Total Shear given Horizontal Shearing Stress Solution

STEP 0: Pre-Calculation Summary
Formula Used
Total Shear = (2*Horizontal Shearing Stress*Depth of Beam*Width of Beam)/3
V = (2*H*h*b)/3
This formula uses 4 Variables
Variables Used
Total Shear - (Measured in Newton) - Total Shear is defined as the total shear force acting on the body.
Horizontal Shearing Stress - (Measured in Pascal) - Horizontal Shearing Stress is defined as all the forces induced(bending moment, shear stress) in the upper part of the section.
Depth of Beam - (Measured in Meter) - Depth of beam is the vertical distance between the uppermost deck and the bottom of the keel, measured at the middle of the overall length.
Width of Beam - (Measured in Meter) - The width of beam is the beam width from edge to edge.
STEP 1: Convert Input(s) to Base Unit
Horizontal Shearing Stress: 36.67 Megapascal --> 36670000 Pascal (Check conversion ​here)
Depth of Beam: 200 Millimeter --> 0.2 Meter (Check conversion ​here)
Width of Beam: 135 Millimeter --> 0.135 Meter (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
V = (2*H*h*b)/3 --> (2*36670000*0.2*0.135)/3
Evaluating ... ...
V = 660060
STEP 3: Convert Result to Output's Unit
660060 Newton --> No Conversion Required
FINAL ANSWER
660060 Newton <-- Total Shear
(Calculation completed in 00.010 seconds)

Credits

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Created by M Naveen
National Institute of Technology (NIT), Warangal
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NSS College of Engineering (NSSCE), Palakkad
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13 Beams Calculators

Modified Total End Shear for Concentrated Loads
​ Go Modified Total End Shear = (10*Concentrated Load*(Span of Beam-Distance from Reaction to Concentrated Load)*((Distance from Reaction to Concentrated Load/Depth of Beam)^2))/(9*Span of Beam*(2+(Distance from Reaction to Concentrated Load/Depth of Beam)^2))
Horizontal Shearing Stress in Rectangular Timber Beam given Notch in Lower Face
​ Go Horizontal Shearing Stress = ((3*Total Shear)/(2*Width of Beam*Depth of Beam above Notch))*(Depth of Beam/Depth of Beam above Notch)
Beam Depth for Extreme Fiber Stress in Rectangular Timber Beam
​ Go Depth of Beam = sqrt((6*Bending Moment)/(Maximum Fiber Stress*Width of Beam))
Modified Total End Shear for Uniform Loading
​ Go Modified Total End Shear = (Total Uniformly Distributed Load/2)*(1-((2*Depth of Beam)/Span of Beam))
Horizontal Shearing Stress in Rectangular Timber Beam
​ Go Horizontal Shearing Stress = (3*Total Shear)/(2*Width of Beam*Depth of Beam)
Beam Width given Horizontal Shearing Stress
​ Go Width of Beam = (3*Total Shear)/(2*Depth of Beam*Horizontal Shearing Stress)
Beam Depth given Horizontal Shearing Stress
​ Go Depth of Beam = (3*Total Shear)/(2*Width of Beam*Horizontal Shearing Stress)
Beam Width given Extreme Fiber Stress for Rectangular Timber Beam
​ Go Width of Beam = (6*Bending Moment)/(Maximum Fiber Stress*(Depth of Beam)^2)
Total Shear given Horizontal Shearing Stress
​ Go Total Shear = (2*Horizontal Shearing Stress*Depth of Beam*Width of Beam)/3
Bending Moment using Extreme Fiber Stress for Rectangular Timber Beam
​ Go Bending Moment = (Maximum Fiber Stress*Width of Beam*(Depth of Beam)^2)/6
Extreme Fiber Stress in Bending for Rectangular Timber Beam
​ Go Maximum Fiber Stress = (6*Bending Moment)/(Width of Beam*Depth of Beam^2)
Extreme Fiber Stress for Rectangular Timber Beam given Section Modulus
​ Go Maximum Fiber Stress = Bending Moment/Section Modulus
Section Modulus given Height and Breadth of Section
​ Go Section Modulus = (Width of Beam*Depth of Beam^2)/6

Total Shear given Horizontal Shearing Stress Formula

Total Shear = (2*Horizontal Shearing Stress*Depth of Beam*Width of Beam)/3
V = (2*H*h*b)/3

What is Shear Stress?

Shear stress, the force tending to cause deformation of a material by slippage along a plane or planes parallel to the imposed stress. The resultant shear is of great importance in nature, being intimately related to the downslope movement of earth materials and to earthquakes.

How to calculate the Depth and Width of Beam?

The Depth of the beam (or) height of the beam can be calculated by using the horizontal shearing stress and total shear and the width of the beam applied in the above formula.
The Width of the beam can be calculated by using horizontal shearing stress, total shear and the width of the beam could be applied to the above formula.

How to Calculate Total Shear given Horizontal Shearing Stress?

Total Shear given Horizontal Shearing Stress calculator uses Total Shear = (2*Horizontal Shearing Stress*Depth of Beam*Width of Beam)/3 to calculate the Total Shear, The Total Shear given Horizontal Shearing Stress formula is defined as the shear force transversed at any section. Total Shear is denoted by V symbol.

How to calculate Total Shear given Horizontal Shearing Stress using this online calculator? To use this online calculator for Total Shear given Horizontal Shearing Stress, enter Horizontal Shearing Stress (H), Depth of Beam (h) & Width of Beam (b) and hit the calculate button. Here is how the Total Shear given Horizontal Shearing Stress calculation can be explained with given input values -> 660060 = (2*36670000*0.2*0.135)/3.

FAQ

What is Total Shear given Horizontal Shearing Stress?
The Total Shear given Horizontal Shearing Stress formula is defined as the shear force transversed at any section and is represented as V = (2*H*h*b)/3 or Total Shear = (2*Horizontal Shearing Stress*Depth of Beam*Width of Beam)/3. Horizontal Shearing Stress is defined as all the forces induced(bending moment, shear stress) in the upper part of the section, Depth of beam is the vertical distance between the uppermost deck and the bottom of the keel, measured at the middle of the overall length & The width of beam is the beam width from edge to edge.
How to calculate Total Shear given Horizontal Shearing Stress?
The Total Shear given Horizontal Shearing Stress formula is defined as the shear force transversed at any section is calculated using Total Shear = (2*Horizontal Shearing Stress*Depth of Beam*Width of Beam)/3. To calculate Total Shear given Horizontal Shearing Stress, you need Horizontal Shearing Stress (H), Depth of Beam (h) & Width of Beam (b). With our tool, you need to enter the respective value for Horizontal Shearing Stress, Depth of Beam & Width of Beam 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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