Punching Shear Strength of GFRP-Reinforced Flat Slabs Structures: Experimental and analytical approach
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9783659890598 - Mohamed Hassan: Punching Shear Strength of GFRP-Reinforced Flat Slabs Structures
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Mohamed Hassan

Punching Shear Strength of GFRP-Reinforced Flat Slabs Structures (2016)

Lieferung erfolgt aus/von: Deutschland DE PB NW RP

ISBN: 9783659890598 bzw. 3659890596, in Deutsch, LAP Lambert Academic Publishing Jul 2016, Taschenbuch, neu, Nachdruck.

Lieferung aus: Deutschland, Versandkostenfrei.
Von Händler/Antiquariat, AHA-BUCH GmbH [51283250], Einbeck, Germany.
This item is printed on demand - Print on Demand Neuware - The design of flat slabs is often compromised by their ability to resist punching shear stresses at slab-column connections. Deterioration of concrete structures due to corrosion of steel limits the service-life and increases the rehabilitation costs and may lead to substantial damages and catastrophic collapses. The use of fiber-reinforced polymer (FRP) bars instead of steel bars, especially where steel corrosion is a major concern, has been effective in reducing maintenance costs and extending the service life of structures. This book offers an essential background for a thorough understanding of the general punching shear behavior of two-way slabs reinforced with FRP bars. Comprehensive experimental testing on simulated two-way slabs with an extensive parametric study was covered. Currently, punching shear design equations for FRP-reinforced two-way slabs reinforced with FRP shear reinforcement are not available in FRP codes. Using FRP stirrups as shear reinforcement in the FRP-reinforced flat slabs and evaluating their contribution to the punching shear capacity was addressed. A new model for designing two-way flat slabs reinforced with FRP bars and stirrups was proposed. 200 pp. Englisch.
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9783659890598 - Mohamed Hassan: Punching Shear Strength of GFRP-Reinforced Flat Slabs Structures - Experimental and analytical approach
Mohamed Hassan

Punching Shear Strength of GFRP-Reinforced Flat Slabs Structures - Experimental and analytical approach

Lieferung erfolgt aus/von: Deutschland ~EN PB NW

ISBN: 9783659890598 bzw. 3659890596, vermutlich in Englisch, LAP Lambert Academic Publishing, Taschenbuch, neu.

Lieferung aus: Deutschland, Versandkostenfrei.
Punching Shear Strength of GFRP-Reinforced Flat Slabs Structures: The design of flat slabs is often compromised by their ability to resist punching shear stresses at slab-column connections. Deterioration of concrete structures due to corrosion of steel limits the service-life and increases the rehabilitation costs and may lead to substantial damages and catastrophic collapses. The use of fiber-reinforced polymer (FRP) bars instead of steel bars, especially where steel corrosion is a major concern, has been effective in reducing maintenance costs and extending the service life of structures. This book offers an essential background for a thorough understanding of the general punching shear behavior of two-way slabs reinforced with FRP bars. Comprehensive experimental testing on simulated two-way slabs with an extensive parametric study was covered. Currently, punching shear design equations for FRP-reinforced two-way slabs reinforced with FRP shear reinforcement are not available in FRP codes. Using FRP stirrups as shear reinforcement in the FRP-reinforced flat slabs and evaluating their contribution to the punching shear capacity was addressed. A new model for designing two-way flat slabs reinforced with FRP bars and stirrups was proposed. Englisch, Taschenbuch.
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9783659890598 - Punching Shear Strength of GFRP-Reinforced Flat Slabs Structures

Punching Shear Strength of GFRP-Reinforced Flat Slabs Structures

Lieferung erfolgt aus/von: Österreich ~EN NW AB

ISBN: 9783659890598 bzw. 3659890596, vermutlich in Englisch, neu, Hörbuch.

