Ride Rate given Wheel Centre Rate Formula

Fx Copy
LaTeX Copy
Ride Rate is defined as vertical force per unit vertical displacement of the tire ground contact with respect to chassis. Check FAQs
Kr=KtKwKt+Kw
Kr - Ride Rate?Kt - Tyre Vertical Rate?Kw - Wheel Centre Rate?

Ride Rate given Wheel Centre Rate Example

With values
With units
Only example

Here is how the Ride Rate given Wheel Centre Rate equation looks like with Values.

Here is how the Ride Rate given Wheel Centre Rate equation looks like with Units.

Here is how the Ride Rate given Wheel Centre Rate equation looks like.

31756.4002Edit=321330Edit35239Edit321330Edit+35239Edit
You are here -
HomeIcon Home » Category Physics » Category Mechanical » Category Automobile » fx Ride Rate given Wheel Centre Rate

Ride Rate given Wheel Centre Rate Solution

Follow our step by step solution on how to calculate Ride Rate given Wheel Centre Rate?

FIRST Step Consider the formula
Kr=KtKwKt+Kw
Next Step Substitute values of Variables
Kr=321330N/m35239N/m321330N/m+35239N/m
Next Step Prepare to Evaluate
Kr=32133035239321330+35239
Next Step Evaluate
Kr=31756.4002198733N/m
LAST Step Rounding Answer
Kr=31756.4002N/m

Ride Rate given Wheel Centre Rate Formula Elements

Variables
Ride Rate
Ride Rate is defined as vertical force per unit vertical displacement of the tire ground contact with respect to chassis.
Symbol: Kr
Measurement: Surface TensionUnit: N/m
Note: Value should be greater than 0.
Tyre Vertical Rate
Tyre Vertical Rate is the spring rate controlled by the tyre compound, sidewall stiffness and operating pressure.
Symbol: Kt
Measurement: Surface TensionUnit: N/m
Note: Value should be greater than 0.
Wheel Centre Rate
Wheel Centre Rate is the vertical force acting on the tire per unit vertical displacement at the location along the spindle corresponding to the wheel centerline, measured relative to the chassis.
Symbol: Kw
Measurement: Surface TensionUnit: N/m
Note: Value should be greater than 0.

Other formulas in Wheel Centre Rates for Independent Suspension category

​Go Required Anti-Roll Bar Rate
Ka=KΦKta22Kta22-KΦ-Kwa22
​Go Wheel Centre Rate given Required Anti-Roll Bar Rate
Kw=KΦKta22Kta22-KΦ-Kaa22
​Go Assumed Initial Roll Rate given Required Anti-Roll Bar Rate
KΦ=(Ka+Kwa22)Kta22Kta22+Ka+Kwa22
​Go Tyre Rate given Required Anti-Roll Bar Rate
Kt=((Ka+Kwa22)KΦ(Ka+Kwa22)-KΦ)2a2

How to Evaluate Ride Rate given Wheel Centre Rate?

Ride Rate given Wheel Centre Rate evaluator uses Ride Rate = (Tyre Vertical Rate*Wheel Centre Rate)/(Tyre Vertical Rate+Wheel Centre Rate) to evaluate the Ride Rate, The Ride rate given wheel centre rate formula is used to find the vertical force per unit vertical displacement of the tire ground contact with respect to chassis. Ride Rate is denoted by Kr symbol.

How to evaluate Ride Rate given Wheel Centre Rate using this online evaluator? To use this online evaluator for Ride Rate given Wheel Centre Rate, enter Tyre Vertical Rate (Kt) & Wheel Centre Rate (Kw) and hit the calculate button.

FAQs on Ride Rate given Wheel Centre Rate

What is the formula to find Ride Rate given Wheel Centre Rate?
The formula of Ride Rate given Wheel Centre Rate is expressed as Ride Rate = (Tyre Vertical Rate*Wheel Centre Rate)/(Tyre Vertical Rate+Wheel Centre Rate). Here is an example- 31756.4 = (321330*35239)/(321330+35239).
How to calculate Ride Rate given Wheel Centre Rate?
With Tyre Vertical Rate (Kt) & Wheel Centre Rate (Kw) we can find Ride Rate given Wheel Centre Rate using the formula - Ride Rate = (Tyre Vertical Rate*Wheel Centre Rate)/(Tyre Vertical Rate+Wheel Centre Rate).
Can the Ride Rate given Wheel Centre Rate be negative?
No, the Ride Rate given Wheel Centre Rate, measured in Surface Tension cannot be negative.
Which unit is used to measure Ride Rate given Wheel Centre Rate?
Ride Rate given Wheel Centre Rate is usually measured using the Newton per Meter[N/m] for Surface Tension. Millinewton per Meter[N/m], Gram-Force per Centimeter[N/m], Dyne per Centimeter[N/m] are the few other units in which Ride Rate given Wheel Centre Rate can be measured.
Copied!