When the temperature is at 30°C, the steel pipe fits snugly between the two fuel tanks. When fuel flows through the pipe, it causes the temperature to vary along the pipe as T = (3x² — 20x + 120)°C. Calculate the normal stress developed in the pipe. Assume each tank provides a rigid support at A and B. a=12X10-6/°C 150 mm. 10 mm- Section a - a -6 m a B

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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When the temperature is at 30°C, the
steel pipe fits snugly between the two
fuel tanks. When fuel flows through the
pipe, it causes the temperature to vary
along the pipe as T = (3x² 20x +
120)°C. Calculate the normal stress
developed in the pipe. Assume each tank
provides a rigid support at A and B.
a=12X10-6/°C
-
150 mm
10 mm-
Section a - a
-6 m
a
a
B
Transcribed Image Text:When the temperature is at 30°C, the steel pipe fits snugly between the two fuel tanks. When fuel flows through the pipe, it causes the temperature to vary along the pipe as T = (3x² 20x + 120)°C. Calculate the normal stress developed in the pipe. Assume each tank provides a rigid support at A and B. a=12X10-6/°C - 150 mm 10 mm- Section a - a -6 m a a B
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