Velocity Ratio of Compound Belt Drive given Product of Diameter of Driven Solution

STEP 0: Pre-Calculation Summary
Formula Used
Velocity Ratio = Product of Diameters of Drivers/Product of Diameters of Drivens
i = P1/P2
This formula uses 3 Variables
Variables Used
Velocity Ratio - Velocity ratio is the distance through which any part of a machine moves to that which the driving part moves during the same time.
Product of Diameters of Drivers - Product of diameters of drivers is the value obtained after the multiplication of all the diameters of the driver pulley.
Product of Diameters of Drivens - The product of diameters of drivens is the value obtained after the multiplication of all the diameters of the driven pulley.
STEP 1: Convert Input(s) to Base Unit
Product of Diameters of Drivers: 40 --> No Conversion Required
Product of Diameters of Drivens: 60 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
i = P1/P2 --> 40/60
Evaluating ... ...
i = 0.666666666666667
STEP 3: Convert Result to Output's Unit
0.666666666666667 --> No Conversion Required
FINAL ANSWER
0.666666666666667 โ‰ˆ 0.666667 <-- Velocity Ratio
(Calculation completed in 00.004 seconds)

Credits

Created by Anshika Arya
National Institute Of Technology (NIT), Hamirpur
Anshika Arya has created this Calculator and 2000+ more calculators!
Verified by Team Softusvista
Softusvista Office (Pune), India
Team Softusvista has verified this Calculator and 1100+ more calculators!

13 Gear Trains Calculators

Output Torque on Driven Member given Angular Speed of Driven and Driver
Go Output Torque or Load Torque on Driven Member = Input Torque on Driving Member*Angular Speed of Driving Member in RPM/Angular Speed of Driven Member in RPM
Output Torque or Resisting or Load Torque on Driven Member
Go Output Torque or Load Torque on Driven Member = -Input Torque on Driving Member*Angular Speed of Driving Member/Angular Speed of Driven member
Holding or Braking or Fixing Torque on Fixed Member
Go Total Torque = Input Torque on Driving Member*(Angular Speed of Driving Member in RPM/Angular Speed of Driven Member in RPM-1)
Braking or Holding Torque on Fixed Member given Input Torque
Go Total Torque = Input Torque on Driving Member*(Angular Speed of Driving Member/Angular Speed of Driven member-1)
Holding or Braking or Fixing Torque on Fixed Member given Input and Output Torque
Go Total Torque = -(Input Torque on Driving Member+Output Torque or Load Torque on Driven Member)
Speed Ratio of Compound Gear Train
Go Velocity Ratio = Product of Number of Teeth on Driven/Product of Number of Teeth on Drivers
Train Value of Compound Gear Train given product of Teeth on Driven and Driver Gear
Go Train Value = Product of Number of Teeth on Drivers/Product of Number of Teeth on Driven
Velocity Ratio of Compound Belt Drive given Product of Diameter of Driven
Go Velocity Ratio = Product of Diameters of Drivers/Product of Diameters of Drivens
Velocity Ratio of Compound Belt Drive
Go Velocity Ratio = Speed of Last Driven Pulley/Speed of First Driver
Train Value of Compound Gear Train given Speed of Driven and Driver Gear
Go Train Value = Speed of Last Driven Pulley/Speed of First Driver
Velocity Ratio
Go Velocity Ratio = No. of Teeth on Driven/No. of Teeth on Driver
Train Value given Number of Teeth
Go Train Value = No. of Teeth on Driver/No. of Teeth on Driven
Train Value given Speed of Follower and Driver
Go Train Value = Speed of Follower/Speed of Driver

10+ Velocity Ratio Calculators

Velocity Ratio of Belt given Creep of Belt
Go Velocity Ratio = (Diameter of Driver*(Young's Modulus of Belt+sqrt(Stress in Slack Side of Belt)))/(Diameter of Follower*(Young's Modulus of Belt+sqrt(Stress in Tight Side of Belt)))
Velocity Ratio of Belt given Total Percentage Slip
Go Velocity Ratio = (Diameter of Driver+Belt Thickness)*(1-0.01*Total Percentage of Slip)/(Diameter of Follower+Belt Thickness)
Velocity Ratio of Simple Belt Drive when Thickness Considered
Go Velocity Ratio = (Diameter of Driver+Belt Thickness)/(Diameter of Follower+Belt Thickness)
Peripheral Velocity of Follower Pulley
Go Peripheral Velocity of Pulley = pi*Diameter of Follower*Speed of Follower
Peripheral Velocity of Driving Pulley
Go Peripheral Velocity of Pulley = pi*Diameter of Driver*Speed of Driver
Velocity Ratio of Compound Belt Drive given Product of Diameter of Driven
Go Velocity Ratio = Product of Diameters of Drivers/Product of Diameters of Drivens
Velocity Ratio of Compound Belt Drive
Go Velocity Ratio = Speed of Last Driven Pulley/Speed of First Driver
Velocity Ratio
Go Velocity Ratio = No. of Teeth on Driven/No. of Teeth on Driver
Velocity Ratio of Simple Belt Drive when Thickness Not Considered
Go Velocity Ratio = Diameter of Driver/Diameter of Follower
Velocity Ratio of Belt Drive
Go Velocity Ratio = Speed of Follower/Speed of Driver

