Number of rivets given strength of joint per pitch length of joint against crushing Solution

STEP 0: Pre-Calculation Summary
Formula Used
Number of Rivets Per Pitch = Strength of Joint/(Crushing Stress*Rivet Diameter*Thickness of Plate)
n = S/(σc*Drivet*tplate)
This formula uses 5 Variables
Variables Used
Number of Rivets Per Pitch - Number of Rivets Per Pitch is defined as total number of rivets that are present on the pitch of the rivet.
Strength of Joint - (Measured in Newton) - Strength of joint is the strength of riveted joint per pitch length.
Crushing Stress - (Measured in Pascal) - Crushing stress is a special type of localized compressive stress which occurs at the surface of contact of two members that are relatively at rest.
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
Strength of Joint: 8.6 Kilonewton --> 8600 Newton (Check conversion ​here)
Crushing Stress: 20.83333 Megapascal --> 20833330 Pascal (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
n = S/(σc*Drivet*tplate) --> 8600/(20833330*0.018*0.012)
Evaluating ... ...
n = 1.91111141688894
STEP 3: Convert Result to Output's Unit
1.91111141688894 --> No Conversion Required
FINAL ANSWER
1.91111141688894 1.911111 <-- Number of Rivets Per Pitch
(Calculation completed in 00.020 seconds)

Credits

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Created by Anshika Arya
National Institute Of Technology (NIT), Hamirpur
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Birsa Institute of Technology (BIT), Sindri
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Failure Due to Crushing of Rivet or Plate Calculators

Safe load which rivet can withstand against crushing
​ LaTeX ​ Go Safe Load Joint = Crushing Stress*Rivet Diameter*Thickness of Plate
Allowable crushing stress given safe load which rivet can withstand for given projected area
​ LaTeX ​ Go Crushing Stress = Safe Load Joint/(Projected Area)
Projected area given safe load which rivet can withstand against crushing
​ LaTeX ​ Go Projected Area = Safe Load Joint/(Crushing Stress)
Safe load which rivet can withstand against crushing given projected area
​ LaTeX ​ Go Safe Load Joint = Crushing Stress*Projected Area

Number of rivets given strength of joint per pitch length of joint against crushing Formula

​LaTeX ​Go
Number of Rivets Per Pitch = Strength of Joint/(Crushing Stress*Rivet Diameter*Thickness of Plate)
n = S/(σc*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 Number of rivets given strength of joint per pitch length of joint against crushing?

Number of rivets given strength of joint per pitch length of joint against crushing calculator uses Number of Rivets Per Pitch = Strength of Joint/(Crushing Stress*Rivet Diameter*Thickness of Plate) to calculate the Number of Rivets Per Pitch, The Number of rivets given strength of joint per pitch length of joint against crushing formula is defined as number of rivets required in a joint. Single or multiple rows of rivets are used to give strength to the joint. Number of Rivets Per Pitch is denoted by n symbol.

How to calculate Number of rivets given strength of joint per pitch length of joint against crushing using this online calculator? To use this online calculator for Number of rivets given strength of joint per pitch length of joint against crushing, enter Strength of Joint (S), Crushing Stress c), Rivet Diameter (Drivet) & Thickness of Plate (tplate) and hit the calculate button. Here is how the Number of rivets given strength of joint per pitch length of joint against crushing calculation can be explained with given input values -> 16.58951 = 8600/(20833330*0.018*0.012).

FAQ

What is Number of rivets given strength of joint per pitch length of joint against crushing?
The Number of rivets given strength of joint per pitch length of joint against crushing formula is defined as number of rivets required in a joint. Single or multiple rows of rivets are used to give strength to the joint and is represented as n = S/(σc*Drivet*tplate) or Number of Rivets Per Pitch = Strength of Joint/(Crushing Stress*Rivet Diameter*Thickness of Plate). Strength of joint is the strength of riveted joint per pitch length, Crushing stress is a special type of localized compressive stress which occurs at the surface of contact of two members that are relatively at rest, 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 Number of rivets given strength of joint per pitch length of joint against crushing?
The Number of rivets given strength of joint per pitch length of joint against crushing formula is defined as number of rivets required in a joint. Single or multiple rows of rivets are used to give strength to the joint is calculated using Number of Rivets Per Pitch = Strength of Joint/(Crushing Stress*Rivet Diameter*Thickness of Plate). To calculate Number of rivets given strength of joint per pitch length of joint against crushing, you need Strength of Joint (S), Crushing Stress c), Rivet Diameter (Drivet) & Thickness of Plate (tplate). With our tool, you need to enter the respective value for Strength of Joint, Crushing Stress, 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.
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