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Proceedings of the 3rd World Congress on Integrated Computational Materials Engineering (ICME) (Hardcover, 1st ed. 2016):... Proceedings of the 3rd World Congress on Integrated Computational Materials Engineering (ICME) (Hardcover, 1st ed. 2016)
Warren Poole, Steve Christensen, Surya Kalidindi, Alan Luo, Jonathan Madison, …
R5,048 R4,762 Discovery Miles 47 620 Save R286 (6%) Ships in 12 - 17 working days

This book presents a collection of papers presented at the 3rd World Congress on Integrated Computational Materials Engineering (ICME), a specialty conference organized by The Minerals, Metals & Materials Society (TMS). This meeting convened ICME stakeholders to examine topics relevant to the global advancement of ICME as an engineering discipline. The papers presented in these proceedings are divided into six sections: (1) ICME Applications; (2) ICME Building Blocks; (3) ICME Success Stories and Applications (4) Integration of ICME Building Blocks: Multi-scale Modeling; (5) Modeling, Data and Infrastructure Tools, and (6) Process Optimization. . These papers are intended to further the global implementation of ICME, broaden the variety of applications to which ICME is applied, and ultimately help industry design and produce new materials more efficiently and effectively.

Computational Materials Engineering - An Introduction to Microstructure Evolution (Hardcover): Koenraad George Frans Janssens,... Computational Materials Engineering - An Introduction to Microstructure Evolution (Hardcover)
Koenraad George Frans Janssens, Dierk Raabe, Ernest Kozeschnik, Mark A Miodownik, Britta Nestler
R2,870 Discovery Miles 28 700 Ships in 12 - 17 working days

Computational Materials Engineering is an advanced introduction to the computer-aided modeling of essential material properties and behavior, including the physical, thermal and chemical parameters, as well as the mathematical tools used to perform simulations. Its emphasis will be on crystalline materials, which includes all metals. The basis of Computational Materials Engineering allows scientists and engineers to create virtual simulations of material behavior and properties, to better understand how a particular material works and performs and then use that knowledge to design improvements for particular material applications. The text displays knowledge of software designers, materials scientists and engineers, and those involved in materials applications like mechanical engineers, civil engineers, electrical engineers, and chemical engineers.
Readers from students to practicing engineers to materials research scientists will find in this book a single source of the major elements that make up contemporary computer modeling of materials characteristics and behavior. The reader will gain an understanding of the underlying statistical and analytical tools that are the basis for modeling complex material interactions, including an understanding of computational thermodynamics and molecular kinetics; as well as various modeling systems. Finally, the book will offer the reader a variety of algorithms to use in solving typical modeling problems so that the theory presented herein can be put to real-world use.
Balanced coverage of fundamentals of materials modeling, as well as more advanced aspects of modeling, such as modeling at all scales from the atomic to the molecular to the macro-material
Concise, yet rigorous mathematical coverage of such analytical tools as the Potts type Monte Carlo method, cellular automata, phase field, dislocation dynamics and Finite Element Analysis in statistical and analytical modeling
Companion web site will offer ample workable programs, along with suggested projects, resources for further reading, and useful classroom exercises"

Crystal Plasticity Finite Element Methods - in Materials Science and Engineering (Hardcover): Franz Roters, Philip Eisenlohr,... Crystal Plasticity Finite Element Methods - in Materials Science and Engineering (Hardcover)
Franz Roters, Philip Eisenlohr, Thomas R. Bieler, Dierk Raabe
R3,444 R3,009 Discovery Miles 30 090 Save R435 (13%) Out of stock

Written by the leading experts in computational materials science, this handy reference concisely reviews the most important aspects of plasticity modeling: constitutive laws, phase transformations, texture methods, continuum approaches and damage mechanisms. As a result, it provides the knowledge needed to avoid failures in critical systems udner mechanical load.
With its various application examples to micro- and macrostructure mechanics, this is an invaluable resource for mechanical engineers as well as for researchers wanting to improve on this method and extend its outreach.

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