オープン アクセスを義務付けられた論文 - Francesco Focacci詳細
一般には非公開: 5 件
The role of the fiber–matrix interfacial properties on the tensile behavior of FRCM coupons
F Focacci, T D'Antino, C Carloni
Construction and Building Materials 265, 120263, 2020
委任: Government of Italy
Relationship between the effective strain of PBO FRCM-strengthened RC beams and the debonding strain of direct shear tests
T D'Antino, F Focacci, LH Sneed, C Carloni
Engineering structures 216, 110631, 2020
委任: Government of Italy
Tensile testing of FRCM coupons for material characterization: Discussion of critical aspects
F Focacci, T D’Antino, C Carloni
Journal of Composites for Construction 26 (4), 04022039, 2022
委任: Government of Italy
Relationship between results of tensile test of FRCM composites and the fiber-matrix bond properties
F Focacci, T D'Antino, C Carloni
Key Engineering Materials 916, 417-424, 2022
委任: Government of Italy
Tensile Tests of FRCM Coupons: The Influence of the Fiber-Matrix Bond Properties
F Focacci, T D’Antino, C Carloni
International Conference on Fibre-Reinforced Polymer (FRP) Composites in …, 2021
委任: Government of Italy
一般公開: 5 件
Determination of the interfacial cohesive material law for SRG composites bonded to a masonry substrate
M Santandrea, F Focacci, C Mazzotti, F Ubertini, C Carloni
Engineering Failure Analysis 111, 104322, 2020
委任: Government of Italy
Effect of bonded length on the load response and failure mode of pull-out tests of GFRP bars embedded in concrete
X Zhao, MM Rahman, T D'Antino, F Focacci, C Carloni
Construction and Building Materials 347, 128425, 2022
委任: Government of Italy
Fracture behavior and digital image analysis of GFRP reinforced concrete notched beams
MM Rahman, X Zhao, T D’Antino, F Focacci, C Carloni
Materials 15 (17), 5981, 2022
委任: Government of Italy
PULL-OUT TEST OF FRP BARS: THE EFFECT OF THE FREE END PROTRUDING PORTION OF THE BAR
CT Cope, MM Rahman, T D'Antino, F Focacci, C Carloni
11th International Conference on Fiber-Reinforced Polymer (FRP) Composites …, 2023
委任: Government of Italy
Fast and interpretable prediction of seismic kinematics of flexible retaining walls in sand through explainable artificial intelligence
F Pistolesi, M Baldassini, E Volpe, F Focacci, E Cattoni
Computers and Geotechnics 179, 107007, 2025
委任: European Commission
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