Maximum Velocity of Follower during Return Stroke at Uniform Acceleration given Time of Stroke Solution

STEP 0: Pre-Calculation Summary
Formula Used
Maximum velocity of follower = (2*Stroke of Follower)/Time required for the return stroke
Vmax = (2*S)/tR
This formula uses 3 Variables
Variables Used
Maximum velocity of follower - (Measured in Meter per Second) - Maximum velocity of follower is the rate of change of its position with respect to a frame of reference and is a function of time.
Stroke of Follower - (Measured in Meter) - Stroke of Follower is the greatest distance or angle through which the follower moves or rotates.
Time required for the return stroke - (Measured in Second) - The time required for the return stroke is the time taken to cover angular displacement during the return stroke.
STEP 1: Convert Input(s) to Base Unit
Stroke of Follower: 20 Meter --> 20 Meter No Conversion Required
Time required for the return stroke: 8 Second --> 8 Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Vmax = (2*S)/tR --> (2*20)/8
Evaluating ... ...
Vmax = 5
STEP 3: Convert Result to Output's Unit
5 Meter per Second --> No Conversion Required
FINAL ANSWER
5 Meter per Second <-- Maximum velocity of follower
(Calculation completed in 00.004 seconds)

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11 Maximum Velocity of the Follower Calculators

Max Velocity of Follower for Tangent Cam with Roller Follower
Go Maximum velocity of follower = Angular velocity of cam*(Radius of the base circle+Radius of Roller)*sin(Angle turned by the cam for contact of roller)/((cos(Angle turned by the cam for contact of roller))^2)
Maximum Velocity of Follower for Circular Arc Cam Contacting with Circular Flank
Go Maximum velocity of follower = Angular velocity of cam*(Radius of circular flank-Radius of the base circle)*sin(Total angle of action of cam)
Maximum Velocity of Follower on Return Stroke when Follower Moves with SHM
Go Maximum velocity of follower = (pi*Stroke of Follower*Angular velocity of cam)/(2*Angular displacement of cam during return stroke)
Maximum Velocity of Follower on Outstroke when Follower Moves with SHM
Go Maximum velocity of follower = (pi*Stroke of Follower*Angular velocity of cam)/(2*Angular Displacement of Cam during Out Stroke)
Maximum Velocity of Follower during Return Stroke for Uniform Acceleration
Go Maximum velocity of follower = (2*Stroke of Follower*Angular velocity of cam)/Angular displacement of cam during return stroke
Maximum Velocity of Follower during Return Stroke for Cycloidal Motion
Go Maximum velocity of follower = (2*Angular velocity of cam*Stroke of Follower)/Angular displacement of cam during return stroke
Maximum Velocity of Follower during Outstroke at Uniform Acceleration
Go Maximum velocity of follower = (2*Stroke of Follower*Angular velocity of cam)/Angular Displacement of Cam during Out Stroke
Maximum Velocity of Follower during Outstroke for Cycloidal Motion
Go Maximum velocity of follower = (2*Angular velocity of cam*Stroke of Follower)/Angular Displacement of Cam during Out Stroke
Maximum Velocity of Follower on Outstroke given Time Stroke
Go Maximum velocity of follower = (pi*Stroke of Follower)/(2*Time required for the outstroke)
Maximum Velocity of Follower during Return Stroke at Uniform Acceleration given Time of Stroke
Go Maximum velocity of follower = (2*Stroke of Follower)/Time required for the return stroke
Maximum Velocity of Follower during Outstroke at Uniform Acceleration given Time of Out Stroke
Go Maximum velocity of follower = (2*Stroke of Follower)/Time required for the outstroke

Maximum Velocity of Follower during Return Stroke at Uniform Acceleration given Time of Stroke Formula

Maximum velocity of follower = (2*Stroke of Follower)/Time required for the return stroke
Vmax = (2*S)/tR

Define follower motion with uniform acceleration and retardation.

