Thickness of crank web of centre crankshaft at TDC position given width of crank web Solution

STEP 0: Pre-Calculation Summary
Formula Used
Thickness of Crank Web = 0.614*Width of Crank Web
t = 0.614*w
This formula uses 2 Variables
Variables Used
Thickness of Crank Web - (Measured in Meter) - Thickness of Crank Web is defined as the thickness of the crank web (the portion of a crank between the crankpin and the shaft) measured parallel to the crankpin longitudinal axis.
Width of Crank Web - (Measured in Meter) - Width of Crank Web is defined as the width of the crank web (the portion of a crank between the crankpin and the shaft) measured perpendicular to the crankpin longitudinal axis.
STEP 1: Convert Input(s) to Base Unit
Width of Crank Web: 65 Millimeter --> 0.065 Meter (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
t = 0.614*w --> 0.614*0.065
Evaluating ... ...
t = 0.03991
STEP 3: Convert Result to Output's Unit
0.03991 Meter -->39.91 Millimeter (Check conversion ​here)
FINAL ANSWER
39.91 Millimeter <-- Thickness of Crank Web
(Calculation completed in 00.004 seconds)

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15 Design of Crank Web at Top Dead Centre Position Calculators

Total compressive stress at central plane of crank web of centre crankshaft at TDC position
​ Go Total Compressive Stress in Crank Web = ((Vertical Reaction at Bearing 1)/(Width of Crank Web*Thickness of Crank Web))+((6*Vertical Reaction at Bearing 1*((Centre Crankshaft Bearing1 Gap from CrankPinCentre)-(Length of Crank Pin/2)-(Thickness of Crank Web/2)))/(Width of Crank Web*Thickness of Crank Web^2))
Bending stress at central plane of crank web of centre crankshaft at TDC position
​ Go Bending Stress in Crankweb = (6*Vertical Reaction at Bearing 1*((Centre Crankshaft Bearing1 Gap from CrankPinCentre)-(Length of Crank Pin/2)-(Thickness of Crank Web/2)))/(Width of Crank Web*Thickness of Crank Web^2)
Bending moment at central plane of crank web of centre crankshaft at TDC position
​ Go Bending Moment at Central Plane of Crank Web = Vertical Reaction at Bearing 1*((Centre Crankshaft Bearing1 Gap from CrankPinCentre)-(Length of Crank Pin/2)-(Thickness of Crank Web/2))
Direct compressive stress in central plane of crank web of centre crankshaft at TDC position
​ Go Compressive Stress in Crank Web Central Plane = (Vertical Reaction at Bearing 1)/(Width of Crank Web*Thickness of Crank Web)
Thickness of crank web of centre crankshaft at TDC position given compressive stress
​ Go Thickness of Crank Web = (Vertical Reaction at Bearing 1)/(Width of Crank Web*Compressive Stress in Crank Web Central Plane)
Width of crank web of centre crankshaft at TDC position given compressive stress
​ Go Width of Crank Web = (Vertical Reaction at Bearing 1)/(Compressive Stress in Crank Web Central Plane*Thickness of Crank Web)
Maximum Bending stress in crank web of centre crankshaft at TDC position given bending moment
​ Go Bending Stress in Crankweb = (Bending Moment at Central Plane of Crank Web*6)/(Width of Crank Web*Thickness of Crank Web^2)
Thickness of crank web of centre crankshaft at TDC position given bending moment in crank pin
​ Go Thickness of Crank Web = 0.7*((32*Bending Moment at Central Plane of Crankpin)/(pi*Bending Stress in Crankpin))^(1/3)
Width of crank web of centre crankshaft at TDC position given bending moment in crank pin
​ Go Width of Crank Web = 1.14*((32*Bending Moment at Central Plane of Crankpin)/(pi*Bending Stress in Crankpin))^(1/3)
Thickness of crank web of centre crankshaft at TDC position given bearing pressure for crank pin
​ Go Thickness of Crank Web = 0.7*(Force on Crank Pin)/(Bearing Pressure in Crank Pin*Length of Crank Pin)
Width of crank web of centre crankshaft at TDC position given bearing pressure for crank pin
​ Go Width of Crank Web = 1.14*(Force on Crank Pin)/(Bearing Pressure in Crank Pin*Length of Crank Pin)
Thickness of crank web of centre crankshaft at TDC position given diameter of crank pin
​ Go Thickness of Crank Web = 0.7*Diameter of Crank Pin
Width of crank web of centre crankshaft at TDC position given thickness of crank web
​ Go Width of Crank Web = 1.6285*Thickness of Crank Web
Thickness of crank web of centre crankshaft at TDC position given width of crank web
​ Go Thickness of Crank Web = 0.614*Width of Crank Web
Width of crank web of centre crankshaft at TDC position given diameter of crank pin
​ Go Width of Crank Web = 1.14*Diameter of Crank Pin

