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Books by Keyword: Austenitic Stainless Steel
Books
Edited by:
Ladislav Pešek and Pavol Zubko
Online since: September 2013
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
The special collection discusses recent results of research and development in the field of materials engineering, experimental methods, modeling, etc., with the aim to characterize mechanical properties of materials from nano to micro/meso-scale. Contributions on indentation and other methods for hardness and other mechanical properties assessment, measurement of deformations and stresses, time-dependent mechanical properties with related microstructure analyses (TEM/SEM, AFM, TERS, etc.) regardless of material type (metals, ceramics, plastics, biomaterials, concrete, etc.) are included.
The special collection discusses recent results of research and development in the field of materials engineering, experimental methods, modeling, etc., with the aim to characterize mechanical properties of materials from nano to micro/meso-scale. Contributions on indentation and other methods for hardness and other mechanical properties assessment, measurement of deformations and stresses, time-dependent mechanical properties with related microstructure analyses (TEM/SEM, AFM, TERS, etc.) regardless of material type (metals, ceramics, plastics, biomaterials, concrete, etc.) are included.
Edited by:
Vivekanand Kain, L.K. Singhal, K.P. Dwivedi, R. Easwaran, G.K. Dey, V.S. Raja and M. Kiran Kumar
Online since: September 2013
Description: At the completion of one century of discovery of stainless steels, it is appropriate to take stock of the latest trends in wide ranging fields that relate to stainless steels. The book covers advances in all the major aspects related to stainless steels namely melting & refining, fabrication & forming, welding & joining, physical metallurgy, corrosion and its control and experience from use of stainless steels in various industries including newer varieties of stainless steels. The book will be a good source of information regarding various aspects of stainless steels.
Volume is indexed by Thomson Reuters CPCI-S (WoS).
Volume is indexed by Thomson Reuters CPCI-S (WoS).
Edited by:
Yingtao Jiang and Fang He
Online since: August 2013
Description: Collection of selected, peer reviewed papers from the 2013 International Conference on Materials Engineering (ICMEN2013), May 17-19, 2013, Nanjing, China.
Volume is indexed by Thomson Reuters CPCI-S (WoS).
The 46 papers are grouped as follows:
Chapter 1: Reinforced Materials, Structural Materials and Engineering;
Chapter 2: Concrete and Cement, Mortars;
Chapter 3: Materials Processing Technology;
Chapter 4: Energy, Electric and Optics Materials;
Chapter 5: Nanomaterials and Nanotechnologies;
Chapter 6: Bio- and Environment Materials;
Chapter 7: Thin Films;
Chapter 8: Polymers, Alloys and Other Materials Technologies.
Volume is indexed by Thomson Reuters CPCI-S (WoS).
The 46 papers are grouped as follows:
Chapter 1: Reinforced Materials, Structural Materials and Engineering;
Chapter 2: Concrete and Cement, Mortars;
Chapter 3: Materials Processing Technology;
Chapter 4: Energy, Electric and Optics Materials;
Chapter 5: Nanomaterials and Nanotechnologies;
Chapter 6: Bio- and Environment Materials;
Chapter 7: Thin Films;
Chapter 8: Polymers, Alloys and Other Materials Technologies.
Edited by:
R.B. Clarke, Alan G. Leacock, Prof. Joost R. Duflou, Prof. Marion Merklein and Prof. Fabrizio Micari
Online since: April 2013
Description: The collection provides an outlet for both industry and academia alike to present their latest findings in the area of sheet metal forming.
Volume is indexed by Thomson Reuters CPCI-S (WoS).
There are 69 peer reviewed contributions from Industry and academia representing 23 Countries. The research presented covers a diverse field from the fundamental testing and characterisation of sheet metals to the development of new and innovative forming processes.
Volume is indexed by Thomson Reuters CPCI-S (WoS).
There are 69 peer reviewed contributions from Industry and academia representing 23 Countries. The research presented covers a diverse field from the fundamental testing and characterisation of sheet metals to the development of new and innovative forming processes.
Edited by:
Matthew Barnett
Online since: March 2013
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
Recrystallization and grain growth are mechanisms that alter the microstructure without necessarily altering the phase. They are typically driven by high internal elastic and surface energies though sometimes other volumetric energy terms appear. The topic is important to materials engineers and scientists and geologists alike. The former typically aim to exert control over the phenomena for technological and economic benefit while the latter often seek in these mechanisms the answers to questions regarding events long gone. This collection of peer-reviewed papers brings together the most up-to-date knowledge in this field.
Recrystallization and grain growth are mechanisms that alter the microstructure without necessarily altering the phase. They are typically driven by high internal elastic and surface energies though sometimes other volumetric energy terms appear. The topic is important to materials engineers and scientists and geologists alike. The former typically aim to exert control over the phenomena for technological and economic benefit while the latter often seek in these mechanisms the answers to questions regarding events long gone. This collection of peer-reviewed papers brings together the most up-to-date knowledge in this field.
