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(Ebook) Additive Manufacturing With Novel Materials Process Properties and Applications 1st Edition by R Rajasekar, C Moganapriya, P Sathish Kumar ISBN 9781394197910 1394197918

  • SKU: EBN-55543076
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Authors:R. Rajasekar, C. Moganapriya, P. Sathish Kumar
Pages:538 pages.
Year:2024
Language:english
File Size:88.21 MB
Format:pdf
ISBNS:9781394197910, 1394197918
Categories: Ebooks

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(Ebook) Additive Manufacturing With Novel Materials Process Properties and Applications 1st Edition by R Rajasekar, C Moganapriya, P Sathish Kumar ISBN 9781394197910 1394197918

(Ebook) Additive Manufacturing With Novel Materials Process Properties and Applications 1st Edition by R Rajasekar, C Moganapriya, P Sathish Kumar - Ebook PDF Instant Download/Delivery: 9781394197910 ,1394197918
Full download (Ebook) Additive Manufacturing With Novel Materials Process Properties and Applications 1st Edition after payment

Product details:

ISBN 10: 1394197918
ISBN 13: 9781394197910
Author: R Rajasekar, C Moganapriya, P Sathish Kumar

This book comprehensively provides insights into various additive manufacturing processes, novel materials, and their properties, as well as the basic knowledge of AM process parameters, post-processing techniques, and their applications. It also explores the fundamental concepts and recent advancements in the development of novel materials for several applications, with special emphasis on platforms like AM techniques for polymers, ceramics, metallic materials, composites, nanomaterials, hydrogels, etc. Specific topics like environmental aspects of 3D printing and advanced 4D printing are also introduced. The technological aspects of AM are discussed in a concise and understandable way, with extensive illustrations. Also covered are the challenges and opportunities that arise from 3D printing with these materials.

(Ebook) Additive Manufacturing With Novel Materials Process Properties and Applications 1st Edition Table of contents:

1 Brief Glimpses of Additive Manufacturing Techniques

1.1 Introduction

1.2 Polymer-Based AM

1.3 Surgical Planning

1.4 Titanium Alloy

1.5 Thickness Control Using Machine Learning

1.6 Carbon Fiber-Based AM

1.7 Ceramics-Based AM

1.8 Wire Polymer-Based AM

1.9 Nanomaterial-Based AM

1.10 Direct Ink Writing (DIW)

1.11 Hull of Soy

1.12 Laser Powder Bed Fusion

1.13 Future Challenges

1.14 Future Scope of AM

1.15 Conclusion

References

2 Recent Developments in Additive Manufacturing Equipment’s and Its Processes

2.1 Introduction

2.2 Equipment and Procedures for Polymer Additive Manufacturing

2.3 Equipment and Procedures for Metal Additive Manufacturing

2.4 Equipment and Procedures for Ceramics Additive Manufacturing

2.5 FDM 3D Printing Technique

2.6 Hot Melt Extrusion Method—Polymers

2.7 Advancements in Additive Manufacturing

2.8 Conclusion

References

3 Computational Modeling of Additive Manufacturing—Overview, Principles, and Simulations in Different Scales

3.1 Introduction

3.2 Atomistic Simulation

3.3 Mesoscale Modeling

3.4 Macroscale Modeling

3.5 Machine Learning

3.6 Conclusion

References

4 Characterization Methodologies for Additive Manufacturing: From Feedstock to the Final Component

List of Abbreviations

4.1 Introduction

4.2 Characterization of Solid Feedstock Materials

4.3 Characterization of Liquid Form Feedstock

4.4 Characterization of Additively Manufactured Parts

4.5 Conclusion

References

5 Additive Manufacturing of Polymeric Materials: Process and Properties

5.1 Introduction

5.2 AM Process of Plastics and Their Properties

5.3 Conclusion

References

6 Additive Manufacturing of Metal-Matrix and Polymer-Matrix Composites

List of Abbreviations

6.1 Introduction

6.2 AM of Composite Materials

6.3 Effect of Parameters on Printed MMCs

6.4 Effect of Parameters on Printed PMCs

6.5 Applications of 3D-Printed Polymer Matrix and Metal Matrix Composites

6.6 Future Scope and Challenges

6.7 Summary and Conclusion

References

7 Postprocessing of Additively Manufactured Polymeric and Metallic Parts—A Review

7.1 Introduction

7.2 Defects Associated with Additively Manufactured Parts

7.3 Postprocessing Techniques for AM Processes

7.4 Conclusion

References

8 Additive Manufacturing of Nanoscale and Microscale Materials

8.1 Introduction

8.2 Microscale Additive Manufacturing

8.3 Properties of Materials

8.4 Nanocomposites Applications

8.5 Conclusion

References

9 Additive Manufacturing of Hydrogels: Process and Properties

9.1 Introduction

9.2 Application of 3D-Printed Hydrogels

9.3 Hydrogel Materials for Additive Manufacturing

9.4 Conclusion

References

10 Additive Manufacturing of Bulk Metallic Glasses

10.1 Introduction

10.2 Overview of Various Bulk Metallic Glasses Synthesized by Additive Manufacturing

10.3 Mechanical Properties of Bulk Metallic Glasses Synthesized Via Additive Manufacturing

10.4 Summary and Future Development Perspective

References

11 Additive Manufacturing of Tools and Dies for Metal Forming Applications

11.1 Introduction

11.2 Extrusion-Based Additive Manufacturing

11.3 Laser-Based Additive Manufacturing

11.4 Layer-Laminated Additive Manufacturing

11.5 Wire Arc Additive Manufacturing

11.6 Discussions

11.7 Challenges of Metals in Additive Manufacturing

11.8 Conclusion

References

12 Environmental Aspects of 3D Printing Metal and Alloys

12.1 Introduction

12.2 Additive Manufacturing Technologies

12.3 Metal and Alloy Materials

12.4 Positive Environmental Impact of Additive Manufacturing

12.5 Life Cycle Assessment

12.6 Sustainable Manufacturing

12.7 Negative Environmental Impact of Additive Manufacturing

12.8 Direct Sampling Devices

12.9 Health Damage Due to Exposure to Emissions

12.10 Safety Measures to be Followed During 3D Printing

12.11 Conclusion

Acknowledgment

References

13 Current Aspects of Additive Manufacturing in the Aerospace Industry

13.1 Introduction

13.2 AM Technologies for the Aerospace Industries

13.3 Summary of the Literature Study

13.4 Conclusion & Recommendation for Future Work

References

14 Four-Dimensional (4D) Microprinting: Materials, Processes, Challenges and Applications

14.1 Introduction

14.2 4D Printing Technologies

14.3 Micro 4D Printing: State of the Art

14.4 Smart Materials for Micro 4D Printing

14.5 Micro Additive Manufacturing Processes

14.6 Applications of Micro 4D-Printed Structures

14.7 Challenges and Future Outlook

14.8 Conclusions

Acknowledgments

References

15 Novel Technique to Measure Shape Memory Behavior of 4D Material

15.1 Introduction

15.2 Additive Manufacturing and Methodology

15.3 Analysis

15.4 Conclusions

References

16 Additive Manufacturing for Building and Constructions: Overview, Applications and Challenges

16.1 Introduction

16.2 Techniques of AM Used in B&C

16.3 Construction Materials for AM

16.4 Properties of the Printable Construction Materials

16.5 Applications of AM in B&C Industries

16.6 Challenges and Future Developments of AM in B&C Applications

16.7 Conclusions

References

Index

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Tags: R Rajasekar, C Moganapriya, P Sathish Kumar, Additive Manufacturing, Novel Materials

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