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Computer Applications In Civil Engineering CIVE3002

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Computer Applications In Civil Engineering (CIVE3002) Finite Element ... Presented By: Wong Ing Seng. Harry Ting Ken Hieng. C-Style Bunk Bed. Introduction ... – PowerPoint PPT presentation

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Title: Computer Applications In Civil Engineering CIVE3002


1
Computer Applications In Civil Engineering
(CIVE3002)
  • Finite Element Analysis Project
  • Lecturer Dr. Yan Zhuge
  • Presented By Wong Ing Seng
  • Harry Ting Ken Hieng

C-Style Bunk Bed
2
Introduction
0.8 m
  • Metal C-Style shape
  • Built in ladder
  • Hollow section

1.55 m
1.96 m
1.30 m
3
Objective
  • Determine deformation shape under different load
    cases
  • Analyse model maximum deflection
  • Analyse model maximum stress

4
Model Layout
  • Model
  • 2759 Nodes
  • 959 Beams
  • 768 Plates
  • Boundary Condition
  • Constrained in X, Y, Z directions at two sides of
    frame supports

5
Material Summary
6
Assumption
  • Adult and child weight 130kg
  • Bunk bed dimension
  • Material properties
  • Plywood support by beam element
  • Plywood thickness 6 mm
  • Plywood density 500 kg/m3
  • Live load applied on entire bed

7
Materials Properties
  • Plate strength
  • Stress Grade F7 with 12 MC
  • Bending 20 MPa
  • Tension 12 MPa
  • Beam element yield stress
  • CHS 250 MPa
  • RHS 350 MPa

8
Load Cases
4.
5.
  • Model self weight
  • Bed textiles self weight
  • Live load over entire plate
  • Concentrate live load at critical location
  • Horizontal live load
  • Combination Case 1 12
  • Combination Case 2 12 3
  • Combination Case 3 12 4
  • Combination Case 4 12 5

4.
Result Next!
9
Results
10
ResultsCombination Case 2
Max. Beam Displacement 6.30mm Max. Plate
Displacement 10.03mm
Max. Fibre Stress 210.72MPa Max. Plate Stress
4.79MPa
11
ResultsCombination Case 3
Max. Fibre Stress 252.24MPa Max. Plate Stress
11.41MPa
Max. Beam Displacement 8.86mm Max. Plate
Displacement 11.01mm
12
ResultsCombination Case 4
Max. Fibre Stress 92.81MPa Max. Plate Stress
0.57MPa
Max. Beam Displacement 2.41mm Max. Plate
Displacement 1.90mm
13
Results Model cross section
Max. Fibre Stress 92.81MPa Max. Plate Stress
0.57MPa
Max. Beam Displacement 2.41mm Max. Plate
Displacement 1.90mm
14
Results Deformation shape
Max. Fibre Stress 92.81MPa Max. Plate Stress
0.57MPa
Max. Beam Displacement 2.41mm Max. Plate
Displacement 1.90mm
15
Results Combination Case 2 (Redesign)
Max. Fibre Stress 221.07MPa Max. Plate Stress
0.63MPa
Max. Beam Displacement 8.84mm Max. Plate
Displacement 10.26mm
16
ResultsCombination Case 3 (Redesign)
Max. Fibre Stress 317.86MPa Max. Plate Stress
0.60MPa
Max. Beam Displacement 11.39mm Max. Plate
Displacement 11.60mm
17
ResultsCombination Case 4 (Redesign)
Max. Fibre Stress 132.86MPa Max. Plate Stress
0.63MPa
Max. Beam Displacement 2.52mm Max. Plate
Displacement 2.40mm
18
Results Model cross section
Max. Fibre Stress 132.86MPa Max. Plate Stress
0.63MPa
Max. Beam Displacement 2.52mm Max. Plate
Displacement 2.40mm
19
Results - Redesign Model
Max. Fibre Stress 132.86MPa Max. Plate Stress
0.63MPa
Max. Beam Displacement 2.52mm Max. Plate
Displacement 2.40mm
20
Conclusion
  • Original model
  • Max. Displacement 11 mm
  • Max. Beam Stress 231.73 MPa FOS 1.08
  • Max. Plate stress 11.41 MPa FOS 1.6
  • Redesign model
  • Max. Displacement 11.6 mm
  • Max. Beam Stress 317.86MPa gt 250MPa Fail
  • Both model pass for Combination case 2.
  • Redesign model top level CHS fail in Combination
    case 3.

21
  • THE END

THE END
Thank You For Your Attention!
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