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Shrinkage Mitigation Strategies of Alkali Activated Slag with Natural Cellulose Fibers

ACKNOWLEDGMENT第6-7页
摘要第7-9页
ABSTRACT第9-10页
CHAPTER 1: INTRODUCTION第14-17页
    1.1 RESEARCH BACKGROUND第14页
    1.2 RESEARCH OBJECTIVES第14-15页
    1.3 RESEARCH APPROACH第15页
    1.4 OUTLINE第15-17页
CHAPTER 2: LITERATURE REVIEW第17-37页
    2.1 MOTIVATION第17-18页
    2.2 GROUND GRANULATED BLAST FURNACE SLAG第18-19页
    2.3 ALKALI ACTIVATED SLAG (AAS)第19-21页
    2.4 TIME OF SETTING第21页
    2.5 EFFECT OF ACTIVATOR TYPE AND DOSAGE ON AAS PROPERTIES第21-22页
    2.6 MECHANICAL STRENGTH第22页
    2.7 DURABILITY第22-23页
    2.8 SHRINKAGE第23-27页
        2.8.1 AUTOGENOUS SHRINKAGE第23-24页
        2.8.2 DRYING SHRINKAGE第24-27页
    2.9 CARBONATION AND CREEP第27-28页
    2.10 HYDRATION PRODUCTS AND REACTION MECHANISMS第28-30页
    2.11 MICROSTRUCTURE CHARACTERISTICS第30-31页
    2.12 SHRINKAGE MECHANISMS第31-32页
    2.13 MICROCRACKING AND PORE STRUCTURE第32-34页
    2.14 SHRINKAGE MITIGATION STRATEGIES第34-35页
    2.15 LITERATURE CONCLUSIONS第35-37页
CHAPTER 3: EXPERIMENTAL PROGRAM OF SHRINKAGE MITIGATION STRATEGIES OF ALKALI-ACTIVATED SLAG CEMENT第37-51页
    3.1 RAW MATERIALS第37-44页
        3.1.1 SLAG (GGBS)第37页
        3.1.2 ALKALINE ACTIVATORS第37-38页
        3.1.3 NATURAL CELLULOSE FIBERS (NCFS)第38-41页
            3.1.3.1 ABSORPTION AND DESORPTION第39页
            3.1.3.2 FIBER MATRIX BOND第39-40页
            3.1.3.3 MICROSTRUCTURAL CHARACTERIZATION第40-41页
        3.1.4 CELLULOSE MICRO-NANO FIBERS (CFS)第41-44页
            3.1.4.1 MICROSTRUCTURAL MORPHOLOGY第42页
            3.1.4.2 DISPERSION第42-44页
    3.2 MIX DESIGN第44-47页
    3.3 TEST METHODS第47-51页
        3.3.1 MECHANICAL EVALUATION第47页
        3.3.2 AUTOGENOUS SHRINKAGE第47-48页
        3.3.3 DRYING SHRINKAGE第48页
        3.3.4 INTERNAL RELATIVE HUMIDITY (IRH)第48-49页
        3.3.5 ISOTHERMAL CALORIMETRY (IC)第49页
        3.3.6 SCANNING ELECTRON MICROSCOPY (SEM)第49页
        3.3.7 X-RAY COMPUTED TOMOGRAPHY (X-CT)第49-50页
        3.3.8 MERCURY INTRUSION POROSIMETRY (MIP)第50页
        3.3.9 BRUNAUER, EMMETT AND TELLER (BET)第50页
        3.3.10 ACOUSTIC EMISSION (AE)第50-51页
CHAPTER 4: SHRINKAGE MITIGATION OF ALKALI-ACTIVATED SLAG WITH MACRO NATURAL CELLULOSE FIBERS第51-62页
    4.1 MECHANICAL STRENGTH第51-53页
    4.2 AUTOGENOUS SHRINKAGE第53-54页
    4.3 DRYING SHRINKAGE第54-56页
    4.4 INTERNAL RELATIVE HUMIDITY (IRH)第56-58页
    4.5 HYDRATION DEVELOPMENT第58-59页
    4.6 MICROSTRUCTURE OF NCFS AND ITS DISTRIBUTION IN AAS第59-61页
    4.7 SUMMARY第61-62页
CHAPTER 5: SHRINKAGE MICROCRACKING MITIGATION OF ALKALI-ACTIVATED SLAG WITH CELLULOSE MICRO-NANO FIBERS第62-76页
    5.1 Mechanical Strength第62-63页
    5.2 SHRINKAGE第63-65页
    5.3 MICROSTRUCTURE IMPROVEMENT OF AAS WITH CFS第65-68页
    5.4 POROSITY AND PORE SIZE DISTRIBUTION第68-71页
    5.5 SHRINKAGE MICROCRACKING OF AAS WITH CFS第71-75页
    5.6 SUMMARY第75-76页
CHAPTER 6: CONCLUSIONS AND FUTURE RESEARCH第76-79页
    6.1 EXPERIMENTAL EVIDENCE OF THE AAS SHRINKAGE第76-77页
    6.2 POTENTIAL SHRINKAGE MITIGATION STRATEGIES第77-78页
    6.3 FUTURE RESEARCH第78-79页
REFERENCES第79-86页
LIST OF FIGURES AND TABLES第86-89页
Author's SCI Papers Published During the M.Sc.第89页

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