Eccentricity of load about Y-Y axis Solution

STEP 0: Pre-Calculation Summary
Formula Used
Eccentricity of load about y-y axis = Moment of load about y-y axis/Eccentric load on column
eyy = My/P
This formula uses 3 Variables
Variables Used
Eccentricity of load about y-y axis - (Measured in Meter) - The Eccentricity of load about y-y axis is the distance from the center of gravity of the column section to the center of gravity of the applied load.
Moment of load about y-y axis - (Measured in Newton Meter) - Moment of load about y-y axis is a measure of its tendency to cause a body to rotate about a specific point or axis.
Eccentric load on column - (Measured in Newton) - Eccentric load on column is the load that causes direct stress as well as bending stress.
STEP 1: Convert Input(s) to Base Unit
Moment of load about y-y axis: 6.4 Newton Meter --> 6.4 Newton Meter No Conversion Required
Eccentric load on column: 7 Kilonewton --> 7000 Newton (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
eyy = My/P --> 6.4/7000
Evaluating ... ...
eyy = 0.000914285714285714
STEP 3: Convert Result to Output's Unit
0.000914285714285714 Meter -->0.914285714285714 Millimeter (Check conversion here)
FINAL ANSWER
0.914285714285714 0.914286 Millimeter <-- Eccentricity of load about y-y axis
(Calculation completed in 00.004 seconds)

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18 Rectangular Section Is Subjected To Load Eccentric To Both Axis Calculators

Bending Stress due to Eccentricity about x-x axis given Eccentric Load on Column
Go Bending Stress in Column = (Eccentric load on column*Eccentricity of load about x-x axis*Distance of load point from y axis)/(Moment of Inertia about x-x axis)
Bending stress due to eccentricity about y-y axis given Eccentric Load on Column
Go Bending Stress in Column = (Eccentric load on column*Eccentricity of load about y-y axis*Distance of load point from y axis)/(Moment of Inertia about y-y axis)
Eccentricity of Load about x-x axis given Bending Stress about x-x axis
Go Eccentricity of load about x-x axis = (Bending Stress in Column*Moment of Inertia about x-x axis)/(Eccentric load on column*Distance of load point from x-axis)
Eccentricity of Load about y-y axis given Bending Stress about y-y axis
Go Eccentricity of load about y-y axis = (Bending Stress in Column*Moment of Inertia about y-y axis)/(Eccentric load on column*Distance of load point from y axis)
Distance of Load point from x-axis given Bending Stress about x-x axis
Go Distance of load point from x-axis = (Bending Stress in Column*Moment of Inertia about x-x axis)/(Eccentric load on column*Eccentricity of load about x-x axis)
Distance of Load point from y-axis given Bending Stress about y-y axis
Go Distance of load point from y axis = (Bending Stress in Column*Moment of Inertia about y-y axis)/(Eccentric load on column*Eccentricity of load about y-y axis)
Eccentric Load on Column given Bending Stress along x-x axis
Go Eccentric load on column = (Bending Stress in Column*Moment of Inertia about x-x axis)/(Eccentricity of load about x-x axis*Distance of load point from x-axis)
Eccentric Load on Column given Bending Stress along y-y axis
Go Eccentric load on column = (Bending Stress in Column*Moment of Inertia about y-y axis)/(Eccentricity of load about y-y axis*Distance of load point from y axis)
Bending stress due to eccentricity about x-x axis
Go Bending Stress in Column = (Moment of load about x-x axis*Distance of load point from x-axis)/(Moment of Inertia about x-x axis)
Bending stress due to eccentricity about y-y axis
Go Bending Stress in Column = (Moment of load about y-y axis*Distance of load point from y axis)/(Moment of Inertia about y-y axis)
Moment of Inertia about x-x axis given Bending Stress about x-x axis
Go Moment of Inertia about x-x axis = (Moment of load about x-x axis*Distance of load point from x-axis)/Bending Stress in Column
Moment of Inertia about y-y axis given Bending Stress about y-y axis
Go Moment of Inertia about y-y axis = (Moment of load about y-y axis*Distance of load point from y axis)/Bending Stress in Column
Moment of Load about x-x axis given Bending Stress about x-x axis
Go Moment of load about x-x axis = (Bending Stress in Column*Moment of Inertia about x-x axis)/Distance of load point from x-axis
Moment of Load about y-y Axis given Bending Stress about y-y Axis
Go Moment of load about y-y axis = (Bending Stress in Column*Moment of Inertia about y-y axis)/Distance of load point from y axis
Eccentricity of Load about x-x axis
Go Eccentricity of load about x-x axis = Moment of load about x-x axis/Eccentric load on column
Eccentricity of load about Y-Y axis
Go Eccentricity of load about y-y axis = Moment of load about y-y axis/Eccentric load on column
Moment of Load about x-x axis
Go Moment of load about x-x axis = Eccentric load on column*Eccentricity of load about x-x axis
Moment of Load about y-y axis
Go Moment of load about y-y axis = Eccentric load on column*Eccentricity of load about y-y axis

Eccentricity of load about Y-Y axis Formula

Eccentricity of load about y-y axis = Moment of load about y-y axis/Eccentric load on column
eyy = My/P

What is shear stress and strain?

Shear strain is the deformation of an object or medium under shear stress. The shear modulus is the elastic modulus in this case. Shear stress is caused by forces acting along the object's two parallel surfaces.

How to Calculate Eccentricity of load about Y-Y axis?

Eccentricity of load about Y-Y axis calculator uses Eccentricity of load about y-y axis = Moment of load about y-y axis/Eccentric load on column to calculate the Eccentricity of load about y-y axis, The Eccentricity of load about Y-Y axis formula is defined as distance between the actual line of action of compressive or tensile loads and the line of action that would produce a uniform stress over the cross section of the specimen. Eccentricity of load about y-y axis is denoted by eyy symbol.

How to calculate Eccentricity of load about Y-Y axis using this online calculator? To use this online calculator for Eccentricity of load about Y-Y axis, enter Moment of load about y-y axis (My) & Eccentric load on column (P) and hit the calculate button. Here is how the Eccentricity of load about Y-Y axis calculation can be explained with given input values -> 914.2857 = 6.4/7000.

FAQ

What is Eccentricity of load about Y-Y axis?
The Eccentricity of load about Y-Y axis formula is defined as distance between the actual line of action of compressive or tensile loads and the line of action that would produce a uniform stress over the cross section of the specimen and is represented as eyy = My/P or Eccentricity of load about y-y axis = Moment of load about y-y axis/Eccentric load on column. Moment of load about y-y axis is a measure of its tendency to cause a body to rotate about a specific point or axis & Eccentric load on column is the load that causes direct stress as well as bending stress.
How to calculate Eccentricity of load about Y-Y axis?
The Eccentricity of load about Y-Y axis formula is defined as distance between the actual line of action of compressive or tensile loads and the line of action that would produce a uniform stress over the cross section of the specimen is calculated using Eccentricity of load about y-y axis = Moment of load about y-y axis/Eccentric load on column. To calculate Eccentricity of load about Y-Y axis, you need Moment of load about y-y axis (My) & Eccentric load on column (P). With our tool, you need to enter the respective value for Moment of load about y-y axis & Eccentric load on column 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 Eccentricity of load about y-y axis?
In this formula, Eccentricity of load about y-y axis uses Moment of load about y-y axis & Eccentric load on column. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Eccentricity of load about y-y axis = (Bending Stress in Column*Moment of Inertia about y-y axis)/(Eccentric load on column*Distance of load point from y axis)
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