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生物质聚合物改性沥青及沥青混合料的性能评价

Abstract第4-5页
摘要第6-10页
Chapter 1 Introduction第10-26页
    1.1 Topic source, research background and significance第10-12页
        1.1.1 Topic source第10页
        1.1.2 Background and significance第10-12页
    1.2 Studies abroad第12-22页
    1.3 Studies in China第22-23页
    1.4 Objectives expected第23页
    1.5 Dissertation outline第23-24页
    1.6 Dissertation framework第24-26页
Chapter 2 Investigation of chemical composition physical and mechanicalproperties of biopolymer generated from waste cooking oil第26-44页
    2.1 Introduction第26-27页
    2.2 Bio-polymer第27页
    2.3 Functional groups in polymers第27-28页
    2.4 Polymerization reaction in this sturdy第28-29页
    2.5 Bio-Polymer preparation in this study第29-30页
    2.6 Analytical methods (measurement parameters)第30-33页
        2.6.1 FTIR spectroscopic investigations第30-31页
        2.6.2 Thermogravimetric Analysis第31-32页
        2.6.3 Differential scanning calorimetric (DSC)第32-33页
        2.6.4 Penetration test第33页
    2.7 Test results and discussions第33-43页
        2.7.1 FT-IR test results and discussions第33-37页
        2.7.2 Thermogravimetric Analysis test results and discussions第37-39页
        2.7.3 DSC test results and discussions第39-41页
        2.7.4 Penetration test results and discussions第41-43页
    2.8 Summary第43-44页
Chapter 3 Performance evaluation of biopolymers modified asphalt第44-60页
    3.1 Introduction第44-45页
    3.2 Asphalt binder performance test and binder modification第45-47页
    3.3 Materials and preparation第47-49页
        3.3.1 Materials第47-48页
        3.3.2 Preparation第48-49页
    3.4 Experimental methods第49-51页
        3.4.1 Penetration Test第49页
        3.4.2 Softening point Test第49页
        3.4.3 RTFO test第49-50页
        3.4.4 PAV test第50页
        3.4.5 Dynamic Shear Rheometer (DSR) test第50-51页
        3.4.6 Bending Beam Rheometer (BBR) test第51页
    3.5 Test result and discussions第51-58页
        3.5.1 Penetration test results and discussions第51-52页
        3.5.2 Softening point test results and discussions第52-53页
        3.5.3 DSR test results and discussions第53-56页
        3.5.4 BBR test results and discussions第56-58页
    3.6 Performance grade for bio-polymer modified asphalt第58页
    3.7 Summary第58-60页
Chapter 4 Performance Evaluation of Bio-Polymer modified AsphaltConcrete第60-80页
    4.1 Introduction第60-62页
    4.2 Mixture design第62-66页
        4.2.1 Aggregate gradation determination第63-64页
        4.2.2 Determination of Optimum Asphalt Content第64-66页
    4.3 Effect of asphalt binder’s modulus on the asphalt concrete’s dynamicmodulus: a theoretical calculation第66-69页
        4.3.1 Dynamic modulus第66-67页
        4.3.2 Hirsch Model application for HMA in this study第67-69页
    4.4 Asphalt concrete performance test第69-72页
        4.4.1 Rutting performance test第69-71页
        4.4.2 Bend performance test第71-72页
    4.5 Results and discussions第72-78页
        4.5.1 Mixture modulus evaluation results and discussions第72-74页
        4.5.2 Rutting test results and discussions第74-76页
        4.5.3 Bend test results and discussions第76-78页
    4.6 Summary第78-80页
Chapter 5 Key finding and conclusion第80-83页
References第83-91页
Acknowledgement第91-92页
Curriculum Vita第92页

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