0000000000792469

AUTHOR

V. Tamuzs

showing 2 related works from this author

Round Robin Testing initiative for fiber reinforced polymer (FRP) reinforcement

2011

An international Round Robin Testing (RRT) programm e on FRP reinforcement was conducted within the framework of the Marie Curie R esearch Training Network, EN- CORE, and with the support of Task Group 9.3 of the International Federation for Structural Concrete (fib). Eleven laboratories and six manufacturers and suppliers participated in this exercise. As part of this exte nsive experimental endeavour, one or more of the following tests were performed by the partic ipating laboratories: 1) tensile tests on FRP bars and strips; 2) tensile tests on FRP lamina tes; 3) double bond shear tests on FRP laminates (Externally Bonded Reinforcement, EBR) an d FRP bars/strip (Near Surface Mounted rein…

Science & TechnologyBond testArchitecture2300 Environmental Science (all)Bond test; EBR; FRP; NSM; RRT; Civil and Structural Engineering; Building and Construction; Architecture2300 Environmental Science (all)Near Surface Mounted reinforcement (NSM)EBRBuilding and ConstructionExternally Bonded Reinforcement (EBR)NSMFRPRRTCivil and Structural Engineering
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Fracture Toughness and Bridging Law of 3D Woven Composites

2003

ABSTRACT In the paper, the methodology of measuring G 1 c by using DCB specimens in the presence of large-scale bridging is adapted for investigating the delamination in 3D woven composites. The main novelties introduced in the DCB testing concern a) the loading device, b) the specimen geometry, c) the measurement scheme, and d) the determination of G 1 c and the bridging law from experimental data. The geometry-independent material characteristic G 1c as a function of the initial crack opening displacement (ICOD) is introduced. Typical values of the delamination fracture toughness of 3D glass and carbon composites are presented.

Bridging (networking)Materials scienceFracture toughnessLawCarbon compositesComposite material
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