Velocity Ratio of Compound Belt Drive given Product of Diameter of Driven Formula

Velocity Ratio = Product of Diameters of Drivers/Product of Diameters of Drivens
i = P1/P2

What is a belt drive used for?

Belt drive, in machinery, a pair of pulleys attached to usually parallel shafts and connected by an encircling flexible belt (band) that can serve to transmit and modify rotary motion from one shaft to the other.

What is velocity ratio of a pulley?

The theoretical mechanical advantage of a system is the ratio of the force that performs the useful work to the force applied, assuming there is no friction in the system. Velocity ratio is defined as the ratio of the distance moved by effort and load, in the same time interval.

How to Calculate Velocity Ratio of Compound Belt Drive given Product of Diameter of Driven?

Velocity Ratio of Compound Belt Drive given Product of Diameter of Driven calculator uses Velocity Ratio = Product of Diameters of Drivers/Product of Diameters of Drivens to calculate the Velocity Ratio, Velocity Ratio of Compound Belt Drive given Product of Diameter of Driven is defined as the ratio of the distance moved by effort and load, in the same time interval. Velocity Ratio is denoted by i symbol.

How to calculate Velocity Ratio of Compound Belt Drive given Product of Diameter of Driven using this online calculator? To use this online calculator for Velocity Ratio of Compound Belt Drive given Product of Diameter of Driven, enter Product of Diameters of Drivers (P1) & Product of Diameters of Drivens (P2) and hit the calculate button. Here is how the Velocity Ratio of Compound Belt Drive given Product of Diameter of Driven calculation can be explained with given input values -> 0.666667 = 40/60.

FAQ

What is Velocity Ratio of Compound Belt Drive given Product of Diameter of Driven?
Velocity Ratio of Compound Belt Drive given Product of Diameter of Driven is defined as the ratio of the distance moved by effort and load, in the same time interval and is represented as i = P1/P2 or Velocity Ratio = Product of Diameters of Drivers/Product of Diameters of Drivens. Product of diameters of drivers is the value obtained after the multiplication of all the diameters of the driver pulley & The product of diameters of drivens is the value obtained after the multiplication of all the diameters of the driven pulley.
How to calculate Velocity Ratio of Compound Belt Drive given Product of Diameter of Driven?
Velocity Ratio of Compound Belt Drive given Product of Diameter of Driven is defined as the ratio of the distance moved by effort and load, in the same time interval is calculated using Velocity Ratio = Product of Diameters of Drivers/Product of Diameters of Drivens. To calculate Velocity Ratio of Compound Belt Drive given Product of Diameter of Driven, you need Product of Diameters of Drivers (P1) & Product of Diameters of Drivens (P2). With our tool, you need to enter the respective value for Product of Diameters of Drivers & Product of Diameters of Drivens and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Velocity Ratio?
In this formula, Velocity Ratio uses Product of Diameters of Drivers & Product of Diameters of Drivens. We can use 10 other way(s) to calculate the same, which is/are as follows -
  • Velocity Ratio = No. of Teeth on Driven/No. of Teeth on Driver
  • Velocity Ratio = Product of Number of Teeth on Driven/Product of Number of Teeth on Drivers
  • Velocity Ratio = Speed of Last Driven Pulley/Speed of First Driver
  • Velocity Ratio = No. of Teeth on Driven/No. of Teeth on Driver
  • Velocity Ratio = Speed of Follower/Speed of Driver
  • Velocity Ratio = Speed of Last Driven Pulley/Speed of First Driver
  • Velocity Ratio = (Diameter of Driver+Belt Thickness)/(Diameter of Follower+Belt Thickness)
  • Velocity Ratio = Diameter of Driver/Diameter of Follower
  • Velocity Ratio = (Diameter of Driver*(Young's Modulus of Belt+sqrt(Stress in Slack Side of Belt)))/(Diameter of Follower*(Young's Modulus of Belt+sqrt(Stress in Tight Side of Belt)))
  • Velocity Ratio = (Diameter of Driver+Belt Thickness)*(1-0.01*Total Percentage of Slip)/(Diameter of Follower+Belt Thickness)
Let Others Know
โœ–
Facebook
Twitter
Reddit
LinkedIn
Email
WhatsApp
Copied!