Stress Analysis of Deformable Solids
Seiten
2026
CRC Press (Verlag)
978-1-041-13196-0 (ISBN)
CRC Press (Verlag)
978-1-041-13196-0 (ISBN)
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This comprehensive textbook presents fundamental concepts and detailed analysis of stress analysis in homogeneous and isotropic solids using a tensor approach. All expressions are derived in the form of Cartesian tensors, with detailed step-by-step deductions and complete demonstrations, ensuring no steps are omitted in obtaining results.
This comprehensive textbook presents fundamental concepts and detailed analysis of stress in homogeneous and isotropic solids using a tensor approach. This book uniquely formulates mathematical approaches in terms of stress tensor invariants and its component tensors: hydrostatic tensor and deviator tensor. All expressions are derived in the form of Cartesian tensors, with detailed step-by-step deductions and complete demonstrations, ensuring that no steps are omitted in obtaining or proving results.
Key features:
• Demonstrates equations through didactic step-by-step deductions.
• Features worked examples and end-of-chapter exercises.
• Formulates innovative approaches using stress tensor invariants.
• Develops expressions and demonstrations in detail without omitting steps.
• Supports readers with essential tensor algebra explanations.
This book targets postgraduate as well as advanced undergraduate students in civil, mechanical, and materials engineering programs. The detailed approach and comprehensive coverage equip readers with the knowledge necessary for applications across various fields, making this book an invaluable resource for their academic and professional development.
This comprehensive textbook presents fundamental concepts and detailed analysis of stress in homogeneous and isotropic solids using a tensor approach. This book uniquely formulates mathematical approaches in terms of stress tensor invariants and its component tensors: hydrostatic tensor and deviator tensor. All expressions are derived in the form of Cartesian tensors, with detailed step-by-step deductions and complete demonstrations, ensuring that no steps are omitted in obtaining or proving results.
Key features:
• Demonstrates equations through didactic step-by-step deductions.
• Features worked examples and end-of-chapter exercises.
• Formulates innovative approaches using stress tensor invariants.
• Develops expressions and demonstrations in detail without omitting steps.
• Supports readers with essential tensor algebra explanations.
This book targets postgraduate as well as advanced undergraduate students in civil, mechanical, and materials engineering programs. The detailed approach and comprehensive coverage equip readers with the knowledge necessary for applications across various fields, making this book an invaluable resource for their academic and professional development.
Prof. Dr. Emil de Souza Sánchez Filho received his D.Sc. degree in civil engineering from COPPE‑Federal University of Rio de Janeiro. He has served as a Guest Researcher at Technische Universitat Braunschweig, Germany and an Adjunct Professor at the Federal University of Juiz de Fora, Brazil. He is a Full Professor at Fluminense Federal University, Brazil. Prof. Sanchez Filho also works as a consultant and designer for civil and structural engineering projects.
1. Stress Tensor
2. Stress Hexacosahedron
3. Stress Quadrics
4. Plane Stress
5. Mohr Circle
6. Geometric Representation of Stress
7. Piola–Kirchhoff Stress Tensors
8. Differentiation of Tensors and Objectivity Principle
| Erscheint lt. Verlag | 5.3.2026 |
|---|---|
| Zusatzinfo | 10 Tables, black and white; 88 Line drawings, black and white; 88 Illustrations, black and white |
| Verlagsort | London |
| Sprache | englisch |
| Maße | 156 x 234 mm |
| Themenwelt | Technik ► Maschinenbau |
| ISBN-10 | 1-041-13196-8 / 1041131968 |
| ISBN-13 | 978-1-041-13196-0 / 9781041131960 |
| Zustand | Neuware |
| Informationen gemäß Produktsicherheitsverordnung (GPSR) | |
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