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The Research on Performance of Concrete-Wood-Steel Composite Beam under Vertical Load

Abstract第4页
Notation第12-14页
Chapter 1:Introduction第14-19页
    1.1 Background第14页
    1.2 History第14-15页
    1.3 Construction Techniques and Concept第15页
    1.4 Advantages of the Timber-Concrete-Composite System第15-16页
    1.5 Significance第16-17页
    1.6 Research Objectives第17-18页
    1.7 Thesis Outline第18-19页
Chapter 2:Experimental Study第19-32页
    2.1 Characterization Galvanized steel sheets第19页
    2.2 Concrete characterization第19-20页
    2.3 Wood Characterization第20页
    2.4 Characterization SCREW SFS第20页
    2.5 Realization wooden beams/Concrete第20-22页
    2.6 Theoretical analyses第22-23页
        2.6.1 Experimental testing A and B第23页
    2.7 Composite timber and concrete element第23-24页
        2.7.1 Slip modulus第24页
    2.8 Loading regime experimental,Shear connector tests第24-25页
    2.9 Bending tests第25-32页
        2.9.1 Timber Concrete in compression第25-28页
        2.9.2 Concrete plate in tension第28-32页
Chapter 3:Finite Element Analysis by ANSYS第32-36页
    3.1 Finite element modeling第32页
    3.2 Model of beam第32-36页
Chapter 4:Construction details第36-64页
    4.1 Concepts on aerodynamic loads of timber concrete composite wall第36-37页
    4.2 The Composite element and the building system第37-38页
        4.2.1 Details of the composite element第37页
        4.2.2 Erection of the composite elements第37-38页
    4.3 General第38-47页
        4.3.1 Application in Timber-Concrete-Composite wall System第38-45页
        4.3.2 Dimensioning第45-46页
        4.3.3 Disbar第46-47页
    4.4 Detailing provisions第47-48页
        4.4.1 Main reinforcement第47页
        4.4.2 Vertical chaining第47-48页
    4.5 Fixing stud of secondary currents facade TCC第48-56页
        4.5.1 Assembly implementation by brackets第48-49页
        4.5.2 Anchorages Length amount ground floor第49页
        4.5.3 Traditional carpenter assemblies第49-50页
        4.5.4 Traverses lower and higher第50-51页
        4.5.5 Constructional arrangements for walls facade第51-52页
        4.5.6 Bracing panels work sails interior bearing walls第52页
        4.5.7 Connections between two perpendicular walls and facade refund第52-53页
        4.5.8 Corner assembly between two perpendicular walls facade第53页
        4.5.9 Attaching the TCC on the high passes of the frame第53-56页
    4.6 Sizing anchoring Timber -Concrete-Composite wall system第56-57页
    4.7 Design procedures第57-58页
    4.8 Service load design第58-64页
Chapter 5:Sizing the fixed frame第64-76页
    5.1 Farms and hips第64-65页
    5.2 Chevrons fault coverage and media第65-66页
    5.3 Rafters support Faults and ridge board第66-67页
    5.4 Assembling the structural members第67-72页
        5.4.1 Assembly farms第67页
        5.4.2 Fixing farm on posts第67-69页
        5.4.3 Assembly of rafters第69-70页
        5.4.4 Assembling breakdowns第70-71页
        5.4.5 Assembly of hip beams第71-72页
    5.5 Conditions of realization beamed roof第72-76页
        5.5.1 If the roof with 2 slopes第73页
        5.5.2 Roofing frameworks in industrialized farmhouses第73页
        5.5.3 Frame sizing Assumptions第73页
        5.5.4 Conditions of realization of the roof diaphragm第73-75页
        5.5.5 Assemblies farmhouses-top cross wall第75-76页
Chapter 6:Conclusion第76-78页
    6-1 Summary第76页
    6.2 Structural Behavior of Precast-Timber-Concrete-Composite wall System under Short-term Loading第76-77页
    6-3 Constructions and Sustainability of Technology第77页
    6.4 Recommendations第77-78页
References第78-81页
Acknowledgements第81页

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