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Applied Computational Materials Modeling, Guillermo Bozzolo; Ronald D. Noebe; Phillip B. Abe


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Цена: 27950.00р.
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Автор: Guillermo Bozzolo; Ronald D. Noebe; Phillip B. Abe
Название:  Applied Computational Materials Modeling
ISBN: 9780387231174
Издательство: Springer
Классификация:

ISBN-10: 038723117X
Обложка/Формат: Hardcover
Страницы: 491
Вес: 0.79 кг.
Дата издания: 12.10.2007
Язык: English
Иллюстрации: Xvi, 491 p.
Размер: 236 x 158 x 28
Читательская аудитория: Professional & vocational
Основная тема: Materials Science
Подзаголовок: Theory, Simulation and Experiment
Ссылка на Издательство: Link
Рейтинг:
Поставляется из: Германии
Описание: Identifies and emphasizes the successful link between computational materials modeling as a simulation and design tool and its synergistic application to experimental research and alloy development. This title provides a more balanced perspective of the role that computational modeling can play in every day research and development efforts.


Applied Computational Materials Modeling

Автор: Guillermo Bozzolo; Ronald D. Noebe; Phillip B. Abe
Название: Applied Computational Materials Modeling
ISBN: 1441935754 ISBN-13(EAN): 9781441935755
Издательство: Springer
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Цена: 21661.00 р.
Наличие на складе: Есть у поставщика Поставка под заказ.

Описание: The scope of this book is to identify and emphasize the successful link between computational materials modeling as a simulation and design tool and its synergistic application to experimental research and alloy development.

Computational Modeling, Optimization and Manufacturing Simulation of Advanced Engineering Materials

Автор: Mu?oz-Rojas
Название: Computational Modeling, Optimization and Manufacturing Simulation of Advanced Engineering Materials
ISBN: 3319042645 ISBN-13(EAN): 9783319042640
Издательство: Springer
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Цена: 20896.00 р.
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Описание: This volume presents recent research work focused in the development of adequate theoretical and numerical formulations to describe the behavior of advanced engineering materials. Particular emphasis is devoted to applications in the fields of biological tissues, phase changing and porous materials, polymers and to micro/nano scale modeling. Sensitivity analysis, gradient and non-gradient based optimization procedures are involved in many of the chapters, aiming at the solution of constitutive inverse problems and parameter identification. All these relevant topics are exposed by experienced international and inter institutional research teams resulting in a high level compilation. The book is a valuable research reference for scientists, senior undergraduate and graduate students, as well as for engineers acting in the area of computational material modeling.

Materials Design Using Computational Intelligence Techniques

Автор: Shubhabrata Datta
Название: Materials Design Using Computational Intelligence Techniques
ISBN: 1482238322 ISBN-13(EAN): 9781482238327
Издательство: Taylor&Francis
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Цена: 25265.00 р.
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Описание: This book illustrates the alternative but effective methods of designing materials, where models are developed through capturing the inherent correlations among the variables on the basis of available imprecise knowledge in the form of rules or database.

Computational Materials Engineering

Автор: Maciej Pietrzyk
Название: Computational Materials Engineering
ISBN: 0124167071 ISBN-13(EAN): 9780124167070
Издательство: Elsevier Science
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Цена: 19875.00 р.
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Описание:

Computational Materials Engineering: Achieving High Accuracy and Efficiency in Metals Processing Simulations describes the most common computer modeling and simulation techniques used in metals processing, from so-called "fast" models to more advanced multiscale models, also evaluating possible methods for improving computational accuracy and efficiency.

Beginning with a discussion of conventional fast models like internal variable models for flow stress and microstructure evolution, the book moves on to advanced multiscale models, such as the CAFE method, which give insights into the phenomena occurring in materials in lower dimensional scales.

The book then delves into the various methods that have been developed to deal with problems, including long computing times, lack of proof of the uniqueness of the solution, difficulties with convergence of numerical procedures, local minima in the objective function, and ill-posed problems. It then concludes with suggestions on how to improve accuracy and efficiency in computational materials modeling, and a best practices guide for selecting the best model for a particular application.


  • Presents the numerical approaches for high-accuracy calculations
  • Provides researchers with essential information on the methods capable of exact representation of microstructure morphology
  • Helpful to those working on model classification, computing costs, heterogeneous hardware, modeling efficiency, numerical algorithms, metamodeling, sensitivity analysis, inverse method, clusters, heterogeneous architectures, grid environments, finite element, flow stress, internal variable method, microstructure evolution, and more
  • Discusses several techniques to overcome modeling and simulation limitations, including distributed computing methods, (hyper) reduced-order-modeling techniques, regularization, statistical representation of material microstructure, and the Gaussian process
  • Covers both software and hardware capabilities in the area of improved computer efficiency and reduction of computing time

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