An aluminum alloy pipe AB [EAB = 12,000 ksi] with a cross-sectional area of AAB = 6.40 in.2 is connected at flange B to a steel pipe [EBC = 50,000 ksi] with a cross-sectional area of ABC = 7.60 in.2. The assembly is connected to rigid supports at A and C. [LAB = 86 in.; LBC = 146 in.; PB = 177 kips ⇾] Determine the normal stresses in aluminum pipe AB and steel pipe BC.

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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An aluminum alloy pipe AB [EAB = 12,000 ksi]
with a cross-sectional area of AAB = 6.40 in.2 is
connected at flange B to a steel pipe [EBC =
50,000 ksi] with a cross-sectional area of ABC
= 7.60 in.2. The assembly is connected to rigid
supports at A and C.
[LAB = 86 in.; LBC = 146 in.; PB = 177 kips ⇾]
Determine the normal stresses in aluminum
pipe AB and steel pipe BC. 

(1)
(2)
B
L2
Transcribed Image Text:(1) (2) B L2
Expert Solution
Step 1

To determine the normal stress in pipes AB and BC.

 

Given,

Modulus of elasticity of aluminum, EAB = 12000 ksi

Cross-sectional area of pipe AB, AAB = 6.4 in2

Length of pipe AB, LAB = 86 in

Modulus of elasticity of steel, EBC = 50000 ksi

Cross-sectional area of pipe BC, ABC = 7.6 in2

Length of pipe BC, LBC = 146 in

Load acting at point B, PB = 177 kips

 

The stress in the pipes can be obtained by using the conditions of static equilibrium and compatibility.

 

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