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Effective Depth of Beam in Design for Beams and Ultimate Strength for Rectangular Beams with Tension Reinforcement Formulas
Effective Depth of Beam is the distance from the centroid of tension steel to the outermost face of the compression fiber. And is denoted by d
eff
. Effective Depth of Beam is usually measured using the Meter for Length. Note that the value of Effective Depth of Beam is always positive.
Formulas to find Effective Depth of Beam in Design for Beams and Ultimate Strength for Rectangular Beams with Tension Reinforcement
f
x
Beam Effective Depth given Bond Stress on Bar Surface
Go
Design for Beams and Ultimate Strength for Rectangular Beams with Tension Reinforcement formulas that make use of Effective Depth of Beam
f
x
Bond Stress on Bar Surface
Go
f
x
Total Shear given Bond Stress on Bar Surface
Go
f
x
Tensile Reinforcing Bars Perimeters Sum given Bond Stress on Bar Surface
Go
f
x
Stirrup Spacing for Practical Design
Go
f
x
Stirrup Area given Stirrup Spacing in Practical Design
Go
f
x
Stirrups area for Inclined Stirrups
Go
List of variables in Design for Beams and Ultimate Strength for Rectangular Beams with Tension Reinforcement formulas
f
x
Total Shear Force
Go
f
x
Constant j
Go
f
x
Bond Stress on Surface of Bar
Go
f
x
Perimeter Sum of Tensile Bars
Go
FAQ
What is the Effective Depth of Beam?
Effective Depth of Beam is the distance from the centroid of tension steel to the outermost face of the compression fiber. Effective Depth of Beam is usually measured using the Meter for Length. Note that the value of Effective Depth of Beam is always positive.
Can the Effective Depth of Beam be negative?
No, the Effective Depth of Beam, measured in Length cannot be negative.
What unit is used to measure Effective Depth of Beam?
Effective Depth of Beam is usually measured using the Meter[m] for Length. Millimeter[m], Kilometer[m], Decimeter[m] are the few other units in which Effective Depth of Beam can be measured.
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