A steel tube 2.4 cm external diameter and 1-8 cm internal diameter encloses a copper rod 1-5 cm diameter to which it is rigidly joined at each end. If, at a temperature of 10°C there is no longitudinal stress calculate the stresses in the rod and tube when the temperature is raised to 200°C. Es 210,000 N/mm² E=100,000 N/mm² Coefficients of linear expansion: as 11 x 10"/ °C., de 18 x 106/ºC.
A steel tube 2.4 cm external diameter and 1-8 cm internal diameter encloses a copper rod 1-5 cm diameter to which it is rigidly joined at each end. If, at a temperature of 10°C there is no longitudinal stress calculate the stresses in the rod and tube when the temperature is raised to 200°C. Es 210,000 N/mm² E=100,000 N/mm² Coefficients of linear expansion: as 11 x 10"/ °C., de 18 x 106/ºC.
Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter2: Axially Loaded Members
Section: Chapter Questions
Problem 2.5.13P: Rectangular bars of copper and aluminum are held by pins at their ends, as shown in the figure. Thin...
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
Transcribed Image Text:A steel tube 2.4 cm external diameter and 1-8 cm internal diameter encloses a copper rod
1-5 cm diameter to which it is rigidly joined at each end. If, at a temperature of 10°C there is
no longitudinal stress calculate the stresses in the rod and tube when the temperature is
raised to 200°C.
Es 210,000 N/mm² E=100,000 N/mm²
Coefficients of linear expansion: as 11 x 10"/ °C., de 18 x 106/ºC.
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