Edited by:
E.J. Palmiere and B.P. Wynne
Online since: April 2012
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
Recrystallization and grain growth are fundamental aspects of microstructure evolution during the annealing and thermomechanical processing of engineering materials. These static and dynamic phenomena are of major scientific interest and of great importance in a wide range of industrial processes and applications. This collection of peer-reviewed papers brings together the most up-to-date knowledge in this field.
Recrystallization and grain growth are fundamental aspects of microstructure evolution during the annealing and thermomechanical processing of engineering materials. These static and dynamic phenomena are of major scientific interest and of great importance in a wide range of industrial processes and applications. This collection of peer-reviewed papers brings together the most up-to-date knowledge in this field.
Edited by:
Ma Jan and Santhiagu Ezhilvalavan
Online since: February 2012
Description: This collection of 37 papers describes materials for protecting civilians and soldiers against vehicle collision, blast-damage, fragmentation and unconventional attack. They also treat multi-functional materials for enhancing civilian and soldier performance under extreme conditions. The detailed topics include the atomic-layer deposition of thin inorganic coatings into renewable packaging materials, the development of woven enhanced silk fabric for ballistic protection, novel piezo-electric tactile sensor materials having improved properties, enhancement of the char resistance of expandable graphite-based intrumescent fire-retardant coatings by using multi-wall carbon nano tubes for structural steel, the development of new sol-gel surface-treatment formulations for the bonded repair of aircraft and the laminated microstructure and toughening mechanism of abalone shell.
Edited by:
Z. Tonkovic and Prof. Ferri M.H.Aliabadi
Online since: September 2011
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
This collection of peer-reviewed papers covers a wide range of topics: Fracture Mechanics, Failure analysis, corrosion, Creep, Non-linear problems, Dynamic Fracture, Residual Stress, Environmental effects, Crack Propagation, Repair Techniques, Composites, Ceramics, Polymers, Metallic and concrete materials, Probabilistic Aspects, Risk Analysis, Damage Tolerance, Fracture Control, Computer Modelling Methods (Finite Elements, Boundary Elements and Meshless), Microstructural and Multiscale Aspects. The work thus offers a timely survey of these subjects.
This collection of peer-reviewed papers covers a wide range of topics: Fracture Mechanics, Failure analysis, corrosion, Creep, Non-linear problems, Dynamic Fracture, Residual Stress, Environmental effects, Crack Propagation, Repair Techniques, Composites, Ceramics, Polymers, Metallic and concrete materials, Probabilistic Aspects, Risk Analysis, Damage Tolerance, Fracture Control, Computer Modelling Methods (Finite Elements, Boundary Elements and Meshless), Microstructural and Multiscale Aspects. The work thus offers a timely survey of these subjects.
Edited by:
Y. Akiniwa, K. Akita and H. Suzuki
Online since: May 2010
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
Neutron and synchrotron radiation are novel and powerful tools for stress evaluation, and are widely applied to fundamental studies in materials science and engineering, and in various industrial fields. This volume brings together the up-to-date knowledge of scientists from the academic world and industry in order to address specific topics concerning the evaluation of stresses and related phenomena using neutrons, synchrotron radiation and X-rays. Many of the presentations on stress-testing deal with samples of up to 0.5m line-pipe. Many applications of micro-beam X-ray methods are described, ranging from intragranular stress fluctuations within a grain (attributed to dislocations) to stresses in interconnects on chips. Simultaneous evaluation of tomographic and stress measurements of the same sample was shown to provide extremely clear insights into the nature and cause of damage. A major advance in the simulation of stress and strain at the mesoscopic scale has been achieved using the extended elasto-plastic self-consistent model. Such discoveries, and many others, will make this an important reference work for anyone who uses these techniques.
Neutron and synchrotron radiation are novel and powerful tools for stress evaluation, and are widely applied to fundamental studies in materials science and engineering, and in various industrial fields. This volume brings together the up-to-date knowledge of scientists from the academic world and industry in order to address specific topics concerning the evaluation of stresses and related phenomena using neutrons, synchrotron radiation and X-rays. Many of the presentations on stress-testing deal with samples of up to 0.5m line-pipe. Many applications of micro-beam X-ray methods are described, ranging from intragranular stress fluctuations within a grain (attributed to dislocations) to stresses in interconnects on chips. Simultaneous evaluation of tomographic and stress measurements of the same sample was shown to provide extremely clear insights into the nature and cause of damage. A major advance in the simulation of stress and strain at the mesoscopic scale has been achieved using the extended elasto-plastic self-consistent model. Such discoveries, and many others, will make this an important reference work for anyone who uses these techniques.
Edited by:
Pavel Šandera
Online since: December 2007
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
The main goal of these proceedings was to demonstrate the use of a variety of multi-scale approaches, ranging from the atomistic to the macroscopic level, and in this it succeeds admirably.
The main goal of these proceedings was to demonstrate the use of a variety of multi-scale approaches, ranging from the atomistic to the macroscopic level, and in this it succeeds admirably.