Specified Compressive Strength of Concrete using Nominal Bearing Strength Solution

STEP 0: Pre-Calculation Summary
Formula Used
Specified Compressive Strength of Concrete = (Nominal Bearing Strength/0.85)*sqrt(Area of Base Plate/Area of supporting Concrete)
f'c = (fp/0.85)*sqrt(A1/A2)
This formula uses 1 Functions, 4 Variables
Functions Used
sqrt - A square root function is a function that takes a non-negative number as an input and returns the square root of the given input number., sqrt(Number)
Variables Used
Specified Compressive Strength of Concrete - (Measured in Megapascal) - The specified compressive strength of concrete is the capacity of a material or structure to withstand loads tending to reduce the size, as opposed to which withstands loads tending to elongate.
Nominal Bearing Strength - (Measured in Megapascal) - Nominal bearing strength the compressive strength and the ratio of the total surface area to the load bearing area.
Area of Base Plate - (Measured in Square Millimeter) - Area of Base Plate is the area of flat supporting plate or frame at the base of a column.
Area of supporting Concrete - (Measured in Square Millimeter) - Area of supporting concrete is geometrically similar to and concentric with the loaded area.
STEP 1: Convert Input(s) to Base Unit
Nominal Bearing Strength: 132.6 Pascal --> 0.0001326 Megapascal (Check conversion here)
Area of Base Plate: 700 Square Millimeter --> 700 Square Millimeter No Conversion Required
Area of supporting Concrete: 1400 Square Millimeter --> 1400 Square Millimeter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
f'c = (fp/0.85)*sqrt(A1/A2) --> (0.0001326/0.85)*sqrt(700/1400)
Evaluating ... ...
f'c = 0.000110308657865101
STEP 3: Convert Result to Output's Unit
110.308657865101 Pascal --> No Conversion Required
FINAL ANSWER
110.308657865101 110.3087 Pascal <-- Specified Compressive Strength of Concrete
(Calculation completed in 00.004 seconds)

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Cummins College of Engineering for Women (CCEW), Pune
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15 Column Base Plate Design Calculators

Projection of Base Plate beyond Flange and Parallel to Web
Go Projection of Base Plate Beyond Flange = Thickness/(sqrt(2*Factored Load/(0.9*Yield Load*Width*Length)))
Base Plate Thickness given Projection of Base Plate beyond Flange and Parallel to Web
Go Thickness = Projection of Base Plate Beyond Flange*sqrt(2*Factored Load/(0.9*Yield Load*Width*Length))
Projection of Base Plate beyond Flange and Perpendicular to Web
Go Projection of Base Plate Beyond Edge = Thickness/(sqrt(2*Factored Load/(0.9*Yield Load*Width*Length)))
Base Plate Thickness given Projection of Base Plate beyond Flange and Perpendicular to Web
Go Thickness = Projection of Base Plate Beyond Edge*sqrt(2*Factored Load/(0.9*Yield Load*Width*Length))
Length Rectangular Base for Projection of Base Plate beyond Flange and Parallel to Web
Go Length = Projection of Base Plate Beyond Flange^2*(2*Factored Load/(0.9*Yield Load*Width*Thickness^2))
Yield Load for Projection of Base Plate beyond Flange and Parallel to Web
Go Yield Load = Projection of Base Plate Beyond Flange^2*(2*Factored Load/(0.9*Length*Width*Thickness^2))
Length Rectangular Base for Projection of Base Plate beyond Flange and Perpendicular to Web
Go Length = Projection of Base Plate Beyond Edge^2*(2*Factored Load/(0.9*Yield Load*Width*Thickness^2))
Specified Compressive Strength of Concrete using Nominal Bearing Strength
Go Specified Compressive Strength of Concrete = (Nominal Bearing Strength/0.85)*sqrt(Area of Base Plate/Area of supporting Concrete)
Nominal Bearing Strength of Concrete
Go Nominal Bearing Strength = Specified Compressive Strength of Concrete*0.85*sqrt(Area of supporting Concrete/Area of Base Plate)
Area of Supporting Concrete given Nominal Bearing Strength
Go Area of supporting Concrete = Area of Base Plate*((Nominal Bearing Strength/(Specified Compressive Strength of Concrete*0.85))^2)
Area of Base Plate given Nominal Bearing Strength
Go Area of Base Plate = Area of supporting Concrete/((Nominal Bearing Strength/(Specified Compressive Strength of Concrete*0.85))^2)
Required Area of Base Plate for Factored Load
Go Area of Base Plate = Factored Load/(0.85*Strength Reduction Factor*Specified Compressive Strength of Concrete)
Factored Load given Base Plate Area
Go Factored Load = Area of Base Plate*0.85*Strength Reduction Factor*Specified Compressive Strength of Concrete
Length Rectangular Base for Wide-Flange Column
Go Length = Area of Base Plate/Width
Width Parallel to Flanges
Go Width = Area of Base Plate/Length

