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Severe Plastic Deformation

Editat de Burhanettin S. Altan
en Limba Engleză Hardback – 3 iul 2005
It has been already well established that the nanostructured materials (materials with a grain size of 100mm or less) is the future materials. Nanostructured materials possess properties superior to those of conventional, coarse grained materials. Hence designing potentially cost efficient and environmentally friendly products with better performance is a possibility. Among others, nanostructured materials exhibit increased strength, hardness and ductility and provide an opportunity for superplastic forming. When all the procedures in use for the production of nanostructured materials are examined, only severe plastic deformation (SPD) processes exhibit a potential for producing relatively large samples suitable for industrial applications. In this monograph, the state-of-the-art on severe plastic deformation methods is presented in one volume. The monograph is organised into eight chapters, each of which contains papers on different aspect of severe plastic deformation methods prepared by the experts in this field. The topics covered in the monograph are structure formation, phase transformation, superplasticity, mechanical properties of nanostructured materials, electronic and magnetic properties of nanostructured materials, deformation analysis, novel SPD methods, commercialisation of ECAE method.
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Specificații

ISBN-13: 9781594545085
ISBN-10: 1594545081
Pagini: 612
Ilustrații: tables & charts
Dimensiuni: 182 x 265 x 45 mm
Greutate: 1.47 kg
Editura: Nova Science Publishers Inc

Cuprins

Preface; Processing mechanics and structure formation during SPD; Physical Fundamentals Of Formation And Stabilisation of Nanostructures In Metals And Multiphase Alloys Under Severe Plastic Deformation; The Limit of Grain Refinement during ECAP Deformation; Modelling of Grain Boundary Structure in Nanostructured Materials; Severe Plastic Deformation of Single Crystals; Structure and Properties of Near-nanostructured Iron; Ausforming and Marforming of NiTi Shape Memory Alloys Using Severe Plastic Deformation; Anomalous Phase Transformations During Severe Cold Deformation Leading to Formation of Nanocrystalline Alloys; The structure and properties of iron-based nanocrystalline alloys produced using cyclic martensitic transformations; Phase Transformation in Intermetallics Induced by Shock-wave Loading; Influence of Structure Features on Physical Properties of Nanocrystalline Metals from Severe Plastic Deformation; Structural Sensitivity of Mechanical Properties SPD Materials; Microstucture/Mechanical Properties Relationship in SePD Materials; Room Temperature Mechanical Properties of Submicrocrystalline Commercial Aluminium Alloys Processed by Severe Plastic Deformation; Internal Long-range Stress Fields in Ultrafine Grained Materials; Mechanisms of Creep in Bulk Nanostructured Metallic Materials; Structure and Resistance to Deformation of UFG Metals and Alloys; Improving the Mechanical Properties of Severely Deformed Zinc-based Za Alloys through Equal-channel Angular Extrusion; Enhanced Superplasticity of SPD-produced Nanostructured Metallic Materials; Low-temperature Superplasticity in Commercial Magnesium Alloys Processed by ECAP; Superplasticity and Solid-state Bonding of Materials; Magnetic and Electronic Properties; Characteristics of Electronic Structure for Nanocrystalline Metal; Magnetic Properties and Defects in Palladium, Titanium and Copper after Severe Plastic Deformation; Severe Plastic Deformation of the Hard Magnetic Materials Based on R2fe14b (R-Nd, Pr) Intermetallics; Deformation Analysis in SPD; Finite Element Simulation of Equal Channel Angular Pressing; Thermo-Mechanical Finite Element Analysis of Equal Channel Angular Pressing; State of the Art in SPD methods; A novel method for the production of bulk nanostructured materials: Equal-channel angular extrusion (ECAE); Nanograined Structure In Steels Prepared by Severe Plastic Deformation; Microstructure of Bimetallic Joint Of Titanium and Orthorhombic Titanium Aluminide (Explosion Welding); Production of Bulk Nanostructured Metals by Accumulative Roll Bonding (ARB) Process; Scale Up and Commercialisation of ECAE Sputtering Products with Submicrocrystalline Structures.