AL-OBAIDI, SALAM MAYTHAM JABER

AL-OBAIDI, SALAM MAYTHAM JABER  

DIPARTIMENTO DI INGEGNERIA CIVILE E AMBIENTALE  

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Risultati 1 - 9 di 9 (tempo di esecuzione: 0.012 secondi).
Titolo Data di pubblicazione Autori File
Crack healing under sustained load in concrete: An experimental/numerical study 1-gen-2023 G. Di LuzioA. CibelliS. M. J. Al-ObaidiM. DavolioL. Ferrara +
Data Mining Strategies to Handle State of Art Knowledge on Self-healing Capacity of Cementitious Materials 1-gen-2023 Al-Obaidi, SalamFerrara, Liberato +
Durability Analysis of Ultra High-Performance Fiber Reinforced Concrete Structures in Cracked Serviceability Limit State 1-gen-2023 Al-Obaidi, SalamFerrara, Liberato +
Flexural performance of Ultra High Performance Concrete slabs under simultaneous environmental and mechanical loading 1-gen-2022 S. Al-ObaidiM. DavolioM. del GaldoF. Lo MonteL. Ferrara +
How Does Self-healing Under Sustained Loadings in Aggressive Water Affect the Constitutive Response of a UHPFRC? 1-gen-2023 Al-Obaidi, SalamDavolio, MarcoLo Monte, FrancescoFerrara, Liberato +
How to better exploit the use of LCA analysis for Ultra High Performance Concrete (UHPC) through a constitutive law which integrates chloride and sulfate attack 1-gen-2023 D. di SummaF. SoaveM. DavolioS. Al-ObaidiL. Ferrara +
Investigation of self-healing property of UHPC with sus-tained loads under aggressive exposure environments 1-gen-2022 B. XiS. Al-ObaidiF. Lo MonteL. Ferrara +
Performance evolution and tensile behaviour of long-term exposed UHPC under sustained load, aggressive environments and autogenous healing 1-gen-2023 Davolio, MarcoSoave, FrancescoAl-Obaidi, SalamFerrara, Liberato +
Ultra High-Performance Fibre-Reinforced Cementitious Composites as the link between structural durability and sustainability: the experience of the H2020 project ReSHEALience 1-gen-2022 F. Lo MonteS. Al-ObaidiL. Ferrara