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Application of Nonlinear Finite Element Analysis on Shear-Critical Reinforced Concrete Beams




Abstract

This paper presents the application of a smeared fixed crack approach for nonlinear finite element analysis of shear-critical reinforced concrete beams. The experimental data was adopted from tests undertaken on twelve reinforced concrete beams by Bresler and Scordelis in 1963, and from duplicate tests undertaken by Vecchio and Shim in 2004. To this end, all beams were modeled in 3D using the software package ATENA-GiD. In the modeling, the nonlinear behaviors of the concrete were represented by fracture-plastic constitutive models, which were formulated within the smeared crack and crack/crush band approaches. The applicability of nonlinear analysis was demonstrated through accurate simulations of the full load-deflection responses, underlying mechanisms, crack patterns, and failure modes of all 24 beams. Detailed documentation of the results is presented to demonstrate the potential and practical value of nonlinear finite element analysis in providing an informed assessment of the safety and performance of reinforced concrete structures.


Ketersediaan

JETS16-008JETS V53N4 Agustus 2021Perpustakaan FT UPI YAITersedia

Informasi Detil

Judul Seri
Journal of Engineering and Technological Sciences
No. Panggil
JETS V53N4 Agustus 2021
Penerbit ITB Journal Publisher : Bandung.,
Deskripsi Fisik
hlm : 695-715
Bahasa
English
ISBN/ISSN
2337-5779
Klasifikasi
JETS
Tipe Isi
-
Tipe Media
-
Tipe Pembawa
-
Edisi
Volume 53 Nomor 4 Agustus 2021
Subyek
Info Detil Spesifik
-
Pernyataan Tanggungjawab

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