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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=μfWtDscosecα22
T - Total Torque?μf - Coefficient of Friction?Wt - Load Transmitted Over Bearing Surface?Ds - Shaft Diameter?α - Semi Angle of Cone?

Frictional Torque on Conical Pivot Bearing by Uniform Wear Example

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With units
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Here is how the Frictional Torque on Conical Pivot Bearing by Uniform Wear equation looks like with Values.

Here is how the Frictional Torque on Conical Pivot Bearing by Uniform Wear equation looks like with Units.

Here is how the Frictional Torque on Conical Pivot Bearing by Uniform Wear equation looks like.

2.3794Edit=0.4Edit24Edit0.5Editcosec30.2865Edit22
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Frictional Torque on Conical Pivot Bearing by Uniform Wear Solution

Follow our step by step solution on how to calculate Frictional Torque on Conical Pivot Bearing by Uniform Wear?

FIRST Step Consider the formula
T=μfWtDscosecα22
Next Step Substitute values of Variables
T=0.424N0.5mcosec30.2865°22
Next Step Convert Units
T=0.424N0.5mcosec0.5286rad22
Next Step Prepare to Evaluate
T=0.4240.5cosec0.528622
Next Step Evaluate
T=2.3794184326073N*m
LAST Step Rounding Answer
T=2.3794N*m

Frictional Torque on Conical Pivot Bearing by Uniform Wear Formula Elements

Variables
Functions
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.
Coefficient of Friction
Coefficient of Friction(μ) is the ratio defining the force that resists the motion of one body in relation to another body in contact with it.
Symbol: μf
Measurement: NAUnit: Unitless
Note: Value should be less than 1.
Load Transmitted Over Bearing Surface
Load Transmitted Over Bearing Surface is the weight of load to be lifted.
Symbol: Wt
Measurement: ForceUnit: N
Note: Value should be greater than 0.
Shaft Diameter
Shaft Diameter is the diameter of the shaft of the pile.
Symbol: Ds
Measurement: LengthUnit: m
Note: Value can be positive or negative.
Semi Angle of Cone
Semi Angle of Cone is the semi-vertical angle formed by the cone.
Symbol: α
Measurement: AngleUnit: °
Note: Value should be greater than 0.
sec
Secant is a trigonometric function that is defined ratio of the hypotenuse to the shorter side adjacent to an acute angle (in a right-angled triangle); the reciprocal of a cosine.
Syntax: sec(Angle)
cosec
The cosecant function is a trigonometric function that is the reciprocal of the sine function.
Syntax: cosec(Angle)

Other Formulas to find Total Torque

​Go Total Frictional Torque on Conical Pivot Bearing Considering Uniform Pressure
T=μfWtDscosecα3
​Go Frictional Torque on Conical Pivot Bearing by Uniform Pressure
T=μfWtDshs3
​Go Total Frictional Torque on Conical Pivot Bearing Considering Uniform Wear when Slant Height of Cone
T=μfWths2
​Go Total Frictional Torque on Flat Pivot Bearing Considering Uniform Wear
T=μfWtR2

Other formulas in Pivot Bearing category

​Go Mean Radius of Collar
Rc=R1+R22
​Go Pressure over Bearing Area of Flat Pivot Bearing
pi=WtπR2
​Go Total Vertical Load Transmitted to Conical Pivot Bearing for Uniform Pressure
Wt=π(Ds2)2pi

How to Evaluate Frictional Torque on Conical Pivot Bearing by Uniform Wear?

Frictional Torque on Conical Pivot Bearing by Uniform Wear evaluator uses Total Torque = (Coefficient of Friction*Load Transmitted Over Bearing Surface*Shaft Diameter*cosec(Semi Angle of Cone)/2)/2 to evaluate the Total Torque, Frictional Torque on Conical Pivot Bearing by Uniform Wear is the torque required to overcome friction between the bearing surfaces, assuming that wear is distributed evenly across the contact area. Total Torque is denoted by T symbol.

How to evaluate Frictional Torque on Conical Pivot Bearing by Uniform Wear using this online evaluator? To use this online evaluator for Frictional Torque on Conical Pivot Bearing by Uniform Wear, enter Coefficient of Friction f), Load Transmitted Over Bearing Surface (Wt), Shaft Diameter (Ds) & Semi Angle of Cone (α) and hit the calculate button.

FAQs on Frictional Torque on Conical Pivot Bearing by Uniform Wear

What is the formula to find Frictional Torque on Conical Pivot Bearing by Uniform Wear?
The formula of Frictional Torque on Conical Pivot Bearing by Uniform Wear is expressed as Total Torque = (Coefficient of Friction*Load Transmitted Over Bearing Surface*Shaft Diameter*cosec(Semi Angle of Cone)/2)/2. Here is an example- 2.379418 = (0.4*24*0.5*cosec(0.528599999116497)/2)/2.
How to calculate Frictional Torque on Conical Pivot Bearing by Uniform Wear?
With Coefficient of Friction f), Load Transmitted Over Bearing Surface (Wt), Shaft Diameter (Ds) & Semi Angle of Cone (α) we can find Frictional Torque on Conical Pivot Bearing by Uniform Wear using the formula - Total Torque = (Coefficient of Friction*Load Transmitted Over Bearing Surface*Shaft Diameter*cosec(Semi Angle of Cone)/2)/2. This formula also uses Secant (sec), Cosecant (cosec) function(s).
What are the other ways to Calculate Total Torque?
Here are the different ways to Calculate Total Torque-
  • Total Torque=Coefficient of Friction*Load Transmitted Over Bearing Surface*Shaft Diameter*cosec(Semi Angle of Cone)/3OpenImg
  • Total Torque=(Coefficient of Friction*Load Transmitted Over Bearing Surface*Shaft Diameter*Slant Height)/3OpenImg
  • Total Torque=(Coefficient of Friction*Load Transmitted Over Bearing Surface*Slant Height)/2OpenImg
Can the Frictional Torque on Conical Pivot Bearing by Uniform Wear be negative?
Yes, the Frictional Torque on Conical Pivot Bearing by Uniform Wear, measured in Torque can be negative.
Which unit is used to measure Frictional Torque on Conical Pivot Bearing by Uniform Wear?
Frictional Torque on Conical Pivot Bearing by Uniform Wear 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 Frictional Torque on Conical Pivot Bearing by Uniform Wear can be measured.
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