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Kategorie szczegółowe BISAC

Strength and Drift Capacity of GFRP-Reinforced Concrete Shear Walls

ISBN-13: 9783639717839 / Angielski / Miękka / 2014 / 196 str.

Farghaly Ahmed Sabry;Mohamed Nayera
Strength and Drift Capacity of GFRP-Reinforced Concrete Shear Walls Farghaly, Ahmed Sabry 9783639717839 Scholars' Press - książkaWidoczna okładka, to zdjęcie poglądowe, a rzeczywista szata graficzna może różnić się od prezentowanej.

Strength and Drift Capacity of GFRP-Reinforced Concrete Shear Walls

ISBN-13: 9783639717839 / Angielski / Miękka / 2014 / 196 str.

Farghaly Ahmed Sabry;Mohamed Nayera
cena 356,56
(netto: 339,58 VAT:  5%)

Najniższa cena z 30 dni: 356,56
Termin realizacji zamówienia:
ok. 10-14 dni roboczych
Dostawa w 2026 r.

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With the rise in constructing using FRP reinforcement, owing to corrosion problems in steel-reinforced structures, there is a need to provide guidelines for laterally loaded members. Currently, design guidelines for lateral load resistance for glass-FRP- reinforced shear walls are not available in codes. For this objective, primary guidelines for seismic design of a slender GFRP-reinforced shear wall in moderate earthquakes regions was presented. The ultimate limit state was addressed by providing strength capacity that limit ductility demand to their safe flexural displacement capacity (ductility or deformability capacity). The strength demands were derived from ground motion spectra using reduction factors that depend on both the strength and energy dissipation of the structure. Deformation capacity was derived by estimating virtual yield and maximum allowable deformations in which suggestions were made for appropriate definitions. Strength reduction factor was studied and proposed based on the carried experimental program. Definition of virtual plastic hinge for GFRP-reinforced walls was described and its length was estimated based on experimental observations and calculations.

With the rise in constructing using FRP reinforcement, owing to corrosion problems in steel-reinforced structures, there is a need to provide guidelines for laterally loaded members. Currently, design guidelines for lateral load resistance for glass-FRP- reinforced shear walls are not available in codes. For this objective, primary guidelines for seismic design of a slender GFRP-reinforced shear wall in moderate earthquakes regions was presented. The ultimate limit state was addressed by providing strength capacity that limit ductility demand to their safe flexural displacement capacity (ductility or deformability capacity). The strength demands were derived from ground motion spectra using reduction factors that depend on both the strength and energy dissipation of the structure. Deformation capacity was derived by estimating virtual yield and maximum allowable deformations in which suggestions were made for appropriate definitions. Strength reduction factor was studied and proposed based on the carried experimental program. Definition of virtual plastic hinge for GFRP-reinforced walls was described and its length was estimated based on experimental observations and calculations.

Kategorie:
Technologie
Kategorie BISAC:
Technology & Engineering > Environmental - General
Wydawca:
Scholars' Press
Język:
Angielski
ISBN-13:
9783639717839
Rok wydania:
2014
Ilość stron:
196
Waga:
0.29 kg
Wymiary:
22.86 x 15.24 x 1.14
Oprawa:
Miękka
Wolumenów:
01
Dodatkowe informacje:
Wydanie ilustrowane

Postdoctoral fellow in the Department of Civil Engineering at the University of Sherbrooke and Associate Professor in the Department of Civil Engineering, Assiut University, Assiut, Egypt. His research interests include nonlinear analysis of reinforced concrete structures and behavior of structural concrete reinforced with fiber-reinforced polymer.



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