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液态熔体在多孔碳中的熔渗动力学研究

Abstract第5-6页
摘要第7-12页
1 Introduction第12-58页
    1.1 Composites第12-16页
    1.2 Carbon Fiber第16-27页
        1.2.1 Pros and Cons of Carbon Fibers第18-19页
        1.2.2 Carbon Fiber Vs Metals第19页
        1.2.3 Classification and Types of Carbon Fibers第19-21页
            1.2.3.1 Based on Carbon Fiber Properties第20页
            1.2.3.2 Based on Precursor Fiber Materials第20页
            1.2.3.3 Based on Final Heat Treatment Temperature第20-21页
        1.2.4 Manufacturing of Carbon Fibers第21-24页
            1.2.4.1 Carbon Fibers from Polyacrylonitrile第21-23页
            1.2.4.2 Carbon Fibers from Rayon第23页
            1.2.4.3 Carbon Fibers from Isotropic Pitch第23页
            1.2.4.4 Carbon Fibers from Anisotropic Mesophase Pitch第23-24页
        1.2.5 Applications of Carbon Fibers第24-27页
    1.3 Phenolic Resin第27-28页
    1.4 PAN/Phenolic-Based Carbon/Carbon Composites第28-39页
        1.4.1 Experimentation第30-32页
            1.4.1.1 Materials第30页
            1.4.1.2 Preparation of Mould Tool第30页
            1.4.1.3 Preparation of CFRP and C/C Composites第30-32页
        1.4.2 Measurement第32-34页
        1.4.3 Morphological Properties第34-37页
        1.4.4 Interlaminar Fracture Toughness (Mode Ⅱ)第37-39页
    1.5 Capillary Rise第39-41页
    1.6 Contact Angle第41-48页
    1.7 Surface Tension第48-49页
    1.8 Reactive Vs Non-reactive Wetting第49-55页
    1.9 Research Project Objectives第55-58页
2 Numerical Studies of Infiltration Dynamics of Liquid-Silicon/Solid-Carbon System第58-81页
    2.1 Background第58-64页
    2.2 Numerical Procedures第64-70页
        2.2.1 Reactive Wetting第64-65页
        2.2.2 Modified Washburn equation (For varying radius and constant contact angle)第65-66页
            2.2.2.1 Interface-Limited Capillary Rise第65-66页
            2.2.2.2 Diffusion-Limited Capillary Rise第66页
        2.2.3 Modified Washburn equation (For varying both radius and contact angle)第66-70页
            2.2.3.1 Interface-Limited Capillary Rise第67-69页
            2.2.3.2 Diffusion-Limited Capillary Rise第69-70页
    2.3 Results and Discussion第70-81页
        2.3.1 Modified Washburn equation (For varying radius and constant contact angle)第70-74页
        2.3.2 Modified Washburn equation (For varying both radius and contact angle)第74-81页
3 Numerical Studies of Infiltration Dynamics of Liquid-Copper andSilicon/Solid-Carbon System第81-98页
    3.1 Background第81-82页
    3.2 Numerical Procedure第82-89页
        3.2.1 Washburn Equation第82-83页
        3.2.2 Variable Angle of Contact第83-86页
        3.2.3 Modified Washburn Equation第86-89页
            3.2.3.1 Interface-Limited capillary rise第86-87页
            3.2.3.2 Diffusion-Limited capillary rise第87-89页
    3.3 Results and Discussion第89-98页
4 Wetting of Carbon by Copper and Copper Alloys第98-110页
    4.1 Background第98-99页
    4.2 Model Development第99-102页
        4.2.1 Crystal Structure and Lattice Parameters第99-101页
        4.2.2 Reactive Wetting Driving Force第101-102页
    4.3 The Equilibrium Diagrams for Cu-Cr and Cu-Ti Systems第102-104页
    4.4 Thermodynamics of TiC and Cr_3C_2 Formations第104-107页
    4.5 The wettability of the Cu-Ti and Cu-Cr Systems第107-110页
5 Conclusions and Future Work第110-112页
Innovation Points of Dissertation第112-113页
References第113-121页
List of Publications & Presentations第121-123页
Acknowledgement第123-124页
About the Author第124-126页

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