A cantilever beam is of length 1.5 m, loaded by a concentrated force P at its tip as shown in figure, and is of circular cross section (R = 100 mm), having two symmetrically placed longitudinal holes as indicated. The material is titanium alloy, having an allowable working stress in bending of 600 MPa. Determine the maximum allowable value of the vertical force P.
A cantilever beam is of length 1.5 m, loaded by a concentrated force P at its tip as shown in figure, and is of circular cross section (R = 100 mm), having two symmetrically placed longitudinal holes as indicated. The material is titanium alloy, having an allowable working stress in bending of 600 MPa. Determine the maximum allowable value of the vertical force P.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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A cantilever beam is of length 1.5 m, loaded by a concentrated force P at its tip as shown in figure, and is of circular cross section (R = 100 mm), having two symmetrically placed longitudinal holes as indicated. The material is titanium alloy, having an allowable working stress in bending of 600 MPa. Determine the maximum allowable value of the vertical force P.
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