The compound cylinder shown below is fabricated from a hollow outer cylinder and a solid shaft by using a shrink fit process. For this assembly, the relationship between the shrinking allowance, 8, and the interfacial pressure, p, is of the form, p co, where c is a constant. It is found that for 8 =0.02 mm, p 9.0 MPa. If 8 is increased to 0.1mm, determine radial and tangential stress at the intersection for both the cylinders. Brass: E-110 GPa Y 0.32 Steel: E-200 GPa v,- 0.28 Oyp 560 MPa Oyp = 240 MPa 160 mm

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The compound cylinder shown below is fabricated from a hollow outer
cylinder and a solid shaft by using a shrink fit process. For this assembly, the
relationship between the shrinking allowance, 8, and the interfacial pressure,
p, is of the form, p= cô, where c is a constant. It is found that for 8 = 0.02
mm, p = 9.0 MPa. If 8 is increased to 0.1mm, determine radial and tangential
stress at the intersection for both the cylinders.
Brass:
Steel:
E - 110 GPa
V,=0.32
= 240 MPa
E- 200 GPa
v.- 0.28
O yp
Oyp = 560 MPa
160 mm
280 mm
Transcribed Image Text:The compound cylinder shown below is fabricated from a hollow outer cylinder and a solid shaft by using a shrink fit process. For this assembly, the relationship between the shrinking allowance, 8, and the interfacial pressure, p, is of the form, p= cô, where c is a constant. It is found that for 8 = 0.02 mm, p = 9.0 MPa. If 8 is increased to 0.1mm, determine radial and tangential stress at the intersection for both the cylinders. Brass: Steel: E - 110 GPa V,=0.32 = 240 MPa E- 200 GPa v.- 0.28 O yp Oyp = 560 MPa 160 mm 280 mm
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