Fr. 69.00

Bulk Nanostructured Materials with Multifunctional Properties

Englisch · Taschenbuch

Versand in der Regel in 1 bis 2 Wochen (Titel wird auf Bestellung gedruckt)

Beschreibung

Mehr lesen

This book presents a multifunctional approach to the design of bulk nanostructured metals through severe plastic deformation (SPD). Materials engineering has traditionally involved selecting a suitable material for a given application. However, modern engineering frequently requires materials with a set of multifunctional, often conflicting properties: Enhanced mechanical properties need to be combined with improved physical (electrical, magnetic, etc.) and/or chemical (corrosion resistance, biocompatibility) properties. So disparate materials properties need to be engineered and optimized simultaneously. These requirements have created a paradigm shift in which the classical materials selection approach is replaced by design of material microstructures to achieve certain performance requirements, subject to constraints on individual properties such as strength, conductivity, and corrosion resistance. Written by researchers at the forefront of this new materials design approach, the present volume provides a comprehensive introduction to multifunctional design of bulk nanostructured materials, with applications ranging from hydrogen storage to construction engineering.

Inhaltsverzeichnis

From the Contents: Introduction.- Nanostructural design of materials for advanced properties.- Grain refinement via severe plastic deformation.- Multifunctional properties of bulk nanostructured metallic materials.- Superstrength and enhanced mechanical properties.- Improved physical and functional properties.- Applications Areas.- Ti-based materials in bio-medical engineering.- Nanostructured Al alloys and Cu in electrical engineering and micro-electro-mechanical systems.

Zusammenfassung

This book presents a multifunctional approach to the design of bulk nanostructured metals through severe plastic deformation (SPD). Materials engineering has traditionally involved selecting a suitable material for a given application. However, modern engineering frequently requires materials with a set of multifunctional, often conflicting properties: Enhanced mechanical properties need to be combined with improved physical (electrical, magnetic, etc.) and/or chemical (corrosion resistance, biocompatibility) properties. So disparate materials properties need to be engineered and optimized simultaneously. These requirements have created a paradigm shift in which the classical materials selection approach is replaced by design of material microstructures to achieve certain performance requirements, subject to constraints on individual properties such as strength, conductivity, and corrosion resistance. Written by researchers at the forefront of this new materials design approach, the present volume provides a comprehensive introduction to multifunctional design of bulk nanostructured materials, with applications ranging from hydrogen storage to construction engineering.

Produktdetails

Autoren N Enikeev, N A Enikeev, N. A. Enikeev, N.A. Enikeev, M Yu et al Murashkin, M. Y. Murashkin, M. Yu. Murashkin, M.Yu. Murashkin, Sabirov, I Sabirov, I. Sabirov, R. Z. Valiev, R.Z. Valiev
Verlag Springer, Berlin
 
Sprache Englisch
Produktform Taschenbuch
Erschienen 01.01.2015
 
EAN 9783319195988
ISBN 978-3-31-919598-8
Seiten 118
Abmessung 154 mm x 234 mm x 9 mm
Gewicht 207 g
Illustration VIII, 118 p. 64 illus., 28 illus. in color.
Serien SpringerBriefs in Materials
SpringerBriefs in Materials
Thema Naturwissenschaften, Medizin, Informatik, Technik > Technik > Maschinenbau, Fertigungstechnik

Kundenrezensionen

Zu diesem Artikel wurden noch keine Rezensionen verfasst. Schreibe die erste Bewertung und sei anderen Benutzern bei der Kaufentscheidung behilflich.

Schreibe eine Rezension

Top oder Flop? Schreibe deine eigene Rezension.

Für Mitteilungen an CeDe.ch kannst du das Kontaktformular benutzen.

Die mit * markierten Eingabefelder müssen zwingend ausgefüllt werden.

Mit dem Absenden dieses Formulars erklärst du dich mit unseren Datenschutzbestimmungen einverstanden.