How to Calculate Allowable Stress in Vertical Concrete Reinforcing given Total Allowable Axial Load?
Allowable Stress in Vertical Concrete Reinforcing given Total Allowable Axial Load calculator uses Allowable Stress in Vertical Reinforcement = (Allowable Load/Gross Area of Column-0.25*Specified Compressive Strength at 28 Days)/Area Ratio of Cross Sectional Area to Gross Area to calculate the Allowable Stress in Vertical Reinforcement, The Allowable Stress in Vertical Concrete Reinforcing given Total Allowable Axial Load formula is defined as the maximum stress (tensile, compressive or bending) that is allowed to be applied on structural material and it is equal to 40 percent of minimum yield strength, but not to exceed 30,000 lb/sq.in(207 MPa). Allowable Stress in Vertical Reinforcement is denoted by f's symbol.
How to calculate Allowable Stress in Vertical Concrete Reinforcing given Total Allowable Axial Load using this online calculator? To use this online calculator for Allowable Stress in Vertical Concrete Reinforcing given Total Allowable Axial Load, enter Allowable Load (Pallow), Gross Area of Column (Ag), Specified Compressive Strength at 28 Days (f'c) & Area Ratio of Cross Sectional Area to Gross Area (pg) and hit the calculate button. Here is how the Allowable Stress in Vertical Concrete Reinforcing given Total Allowable Axial Load calculation can be explained with given input values -> 4E-6 = (16000.01/0.0005-0.25*80)/8.01.