In the given planetary gear system, the free end of Driving Shaft E has an angular velocity of we = 11.2345 rpm, CCW with respect to the WE point of view from Point A. The radius of the tree Planet gears is B = 40 mm, sun gear D = 60 mm, and ring gear C = 140 mm. The centers of the three planet gears B are pin connected to carrier A, which is one whole rigid body. The three planet gears B are allowed only to spin and not to turn. Determine the: angular velocity (in rpm) of the carrier A angular velocity (in rpm) of ring gear C and the angular velocity (in rpm) of each planet gear B

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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In the given planetary gear system, the free end of Driving Shaft E has
an angular velocity of we = 11.2345 rpm, CCW with respect to the
point of view from Point A. The radius of the tree Planet gears is
B = 40 mm, sun gear D = 60 mm, and ring gear C = 140 mm. The
centers of the three planet gears B are pin connected to carrier A,
which is one whole rigid body. The three planet gears B are allowed only
to spin and not to turn. Determine the:
angular velocity (in rpm) of the carrier A
angular velocity (in rpm) of ring gear C
and the angular velocity (in rpm) of each planet gear B
Driving Shaft E
Sun Gear D
3 Planetary Gears B
Carrier A
Ring Gear C
Transcribed Image Text:In the given planetary gear system, the free end of Driving Shaft E has an angular velocity of we = 11.2345 rpm, CCW with respect to the point of view from Point A. The radius of the tree Planet gears is B = 40 mm, sun gear D = 60 mm, and ring gear C = 140 mm. The centers of the three planet gears B are pin connected to carrier A, which is one whole rigid body. The three planet gears B are allowed only to spin and not to turn. Determine the: angular velocity (in rpm) of the carrier A angular velocity (in rpm) of ring gear C and the angular velocity (in rpm) of each planet gear B Driving Shaft E Sun Gear D 3 Planetary Gears B Carrier A Ring Gear C
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