uestion - YOur objective is to design a vibration absorber (k2,m2) for the following stem. The allowable clearance for the absorber motion is 0.01 m, and the force to be ppressed has a sinusoidal shape, with amplitude of 20 N and frequency of 10 rad/s. Part A -Assuming you can choose any value for k2 and m2, what would those valu be? art B - Now suppose that you only have 5 options of springs to choose from, with the llowing values for k2: 1300 Nm, 1500 Nm, 1700 Nm, 1900 Nm, 2100 Nm. Choose on lue that would let the system meet or be under the allowable clearance and calculate th 2 value for that system. F(4) mi M,

Understanding Motor Controls
4th Edition
ISBN:9781337798686
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter19: Proximity Detectors
Section: Chapter Questions
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parts A & B - SOLVE CAREFULLY!! Please Write Clearly and Box the final Answer(s) for both
Question - Your objective is to design a vibration absorber (k2,m2) for the following
system. The allowable clearance for the absorber motion is 0.01 m, and the force to be
suppressed has a sinusoidal shape, with amplitude of 20 N and frequency of 10 rad/s.
Part A -Assuming you can choose any value for k2 and m2, what would those values
be?
Part B - Now suppose that you only have 5 options of springs to choose from, with the
following values for k2: 1300 Nm, 1500 Nm, 1700 Nm, 1900 Nm, 2100 Nm. Choose one
value that would let the system meet or be under the allowable clearance and calculate the
m2 value for that system.
F(t)
mi
Transcribed Image Text:Question - Your objective is to design a vibration absorber (k2,m2) for the following system. The allowable clearance for the absorber motion is 0.01 m, and the force to be suppressed has a sinusoidal shape, with amplitude of 20 N and frequency of 10 rad/s. Part A -Assuming you can choose any value for k2 and m2, what would those values be? Part B - Now suppose that you only have 5 options of springs to choose from, with the following values for k2: 1300 Nm, 1500 Nm, 1700 Nm, 1900 Nm, 2100 Nm. Choose one value that would let the system meet or be under the allowable clearance and calculate the m2 value for that system. F(t) mi
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