Peripheral Speed of Projection of Point P on Diameter for SHM of Follower Solution

STEP 0: Pre-Calculation Summary
Formula Used
Peripheral Speed = (pi*Stroke of Follower)/(2*Time Required for the Outstroke)
Ps = (pi*S)/(2*to)
This formula uses 1 Constants, 3 Variables
Constants Used
pi - Archimedes' constant Value Taken As 3.14159265358979323846264338327950288
Variables Used
Peripheral Speed - (Measured in Meter per Second) - Peripheral Speed is the speed at which the follower moves in a circular path around the cam, typically measured in meters per second.
Stroke of Follower - (Measured in Meter) - Stroke of Follower is the maximum distance the follower moves away from the cam's surface during the return stroke in a cam-follower mechanism.
Time Required for the Outstroke - (Measured in Second) - Time Required for the Outstroke is the duration taken by the follower to move out of the cam during one complete cycle of the cam's rotation.
STEP 1: Convert Input(s) to Base Unit
Stroke of Follower: 20 Meter --> 20 Meter No Conversion Required
Time Required for the Outstroke: 0.051704 Second --> 0.051704 Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Ps = (pi*S)/(2*to) --> (pi*20)/(2*0.051704)
Evaluating ... ...
Ps = 607.611142965688
STEP 3: Convert Result to Output's Unit
607.611142965688 Meter per Second --> No Conversion Required
FINAL ANSWER
607.611142965688 607.6111 Meter per Second <-- Peripheral Speed
(Calculation completed in 00.004 seconds)

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Follower Motion Calculators

Peripheral Speed of Projection of Point P' (Projection of Point P on Dia) for SHM of Follower
​ LaTeX ​ Go Peripheral Speed = (pi*Stroke of Follower*Angular Velocity of Cam)/(2*Angular Displacement of Cam during Out Stroke)
Peripheral Speed of Projection of Point P on Diameter for SHM of Follower
​ LaTeX ​ Go Peripheral Speed = (pi*Stroke of Follower)/(2*Time Required for the Outstroke)
Time Required for Out Stroke of Follower when Follower Moves with SHM
​ LaTeX ​ Go Time Required for the Outstroke = Angular Displacement of Cam during Out Stroke/Angular Velocity of Cam
Mean Velocity of Follower during Return Stroke at Uniform Acceleration
​ LaTeX ​ Go Mean Velocity = Stroke of Follower/Time Required for the Return Stroke

Peripheral Speed of Projection of Point P on Diameter for SHM of Follower Formula

​LaTeX ​Go
Peripheral Speed = (pi*Stroke of Follower)/(2*Time Required for the Outstroke)
Ps = (pi*S)/(2*to)

What is a Cam and Follower used for?

The cam and follower mechanism is widely used for operating the inlet and exhaust valves of internal combustion engines. They are used in wall clocks and the feed mechanism of automatic lathe machines. They are also used in paper cutting machines and weaving textile machinery.

What are the different types of motion with which a follower can move?

The follower may move as a slider, reciprocating in a linear direction, or as a rocker, oscillating around a fixed pivot. There can be overlapping functionality between cams and linkages (such as crank-rockers).

How to Calculate Peripheral Speed of Projection of Point P on Diameter for SHM of Follower?

Peripheral Speed of Projection of Point P on Diameter for SHM of Follower calculator uses Peripheral Speed = (pi*Stroke of Follower)/(2*Time Required for the Outstroke) to calculate the Peripheral Speed, Peripheral Speed of Projection of Point P on Diameter for SHM of Follower formula is defined as the speed at which point P moves along the diameter of the circle in simple harmonic motion of the follower in a cam and follower system, which is crucial in understanding the kinematics of the mechanism. Peripheral Speed is denoted by Ps symbol.

How to calculate Peripheral Speed of Projection of Point P on Diameter for SHM of Follower using this online calculator? To use this online calculator for Peripheral Speed of Projection of Point P on Diameter for SHM of Follower, enter Stroke of Follower (S) & Time Required for the Outstroke (to) and hit the calculate button. Here is how the Peripheral Speed of Projection of Point P on Diameter for SHM of Follower calculation can be explained with given input values -> 607.5876 = (pi*20)/(2*0.051704).

FAQ

What is Peripheral Speed of Projection of Point P on Diameter for SHM of Follower?
Peripheral Speed of Projection of Point P on Diameter for SHM of Follower formula is defined as the speed at which point P moves along the diameter of the circle in simple harmonic motion of the follower in a cam and follower system, which is crucial in understanding the kinematics of the mechanism and is represented as Ps = (pi*S)/(2*to) or Peripheral Speed = (pi*Stroke of Follower)/(2*Time Required for the Outstroke). Stroke of Follower is the maximum distance the follower moves away from the cam's surface during the return stroke in a cam-follower mechanism & Time Required for the Outstroke is the duration taken by the follower to move out of the cam during one complete cycle of the cam's rotation.
How to calculate Peripheral Speed of Projection of Point P on Diameter for SHM of Follower?
Peripheral Speed of Projection of Point P on Diameter for SHM of Follower formula is defined as the speed at which point P moves along the diameter of the circle in simple harmonic motion of the follower in a cam and follower system, which is crucial in understanding the kinematics of the mechanism is calculated using Peripheral Speed = (pi*Stroke of Follower)/(2*Time Required for the Outstroke). To calculate Peripheral Speed of Projection of Point P on Diameter for SHM of Follower, you need Stroke of Follower (S) & Time Required for the Outstroke (to). With our tool, you need to enter the respective value for Stroke of Follower & Time Required for the Outstroke 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 Peripheral Speed?
In this formula, Peripheral Speed uses Stroke of Follower & Time Required for the Outstroke. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Peripheral Speed = (pi*Stroke of Follower*Angular Velocity of Cam)/(2*Angular Displacement of Cam during Out Stroke)
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