An aluminum bar having a cross - sectional area of 150 mm2 carries an axial load in three sections with measurements 0.8 m, 1.0 m, and 0.6 m from the left to right of the bar. The loads are distributed as follows: 35 KN going out and 15 KN going right of section 1, 30 KN going right of section 2 and 10 KN going in on section 3. If E = 70 GPa compute for the total deformation of the bar assuming that the bar is braced to prevent buckling. Make a diagram of the bar and the free-body diagram of each section to determine the force applied in each section.
An aluminum bar having a cross - sectional area of 150 mm2 carries an axial load in three sections with measurements 0.8 m, 1.0 m, and 0.6 m from the left to right of the bar. The loads are distributed as follows: 35 KN going out and 15 KN going right of section 1, 30 KN going right of section 2 and 10 KN going in on section 3. If E = 70 GPa compute for the total deformation of the bar assuming that the bar is braced to prevent buckling. Make a diagram of the bar and the free-body diagram of each section to determine the force applied in each section.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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An aluminum bar having a cross - sectional area of 150 mm2 carries an axial load in three sections with measurements 0.8 m, 1.0 m, and 0.6 m from the left to right of the bar. The loads are distributed as follows: 35 KN going out and 15 KN going right of section 1, 30 KN going right of section 2 and 10 KN going in on section 3. If E = 70 GPa compute for the total deformation of the bar assuming that the bar is braced to prevent buckling. Make a diagram of the bar and the free-body diagram of each section to determine the force applied in each section.
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