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便携式单相机原位三维变形测量系统及其应用研究

ACKNOWLEDGEMENTS第5-6页
摘要第6-8页
ABSTRACT第8-9页
CHAPTER 1 INTRODUCTION第17-26页
    1.1 General Overview第17-19页
    1.2 Statements of the Problem第19-20页
    1.3 Research Objective第20-21页
    1.4 Research Methodology第21-22页
    1.5 Innovative Points in Dissertation第22页
    1.6 Dissertation Structure第22-24页
    References第24-26页
CHAPTER 2 LITERATURE REVIEW第26-52页
    2.1 Overview of Digital Image Correlation techniques第26-28页
    2.2 Development of Digital Image Correlation Algorithms第28-29页
    2.3 Fundamentals Digital Image Correlation Methods第29-34页
        2.3.1 DIC Theory第29-31页
        2.3.2 Correlation Criteria used in Digital Image Correlation第31-33页
        2.3.3 Speckle Pattern第33-34页
    2.4 Hardware Components and Parameters第34-37页
        2.4.1 Cameras第35页
        2.4.2 Lenses第35-36页
        2.4.3 Illumination第36-37页
        2.4.4 Camera Support第37页
    2.5 Two-dimensional Digital Image Correlation Method第37-40页
    2.6 Three-dimensional Digital Image Correlation Method第40-42页
    2.7 Camera Calibration第42-46页
        2.7.1 2D-DIC Calibration Process第45页
        2.7.2 3D-DIC Calibration Process第45-46页
    2.8 Summary第46-47页
    References第47-52页
CHAPTER 3 OPTIMUM DESIGN OF THE PORTABLE IMAGING DEVICE USING A SINGLE CAMERA第52-68页
    3.1 Introduction第52-53页
    3.2 System Description第53-55页
        3.2.1 Hardware Components of the system第53-54页
        3.2.2 Optical arrangement of the DIC-SS system第54-55页
    3.3 Technical Parameters and performance第55-56页
    3.4 Feasibility Analysis of the DIC-SS System第56页
    3.5 System Calibration第56-59页
    3.6 Measurement principle and procedure第59-60页
    3.7 DIC- SS Software第60-65页
        3.7.1 Technical characteristics of PMLAB DIC-3D Software第64页
        3.7.2 Process analysis of the PMLAB DIC-3D Software第64-65页
    3.8 Summary第65-66页
    References第66-68页
CHAPTER 4 EXPERIMENTAL VALIDATION第68-83页
    4.1 Introduction第68-69页
    4.2 Method第69-70页
    4.3 System calibration and measurement procedure第70-72页
    4.4 Experimental verification第72-74页
    4.5 Experimental Results and Discussion第74-79页
    4.6 Summary第79-80页
    References第80-83页
CHAPTER 5 SINGLE-CAMERA 3D VIDEO EXTENSOMETER FOR HIGH-ACCURACY AND REAL-TIME STRAIN MEASUREMENT第83-102页
    5.1 Introduction第83-85页
    5.2 Methods第85-91页
        5.2.1 Optical design of the Single-camera 3D video extensometer第85-86页
        5.2.2 Measuring principle of the Single-camera 3D video extensometer第86-87页
        5.2.3 Speckle-based self-calibration method for strain measurement第87-89页
        5.2.4 Robust stereo matching stage combined with the efficient and robust inverse compositional Gauss-Newton algorithm第89-90页
        5.2.5 Real-time strain measurement using the proposed 3D video extensometer第90-91页
    5.3 Experiments第91-93页
    5.4 Experimental Results and Discussion第93-97页
    5.5 Summary第97-98页
    References第98-102页
CHAPTER 6 IN SITU THREE-DIMENSIONAL DEFORMATION MEASUREMENT第102-113页
    6.1 Introduction第102-103页
    6.2 Method第103页
    6.3 Experiments第103-106页
    6.4 Experimental Results and Discussion第106-110页
    6.5 Summary第110-111页
    References第111-113页
CHAPTER 7 CONCLUSIONS AND FUTURE WORK第113-116页
    7.1 Conclusions第113-114页
    7.2 Future Work第114-116页
Author Papers Published During the PhD第116页

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