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Functional Gradient Materials and Surface Layers Prepared by Fine Particles Technology: 16 (NATO Science Series II: Mathematics, Physics and Chemistry) - Tapa blanda

 
9780792369257: Functional Gradient Materials and Surface Layers Prepared by Fine Particles Technology: 16 (NATO Science Series II: Mathematics, Physics and Chemistry)

Sinopsis

The NATO Advanced Study Institute on "Functional Gradient Materials and Surface Layers Prepared by Fine Particles Technology" was held in Kiev (Ukraine) on June 18- 28, 2000 where more than 90 participants, ranging from Ph.D. students to experienced senior scientists, met and exchanged ideas. This meeting was aimed at stimulating the research work across traditional disciplinary lines by bringing together scientists from diverse research areas related to functional gradient materials and surface layers. It also intended to give opportunities for initiating collaborative works between scientists from NATO and Partner countries and to trigger fruitful and exciting discussions between experienced and young researchers. In this respect, this NATO-ASI has been quite successful. The term of functional gradient materials which originates from Japan in the 1980's describes a class of engineering materials with spatially inhomogeneous microstructures and properties (MRS Bulletin, 1995,20, N°l). These materials can be successfully utilized in various applications like electronic devices, optical films, anti­ wear and anti-corrosion coatings, thermal barrier coatings, biomaterials, to name only a few. Although these functional gradient materials are not fundamentally new, the use of nanoparticles in their fabrication and in surface layers as well has greatly improved their performances to meet challenging requirements for industrial applications.

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Reseña del editor

The NATO Advanced Study Institute on "Functional Gradient Materials and Surface Layers Prepared by Fine Particles Technology" was held in Kiev (Ukraine) on June 18- 28, 2000 where more than 90 participants, ranging from Ph.D. students to experienced senior scientists, met and exchanged ideas. This meeting was aimed at stimulating the research work across traditional disciplinary lines by bringing together scientists from diverse research areas related to functional gradient materials and surface layers. It also intended to give opportunities for initiating collaborative works between scientists from NATO and Partner countries and to trigger fruitful and exciting discussions between experienced and young researchers. In this respect, this NATO-ASI has been quite successful. The term of functional gradient materials which originates from Japan in the 1980's describes a class of engineering materials with spatially inhomogeneous microstructures and properties (MRS Bulletin, 1995,20, N°l). These materials can be successfully utilized in various applications like electronic devices, optical films, anti­ wear and anti-corrosion coatings, thermal barrier coatings, biomaterials, to name only a few. Although these functional gradient materials are not fundamentally new, the use of nanoparticles in their fabrication and in surface layers as well has greatly improved their performances to meet challenging requirements for industrial applications.

Reseña del editor

The term `functional gradient materials' was coined in Japan in the 1980s to describe a class of materials having spatially homogenous microstructures and properties. These materials can be used successfully in such applications as electronic devices, optical films, anti-wear and anti-corrosion coatings, thermal barrier coatings and biomaterials. The materials are fabricated with the use of nanoparticles, leading to greatly improved performance. Nanoparticle technology is not straightforward, however, demanding a modification of methods for processing and characterization.
This book provides graduate students, postdoctoral fellows, engineers and senior scientists with an in-depth review of aspects of the field, ranging from synthetic methods to a variety of applications. The different approaches to material synthesis are described, giving the reader a better understanding of the complex phenomena involved. Characterization and the evaluation of properties are also discussed.

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9780792369240: Functional Gradient Materials and Surface Layers Prepared by Fine Particles Technology: 16 (NATO Science Series II: Mathematics, Physics and Chemistry)

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ISBN 10:  0792369246 ISBN 13:  9780792369240
Editorial: Springer, 2001
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Baraton, Marie-Isabelle|Uvarova, Irina V.
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ISBN 10: 0792369254 ISBN 13: 9780792369257
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Condición: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Proceedings of the NATO Advanced Study Institute, held in Kiev, Ukraine, June 18-28, 2000 The NATO Advanced Study Institute on Functional Gradient Materials and Surface Layers Prepared by Fine Particles Technology was held in Kiev (Ukraine) on June 1. Nº de ref. del artículo: 5969791

