M. Aliofkhazraei – Handbook of Mechanical Nanostructuring (2015)

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Автор: M. Aliofkhazraei
Название книги: Handbook of Mechanical Nanostructuring
Формат: PDF
Жанр: Нанотехнологии
Страницы: 795
Качество: Изначально компьютерное, E-book

The world of nanosize-affected materials can be classified into two main groups of nanomaterials and nanostructured materials. The term “nanomaterial” implies that the given material involves a nanodimensional structure and can be any form of nanoparticles (such as silicon nanoparticles), nanofibers (such as carbon nanofibers), and nanoplates (such as mica nanoplates or clay nanosheets). On the other hand, we have nanostructured materials. These materials have an apparent
bulk form, but their constituent particles have nanodimensions. Nanostructured materials are prepared using either top-down or bottom-up approaches.
The severe plastic deformation (SPD) methods are among frequently used techniques in the last two decades for synthesis of nanostructured materials. By applying SPD techniques to a given metal, these processes lead to the fine microstructural changes in the materials and also lead to the change in their microstructure down to the nanometric scale. SPD is among the several techniques on the basis of top-down method for synthesis of nanostructured materials and surfaces.
Contents to Volume 1
Mechanical Properties of Nanostructured Materials
Mechanical Properties of Nanocrystalline Materials
Superior Mechanical Properties of Nanostructured Light Metallic Materials and Their Innovation Potential
Understanding the Mechanical Properties of Nanostructured Bainite
Inherent Strength of Nano-Polycrystalline Materials
State-of-the-Art Optical Microscopy and AFM-Based Property Measurement of Nanostructure Materials
Strength and Electrical Conductivity of Bulk Nanostructured Cu and Cu-Based Alloys Produced by SPD
Mechanical Properties and Dislocation Boundary Mechanisms during Equal-Channel Angular Pressing (ECAP)
Mechanical Properties of Nanoparticles: Characterization by In situ Nanoindentation Inside a Transmission Electron Microscope
Improved Mechanical Properties by Nanostructuring – Specific Considerations under Dynamic Load Conditions
Mechanical Properties of Bio-Nanostructured Materials
Mechanical Nanostructuring Methods
SPD Processes – Methods for Mechanical Nanostructuring
Mechanical Alloying/Milling
Equal-Channel Angular Pressing (ECAP)
Severe Shot Peening to Obtain Nanostructured Surfaces: Process and Properties of the Treated Surfaces
Nanocrystallization by Surface Mechanical Attrition Treatment
Fabrication of Nanostructured Materials by Mechanical Milling
Contents to Volume 2
Ultrasonic Impact Treatment – An Effective Method for Nanostructuring the Surface Layers in Metallic Materials
Metal Nanostructuring through Cryodeformation under All-Round Compression (Pavel A. Khaimovich)
Application of Milling in Synthesizing Nanostructured Metal Matrix Composite Powder
Synthesis and Properties of Nanostructured Powders by Milling Process
Nanostructures from Reactive High-Energy Ball Milling
Application and Development of Mechanical Nanostructuring
The Mechanochemical Route to Nanoscale
Cavitation Disintegration of Powder Microparticles
Unique Properties of Metal Nanomaterials for Gems and Jewelry Applications
Hybrid Processing of Electroceramic Composites Involving High-Energy Ball Milling
Development and Application of Equal Channel Angular Pressing Technique for Grain Refinement of Nanocrystalline Materials
Polar Oxide Nanopowders Prepared by Mechanical Treatments
High-Energy Ball Milling as a General Tool for Nanomaterials Synthesis and Processing
Consolidation of Mechanically Alloyed Products/Powders
Surface Nanostructuring through a Technique Derived from Shot-Peening: Recent Advances
Mechanochemical Synthesis of Nanostructured Materials for Energy Conversion and Storage Devices

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