A planetary gear train is illustrated in Figure. The carrier (link 2) serves as the input to the train. The sun (gear 1) is the fixed gear and has 30 teeth. The planet gear (gear 3) has 35 teeth. The ring gear serves as the output from the train and has 100 teeth. Determine the rotational velocity of all members of this gear train when the input shaft rotates at 1200 rpm clockwise.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A planetary gear train is illustrated in Figure. The carrier (link 2) serves as the
input to the train. The sun (gear 1) is the fixed gear and has 30 teeth. The
planet gear (gear 3) has 35 teeth. The ring gear serves as the output from the
train and has 100 teeth. Determine the rotational velocity of all members of
this gear train when the input shaft rotates at 1200 rpm clockwise.
N = 100 T
N3 = 35 T
N = 30 T
Transcribed Image Text:A planetary gear train is illustrated in Figure. The carrier (link 2) serves as the input to the train. The sun (gear 1) is the fixed gear and has 30 teeth. The planet gear (gear 3) has 35 teeth. The ring gear serves as the output from the train and has 100 teeth. Determine the rotational velocity of all members of this gear train when the input shaft rotates at 1200 rpm clockwise. N = 100 T N3 = 35 T N = 30 T
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