Acceleration of Follower for Circular Arc Cam if there's Contact on Circular Flank Solution

STEP 0: Pre-Calculation Summary
Formula Used
Acceleration of Follower = Angular Velocity of Cam^2*(Radius of Circular Flank-Radius of the Base Circle)*cos(Angle Turned by Cam)
a = ω^2*(R-r1)*cos(θt)
This formula uses 1 Functions, 5 Variables
Functions Used
cos - Cosine of an angle is the ratio of the side adjacent to the angle to the hypotenuse of the triangle., cos(Angle)
Variables Used
Acceleration of Follower - (Measured in Meter per Square Second) - Acceleration of follower is the rate of change in velocity to the change in time.
Angular Velocity of Cam - (Measured in Radian per Second) - Angular velocity of cam refers to how fast an object rotates or revolves relative to another point.
Radius of Circular Flank - (Measured in Meter) - Radius of circular flank is any of the line segments from its center to its perimeter, and in more modern usage, it is also their length.
Radius of the Base Circle - (Measured in Meter) - Radius of the base circle is any of the line segments from its center to its perimeter, and in more modern usage, it is also their length.
Angle Turned by Cam - (Measured in Radian) - Angle turned by cam is obtained for rotation of the cam.
STEP 1: Convert Input(s) to Base Unit
Angular Velocity of Cam: 27 Radian per Second --> 27 Radian per Second No Conversion Required
Radius of Circular Flank: 4.955 Meter --> 4.955 Meter No Conversion Required
Radius of the Base Circle: 4.98 Meter --> 4.98 Meter No Conversion Required
Angle Turned by Cam: 22 Radian --> 22 Radian No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
a = ω^2*(R-r1)*cos(θt) --> 27^2*(4.955-4.98)*cos(22)
Evaluating ... ...
a = 18.2242860610425
STEP 3: Convert Result to Output's Unit
18.2242860610425 Meter per Square Second --> No Conversion Required
FINAL ANSWER
18.2242860610425 18.22429 Meter per Square Second <-- Acceleration of Follower
(Calculation completed in 00.020 seconds)

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Acceleration of the Follower Calculators

Acceleration of Follower of Roller Follower Tangent Cam, there's Contact with Nose
​ LaTeX ​ Go Acceleration of Follower = Angular Velocity of Cam^2*Distance b/w Cam Center and Nose Center*(cos(Angle Turned by Cam When Roller is at Nose Top)+(Distance b/w Roller Centre and Nose Centre^2*Distance b/w Cam Center and Nose Center*cos(2*Angle Turned by Cam When Roller is at Nose Top)+Distance b/w Cam Center and Nose Center^3*(sin(Angle Turned by Cam When Roller is at Nose Top))^4)/sqrt(Distance b/w Roller Centre and Nose Centre^2-Distance b/w Cam Center and Nose Center^2*(sin(Angle Turned by Cam When Roller is at Nose Top))^2))
Acceleration of Follower after Time t for Cycloidal Motion
​ LaTeX ​ Go Acceleration of Follower = (2*pi*Angular Velocity of Cam^2*Stroke of Follower)/(Angular Displacement of Cam During Out Stroke^2)*sin((2*pi*Angle Through Which Cam Rotates)/(Angular Displacement of Cam During Out Stroke))
Acceleration of Follower for Roller Follower Tangent Cam, there's Contact with Straight Flanks
​ LaTeX ​ Go Acceleration of Follower = Angular Velocity of Cam^2*(Radius of the Base Circle+Radius of Roller)*(2-cos(Angle Turned by Cam from Beginning of Roller))^2/((cos(Angle Turned by Cam from Beginning of Roller))^3)
Acceleration of Follower for Circular Arc Cam if there's Contact on Circular Flank
​ LaTeX ​ Go Acceleration of Follower = Angular Velocity of Cam^2*(Radius of Circular Flank-Radius of the Base Circle)*cos(Angle Turned by Cam)

Acceleration of Follower for Circular Arc Cam if there's Contact on Circular Flank Formula

​LaTeX ​Go
Acceleration of Follower = Angular Velocity of Cam^2*(Radius of Circular Flank-Radius of the Base Circle)*cos(Angle Turned by Cam)
a = ω^2*(R-r1)*cos(θt)

what is circular arc cam?

When the flanks of the cam connecting the nose and base circles are of a convex circular arc, such cams are referred as circular arc cams.

