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Preview: Cone Cylinder Stress and Deflection by Uniform Rotation Calculator
Cone Stress and Deflection |
Deflection and Stress by Uniform rotation, ω rad/s, about central axis.
Meridional Stress
Circumferential Hoop Stress
Radial Displacement of Circumference
Change in height dimension y
Rotation of a meridian from its unloaded position
Where used:
E = Modulus of Elasticity (lbs/in2)
v = Poisson's ratio
ω = Uniform rotation (rad/sec)
δm = Mass Density (lbs/in3
σ1,2 = stress, (lbs/in2)
R = Large radius (in)
α = Angle (deg.)
ψ = Rotation of a meridian from its unloaded position, positive when that meridional rotation represents an increase in ΔR when y or θ increases;
Reference:
Roarks Formulas for Stress and Strain, 7th Edition