Specified Compressive Strength of Concrete using Nominal Bearing Strength Formula

Specified Compressive Strength of Concrete = (Nominal Bearing Strength/0.85)*sqrt(Area of Base Plate/Area of supporting Concrete)
f'c = (fp/0.85)*sqrt(A1/A2)

What is difference between Compressive Strength and Tensile Strength?

Compressive strength or compression strength is the capacity of a material or structure to withstand loads tending to reduce size, as opposed to which withstands loads tending to elongate. In other words, compressive strength resists being pushed together, whereas tensile strength resists tension (being pulled apart).

How to Calculate Specified Compressive Strength of Concrete using Nominal Bearing Strength?

Specified Compressive Strength of Concrete using Nominal Bearing Strength calculator uses Specified Compressive Strength of Concrete = (Nominal Bearing Strength/0.85)*sqrt(Area of Base Plate/Area of supporting Concrete) to calculate the Specified Compressive Strength of Concrete, The Specified Compressive Strength of Concrete using Nominal Bearing Strength formula is defined as the capacity of a Concrete material or Concrete structure to withstand loads tending to reduce the size, as opposed to which withstands loads tending to elongate. Specified Compressive Strength of Concrete is denoted by f'c symbol.

How to calculate Specified Compressive Strength of Concrete using Nominal Bearing Strength using this online calculator? To use this online calculator for Specified Compressive Strength of Concrete using Nominal Bearing Strength, enter Nominal Bearing Strength (fp), Area of Base Plate (A1) & Area of supporting Concrete (A2) and hit the calculate button. Here is how the Specified Compressive Strength of Concrete using Nominal Bearing Strength calculation can be explained with given input values -> 110.3087 = (132.6/0.85)*sqrt(0.0007/0.0014).

FAQ

What is Specified Compressive Strength of Concrete using Nominal Bearing Strength?
The Specified Compressive Strength of Concrete using Nominal Bearing Strength formula is defined as the capacity of a Concrete material or Concrete structure to withstand loads tending to reduce the size, as opposed to which withstands loads tending to elongate and is represented as f'c = (fp/0.85)*sqrt(A1/A2) or Specified Compressive Strength of Concrete = (Nominal Bearing Strength/0.85)*sqrt(Area of Base Plate/Area of supporting Concrete). Nominal bearing strength the compressive strength and the ratio of the total surface area to the load bearing area, Area of Base Plate is the area of flat supporting plate or frame at the base of a column & Area of supporting concrete is geometrically similar to and concentric with the loaded area.
How to calculate Specified Compressive Strength of Concrete using Nominal Bearing Strength?
The Specified Compressive Strength of Concrete using Nominal Bearing Strength formula is defined as the capacity of a Concrete material or Concrete structure to withstand loads tending to reduce the size, as opposed to which withstands loads tending to elongate is calculated using Specified Compressive Strength of Concrete = (Nominal Bearing Strength/0.85)*sqrt(Area of Base Plate/Area of supporting Concrete). To calculate Specified Compressive Strength of Concrete using Nominal Bearing Strength, you need Nominal Bearing Strength (fp), Area of Base Plate (A1) & Area of supporting Concrete (A2). With our tool, you need to enter the respective value for Nominal Bearing Strength, Area of Base Plate & Area of supporting Concrete and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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