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Naji, M. |
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Motta, Antonella |
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Aletan, Dirar |
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Mohamed, Tarek |
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Ertürk, Emre |
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Taccardi, Nicola |
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Kononenko, Denys |
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Petrov, R. H. | Madrid |
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Alshaaer, Mazen | Brussels |
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Bih, L. |
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Casati, R. |
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Muller, Hermance |
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Kočí, Jan | Prague |
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Šuljagić, Marija |
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Kalteremidou, Kalliopi-Artemi | Brussels |
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Azam, Siraj |
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Ospanova, Alyiya |
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Blanpain, Bart |
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Ali, M. A. |
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Popa, V. |
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Rančić, M. |
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Ollier, Nadège |
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Azevedo, Nuno Monteiro |
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Landes, Michael |
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Rignanese, Gian-Marco |
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Tysmans, Tine
Vrije Universiteit Brussel
in Cooperation with on an Cooperation-Score of 37%
Topics
Publications (82/82 displayed)
- 2024Thermal Reactivation of Hydrated Cement Paste: Properties and Impact on Cement Hydrationcitations
- 2024Improving degradation resistance of ensete ventricosum fibre in cement-based composites through fibre surface modificationcitations
- 2023Experimental investigation of the failure under fatigue of textile reinforced cement (TRC) retrofit on masonry substrate. A compatibility study
- 2023Effect of matrix modification on the durability of cementitious composites reinforced with aligned Ensete fibrecitations
- 2022Rapid Heating of Textile Reinforced Concrete
- 2022Tensile Performance of Textile-Reinforced Concrete after Fire Exposure: Experimental Investigation and Analytical Approachcitations
- 2021Mechanical Performance and Durability of Cement Composites Reinforced with Aligned Enset Fibers
- 2021Mechanical behavior of cement composites reinforced by aligned Enset fiberscitations
- 2021State-of-the-art review on experimental investigations of textile-reinforced concrete exposed to high temperaturescitations
- 2020Carbon Textile Reinforced Concrete at ambient and high temperatures
- 2020Experimental and numerical evaluation of textile reinforced cement (TRC) sandwich walls in compression: A geometrical studycitations
- 2020Editorial on Special Issue “Textile-Reinforced Cement Composites: New Insights into Structural and Material Engineering”citations
- 2020Influence of Loading Orientation and Knitted Versus Woven Transversal Connections in 3D Textile Reinforced Cement (TRC) Compositescitations
- 2019Experimental investigation of the buckling behaviour of textile reinforced cement sandwich panels with varying face thickness using Digital Image Correlationcitations
- 2019Fatigue Behaviour of Textile Reinforced Cementitious Composites and Their Application in Sandwich Elementscitations
- 2019Tracking quasi-brittle fracture behaviour of textile reinforced cementitious composites using Acoustic Emission monitoring method
- 2019Validation of a Numerical Bending Model for Sandwich Beams with Textile-Reinforced Cement Faces by Means of Digital Image Correlationcitations
- 2019Experimental study and benchmarking of 3D textile reinforced cement compositescitations
- 2019Durability of sandwich beams with textile reinforced cementitious composite facescitations
- 2019Acoustic emission characterization of damage sources of lightweight hybrid concrete beamscitations
- 2019Reveal of damage mechanisms on textile reinforced cementitious (TRC) composites based on Acoustic Emission
- 2018Design and experimental investigation of textile reinforced cement sandwich panel ends
- 2018Investigation of 3D TRC’s by Means of Three Point Bending Tests on Short Beam Specimens
- 2018Characterization of the Bond between Textile Reinforced Cement and Extruded Polystyrene by Shear Test
- 2018Fibre textile reinforced cementitious composites: experimental investigation and modelling of three point bending tests on short beams
- 2018Repeated loading of cement composite sandwich beams
- 2018Modelling and experimental verification of flexural behaviour of textile reinforced cementitious composite sandwich renovation panels
- 2018Flexural impact response of textile reinforced inorganic phosphate cement composites (TRC)citations
- 2018Influence of environmental loading on the tensile and cracking behaviour of textile reinforced cementitious compositescitations
- 2018Experimental investigation and benchmarking of 3D textile reinforced cementitious compositescitations
- 2018Buckling behaviour of structural insulating sandwich walls with textile reinforced cement facescitations
- 2018Investigation of 3D TRC's by Means of Three Point Bending Tests on Short Beam Specimens
- 2018Investigation of the bond properties between textile reinforced concrete and extruded polystyrene foam
- 2018Influence of weathering conditions on TRC sandwich renovation panelscitations
- 2017Understanding the influence of externally bonded TRC on the cracking behaviour of a plain concrete beam
- 2017Durability study of textile reinforced cementitious composites with low fiber volume fraction
- 20173D fibre textiles as reinforcement for lightweight concrete structures
- 2017Fracture monitoring of lightweight composite-concrete beamscitations
