducing a numerical study investigating the behavior of RC beams reinforced with FRCM layer.

The main goal of this paper is to verify the FEM results with the experimental results that are available in the previous study [1], and to provide a parametric study.

The investigated beams in this paper are 150 mm × 250 mm× 3000 mm with two reinforcement ratios.

One, two, and three-layers of PBO, (p-Phenylene Benzobis Oxazole) FRCM were investigated as strengthening of the simulated beams were strengthened with.

The numerical validation included load-deflection curve, load –strain of both concrete and PBO- FRCM, strain distribution, cracks series and failure mode.

The built model gave an accurately prediction of the attitude of the investigated beams.

The results also indicated that the rise in the reinforcement ratio or the amount of FRCM layers contributed to improving behavior under both ultimate and serviceability limit states.

American Psychological Association (APA)

Naja, Muhammad& Arafah, Ahmad Arafah& Hasanayn, Yahya A.& Dirar, Ahmad Atiyyah M.. 2020. Nonlinear finite-element analysis for rc beams strengthened with fabric-reinforced cementitious matrix. Journal of Engineering Sciences،Vol. 48, no. 4, pp.554-576.
https://search.emarefa.net/detail/BIM-1000328

Modern Language Association (MLA)

Naja, Muhammad…[et al.]. Nonlinear finite-element analysis for rc beams strengthened with fabric-reinforced cementitious matrix. Journal of Engineering Sciences Vol. 48, no. 4 (Jul. 2020), pp.554-576.
https://search.emarefa.net/detail/BIM-1000328

American Medical Association (AMA)

Naja, Muhammad& Arafah, Ahmad Arafah& Hasanayn, Yahya A.& Dirar, Ahmad Atiyyah M.. Nonlinear finite-element analysis for rc beams strengthened with fabric-reinforced cementitious matrix. Journal of Engineering Sciences. 2020. Vol. 48, no. 4, pp.554-576.
https://search.emarefa.net/detail/BIM-1000328

Data Type

Journal Articles

Language

English

Notes

-

Record ID

BIM-1000328