4) The composite shaft consists of a solid brass segment (1) and a solid aluminum segment (2) that are connected at flange B and securely attached to rigid walls at A and C. Brass segment (1) has a diameter of 18 mm, a length of L, = 235 mm, and a shear modulus of 39 GPa. Aluminum segment (2) has a diameter of 24 mm, a length of L₂ = 165 mm, and a shear modulus of 28 GPa. If a concentrated torque of 270 Nm is applied to flange B, determine (a) the maximum shear stress magnitudes in segments (1) and (2). (b) the rotation angle of flange B relative to support A. N y 235 mm (1) B 165 mm 270 N-m C X

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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4) The composite shaft consists of a solid brass segment (1) and a solid aluminum segment (2)
that are connected at flange B and securely attached to rigid walls at A and C. Brass segment
(1) has a diameter of 18 mm, a length of L₁ = 235 mm, and a shear modulus of 39 GPa.
Aluminum segment (2) has a diameter of 24 mm, a length of L₂ = 165 mm, and a shear modulus
of 28 GPa. If a concentrated torque of 270 Nm is applied to flange B, determine
(a) the maximum shear stress magnitudes in segments (1) and (2).
(b) the rotation angle of flange B relative to support A.
N
y
A
235 mm
(1)
B
165 mm
270 N-m
(2)
C
x
Transcribed Image Text:4) The composite shaft consists of a solid brass segment (1) and a solid aluminum segment (2) that are connected at flange B and securely attached to rigid walls at A and C. Brass segment (1) has a diameter of 18 mm, a length of L₁ = 235 mm, and a shear modulus of 39 GPa. Aluminum segment (2) has a diameter of 24 mm, a length of L₂ = 165 mm, and a shear modulus of 28 GPa. If a concentrated torque of 270 Nm is applied to flange B, determine (a) the maximum shear stress magnitudes in segments (1) and (2). (b) the rotation angle of flange B relative to support A. N y A 235 mm (1) B 165 mm 270 N-m (2) C x
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