8) A shaft of diameter (d 5-mm) is to be pulled through a (4.5)-cm-diameter glycerin-filled sleeve as shown in Figure. The glycerin to be used has a dynamic viscosity of 1.5 Pa.s, and the cable is pulled by 60-N tensile force. If the cable is to be pulled at a velocity of 0.02 m/s and the velocity profile equation though glycerin is (u = 0.6y + 20y²), what is the length of the sleeve that can be used to provide this velocity? Assume that the cable can be kept at the center of the sleeve. L Sleeve Shaft D

Structural Analysis
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ISBN:9781337630931
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Chapter2: Loads On Structures
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H.W.1
8) A shaft of diameter (d 5-mm) is to be pulled through a (4.5)-cm-diameter
glycerin-filled sleeve as shown in Figure. The glycerin to be used has a dynamic
viscosity of 1.5 Pa.s, and the cable is pulled by 60-N tensile force. If the cable is to
be pulled at a velocity of 0.02 m/s and the velocity profile equation though glycerin
is (u = 0.6y + 20y2), what is the length of the sleeve that can be used to provide
this velocity? Assume that the cable can be kept at the center of the sleeve.
Sleeve
Shaft
Transcribed Image Text:H.W.1 8) A shaft of diameter (d 5-mm) is to be pulled through a (4.5)-cm-diameter glycerin-filled sleeve as shown in Figure. The glycerin to be used has a dynamic viscosity of 1.5 Pa.s, and the cable is pulled by 60-N tensile force. If the cable is to be pulled at a velocity of 0.02 m/s and the velocity profile equation though glycerin is (u = 0.6y + 20y2), what is the length of the sleeve that can be used to provide this velocity? Assume that the cable can be kept at the center of the sleeve. Sleeve Shaft
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