Nonlinear Finite Element Analysis and Adina
eBook - PDF

Nonlinear Finite Element Analysis and Adina

Proceedings of the 4th ADINA Conference

  1. 314 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF

Nonlinear Finite Element Analysis and Adina

Proceedings of the 4th ADINA Conference

About this book

Nonlinear Finite Element Analysis and ADINA contains the proceedings of the Fourth ADINA Conference held at Massachusetts Institute of Technology on June 15-17, 1983. Separating the papers presented in the conference as chapters, this book first elucidates the use of ADINA for analysis of mines with explosive fills. Subsequent chapters explore the use of ADINA in soil mechanics; nonlinear shell analysis; analysis of bond between prestressed steel and concrete; determination and simulation of stable crack growth; offshore structures analysis; modeling of traveling-loads and time-dependent masses; and comparison of two slideline methods. Other notable applications of ADINA are also shown.

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Yes, you can access Nonlinear Finite Element Analysis and Adina by K. J. Bathe in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Engineering General. We have over one million books available in our catalogue for you to explore.

Table of contents

  1. Front Cover
  2. Nonlinear Finite Element Analysis and Adina
  3. Copyright Page
  4. Table of Contents
  5. PREFACE
  6. CHAPTER 1. THE USE OF ADINA FOR ANALYSIS OF MINES WITH EXPLOSIVE FILLS
  7. CHAPTER 2. USE OF ADINA IN SOIL MECHANICS WITH CASE STUDIES FOR EXCAVATIONS
  8. CHAPTER 3. ANALYSIS OF THE HEXCAN OF A FAST BREEDER REACTOR WITH A THROUGH CRACK
  9. CHAPTER 4. EXPERIENCES IN NONLINEAR SHELL ANALYSIS USING ADINA
  10. CHAPTER 5. MODELING AND ANALYSIS OF BIAS-PLY MOTORCYCLE TIRES
  11. CHAPTER 6. A SIMPLE AND EFFECTIVE PIPE ELBOW ELEMENT—SOME NONLINEAR CAPABILITIES
  12. CHAPTER 7. BOND BETWEEN PRESTRESSED STEEL AND CONCRETE—COMPUTER ANALYSIS USING ADINA
  13. CHAPTER 8. NEAR-FIELD THERMOMECHANICAL RESPONSE OF A WASTE VAULT
  14. CHAPTER 9. A DESK-TOP PERSONAL COMPUTER FOR FINITE ELEMENT POST-PROCESSING
  15. CHAPTER 10. DETERMINATION AND SIMULATION OF STABLE CRACK GROWTH IN ADINA
  16. CHAPTER 11. THE USE OF NONSAP TO COMPARE THE VON MISES AND A MODIFIED VON MISES YIELD CRITERIA
  17. CHAPTER 12. ON ELASTIC-PLASTIC ANALYSIS OF I-BEAMS IN BENDING AND TORSION
  18. CHAPTER 13. NONLINEAR STATIC ANALYSIS OF END-FITTINGS FOR GFRP-PRESTRESSING RODS
  19. CHAPTER 14. THREE-DIMENSIONAL J-INTEGRAL CALCULATIONS OF PART-THROUGH SURFACE CRACK PROBLEMS
  20. CHAPTER 15. ANALYSIS OF OFFSHORE STRUCTURES WITH ADINA
  21. CHAPTER 16. MODELING OF TRAVELLING-LOADS AND TIME-DEPENDENT MASSES WITH ADINA
  22. CHAPTER 17. SIMPLIFIED ANALYSIS OF PLASTIC AND STABLE CRACK GROWTH
  23. CHAPTER 18. FLUID-STRUCTURE INTERACTION AND ADINA
  24. CHAPTER 19. FRACTURE MECHANICS J-INTEGRAL CALCULATIONS IN THERMOELASTO–PLASTICITY
  25. CHAPTER 20. ON THE ANALYSIS OF CREEP STABILITY AND RUPTURE
  26. CHAPTER 21. AN APPLICATION OF ADINA TO THE SOLUTION OF FLUID-STRUCTURE INTERACTION PROBLEMS
  27. CHAPTER 22. CALCULATION OF TURBINE ROTORS IN SECONDARY CREEP RANGE
  28. CHAPTER 23. COMPARISON OF TWO SLIDELINE METHODS USING ADINA
  29. CHAPTER 24. LARGE STRAIN SOLUTIONS OF RUBBER COMPONENTS
  30. CHAPTER 25. STRESS ANALYSIS OF A SIMPLIFIED COMPRESSION PLATE FIXATION SYSTEM FOR FRACTURED BONES
  31. CHAPTER 26. NONLINEAR FINITE ELEMENT ANALYSIS OF AN AUTOFRETTAGE PROCESS
  32. CHAPTER 27. ADINA ANALYSIS OF LARGE DEFLECTIONS AND STRESSES IN BENDING FATIGUE SPECIMENS
  33. CHAPTER 28. ON THE AUTOMATIC SOLUTION OF NONLINEAR FINITE ELEMENT EQUATIONS
  34. CHAPTER 29. ANALYSIS OF SURFACE CRACKS IN PLATES AND SHELLS USING THE LINE-SPRING MODEL AND ADINA
  35. CHAPTER 30. THERMOMECHANICAL CALCULATIONS RELATED TO THERMALLY INDUCED ROCK LOOSENING IN AN UNDERGROUND CAVITY
  36. CHAPTER 31. VARIATIONAL GEOMETRY: A NEW METHOD FOR MODIFYING PART GEOMETRY FOR FINITE ELEMENT ANALYSIS
  37. CHAPTER 32. ADINA MODELING OF ELASTOPLASTIC SHEAR/COMPRESSION WAVES IN TUBES
  38. CHAPTER 33. APPLICATION OF THE FINITE METHOD IN MICROMECHANICAL ANALYSES OF CREEP FRACTURE PROBLEMS