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基于流体力学的金属增材制造过程仿真研究(英文版第二版)电子书

1. 增材制造正在成为发达国家实现制造业回流、提升产业竞争力的重要载体。可以说,新一轮的全球制造业竞争,极有可能是3D打印与机器人等高端装备的竞争;2. 本书基于流体力学,提出针对增材制造的多物理场耦合模型,揭示激光与物质相互作用机理;3. 本书将为控制增材制造缺陷以及改善增材制造工件质量提供可靠、有效的理论依据和指导。

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作       者:李辉,刘胜,等

出  版  社:电子工业出版社

出版时间:2022-09-01

字       数:20.9万

所属分类: 科技 > 工业技术 > 汽车与交通运输

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内容简介

Preface

Chapter 1 Introduction

1.1 Background

1.2 Motivation

1.3 Outline

Chapter 2 Investigation of the flow field in Laser-based Powder Bed Fusion manufacturing

2.1 Introduction

2.2 Simulation model of the L-PBF printer

2.3 Simulation results

2.4 Conclusions

References

Chapter 3 Investigation of optimizing the flow field with fluid cover in Laser-based Powder Bed Fusion manufacturing process

3.1 Introduction

3.2 Simulation model of the L-PBF printer

3.3 Simulation results and discussions

3.4 Summary and conclusions

References

Chapter 4 Numerical investigation of controlling spatters with negative pressure pipe in Laser-based Powder Bed Fusion process

4.1 Introduction

4.2 Simulation model of the L-PBF printer

4.3 Simulation results and discussions

4.4 Summary and conclusions

References

Chapter 5 Evolution of molten pool during Laser-based Powder Bed Fusion of Ti-6Al-4V

5.1 Introduction

5.2 Modeling approach and numerical simulation

5.3 Experimental procedures

5.4 Results and discussions

5.5 Conclusions

References

Chapter 6 Simulation of surface deformation control during Laser-basedPowder Bed Fusion Al-Si-10Mg powder using an external magnetic field

6.1 Introduction

6.2 Modeling and simulation

6.3 Results

6.4 Conclusions

References

Chapter 7 Influence of laser post-processing on pore evolution of Ti-6Al-4V alloy by Laser-based Powder Bed Fusion

7.1 Introduction

7.2 Experimental procedures

7.3 Modeling and simulation

7.4 Numerical results and discussion

7.5 Conclusions

References

Chapter 8 Evolution of multi-pores in Ti-6Al-4V/Al-Si-10Mg alloy during laser post-processing

8.1 Introduction

8.2 Experimental procedures

8.3 Model and simulation

8.4 Numerical results and discussion

8.5 Conclusions

References

Chapter 9 Investigation of laser polishing of four Laser-based Powder Bed Fusion alloy samples

9.1 Introduction

9.2 Model and theoretical calculation

9.3 Experimental methods

9.4 Conclusions

References

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