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Total Torque is the measure of the force that can cause an object to rotate about an axis. Force is what causes an object to accelerate in linear kinematics. Check FAQs
T=T1(ω1ω2-1)
T - Total Torque?T1 - Input Torque on Driving Member?ω1 - Angular Speed of Driving Member?ω2 - Angular Speed of Driven Member?

Braking or Holding Torque on Fixed Member given Input Torque Example

With values
With units
Only example

Here is how the Braking or Holding Torque on Fixed Member given Input Torque equation looks like with Values.

Here is how the Braking or Holding Torque on Fixed Member given Input Torque equation looks like with Units.

Here is how the Braking or Holding Torque on Fixed Member given Input Torque equation looks like.

13.007Edit=17Edit(95.493Edit54.1Edit-1)
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Braking or Holding Torque on Fixed Member given Input Torque Solution

Follow our step by step solution on how to calculate Braking or Holding Torque on Fixed Member given Input Torque?

FIRST Step Consider the formula
T=T1(ω1ω2-1)
Next Step Substitute values of Variables
T=17N*m(95.493rev/min54.1rev/min-1)
Next Step Convert Units
T=17N*m(10rad/s5.6653rad/s-1)
Next Step Prepare to Evaluate
T=17(105.6653-1)
Next Step Evaluate
T=13.0070318299446N*m
LAST Step Rounding Answer
T=13.007N*m

Braking or Holding Torque on Fixed Member given Input Torque Formula Elements

Variables
Total Torque
Total Torque is the measure of the force that can cause an object to rotate about an axis. Force is what causes an object to accelerate in linear kinematics.
Symbol: T
Measurement: TorqueUnit: N*m
Note: Value can be positive or negative.
Input Torque on Driving Member
Input Torque on Driving Member is the measure of the force that can cause an object to rotate about an axis.
Symbol: T1
Measurement: TorqueUnit: N*m
Note: Value should be greater than 0.
Angular Speed of Driving Member
Angular Speed of Driving Member is the speed of the object in rotational motion.
Symbol: ω1
Measurement: Angular VelocityUnit: rev/min
Note: Value should be greater than 0.
Angular Speed of Driven Member
Angular Speed of Driven Member is the rate at which it rotates, determined by the speed of the driving member and the gear ratio between the two.
Symbol: ω2
Measurement: Angular VelocityUnit: rev/min
Note: Value should be greater than 0.

Other Formulas to find Total Torque

​Go Holding or Braking or Fixing Torque on Fixed Member given Input and Output Torque
T=-(T1+T2)
​Go Holding or Braking or Fixing Torque on Fixed Member
T=T1(N1N2-1)

Other formulas in Gear Trains category

​Go Speed Ratio of Compound Gear Train
i=PdP'd
​Go Train Value given Speed of Follower and Driver
Tv=NfNd
​Go Train Value given Number of Teeth
Tv=TdrTd
​Go Train Value of Compound Gear Train given Speed of Driven and Driver Gear
Tv=NnNd'

How to Evaluate Braking or Holding Torque on Fixed Member given Input Torque?

Braking or Holding Torque on Fixed Member given Input Torque evaluator uses Total Torque = Input Torque on Driving Member*(Angular Speed of Driving Member/Angular Speed of Driven Member-1) to evaluate the Total Torque, Braking or Holding Torque on Fixed Member given Input Torque is the measure of the force that can cause an object to rotate about an axis. Total Torque is denoted by T symbol.

How to evaluate Braking or Holding Torque on Fixed Member given Input Torque using this online evaluator? To use this online evaluator for Braking or Holding Torque on Fixed Member given Input Torque, enter Input Torque on Driving Member (T1), Angular Speed of Driving Member 1) & Angular Speed of Driven Member 2) and hit the calculate button.

FAQs on Braking or Holding Torque on Fixed Member given Input Torque

What is the formula to find Braking or Holding Torque on Fixed Member given Input Torque?
The formula of Braking or Holding Torque on Fixed Member given Input Torque is expressed as Total Torque = Input Torque on Driving Member*(Angular Speed of Driving Member/Angular Speed of Driven Member-1). Here is an example- -2.833333 = 17*(10.0000000146608/5.6653387516851-1).
How to calculate Braking or Holding Torque on Fixed Member given Input Torque?
With Input Torque on Driving Member (T1), Angular Speed of Driving Member 1) & Angular Speed of Driven Member 2) we can find Braking or Holding Torque on Fixed Member given Input Torque using the formula - Total Torque = Input Torque on Driving Member*(Angular Speed of Driving Member/Angular Speed of Driven Member-1).
What are the other ways to Calculate Total Torque?
Here are the different ways to Calculate Total Torque-
  • Total Torque=-(Input Torque on Driving Member+Output Torque or Load Torque on Driven Member)OpenImg
  • Total Torque=Input Torque on Driving Member*(Angular Speed of Driving Member in RPM/Angular Speed of Driven Member in RPM-1)OpenImg
Can the Braking or Holding Torque on Fixed Member given Input Torque be negative?
Yes, the Braking or Holding Torque on Fixed Member given Input Torque, measured in Torque can be negative.
Which unit is used to measure Braking or Holding Torque on Fixed Member given Input Torque?
Braking or Holding Torque on Fixed Member given Input Torque is usually measured using the Newton Meter[N*m] for Torque. Newton Centimeter[N*m], Newton Millimeter[N*m], Kilonewton Meter[N*m] are the few other units in which Braking or Holding Torque on Fixed Member given Input Torque can be measured.
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