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Study of Wear in a Novel Cu-Based Sintered Alloy for Train Brakes (Influence of Sintered Temperature)

Abstract第5-6页
Chapter 1 Introduction第10-15页
    1.1 The Complexity第10-12页
    1.2 The Problem Statement第12-13页
    1.3 Research Goals and Approaches第13-14页
    1.4 The Challenges第14-15页
Chapter 2 Literature Review (Brakes)第15-36页
    2.1 Mechanical Braking System第16页
    2.2 Friction Materials第16-18页
    2.3 Brake Materials and Additives Functional第18-20页
        2.3.1 Abrasives第18-19页
        2.3.2 Friction Producers / Modifiers第19页
        2.3.3 Fillers, Reinforcements and Miscellaneous第19页
        2.3.4 Binder (Matrix) Materials第19页
        2.3.5 Asbestos第19-20页
    2.4 Brake Friction Designations and Typical Compositions第20页
    2.5 Friction Brake Compositions for Aircraft and Ground Vehicles第20-31页
        2.5.1 Aircraft Brake Formulations第21-23页
        2.5.2 Automotive Brake Pad Formulations第23-29页
        2.5.3 Passenger Car and Truck Brake Disc and Drum Materials第29-31页
    2.6 Understanding Wear第31-35页
    2.7 In Summary第35-36页
Chapter 3 Materials and Methods第36-50页
    3.1 Brake and Materials第36-37页
    3.2 Methods第37-38页
    3.3 Design第38-40页
        3.3.1 Aim第38页
        3.3.2 Task第38页
        3.3.3 Die and Two Steel Punches第38-40页
        3.3.4 Specimen Holder第40页
    3.4 Sample Preparation第40-43页
        3.4.1 Powder selection第40-41页
        3.4.2 Mixing of Powder第41-42页
        3.4.3 Compacting of Powder第42页
        3.4.4 Sintering第42-43页
    3.5 Testing Procedures第43-48页
        3.5.1 Characterization Test第43-44页
        3.5.2 Performance Test第44-47页
        3.5.3 Microstructure Analysis第47页
        3.5.4 Density第47-48页
        3.5.5 Disc Material第48页
        3.5.6 Test Conditions第48页
    3.6 In Summary第48-50页
Chapter 4 Experimental Results第50-66页
    4.1 Temperature Effect on Mechanical Behaviors第50-55页
        4.1.1 Density and Porosity第50-54页
        4.1.2 Hardness第54-55页
    4.2 Tribological Behaviors第55-65页
        4.2.1 Microstructure of the material第56-58页
        4.2.2 Frictional Behaviors第58-59页
        4.2.3 Wear Behaviors第59-62页
        4.2.4 Worn Surface第62-63页
        4.2.5 Worn surfaces characteristics with XRD and SEM第63-64页
        4.2.6 Abrasive Surfaces Classification with TALYSURF第64-65页
    4.3 In Summary第65-66页
Chapter 5 Results Analysis第66-74页
    5.1 Mechanical Behaviors第66-67页
        5.1.1 Density and Porosity第66-67页
        5.1.2 Hardness第67页
    5.2 Tribological Behaviour第67-73页
        5.2.1 Microstructure of the material第67-68页
        5.2.2 Frictional Behaviours第68-69页
        5.2.3 Wear Behaviours第69页
        5.2.4 Worn Surface第69-71页
        5.2.5 Worn surfaces characteristics with XRD and SEM第71-72页
        5.2.6 Abrasive Surfaces Classification with TALYSURF第72-73页
    5.3 In Summary第73-74页
Chapter 6 Conclusions and Future Work第74-77页
    6.1 Conclusions第74-76页
    6.2 Future Work第76-77页
References第77-80页
攻读硕士学位期间取得的研究成果第80-81页
Acknowledgements第81页

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