5. This bar is made of AISI 1006 cold-drawn steel (Sy = 280 MPa) and is loaded by the forces F = 0.45 kN, P = 6.0 kN, and T = 30 N•m. Determine the maximum length L of the bar that can be used without exceeding a static factor of safety of 2 for the entire bar (Based on the maximum shear stress theory). You need to find the most critical position. 100 mm 15-mm D.

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter11: Columns
Section: Chapter Questions
Problem 11.3.20P: The hoisting arrangement for lifting a large pipe is shown in the figure. The spreader is a steel...
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5. This bar is made of AISI 1006 cold-drawn steel (Sy = 280 MPa) and is loaded by the forces F = 0.45
kN, P = 6.0 kN, and T = 30 N-m. Determine the maximum length L of the bar that can be used
without exceeding a static factor of safety of 2 for the entire bar (Based on the maximum shear
stress theory). You need to find the most critical position.
100 mm
15-mm D.
Transcribed Image Text:5. This bar is made of AISI 1006 cold-drawn steel (Sy = 280 MPa) and is loaded by the forces F = 0.45 kN, P = 6.0 kN, and T = 30 N-m. Determine the maximum length L of the bar that can be used without exceeding a static factor of safety of 2 for the entire bar (Based on the maximum shear stress theory). You need to find the most critical position. 100 mm 15-mm D.
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