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Velocity Ratio is the distance through which any part of a machine moves to that which the driving part moves during the same time. Check FAQs
Vi=2πlpa-pb
Vi - Velocity Ratio?l - Length of Lever Arm?pa - Pitch of Screw A?pb - Pitch of Screw B?π - Archimedes' constant?

Velocity Ratio of Differential Screw Jack Example

With values
With units
Only example

Here is how the Velocity Ratio of Differential Screw Jack equation looks like with Values.

Here is how the Velocity Ratio of Differential Screw Jack equation looks like with Units.

Here is how the Velocity Ratio of Differential Screw Jack equation looks like.

6.2832Edit=23.141612Edit34Edit-22Edit
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Velocity Ratio of Differential Screw Jack Solution

Follow our step by step solution on how to calculate Velocity Ratio of Differential Screw Jack?

FIRST Step Consider the formula
Vi=2πlpa-pb
Next Step Substitute values of Variables
Vi=2π12m34m-22m
Next Step Substitute values of Constants
Vi=23.141612m34m-22m
Next Step Prepare to Evaluate
Vi=23.14161234-22
Next Step Evaluate
Vi=6.28318530717959
LAST Step Rounding Answer
Vi=6.2832

Velocity Ratio of Differential Screw Jack Formula Elements

Variables
Constants
Velocity Ratio
Velocity Ratio is the distance through which any part of a machine moves to that which the driving part moves during the same time.
Symbol: Vi
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Length of Lever Arm
Length of lever arm is the is the distance measured from one end of lever to other end.
Symbol: l
Measurement: LengthUnit: m
Note: Value can be positive or negative.
Pitch of Screw A
Pitch of Screw A is the distance between screw threads and is commonly used with inch sized products and specified as threads per inch.
Symbol: pa
Measurement: LengthUnit: m
Note: Value can be positive or negative.
Pitch of Screw B
Pitch of Screw B is the distance between screw threads and is commonly used with inch sized products and specified as threads per inch.
Symbol: pb
Measurement: LengthUnit: m
Note: Value can be positive or negative.
Archimedes' constant
Archimedes' constant is a mathematical constant that represents the ratio of the circumference of a circle to its diameter.
Symbol: π
Value: 3.14159265358979323846264338327950288

Other Formulas to find Velocity Ratio

​Go Velocity Ratio of Simple Screw Jack
Vi=2πlPs
​Go Velocity Ratio of Worm Geared Screw Jack
Vi=2πRwTsPs
​Go Velocity Ratio of Worm Geared Screw Jack with Double Threaded
Vi=2πRwTw2Ps
​Go Velocity Ratio of Worm Geared Screw Jack with Multiple Threads
Vi=2πRwTwnPs

Other formulas in Screw Jack category

​Go Torque Required while Load is Ascending in Screw Jack
Tasc=dm2Wtan(θ+Φ)
​Go Torque Required while Load is Descending in Screw Jack
Tdes=dm2Wtan(θ-Φ)
​Go Efficiency of Screw Jack
η=tan(ψ)tan(ψ+θ)100
​Go Efficiency of Differential Screw Jack
η=MaVi

How to Evaluate Velocity Ratio of Differential Screw Jack?

Velocity Ratio of Differential Screw Jack evaluator uses Velocity Ratio = (2*pi*Length of Lever Arm)/(Pitch of Screw A-Pitch of Screw B) to evaluate the Velocity Ratio, Velocity Ratio of Differential Screw Jack is a measure of the mechanical advantage provided by the system. It describes the ratio of the distance moved by the effort to the distance moved by the load. Velocity Ratio is denoted by Vi symbol.

How to evaluate Velocity Ratio of Differential Screw Jack using this online evaluator? To use this online evaluator for Velocity Ratio of Differential Screw Jack, enter Length of Lever Arm (l), Pitch of Screw A (pa) & Pitch of Screw B (pb) and hit the calculate button.

FAQs on Velocity Ratio of Differential Screw Jack

What is the formula to find Velocity Ratio of Differential Screw Jack?
The formula of Velocity Ratio of Differential Screw Jack is expressed as Velocity Ratio = (2*pi*Length of Lever Arm)/(Pitch of Screw A-Pitch of Screw B). Here is an example- 6.283185 = (2*pi*12)/(34-22).
How to calculate Velocity Ratio of Differential Screw Jack?
With Length of Lever Arm (l), Pitch of Screw A (pa) & Pitch of Screw B (pb) we can find Velocity Ratio of Differential Screw Jack using the formula - Velocity Ratio = (2*pi*Length of Lever Arm)/(Pitch of Screw A-Pitch of Screw B). This formula also uses Archimedes' constant .
What are the other ways to Calculate Velocity Ratio?
Here are the different ways to Calculate Velocity Ratio-
  • Velocity Ratio=(2*pi*Length of Lever Arm)/PitchOpenImg
  • Velocity Ratio=(2*pi*Radius of Effort Wheel*Number of Teeth in Screw Shaft)/PitchOpenImg
  • Velocity Ratio=(2*pi*Radius of Effort Wheel*Number of Teeth on Worm Wheel)/(2*Pitch)OpenImg
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