All Stories

  1. Design against failure of RC beam/column elements in the region of points of contraflexure
  2. Reinforced Concrete Shear Design: Shortcomings and Remedy
  3. Finite-Element Modelling of Structural Concrete
  4. Behaviour of reinforced concrete beams with non-bonded flexural reinforcement
  5. Design for earthquake-resistant short RC structural walls
  6. Design for earthquake-resistent reinforced concrete structural walls
  7. Compressive Force-Path Method
  8. Effect of axial compression on shear capacity of linear RC members without transverse reinforcement
  9. Earthquake-Resistant Design
  10. Design Applications
  11. The Concept of the Compressive-Force Path
  12. Reappraisal of Concepts Underlying Reinforced-Concrete Design
  13. Design of Simply Supported Beams
  14. Design for Punching of Flat Slabs
  15. Modelling of Simply-Supported Beams
  16. Design of Structures Comprising Beam-Like Elements
  17. Effect of transverse reinforcement on short structural wall behaviour
  18. Structural-concrete analysis and design: need for a sound underlying theory
  19. Constitutive Modelling of Concrete Behaviour: Need for Reappraisal
  20. Characteristic features of concrete behaviour: Implications for the development of an engineering finite-element tool
  21. The effect of steel fibres on the earthquake-resistant design of reinforced concrete structures
  22. Size effects in beams with small shear span-to-depth ratios
  23. Deformational behaviour of concrete specimens in uniaxial compression under different boundary conditions
  24. Ultimate Limit-State Design of Concrete Structures: A new approach
  25. Strength and behaviour of deep beams
  26. Structural Concrete: Finite-element Analysis for Limit-state Design
  27. Behaviour of Concrete Under Passive Confinement.
  28. Constitutive Models of Concrete Under Passive Confinement and Their Use in Structural Analysis.
  29. Experimental study of the compressive-force path concept in prestressed concrete beams
  30. Effect of vertical prestressing on the punching failure
  31. Closure to “ Application of Nlfea to Concrete Structures ” by Claude Bedard and Michael D. Kotsovos (December, 1985, Vol. 111, No. 12)
  32. Fracture Processes of Concrete for NLFEA Methods
  33. Non‐linear finite element modelling of concrete structures: basic analysis, phenomenological insight, and design implications
  34. Application of Nlfea to Concrete Structures
  35. Discussion: Mechanisms of ‘shear’ failure
  36. Mechanisms of ‘shear’ failure
  37. Effect of boundary conditions upon the behaviour of concrete under concentrations of load
  38. Fracture mechanics and concrete behaviour
  39. Discussion: A mathematical description of the strength properties of concrete under generalized stress
  40. Mathematical Description of Deformational Behavior of Concrete Under Generalized Stress Beyond Ultimate Strength
  41. Discussion: Deformation and fracture of plain concrete
  42. A mathematical description of the strength properties of concrete under generalized stress
  43. A mathematical description of the deformational behaviour of concrete under complex loading
  44. Effect of Stress Path on the Behavior of Concrete Under Triaxial Stress States