Thickness of crank web of centre crankshaft at TDC position given width of crank web Formula

Thickness of Crank Web = 0.614*Width of Crank Web
t = 0.614*w

Details about Crankshaft used in Internal combustion Engine

In a multi-cylinder engine more complex engine crankshaft is used while in a small engine simple design is sufficient. The flywheel or crankshaft pulley is mounted on the crank to store the generated energy and to use for further work. A flywheel will also reduce the pulsation characteristic of the four-stroke engine. For the smooth and vibration-free running of the engine, the crankshaft is mounted in Main Bearing. Engine Bearings quantity depends upon various factors like the design of an engine, the number of cylinders, the design of crankshaft, etc. But there are always at least two such bearings, one at the drive end and the other at the non-drive end are used. In general, the crankshaft of a four-cylinder engine has three main journals, four crankpins, four counterweights, and two crank webs. The counterweight reduces the bending load on the crankshaft and also helps the engine not to shake when the crank mechanism is rotating. Crankshaft balancing mostly depends on counterweights.

How to Calculate Thickness of crank web of centre crankshaft at TDC position given width of crank web?

Thickness of crank web of centre crankshaft at TDC position given width of crank web calculator uses Thickness of Crank Web = 0.614*Width of Crank Web to calculate the Thickness of Crank Web, Thickness of crank web of centre crankshaft at TDC position given width of crank web is the thickness of the crank web of the center crankshaft and is measured parallel to the crankpin longitudinal axis, designed for when the crank is at the top dead center position and subjected to maximum bending moment and no torsional moment. Thickness of Crank Web is denoted by t symbol.

How to calculate Thickness of crank web of centre crankshaft at TDC position given width of crank web using this online calculator? To use this online calculator for Thickness of crank web of centre crankshaft at TDC position given width of crank web, enter Width of Crank Web (w) and hit the calculate button. Here is how the Thickness of crank web of centre crankshaft at TDC position given width of crank web calculation can be explained with given input values -> 39910 = 0.614*0.065.

FAQ

What is Thickness of crank web of centre crankshaft at TDC position given width of crank web?
Thickness of crank web of centre crankshaft at TDC position given width of crank web is the thickness of the crank web of the center crankshaft and is measured parallel to the crankpin longitudinal axis, designed for when the crank is at the top dead center position and subjected to maximum bending moment and no torsional moment and is represented as t = 0.614*w or Thickness of Crank Web = 0.614*Width of Crank Web. Width of Crank Web is defined as the width of the crank web (the portion of a crank between the crankpin and the shaft) measured perpendicular to the crankpin longitudinal axis.
How to calculate Thickness of crank web of centre crankshaft at TDC position given width of crank web?
Thickness of crank web of centre crankshaft at TDC position given width of crank web is the thickness of the crank web of the center crankshaft and is measured parallel to the crankpin longitudinal axis, designed for when the crank is at the top dead center position and subjected to maximum bending moment and no torsional moment is calculated using Thickness of Crank Web = 0.614*Width of Crank Web. To calculate Thickness of crank web of centre crankshaft at TDC position given width of crank web, you need Width of Crank Web (w). With our tool, you need to enter the respective value for Width of Crank Web 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 Thickness of Crank Web?
In this formula, Thickness of Crank Web uses Width of Crank Web. We can use 4 other way(s) to calculate the same, which is/are as follows -
  • Thickness of Crank Web = 0.7*Diameter of Crank Pin
  • Thickness of Crank Web = (Vertical Reaction at Bearing 1)/(Width of Crank Web*Compressive Stress in Crank Web Central Plane)
  • Thickness of Crank Web = 0.7*(Force on Crank Pin)/(Bearing Pressure in Crank Pin*Length of Crank Pin)
  • Thickness of Crank Web = 0.7*((32*Bending Moment at Central Plane of Crankpin)/(pi*Bending Stress in Crankpin))^(1/3)
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