A circular aluminum alloy [E = 70 GPa; a = 22.5 × 10-6/°C; v = 0.33] pipe has an outside diameter of 215 mm, a wall thickness of 12 mm, and a length of 5.4 m. The pipe supports a compressive load of 600 kN. After the temperature of the pipe drops 40°C, determine: (a) the axial deformation of the pipe. (b) the change in diameter of the pipe. Ancwer:
A circular aluminum alloy [E = 70 GPa; a = 22.5 × 10-6/°C; v = 0.33] pipe has an outside diameter of 215 mm, a wall thickness of 12 mm, and a length of 5.4 m. The pipe supports a compressive load of 600 kN. After the temperature of the pipe drops 40°C, determine: (a) the axial deformation of the pipe. (b) the change in diameter of the pipe. Ancwer:
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![A circular aluminum alloy [E = 70 GPa; a = 22.5 x 10-6/°C; v = 0.33] pipe has an outside diameter of 215 mm, a wall thickness of 12 mm,
and a length of 5.4 m. The pipe supports a compressive load of 600 kN. After the temperature of the pipe drops 40°C, determine:
(a) the axial deformation of the pipe.
(b) the change in diameter of the pipe.
Answer:](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F133d62ef-a1a6-49ff-a268-34b7953c6236%2F6922ef50-c292-416d-9b79-4ec664c986ee%2F9tzdsj_processed.png&w=3840&q=75)
Transcribed Image Text:A circular aluminum alloy [E = 70 GPa; a = 22.5 x 10-6/°C; v = 0.33] pipe has an outside diameter of 215 mm, a wall thickness of 12 mm,
and a length of 5.4 m. The pipe supports a compressive load of 600 kN. After the temperature of the pipe drops 40°C, determine:
(a) the axial deformation of the pipe.
(b) the change in diameter of the pipe.
Answer:
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