An aluminum alloy [E = 10,000 ksi; ay = 40 ksi] pipe (1) is connected to a bronze [E = 16,000 ksi; oy=45 ksi] pipe at flange B. The pipes are attached to rigid supports at A and C. Pipe (1) has an outside diameter of 2.425 in., a wall thickness of 0.21 in., and a length of L₁-8 ft. Pipe (2) has an outside diameter of 5.00 in., a wall thickness of 0.20 in., and a length of L₂ = 14 ft. If a minimum factor of safety of 2.1 is required for each pipe, determine: (a) the maximum load P that may be applied at flange B. (b) the deflection of flange B at the load determined in part (a). Deflection to the right is positive.
An aluminum alloy [E = 10,000 ksi; ay = 40 ksi] pipe (1) is connected to a bronze [E = 16,000 ksi; oy=45 ksi] pipe at flange B. The pipes are attached to rigid supports at A and C. Pipe (1) has an outside diameter of 2.425 in., a wall thickness of 0.21 in., and a length of L₁-8 ft. Pipe (2) has an outside diameter of 5.00 in., a wall thickness of 0.20 in., and a length of L₂ = 14 ft. If a minimum factor of safety of 2.1 is required for each pipe, determine: (a) the maximum load P that may be applied at flange B. (b) the deflection of flange B at the load determined in part (a). Deflection to the right is positive.
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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![An aluminum alloy [E = 10,000 ksi; oy = 40 ksi] pipe (1) is connected to a bronze [E = 16,000 ksi; ay = 45 ksi] pipe at flange B. The pipes
are attached to rigid supports at A and C. Pipe (1) has an outside diameter of 2.425 in., a wall thickness of 0.21 in., and a length of L₁ = 8
ft. Pipe (2) has an outside diameter of 5.00 in., a wall thickness of 0.20 in., and a length of L₂ = 14 ft. If a minimum factor of safety of 2.1
is required for each pipe, determine:
(a) the maximum load P that may be applied at flange B.
(b) the deflection of flange B at the load determined in part (a). Deflection to the right is positive.
(2)
(1)
C
Answer:
(a) P = i
(b) Ug =
i
P<
L₁
B
L₂
! kips
in.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc5da05fe-3cea-4b4d-8a1b-ffb47551adf7%2Feb6c3718-01c8-46e8-ad6b-87a83f1d16aa%2Fi8eehd8_processed.png&w=3840&q=75)
Transcribed Image Text:An aluminum alloy [E = 10,000 ksi; oy = 40 ksi] pipe (1) is connected to a bronze [E = 16,000 ksi; ay = 45 ksi] pipe at flange B. The pipes
are attached to rigid supports at A and C. Pipe (1) has an outside diameter of 2.425 in., a wall thickness of 0.21 in., and a length of L₁ = 8
ft. Pipe (2) has an outside diameter of 5.00 in., a wall thickness of 0.20 in., and a length of L₂ = 14 ft. If a minimum factor of safety of 2.1
is required for each pipe, determine:
(a) the maximum load P that may be applied at flange B.
(b) the deflection of flange B at the load determined in part (a). Deflection to the right is positive.
(2)
(1)
C
Answer:
(a) P = i
(b) Ug =
i
P<
L₁
B
L₂
! kips
in.
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