Download Suspension Geometry PDF

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Contents of the Suspension Geometry PDF

List of 24 Suspension Geometry Formulas

Angle between IC and Ground
Camber Change Rate
Centre of Gravity Position Distance from Front Wheels
Centre of Gravity Position Distance from Rear Wheels
Force Applied by Coil Spring
Front View Swing Arm
Height of Centre of Gravity from Road Surface from Percentage Anti Dive
Height of Centre of Gravity from Road Surface from Percentage Anti Lift
Installation Ratio given Motion Ratio
Mass on front axle given position of COG
Motion Ratio given Installation Ratio
Percent Anti Squat
Percentage Anti Dive on Front
Percentage Anti Lift
Percentage Front Braking given Percentage Anti Dive
Percentage Rear Braking given Percentage Anti Lift
Roll Camber
Side View Swing Arm Height given Percentage Anti Dive
Side View Swing Arm Height given Percentage Anti Lift
Side View Swing Arm Length given Percentage Anti Dive
Side View Swing Arm Length given Percentage Anti Lift
Wheel Base of Vehicle given COG Position from Rear Axle
Wheelbase of Vehicle from Percentage Anti Dive
Wheelbase of Vehicle from Percentage Anti Lift

Variables used in Suspension Geometry PDF

  1. %ADf Percentage Anti Dive Front
  2. %ALr Percentage Anti Lift
  3. %AS %Anti Squat
  4. %Bf Percentage Front Braking
  5. %Br Percentage Rear Braking
  6. a Horizontal Distance of C.G. from Front Axle (Millimeter)
  7. atw Track Width of Vehicle (Millimeter)
  8. b Wheelbase of Vehicle (Millimeter)
  9. c Horizontal Distance of C.G. from Rear Axle (Millimeter)
  10. Fcoil Force Coil spring (Newton)
  11. fvsa Front View Swing Arm (Millimeter)
  12. h Height of CG above Road (Millimeter)
  13. IR Installation Ratio
  14. k Coil Spring Stiffness (Newton per Meter)
  15. m Mass of Vehicle (Kilogram)
  16. M.R. Motion Ratio in Suspension
  17. RA Roll Angle (Degree)
  18. RC Roll Camber
  19. SVSAh Side View Swing Arm Height (Millimeter)
  20. SVSAl Side View Swing Arm Length (Millimeter)
  21. Wf Mass on Front Axle (Kilogram)
  22. Wr Mass on Rear Axle (Kilogram)
  23. x Maximum Compression in Spring (Millimeter)
  24. θ Camber Change Rate (Degree)
  25. θc Camber Angle (Degree)
  26. ΦR Angle between IC and Ground (Degree)

Constants, Functions and Measurements used in Suspension Geometry PDF

  1. Function: atan, atan(Number)
    Inverse tan is used to calculate the angle by applying the tangent ratio of the angle, which is the opposite side divided by the adjacent side of the right triangle.
  2. Function: sqrt, sqrt(Number)
    A square root function is a function that takes a non-negative number as an input and returns the square root of the given input number.
  3. Function: tan, tan(Angle)
    The tangent of an angle is a trigonometric ratio of the length of the side opposite an angle to the length of the side adjacent to an angle in a right triangle.
  4. Measurement: Length in Millimeter (mm)
    Length Unit Conversion
  5. Measurement: Weight in Kilogram (kg)
    Weight Unit Conversion
  6. Measurement: Force in Newton (N)
    Force Unit Conversion
  7. Measurement: Angle in Degree (°)
    Angle Unit Conversion
  8. Measurement: Surface Tension in Newton per Meter (N/m)
    Surface Tension Unit Conversion

Free Suspension Geometry PDF

Get Free Suspension Geometry PDF for Download today. Examples are included after each Formula with a link to a live Calculator! All the Formulas and Calculators support Unit Conversion as well. This PDF features 24 calculators from Physics. Inside, you'll discover a list of formulas such as Centre of Gravity Position Distance from Rear Wheels, Centre of Gravity Position Distance from Front Wheels and 24 more formulas!. The Variables, Functions and Constants are summarized at the end. Explore and share Suspension Geometry PDFs!

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