Finite Element Analysis of Deep Wide-flanged Pre-stressed Girders to Understand and Control End Cracking

Finite Element Analysis of Deep Wide-flanged Pre-stressed Girders to Understand and Control End Cracking PDF Author: Michael G. Oliva
Publisher:
ISBN:
Category : Concrete bridges
Languages : en
Pages : 134

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Finite Element Analysis of Deep Wide-flanged Pre-stressed Girders to Understand and Control End Cracking

Finite Element Analysis of Deep Wide-flanged Pre-stressed Girders to Understand and Control End Cracking PDF Author: Michael G. Oliva
Publisher:
ISBN:
Category : Concrete bridges
Languages : en
Pages : 134

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12th PhD Symposium in Prague Czech Rep

12th PhD Symposium in Prague Czech Rep PDF Author: FIB – International Federation for Structural Concrete
Publisher: FIB - Féd. Int. du Béton
ISBN: 8001064018
Category : Technology & Engineering
Languages : en
Pages : 1312

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Evaluation and Repair Procedures for Precast/prestressed Concrete Girders with Longitudinal Cracking in the Web

Evaluation and Repair Procedures for Precast/prestressed Concrete Girders with Longitudinal Cracking in the Web PDF Author: Maher K. Tadros
Publisher: Transportation Research Board
ISBN: 0309118352
Category : Technology & Engineering
Languages : en
Pages : 76

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Book Description
This report establishes a user's manual for the acceptance, repair, or rejection of precast/prestressed concrete girders with longitudinal web cracking. The report also proposes revisions to the AASHTO LRFD Bridge Design Specifications and provides recommendations to develop improved crack control reinforcement details for use in new girders. The material in this report will be of immediate interest to bridge engineers.

Collapse analysis of externally prestressed structures

Collapse analysis of externally prestressed structures PDF Author: Jens Tandler
Publisher: diplom.de
ISBN: 3836623331
Category : Technology & Engineering
Languages : en
Pages : 149

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Book Description
Inhaltsangabe:Introduction: This dissertation is an investigation into the behaviour of externally prestressed structures, focusing on bridge box girders, at the ultimate limit state. The main objective is the ductility and the tendon stress increase up to failure of externally prestressed structures. Their behaviour will be compared to internally prestressed structures. The dissertation may have valuable information for the first stages of the design process for medium span bridges as the study is concerned about the overall safety and efficiency of prestressed concrete bridges by the means of ductility. The aim is also to provide information about the tendon stress at failure, which is required for the detailed design. Inhaltsverzeichnis:Inhaltsverzeichnis: AcknowledgementsVIII NotationIX 1.Introduction1 1.1Definitions1 1.2Significance of this study3 1.3Scope of the project5 1.4Historical overview and typical characteristics of external prestressing6 1.5Further structural applications of external prestressing9 2.Behaviour of externally prestressed structures10 2.1Tendon layout considerations10 2.2Behaviour at serviceability stage12 2.3Fatigue problems14 2.4Behaviour at ultimate limit stage14 2.4.1Influence of tendon slip on the ultimate limit state18 2.4.2Influence of the arrangement of the deviators on the behaviour at ultimate limit state19 2.4.3Influence of simply support and continuous support on the ultimate limit state20 2.4.4Precast segmental and monolithic bridges21 3.Collapse analysis23 3.1Investigated bridge types and their differences23 3.2Original bridge data28 3.3Simplified bridge data as basis for the calculations30 3.4FE Calculation32 3.4.1Technical aspects33 3.4.2General approach34 3.4.3Geometric model39 3.4.4Element specifications40 3.4.5Constitutive models45 3.4.6Ordinary reinforcement59 3.4.7Prestress60 3.4.8Material and geometric non-linearity63 3.4.9Kinematic constraints66 3.4.10Discrete crack propagation analysis of the precast segmental type with gap elements68 3.4.11Summary of the dividing features of the different structure types for the FE analysis72 4.Results73 4.1Load deflection behaviour73 4.2Tendon stress increase up to failure76 4.3Other results78 5.Discussion of the results85 5.1Interpretation of the results85 5.2Discussion of the exactness of the FE calculations by comparing to the full scale test89 5.3Comparison to other FE calculations and test results93 6.Conclusion and [...]

