ProbleT --- An aluminum bar has diameter d = 40 mm, shear modulus of elasticity G = 27 GPa, and torque T = 300 N.m. (a) Determine the maximum shear, tensile, and compressive stresses in the bar, and show these stresses on sketches of properly oriented stress elements. (b) Determine the corresponding maximum strains (shear, tensile, and compressive) in the bar and show these strains on sketches of the deformed elements. 40 mm T= 300 N-m

Structural Analysis
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Chapter2: Loads On Structures
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ProbleT =
- An aluminum bar has diameter d = 40 mm, shear modulus of elasticity G = 27
GPa, and torque T = 300 N.m.
(a) Determine the maximum shear, tensile, and compressive stresses in the bar, and show these stresses
on sketches of properly oriented stress elements.
(b) Determine the corresponding maximum strains (shear, tensile, and compressive) in the bar and show
these strains on sketches of the deformed elements.
|d=40 mm
T= 300 N-m
Transcribed Image Text:ProbleT = - An aluminum bar has diameter d = 40 mm, shear modulus of elasticity G = 27 GPa, and torque T = 300 N.m. (a) Determine the maximum shear, tensile, and compressive stresses in the bar, and show these stresses on sketches of properly oriented stress elements. (b) Determine the corresponding maximum strains (shear, tensile, and compressive) in the bar and show these strains on sketches of the deformed elements. |d=40 mm T= 300 N-m
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