Minor Diameter of Bolt given Working Strength Solution

STEP 0: Pre-Calculation Summary
Formula Used
Minor Diameter of Metallic Gasket Bolt = (sqrt(((Outside Diameter of Seal Ring)^2-(Nominal Diameter of Metallic Gasket Bolt)^2)*Fluid Pressure on Metallic Gasket Seal)/sqrt((Number of Bolts in Metallic Gasket Seal*68.7)))+(4*Friction Force in Metallic Gasket)/(3.14*Number of Bolts in Metallic Gasket Seal*68.7)
d2 = (sqrt(((d1)^2-(dgb)^2)*ps)/sqrt((i*68.7)))+(4*Fμ)/(3.14*i*68.7)
This formula uses 1 Functions, 6 Variables
Functions Used
sqrt - A square root function is a function that takes a non-negative number as an input and returns the square root of the given input number., sqrt(Number)
Variables Used
Minor Diameter of Metallic Gasket Bolt - (Measured in Meter) - The Minor Diameter of Metallic Gasket Bolt is the core diameter of the bolt used in with the metallic gasket.
Outside Diameter of Seal Ring - (Measured in Meter) - The Outside Diameter of Seal Ring is any straight line segment that passes through the center of the ring and whose endpoints lie on the ring.
Nominal Diameter of Metallic Gasket Bolt - (Measured in Meter) - Nominal diameter of metallic gasket bolt is the major diameter of the bolt used in with the metallic gasket.
Fluid Pressure on Metallic Gasket Seal - (Measured in Pascal) - The Fluid Pressure on Metallic Gasket Seal refers to the pressure exerted by the fluid onto the metallic gasket seal.
Number of Bolts in Metallic Gasket Seal - Number of bolts in metallic gasket seal is simply defined as the number of bolts that are under our consideration.
Friction Force in Metallic Gasket - (Measured in Newton) - Friction force in metallic gasket is the force arising in the metallic gasket due to the friction between the surfaces.
STEP 1: Convert Input(s) to Base Unit
Outside Diameter of Seal Ring: 6 Millimeter --> 0.006 Meter (Check conversion ​here)
Nominal Diameter of Metallic Gasket Bolt: 4 Millimeter --> 0.004 Meter (Check conversion ​here)
Fluid Pressure on Metallic Gasket Seal: 4.25 Megapascal --> 4250000 Pascal (Check conversion ​here)
Number of Bolts in Metallic Gasket Seal: 2 --> No Conversion Required
Friction Force in Metallic Gasket: 500 Newton --> 500 Newton No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
d2 = (sqrt(((d1)^2-(dgb)^2)*ps)/sqrt((i*68.7)))+(4*Fμ)/(3.14*i*68.7) --> (sqrt(((0.006)^2-(0.004)^2)*4250000)/sqrt((2*68.7)))+(4*500)/(3.14*2*68.7)
Evaluating ... ...
d2 = 5.42221322628452
STEP 3: Convert Result to Output's Unit
5.42221322628452 Meter -->5422.21322628452 Millimeter (Check conversion ​here)
FINAL ANSWER
5422.21322628452 5422.213 Millimeter <-- Minor Diameter of Metallic Gasket Bolt
(Calculation completed in 00.004 seconds)

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national institute of technology hamirpur (NITH ), hamirpur , himachal pradesh
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Metallic Gaskets Calculators

Frictional Force given Minor diameter of bolt
​ LaTeX ​ Go Friction Force in Metallic Gasket = ((Minor Diameter of Metallic Gasket Bolt-(sqrt(((Outside Diameter of Seal Ring)^2-(Nominal Diameter of Metallic Gasket Bolt)^2)*Fluid Pressure on Metallic Gasket Seal)/sqrt((Number of Bolts in Metallic Gasket Seal*Design Stress for Metallic Gasket))))*3.14*Number of Bolts in Metallic Gasket Seal*Design Stress for Metallic Gasket)/4
Minor Diameter of Bolt given Working Strength
​ LaTeX ​ Go Minor Diameter of Metallic Gasket Bolt = (sqrt(((Outside Diameter of Seal Ring)^2-(Nominal Diameter of Metallic Gasket Bolt)^2)*Fluid Pressure on Metallic Gasket Seal)/sqrt((Number of Bolts in Metallic Gasket Seal*68.7)))+(4*Friction Force in Metallic Gasket)/(3.14*Number of Bolts in Metallic Gasket Seal*68.7)

Minor Diameter of Bolt given Working Strength Formula

​LaTeX ​Go
Minor Diameter of Metallic Gasket Bolt = (sqrt(((Outside Diameter of Seal Ring)^2-(Nominal Diameter of Metallic Gasket Bolt)^2)*Fluid Pressure on Metallic Gasket Seal)/sqrt((Number of Bolts in Metallic Gasket Seal*68.7)))+(4*Friction Force in Metallic Gasket)/(3.14*Number of Bolts in Metallic Gasket Seal*68.7)
d2 = (sqrt(((d1)^2-(dgb)^2)*ps)/sqrt((i*68.7)))+(4*Fμ)/(3.14*i*68.7)

What is minor diameter of bolt ?

