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Number of links in Chain When Length of Chain is Given Solution

STEP 0: Pre-Calculation Summary
Formula Used
total_links = Length of Chain/pitch
l = L/P
This formula uses 2 Variables
Variables Used
Length of Chain - Length of Chain is the total length of the chain that is used for power transmission in chain drive. (Measured in Millimeter)
pitch - The pitch Value: pitch value/ pitch (Measured in Meter)
STEP 1: Convert Input(s) to Base Unit
Length of Chain: 30 Millimeter --> 0.03 Meter (Check conversion here)
pitch: 0.01 Meter --> 0.01 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
l = L/P --> 0.03/0.01
Evaluating ... ...
l = 3
STEP 3: Convert Result to Output's Unit
3 --> No Conversion Required
FINAL ANSWER
3 <-- Number of links in a kinematic chain
(Calculation completed in 00.016 seconds)

10+ Design of Chain Drives Calculators

Number of Teeth on the Sprocket When Pitch Circle Diameter is Given
number_of_teeth = 180*(pi/180)*asin(Pitch Circle Diameter/pitch) Go
Velocity Ratio of the Chain Drives
velocity_ratio = Angular speed of the driving member in rpm/Angular speed of the driven member in rpm Go
Number of teeth on the Driven Sprocket When Velocity of the Chain Drives is Given
number_of_teeth_on_driven_sprocket = Number of Teeth on Driving Sprocket*Velocity ratio Go
Number of teeth on Driving Sprocket When Velocity of the Chain Drives is Given
number_of_teeth_on_driving_sprocket = Number of Teeth on Driven Sprocket/Velocity ratio Go
Speed of Rotation of the Driving Shaft When Velocity Ratio of the Chain Drives is Given
angular_speed_driving_rpm = Velocity ratio*Angular speed of the driven member in rpm Go
Speed of Rotation of the Driven Shaft When Velocity Ratio of the Chain Drives is Given
angular_speed_driven_rpm = Angular speed of the driving member in rpm/Velocity ratio Go
Length of the Pitch When Pitch Circle Diameter is Given
pitch = Pitch Circle Diameter*sin(180/Number of teeth) Go
Pitch Circle Diameter in terms of Pitch
pitch_circle_diameter = pitch/sin(180/Number of teeth) Go
Number of Teeth on the Sprocket When Pitch Angle of the Sprocket is Given
number_of_teeth = 360/Pitch Angle Go
Pitch angle of the Sprocket
pitch_angle = 360/Number of teeth Go

Number of links in Chain When Length of Chain is Given Formula

total_links = Length of Chain/pitch
l = L/P

Define a Chain Drive?

Chain drive is a way of transmitting mechanical power from one place to another. It is often used to convey power to the wheels of a vehicle, particularly bicycles and motorcycles. It is also used in a wide variety of machines besides vehicles.

How to Calculate Number of links in Chain When Length of Chain is Given?

Number of links in Chain When Length of Chain is Given calculator uses total_links = Length of Chain/pitch to calculate the Number of links in a kinematic chain, The Number of links in Chain When Length of Chain is Given formula is defined as the total number of links that are present on the chain in a chain drive. Number of links in a kinematic chain and is denoted by l symbol.

How to calculate Number of links in Chain When Length of Chain is Given using this online calculator? To use this online calculator for Number of links in Chain When Length of Chain is Given, enter Length of Chain (L) and pitch (P) and hit the calculate button. Here is how the Number of links in Chain When Length of Chain is Given calculation can be explained with given input values -> 3 = 0.03/0.01.

FAQ

What is Number of links in Chain When Length of Chain is Given?
The Number of links in Chain When Length of Chain is Given formula is defined as the total number of links that are present on the chain in a chain drive and is represented as l = L/P or total_links = Length of Chain/pitch. Length of Chain is the total length of the chain that is used for power transmission in chain drive and The pitch Value: pitch value/ pitch.
How to calculate Number of links in Chain When Length of Chain is Given?
The Number of links in Chain When Length of Chain is Given formula is defined as the total number of links that are present on the chain in a chain drive is calculated using total_links = Length of Chain/pitch. To calculate Number of links in Chain When Length of Chain is Given, you need Length of Chain (L) and pitch (P). With our tool, you need to enter the respective value for Length of Chain and pitch 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 Number of links in a kinematic chain?
In this formula, Number of links in a kinematic chain uses Length of Chain and pitch. We can use 10 other way(s) to calculate the same, which is/are as follows -
  • pitch_angle = 360/Number of teeth
  • number_of_teeth = 360/Pitch Angle
  • pitch_circle_diameter = pitch/sin(180/Number of teeth)
  • pitch = Pitch Circle Diameter*sin(180/Number of teeth)
  • number_of_teeth = 180*(pi/180)*asin(Pitch Circle Diameter/pitch)
  • velocity_ratio = Angular speed of the driving member in rpm/Angular speed of the driven member in rpm
  • angular_speed_driving_rpm = Velocity ratio*Angular speed of the driven member in rpm
  • angular_speed_driven_rpm = Angular speed of the driving member in rpm/Velocity ratio
  • number_of_teeth_on_driving_sprocket = Number of Teeth on Driven Sprocket/Velocity ratio
  • number_of_teeth_on_driven_sprocket = Number of Teeth on Driving Sprocket*Velocity ratio
Where is the Number of links in Chain When Length of Chain is Given calculator used?
Among many, Number of links in Chain When Length of Chain is Given calculator is widely used in real life applications like {FormulaUses}. Here are few more real life examples -
{FormulaExamplesList}
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