Title: Roll Cage Analysis
1Roll Cage Analysis
- Mario Russo - James Kokkinos
2Purpose of Cage
- To provide protection
- Add structural strength and rigidity
3Project Scope
- Model the Roll Cage in Strand7
- Different load cases and materials (Steel and
Aluminium) - Within design material strength limits
- Complied with safe deflection limits
4The Roll Cage
5Method of Analysis
- A typical design adapted to Ford Focus.
- Front and Base plate thicknesses
- Realistic loads
- Support Reactions
- Model modified to suit objectives
6Materials Beams
High Strength Aluminium (350 MPa)
High Strength Steel (500 MPa)
Outside Diameter 70 mm Wall Thickness 8
mm Total Beam Weight 95 kg
Outside Diameter 70 mm Wall Thickness 6
mm Total Beam Weight 214 kg
7Materials - Plates
8Load Case 1 - Front Impact
9Load Case 2 - Side Impact
10Optimisation of Design
- Iteratively modified tube and plate thicknesses
- Achieve design deflections without reaching
material yield stresses - Minimise cage weight while remaining within
limits
11Results
12Front Impact
Max Total Fibre Stress
Max Plate Stress (tension)
Critical Deflection
Max Plate Stress (compression)
Max Axial Stress
13Side Impact
Max Plate Stress (compression)
Max Axial Stress
Max Plate Stress (tension)
Critical Deflection and Max Total Fibre Stress
14Conclusions
- Was design satisfactory
- Which was the better design and why?
- What we learned from this analysis
15Thank You Questions?