Power Transmitted by Flat Belt for Design Purpose Formula

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Design Power of Belt Drive is defined as the power transmitted on the basis of the design. Check FAQs
Pd=PtFa
Pd - Design Power of Belt Drive?Pt - Power transmitted by belt?Fa - Load Correction Factor?

Power Transmitted by Flat Belt for Design Purpose Example

With values
With units
Only example

Here is how the Power Transmitted by Flat Belt for Design Purpose equation looks like with Values.

Here is how the Power Transmitted by Flat Belt for Design Purpose equation looks like with Units.

Here is how the Power Transmitted by Flat Belt for Design Purpose equation looks like.

7.4175Edit=6.45Edit1.15Edit
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Power Transmitted by Flat Belt for Design Purpose Solution

Follow our step by step solution on how to calculate Power Transmitted by Flat Belt for Design Purpose?

FIRST Step Consider the formula
Pd=PtFa
Next Step Substitute values of Variables
Pd=6.45kW1.15
Next Step Convert Units
Pd=6450W1.15
Next Step Prepare to Evaluate
Pd=64501.15
Next Step Evaluate
Pd=7417.5W
LAST Step Convert to Output's Unit
Pd=7.4175kW

Power Transmitted by Flat Belt for Design Purpose Formula Elements

Variables
Design Power of Belt Drive
Design Power of Belt Drive is defined as the power transmitted on the basis of the design.
Symbol: Pd
Measurement: PowerUnit: kW
Note: Value should be greater than 0.
Power transmitted by belt
Power transmitted by belt is the amount of power that is transmitted from the belt of a belt drive to the pulley.
Symbol: Pt
Measurement: PowerUnit: kW
Note: Value should be greater than 0.
Load Correction Factor
Load Correction Factor increases the power factor of a load, improving efficiency for the distribution system to which it is attached.
Symbol: Fa
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.

Other formulas in Maximum Power Conditions category

​Go Initial Tension in Belt Drive
Pi=P1+P22
​Go Belt Tension in Tight Side of Belt given Initial Tension in Belt
P1=2Pi-P2
​Go Belt Tension in Loose Side of Belt given Initial Tension in Belt
P2=2Pi-P1
​Go Optimum Velocity of Belt for Maximum Power Transmission
vo=Pi3m

How to Evaluate Power Transmitted by Flat Belt for Design Purpose?

Power Transmitted by Flat Belt for Design Purpose evaluator uses Design Power of Belt Drive = Power transmitted by belt*Load Correction Factor to evaluate the Design Power of Belt Drive, The Power Transmitted by Flat Belt for Design Purpose formula is defined as the power transmitted by the flat belt for only design purposes. Design Power of Belt Drive is denoted by Pd symbol.

How to evaluate Power Transmitted by Flat Belt for Design Purpose using this online evaluator? To use this online evaluator for Power Transmitted by Flat Belt for Design Purpose, enter Power transmitted by belt (Pt) & Load Correction Factor (Fa) and hit the calculate button.

FAQs on Power Transmitted by Flat Belt for Design Purpose

What is the formula to find Power Transmitted by Flat Belt for Design Purpose?
The formula of Power Transmitted by Flat Belt for Design Purpose is expressed as Design Power of Belt Drive = Power transmitted by belt*Load Correction Factor. Here is an example- 0.007417 = 6450*1.15.
How to calculate Power Transmitted by Flat Belt for Design Purpose?
With Power transmitted by belt (Pt) & Load Correction Factor (Fa) we can find Power Transmitted by Flat Belt for Design Purpose using the formula - Design Power of Belt Drive = Power transmitted by belt*Load Correction Factor.
Can the Power Transmitted by Flat Belt for Design Purpose be negative?
No, the Power Transmitted by Flat Belt for Design Purpose, measured in Power cannot be negative.
Which unit is used to measure Power Transmitted by Flat Belt for Design Purpose?
Power Transmitted by Flat Belt for Design Purpose is usually measured using the Kilowatt[kW] for Power. Watt[kW], Milliwatt[kW], Microwatt[kW] are the few other units in which Power Transmitted by Flat Belt for Design Purpose can be measured.
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