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Micromechanics Modelling of Ductile Fracture

Autor: Zengtao Chen; Cliff Butcher
Editorial: Dordrecht : Springer, 2013.
Serie: Solid mechanics and its applications.
Edición/Formato:   Libro-e : Documento : Inglés (eng)Ver todas las ediciones y todos los formatos
Base de datos:WorldCat
Resumen:
This book summarizes research advances in micromechanics modeling of ductile fractures made in the past two decades. The ultimate goal of this book is to reach manufacturing frontline designers and materials engineers by providing a user-oriented, theoretical background of micromechanics modeling. Accordingly, the book is organized in a unique way, first presenting a vigorous damage percolation model developed by  Leer más
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Detalles

Género/Forma: Electronic books
Formato físico adicional: Print version:
Chen, Zengtao
Micromechanics Modelling of Ductile Fracture
Dordrecht : Springer, c2013
Tipo de material: Documento, Recurso en Internet
Tipo de documento: Recurso en Internet, Archivo de computadora
Todos autores / colaboradores: Zengtao Chen; Cliff Butcher
ISBN: 9789400760981 9400760981
Número OCLC: 836406600
Descripción: 1 online resource (334 p.)
Contenido: Introduction to Ductile Fracture Modelling --
Averaging Methods for Computational Micromechanics --
Anisotropy --
Void Growth to Coalescence: Unit Cell and Analytical Modelling --
Two-Dimensional (2D) Damage Percolation Modeling --
Two-Dimensional (2D) Damage Percolation/Finite Element Modeling of Sheet Metal Forming --
Two Dimensional (2D) Damage Percolation with Stress State --
Three-Dimensional Particle Fields --
Estimation of the Stress State Within Particles and Inclusions and a Nucleation Model for Particle Cracking --
Modelling Void Growth to Coalescence in a 3-D Particle Field --
Application of the Complete Percolation Model.
Título de la serie: Solid mechanics and its applications.

Resumen:

This book summarizes research advances in micromechanics modeling of ductile fractures made in the past two decades. The ultimate goal of this book is to reach manufacturing frontline designers and materials engineers by providing a user-oriented, theoretical background of micromechanics modeling. Accordingly, the book is organized in a unique way, first presenting a vigorous damage percolation model developed by the authors over the last ten years. This model overcomes almost all difficulties of the existing models and can be used to completely accommodate ductile damage developments within a single-measure microstructure frame. Related void damage criteria including nucleation, growth and coalescence are then discussed in detail: how they are improved, when and where they are used in the model, and how the model performs in comparison with the existing models.

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