Eccentric Load using Bending Stress Solution

STEP 0: Pre-Calculation Summary
Formula Used
Eccentric Load on Column = (Bending Stress in Column*(Depth of Column*(Width of Column^2)))/(6*Eccentricity of Loading)
P = (σb*(h*(b^2)))/(6*eload)
This formula uses 5 Variables
Variables Used
Eccentric Load on Column - (Measured in Newton) - Eccentric Load on Column is the load that causes direct stress as well as bending stress.
Bending Stress in Column - (Measured in Pascal) - Bending Stress in Column is the normal stress that is induced at a point in a body subjected to loads that cause it to bend.
Depth of Column - (Measured in Meter) - Depth of Column is the distance from the top or surface to the bottom of something.
Width of Column - (Measured in Meter) - Width of Column is describe that how wide the column is.
Eccentricity of Loading - (Measured in Meter) - Eccentricity of Loading is the distance between the actual line of action of loads and the line of action that would produce a uniform stress over the cross section of the specimen.
STEP 1: Convert Input(s) to Base Unit
Bending Stress in Column: 0.04 Megapascal --> 40000 Pascal (Check conversion ​here)
Depth of Column: 3000 Millimeter --> 3 Meter (Check conversion ​here)
Width of Column: 600 Millimeter --> 0.6 Meter (Check conversion ​here)
Eccentricity of Loading: 25 Millimeter --> 0.025 Meter (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
P = (σb*(h*(b^2)))/(6*eload) --> (40000*(3*(0.6^2)))/(6*0.025)
Evaluating ... ...
P = 288000
STEP 3: Convert Result to Output's Unit
288000 Newton -->288 Kilonewton (Check conversion ​here)
FINAL ANSWER
288 Kilonewton <-- Eccentric Load on Column
(Calculation completed in 00.004 seconds)

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Rectangular Section Is Subjected to Eccentric Load Calculators

Minimum Stress using Eccentric Load and Eccentricity
​ LaTeX ​ Go Minimum Stress Value = (Eccentric Load on Column*(1-(6*Eccentricity of Loading/Width of Column)))/(Column Cross Sectional Area)
Eccentric Load using Minimum Stress
​ LaTeX ​ Go Eccentric Load on Column = (Minimum Stress Value*Column Cross Sectional Area)/(1-(6*Eccentricity of Loading/Width of Column))
Eccentricity using Minimum Stress
​ LaTeX ​ Go Eccentricity of Loading = (1-(Minimum Stress Value*Column Cross Sectional Area/Eccentric Load on Column))*(Width of Column/6)
Minimum Stress
​ LaTeX ​ Go Minimum Stress Value = (Direct Stress-Bending Stress in Column)

Eccentric Load using Bending Stress Formula

​LaTeX ​Go
Eccentric Load on Column = (Bending Stress in Column*(Depth of Column*(Width of Column^2)))/(6*Eccentricity of Loading)
P = (σb*(h*(b^2)))/(6*eload)

What type of Stress is Developed due to Bending?

In torsion of a circular shaft, the action was all shear; contiguous cross sections sheared over one another in their rotation about the axis of the shaft. Here, the major stresses induced due to bending are normal stresses of tension and compression.

How to Calculate Eccentric Load using Bending Stress?

Eccentric Load using Bending Stress calculator uses Eccentric Load on Column = (Bending Stress in Column*(Depth of Column*(Width of Column^2)))/(6*Eccentricity of Loading) to calculate the Eccentric Load on Column, The Eccentric Load using Bending Stress formula is defined as a measure of the load that causes bending stress on a structural element, taking into account the bending stress, height, and width of the element, as well as the load eccentricity, to determine the maximum allowable load. Eccentric Load on Column is denoted by P symbol.

How to calculate Eccentric Load using Bending Stress using this online calculator? To use this online calculator for Eccentric Load using Bending Stress, enter Bending Stress in Column b), Depth of Column (h), Width of Column (b) & Eccentricity of Loading (eload) and hit the calculate button. Here is how the Eccentric Load using Bending Stress calculation can be explained with given input values -> 0.288 = (40000*(3*(0.6^2)))/(6*0.025).

FAQ

What is Eccentric Load using Bending Stress?
The Eccentric Load using Bending Stress formula is defined as a measure of the load that causes bending stress on a structural element, taking into account the bending stress, height, and width of the element, as well as the load eccentricity, to determine the maximum allowable load and is represented as P = (σb*(h*(b^2)))/(6*eload) or Eccentric Load on Column = (Bending Stress in Column*(Depth of Column*(Width of Column^2)))/(6*Eccentricity of Loading). Bending Stress in Column is the normal stress that is induced at a point in a body subjected to loads that cause it to bend, Depth of Column is the distance from the top or surface to the bottom of something, Width of Column is describe that how wide the column is & Eccentricity of Loading is the distance between the actual line of action of loads and the line of action that would produce a uniform stress over the cross section of the specimen.
How to calculate Eccentric Load using Bending Stress?
The Eccentric Load using Bending Stress formula is defined as a measure of the load that causes bending stress on a structural element, taking into account the bending stress, height, and width of the element, as well as the load eccentricity, to determine the maximum allowable load is calculated using Eccentric Load on Column = (Bending Stress in Column*(Depth of Column*(Width of Column^2)))/(6*Eccentricity of Loading). To calculate Eccentric Load using Bending Stress, you need Bending Stress in Column b), Depth of Column (h), Width of Column (b) & Eccentricity of Loading (eload). With our tool, you need to enter the respective value for Bending Stress in Column, Depth of Column, Width of Column & Eccentricity of Loading 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 Eccentric Load on Column?
In this formula, Eccentric Load on Column uses Bending Stress in Column, Depth of Column, Width of Column & Eccentricity of Loading. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Eccentric Load on Column = (Minimum Stress Value*Column Cross Sectional Area)/(1-(6*Eccentricity of Loading/Width of Column))
  • Eccentric Load on Column = (Maximum Stress on Column Section*Column Cross Sectional Area)/(1+(6*Eccentricity of Loading/Width of Column))
  • Eccentric Load on Column = Moment due to Eccentric Load/Eccentricity of Loading
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