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Investigation of intrinsic de-bonding in bonded concrete overlays: Material characterisation and numerical study

Olubanwo, Adegoke Omotayo; Karadelis, John Nicolas; Saidani, Messaoud; Khorami, Morteza; Abbey, Samuel Jonah

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Authors

Adegoke Omotayo Olubanwo

John Nicolas Karadelis

Messaoud Saidani

Morteza Khorami

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Samuel Abbey Samuel.Abbey@uwe.ac.uk
Associate Director - Engineering Practice and Management/Associate Professor



Abstract

© 2018 Growing Science Ltd. All rights reserved. This study investigates the evolution of intrinsic interfacial de-bonding of Roller Compacted Steel Fibre Reinforced Polymer Modified Concrete (RC-SFR-PMC) bonded on substrate Ordinary Portland Cement Concrete (OPCC), using both experimental and numerical techniques. The relative effects of evolving material inhomogeneity and composite dimensional stability during curing was studied as a function of overlay structural scale, using a 2D plane strain Interface Cohesive Zone Model (ICZM). The effects of creep coefficient on interface restraint capacity and ensuing cohesive zone length were clearly evaluated. The results showed that the applied curvature due to the measured shrinkage strain was inadequate to cause critical de-bonding. In the FEA results, while the rate of interface energy release generally varies as a function of the bi-material relative stiffness and overlay structural scale, it is also evident that the two variables lose effects as the overlay structural scale approaches 0.50. The overall indicative trend shows that the rate of energy release in compliant overlay when relative stiffness (α0. Therefore, a more compliant overlay typically exhibits less relative restraint to bending induced de-bonding.

Citation

Olubanwo, A. O., Karadelis, J. N., Saidani, M., Khorami, M., & Abbey, S. J. (2018). Investigation of intrinsic de-bonding in bonded concrete overlays: Material characterisation and numerical study. https://doi.org/10.5267/j.esm.2018.1.003

Journal Article Type Article
Acceptance Date Jan 15, 2018
Online Publication Date Jan 15, 2018
Publication Date Jan 1, 2018
Deposit Date May 3, 2019
Publicly Available Date May 3, 2019
Journal Engineering Solid Mechanics
Print ISSN 2291-8744
Electronic ISSN 2291-8752
Peer Reviewed Peer Reviewed
Volume 6
Issue 2
Pages 155-174
DOI https://doi.org/10.5267/j.esm.2018.1.003
Keywords intrinsic, de-bonding, composite, overlay, FEA, restraint
Public URL https://uwe-repository.worktribe.com/output/872159
Publisher URL http://doi.org/10.5267/j.esm.2018.1.003

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