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Cristina De Nardi
Cristina De Nardi
RA, School of Engineering, Cardiff University
Email verificata su cardiff.ac.uk
Titolo
Citata da
Citata da
Anno
Effect of age and level of damage on the autogenous healing of lime mortars
C De Nardi, A Cecchi, L Ferrara, A Benedetti, D Cristofori
Composites Part B: Engineering 124, 144-157, 2017
732017
Effectiveness of crystalline admixtures and lime/cement coated granules in engineered self-healing capacity of lime mortars
C De Nardi, S Bullo, L Ferrara, L Ronchin, A Vavasori
Materials and Structures 50, 1-12, 2017
562017
Development of 3D printed networks in self-healing concrete
C De Nardi, D Gardner, AD Jefferson
Materials 13 (6), 1328, 2020
412020
Self-healing capacity of advanced lime mortars
C De Nardi, S Bullo, A Cecchi, L Ferrara
Advances in Materials and Processing Technologies 2 (3), 349-360, 2016
142016
Advanced 3D printed mini-vascular network for self-healing concrete
C De Nardi, D Gardner, D Cristofori, L Ronchin, A Vavasori, T Jefferson
Materials & Design 230, 111939, 2023
122023
Experimental investigation of a novel formulation of a cyanoacrylate-based adhesive for self-healing concrete technologies
C De Nardi, D Gardner, G Cazzador, D Cristofori, L Ronchin, A Vavasori, ...
Frontiers in Built Environment 7, 660562, 2021
82021
The influence of self-healing capacity of lime mortars on the behaviour of brick-mortar masonry subassemblies
C De Nardi, A Cecchi, L Ferrara
Key Engineering Materials 747, 465-471, 2017
72017
Assessing the influence of self-healing capacity of lime-based mortars on brick-mortar interface strength in masonry units
C De Nardi, A Cecchi, L Ferrara
MATEC Web of Conferences 199, 02015, 2018
42018
The development of mini-vascular networks for self-healing concrete
C De Nardi, D Gardner, A Jefferson, T Selverajoo, G Evans
Magnel Laboratory for Concrete Research, 2019
32019
Mechanical response and predictive modelling of vascular self-healing cementitious materials using novel healing agents
C De Nardi, BL Freeman, D Gardner, T Jefferson
Cement and Concrete Composites 142, 105143, 2023
22023
Characterisation of Innovative Mortar Formulations for the Restoration of Roman Mosaics
NME Stucchi, C De Nardi, G Franceschin, L Ronchin, A Vavasori, ...
Cardiff University Press, 2024
2024
Influence of Healing Agents and Concrete Environment on PLA 3D Printed Mini-vascular Networks for Self-healing Concrete Structures
G Cazzador, C De Nardi, L Ronchin, A Vavasrori
Cardiff University Press, 2024
2024
3D-Printed Mini-vascular Networks for Self-healing Lime-based Mortars
C De Nardi, D Gardner, A Jefferson
Cardiff University Press, 2024
2024
Non-destructive evaluation of ductile-porous versus brittle 3D printed vascular networks in self-healing concrete
Y Shields, E Tsangouri, C Riordan, C De Nardi, JRA Godinho, T Ooms, ...
Cement and Concrete Composites 145, 105333, 2024
2024
Tailoring healing agents for self-healing cementitious materials using predictive modelling and physical testing
B Freeman, C De Nardi, D Gardner, A Jefferson
2023
3D-printed mini-vascular networks for crack-sealing in the concrete cover zone
D Gardner, K Coopamootoo, C De Nardi, A Jefferson
2023
Use of 3D mini-vascular networks to protect and deliver bacterial spores in self-healing concretes
IJ Reinoso, C De Nardi, B Reeksting, D Gardner, T Jefferson, S Gebhard, ...
8th International Conference on Self-Healing Materials, 2022
2022
Use of 3D mini-vascular networks to protect and deliver bacterial spores in self-healing concretes
I Justo Reinoso, C De Nardi, B Reeksting, D Gardner, A Jefferson, ...
2022
A study of damage healing cycles in vascular networks containing silicate-based healing agents
S Salman, C De Nardi, D Gardner
2022
Self-healing behaviour of lime mortars for structural restoration of historical masonry constructions
C DE NARDI
Università IUAV di Venezia, 2018
2018
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
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