A copper cylinder 150mm outside diameter has walls 25mm thick. End plates are stayed by a 25mm diameter bar of steel which passes through the cylinder and is just tight at -11°C. Estimate the stress in cylinder and stay when steam at atmospheric atmosphere (100°C) is admitted. Assume the end plates do not deform. Use the following values: ac = 17 x 106/0C %3D Ec = 117 GPa %3D a, = 12 x 1061°C Es = 200 GPa %3D
A copper cylinder 150mm outside diameter has walls 25mm thick. End plates are stayed by a 25mm diameter bar of steel which passes through the cylinder and is just tight at -11°C. Estimate the stress in cylinder and stay when steam at atmospheric atmosphere (100°C) is admitted. Assume the end plates do not deform. Use the following values: ac = 17 x 106/0C %3D Ec = 117 GPa %3D a, = 12 x 1061°C Es = 200 GPa %3D
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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![A copper cylinder 150mm outside diameter has walls 25mm thick.
End plates are stayed by a 25mm diameter bar of steel which
passes through the cylinder and is just tight at -11°C. Estimate the
stress in cylinder and stay when steam at atmospheric atmosphere
(100°C) is admitted. Assume the end plates do not deform.
Use the following values:
on
ac = 17 x 106/°C
Ec = 117 GPa
ents
a, = 12 x 1061°C
Es = 200 GPa](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F87353f28-27a2-42f6-b439-0250276fd6e1%2F34b9be07-4627-498f-ad25-c3fe2528c1f3%2Fsz0t9mf_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A copper cylinder 150mm outside diameter has walls 25mm thick.
End plates are stayed by a 25mm diameter bar of steel which
passes through the cylinder and is just tight at -11°C. Estimate the
stress in cylinder and stay when steam at atmospheric atmosphere
(100°C) is admitted. Assume the end plates do not deform.
Use the following values:
on
ac = 17 x 106/°C
Ec = 117 GPa
ents
a, = 12 x 1061°C
Es = 200 GPa
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