Finite Element Method for Solids and Structures: A Concise Approach

Author:   Sung W. Lee (University of Maryland, College Park) ,  Peter W. Chung (University of Maryland, College Park)
Publisher:   Cambridge University Press
ISBN:  

9781108497091


Pages:   366
Publication Date:   17 June 2021
Format:   Hardback
Availability:   Available To Order   Availability explained
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Finite Element Method for Solids and Structures: A Concise Approach


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Author:   Sung W. Lee (University of Maryland, College Park) ,  Peter W. Chung (University of Maryland, College Park)
Publisher:   Cambridge University Press
Imprint:   Cambridge University Press
Dimensions:   Width: 19.30cm , Height: 2.20cm , Length: 25.20cm
Weight:   0.910kg
ISBN:  

9781108497091


ISBN 10:   1108497098
Pages:   366
Publication Date:   17 June 2021
Audience:   College/higher education ,  Professional and scholarly ,  Tertiary & Higher Education ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   Available To Order   Availability explained
We have confirmation that this item is in stock with the supplier. It will be ordered in for you and dispatched immediately.

Table of Contents

Preface; 1. Introduction to the finite element method; 2. Truss, temperature effect and torsion; 3. Beams and frames; 4. Structural dynamics; 5. Bending under axial force; 6. Virtual displacement and virtual work; 7. Mapping, shape functions and numerical integration; 8. Two and three dimensional deformable solid bodies; 9. Plates and shells; 10. Element locking; 11. Heat transfer; Appendix 1. Fundamentals of solid and structural mechanics; Appendix 2. Solution methods; Bibliography; Index.

Reviews

'This book provides an excellent balance between the theoretical side, which is critical for students to understand essentials in the implementation procedure of the finite element method, and the application side in using commonly available finite element packages such as ANSYS. The examples illustrated in this book are particularly interesting, thorough, and easy to follow.' Qin Ma, Walla Walla University 'The perfect material for people who want to learn about or teach the theoretical background of the FEM. It explains key concepts with plenty of examples, MATLAB (R) codes and practice problems. The book also provides theories of element locking and mixed formulation, and detailed formulations for structural dynamics and heat transfer, showing how the FEM can be applied to various engineering problems.' Hoon Cheol Park, Konkuk University 'I strongly recommend this book to students who want to learn about the fundamentals of the finite element method. Professors Lee and Chung are well known for their contribution to the FEM field. The book focuses on the FEM using linear structural analysis, and Chapter 11 applies FEM to heat transfer problems, an excellent addition which opens the concept of FEM to solve partial differential equations.' Sameer Mulani, University of Alabama


'This book provides an excellent balance between the theoretical side, which is critical for students to understand essentials in the implementation procedure of the finite element method, and the application side in using commonly available finite element packages such as ANSYS. The examples illustrated in this book are particularly interesting, thorough, and easy to follow.' Qin Ma, Walla Walla University 'The perfect material for people who want to learn about or teach the theoretical background of the FEM. It explains key concepts with plenty of examples, MATLAB® codes and practice problems. The book also provides theories of element locking and mixed formulation, and detailed formulations for structural dynamics and heat transfer, showing how the FEM can be applied to various engineering problems.' Hoon Cheol Park, Konkuk University 'I strongly recommend this book to students who want to learn about the fundamentals of the finite element method. Professors Lee and Chung are well known for their contribution to the FEM field. The book focuses on the FEM using linear structural analysis, and Chapter 11 applies FEM to heat transfer problems, an excellent addition which opens the concept of FEM to solve partial differential equations.' Sameer Mulani, University of Alabama


Author Information

Prof. Sung W. Lee received his Ph.D. degree from the Massachusetts Institute of Technology. He is currently Professor of Aerospace Engineering at the University of Maryland where he taught courses on the finite element methods and carried out numerous sponsored researches on the finite element modeling of solids and structures. He had served on the editorial advisory boards of such international journals as Computational Mechanics, International Journal for Numerical Methods in Engineering, and Computer Modeling in Engineering and Sciences. He received a lifetime achievement award for his work on computational analysis of shell structures at the 2015 International Conference on Computational and Experimental Engineering and Sciences. Peter W. Chung's research has been concerned mainly with the computability of interdisciplinary and multiscale problems with applications motivated primarily by his early career experiences in the US Army Research Laboratory. He is currently Professor of Mechanical Engineering at the University of Maryland. Through his time in both government and academic sectors, Professor Chung has had the privilege of conducting research as well as participating in significant policy-shaping activities including service to the Materials Genome Initiative (MGI) and the Army Materiel Command Logistics Transformation Task Force. He is recipient of the Superior Civilian Service Award, the second highest civilian award in the Department of the Army.

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