Multiscale Materials Modeling for Nanomechanics

Multiscale Materials Modeling for Nanomechanics
Author :
Publisher : Springer
Total Pages : 547
Release :
ISBN-10 : 9783319334806
ISBN-13 : 3319334808
Rating : 4/5 (808 Downloads)

Book Synopsis Multiscale Materials Modeling for Nanomechanics by : Christopher R. Weinberger

Download or read book Multiscale Materials Modeling for Nanomechanics written by Christopher R. Weinberger and published by Springer. This book was released on 2016-08-30 with total page 547 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book presents a unique combination of chapters that together provide a practical introduction to multiscale modeling applied to nanoscale materials mechanics. The goal of this book is to present a balanced treatment of both the theory of the methodology, as well as some practical aspects of conducting the simulations and models. The first half of the book covers some fundamental modeling and simulation techniques ranging from ab-inito methods to the continuum scale. Included in this set of methods are several different concurrent multiscale methods for bridging time and length scales applicable to mechanics at the nanoscale regime. The second half of the book presents a range of case studies from a varied selection of research groups focusing either on a the application of multiscale modeling to a specific nanomaterial, or novel analysis techniques aimed at exploring nanomechanics. Readers are also directed to helpful sites and other resources throughout the book where the simulation codes and methodologies discussed herein can be accessed. Emphasis on the practicality of the detailed techniques is especially felt in the latter half of the book, which is dedicated to specific examples to study nanomechanics and multiscale materials behavior. An instructive avenue for learning how to effectively apply these simulation tools to solve nanomechanics problems is to study previous endeavors. Therefore, each chapter is written by a unique team of experts who have used multiscale materials modeling to solve a practical nanomechanics problem. These chapters provide an extensive picture of the multiscale materials landscape from problem statement through the final results and outlook, providing readers with a roadmap for incorporating these techniques into their own research.


Multiscale Materials Modeling for Nanomechanics Related Books

Multiscale Materials Modeling for Nanomechanics
Language: en
Pages: 547
Authors: Christopher R. Weinberger
Categories: Technology & Engineering
Type: BOOK - Published: 2016-08-30 - Publisher: Springer

DOWNLOAD EBOOK

This book presents a unique combination of chapters that together provide a practical introduction to multiscale modeling applied to nanoscale materials mechani
Multiscale Materials Modeling
Language: en
Pages: 346
Authors: Siegfried Schmauder
Categories: Science
Type: BOOK - Published: 2016-08-22 - Publisher: Walter de Gruyter GmbH & Co KG

DOWNLOAD EBOOK

This book presents current spatial and temporal multiscaling approaches of materials modeling. Recent results demonstrate the deduction of macroscopic propertie
Uncertainty Quantification in Multiscale Materials Modeling
Language: en
Pages: 606
Authors: Yan Wang
Categories: Technology & Engineering
Type: BOOK - Published: 2020-03-10 - Publisher: Woodhead Publishing

DOWNLOAD EBOOK

Uncertainty Quantification in Multiscale Materials Modeling provides a complete overview of uncertainty quantification (UQ) in computational materials science.
Modeling Materials
Language: en
Pages: 786
Authors: Ellad B. Tadmor
Categories: Science
Type: BOOK - Published: 2011-11-24 - Publisher: Cambridge University Press

DOWNLOAD EBOOK

Material properties emerge from phenomena on scales ranging from Angstroms to millimeters, and only a multiscale treatment can provide a complete understanding.
Multiscale Materials Modelling
Language: en
Pages: 307
Authors: Z. X. Guo
Categories: Technology & Engineering
Type: BOOK - Published: 2007-05-31 - Publisher: Elsevier

DOWNLOAD EBOOK

Multiscale materials modelling offers an integrated approach to modelling material behaviour across a range of scales from the electronic, atomic and microstruc