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  • Home
  1. Home
  2. Tekla Structural Designer
  3. Design code specific information
  4. US codes
  5. Steel design to AISC 360 ASD and LRFD
  6. Steel beam design to AISC 360

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  • Design code specific information
    • US codes
      • Loading (ASCE 7)
      • Steel design to AISC 360 ASD and LRFD
        • General
        • Steel beam design to AISC 360
          • Design method (Beams: AISC 360)
          • Steel beam limitations and assumptions (Beams: AISC 360)
          • Section classification (Beams: AISC 360)
          • D2. Axial tension (Beams: AISC 360)
          • E. Axial compression (Beams: AISC 360)
          • F2. Flexure (Beams: AISC 360)
          • G2. Shear strength (Beams: AISC 360)
          • H1. Combined forces (Beams: AISC 360)
          • DG9. Torsion (Beams: AISC 360)
          • Web openings (Beams: AISC 360)
          • Seismic design rules (Beams: AISC 360)
        • Composite beam design to AISC 360
        • Steel column design to AISC 360
        • Column base plate design to AISC 360
        • Steel brace design to AISC 360
        • Truss member design to AISC 360
        • Steel single, double angle and tee section design to AISC 360
        • References (AISC 360)
      • Steel seismic design to AISC 341
      • Concrete design to ACI 318
      • Vibration of floors to DG11
    • Eurocodes
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Steel beam design to AISC 360

Tekla Structural Designer
Modified: 14 Jul 2025
2025
Tekla Structural Designer

Steel beam design to AISC 360

  • Design method (Beams: AISC 360)
  • Steel beam limitations and assumptions (Beams: AISC 360)
  • Section classification (Beams: AISC 360)
  • D2. Axial tension (Beams: AISC 360)
  • E. Axial compression (Beams: AISC 360)
  • F2. Flexure (Beams: AISC 360)
  • G2. Shear strength (Beams: AISC 360)
  • H1. Combined forces (Beams: AISC 360)
  • DG9. Torsion (Beams: AISC 360)
  • Web openings (Beams: AISC 360)
  • Seismic design rules (Beams: AISC 360)
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