A hollow titanium [G = 30 GPa] shaft has an outside diameter of D = 41 mm and a wall thickness of t = 1.95 mm. The maximum shear stress in the shaft must be limited to 190 MPa. Determine: (a) the maximum power P that can be transmitted by the shaft if the rotation speed must be limited to 30 Hz. (b) the magnitude of the angle of twist in a 820-mm length of the shaft when 37 kW is being transmitted at 11 Hz. Answers: (a) P= i (b) = i kW. 。
A hollow titanium [G = 30 GPa] shaft has an outside diameter of D = 41 mm and a wall thickness of t = 1.95 mm. The maximum shear stress in the shaft must be limited to 190 MPa. Determine: (a) the maximum power P that can be transmitted by the shaft if the rotation speed must be limited to 30 Hz. (b) the magnitude of the angle of twist in a 820-mm length of the shaft when 37 kW is being transmitted at 11 Hz. Answers: (a) P= i (b) = i kW. 。
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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6.
![A hollow titanium [G= 30 GPa] shaft has an outside diameter of D = 41 mm and a wall thickness of t = 1.95 mm. The maximum shear
stress in the shaft must be limited to 190 MPa. Determine:
(a) the maximum power P that can be transmitted by the shaft if the rotation speed must be limited to 30 Hz.
(b) the magnitude of the angle of twist in a 820-mm length of the shaft when 37 kW is being transmitted at 11 Hz.
Answers:
(a) P =
(b) =
i
kW.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F76a833d5-2609-44f6-9a76-4b0883c8ec22%2Ffba4bd64-8802-47fb-b286-ff05ec2b3457%2Fozsgxt8_processed.png&w=3840&q=75)
Transcribed Image Text:A hollow titanium [G= 30 GPa] shaft has an outside diameter of D = 41 mm and a wall thickness of t = 1.95 mm. The maximum shear
stress in the shaft must be limited to 190 MPa. Determine:
(a) the maximum power P that can be transmitted by the shaft if the rotation speed must be limited to 30 Hz.
(b) the magnitude of the angle of twist in a 820-mm length of the shaft when 37 kW is being transmitted at 11 Hz.
Answers:
(a) P =
(b) =
i
kW.
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