The minor diameter is the lower extreme diameter of the thread.The minor diameter of a nut is its inside diameter.

How to Calculate Minor Diameter of Bolt given Working Strength?

Minor Diameter of Bolt given Working Strength calculator uses Minor Diameter of Metallic Gasket Bolt = (sqrt(((Outside Diameter of Seal Ring)^2-(Nominal Diameter of Metallic Gasket Bolt)^2)*Fluid Pressure on Metallic Gasket Seal)/sqrt((Number of Bolts in Metallic Gasket Seal*68.7)))+(4*Friction Force in Metallic Gasket)/(3.14*Number of Bolts in Metallic Gasket Seal*68.7) to calculate the Minor Diameter of Metallic Gasket Bolt, The Minor Diameter of Bolt given Working Strength is defined as any straight line segment that passes through the center of the ring and whose endpoints lie on the ring. Minor Diameter of Metallic Gasket Bolt is denoted by d2 symbol.

How to calculate Minor Diameter of Bolt given Working Strength using this online calculator? To use this online calculator for Minor Diameter of Bolt given Working Strength, enter Outside Diameter of Seal Ring (d1), Nominal Diameter of Metallic Gasket Bolt (dgb), Fluid Pressure on Metallic Gasket Seal (ps), Number of Bolts in Metallic Gasket Seal (i) & Friction Force in Metallic Gasket (Fμ) and hit the calculate button. Here is how the Minor Diameter of Bolt given Working Strength calculation can be explained with given input values -> 832888.3 = (sqrt(((0.006)^2-(0.004)^2)*4250000)/sqrt((2*68.7)))+(4*500)/(3.14*2*68.7).

FAQ

What is Minor Diameter of Bolt given Working Strength?
The Minor Diameter of Bolt given Working Strength is defined as any straight line segment that passes through the center of the ring and whose endpoints lie on the ring and is represented as d2 = (sqrt(((d1)^2-(dgb)^2)*ps)/sqrt((i*68.7)))+(4*Fμ)/(3.14*i*68.7) or Minor Diameter of Metallic Gasket Bolt = (sqrt(((Outside Diameter of Seal Ring)^2-(Nominal Diameter of Metallic Gasket Bolt)^2)*Fluid Pressure on Metallic Gasket Seal)/sqrt((Number of Bolts in Metallic Gasket Seal*68.7)))+(4*Friction Force in Metallic Gasket)/(3.14*Number of Bolts in Metallic Gasket Seal*68.7). The Outside Diameter of Seal Ring is any straight line segment that passes through the center of the ring and whose endpoints lie on the ring, Nominal diameter of metallic gasket bolt is the major diameter of the bolt used in with the metallic gasket, The Fluid Pressure on Metallic Gasket Seal refers to the pressure exerted by the fluid onto the metallic gasket seal, Number of bolts in metallic gasket seal is simply defined as the number of bolts that are under our consideration & Friction force in metallic gasket is the force arising in the metallic gasket due to the friction between the surfaces.
How to calculate Minor Diameter of Bolt given Working Strength?
The Minor Diameter of Bolt given Working Strength is defined as any straight line segment that passes through the center of the ring and whose endpoints lie on the ring is calculated using Minor Diameter of Metallic Gasket Bolt = (sqrt(((Outside Diameter of Seal Ring)^2-(Nominal Diameter of Metallic Gasket Bolt)^2)*Fluid Pressure on Metallic Gasket Seal)/sqrt((Number of Bolts in Metallic Gasket Seal*68.7)))+(4*Friction Force in Metallic Gasket)/(3.14*Number of Bolts in Metallic Gasket Seal*68.7). To calculate Minor Diameter of Bolt given Working Strength, you need Outside Diameter of Seal Ring (d1), Nominal Diameter of Metallic Gasket Bolt (dgb), Fluid Pressure on Metallic Gasket Seal (ps), Number of Bolts in Metallic Gasket Seal (i) & Friction Force in Metallic Gasket (Fμ). With our tool, you need to enter the respective value for Outside Diameter of Seal Ring, Nominal Diameter of Metallic Gasket Bolt, Fluid Pressure on Metallic Gasket Seal, Number of Bolts in Metallic Gasket Seal & Friction Force in Metallic Gasket 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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