Current Attempt in Progress A compound shaft consists of brass segment (1) and aluminum segment (2). Segment (1) is a solid brass shaft with an allowable shear stress of 51 MPa. Segment (2) is a solid aluminum shaft with an allowable shear stress of 82 MPa. If a torque of Tc = 25400 N-m is applied at C, determine the minimum required diameter of the brass shaft d₁ and the aluminum shaft d2. Tc (2) B

Structural Analysis
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Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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d₁ =
Current Attempt in Progress
A compound shaft consists of brass segment (1) and aluminum segment (2). Segment (1) is a solid brass shaft with an allowable shear
stress of 51 MPa. Segment (2) is a solid aluminum shaft with an allowable shear stress of 82 MPa. If a torque of Tc = 25400 N-m is
applied at C, determine the minimum required diameter of the brass shaft d₁ and the aluminum shaft d2.
d₂ =
i
i
(2)
(1)
<
B
>
mm
-/5
mm
|||
:
Transcribed Image Text:Question 9 of 15 View Policies Tc Answers: d₁ = Current Attempt in Progress A compound shaft consists of brass segment (1) and aluminum segment (2). Segment (1) is a solid brass shaft with an allowable shear stress of 51 MPa. Segment (2) is a solid aluminum shaft with an allowable shear stress of 82 MPa. If a torque of Tc = 25400 N-m is applied at C, determine the minimum required diameter of the brass shaft d₁ and the aluminum shaft d2. d₂ = i i (2) (1) < B > mm -/5 mm ||| :
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