A circular aluminum alloy [E = 70 GPa; a = 22.5 × 10-6/°C; v = 0.33] pipe has an outside diameter of 210 mm, a wall thickness of 11 mm, and a length of 5.8 m. The pipe supports a compressive load of 675 kN. After the temperature of the pipe drops 43°C, determine: (a) the axial deformation of the pipe. (b) the change in diameter of the pipe. Answer: (a) d = i mm AD= i mm

Materials Science And Engineering Properties
1st Edition
ISBN:9781111988609
Author:Charles Gilmore
Publisher:Charles Gilmore
Chapter6: Introduction To Mechanical Properties
Section: Chapter Questions
Problem 6.3P: Compare the engineering and true secant elastic moduli for the natural rubber in Example Problem 6.2...
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A circular aluminum alloy [E = 70 GPa; a = 22.5 × 10-6/°C; v = 0.33] pipe has an outside diameter of 210 mm, a wall thickness of 11 mm,
and a length of 5.8 m. The pipe supports a compressive load of 675 kN. After the temperature of the pipe drops 43°C, determine:
(a) the axial deformation of the pipe.
(b) the change in diameter of the pipe.
Answer:
(a) d = i
mm
AD= i
mm
Transcribed Image Text:A circular aluminum alloy [E = 70 GPa; a = 22.5 × 10-6/°C; v = 0.33] pipe has an outside diameter of 210 mm, a wall thickness of 11 mm, and a length of 5.8 m. The pipe supports a compressive load of 675 kN. After the temperature of the pipe drops 43°C, determine: (a) the axial deformation of the pipe. (b) the change in diameter of the pipe. Answer: (a) d = i mm AD= i mm
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