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一种预制模块钢结构建筑新型节点抗震性能的发展和研究

中文摘要第9-10页
abstract第10-11页
Chapter1 Introduction第17-25页
    1.1.Background第17-20页
        1.1.1.Applications of Modular Building System第17-20页
    1.2.Significance of the Study第20-22页
    1.3.Aims and Objectives of Research第22-23页
    1.4.Research Methodology and Scope第23-25页
Chapter2 Literature Review第25-65页
    2.1.Background of Prefabricated Modular Construction System第25页
    2.2.Review of Literature of Prefabricated Modular Building System第25-65页
        2.2.1.Definition第25-27页
        2.2.2.Applications of Modular Construction第27-28页
        2.2.3.Advantages of Prefabricated Modular Construction第28-30页
        2.2.4.Classification of Prefabricated Modular Building System第30-38页
        2.2.5.Differences from traditional steel construction in structural requirements.第38-39页
        2.2.6.Review on structural behavior of prefabricated modular building system.第39-65页
Chapter3 Conceptive Design of Novel Joint of Modular Steel Building in Seismic Zone第65-97页
    3.1.Conceptual Earthquake Design of Modular Steel Buildings第65-66页
    3.2.Steel Structural Frames System第66-70页
        3.2.1.Moment Resisting Steel Structural Frames第66-68页
        3.2.2.Structural Braced Frames第68-70页
    3.3.Prefabricated Modular Steel Building第70-74页
    3.4.Seismic Analysis Techniques第74-92页
        3.4.1.History第74-82页
        3.4.2.Principles of Seismic Analysis and Design of Buildings第82-83页
        3.4.3.Force Based Approach for Seismic Analysis of Buildings第83-92页
    3.5.Performance Based Seismic Design第92-93页
    3.6.Failure Criteria Based on Stresses第93-97页
        3.6.1.Maximum Normal Stress Theory第94页
        3.6.2.Maximum Principal Stress Theory(Rankine Theory)第94-95页
        3.6.3.Maximum Shear Stress Theory(Tresca)第95页
        3.6.4.Von Mises Stress Theory(Energy Distortion Theory)第95-97页
Chapter4 Numerical Modeling第97-135页
    4.1.Introduction to Finite Element Method第97-99页
        4.1.1.Brief History of Finite Element Method第99页
    4.2.Pre-processing and Post-processing Methods of Finite Element Analysis第99-102页
        4.2.1.Meshing Technique第100-101页
        4.2.2.Analysts Responsibilities第101-102页
    4.3.Finite Element Software(ABAQUS)第102-103页
        4.3.1.History of ABAQUS第102页
        4.3.2.Applications of ABAQUS第102-103页
        4.3.3.Analysis Procedure of ABAQUS第103页
    4.4.Novel Connection for Prefabricated Modular Steel Building System第103-111页
        4.4.1.Connection Details第109-111页
    4.5.Finite Element Model of Novel joint第111-115页
        4.5.1.Dimensions of the Novel joint in Modular Steel Building第113-114页
        4.5.2.Material Model of Steel第114-115页
    4.6.Formation of Finite element model of Novel Connection第115-118页
        4.6.1.Meshing Technique第116-117页
        4.6.2.Interactions第117-118页
        4.6.3.Boundary and Loading Conditions第118页
    4.7.Finite Element Analysis第118-121页
        4.7.1.Nonlinear static and Quasi-static analyses on Exterior corner and Exterior middle connection第119-120页
        4.7.2.Nonlinear static and Quasi-static analysis on modular unit第120页
        4.7.3.Nonlinear static analysis on the modular joint to study gap between columns第120页
        4.7.4.Buckling Analysis on modular building第120-121页
        4.7.5.Nonlinear Dynamic Analysis on modular building第121页
    4.8.Graphs obtained from Analysis第121-122页
        4.8.1.Load-Displacement Curve第121页
        4.8.2.Moment-rotation curve第121-122页
    4.9.Validation of Finite Element Model第122-135页
        4.9.1.Calibration of Finite element model against lateral loading tests第124-135页
Chapter5 Nonlinear Static and Quasi-Static Analysis of Novel Connection in Modular Steel Building第135-185页
    5.1.Nonlinear Static Analysis第135-160页
        5.1.1.Exterior Corner Connection第135-141页
        5.1.2.Exterior Middle Connection第141-145页
        5.1.3.Small Scale Single Storey Modular unit第145-148页
        5.1.4.Small scale2-Storey Modular Steel Building第148-151页
        5.1.5.Full scale2-Story Frame of modular steel building第151-155页
        5.1.6.Full scale single story modular unit of Modular Building第155-158页
        5.1.7.Failure Mechanism第158-160页
    5.2.Parametric Study on Length of Column Tenon第160-179页
        5.2.1.100 mm Length of Tenon第163-165页
        5.2.2.200mm Length of Tenon第165-166页
        5.2.3.300mm Length of Tenon第166-167页
        5.2.4.400mm Length of Tenon第167-168页
        5.2.5.Comparison among models第168-171页
        5.2.6.Classification of Novel Joint according to Eurocode EC第171-173页
        5.2.7.Study on the Gap between Adjacent Modular Columns第173-179页
    5.3.Quasi-Static Analysis第179-185页
        5.3.1.Exterior Corner connection第179-182页
        5.3.2.Modular unit第182-185页
Chapter6 Dynamic and Buckling Analysis on Modular Steel Building第185-199页
    6.1.Dynamic Analysis第185-192页
        6.1.1.Accelerogram along Shorter(X)direction第188-190页
        6.1.2.Accelerogram along longer(Z)direction第190-192页
    6.2.Buckling Analysis第192-196页
    6.3.Future work Recommendations第196-197页
    6.4.Design Recommendations第197-199页
Chapter7 Conclusions第199-203页
References第203-211页
Appendix第211-215页
    A.1 Experimental Setup第211-213页
    A.2 Table and Graph第213-215页
Statement of publication and scientific research第215-217页
Acknowledgments第217-218页

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