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Material Stiffness Modules

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CALCULATOR MODULE : Velocity Of Sound In A Solid   ±

Calculate the velocity of sound in a solid.

The speed of sound in a solid is calculated from the solid density and bulk modulus.

`a = √(K / ρ) `

where :

a = speed of sound
K = bulk modulus
ρ = density

The bulk modulus can be calculated from the elastic modulus and Poisson's ratio, or from the speed of sound in the solid.

`K = a^2 ρ `
`K = E / (3 (1 - 2 γ )) `

where :

E = elastic modulus
γ = Poisson ratio

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CALCULATOR MODULE : Material Elastic Modulus   ±

Calculate material elastic modulus.

The elastic stiffness of a material is defined by the elastic modulus, Poisson's ratio, Lame's first parameter, bulk modulus, shear modulus and p-wave modulus. Calculate material Poisson ratio, bulk modulus, Lames first parameter, shear modulus and p-wave modulus. These six properties are interdependent so that if any two properties are known the other four properties can be calculated.

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CALCULATOR MODULE : True Stress And Strain   ±

Calculate true stress and strain, and engineering stress and strain.

Engineering stress and strain are calculated from the unstressed material length and cross section area. True stress and strain are calculated from the deformed length and cross section area.

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DATA MODULE : Material Elastic Modulus And Poisson Ratio ( Open In Popup Workbook )   ±
DATA MODULE : ASME B31.1 Power Piping Elastic Modulus ( Open In Popup Workbook )   ±
DATA MODULE : ASME B31.3 Process Piping Elastic Modulus ( Open In Popup Workbook )   ±
DATA MODULE : ASME B31.5 Refrigeration Piping Elastic Modulus ( Open In Popup Workbook )   ±

Elastic modulus data for ASME B31.5 refrigeration piping (Table 519.3.2 SI values).

Use the ASME B31.5 elastic modulus calculators (see link below) to interpolate the US data values, or to convert the US data values to SI units.

Reference : ANSI/ASME B31.5 : Refrigeration Piping And Heat Transfer Components

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