- 2017AE monitoring of 3D textile reinforced cements
- 2017Fracture monitoring of lightweight composite-concrete beams with acoustic emission
- 2017Crack control in textile reinforced cement
- 2017Effect of propagation distance on acoustic emission fracture mode classification in textile reinforced cementcitations
- 2017Axial loading of small sandwich panels with textile reinforced cementitious faces monitored by DIC
- 2016Analytical modelling of the bending behaviour of hybrid composite-concrete beams: methodology and experimental validationcitations
- 2016Monitoring of the Structural Behaviour of Hybrid Composite-Concrete Beams by Means of Acoustic Emission and Digital Image Correlation
- 2016Monitoring the failure mechanisms of a reinforced concrete beam strengthened by textile reinforced cement using acoustic emission and digital image correlationcitations
- 2016Bending crack behaviour of plain concrete beams externally reinforced with TRCcitations
- 2016Shear capacity of hybrid composite-concrete beams: A theoretical approachcitations
- 2016Shear behaviour of hybrid composite-concrete beams: Experimental failure and strain analysiscitations
- 2016Acoustic Emission and Digital Image Correlation for the monitoring of fracture of composite cementitious beams
- 2016Structural behaviour of hybrid composite-concrete floors: Experimental validation and analytical simulationcitations
- 2016Experimental Structural Analysis of Hybrid Composite-Concrete Beams by Digital Image Correlation (DIC) and Acoustic Emission (AE)citations
- 2015Finite element modelling of the biaxial behaviour of high-performance fibre-reinforced cement composites (HPFRCC) using Concrete Damaged Plasticity
- 2015Multi-objective weight and cost optimization of hybrid composite-concrete beamscitations
- 2015Study of the crack pattern and its evolution by DIC of RC beams externally reinforced with TRC and CFRP
- 2015Evaluation of the FIB bulletin 14 design guideline for external TRC bending reinforcement
- 2014Analytical modelling and experimental testing of hybrid composite-concrete beams in a lightweight floor system
- 2014Experimental bond behaviour between Textile Reinforced Cement and Concrete
- 2014Development and experimental validation of a lightweight Stay-in-Place composite formwork for concrete beamscitations
- 2014Numerical Simulation Of The Bond Behaviour Between High-Performance Textile Reinforced Cement Composites And Concrete During The Double-Lap Shear Test
- 2014TRC or CFRP strengthening for reinforced concrete beams: An experimental study of the cracking behaviourcitations
- 2014Bending of beams externally reinforced with TRC and CFRP monitored by DIC and AEcitations
- 2013Bending of beams externally reinforced with TRC and CFRP monitored by DIC and AE.
- 2013Characterization of mechanical performance of concrete beams with external reinforcement by acoustic emission and digital image correlation
- 2013Design and structural feasibility study of a lightweight floor system for renovation
- 2013Comparison between TRC and CFRP as external reinforcement for plain concrete beams
- 2012The influence of externally bonded longitudinal TRC reinforcement on the crack pattern of a concrete beam
- 2012Flexible reinforcement systems for spatially curved concrete structures
- 2012Structural stay-in-place formwork in textile reinforced cement composites for very slender concrete columns
- 2011TEXTILE REINFORCED CEMENT COMPOSITES FOR THE DESIGN OF VERY THIN SADDLE SHELLS: A CASE STUDY
- 2011Form finding methodology for force-modelled anticlastic shells in glass fibre textile reinforced cement compositescitations
- 2011Cement composite stay-in-place formwork: A concept for future building systems.
- 2009Shape optimization of small span textile reinforced cementitious composite shells
- 2009Shell Elements Of Architectural Concrete Using Fabric Formwork – Part B: Case Study
- 2009Structural analysis of small span textile reinforced concrete shells with double curvaturecitations
- 2009Finite element modelling of the material behaviour of glass fibre textile reinforced cementitious composite
- 2008The Influence of Biaxial Stress States on the Stiffness of Glass Textile Reinforced Cementitious Composites
- 2008DESIGN OF TRC SADDLE SHELLS, PART A: INFLUENCE OF SPAN AND MATERIAL SELECTION
- 2008PROCESSING TECHNIQUE TO IMPREGNATE GLASS FIBRE MATS FOR TEXTILE REINFORCED CEMENTITIOUS COMPOSITES
- 2008DESIGN OF TRC SADDLE SHELLS, PART B: INFLUENCE OF MATERIAL NONLINEARITY
- 2008Implementation of Durability in the Design of Glass Fibre Reinforced Concrete Structures
- 2007Numerical analysis of a fibre reinforced concrete shell consisting of modular elements
Places of action
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article
Finite element modelling of the biaxial behaviour of high-performance fibre-reinforced cement composites (HPFRCC) using Concrete Damaged Plasticity
Abstract
High-performance fibre-reinforced cement or concrete composites (HPFRCC) are increasingly used in structural applications exposed not only to uniaxial but also complex stress states. Current finite element models for these materials have however been only validated for uniaxial stress states, and mostly restricted to cement composites with relatively limited strain hardening capacity in tension. To facilitate the numerical analysis and design of more complex structures, this paper adapts and validates the Concrete Damaged Plasticity (CDP) model for both uni- and biaxial stress states, and for cement composites with a large strain hardening capacity (ratio of failure stress to linear stress limit more than 8). The validation of the numerical model is done by performing laboratory biaxial tension–tension tests under various load cases. For the latter, an adapted cruciform specimen was designed. The strain distribution in the specimen as well as its evolution with increasing load correspond well. As the results show, the adapted CDP model can simulate the nonlinear strain hardening behaviour in tension – different from the linear behaviour in compression – of high-performance cement composites for both uniaxial as well as biaxial stress states. Moreover, failure can be simulated. &