Fundamentals of Laser Powder Bed Fusion of Metals 1st edition- Ebook Instant Download/Delivery ISBN(s): 9780128166345,9780128167212,9780128196007,9780128240908,9780128240915,0128166347,0128167211,0128196009,0128240903
Product details:
- ISBN-10 : 0128240903
- ISBN-13 : 9780128240915
- Author: Igor Yadroitsev, Ina Yadroitsava, Anton Du Plessis, Eric MacDonald
Laser powder bed fusion of metals is a technology that makes use of a laser beam to selectively melt metal powder layer-by-layer in order to fabricate complex geometries in high performance materials. The technology is currently transforming aerospace and biomedical manufacturing and its adoption is widening into other industries as well, including automotive, energy, and traditional manufacturing. With an increase in design freedom brought to bear by additive manufacturing, new opportunities are emerging for designs not possible previously and in material systems that now provide sufficient performance to be qualified in end-use mission-critical applications. After decades of research and development, laser powder bed fusion is now enabling a new era of digitally driven manufacturing.
Fundamentals of Laser Powder Bed Fusion of Metals will provide the fundamental principles in a broad range of topics relating to metal laser powder bed fusion. The target audience includes new users, focusing on graduate and undergraduate students; however, this book can also serve as a reference for experienced users as well, including senior researchers and engineers in industry. The current best practices are discussed in detail, as well as the limitations, challenges, and potential research and commercial opportunities moving forward
Table contents:
1. Historical background
2. Basics of laser powder bed fusion
3. A step-by-step guide to the L-PBF process
4. Physics and modeling
5. Design principles
6. Porosity in laser powder bed fusion
7. Surface roughness
8. Microstructure of L-PBF alloys
9. Residual stress in laser powder bed fusion
10. Non-destructive testing of parts produced by laser powder bed fusion
11. Process monitoring of laser powder bed fusion
12. Post-processing
13. Structural integrity I: static mechanical properties
14. Structural integrity II: fatigue properties
15. Structural integrity III: energy-based fatigue prediction for complex parts
16. Lattice structures made by laser powder bed fusion
17. Bio-inspired design
18. Powder characterization—methods, standards, and state of the art
19. New materials development
20. Recent progress on global standardization
21. Industrial applications
22. Economic feasibility and cost-benefit analysis
23. Current state and future trends in laser powder bed fusion technology
24. Case study
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