A copper [E = 106 GPa, a = 16.8x10-6/°C] rod (2) is placed within a steel [E = 212 GPa, a = 11.3x10-6/°C] tube (1) of the same length. The two components are connected at each end by pins that pass through both the tube and the rod. The outside diameter of the steel tube is D₁ = 102 mm, its inside diameter is d₁ = 79 mm, and its cross-sectional area is A₁ = 3270 mm². The diameter of the solid copper rod is d₂ = 55 mm, and its cross-sectional area is A2 = 2376 mm². Calculate the normal stress in the copper rod if the temperature of the entire assembly is raised by 52°C. Pin Answer: 02- i Steel Tube (1) Pin MPa Copper Rod (2)
A copper [E = 106 GPa, a = 16.8x10-6/°C] rod (2) is placed within a steel [E = 212 GPa, a = 11.3x10-6/°C] tube (1) of the same length. The two components are connected at each end by pins that pass through both the tube and the rod. The outside diameter of the steel tube is D₁ = 102 mm, its inside diameter is d₁ = 79 mm, and its cross-sectional area is A₁ = 3270 mm². The diameter of the solid copper rod is d₂ = 55 mm, and its cross-sectional area is A2 = 2376 mm². Calculate the normal stress in the copper rod if the temperature of the entire assembly is raised by 52°C. Pin Answer: 02- i Steel Tube (1) Pin MPa Copper Rod (2)
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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