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Lieferung aus: Österreich, Lieferzeit: 5 Tage, zzgl. Versandkosten.
The design of flat slabs is often compromised by their ability to resist punching shear stresses at slab-column connections. Deterioration of concrete structures due to corrosion of steel limits the service-life and increases the rehabilitation costs and may lead to substantial damages and catastrophic collapses. The use of fiber-reinforced polymer (FRP) bars instead of steel bars, especially where steel corrosion is a major concern, has been effective in reducing maintenance costs and extending the service life of structures. This book offers an essential background for a thorough understanding of the general punching shear behavior of two-way slabs reinforced with FRP bars. Comprehensive experimental testing on simulated two-way slabs with an extensive parametric study was covered. Currently, punching shear design equations for FRP-reinforced two-way slabs reinforced with FRP shear reinforcement are not available in FRP codes. Using FRP stirrups as shear reinforcement in the FRP-reinforced flat slabs and evaluating their contribution to the punching shear capacity was addressed. A new model for designing two-way flat slabs reinforced with FRP bars and stirrups was proposed.
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9783659890598 - Hassan, Mohamed: Punching Shear Strength of GFRP-Reinforced Flat Slabs Structures
Hassan, Mohamed

Punching Shear Strength of GFRP-Reinforced Flat Slabs Structures

Lieferung erfolgt aus/von: Deutschland DE HC NW

ISBN: 9783659890598 bzw. 3659890596, in Deutsch, Lap Lambert Academic Publishing, gebundenes Buch, neu.

Lieferung aus: Deutschland, Versandkostenfrei innerhalb von Deutschland.
The design of flat slabs is often compromised by their ability to resist punching shear stresses at slab-column connections. Deterioration of concrete structures due to corrosion of steel limits the service-life and increases the rehabilitation costs and may lead to substantial damages and catastrophic collapses. The use of fiber-reinforced polymer (FRP) bars instead of steel bars, especially where steel corrosion is a major concern, has been effective in reducing maintenance costs and extending The design of flat slabs is often compromised by their ability to resist punching shear stresses at slab-column connections. Deterioration of concrete structures due to corrosion of steel limits the service-life and increases the rehabilitation costs and may lead to substantial damages and catastrophic collapses. The use of fiber-reinforced polymer (FRP) bars instead of steel bars, especially where steel corrosion is a major concern, has been effective in reducing maintenance costs and extending the service life of structures. This book offers an essential background for a thorough understanding of the general punching shear behavior of two-way slabs reinforced with FRP bars. Comprehensive experimental testing on simulated two-way slabs with an extensive parametric study was covered. Currently, punching shear design equations for FRP-reinforced two-way slabs reinforced with FRP shear reinforcement are not available in FRP codes. Using FRP stirrups as shear reinforcement in the FRP-reinforced flat slabs and evaluating their contribution to the punching shear capacity was addressed. A new model for designing two-way flat slabs reinforced with FRP bars and stirrups was proposed. Lieferzeit 1-2 Werktage.
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3659890596 - Punching Shear Strength of GFRP-Reinforced Flat Slabs Structures

Punching Shear Strength of GFRP-Reinforced Flat Slabs Structures

Lieferung erfolgt aus/von: Deutschland ~EN NW

ISBN: 3659890596 bzw. 9783659890598, vermutlich in Englisch, neu.

Punching Shear Strength of GFRP-Reinforced Flat Slabs Structures ab 71.9 EURO Experimental and analytical approach.
6
9783659890598 - Mohamed Hassan: Punching Shear Strength of GFRP-Reinforced Flat Slabs Structures: Experimental and analytical approach
Symbolbild
Mohamed Hassan

Punching Shear Strength of GFRP-Reinforced Flat Slabs Structures: Experimental and analytical approach (2016)

Lieferung erfolgt aus/von: Deutschland DE PB NW RP

ISBN: 9783659890598 bzw. 3659890596, in Deutsch, LAP LAMBERT Academic Publishing, Taschenbuch, neu, Nachdruck.

Lieferung aus: Deutschland, Versandkostenfrei.
Von Händler/Antiquariat, English-Book-Service Mannheim [1048135], Mannheim, Germany.
This item is printed on demand for shipment within 3 working days.
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