Area of Concrete given Factored Axial Load on Member Solution

STEP 0: Pre-Calculation Summary
Formula Used
Area of Concrete = (Factored Load on Member-0.67*Characteristic Strength of Steel Reinforcement*Area of Steel Reinforcement)/(0.4*Characteristic Compressive Strength)
Ac = (Pfm-0.67*fy*Ast)/(0.4*fck)
This formula uses 5 Variables
Variables Used
Area of Concrete - (Measured in Square Millimeter) - The Area of Concrete is defined as the concrete area in a beam or column excluding the area of reinforcement.
Factored Load on Member - (Measured in Newton) - Factored Load on Member is the specific factor designated by codes of practice to determine the strength of a structural member such as reinforced concrete.
Characteristic Strength of Steel Reinforcement - (Measured in Megapascal) - The Characteristic Strength of Steel Reinforcement is the yield strength of steel.
Area of Steel Reinforcement - (Measured in Square Millimeter) - The area of steel reinforcement for columns or beams is defined as an area of vertical reinforcement which is provided to absorb the bending tensile stresses in the longitudinal direction.
Characteristic Compressive Strength - (Measured in Megapascal) - The Characteristic Compressive Strength is defined as the strength of the concrete below which not more than 5% of the test results are expected to fall.
STEP 1: Convert Input(s) to Base Unit
Factored Load on Member: 555.878 Kilonewton --> 555878 Newton (Check conversion here)
Characteristic Strength of Steel Reinforcement: 450 Megapascal --> 450 Megapascal No Conversion Required
Area of Steel Reinforcement: 452 Square Millimeter --> 452 Square Millimeter No Conversion Required
Characteristic Compressive Strength: 20 Megapascal --> 20 Megapascal No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Ac = (Pfm-0.67*fy*Ast)/(0.4*fck) --> (555878-0.67*450*452)/(0.4*20)
Evaluating ... ...
Ac = 52450
STEP 3: Convert Result to Output's Unit
0.05245 Square Meter -->52450 Square Millimeter (Check conversion here)
FINAL ANSWER
52450 Square Millimeter <-- Area of Concrete
(Calculation completed in 00.004 seconds)

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9 Short Axially Loaded Tied Columns Calculators

Factored Axial Load on Member given Gross Area of Concrete
Go Factored Load on Member = (0.4*Characteristic Compressive Strength+(Percentage of Compression Reinforcement/100)*(0.67*Characteristic Strength of Steel Reinforcement-0.4*Characteristic Compressive Strength))*Gross Area of Concrete
Gross Area of Concrete given Factored Axial Load on Member
Go Gross Area of Concrete = Factored Load on Member/(0.4*Characteristic Compressive Strength+(Percentage of Compression Reinforcement/100)*(0.67*Characteristic Strength of Steel Reinforcement-0.4*Characteristic Compressive Strength))
Area of Longitudinal Reinforcement for Columns given Factored Axial Load on Member
Go Area of Steel Reinforcement = (Factored Load on Member-0.4*Characteristic Compressive Strength*Area of Concrete)/(0.67*Characteristic Strength of Steel Reinforcement)
Area of Concrete given Factored Axial Load on Member
Go Area of Concrete = (Factored Load on Member-0.67*Characteristic Strength of Steel Reinforcement*Area of Steel Reinforcement)/(0.4*Characteristic Compressive Strength)
Factored Axial Load on Member
Go Factored Load on Member = (0.4*Characteristic Compressive Strength*Area of Concrete)+(0.67*Characteristic Strength of Steel Reinforcement*Area of Steel Reinforcement)
Percentage of Compression Reinforcement given Area of Longitudinal Reinforcement
Go Percentage of Compression Reinforcement = Area of Steel Reinforcement in Compression/(Gross Area of Concrete/100)
Area of Longitudinal Reinforcement given Gross Area of Concrete
Go Area of Steel Reinforcement in Compression = Percentage of Compression Reinforcement*Gross Area of Concrete/100
Gross Area of concrete given Area of Longitudinal Reinforcement
Go Gross Area of Concrete = 100*Area of Steel Reinforcement in Compression/Percentage of Compression Reinforcement
Gross Area of Concrete given Area of Concrete
Go Gross Area of Concrete = Area of Concrete/(1-(Percentage of Compression Reinforcement/100))

