Standard Capacity of selected Belt given Power transmitted by Synchronous Belt Solution

STEP 0: Pre-Calculation Summary
Formula Used
Standard Capacity of Belt = Power Transmitted by Belt*Service Correction Factor
Ps = Pt*Cs
This formula uses 3 Variables
Variables Used
Standard Capacity of Belt - (Measured in Watt) - Standard Capacity of Belt is the power capacity of the belt from which the power needs to be transmitted to the other end.
Power Transmitted by Belt - (Measured in Watt) - Power Transmitted by Belt is the amount of power that is transmitted from the belt of a belt drive to the pulley.
Service Correction Factor - Service correction factor or simply service factor is defined as the ratio of maximum torque to the rated torque.
STEP 1: Convert Input(s) to Base Unit
Power Transmitted by Belt: 6.45 Kilowatt --> 6450 Watt (Check conversion ​here)
Service Correction Factor: 1.3 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Ps = Pt*Cs --> 6450*1.3
Evaluating ... ...
Ps = 8385
STEP 3: Convert Result to Output's Unit
8385 Watt -->8.385 Kilowatt (Check conversion ​here)
FINAL ANSWER
8.385 Kilowatt <-- Standard Capacity of Belt
(Calculation completed in 00.004 seconds)

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Synchronous Belt Drives Calculators

Transmission Ratio of Synchronous Belt Drive given no. of Teeth in Smaller and Larger Pulley
​ LaTeX ​ Go Transmission Ratio of Belt Drive = Number of Teeth on Larger Pulley/Number of Teeth on Smaller Pulley
Transmission Ratio of Synchronous Belt Drive given Speed of Smaller and Larger Pulley
​ LaTeX ​ Go Transmission Ratio of Belt Drive = Speed of Smaller Pulley/Speed of Larger Pulley
Speed of Smaller Pulley given Transmission Ratio of Synchronous Belt Drive
​ LaTeX ​ Go Speed of Smaller Pulley = Speed of Larger Pulley*Transmission Ratio of Belt Drive
Speed of Larger Pulley given Transmission Ratio of Synchronous Belt Drive
​ LaTeX ​ Go Speed of Larger Pulley = Speed of Smaller Pulley/Transmission Ratio of Belt Drive

Standard Capacity of selected Belt given Power transmitted by Synchronous Belt Formula

​LaTeX ​Go
Standard Capacity of Belt = Power Transmitted by Belt*Service Correction Factor
Ps = Pt*Cs

What is the significance of Service factor ?

In practical applications, the torque developed by the source of power varies during the work cycle. Similarly, the torque required by the driven machine also varies. The two sides are balanced by means of a flywheel. In gear design, the maximum force (due to maximum torque) is the criterion. This is accounted by means of a service factor. The service factor is defined as the ratio of maximum torque to the rated torque.

What are the factors affecting power transmission by belt drive ?

Since belt drive is a friction drive, so power transmission capacity primarily relies on the frictional characteristics of the mating surfaces. Higher the coefficient of friction between the belt and pulley, higher will be the power transmission capacity; however, heat generation and wear will also be more. Synchronous belt drive is the highly efficient system of power transmission as it has molded belt teeth meshing with sprocket teeth. Synchronous belts wrap around the sprocket by means of flexion and not by rotation of articulated parts as do chains. This eliminates one of the causes of wear and noise. Synchronous belt does not allow slippage as there are drives where synchronicity is a necessity and any slippage can cause damage.

How to Calculate Standard Capacity of selected Belt given Power transmitted by Synchronous Belt?

Standard Capacity of selected Belt given Power transmitted by Synchronous Belt calculator uses Standard Capacity of Belt = Power Transmitted by Belt*Service Correction Factor to calculate the Standard Capacity of Belt, Standard Capacity of selected Belt given Power transmitted by Synchronous Belt formula is defined as a means to evaluate the maximum load-carrying capability of a synchronous belt based on the power it transmits, ensuring efficient and reliable machine operation. Standard Capacity of Belt is denoted by Ps symbol.

How to calculate Standard Capacity of selected Belt given Power transmitted by Synchronous Belt using this online calculator? To use this online calculator for Standard Capacity of selected Belt given Power transmitted by Synchronous Belt, enter Power Transmitted by Belt (Pt) & Service Correction Factor (Cs) and hit the calculate button. Here is how the Standard Capacity of selected Belt given Power transmitted by Synchronous Belt calculation can be explained with given input values -> 0.008385 = 6450*1.3.

FAQ

What is Standard Capacity of selected Belt given Power transmitted by Synchronous Belt?
Standard Capacity of selected Belt given Power transmitted by Synchronous Belt formula is defined as a means to evaluate the maximum load-carrying capability of a synchronous belt based on the power it transmits, ensuring efficient and reliable machine operation and is represented as Ps = Pt*Cs or Standard Capacity of Belt = Power Transmitted by Belt*Service Correction Factor. Power Transmitted by Belt is the amount of power that is transmitted from the belt of a belt drive to the pulley & Service correction factor or simply service factor is defined as the ratio of maximum torque to the rated torque.
How to calculate Standard Capacity of selected Belt given Power transmitted by Synchronous Belt?
Standard Capacity of selected Belt given Power transmitted by Synchronous Belt formula is defined as a means to evaluate the maximum load-carrying capability of a synchronous belt based on the power it transmits, ensuring efficient and reliable machine operation is calculated using Standard Capacity of Belt = Power Transmitted by Belt*Service Correction Factor. To calculate Standard Capacity of selected Belt given Power transmitted by Synchronous Belt, you need Power Transmitted by Belt (Pt) & Service Correction Factor (Cs). With our tool, you need to enter the respective value for Power Transmitted by Belt & Service Correction Factor and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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