Radius of Rim of Pulley given Torque Transmitted by Pulley Solution

STEP 0: Pre-Calculation Summary
Formula Used
Radius of Rim of Pulley = Torque Transmitted by Pulley/(Tangential Force at End of Each Pulley Arm*(Number of Arms in Pulley/2))
R = Mt/(P*(Npu/2))
This formula uses 4 Variables
Variables Used
Radius of Rim of Pulley - (Measured in Meter) - The Radius of Rim of Pulley is the radius of the rim (the upper or outer edge of an object, typically something circular or approximately circular) of the pulley.
Torque Transmitted by Pulley - (Measured in Newton Meter) - Torque Transmitted by Pulley is the amount of torque transmitted by the pulley.
Tangential Force at End of Each Pulley Arm - (Measured in Newton) - Tangential Force at End of Each Pulley Arm is the amount of force present or acting at the end of each arm of the pulley.
Number of Arms in Pulley - Number of Arms in Pulley is the total number of central arms of a pulley.
STEP 1: Convert Input(s) to Base Unit
Torque Transmitted by Pulley: 88800 Newton Millimeter --> 88.8 Newton Meter (Check conversion ​here)
Tangential Force at End of Each Pulley Arm: 300 Newton --> 300 Newton No Conversion Required
Number of Arms in Pulley: 4 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
R = Mt/(P*(Npu/2)) --> 88.8/(300*(4/2))
Evaluating ... ...
R = 0.148
STEP 3: Convert Result to Output's Unit
0.148 Meter -->148 Millimeter (Check conversion ​here)
FINAL ANSWER
148 Millimeter <-- Radius of Rim of Pulley
(Calculation completed in 00.004 seconds)

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Osmania University (OU), Hyderabad
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Arms of Cast Iron Pulley Calculators

Tangential Force at End of Each Arm of Pulley given Torque Transmitted by Pulley
​ LaTeX ​ Go Tangential Force at End of Each Pulley Arm = Torque Transmitted by Pulley/(Radius of Rim of Pulley*(Number of Arms in Pulley/2))
Radius of Rim of Pulley given Torque Transmitted by Pulley
​ LaTeX ​ Go Radius of Rim of Pulley = Torque Transmitted by Pulley/(Tangential Force at End of Each Pulley Arm*(Number of Arms in Pulley/2))
Number of Arms of Pulley given Torque Transmitted by Pulley
​ LaTeX ​ Go Number of Arms in Pulley = 2*Torque Transmitted by Pulley/(Tangential Force at End of Each Pulley Arm*Radius of Rim of Pulley)
Torque Transmitted by Pulley
​ LaTeX ​ Go Torque Transmitted by Pulley = Tangential Force at End of Each Pulley Arm*Radius of Rim of Pulley*(Number of Arms in Pulley/2)

Radius of Rim of Pulley given Torque Transmitted by Pulley Formula

​LaTeX ​Go
Radius of Rim of Pulley = Torque Transmitted by Pulley/(Tangential Force at End of Each Pulley Arm*(Number of Arms in Pulley/2))
R = Mt/(P*(Npu/2))

What is Torque?

Torque is the rotational equivalent of linear force.[1] It is also referred to as the moment, moment of force, rotational force or turning effect, depending on the field of study.

How to Calculate Radius of Rim of Pulley given Torque Transmitted by Pulley?

Radius of Rim of Pulley given Torque Transmitted by Pulley calculator uses Radius of Rim of Pulley = Torque Transmitted by Pulley/(Tangential Force at End of Each Pulley Arm*(Number of Arms in Pulley/2)) to calculate the Radius of Rim of Pulley, Radius of Rim of Pulley given Torque Transmitted by Pulley formula is defined as a method to determine the radius of a pulley rim based on the torque it transmits, which is essential for effective belt drive design in mechanical systems. Radius of Rim of Pulley is denoted by R symbol.

How to calculate Radius of Rim of Pulley given Torque Transmitted by Pulley using this online calculator? To use this online calculator for Radius of Rim of Pulley given Torque Transmitted by Pulley, enter Torque Transmitted by Pulley (Mt), Tangential Force at End of Each Pulley Arm (P) & Number of Arms in Pulley (Npu) and hit the calculate button. Here is how the Radius of Rim of Pulley given Torque Transmitted by Pulley calculation can be explained with given input values -> 125000 = 88.8/(300*(4/2)).

FAQ

What is Radius of Rim of Pulley given Torque Transmitted by Pulley?
Radius of Rim of Pulley given Torque Transmitted by Pulley formula is defined as a method to determine the radius of a pulley rim based on the torque it transmits, which is essential for effective belt drive design in mechanical systems and is represented as R = Mt/(P*(Npu/2)) or Radius of Rim of Pulley = Torque Transmitted by Pulley/(Tangential Force at End of Each Pulley Arm*(Number of Arms in Pulley/2)). Torque Transmitted by Pulley is the amount of torque transmitted by the pulley, Tangential Force at End of Each Pulley Arm is the amount of force present or acting at the end of each arm of the pulley & Number of Arms in Pulley is the total number of central arms of a pulley.
How to calculate Radius of Rim of Pulley given Torque Transmitted by Pulley?
Radius of Rim of Pulley given Torque Transmitted by Pulley formula is defined as a method to determine the radius of a pulley rim based on the torque it transmits, which is essential for effective belt drive design in mechanical systems is calculated using Radius of Rim of Pulley = Torque Transmitted by Pulley/(Tangential Force at End of Each Pulley Arm*(Number of Arms in Pulley/2)). To calculate Radius of Rim of Pulley given Torque Transmitted by Pulley, you need Torque Transmitted by Pulley (Mt), Tangential Force at End of Each Pulley Arm (P) & Number of Arms in Pulley (Npu). With our tool, you need to enter the respective value for Torque Transmitted by Pulley, Tangential Force at End of Each Pulley Arm & Number of Arms in Pulley 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 Radius of Rim of Pulley?
In this formula, Radius of Rim of Pulley uses Torque Transmitted by Pulley, Tangential Force at End of Each Pulley Arm & Number of Arms in Pulley. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Radius of Rim of Pulley = Bending Moment in Pulley's Arm/Tangential Force at End of Each Pulley Arm
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