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Introduction to nonlinear finite element analysis

By: Kim, Nam-Ho
Language: English Publisher: New York Springer c2015Description: xiv, 430p.; 23cmISBN: 9781489978004Subject(s): Mathematics | Numerical analysis | Finite element analysis | Nonlinear mechanicsDDC classification: 518.25 KIM/I Online resources: Publisher's URL Summary: This book introduces the key concepts of nonlinear finite element analysis procedures. The book explains the fundamental theories of the field and provides instructions on how to apply the concepts to solving practical engineering problems. Instead of covering many nonlinear problems, the book focuses on three representative problems: nonlinear elasticity, elastoplasticity, and contact problems. The book is written independent of any particular software, but tutorials and examples using four commercial programs are included as appendices: ANSYS, NASTRAN, ABAQUS, and MATLAB. In particular, the MATLAB program includes all source codes so that students can develop their own material models, or different algorithms. Please visit the author's website for supplemental material, including PowerPoint presentations and MATLAB codes, at http://www2.mae.ufl.edu/nkim/INFEM/
Item type Current location Collection Call number Status Date due Barcode
Book Book CENTRAL LIBRARY
General Stack (Sahyadri Campus)
518.25 KIM/I Available 09617
Reference Reference CENTRAL LIBRARY
Reference (Sahyadri Campus)
Reference 518.25 KIM/I Not for loan 09615
Book Book CENTRAL LIBRARY
General Stack (Sahyadri Campus)
518.25 KIM/I Available 09616

This book introduces the key concepts of nonlinear finite element analysis procedures. The book explains the fundamental theories of the field and provides instructions on how to apply the concepts to solving practical engineering problems. Instead of covering many nonlinear problems, the book focuses on three representative problems: nonlinear elasticity, elastoplasticity, and contact problems. The book is written independent of any particular software, but tutorials and examples using four commercial programs are included as appendices: ANSYS, NASTRAN, ABAQUS, and MATLAB. In particular, the MATLAB program includes all source codes so that students can develop their own material models, or different algorithms. Please visit the author's website for supplemental material, including PowerPoint presentations and MATLAB codes, at http://www2.mae.ufl.edu/nkim/INFEM/

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