Team Members: Jarret Vian Bryan Rowley John Murray ME 191 Final Presentation Spring 2009
Introduction Re-Design Manufacturing Testing Conclusion
Minimum 60” wheel base Unequal front & rear track widths Minimum 1” ground clearance Minimum 2” total suspension travel Template must pass through frame Spherical bearings must be in double shear Design must handle applied loading Rate of camber angle change with respect to both body roll and wheel displacement
Original Final Design
Manufactured at CSUS, by FSAE team
A - Arms
Bearing Holder Hub & Spindle Upright
Camber Caster Wheelbase Track Width
Rate of camber angle change per degree body roll
Rate of camber angle change per inch of wheel displacement
Strain Gages
Degrease Abrade Burnish Condition Neutralize M-Bond 200 Solder Connect to instrumentation
Apply the load, and maintain a constant force on the tire 139lbs, 300lbs, 400lbs Read the strain from each channel on the instrumentation
Elastic
Rosette location Probe
Assumption: rigid Assumption: smooth S y = 50,800psi
Strain gauge and accelerometer data logged during driving Mychron 3 data logger with internal Accelerometer Strain gauges
PREDICTED COSTACTUAL COST MATERIALS BEARINGS HARDWARE TOTAL
Engineering is challenging and rewarding Never underestimate the scope of a project Always test to verify assumptions