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Metal fatigue
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ISBN: 9780128138779 0128138777 9780128138762 0128138769 Year: 2019 Publisher: London

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Abstract

Metal fatigue is an essential consideration for engineers and researchers looking at factors that cause metals to fail through stress, corrosion, or other processes. Predicting the influence of small defects and non-metallic inclusions on fatigue with any degree of accuracy is a particularly complex part of this. Metal Fatigue: Effects of Small Defects and Nonmetallic Inclusions is the most trusted, detailed and comprehensive guide to this subject available. This expanded second edition introduces highly important emerging topics on metal fatigue, pointing the way for further research and innovation. The methodology is based on important and reliable results and may be usefully applied to other fatigue problems not directly treated in this book.

Keywords

Metals --- Fatigue. --- Defects. --- Inclusions.


Digital
Défenses de la Chambre du commerce de Marseille, contre les fabricans de camelots d'Amiens et de Lille : au sujet de la demande qu'ils ont faite de la réduction on abolition du droit de 20. p.[our cent].
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Year: 1764 Publisher: Marseille De l'Imprimerie de Jos. Ant. Brebion

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Railways in England and in France : being reflections suggested by Mr. Morrison's pamphlet, and by the report drawn up by him for the railway acts committee
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Year: 1847 Publisher: London P. Richardson


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Topological structures in ferroic materials : domain walls, vortrices and syrmions
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ISBN: 9783319253015 9783319252995 Year: 2016 Publisher: Berlin ; New York, NY : Springer,

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Abstract

This book provides a state-of-the art overview of a highly interesting emerging research field in solid state physics/nanomaterials science, topological structures in ferroic materials. Topological structures in ferroic materials have received strongly increasing attention in the last few years. Such structures include domain walls, skyrmions and vortices, which can form in ferroelectric, magnetic, ferroelastic or multiferroic materials. These topological structures can have completely different properties from the bulk material they form in. They also can be controlled by external fields (electrical, magnetic, strain) or currents, which makes them interesting from a fundamental research point of view as well as for potential novel nanomaterials applications. To provide a comprehensive overview, international leading researches in these fields contributed review-like chapters about their own work and the work of other researchers to provide a current view of this highly interesting topic.

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