Additive Manufacturing Materials and Technology
Editat de Sanjay Mavinkere Rangappa, Vinod Ayyappan, Suchart Siengchinen Limba Engleză Paperback – 17 iul 2024
Various additive manufacturing techniques such as electron beam melting, selective laser melting, laser sintered, fused deposition, and more are also studied.
- Presents a comprehensive overview of recent advances in additive manufacturing technology and materials research and development
- Outlines the processing methods, functionalization, mechanics, and applications of additive manufactured materials and technology
- Summarizes lifecycles and performance parameters of 3D printed materials
- Focuses on the types of shape memory materials and smart materials used in 3D printing in industrial applications and their applications
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Specificații
ISBN-13: 9780443184628
ISBN-10: 0443184623
Pagini: 584
Dimensiuni: 152 x 229 mm
Greutate: 0.77 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0443184623
Pagini: 584
Dimensiuni: 152 x 229 mm
Greutate: 0.77 kg
Editura: ELSEVIER SCIENCE
Cuprins
1. Introduction to additive manufacturing
2. Material Advancements and Standards in 3D Printing Materials: Polymers, Metals, and Composites
3. Smart Functional and Shape Memory Materials
4. Metal-Based Additive Manufacturing: Advancements and Case Studies
5. Case Studies on Material and Technology Advancements in Electron Beam Melting (EBM) and Selective Laser Melting (SLM)
6. Additive Manufacturing in Automotive and Aerospace Technologies
7. Additive Manufactured Ceramics and Ceramic Composites
8. Post-Processing Strategies for Additive Manufactured Metal, Metal Composite, and Ceramic Materials
9. Additive Manufacturing Technologies in Construction-Based Materials
10. Advancements and Case Studies in 3D-Printing of Polymer and Polymer Composites through SLS and FDM
11. Challenges in Making Polymer and Composite Filament for FDM Printers
12. Failure Models for FDM 3D Printed Specimens
13. 3D-Printing of Thermosets and their Corresponding Composites
14. Advancements in fiber reinforced materials in 3D printing
15. Pharmaceutical technologies and applications of additive manufacturing
16. Bio-based additive manufacturing
17. 3D printing of Biomaterials for Tissue Engineering
18. Role of 3D Printing in Sports and Prosthetics
19. Design for Additive Manufacturing of Cellular Structures
20. Additive Manufactured Metallic and Bone Tissue Advancements
21. Assessment of the Additive Manufacturing Process Life Cycle and Economics
22. Future Prospects and Constraints of Additive Manufacturing
2. Material Advancements and Standards in 3D Printing Materials: Polymers, Metals, and Composites
3. Smart Functional and Shape Memory Materials
4. Metal-Based Additive Manufacturing: Advancements and Case Studies
5. Case Studies on Material and Technology Advancements in Electron Beam Melting (EBM) and Selective Laser Melting (SLM)
6. Additive Manufacturing in Automotive and Aerospace Technologies
7. Additive Manufactured Ceramics and Ceramic Composites
8. Post-Processing Strategies for Additive Manufactured Metal, Metal Composite, and Ceramic Materials
9. Additive Manufacturing Technologies in Construction-Based Materials
10. Advancements and Case Studies in 3D-Printing of Polymer and Polymer Composites through SLS and FDM
11. Challenges in Making Polymer and Composite Filament for FDM Printers
12. Failure Models for FDM 3D Printed Specimens
13. 3D-Printing of Thermosets and their Corresponding Composites
14. Advancements in fiber reinforced materials in 3D printing
15. Pharmaceutical technologies and applications of additive manufacturing
16. Bio-based additive manufacturing
17. 3D printing of Biomaterials for Tissue Engineering
18. Role of 3D Printing in Sports and Prosthetics
19. Design for Additive Manufacturing of Cellular Structures
20. Additive Manufactured Metallic and Bone Tissue Advancements
21. Assessment of the Additive Manufacturing Process Life Cycle and Economics
22. Future Prospects and Constraints of Additive Manufacturing