Application of Finite Element Analysis for Fracture and Damage Mechanics
Autor Zhaochun Yangen Limba Engleză Hardback – 14 mar 2025
• Discusses material models such as composite, elastic, elastoplastic, and creep models.
• Covers fracture parameters like K, J, C*, and VCCT.
• Presents relevant material damage models (ductile, creep, and composite)
• Explores typical and complex problems, including the inclined crack model, penny shaped crack model, compact tension specimen, end-loaded split (ELS) model, double cantilever beam (DCB) model, and notched model.
• Includes all modeling files, such as APDL input files, Python code and creep damage subroutine, in the appendixes.
Written for materials and mechanical engineers, this text addresses and provides solutions to the real-life engineering challenge of damage and fracture in materials and structures.
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Specificații
ISBN-13: 9781032967974
ISBN-10: 1032967978
Pagini: 168
Ilustrații: 218
Dimensiuni: 156 x 234 mm
Ediția:1
Editura: CRC Press
Colecția CRC Press
ISBN-10: 1032967978
Pagini: 168
Ilustrații: 218
Dimensiuni: 156 x 234 mm
Ediția:1
Editura: CRC Press
Colecția CRC Press
Public țintă
Postgraduate and Professional ReferenceCuprins
0. Front Matter. 1. Introduction. PART I. Background. 2. Finite Element Method. 3. Various Material Models. PART II. Fracture Mechanics. 4. Stress Intensity Factor. 5. J-Integral. 6. C*-Integral. 7. VCCT. PART III. Material Damage Models. 8. Ductile Damage Model. 9. Creep Damage Model. 10. Fiber-Reinforced Material Damage Model. 11. Retrospective. END MATTER. Appendices.
Notă biografică
Zhaochun Yang received his PhD from the University of Pittsburgh in 2004. He has been an FEA Engineer since 2007. Dr. Yang has published three books by CRC Press: Finite Element Analysis for Biomedical Engineering Applications; Multiphysics Modeling with Application to Biomedical Engineering; and Material Modeling in Finite Element Analysis.
Descriere
This book focuses on finite element analysis of various material models and their relevant fracture and damage models using ANSYS. It has three parts: Part I introduces the various material models, Part II highlights the finite element modeling of their relevant fracture parameters, and Part III deals with various material damage models.