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Effect of Operation Parameters on Grain Morphology of Inconel 718 Superalloy Fabricated by Laser Additive Manufacturing

Abstract第6页
摘要第7-8页
Acknowledgements第8-17页
CHAPTER 1 INTRODUCTION第17-20页
    1.1 Background第17页
    1.2 Problem Statement第17-18页
    1.3 Scope of Study第18-19页
    1.4 Assumptions and Limitations第19页
    1.5 Objective of the Research第19-20页
        1.5.1 Main Objective第19页
        1.5.2 Specific Objectives第19-20页
CHAPTER 2 LITERATURE REVIEW第20-33页
    2.1 Additive manufacturing第20-21页
    2.2 Nickel based Super alloys and Inconel 718第21-23页
    2.3 Microstructure of Direct metal deposited Inconel 718第23页
    2.4 Grain Morphology and Interface Instability第23-28页
        2.4.1 Segregation in Alloys第25-26页
        2.4.2 Solidification Theory and Effects of Cooling rate on Solidification第26页
        2.4.3 Columnar to Equiaxed Transition (CET)第26-27页
        2.4.4 Some Works on Laser Additive manufacturing of Inconel 718第27-28页
    2.5 Phase Constitution and Heat Treatment第28-32页
    2.6 Conclusion第32-33页
CHAPTER 3 METHODOLOGY第33-47页
    3.1 Methodology Steps第33-34页
    3.2 Theoretical Approach第34-43页
        3.2.1 Theoretical Calculation of Dendrite Tip Radius, Primary Dendrite ArmSpacing and Cooling Rate第34-38页
        3.2.2 Columnar to Equiaxed Transition (CET)-Analytical Approach第38-40页
        3.2.3 CET and Simulation第40-43页
    3.3 Experimental Procedure第43-47页
        3.3.1 Determination of Microstructure of Turbofan第43页
        3.3.2 Determination of optimum parameters第43-44页
        3.3.3 Heat Treatment第44-46页
        3.3.4 Sample Preparation第46页
        3.3.5 Vickers Micro-hardness Testing第46-47页
CHAPTER 4 RESULTS AND DISCUSSION第47-69页
    4.1 Microstructure第47-57页
        4.1.1 Microstructure of Inconel Turbofan第47页
        4.1.2 Microstructure of a typical laser clad of Inconel 718第47-49页
        4.1.3 Influence of operating parameters on dendritic morphology with coolingwater base for single layer deposition第49-51页
        4.1.4 Analysis of OM micrographs of multiple layer, multiple track depositionwith cooling water base第51-53页
        4.1.5 Influence of operating parameters on dendritic morphology with coolingwater base for single track multiple layer deposition第53-54页
        4.1.6 Influence of operating parameters on dendritic morphology with only aircooled condition (without cooling water base) for single track multiplelayer deposition第54-55页
        4.1.7 Primary Dendrite Arm Spacing (PDAS) and Cooling Rate第55-57页
    4.2 Heat Treatment第57-60页
        4.2.1 Microstructure第57-59页
        4.2.2 Hardness第59-60页
    4.3 Phase Constitution of As-deposited Inconel 718第60-61页
    4.4 Relationship between Hardness and Grain Morphology第61-62页
    4.5 Repair Technology and Application第62-69页
        4.5.1 Repair Technology in General第62-63页
        4.5.2 Repair Application in Current Study第63-64页
        4.5.3 Results for Boronized Clad Surfaces第64-67页
        4.5.4 Results for Deposition of Inconel 718 powder mixed with boron powder第67-69页
CHAPTER 5 CONCLUSION第69-71页
REFERENCES第71-75页
APPENDIX A第75-78页
APPENDIX B第78-81页
APPENDIX C第81-82页
APPENDIX D第82-85页

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