Diffusion Foundations

ISSN: 2296-3642

主要主题

编辑: Aloke Paul
上线时间: November 2017
描述: Diffusion studies in the Ni- and Fe-aluminium based multicomponent systems are very important for understanding the performance and reliability of products in various sectors such as aviation and power generation industries. This volume deals with different aspects of diffusion-related studies covering thermodynamics, phase stability, fundamental diffusion studies in binary, ternary and multicomponent systems.

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编辑: Prof. Rafal Kozubski
上线时间: September 2017
描述: The general intention of this volume is to give the readers a wide overview of physical problems connected with the processes controlled by atomic migration and of the methods of their modelling. The collection is addressed to researchers and graduate students working in the field of diffusion and diffusion-controlled processes in condensed matter.

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编辑: Oluwole Daniel Makinde
上线时间: August 2017
描述: The special issue on “Advances in Nonlinear Heat Transfer in Fluids and Solids” of the journal “Diffusion Foundations” present a number of novel computational modelling of various nonlinear heat transfer in solids and fluid flow problems. Reported articles in this special issue cover solids thermal stability, reactive fluid flow, nanofluids dynamics, magnetohydrodynamics, Newtonian and non-Newtonian fluid flow, natural convection, forced convection, mixed convection, porous media flow and thermal radiation absorption effects. We hope that this special issue will inspire and benefit eclectic audience of academics, researchers and engineers from numerous fields of human endeavours.

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编辑: J.M.P.Q. Delgado
上线时间: June 2017
描述: In this special issue explore the various applied aspects of heat and mass transfer phenomena in structural materials, different engineering structures and technological processes. We hope that this collection will be useful for wide range of scientists and engineers from many branches of engineering sciences.

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编辑: Graeme E. Murch, Irina V. Belova and Andreas Öchsner
上线时间: October 2016
描述: This special topic volume of Diffusion Foundations is entitled Mass Transport in Advanced Engineering Materials. It captures a very wide cross-section of mass transport phenomena in solids and liquids by covering contemporary experimental work and computer simulations in both fundamental and applied contexts.

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编辑: Helmut Mehrer
上线时间: July 2016
描述: Ion conducting, proton conducting and mixed conductor materials are important components of solid state devices for energy storage and conversion and for energy production. The present volume of "Diffusion Foundations" is the second one of two volumes devoted to recent progress in structure, thermodynamics, ion and proton transport in ionic materials and in this volume ceramic materials and polymer membranes are in focus.

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编辑: J.M.P.Q. Delgado
上线时间: June 2016
描述: This volume include theoretical, numerical and experimental developments, providing a self-contained major reference that is appealing to both the scientists and the engineers from area of Heat and Mass Transfer.

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编辑: Helmut Mehrer
上线时间: February 2016
描述: Solid electrolytes are important components of for all-solid-state devices of energy storage and conversion. A prerequisite for such applications is a knowledge about ion transport in the device materials. The present volume contains a series of five chapters by experienced authors from the field of diffusion and ionic conduction. The chapters are devoted to various aspects of ion transport in. compounds and glasses studied by theoretical and experimental methods.

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编辑: Vladimir V. Popov and Elena N. Popova
上线时间: July 2015
描述: The majority of materials, especially metals, are used in the form of polycrystals. It is well recognized that many properties of polycrystalline materials are determined by grain boundaries (GBs). Grain boundaries appreciably affect many practically important mechanical and physical properties of construction materials. Grain-boundary diffusion plays a key role in such practically important processes as Coble creep, sintering, diffusion induced grain boundary migration (DIGM), various discontinuous reactions, recrystallization and grain growth. The purpose of this Volume is to provide a collection of recent contributions in the field of structure, thermodynamics and diffusion properties of grain boundaries and interfaces. The Volume includes reviews of both experimental and theoretical studies carried out by well-recognized scientists whose publications are well-known and widely cited.

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编辑: Irina Belova, Graeme Murch and Andreas Öchsner
上线时间: July 2015
描述: This volume of Diffusion Foundations entitled Diffusion Phenomena in Engineering Materials captures an important cross section of the contemporary scene of diffusion in solids, ranging from the fundamental science of diffusion through to the application of diffusion concepts in technology. The chapters are written by well-acknowledged experts in their respective areas. In the first chapter, Professor Dayananda provides an in depth overview of some of the important findings from the vast literature on multicomponent diffusion in alloys. In Chapter 2, Professors Belova and Murch and co-workers describe a new solution to the important problem of accurately estimating a tracer diffusivity in a binary alloy, given the other tracer diffusivity, the interdiffusivity and thermodynamic factor. This is followed by Chapter 3 where Professor Lidiard gives a penetrating perspective on the state of knowledge about the Soret effect and thermodiffusion (thermotransport) in solids. In Chapter 4, Professor Kozlowski and colleagues describe important new findings about the critical dimensions of ferromagnetic nanoparticles of iron. This is followed by Chapter 5 where Professor çimenoglu and co-workers present an in depth overview of surface hardening of titanium and its alloys by way of diffusion of the interstitial atoms of oxygen, nitrogen and boron. In Chapter 6 Professor Morton-Blake describes fascinating new molecular dynamics simulations of sodium and chloride ions in a synthetic ion channel in a membrane. Finally, in Chapter 7, Professor Seetharaman and colleagues describe the important role of diffusion phenomena in process metallurgy. We wish to thank the authors for their prompt contributions and the reviewers for their input.

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