Allowable Horizontal Shear for Individual Connector for 100,000 Cycles Solution

STEP 0: Pre-Calculation Summary
Formula Used
Allowable Range of Horizontal Shear = 4*Length of Channel
Zr = 4*w
This formula uses 2 Variables
Variables Used
Allowable Range of Horizontal Shear - (Measured in Kilonewton) - The Allowable Range of Horizontal Shear is a force applied along the surface, in opposition to an offset force acting in the opposite direction.
Length of Channel - (Measured in Millimeter) - Length of Channel is the extent of channel from its start point to end point.
STEP 1: Convert Input(s) to Base Unit
Length of Channel: 208 Millimeter --> 208 Millimeter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Zr = 4*w --> 4*208
Evaluating ... ...
Zr = 832
STEP 3: Convert Result to Output's Unit
832000 Newton -->832 Kilonewton (Check conversion ​here)
FINAL ANSWER
832 Kilonewton <-- Allowable Range of Horizontal Shear
(Calculation completed in 00.020 seconds)

Credits

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Created by Rithik Agrawal
National Institute of Technology Karnataka (NITK), Surathkal
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National Institute of Technology (NIT), Warangal
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Allowable Horizontal Shear for Individual Connector for 100,000 Cycles Formula

​LaTeX ​Go
Allowable Range of Horizontal Shear = 4*Length of Channel
Zr = 4*w

What is Allowable Shear Stress?

Allowable Shear stress is simply equal to working shear stress when Factor of Safety (FOS) being always greater than 1 and or, allowable shear stress value is always less than the yield shear stress. Therefore we are making those parts to experience less stress for same amount of force

How to Calculate Allowable Horizontal Shear for Individual Connector for 100,000 Cycles?

Allowable Horizontal Shear for Individual Connector for 100,000 Cycles calculator uses Allowable Range of Horizontal Shear = 4*Length of Channel to calculate the Allowable Range of Horizontal Shear, The Allowable Horizontal Shear for Individual Connector for 100,000 Cycles formula is defined as a range of shear stress depending on cyclic variables based on the number of cycles. Allowable Range of Horizontal Shear is denoted by Zr symbol.

How to calculate Allowable Horizontal Shear for Individual Connector for 100,000 Cycles using this online calculator? To use this online calculator for Allowable Horizontal Shear for Individual Connector for 100,000 Cycles, enter Length of Channel (w) and hit the calculate button. Here is how the Allowable Horizontal Shear for Individual Connector for 100,000 Cycles calculation can be explained with given input values -> 0.832 = 4*0.208.

FAQ

What is Allowable Horizontal Shear for Individual Connector for 100,000 Cycles?
The Allowable Horizontal Shear for Individual Connector for 100,000 Cycles formula is defined as a range of shear stress depending on cyclic variables based on the number of cycles and is represented as Zr = 4*w or Allowable Range of Horizontal Shear = 4*Length of Channel. Length of Channel is the extent of channel from its start point to end point.
How to calculate Allowable Horizontal Shear for Individual Connector for 100,000 Cycles?
The Allowable Horizontal Shear for Individual Connector for 100,000 Cycles formula is defined as a range of shear stress depending on cyclic variables based on the number of cycles is calculated using Allowable Range of Horizontal Shear = 4*Length of Channel. To calculate Allowable Horizontal Shear for Individual Connector for 100,000 Cycles, you need Length of Channel (w). With our tool, you need to enter the respective value for Length of Channel and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Allowable Range of Horizontal Shear?
In this formula, Allowable Range of Horizontal Shear uses Length of Channel. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Allowable Range of Horizontal Shear = 13.0*(Stud Diameter^2)
  • Allowable Range of Horizontal Shear = 10.6*(Stud Diameter^2)
  • Allowable Range of Horizontal Shear = 7.85*(Stud Diameter^2)
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