the maximum the compound rotation angle at the upper-end Cof shaft if the applied torque Te = 750 lb-in

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
Section: Chapter Questions
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A compound shaft (Fig.) consists of a brass segment (1) and
an aluminum segment (2). Segment (1) is a solid brass
[G = 5,600 ksi] shaft with an outside diameter of 2.75 in.
Segment (2) is a solid aluminum [G = 4,000 ksi] shaft with
an outside diameter of 2.25 in. Determine
the maximum rotation angle at the upper-end C of
the compound shaft if the applied torque Te = 750 lb-in
(91, 92, Qc)
p=
TL
JG
To
(2)
(1)
C
B
24 in.
18 in.
Transcribed Image Text:A compound shaft (Fig.) consists of a brass segment (1) and an aluminum segment (2). Segment (1) is a solid brass [G = 5,600 ksi] shaft with an outside diameter of 2.75 in. Segment (2) is a solid aluminum [G = 4,000 ksi] shaft with an outside diameter of 2.25 in. Determine the maximum rotation angle at the upper-end C of the compound shaft if the applied torque Te = 750 lb-in (91, 92, Qc) p= TL JG To (2) (1) C B 24 in. 18 in.
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