How to Calculate Acceleration of Follower for Circular Arc Cam if there's Contact on Circular Flank?

Acceleration of Follower for Circular Arc Cam if there's Contact on Circular Flank calculator uses Acceleration of Follower = Angular Velocity of Cam^2*(Radius of Circular Flank-Radius of the Base Circle)*cos(Angle Turned by Cam) to calculate the Acceleration of Follower, Acceleration of Follower for Circular Arc Cam if there's Contact on Circular Flank formula is defined as a measure of the rate of change of velocity of the follower in a circular arc cam mechanism when there is contact on the circular flank, which is crucial in designing and optimizing cam-follower systems. Acceleration of Follower is denoted by a symbol.

How to calculate Acceleration of Follower for Circular Arc Cam if there's Contact on Circular Flank using this online calculator? To use this online calculator for Acceleration of Follower for Circular Arc Cam if there's Contact on Circular Flank, enter Angular Velocity of Cam (ω), Radius of Circular Flank (R), Radius of the Base Circle (r1) & Angle Turned by Cam t) and hit the calculate button. Here is how the Acceleration of Follower for Circular Arc Cam if there's Contact on Circular Flank calculation can be explained with given input values -> -3.644857 = 27^2*(4.955-4.98)*cos(22).

FAQ

What is Acceleration of Follower for Circular Arc Cam if there's Contact on Circular Flank?
Acceleration of Follower for Circular Arc Cam if there's Contact on Circular Flank formula is defined as a measure of the rate of change of velocity of the follower in a circular arc cam mechanism when there is contact on the circular flank, which is crucial in designing and optimizing cam-follower systems and is represented as a = ω^2*(R-r1)*cos(θt) or Acceleration of Follower = Angular Velocity of Cam^2*(Radius of Circular Flank-Radius of the Base Circle)*cos(Angle Turned by Cam). Angular velocity of cam refers to how fast an object rotates or revolves relative to another point, Radius of circular flank is any of the line segments from its center to its perimeter, and in more modern usage, it is also their length, Radius of the base circle is any of the line segments from its center to its perimeter, and in more modern usage, it is also their length & Angle turned by cam is obtained for rotation of the cam.
How to calculate Acceleration of Follower for Circular Arc Cam if there's Contact on Circular Flank?
Acceleration of Follower for Circular Arc Cam if there's Contact on Circular Flank formula is defined as a measure of the rate of change of velocity of the follower in a circular arc cam mechanism when there is contact on the circular flank, which is crucial in designing and optimizing cam-follower systems is calculated using Acceleration of Follower = Angular Velocity of Cam^2*(Radius of Circular Flank-Radius of the Base Circle)*cos(Angle Turned by Cam). To calculate Acceleration of Follower for Circular Arc Cam if there's Contact on Circular Flank, you need Angular Velocity of Cam (ω), Radius of Circular Flank (R), Radius of the Base Circle (r1) & Angle Turned by Cam t). With our tool, you need to enter the respective value for Angular Velocity of Cam, Radius of Circular Flank, Radius of the Base Circle & Angle Turned by Cam 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 Acceleration of Follower?
In this formula, Acceleration of Follower uses Angular Velocity of Cam, Radius of Circular Flank, Radius of the Base Circle & Angle Turned by Cam. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Acceleration of Follower = (2*pi*Angular Velocity of Cam^2*Stroke of Follower)/(Angular Displacement of Cam During Out Stroke^2)*sin((2*pi*Angle Through Which Cam Rotates)/(Angular Displacement of Cam During Out Stroke))
  • Acceleration of Follower = Angular Velocity of Cam^2*(Radius of the Base Circle+Radius of Roller)*(2-cos(Angle Turned by Cam from Beginning of Roller))^2/((cos(Angle Turned by Cam from Beginning of Roller))^3)
  • Acceleration of Follower = Angular Velocity of Cam^2*Distance b/w Cam Center and Nose Center*(cos(Angle Turned by Cam When Roller is at Nose Top)+(Distance b/w Roller Centre and Nose Centre^2*Distance b/w Cam Center and Nose Center*cos(2*Angle Turned by Cam When Roller is at Nose Top)+Distance b/w Cam Center and Nose Center^3*(sin(Angle Turned by Cam When Roller is at Nose Top))^4)/sqrt(Distance b/w Roller Centre and Nose Centre^2-Distance b/w Cam Center and Nose Center^2*(sin(Angle Turned by Cam When Roller is at Nose Top))^2))
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