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Fatigue in Additive Manufactured Metals: Additive Manufacturing Materials and Technologies

Editat de Filippo Berto, Anton Du Plessis
en Limba Engleză Paperback – 20 sep 2023
Fatigue in Additive Manufactured Metals provides a brief overview of the fundamental mechanics involved in metal fatigue and fracture, assesses the unique properties of additive manufactured metals, and provides an in-depth exploration of how and why fatigue occurs in additive manufactured metals. Additional sections cover solutions for preventing it, best-practice design methods, and more. The book recommends cutting-edge evidence-based approaches for designing longer lasting additive manufactured metals, discusses the latest trends in the field and the various aspects of low cycle fatigue, and looks at both post-treatment and manufacturing process-based solutions.
By providing international standards and testing procedures of additive manufactured metal parts and discussing the environmental impacts of additive manufacturing of metals and outlining simulation and modeling scenarios, this book is an ideal resource for users in industry.


  • Discusses the underlying mechanisms controlling the fatigue behavior of additive manufactured metal components as well as how to improve the fatigue life of these components via both manufacturing processes and post-processing
  • Studies the variability of properties in additive manufactured metals, the effects of different process conditions on mechanical reliability, probabilistic versus deterministic aspects, and more
  • Outlines nondestructive failure analysis techniques and highlights the effects of unique microstructural characteristics on fatigue in additive manufactured metals
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Specificații

ISBN-13: 9780323912044
ISBN-10: 0323912044
Pagini: 320
Ilustrații: 200 illustrations (100 in full color)
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Additive Manufacturing Materials and Technologies


Cuprins

1. Introduction
2. Introduction to metal additive manufacturing and unique aspects relating to fatigue
3. Low Cycle fatigue of Additive Manufactured (AM) metals
4. Fatigue and corrosion-fatigue crack growth behaviour of WAAM Parts
5. Fatigue behaviour in presence of defects
6. Analytical Methods and Computational Approaches for Modeling the Fatigue Behavior of AM Materials
7. Very high cycle fatigue (VHCF) of additive manufacturing (AM) metals
8. Defects in additive manufacturing and their influence on structural integrity.
9. Post-treatments improving the fatigue life
10. A review of the effects of laser shock peening on properties of additively manufactured Ti6A14V
11. Mechanical Properties of lattice materials for fatigue-tolerant design and fabrication