The outside diameter of a thin-walled steel tube is 100mm, and the material thickness is Smm. The ultimate tension and compression strengths of the material are o, = 250 MPa and ou, = 520 MPa, respectively. Determine the allowed torque in kN-m that may be applied to the tube using a safety factor of 2 and the Coulomb-Mohr failure hypothesis,
The outside diameter of a thin-walled steel tube is 100mm, and the material thickness is Smm. The ultimate tension and compression strengths of the material are o, = 250 MPa and ou, = 520 MPa, respectively. Determine the allowed torque in kN-m that may be applied to the tube using a safety factor of 2 and the Coulomb-Mohr failure hypothesis,
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![The outside diameter of a thin-walled steel tube is 100mm, and the
material thickness is Smm. The ultimate tension and compression
strengths of the material are o, = 250 MPa and ou, = 520 MPa,
respectively. Determine the allowed torque in kN-m that may be
applied to the tube using a safety factor of 2 and the Coulomb-Mohr
failure hypothesis,](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ffa16ec07-1574-48bd-9c5a-b9cf8811fbed%2F689ddcbe-d17b-443e-8dcc-32c46bec1a1a%2Fshs3mai_processed.png&w=3840&q=75)
Transcribed Image Text:The outside diameter of a thin-walled steel tube is 100mm, and the
material thickness is Smm. The ultimate tension and compression
strengths of the material are o, = 250 MPa and ou, = 520 MPa,
respectively. Determine the allowed torque in kN-m that may be
applied to the tube using a safety factor of 2 and the Coulomb-Mohr
failure hypothesis,
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