Description

Book Synopsis
This innovative approach to teaching the finite element method blends theoretical, textbook-based learning with practical application using online and video resources. This hybrid teaching package features computational software such as MATLAB, and tutorials presenting software applications such as PTC Creo Parametric, ANSYS APDL, ANSYS Workbench and SolidWorks, complete with detailed annotations and instructions so students can confidently develop hands-on experience. Suitable for senior undergraduate and graduate level classes, students will transition seamlessly between mathematical models and practical commercial software problems, empowering them to advance from basic differential equations to industry-standard modelling and analysis. Complete with over 120 end-of chapter problems and over 200 illustrations, this accessible reference will equip students with the tools they need to succeed in the workplace.

Trade Review
'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

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.

Finite Element Method for Solids and Structures

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    £69.34

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    RRP £72.99 – you save £3.65 (5%)

    Order before 4pm today for delivery by Sat 13 Jun 2026.

    A Hardback by Sung W. Lee, Peter W. Chung

    7 in stock


      View other formats and editions of Finite Element Method for Solids and Structures by Sung W. Lee

      Publisher: Cambridge University Press
      Publication Date: 17/06/2021
      ISBN13: 9781108497091, 978-1108497091
      ISBN10:

      Description

      Book Synopsis
      This innovative approach to teaching the finite element method blends theoretical, textbook-based learning with practical application using online and video resources. This hybrid teaching package features computational software such as MATLAB, and tutorials presenting software applications such as PTC Creo Parametric, ANSYS APDL, ANSYS Workbench and SolidWorks, complete with detailed annotations and instructions so students can confidently develop hands-on experience. Suitable for senior undergraduate and graduate level classes, students will transition seamlessly between mathematical models and practical commercial software problems, empowering them to advance from basic differential equations to industry-standard modelling and analysis. Complete with over 120 end-of chapter problems and over 200 illustrations, this accessible reference will equip students with the tools they need to succeed in the workplace.

      Trade Review
      '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

      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.

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