Allowable tensile stress in plate given tearing strength of rivet Solution

STEP 0: Pre-Calculation Summary
Formula Used
Tensile Stress = Tearing Strength/((Pitch of Rivet-Rivet Diameter)*Thickness of Plate)
σt = Tstrength/((p-Drivet)*tplate)
This formula uses 5 Variables
Variables Used
Tensile Stress - (Measured in Pascal) - Tensile stress can be defined as the magnitude of force applied along an elastic rod, which is divided by the cross-sectional area of the rod in a direction perpendicular to the applied force.
Tearing Strength - (Measured in Newton) - Tearing strength is defined as the force required to start or to continue to tear a fabric, in either weft or warp direction, under specified conditions.
Pitch of Rivet - (Measured in Meter) - Pitch of Rivet is defined as the distance between the centers of adjacent rivets that hold together the parts of a built member.
Rivet Diameter - (Measured in Meter) - Rivet Diameter is offered from 1/16-inch (1.6 mm) to 3/8-inch (9.5 mm) in diameter (other sizes are considered highly special) and can be up to 8 inches (203 mm) long.
Thickness of Plate - (Measured in Meter) - The thickness of plate is the state or quality of being thick. The measure of the smallest dimension of a solid figure: a board of two-inch thickness.
STEP 1: Convert Input(s) to Base Unit
Tearing Strength: 4 Kilonewton --> 4000 Newton (Check conversion ​here)
Pitch of Rivet: 20 Millimeter --> 0.02 Meter (Check conversion ​here)
Rivet Diameter: 18 Millimeter --> 0.018 Meter (Check conversion ​here)
Thickness of Plate: 12 Millimeter --> 0.012 Meter (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
σt = Tstrength/((p-Drivet)*tplate) --> 4000/((0.02-0.018)*0.012)
Evaluating ... ...
σt = 166666666.666667
STEP 3: Convert Result to Output's Unit
166666666.666667 Pascal -->166.666666666667 Megapascal (Check conversion ​here)
FINAL ANSWER
166.666666666667 166.6667 Megapascal <-- Tensile Stress
(Calculation completed in 00.004 seconds)

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Allowable Stress Calculators

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​ LaTeX ​ Go Crushing Stress = Crushing strength/(Number of Rivets Per Pitch*Rivet Diameter*Thickness of Plate)
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​ LaTeX ​ Go Shear Stress in Joint = Shear Strength/(2*Number of Rivets Per Pitch*(pi/4)*(Rivet Diameter^2))
Allowable crushing stress of rivet material given crushing strength for double rivet
​ LaTeX ​ Go Crushing Stress = Crushing strength/(2*Rivet Diameter*Thickness of Plate)
Allowable crushing stress of rivet material given crushing strength for triple rivet
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Allowable tensile stress in plate given tearing strength of rivet Formula

​LaTeX ​Go
Tensile Stress = Tearing Strength/((Pitch of Rivet-Rivet Diameter)*Thickness of Plate)
σt = Tstrength/((p-Drivet)*tplate)

What is tear and tensile strength?

Tear strength is the measure of how much tensile stress the material can withstand in a specific case, i.e. when a tear has been introduced in the material, whereas a normal tensile stress test is done for a non-defective piece of material.

How to Calculate Allowable tensile stress in plate given tearing strength of rivet?

Allowable tensile stress in plate given tearing strength of rivet calculator uses Tensile Stress = Tearing Strength/((Pitch of Rivet-Rivet Diameter)*Thickness of Plate) to calculate the Tensile Stress, Allowable tensile stress in plate given tearing strength of rivet refers to cases where a deforming force is applied at right angles to a surface. Tensile Stress is denoted by σt symbol.

How to calculate Allowable tensile stress in plate given tearing strength of rivet using this online calculator? To use this online calculator for Allowable tensile stress in plate given tearing strength of rivet, enter Tearing Strength (Tstrength), Pitch of Rivet (p), Rivet Diameter (Drivet) & Thickness of Plate (tplate) and hit the calculate button. Here is how the Allowable tensile stress in plate given tearing strength of rivet calculation can be explained with given input values -> 0.000167 = 4000/((0.02-0.018)*0.012).

FAQ

What is Allowable tensile stress in plate given tearing strength of rivet?
Allowable tensile stress in plate given tearing strength of rivet refers to cases where a deforming force is applied at right angles to a surface and is represented as σt = Tstrength/((p-Drivet)*tplate) or Tensile Stress = Tearing Strength/((Pitch of Rivet-Rivet Diameter)*Thickness of Plate). Tearing strength is defined as the force required to start or to continue to tear a fabric, in either weft or warp direction, under specified conditions, Pitch of Rivet is defined as the distance between the centers of adjacent rivets that hold together the parts of a built member, Rivet Diameter is offered from 1/16-inch (1.6 mm) to 3/8-inch (9.5 mm) in diameter (other sizes are considered highly special) and can be up to 8 inches (203 mm) long & The thickness of plate is the state or quality of being thick. The measure of the smallest dimension of a solid figure: a board of two-inch thickness.
How to calculate Allowable tensile stress in plate given tearing strength of rivet?
Allowable tensile stress in plate given tearing strength of rivet refers to cases where a deforming force is applied at right angles to a surface is calculated using Tensile Stress = Tearing Strength/((Pitch of Rivet-Rivet Diameter)*Thickness of Plate). To calculate Allowable tensile stress in plate given tearing strength of rivet, you need Tearing Strength (Tstrength), Pitch of Rivet (p), Rivet Diameter (Drivet) & Thickness of Plate (tplate). With our tool, you need to enter the respective value for Tearing Strength, Pitch of Rivet, Rivet Diameter & Thickness of Plate 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 Tensile Stress?
In this formula, Tensile Stress uses Tearing Strength, Pitch of Rivet, Rivet Diameter & Thickness of Plate. We can use 2 other way(s) to calculate the same, which is/are as follows -
  • Tensile Stress = Strength of Solid Plate/(Pitch of Rivet*Thickness of Plate)
  • Tensile Stress = Least Value of Strength/(Pitch of Rivet*Thickness of Plate*Efficiency of Riveted Joint)
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