Mass Transport Phenomena in Ceramics

Mass Transport Phenomena in Ceramics
Author: A. Cooper
Publisher: Springer
Total Pages: 506
Release: 2013-06-02
Genre: Technology & Engineering
ISBN: 9781468431513


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Mass Transport Phenomena in Ceramics

Mass Transport Phenomena in Ceramics
Author: A. Cooper
Publisher: Springer Science & Business Media
Total Pages: 496
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 1468431501


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Mass Transport Phenomena in Ceramics

Mass Transport Phenomena in Ceramics
Author: A. Cooper
Publisher: Springer
Total Pages: 506
Release: 1975-09-01
Genre: Technology & Engineering
ISBN: 9780306385094


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Mass Transport Phenomena in

Mass Transport Phenomena in
Author: University Conference on Ceramic Science (11th : 1974 : Case Western Reserve University)
Publisher:
Total Pages:
Release: 1975
Genre:
ISBN:


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Transport Phenomena in Materials Processing

Transport Phenomena in Materials Processing
Author: David R. Poirier
Publisher: Springer
Total Pages: 652
Release: 2016-12-06
Genre: Technology & Engineering
ISBN: 3319480901


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This text provides a teachable and readable approach to transport phenomena (momentum, heat, and mass transport) by providing numerous examples and applications, which are particularly important to metallurgical, ceramic, and materials engineers. Because the authors feel that it is important for students and practicing engineers to visualize the physical situations, they have attempted to lead the reader through the development and solution of the relevant differential equations by applying the familiar principles of conservation to numerous situations and by including many worked examples in each chapter. The book is organized in a manner characteristic of other texts in transport phenomena. Section I deals with the properties and mechanics of fluid motion; Section II with thermal properties and heat transfer; and Section III with diffusion and mass transfer. The authors depart from tradition by building on a presumed understanding of the relationships between the structure and properties of matter, particularly in the chapters devoted to the transport properties (viscosity, thermal conductivity, and the diffusion coefficients). In addition, generous portions of the text, numerous examples, and many problems at the ends of the chapters apply transport phenomena to materials processing.

Mass and Charge Transport in Ceramics

Mass and Charge Transport in Ceramics
Author: Kunihito Kōmoto
Publisher:
Total Pages: 656
Release: 1996
Genre: Technology & Engineering
ISBN:


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Contains 46 selected papers presented at a workshop held in March 1996. The papers discuss mass and charge phenomena, such as grain growth, grain-boundary movement, segregation, phase transition, liquid-phase formation, and high-temperature corrosion. These phenomena must be understood in order to m

An Introduction to Transport Phenomena in Materials Engineering

An Introduction to Transport Phenomena in Materials Engineering
Author: David R. Gaskell
Publisher: CRC Press
Total Pages: 614
Release: 2024-01-24
Genre: Science
ISBN: 1000996301


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This book elucidates the important role of conduction, convection, and radiation heat transfer, mass transport in solids and fluids, and internal and external fluid flow in the behavior of materials processes. These phenomena are critical in materials engineering because of the connection of transport to the evolution and distribution of microstructural properties during processing. From making choices in the derivation of fundamental conservation equations, to using scaling (order-of-magnitude) analysis showing relationships among different phenomena, to giving examples of how to represent real systems by simple models, the book takes the reader through the fundamentals of transport phenomena applied to materials processing. Fully updated, this third edition of a classic textbook offers a significant shift from the previous editions in the approach to this subject, representing an evolution incorporating the original ideas and extending them to a more comprehensive approach to the topic. FEATURES Introduces order-of-magnitude (scaling) analysis and uses it to quickly obtain approximate solutions for complicated problems throughout the book Focuses on building models to solve practical problems Adds new sections on non-Newtonian flows, turbulence, and measurement of heat transfer coefficients Offers expanded sections on thermal resistance networks, transient heat transfer, two-phase diffusion mass transfer, and flow in porous media Features more homework problems, mostly on the analysis of practical problems, and new examples from a much broader range of materials classes and processes, including metals, ceramics, polymers, and electronic materials Includes homework problems for the review of the mathematics required for a course based on this book and connects the theory represented by mathematics with real-world problems This book is aimed at advanced engineering undergraduates and students early in their graduate studies, as well as practicing engineers interested in understanding the behavior of heat and mass transfer and fluid flow during materials processing. While it is designed primarily for materials engineering education, it is a good reference for practicing materials engineers looking for insight into phenomena controlling their processes. A solutions manual, lecture slides, and figure slides are available for qualifying adopting professors.

Transport Phenomena in Multiphase Systems

Transport Phenomena in Multiphase Systems
Author: João M.P.Q. Delgado
Publisher: Springer
Total Pages: 305
Release: 2018-05-09
Genre: Science
ISBN: 3319910620


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This book presents a collection of recent contributions in the field of transport phenomena in multiphase systems, namely, heat and mass transfer. It discusses various topics related to the transport phenomenon in engineering (including state-of-the-art, theory and applications) and introduces some of the most important theoretical advances, computational developments and technological applications in multiphase systems domain, providing a self-contained key reference that is appealing to scientists, researchers and engineers alike. At the same time, these topics are relevant to a variety of scientific and engineering disciplines, such as chemical, civil, agricultural, and mechanical engineering.