Bulk Nanostructured Materials with Multifunctional Properties

Bulk Nanostructured Materials with Multifunctional Properties
Title Bulk Nanostructured Materials with Multifunctional Properties PDF eBook
Author I. Sabirov
Publisher Springer
Pages 125
Release 2015-09-01
Genre Technology & Engineering
ISBN 3319195999

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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.

Bulk Nanostructured Materials

Bulk Nanostructured Materials
Title Bulk Nanostructured Materials PDF eBook
Author Ruslan Z. Valiev
Publisher John Wiley & Sons
Pages 468
Release 2013-09-17
Genre Technology & Engineering
ISBN 1118742575

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This book presents the most recent results in the area of bulk nanostructured materials and new trends in their severe plastic deformation (SPD) processing, where these techniques are now emerging from the domain of laboratory-scale research into the commercial production of various bulk nanomaterials. Special emphasis is placed on an analysis of the effect of nanostructures in materials fabricated by SPD on mechanical properties (strength and ductility, fatigue strength and life, superplasticity) and functional behavior (shape memory effects, magnetic and electric properties), as well as the numerous examples of their innovative applications. There is a high innovation potential for industrial applications of bulk nanomaterials for structural use (materials with extreme strength) as well as for functional applications such as nanomagnets, materials for hydrogen storage, thermoelectric materials, superconductors, catalysts, and biomedical implants.

Bulk Nanostructured Materials

Bulk Nanostructured Materials
Title Bulk Nanostructured Materials PDF eBook
Author Ruslan Z. Valiev
Publisher John Wiley & Sons
Pages 468
Release 2013-10-28
Genre Technology & Engineering
ISBN 1118095405

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This book presents the most recent results in the area of bulk nanostructured materials and new trends in their severe plastic deformation (SPD) processing, where these techniques are now emerging from the domain of laboratory-scale research into the commercial production of various bulk nanomaterials. Special emphasis is placed on an analysis of the effect of nanostructures in materials fabricated by SPD on mechanical properties (strength and ductility, fatigue strength and life, superplasticity) and functional behavior (shape memory effects, magnetic and electric properties), as well as the numerous examples of their innovative applications. There is a high innovation potential for industrial applications of bulk nanomaterials for structural use (materials with extreme strength) as well as for functional applications such as nanomagnets, materials for hydrogen storage, thermoelectric materials, superconductors, catalysts, and biomedical implants.

Nanostructure Science and Technology

Nanostructure Science and Technology
Title Nanostructure Science and Technology PDF eBook
Author Richard W. Siegel
Publisher Springer Science & Business Media
Pages 378
Release 1999-09-30
Genre Technology & Engineering
ISBN 9780792358541

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Timely information on scientific and engineering developments occurring in laboratories around the world provides critical input to maintaining the economic and technological strength of the United States. Moreover, sharing this information quickly with other countries can greatly enhance the productivity of scientists and engineers. These are some of the reasons why the National Science Foundation (NSF) has been involved in funding science and technology assessments comparing the United States and foreign countries since the early 1980s. A substantial number of these studies have been conducted by the World Technology Evaluation Center (WTEC) managed by Loyola College through a cooperative agreement with NSF. The National Science and Technology Council (NSTC), Committee on Technology's Interagency Working Group on NanoScience, Engineering and Technology (CT/IWGN) worked with WTEC to develop the scope of this Nanostucture Science and Technology report in an effort to develop a baseline of understanding for how to strategically make Federal nanoscale R&D investments in the coming years. The purpose of the NSTC/WTEC activity is to assess R&D efforts in other countries in specific areas of technology, to compare these efforts and their results to U. S. research in the same areas, and to identify opportunities for international collaboration in precompetitive research. Many U. S. organizations support substantial data gathering and analysis efforts focusing on nations such as Japan. But often the results of these studies are not widely available. At the same time, government and privately sponsored studies that are in the public domain tend to be "input" studies.

Nanostructured Multifunctional Materials

Nanostructured Multifunctional Materials
Title Nanostructured Multifunctional Materials PDF eBook
Author Esteban A. Franceschini
Publisher
Pages 310
Release 2021
Genre Nanostructured materials
ISBN 9780367763497

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"This book provides an overview of the effect of nanostructuring in the multifunctionality of different widely studied nanomaterials from a broad approach that allows access to a public of chemists, (bio)engineers, physicists, nanotechnologists, undergraduates and professors. This book is divided into three parts that group materials sharing certain types of nanostructuring, including nanoporous, nanoparticled, 2D laminar materials, and a fourth section including computational studies of the nanostructures addressed. This structured approach in nanomaterials research will work as a valuable reference material for those who want to learn and explore nanoscience and nanotechnology from a rational point of view"--

Ultrafine-Grained Materials

Ultrafine-Grained Materials
Title Ultrafine-Grained Materials PDF eBook
Author Ruslan Z. Valiev
Publisher Springer Nature
Pages 177
Release
Genre
ISBN 3031317297

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Electron Crystallography

Electron Crystallography
Title Electron Crystallography PDF eBook
Author Devinder Singh
Publisher BoD – Books on Demand
Pages 116
Release 2020-07-22
Genre Science
ISBN 1838801898

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In the quantitative determination of new structures, micro-/nano-crystalline materials pose significant challenges. The different properties of materials are structure-dependent. Traditionally, X-ray crystallography has been used for the analysis of these materials. Electron diffraction is a technique that complements other techniques; for example, single crystal X-ray diffraction and powder X-ray diffraction for determination of structure. Electron diffraction plays a very important role when crystals are very small using single crystal X-ray diffraction or very complex for structure solution by powder X-ray diffraction. With the introduction of advanced methodologies, important methods for crystal structural analysis in the field of electron crystallography have been discovered, such as rotation electron diffraction (RED) and automated electron diffraction tomography (ADT). In recent years, large numbers of crystal structures have been solved using electron crystallography.