PROBLEM 6.10 A hollow shaft has its internal and external radii as 100 mm and 200 mm, respectively. Determine maximum shear stress developed. Also determine shear force developed at the inside edge. Assume that the shaft is subjected to a torque of 115 kN-m. Determine twist in degrees in a length of 25 times the external diameter. Take G = 80 GPa. Draw the shear stress variation across the section.
PROBLEM 6.10 A hollow shaft has its internal and external radii as 100 mm and 200 mm, respectively. Determine maximum shear stress developed. Also determine shear force developed at the inside edge. Assume that the shaft is subjected to a torque of 115 kN-m. Determine twist in degrees in a length of 25 times the external diameter. Take G = 80 GPa. Draw the shear stress variation across the section.
Chapter2: Loads On Structures
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please draw the diagram. thanks
![PROBLEM 6.10 A hollow shaft has its internal and external radii as
100 mm and 200 mm, respectively. Determine maximum shear stress
developed. Also determine shear force developed at the inside edge. Assume
that the shaft is subjected to a torque of 115 kN-m. Determine twist in
degrees in a length of 25 times the external diameter. Take G = 80 GPa.
Draw the shear stress variation across the section.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F2f2b6d9c-9995-46fc-b7bd-b3d175cbc6f7%2Fdb8f5753-9419-4769-8218-9ec3f5b27d0b%2F8yk5bce_processed.png&w=3840&q=75)
Transcribed Image Text:PROBLEM 6.10 A hollow shaft has its internal and external radii as
100 mm and 200 mm, respectively. Determine maximum shear stress
developed. Also determine shear force developed at the inside edge. Assume
that the shaft is subjected to a torque of 115 kN-m. Determine twist in
degrees in a length of 25 times the external diameter. Take G = 80 GPa.
Draw the shear stress variation across the section.
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