Ultimate Crushing Stress given Rankine's Constant Solution

STEP 0: Pre-Calculation Summary
Formula Used
Column Crushing Stress = Rankine's Constant*pi^2*Modulus of Elasticity Column
σc = α*pi^2*E
This formula uses 1 Constants, 3 Variables
Constants Used
pi - Archimedes' constant Value Taken As 3.14159265358979323846264338327950288
Variables Used
Column Crushing Stress - (Measured in Pascal) - Column Crushing Stress is a special type of localized compressive stress which occurs at the surface of contact of two members that are relatively at rest.
Rankine's Constant - Rankine's Constant is the constant of Rankine's empirical formula.
Modulus of Elasticity Column - (Measured in Pascal) - Modulus of Elasticity Column is a quantity that measures column's resistance to being deformed elastically when stress is applied to it.
STEP 1: Convert Input(s) to Base Unit
Rankine's Constant: 0.00038 --> No Conversion Required
Modulus of Elasticity Column: 200000 Megapascal --> 200000000000 Pascal (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
σc = α*pi^2*E --> 0.00038*pi^2*200000000000
Evaluating ... ...
σc = 750089934.482791
STEP 3: Convert Result to Output's Unit
750089934.482791 Pascal -->750.089934482791 Megapascal (Check conversion ​here)
FINAL ANSWER
750.089934482791 750.0899 Megapascal <-- Column Crushing Stress
(Calculation completed in 00.004 seconds)

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Euler and Rankine's Theory Calculators

Crushing Load by Rankine's Formula
​ LaTeX ​ Go Crushing Load = (Rankine’s Critical Load*Euler’s Buckling Load)/(Euler’s Buckling Load-Rankine’s Critical Load)
Crippling Load by Euler's Formula given Crippling Load by Rankine's
​ LaTeX ​ Go Euler’s Buckling Load = (Crushing Load*Rankine’s Critical Load)/(Crushing Load-Rankine’s Critical Load)
Crippling Load by Rankine's
​ LaTeX ​ Go Rankine’s Critical Load = (Crushing Load*Euler’s Buckling Load)/(Crushing Load+Euler’s Buckling Load)
Crushing Load given Ultimate Crushing Stress
​ LaTeX ​ Go Crushing Load = Column Crushing Stress*Column Cross Sectional Area

Rankine's Formula Calculators

Cross-Sectional Area of Column given Crippling Load and Rankine's Constant
​ LaTeX ​ Go Column Cross Sectional Area = (Crippling Load*(1+Rankine's Constant*(Effective Column Length/Least Radius of Gyration Column)^2))/Column Crushing Stress
Crippling Load given Rankine's Constant
​ LaTeX ​ Go Crippling Load = (Column Crushing Stress*Column Cross Sectional Area)/(1+Rankine's Constant*(Effective Column Length/Least Radius of Gyration Column)^2)
Crippling Load by Rankine's
​ LaTeX ​ Go Rankine’s Critical Load = (Crushing Load*Euler’s Buckling Load)/(Crushing Load+Euler’s Buckling Load)
Cross-Sectional Area of Column given Crushing Load
​ LaTeX ​ Go Column Cross Sectional Area = Crushing Load/Column Crushing Stress

Ultimate Crushing Stress given Rankine's Constant Formula

​LaTeX ​Go
Column Crushing Stress = Rankine's Constant*pi^2*Modulus of Elasticity Column
σc = α*pi^2*E

What is Ultimate Compressive Strength?

Ultimate Compressive Strength is defined as the force at which a specimen with a certain cross-section, and consisting of a particular fracturing material, fails when it is subjected to compression. The ultimate compressive strength is normally measured in N/mm2 (force per area) and is thus stress.

How to Calculate Ultimate Crushing Stress given Rankine's Constant?

Ultimate Crushing Stress given Rankine's Constant calculator uses Column Crushing Stress = Rankine's Constant*pi^2*Modulus of Elasticity Column to calculate the Column Crushing Stress, The Ultimate Crushing Stress given Rankine's Constant formula is defined as a measure of the maximum stress a material can withstand without collapsing, which is crucial in understanding the structural integrity of materials under various loads, particularly in the context of Euler and Rankine's Theory. Column Crushing Stress is denoted by σc symbol.

How to calculate Ultimate Crushing Stress given Rankine's Constant using this online calculator? To use this online calculator for Ultimate Crushing Stress given Rankine's Constant, enter Rankine's Constant (α) & Modulus of Elasticity Column (E) and hit the calculate button. Here is how the Ultimate Crushing Stress given Rankine's Constant calculation can be explained with given input values -> 0.00075 = 0.00038*pi^2*200000000000.

FAQ

What is Ultimate Crushing Stress given Rankine's Constant?
The Ultimate Crushing Stress given Rankine's Constant formula is defined as a measure of the maximum stress a material can withstand without collapsing, which is crucial in understanding the structural integrity of materials under various loads, particularly in the context of Euler and Rankine's Theory and is represented as σc = α*pi^2*E or Column Crushing Stress = Rankine's Constant*pi^2*Modulus of Elasticity Column. Rankine's Constant is the constant of Rankine's empirical formula & Modulus of Elasticity Column is a quantity that measures column's resistance to being deformed elastically when stress is applied to it.
How to calculate Ultimate Crushing Stress given Rankine's Constant?
The Ultimate Crushing Stress given Rankine's Constant formula is defined as a measure of the maximum stress a material can withstand without collapsing, which is crucial in understanding the structural integrity of materials under various loads, particularly in the context of Euler and Rankine's Theory is calculated using Column Crushing Stress = Rankine's Constant*pi^2*Modulus of Elasticity Column. To calculate Ultimate Crushing Stress given Rankine's Constant, you need Rankine's Constant (α) & Modulus of Elasticity Column (E). With our tool, you need to enter the respective value for Rankine's Constant & Modulus of Elasticity 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 Column Crushing Stress?
In this formula, Column Crushing Stress uses Rankine's Constant & Modulus of Elasticity Column. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Column Crushing Stress = Crushing Load/Column Cross Sectional Area
  • Column Crushing Stress = (Crippling Load*(1+Rankine's Constant*(Effective Column Length/Least Radius of Gyration Column)^2))/Column Cross Sectional Area
  • Column Crushing Stress = (Crippling Load*(1+Rankine's Constant*(Effective Column Length/Least Radius of Gyration Column)^2))/Column Cross Sectional Area
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