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用于成形电极制备的金属熔丝沉积3D打印技术验证平台

摘要第5-6页
ABSTRACT第6页
CHAPTER 1 : INTRODUCTION& LITERATURE REVIEW第13-20页
    1.1 Additive Manufacturing Technologies第13-14页
    1.2 Fused Deposition Modeling第14-16页
    1.3 3D Printing Applications第16-17页
        1.3.1 DIY revolution by 3D printing第16页
        1.3.2 Some useful applications第16-17页
    1.4 The 3D Print Market第17-20页
        1.4.1 Market forecast第17-18页
        1.4.2 Examples of FDM3D printers第18-19页
        1.4.3 Some 3D printers main characteristics第19-20页
CHAPTER 2 : THE REPRAP PROJECT第20-32页
    2.1 About the Rep Rap Project第20-22页
        2.1.1 Introduction第20页
        2.1.2 The Rep Rap community第20页
        2.1.3 Rep Rap 3D printers第20-22页
    2.2 Prusa Mendel 3D Printer第22-28页
        2.2.1 General presentation第22-23页
        2.2.2 The structure第23-25页
        2.2.3 The Head printer第25-28页
        2.2.4 The print bed第28页
    2.3 Common Printing Materials第28-29页
        2.3.1 ABS第28-29页
        2.3.2 PLA第29页
        2.3.3 Other materials第29页
    2.4 Software第29-32页
        2.4.1 Printing Interface Sofware第29-30页
        2.4.2 G-code Generator Software第30-32页
CHAPTER 3 : METAL FDM HEAD PRINTER DEVELOPPMENT第32-59页
    3.1 General Analysis第32-34页
        3.1.1 Life cycle of a product第32-33页
        3.1.2 The product : General presentation第33页
        3.1.3 The market : General definition第33-34页
    3.2 Functional Analysis第34-38页
        3.2.1 Constraints to consider第34页
        3.2.2 Additional functions can also be used第34页
        3.2.3 The Product’s main components第34-35页
        3.2.4 Key components - Interaction diagram第35-36页
        3.2.5 Simplified Scheme第36页
        3.2.6 Example of a 3 Axis Robot :第36-38页
    3.3 Feeding System Improvement第38-42页
        3.3.1 Printing Material Shape第38-39页
        3.3.2 Prusa Mendel Feeding System Critic第39页
        3.3.3 First Feeding System Solution第39-42页
    3.4 Nozzle第42-43页
    3.5 Heating Systems第43-44页
        3.5.1 Resistive Heating :第43-44页
        3.5.2 Inductive Heating :第44页
        3.5.3 Electric Arc :第44页
        3.5.4 Laser Radiation :第44页
        3.5.5 Heated Air Flow :第44页
    3.6 Inductive Heating System第44-48页
        3.6.1 Generality第44-46页
        3.6.2 Induction Heating Solution第46-47页
        3.6.3 Simplified Scheme第47-48页
    3.7 Printing Material Alloy第48-51页
        3.7.1 Printing Metal Alloy Specifications第48-49页
        3.7.2 The current Material Choice第49-50页
        3.7.3 Characteristics of tin-lead solders第50-51页
    3.8 Resistive Heating System第51-54页
    3.9 Printing Metal Configuration第54-55页
    3.10 Solid Metal Wire Printing第55-59页
        3.10.1 Principle of Solid Metal Wire Printing第55-56页
        3.10.2 Solid Metal Wire Head Printer第56-59页
CHAPTER 4 : METAL CLAY 3D PRINTING第59-89页
    4.1 Metal Clay Material第59-63页
        4.1.1 Definition第59-60页
        4.1.2 Metal Clay Recipe第60-62页
        4.1.3 Metal Clay Most Known Brands第62-63页
    4.2 Metal Clay Head Printer Functional Analysis第63-64页
        4.2.1 The product’s main function第63页
        4.2.2 The product’s main components- Interaction diagram第63-64页
        4.2.3 Simplified Scheme第64页
    4.3 Metal Clay Head Printer Design第64-71页
        4.3.1 Syringe第65-66页
        4.3.2 Plastic Nozzles第66-67页
        4.3.3 Head Printer Designs第67-70页
        4.3.4 Head Printer Prototype第70-71页
    4.4 Metal Clay 3D Printing Parameters第71-76页
        4.4.1 Metal Clay Supply System Technical Parameters第71-72页
        4.4.2 Printing Experiment Constraints第72-74页
        4.4.3 Printing Experiment Parameters Settings第74-75页
        4.4.4 Printing Experiment Remarks and Main Issues第75-76页
    4.5 Metal Clay 3D Printed Results第76-85页
        4.5.1 General Results第76-77页
        4.5.2 Gearwheel Printed Model第77-81页
        4.5.3 Other Printed Parts第81-82页
        4.5.4 Experiment of using a Copper 3D Printedpart as EDM Electrode第82-85页
    4.6 Continuous Supply System for Clay第85-89页
        4.6.1 Simplified Schemeof the Continuous Supply System for Clay第85-86页
        4.6.2 Design of Supply System for Clay第86-89页
CHAPTER 5 : CONCLUSION & FURTHER IMPROVEMENTS第89-91页
    5.1 Further Improvements第89-90页
        5.1.1 Possible applications第89-90页
        5.1.2 Perspectives and Improvements第90页
    5.2 Conclusion第90-91页
REFERENCES第91-94页
ACKNOWLEDGEMENT第94-95页
ANNEX第95-105页

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