Author: Nik Petrinic,Fionn Dunne
Publisher: Oxford University Press; 1 edition (August 18, 2005)
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This book gives an introduction to computational plasticity and includes the kinematics of large deformations, together with relevant continuum mechanics.
This book gives an introduction to computational plasticity and includes the kinematics of large deformations, together with relevant continuum mechanics. Central to the book is its focus on computational plasticity, and we cover an introduction to the finite element method which includes both quasi-static and dynamic problems. We then go on to describe explicit and implicit implementations of plasticity models in to finite element software.
Nik Petrinic is Lecturer in Engineering Science at the University of Oxford. This is a great book for people who want to understand not only how to implement plasticity in a FEA code, but also to understand the theory of plasticity itself. I understood some ideas in 10 minutes that took days earlier for m. .Overall, it is a great book and I was extremely happy that I bought it.
The authors' explanation of the theory of plasticity leaves a bit to be desired. It's all there, but the explanations get muddy sometimes.
Автор: Dunne, Fionn; Petrinic, Nik Название: Introduction to.Описание: This book presents the latest state of simulation techniques to model plasticity and fracture in crystalline materials on the nano- and microscale. It covers discrete dislocation mechanics and the neighboring fields molecular dynamics and crystal plasticity. Автор: Nemat-Nasser Название: Plasticity ISBN: 0521108063 ISBN-13(EAN): 9780521108065 Издательство: Cambridge Academ Рейтинг
This book gives an introduction to computational plasticity and includes the kinematics of large deformations, together . Fionn Dunne and Nik Petrinic. Dr. Fionn Dunne is Reader in Engineering Science at the University of Oxford. Nik Petrinic is Lecturer in Engineering Science at the University of Oxford.
Introduction to computational plasticity. Oxford University Press on Demand, 2005. Prediction of impact damage in composite plates. JP Hou, N Petrinic, C Ruiz, SR Hallett. Composites Science and Technology 60 (2), 273-281, 2000. A delamination criterion for laminated composites under low-velocity impact. JP Hou, N Petrinic, C Ruiz. Composites science and technology 61 (14), 2069-2074, 2001.
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