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Irina V. Uvarova
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Taschenbuch. Condición: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -The NATO Advanced Study Institute on 'Functional Gradient Materials and Surface Layers Prepared by Fine Particles Technology' was held in Kiev (Ukraine) on June 18- 28, 2000 where more than 90 participants, ranging from Ph.D. students to experienced senior scientists, met and exchanged ideas. This meeting was aimed at stimulating the research work across traditional disciplinary lines by bringing together scientists from diverse research areas related to functional gradient materials and surface layers. It also intended to give opportunities for initiating collaborative works between scientists from NATO and Partner countries and to trigger fruitful and exciting discussions between experienced and young researchers. In this respect, this NATO-ASI has been quite successful. The term of functional gradient materials which originates from Japan in the 1980's describes a class of engineering materials with spatially inhomogeneous microstructures and properties (MRS Bulletin, 1995,20, N°l). These materials can be successfully utilized in various applications like electronic devices, optical films, anti wear and anti-corrosion coatings, thermal barrier coatings, biomaterials, to name only a few. Although these functional gradient materials are not fundamentally new, the use of nanoparticles in their fabrication and in surface layers as well has greatly improved their performances to meet challenging requirements for industrial applications. 328 pp. Englisch. Nº de ref. del artículo: 9780792369257

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Baraton, Marie-Isabelle; Uvarova, Irina V.
Publicado por Springer, 2001
ISBN 10: 0792369254 ISBN 13: 9780792369257
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Irina V. Uvarova
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ISBN 10: 0792369254 ISBN 13: 9780792369257
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Taschenbuch. Condición: Neu. Druck auf Anfrage Neuware - Printed after ordering - The NATO Advanced Study Institute on 'Functional Gradient Materials and Surface Layers Prepared by Fine Particles Technology' was held in Kiev (Ukraine) on June 18- 28, 2000 where more than 90 participants, ranging from Ph.D. students to experienced senior scientists, met and exchanged ideas. This meeting was aimed at stimulating the research work across traditional disciplinary lines by bringing together scientists from diverse research areas related to functional gradient materials and surface layers. It also intended to give opportunities for initiating collaborative works between scientists from NATO and Partner countries and to trigger fruitful and exciting discussions between experienced and young researchers. In this respect, this NATO-ASI has been quite successful. The term of functional gradient materials which originates from Japan in the 1980's describes a class of engineering materials with spatially inhomogeneous microstructures and properties (MRS Bulletin, 1995,20, N°l). These materials can be successfully utilized in various applications like electronic devices, optical films, anti wear and anti-corrosion coatings, thermal barrier coatings, biomaterials, to name only a few. Although these functional gradient materials are not fundamentally new, the use of nanoparticles in their fabrication and in surface layers as well has greatly improved their performances to meet challenging requirements for industrial applications. Nº de ref. del artículo: 9780792369257

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Irina V. Uvarova
ISBN 10: 0792369254 ISBN 13: 9780792369257
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Taschenbuch. Condición: Neu. Neuware -The NATO Advanced Study Institute on 'Functional Gradient Materials and Surface Layers Prepared by Fine Particles Technology' was held in Kiev (Ukraine) on June 18- 28, 2000 where more than 90 participants, ranging from Ph.D. students to experienced senior scientists, met and exchanged ideas. This meeting was aimed at stimulating the research work across traditional disciplinary lines by bringing together scientists from diverse research areas related to functional gradient materials and surface layers. It also intended to give opportunities for initiating collaborative works between scientists from NATO and Partner countries and to trigger fruitful and exciting discussions between experienced and young researchers. In this respect, this NATO-ASI has been quite successful. The term of functional gradient materials which originates from Japan in the 1980's describes a class of engineering materials with spatially inhomogeneous microstructures and properties (MRS Bulletin, 1995,20, N°l). These materials can be successfully utilized in various applications like electronic devices, optical films, anti wear and anti-corrosion coatings, thermal barrier coatings, biomaterials, to name only a few. Although these functional gradient materials are not fundamentally new, the use of nanoparticles in their fabrication and in surface layers as well has greatly improved their performances to meet challenging requirements for industrial applications. 328 pp. Englisch. Nº de ref. del artículo: 9780792369257

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Marie-Isabelle Baraton
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Paperback / softback. Condición: New. This item is printed on demand. New copy - Usually dispatched within 5-9 working days 552. Nº de ref. del artículo: C9780792369257

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Baraton, Marie-Isabelle; Uvarova, Irina V.
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