Stiffness of Cylinder Cover of Gasket Joint Solution

STEP 0: Pre-Calculation Summary
Formula Used
Stiffness of Pressurized Cylinder Cover = 1/((1/Combined stiffness for gasket joint)-((1/Stiffness of Pressurized Cylinder Flange)+(1/Stiffness of Gasket)))
k1 = 1/((1/kc)-((1/k2)+(1/kg)))
This formula uses 4 Variables
Variables Used
Stiffness of Pressurized Cylinder Cover - (Measured in Newton per Meter) - Stiffness of pressurized cylinder cover is the amount of force required to extend a cylinder cover by unit length.
Combined stiffness for gasket joint - (Measured in Newton per Meter) - Combined stiffness for gasket joint is the combined values of stiffness of cylinder cover, cylinder flange, and gasket.
Stiffness of Pressurized Cylinder Flange - (Measured in Newton per Meter) - Stiffness of pressurized cylinder flange is the amount of force required to extend a cylinder flange by unit length.
Stiffness of Gasket - (Measured in Newton per Meter) - The Stiffness of Gasket Value is the amount of force required to extend a gasket by unit length.
STEP 1: Convert Input(s) to Base Unit
Combined stiffness for gasket joint: 4500 Kilonewton per Millimeter --> 4500000000 Newton per Meter (Check conversion here)
Stiffness of Pressurized Cylinder Flange: 11100 Kilonewton per Millimeter --> 11100000000 Newton per Meter (Check conversion here)
Stiffness of Gasket: 45000 Kilonewton per Millimeter --> 45000000000 Newton per Meter (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
k1 = 1/((1/kc)-((1/k2)+(1/kg))) --> 1/((1/4500000000)-((1/11100000000)+(1/45000000000)))
Evaluating ... ...
k1 = 9098360655.73771
STEP 3: Convert Result to Output's Unit
9098360655.73771 Newton per Meter -->9098.36065573771 Kilonewton per Millimeter (Check conversion here)
FINAL ANSWER
9098.36065573771 9098.361 Kilonewton per Millimeter <-- Stiffness of Pressurized Cylinder Cover
(Calculation completed in 00.020 seconds)

Credits

Created by Vaibhav Malani
National Institute of Technology (NIT), Tiruchirapalli
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National Institute Of Technology (NIT), Hamirpur
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14 Gasket Joint Calculators

Nominal Diameter of Gasket Joint Bolt given Stiffness, total thickness and Young's Modulus
Go Nominal Bolt Diameter on Cylinder = sqrt(Stiffness of pressurized cylinder bolt*4*Total Thickness of parts held together by Bolt/(pi*Modulus of elasticity for gasket joint))
Nominal Diameter of Gasket Joint
Go Nominal Bolt Diameter on Cylinder = sqrt(Approximate Stiffness of Gasketed Joint*Thickness of Member under Compression/(2*pi*Modulus of elasticity for gasket joint))
Stiffness of Bolt of Gasket Joint given Nominal Diameter, Total Thickness, and Young's Modulus
Go Stiffness of pressurized cylinder bolt = (pi*(Nominal Bolt Diameter on Cylinder^2)/4)*(Modulus of elasticity for gasket joint/Total Thickness of parts held together by Bolt)
Total Thickness of Gasket Joint given Stiffness, Nominal Diameter and Young's Modulus
Go Total Thickness of parts held together by Bolt = (pi*(Nominal Bolt Diameter on Cylinder^2)/4)*(Modulus of elasticity for gasket joint/Stiffness of pressurized cylinder bolt)
Young's Modulus of Gasket Joint given Stiffness, Total Thickness and Nominal Diameter
Go Modulus of elasticity for gasket joint = Stiffness of pressurized cylinder bolt*Total Thickness of parts held together by Bolt/(pi*(Nominal Bolt Diameter on Cylinder^2)/4)
Approximate Stiffness of Cylinder Cover, Cylinder Flange and Gasket
Go Approximate Stiffness of Gasketed Joint = (2*pi*(Nominal Bolt Diameter on Cylinder^2))*(Modulus of elasticity for gasket joint/Thickness of Member under Compression)
Thickness of Member under Compression for Gasket Joint
Go Thickness of Member under Compression = (pi*(Nominal Bolt Diameter on Cylinder^2)/4)*(Modulus of elasticity for gasket joint/Approximate Stiffness of Gasketed Joint)
Young's Modulus of Gasket Joint
Go Modulus of elasticity for gasket joint = 4*Approximate Stiffness of Gasketed Joint*Thickness of Member under Compression/(pi*(Nominal Bolt Diameter on Cylinder^2))
Stiffness of Cylinder Flange of Gasket Joint
Go Stiffness of Pressurized Cylinder Flange = 1/((1/Combined stiffness for gasket joint)-((1/Stiffness of Pressurized Cylinder Cover)+(1/Stiffness of Gasket)))
Stiffness of Cylinder Cover of Gasket Joint
Go Stiffness of Pressurized Cylinder Cover = 1/((1/Combined stiffness for gasket joint)-((1/Stiffness of Pressurized Cylinder Flange)+(1/Stiffness of Gasket)))
Stiffness of Gasket of Gasket Joint
Go Stiffness of Gasket = 1/((1/Combined stiffness for gasket joint)-((1/Stiffness of Pressurized Cylinder Cover)+(1/Stiffness of Pressurized Cylinder Flange)))
Combined Stiffness of Cylinder Cover, Cylinder Flange and Gasket
Go Combined stiffness for gasket joint = 1/((1/Stiffness of Pressurized Cylinder Cover)+(1/Stiffness of Pressurized Cylinder Flange)+(1/Stiffness of Gasket))
Total Deformation of Pressure Vessel given Increase in Inner Diameter of Jacket
Go Total Deformation of Pressure Vessel = Increase in Inner Diameter of Jacket+Decrease in Outer Diameter of Cylinder
Increase in Inner Diameter of Jacket given Total deformation of Pressure Vessel
Go Increase in Inner Diameter of Jacket = Total Deformation of Pressure Vessel-Decrease in Outer Diameter of Cylinder