Area of Concrete given Factored Axial Load on Member Formula

Area of Concrete = (Factored Load on Member-0.67*Characteristic Strength of Steel Reinforcement*Area of Steel Reinforcement)/(0.4*Characteristic Compressive Strength)
Ac = (Pfm-0.67*fy*Ast)/(0.4*fck)

What is Axial Load?

An axial load is any force whether tensile or compressive in nature acting parallel to the centroidal / longitudinal axis of the member. If an axial load coincides with centroidal axis of the member then it is called concentric axial load and if an axial load is at a distance from the axis then it is called eccentric axial load.

How to calculate the Factored Axial Load?

Factored concentric load applied on short tied columns is resisted by
concrete of area Ac and longitudinal steel of areas effectively held by lateral ties at intervals. Assuming the design strengths of concrete and steel are 0.4fck and 0.67fy we calculate the factored axial load.

How to Calculate Area of Concrete given Factored Axial Load on Member?

Area of Concrete given Factored Axial Load on Member calculator uses Area of Concrete = (Factored Load on Member-0.67*Characteristic Strength of Steel Reinforcement*Area of Steel Reinforcement)/(0.4*Characteristic Compressive Strength) to calculate the Area of Concrete, The Area of Concrete given Factored Axial Load on Member formula is defined as an area of concrete excluding the steel reinforcement in a structural member. Area of Concrete is denoted by Ac symbol.

How to calculate Area of Concrete given Factored Axial Load on Member using this online calculator? To use this online calculator for Area of Concrete given Factored Axial Load on Member, enter Factored Load on Member (Pfm), Characteristic Strength of Steel Reinforcement (fy), Area of Steel Reinforcement (Ast) & Characteristic Compressive Strength (fck) and hit the calculate button. Here is how the Area of Concrete given Factored Axial Load on Member calculation can be explained with given input values -> 5.2E+10 = (555878-0.67*450000000*0.000452)/(0.4*20000000).

FAQ

What is Area of Concrete given Factored Axial Load on Member?
The Area of Concrete given Factored Axial Load on Member formula is defined as an area of concrete excluding the steel reinforcement in a structural member and is represented as Ac = (Pfm-0.67*fy*Ast)/(0.4*fck) or Area of Concrete = (Factored Load on Member-0.67*Characteristic Strength of Steel Reinforcement*Area of Steel Reinforcement)/(0.4*Characteristic Compressive Strength). Factored Load on Member is the specific factor designated by codes of practice to determine the strength of a structural member such as reinforced concrete, The Characteristic Strength of Steel Reinforcement is the yield strength of steel, The area of steel reinforcement for columns or beams is defined as an area of vertical reinforcement which is provided to absorb the bending tensile stresses in the longitudinal direction & The Characteristic Compressive Strength is defined as the strength of the concrete below which not more than 5% of the test results are expected to fall.
How to calculate Area of Concrete given Factored Axial Load on Member?
The Area of Concrete given Factored Axial Load on Member formula is defined as an area of concrete excluding the steel reinforcement in a structural member is calculated using Area of Concrete = (Factored Load on Member-0.67*Characteristic Strength of Steel Reinforcement*Area of Steel Reinforcement)/(0.4*Characteristic Compressive Strength). To calculate Area of Concrete given Factored Axial Load on Member, you need Factored Load on Member (Pfm), Characteristic Strength of Steel Reinforcement (fy), Area of Steel Reinforcement (Ast) & Characteristic Compressive Strength (fck). With our tool, you need to enter the respective value for Factored Load on Member, Characteristic Strength of Steel Reinforcement, Area of Steel Reinforcement & Characteristic Compressive Strength 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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