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Teall, Oliver, Pilegis, Martins, Davies, Robert, Sweeney, John, Jefferson, Tony, Lark, Robert and Gardner, DianeĪ shape memory polymer concrete crack closure system activated by electrical current. Large scale application of self-healing concrete: design, construction and testing. Advanced Materials Interfacesĭavies, Robert, Teall, Oliver, Pilegis, Martins, Kanellopoulos, Antonios, Sharma, Trupti, Jefferson, Anthony, Gardner, Diane, Al-Tabbaa, Abir, Paine, Kevin and Lark, Robert Advanced Materials Interfacesĭe Belie, Nele, Davies, Robert, Jefferson, Anthony, Gruyaert, Elke, Al-Tabbaa, Abir, Antonac, Paola, Baera, Cornelia, Bajare, Diana, Darquennes, Aveline, Ferrara, Liberato, Litina, Chrysoula, Miljevic, Bojan, Otlewska, Anna, Ranogajec, Jonjaua, Roig-Flores, Marta, Paine, Kevin, Lukowski, Pawel, Serna, Pedro, Tulliani, Jean-Marc, Vucetic, Snezana, Wang, Jianyun and Jonker, HenkĪ review of self-healing concrete for damage management of structures. Research progress on numerical models for self‐healing cementitious materials. Jefferson, Anthony, Javierre, E., Freeman, Brubeck, Zaoui, A., Koenders, E. International Journal for Numerical Methods in Engineering International Journal for Numerical and Analytical Methods in Geomechanicsįreeman, Brubeck Lee, Cleall, Peter John and Jefferson, Anthony DuncanĪn indicator-based problem reduction scheme for coupled reactive transport models. The simulation of transport processes in cementitious materials with embedded healing systems. Proceedings of the ICE - Engineering and Computational Mechanicsĭe Nardi, Cristina, Gardner, Diane and Jefferson, Anthony Duncanĭevelopment of 3D printed networks in self-healing concrete. and Cleall, Peter J.Ī reformulated hardening soil model. Construction and Building Materialsīower, Thomas Ashley, Jefferson, Anthony D. D.Ĭharacterisation of a vascular self-healing cementitious material system: Flow and curing properties. Advanced Modeling and Simulation in Engineering Sciences Construction and Building Materialsįreeman, Brubeck Lee, Bonilla-Villalba, Pedro, Mihai, Iulia, Alnaas, Waled and Jefferson, AnthonyĪ specialised finite element for simulating self-healing quasi-brittle materials. Mechanical response of a vascular self-healing cementitious material system under varying loading conditions. Selvarajoo, Tharmesh, Davies, Robert, Freeman, Brubeck and Jefferson, Anthony Presented at: 14th WCCM-Ecomas Congress 2020,īalzano, Brunella, Sweeney, John, Thompson, Glen, Tuinea-Bobe, Cristina-Luminita and Jefferson, AnthonyĮnhanced concrete crack closure with hybrid shape memory polymer tendons.

Micromechanics-driven variational method for diffuse-to-localised fracture in quasi-brittle solids. Smart Materials and Structures 10.1088/1361-665X/abf41dĪzua-Gonzalez, Carlos X., Mihai, Iulia C. Shields, Yasmina, De Belie, Nele, Jefferson, Anthony and Van Tittelboom, KimĪ review of vascular networks for self-healing applications. Journal of Materials in Civil Engineeringĭe Nardi, Cristina, Gardner, Diane, Cazzador, Giulia, Cristofori, Davide, Ronchin, Lucio, Vavasori, Andrea and Jefferson, AnthonyĮxperimental investigation of a novel formulation of a cyanoacrylate based adhesive for self-healing concrete technologies. Self-Healing Construction Materials: Fundamentals, Monitoring and Large Scale Applications,ĭavies, Robert, Jefferson, Anthony and Gardner, Dianeĭevelopment and testing of vascular networks for self-healing cementitious materials. In: Kanellopoulos, Anotnios and Norambuena-Contreras, Jose eds. Numerical simulation of self-healing cementitious materials. Polymersįreeman, Brubeck Lee and Jefferson, Anthony Maddalena, Riccardo, Sweeney, John, Winkles, Jack, Tuinea-Bobe, Cristina, Balzano, Brunella, Thompson, Glen, Arena, Noemi and Jefferson, TonyĪpplications and life cycle assessment of shape memory polyethylene terephthalate in concrete for crack closure. International Journal of Solids and Structures and Freeman, Brubeck L.Ī crack-opening-dependent numerical model for self-healing cementitious materials. Arena simulation will allow your team to analyze existing processes and greenfield process and understand how a change will impact the system.Jefferson, Anthony D. Although Arena can model very complex processes, it is easy to learn.
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