Stiffness of Cylinder Cover of Gasket Joint Formula

Stiffness of Pressurized Cylinder Cover = 1/((1/Combined stiffness for gasket joint)-((1/Stiffness of Pressurized Cylinder Flange)+(1/Stiffness of Gasket)))
k1 = 1/((1/kc)-((1/k2)+(1/kg)))

What is a Pressure Vessel?

A pressure vessel is a container designed to hold gases or liquids at a pressure substantially different from the ambient pressure.

How to Calculate Stiffness of Cylinder Cover of Gasket Joint?

Stiffness of Cylinder Cover of Gasket Joint calculator uses Stiffness of Pressurized Cylinder Cover = 1/((1/Combined stiffness for gasket joint)-((1/Stiffness of Pressurized Cylinder Flange)+(1/Stiffness of Gasket))) to calculate the Stiffness of Pressurized Cylinder Cover, Stiffness of Cylinder Cover of Gasket Joint formula is defined as the amount of force required to extend a cylinder flange by unit length. Stiffness of Pressurized Cylinder Cover is denoted by k1 symbol.

How to calculate Stiffness of Cylinder Cover of Gasket Joint using this online calculator? To use this online calculator for Stiffness of Cylinder Cover of Gasket Joint, enter Combined stiffness for gasket joint (kc), Stiffness of Pressurized Cylinder Flange (k2) & Stiffness of Gasket (kg) and hit the calculate button. Here is how the Stiffness of Cylinder Cover of Gasket Joint calculation can be explained with given input values -> 0.009098 = 1/((1/4500000000)-((1/11100000000)+(1/45000000000))).

FAQ

What is Stiffness of Cylinder Cover of Gasket Joint?
Stiffness of Cylinder Cover of Gasket Joint formula is defined as the amount of force required to extend a cylinder flange by unit length and is represented as k1 = 1/((1/kc)-((1/k2)+(1/kg))) or Stiffness of Pressurized Cylinder Cover = 1/((1/Combined stiffness for gasket joint)-((1/Stiffness of Pressurized Cylinder Flange)+(1/Stiffness of Gasket))). Combined stiffness for gasket joint is the combined values of stiffness of cylinder cover, cylinder flange, and gasket, Stiffness of pressurized cylinder flange is the amount of force required to extend a cylinder flange by unit length & The Stiffness of Gasket Value is the amount of force required to extend a gasket by unit length.
How to calculate Stiffness of Cylinder Cover of Gasket Joint?
Stiffness of Cylinder Cover of Gasket Joint formula is defined as the amount of force required to extend a cylinder flange by unit length is calculated using Stiffness of Pressurized Cylinder Cover = 1/((1/Combined stiffness for gasket joint)-((1/Stiffness of Pressurized Cylinder Flange)+(1/Stiffness of Gasket))). To calculate Stiffness of Cylinder Cover of Gasket Joint, you need Combined stiffness for gasket joint (kc), Stiffness of Pressurized Cylinder Flange (k2) & Stiffness of Gasket (kg). With our tool, you need to enter the respective value for Combined stiffness for gasket joint, Stiffness of Pressurized Cylinder Flange & Stiffness of 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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