Finite Element Analysis of Prestressed Concrete Structures Using Post-Tensioning Steel

Finite Element Analysis of Prestressed Concrete Structures Using Post-Tensioning Steel PDF Author: Yu Huang
Publisher: Cambridge Scholars Publishing
ISBN: 152755354X
Category : Technology & Engineering
Languages : en
Pages : 305

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Book Description
This book details the theory and applications of finite element (FE) modeling of post-tensioned (PT) concrete structures, and provides the updated MATLAB code (as of 2019). The challenge of modeling PT prestressed concrete structures lies in the treatment of the interface between the concrete and prestressing tendons. Using MATLAB, this study develops an innovative nonlinear FE formulation which incorporates contact techniques and engineering elements to considerably reduce the need of computational power. This FE formulation has the ability to simulate different PT frame systems with fully bonded, fully unbonded or partially bonded tendons, as well as actual sliding behavior and frictional effects in the tendons. It also allows for the accurate simulation of anchor seating loss.

Precast Segmental Box Girders

Precast Segmental Box Girders PDF Author: Fadzli Mohamed Nazri
Publisher: Springer
ISBN: 303011984X
Category : Technology & Engineering
Languages : en
Pages : 74

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Book Description
This book explores the fundamentals of the elastic behaviour of erected precast segmental box girders (SBG) when subjected to static load, as well as the construction process (casting and erection work) involved. It analyzes and compares the experimental results with those obtained using the finite element method and theoretical calculations. A short-term deflection analysis for different loads is obtained by determining the maximum deflection, stress and strain value of single span precast SBG under a variety of transversal slope. The outcome of this work provides a better understanding of the behaviour of precast SBG in terms of structural responses as well as defects, so that maintenance work can then be focused on the critical section at mid span area specifically for the bridge project longitudinally and transversely. The book is of interest to industry professionals involved in conducting static load tests on bridges, and all researchers, designers, and engineers seeking to validate experimental work with numerical and analytical approaches.

Design of Pier Segments in Segmental Hollow Box Girder Bridges

Design of Pier Segments in Segmental Hollow Box Girder Bridges PDF Author: Nigatu Chaffo
Publisher: Cuvillier Verlag
ISBN: 3898739929
Category :
Languages : en
Pages : 169

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Cracking in Prestressed Concrete Structures

Cracking in Prestressed Concrete Structures PDF Author: Grant T. Halvorsen
Publisher:
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 218

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Investigation of Prestressed Reinforced Concrete for Highway Bridges, Part V, Analysis and Control of Anchorage-zone Cracking in Prestressed Concrete

Investigation of Prestressed Reinforced Concrete for Highway Bridges, Part V, Analysis and Control of Anchorage-zone Cracking in Prestressed Concrete PDF Author: A. T. Derecho
Publisher:
ISBN:
Category : Axial loads
Languages : en
Pages : 972

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Engineering for Structural Stability in Bridge Construction

Engineering for Structural Stability in Bridge Construction PDF Author: Federal Highway Federal Highway Administration
Publisher:
ISBN:
Category :
Languages : en
Pages : 669

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Book Description
This manual is intended to serve as a reference. It will provide technical information which will enable Manual users to perform the following activities:Describe typical erection practices for girder bridge superstructures and recognize critical construction stagesDiscuss typical practices for evaluating structural stability of girder bridge superstructures during early stages of erection and throughout bridge constructionExplain the basic concepts of stability and why it is important in bridge erection* Explain common techniques for performing advanced stability analysis along with their advantages and limitationsDescribe how differing construction sequences effect superstructure stabilityBe able to select appropriate loads, load combinations, and load factors for use in analyzing superstructure components during constructionBe able to analyze bridge members at various stages of erection* Develop erection plans that are safe and economical, and know what information is required and should be a part of those plansDescribe the differences between local, member and global (system) stability