The tank shown in Figure below is fabricated from t = 1/8 in steel plate. The naximum longitudinal and circumferential stress caused by an internal pressure of 125 psi (Ib/in²). 1. Drive the expressions for longitudinal and tangentional stresses? 2. Calculate the maximum longitudinal and circumferential stress caused by an internal pressure? Fw Fw Fp Fp 2) 1.5 ft 2 ft (t = 1/8 in Fw Fw Fw Fw -2 ft 0.75 ft LONGITUDINAL STRESS, ₁ TANGENTIAL STRESS o, 2 ft 1.5 t

Mechanics of Materials (MindTap Course List)
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ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
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Chapter8: Applications Of Plane Stress (pressure Vessels, Beams, And Combined Loadings)
Section: Chapter Questions
Problem 8.3.1P: A fire extinguisher tank is designed for an internal pressure of 825 psi. The tank has an outer...
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Q.4
The tank shown in Figure below is fabricated from t = 1/8 in steel plate. The
maximum longitudinal and circumferential stress caused by an internal
pressure of 125 psi (Ib/in²).
1. Drive the expressions for longitudinal and tangentional stresses?
2. Calculate the maximum longitudinal and circumferential stress caused by
an internal pressure?
Fw
Fw
Fp
Fp
1.5 ft
-2 ft-
|t=1/8 in
Fw
Fw
Fw
Fw
LONGITUDINAL STRESS, ₁
2 ft
1.5 ft
2 ft
0.75 ft
TANGENTIAL STRESS 0,
Transcribed Image Text:Q.4 The tank shown in Figure below is fabricated from t = 1/8 in steel plate. The maximum longitudinal and circumferential stress caused by an internal pressure of 125 psi (Ib/in²). 1. Drive the expressions for longitudinal and tangentional stresses? 2. Calculate the maximum longitudinal and circumferential stress caused by an internal pressure? Fw Fw Fp Fp 1.5 ft -2 ft- |t=1/8 in Fw Fw Fw Fw LONGITUDINAL STRESS, ₁ 2 ft 1.5 ft 2 ft 0.75 ft TANGENTIAL STRESS 0,
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