Number of Teeth in Larger Pulley given Transmission Ratio of Synchronous Belt Drive Solution

STEP 0: Pre-Calculation Summary
Formula Used
Number of Teeth on Larger Pulley = Number of Teeth on Smaller Pulley*Transmission Ratio of Belt Drive
T2 = T1*i
This formula uses 3 Variables
Variables Used
Number of Teeth on Larger Pulley - Number of Teeth on Larger Pulley is the total teeth present on the larger pulley.
Number of Teeth on Smaller Pulley - Number of Teeth on Smaller Pulley is the total teeth present on the smaller pulley.
Transmission Ratio of Belt Drive - The Transmission Ratio of Belt Drive is defined as the ratio of the large to small pulley size and can be calculated by dividing the number of teeth in the large pulley by those in the small pulley.
STEP 1: Convert Input(s) to Base Unit
Number of Teeth on Smaller Pulley: 20 --> No Conversion Required
Transmission Ratio of Belt Drive: 3 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
T2 = T1*i --> 20*3
Evaluating ... ...
T2 = 60
STEP 3: Convert Result to Output's Unit
60 --> No Conversion Required
FINAL ANSWER
60 <-- Number of Teeth on Larger Pulley
(Calculation completed in 00.008 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

Number of Teeth in Larger Pulley given Transmission Ratio of Synchronous Belt Drive Formula

​LaTeX ​Go
Number of Teeth on Larger Pulley = Number of Teeth on Smaller Pulley*Transmission Ratio of Belt Drive
T2 = T1*i

What is Synchronous Belt?

A toothed belt; timing belt; cogged belt; cog belt; or synchronous belt is a flexible belt with teeth moulded onto its inner surface. It is sometimes designed to run over matching toothed pulleys or sprockets. Toothed belts are used in a wide array of mechanical devices, where high-power transmission is desired.

What are the advantages of synchronous belt drive?

The advantages of synchronous belt drive are,
no slippage and creep of the belt on sprockets. Because of this, there is no place for loss of rotations and powers at the given time. No need for high assembly loads as v-belts to obtain slipless and creepless drive. This means that there are no excessive radial loads on the motor and shafts. They can be used in machinery where precision is very important. At power transmission of 3D printers, robotic mechanisms, synchronous belt drive mechanisms are generally used.

How to Calculate Number of Teeth in Larger Pulley given Transmission Ratio of Synchronous Belt Drive?

Number of Teeth in Larger Pulley given Transmission Ratio of Synchronous Belt Drive calculator uses Number of Teeth on Larger Pulley = Number of Teeth on Smaller Pulley*Transmission Ratio of Belt Drive to calculate the Number of Teeth on Larger Pulley, The Number of Teeth in Larger Pulley given Transmission Ratio of Synchronous Belt Drive formula is defined as a method to determine the size relationship between pulleys in a synchronous belt drive system, ensuring proper transmission of motion and power. Number of Teeth on Larger Pulley is denoted by T2 symbol.

How to calculate Number of Teeth in Larger Pulley given Transmission Ratio of Synchronous Belt Drive using this online calculator? To use this online calculator for Number of Teeth in Larger Pulley given Transmission Ratio of Synchronous Belt Drive, enter Number of Teeth on Smaller Pulley (T1) & Transmission Ratio of Belt Drive (i) and hit the calculate button. Here is how the Number of Teeth in Larger Pulley given Transmission Ratio of Synchronous Belt Drive calculation can be explained with given input values -> 60 = 20*3.

FAQ

What is Number of Teeth in Larger Pulley given Transmission Ratio of Synchronous Belt Drive?
The Number of Teeth in Larger Pulley given Transmission Ratio of Synchronous Belt Drive formula is defined as a method to determine the size relationship between pulleys in a synchronous belt drive system, ensuring proper transmission of motion and power and is represented as T2 = T1*i or Number of Teeth on Larger Pulley = Number of Teeth on Smaller Pulley*Transmission Ratio of Belt Drive. Number of Teeth on Smaller Pulley is the total teeth present on the smaller pulley & The Transmission Ratio of Belt Drive is defined as the ratio of the large to small pulley size and can be calculated by dividing the number of teeth in the large pulley by those in the small pulley.
How to calculate Number of Teeth in Larger Pulley given Transmission Ratio of Synchronous Belt Drive?
The Number of Teeth in Larger Pulley given Transmission Ratio of Synchronous Belt Drive formula is defined as a method to determine the size relationship between pulleys in a synchronous belt drive system, ensuring proper transmission of motion and power is calculated using Number of Teeth on Larger Pulley = Number of Teeth on Smaller Pulley*Transmission Ratio of Belt Drive. To calculate Number of Teeth in Larger Pulley given Transmission Ratio of Synchronous Belt Drive, you need Number of Teeth on Smaller Pulley (T1) & Transmission Ratio of Belt Drive (i). With our tool, you need to enter the respective value for Number of Teeth on Smaller Pulley & Transmission Ratio of Belt Drive 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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