Follower motion with uniform acceleration and retardation (UARM), here, the displacement of the follower varies parabolically with respect to the angular displacement of the cam. Accordingly, the velocity of the follower varies uniformly with respect to the angular displacement of the cam.

How to Calculate Maximum Velocity of Follower during Return Stroke at Uniform Acceleration given Time of Stroke?

Maximum Velocity of Follower during Return Stroke at Uniform Acceleration given Time of Stroke calculator uses Maximum velocity of follower = (2*Stroke of Follower)/Time required for the return stroke to calculate the Maximum velocity of follower, The Maximum Velocity of Follower during Return Stroke at Uniform Acceleration given Time of Stroke formula is defined as the rate of change of its position with respect to a frame of reference. Maximum velocity of follower is denoted by Vmax symbol.

How to calculate Maximum Velocity of Follower during Return Stroke at Uniform Acceleration given Time of Stroke using this online calculator? To use this online calculator for Maximum Velocity of Follower during Return Stroke at Uniform Acceleration given Time of Stroke, enter Stroke of Follower (S) & Time required for the return stroke (tR) and hit the calculate button. Here is how the Maximum Velocity of Follower during Return Stroke at Uniform Acceleration given Time of Stroke calculation can be explained with given input values -> 5 = (2*20)/8.

FAQ

What is Maximum Velocity of Follower during Return Stroke at Uniform Acceleration given Time of Stroke?
The Maximum Velocity of Follower during Return Stroke at Uniform Acceleration given Time of Stroke formula is defined as the rate of change of its position with respect to a frame of reference and is represented as Vmax = (2*S)/tR or Maximum velocity of follower = (2*Stroke of Follower)/Time required for the return stroke. Stroke of Follower is the greatest distance or angle through which the follower moves or rotates & The time required for the return stroke is the time taken to cover angular displacement during the return stroke.
How to calculate Maximum Velocity of Follower during Return Stroke at Uniform Acceleration given Time of Stroke?
The Maximum Velocity of Follower during Return Stroke at Uniform Acceleration given Time of Stroke formula is defined as the rate of change of its position with respect to a frame of reference is calculated using Maximum velocity of follower = (2*Stroke of Follower)/Time required for the return stroke. To calculate Maximum Velocity of Follower during Return Stroke at Uniform Acceleration given Time of Stroke, you need Stroke of Follower (S) & Time required for the return stroke (tR). With our tool, you need to enter the respective value for Stroke of Follower & Time required for the return stroke and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Maximum velocity of follower?
In this formula, Maximum velocity of follower uses Stroke of Follower & Time required for the return stroke. We can use 10 other way(s) to calculate the same, which is/are as follows -
  • Maximum velocity of follower = Angular velocity of cam*(Radius of the base circle+Radius of Roller)*sin(Angle turned by the cam for contact of roller)/((cos(Angle turned by the cam for contact of roller))^2)
  • Maximum velocity of follower = (2*Angular velocity of cam*Stroke of Follower)/Angular Displacement of Cam during Out Stroke
  • Maximum velocity of follower = (2*Stroke of Follower)/Time required for the outstroke
  • Maximum velocity of follower = (2*Angular velocity of cam*Stroke of Follower)/Angular displacement of cam during return stroke
  • Maximum velocity of follower = (2*Stroke of Follower*Angular velocity of cam)/Angular displacement of cam during return stroke
  • Maximum velocity of follower = (2*Stroke of Follower*Angular velocity of cam)/Angular Displacement of Cam during Out Stroke
  • Maximum velocity of follower = Angular velocity of cam*(Radius of circular flank-Radius of the base circle)*sin(Total angle of action of cam)
  • Maximum velocity of follower = (pi*Stroke of Follower*Angular velocity of cam)/(2*Angular Displacement of Cam during Out Stroke)
  • Maximum velocity of follower = (pi*Stroke of Follower*Angular velocity of cam)/(2*Angular displacement of cam during return stroke)
  • Maximum velocity of follower = (pi*Stroke of Follower)/(2*Time required for the outstroke)
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