Locate mass A at 35 mm from support X. Locate mass B at 96.5 mm from support X. Locate mass C at 122.7 mm from support X. Position mass A at zero degrees and D at 90o from A. A B C D mass(kg) 0.021 0.044 0.059 0.019 essentric length(r) m 0.036 0.025 0.034 0.036 6.1. Use the graphical method to determine the angular position of masses B and C. 6.2. Calculate the position of mass D from support X. 6.3. If the shaft rotates at 150 r.p.m calculate the dynamic force experienced by the bearings.
Locate mass A at 35 mm from support X. Locate mass B at 96.5 mm from support X. Locate mass C at 122.7 mm from support X. Position mass A at zero degrees and D at 90o from A. A B C D mass(kg) 0.021 0.044 0.059 0.019 essentric length(r) m 0.036 0.025 0.034 0.036 6.1. Use the graphical method to determine the angular position of masses B and C. 6.2. Calculate the position of mass D from support X. 6.3. If the shaft rotates at 150 r.p.m calculate the dynamic force experienced by the bearings.
International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter8: Centroids And Distributed Loads
Section: Chapter Questions
Problem 8.38P: The equation of the catenary shown is y = 100 cosh (x/100) where x and y are measured in feet (the...
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Locate mass A at 35 mm from support X.
Locate mass B at 96.5 mm from support X.
Locate mass C at 122.7 mm from support X.
Position mass A at zero degrees and D at 90o from A.
A | B | C | D | |
mass(kg) | 0.021 | 0.044 | 0.059 | 0.019 |
essentric length(r) m | 0.036 | 0.025 | 0.034 | 0.036 |
6.1. Use the graphical method to determine the angular position of masses B and C.
6.2. Calculate the position of mass D from support X.
6.3. If the shaft rotates at 150 r.p.m calculate the dynamic force experienced by the bearings.
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