L 10 kN 7 kN 14 kN H 240 mm The pipe in the figue problem is subjected to the forces given in the figur i) Find the stresses acting @ point H, and draw stress element and the possible Mohr circle. ii) Find the maximum L distance, if the material has; Outside Diameter 95 mm, Inside diameter 85 mm Moment of inertia l=2.871x10^(-6) m^4 - Polar Moment of Inertia J=1.435x10^(-6) m^4 - Q (first moment of area) Q=20270 mm^3 - Material Normal Yield Stress = 150 MPa %3D

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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L
10 kN
7 kN
14 kN
H
K
240 mm
The pipe in the figue problem is subjected to the forces given in the figure.
i) Find the stresses acting @ point H, and draw stress element and the
possible Mohr circle.
ii) Find the maximum L distance, if the material has;
- Outside Diameter 95 mm, Inside diameter 85 mm
- Moment of inertia l=2.871x10^(-6) m^4
- Polar Moment of Inertia J=1.435x10^(-6) m^4
- Q (first moment of area) Q=20270 mm^3
- Material Normal Yield Stress = 150 MPa
%3D
Transcribed Image Text:L 10 kN 7 kN 14 kN H K 240 mm The pipe in the figue problem is subjected to the forces given in the figure. i) Find the stresses acting @ point H, and draw stress element and the possible Mohr circle. ii) Find the maximum L distance, if the material has; - Outside Diameter 95 mm, Inside diameter 85 mm - Moment of inertia l=2.871x10^(-6) m^4 - Polar Moment of Inertia J=1.435x10^(-6) m^4 - Q (first moment of area) Q=20270 mm^3 - Material Normal Yield Stress = 150 MPa %3D
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