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Modelling Steel Fibre Reinforced Concrete for Structural Design
This thesis provides a procedure to develop a reliable, bilinear stress-crack width relation to describe the post-cracking behavior of Steel fiber reinforced concrete (SFRC). With the help of inverse analysis, the material model can be used to fit mean results from three-point bending tests on medium strength SFRC with sufficient accuracy (<5%), taking several material parameters into account. Furthermore, this thesis provides relations to determine design values in the material model, based on common reliability methods. Taking scatter in load and resistance into account, material safety factors were determined for the post-cracking behavior of SFRC. The resulting design model can be easily used to perform structural design calculations, although these calculations are limited to cross-sectional analyses.
Modelling Steel Fibre Reinforced Concrete for Structural Design
This thesis provides a procedure to develop a reliable, bilinear stress-crack width relation to describe the post-cracking behavior of Steel fiber reinforced concrete (SFRC). With the help of inverse analysis, the material model can be used to fit mean results from three-point bending tests on medium strength SFRC with sufficient accuracy (<5%), taking several material parameters into account. Furthermore, this thesis provides relations to determine design values in the material model, based on common reliability methods. Taking scatter in load and resistance into account, material safety factors were determined for the post-cracking behavior of SFRC. The resulting design model can be easily used to perform structural design calculations, although these calculations are limited to cross-sectional analyses.
Modelling Steel Fibre Reinforced Concrete for Structural Design
2000
188 pages
Report
Keine Angabe
Englisch
Construction Materials, Components, & Equipment , Construction Equipment, Materials, & Supplies , Structural design , Reinforced concrete , Concretes , Material properties , Theses , Bending , Cracking , Structural analysis , Composite materials , Steels , Mechanical properties , Durability , Research projects , Models , Design , Foreign technology , Steel fiber reinforced concrete
Modelling steel fibre reinforced concrete for structural design
TIBKAT | 2000
|Modelling steel fibre reinforced concrete for structural design
UB Braunschweig | 2000
|FIBRES - Structural steel-fibre-reinforced concrete construction
Online Contents | 2007
|Design and Safety of Steel Fibre Reinforced Concrete Structural Members
British Library Conference Proceedings | 2002
|Design and Safety of Steel Fibre Reinforced Concrete Structural Members
British Library Conference Proceedings | 2002
|