Based on the figure below, a steel rod was fitted on the copper tube and was fixed with a washers and tightened with nuts with an applied force of 68 kN. Calculate the working stress of the rod and tube if the temperature during the fitting is 48 degrees Celsius. Modulus of Elasticity of Steel = 200 GPa Modulus of Elasticity of Copper = 100 Gpa Coefficient of Expansion due to Temperature of Steel = 12 x 10-6 / °C Coefficient of Expansion due to Temperature of Copper = 18 x 10-6 / °C Steel T 20 mm O

Engineering Fundamentals: An Introduction to Engineering (MindTap Course List)
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Chapter7: Length And Length-related Variables In Engineering
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Problem 43P: A 10 cm long rectangular bar (when subjected to a tensile load) deforms by 0.1 mm. Calculate the...
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Based on the figure below, a steel rod was fitted on the copper tube and was fixed with a washers and tightened with nuts
with an applied force of 68 kN. Calculate the working stress of the rod and tube if the temperature during the fitting is 48
degrees Celsius.
Modulus of Elasticity of Steel = 200 GPa
Modulus of Elasticity of Copper = 100 Gpa
Coefficient of Expansion due to Temperature of Steel = 12 x 10-6 / °C
Coefficient of Expansion due to Temperature of Copper = 18 x 10-6 / °C
Steel
20 mm o
Transcribed Image Text:Based on the figure below, a steel rod was fitted on the copper tube and was fixed with a washers and tightened with nuts with an applied force of 68 kN. Calculate the working stress of the rod and tube if the temperature during the fitting is 48 degrees Celsius. Modulus of Elasticity of Steel = 200 GPa Modulus of Elasticity of Copper = 100 Gpa Coefficient of Expansion due to Temperature of Steel = 12 x 10-6 / °C Coefficient of Expansion due to Temperature of Copper = 18 x 10-6 / °C Steel 20 mm o
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