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Steel Structure

I 10 migliori prodotti di aprile 2025
Ultimo aggiornamento: 30 aprile 2025
Ashish Kumar
Ashish Kumar
Design of Steel Structure                        
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  • This ultimate unique application is for all students across the world. It covers 164 topics of Design of Steel Structure in detail. These 164 topics are divided in 5 units.
  • Each topic is around 600 words and is complete with diagrams, equations and other forms of graphical representations along with simple text explaining the concept in detail.
  • This USP of this application is "ultra-portability". Students can access the content on-the-go from anywhere they like.
  • Basically, each topic is like a detailed flash card and will make the lives of students simpler and easier.
  • Some of topics Covered in this application are:
  • 1. Degrees of Freedom and Indeterminacy
  • 2. Statically Indeterminate Structures -Direct Stiffness Method
  • 3. Member Stiffness Matrix
  • 4. Coordinates Transformation
  • 5. Displacement Transformation
  • 6. Assembly of Structure Stiffness Matrix
  • 7. Calculation of Member Forces
  • 8. Treatment of Internal Loads
  • 9. Treatment of Pins
  • 10. Temperature Effects
  • 11. Temperature Gradient
  • 12. Elastic and Plastic Behavior of Steel
  • 13. Moment - Curvature Relationship in an Elastic - Plastic Range
  • 14. Elastic - Plastic Behavior
  • 15. Fully Plastic Section
  • 16. Plastic Hinge
  • 17. Comparison of Linear Elastic and Plastic Designs
  • 18. Limit States Design
  • 19. Overview of Design Codes for Plastic Design
  • 20. General Elastoplastic Analysis of Structures
  • 21. Reduced Plastic Moment Capacity Due to Force Interaction
  • 22. Shear Force
  • 23. Concept of Yield Surface
  • 24. Yield Surface and Plastic Flow Rule
  • 25. Derivation of General Elastoplastic Stiffness Matrices
  • 26. Elastoplastic Stiffness Matrices for Sections
  • 27. Stiffness Matrix and Elastoplastic Analysis
  • 28. Use of Computers for Elastoplastic Analysis
  • 29. Effect of Force Interaction on Plastic Collapse
  • 30. Distributed Loads in Elastoplastic Analysis
  • 31. Theorems of Plasticity
  • 32. Continuous Beams and Frames
  • 33. Application to Portal Frames
  • 34. Calculation of Member Forces at Collapse
  • 35. Introduction of Limit Analysis by Linear Programming
  • 36. Limit Analysis Theorems as Constrained
  • 37. General Description of the Discrete Plane Frame Problem
  • 38. A Simple MATLAB Implementation for Static Limit Analysis
  • 39. A Note on Optimal Plastic Design of Frames
  • 40. Plastic Rotation Capacity
  • 41. Plastic Rotation Demand
  • 42. Effect of Settlement
  • 43. Modified End Actions Due to Settlements
  • 44. Effect of High Temperature
  • 45. Critical Temperature Evaluation in Elastoplastic Analysis
  • 46. Second-Order Effects
  • 47. Serviceability Limit State Requirements
  • 48. Ultimate Limit State Requirements
  • 49. Introduction to Metallurgy of steel
  • 50. Strengthening structural steels
  • 51. Inclusions and alloying elements in steel
  • 52. Mechanical properties of steel
  • 53. The manufacturing of steel structures
  • 54. Corrosion
  • 55. Corrosion protection to steel structure elements
  • 56. Steel structures subjected to fire
  • 57. Fatigue of steel structures
  • 58. Introduction to Limit State Design
  • 59. Bolted connections
  • 60. Bolts and bolting
  • 61. Shear connections with bearing type bolts
  • 62. Shear connection with HSFG bolts
  • 63. Tension connections with bearing and HSFG bolts
  • 64. Welding and welded connections
  • 65. Types of joints and welds
  • 66. Design of welds
  • 67. Analysis of bolt groups
  • 68. Analysis of weld group
  • 69. Beam and column splices
  • 70. Design strength due to yielding of gross section
  • 71. Design strength due to rupture of critical section
  • 72. Angles under tension
  • 73. Design of tension members
  • 74. Elastic buckling of an ideal column or struct with pinned end
  • 75. Strength of compression members in practice
  • 76. The concepts of effective lengths
  • 77. Types of column sections
  • 78. Limit state design of beams
  • 79. Laterally supported beam
  • 80. Resistance to shear buckling
  • 81. Shear buckling design methods
  • 82. Design of beams and plate girders with solid webs
  • 83. Stiffener design
  • 84. Concept of limit state design of beam columns
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