Q3 Figure 3 shows a steel shaft of length L = 1.8 m and diameter d = 27 mm that carries a distributed toque of intensity (torque per unit length). -L- A B 1 a, = 1 Fig 3: Steel shaft The torque per unit length is given as: t = t, where th 255 N. m/m. %3D Determine (a) the maximum shear stress in the shaft; and (b) the angle of twist. Use G = 85 GPa for steel. %3D

Structural Analysis
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Chapter2: Loads On Structures
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Q3 Figure 3 shows a steel shaft of length L = 1.8 m and diameter d = 27 mm that carries a
distributed toque of intensity (torque per unit length).
y
A
В
t = tB¯
BL
Fig 3: Steel shaft
The torque per unit length is given as:
t = t,-
where th = 255 N· m/m.
Determine (a) the maximum shear stress in the shaft; and (b) the angle of twist. Use G = 85
GPa for steel.
Transcribed Image Text:Q3 Figure 3 shows a steel shaft of length L = 1.8 m and diameter d = 27 mm that carries a distributed toque of intensity (torque per unit length). y A В t = tB¯ BL Fig 3: Steel shaft The torque per unit length is given as: t = t,- where th = 255 N· m/m. Determine (a) the maximum shear stress in the shaft; and (b) the angle of twist. Use G = 85 GPa for steel.
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