A fire extinguisher tank is designed for an internal pressure of 899 psi. The tank has an outer diameter of 4.5 in. and thickness of 0.08 in. Calculate the longitudinal stress, the circumferential stress, and the maximum shear stresses (in-plane and out-of-plane) at the outer surface of the tank. (Assume that all internal pressures are gage pressures. Enter the magnitudes in ksi.) longitudinal ksi circumferential ksi in-plane max ksi out-of-plane max" ksi

Structural Analysis
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A fire extinguisher tank is designed for an internal pressure of 899 psi. The tank has an outer diameter of 4.5 in. and thickness of 0.08 in. Calculate the longitudinal stress, the circumferential stress, and the maximum shear stresses (in-plane and out-of-plane) at the
outer surface of the tank. (Assume that all internal pressures are gage pressures. Enter the magnitudes in ksi.)
longitudinal
ksi
circumferential
「っ =
ksi
in-plane
max
ksi
out-of-plane
max
ksi
Transcribed Image Text:A fire extinguisher tank is designed for an internal pressure of 899 psi. The tank has an outer diameter of 4.5 in. and thickness of 0.08 in. Calculate the longitudinal stress, the circumferential stress, and the maximum shear stresses (in-plane and out-of-plane) at the outer surface of the tank. (Assume that all internal pressures are gage pressures. Enter the magnitudes in ksi.) longitudinal ksi circumferential 「っ = ksi in-plane max ksi out-of-plane max ksi
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