3. For the following planetry gear train determine the following -Internal gear connected to drive shaft, 427 Sun gear: -Planet pinions, 127 Planet carrier connected to transmission Figure not to scale. N2 = 24 teeth, Input to Sun gear: w₂ = 100 rpm ccw, T₂ = 1000 lbf-in Input to Ring gear: ws = 240 rpm cw a. Determine the angular velocity of the carrier. (units and direction). b. Determine the torque on the arm.
3. For the following planetry gear train determine the following -Internal gear connected to drive shaft, 427 Sun gear: -Planet pinions, 127 Planet carrier connected to transmission Figure not to scale. N2 = 24 teeth, Input to Sun gear: w₂ = 100 rpm ccw, T₂ = 1000 lbf-in Input to Ring gear: ws = 240 rpm cw a. Determine the angular velocity of the carrier. (units and direction). b. Determine the torque on the arm.
Automotive Technology: A Systems Approach (MindTap Course List)
6th Edition
ISBN:9781133612315
Author:Jack Erjavec, Rob Thompson
Publisher:Jack Erjavec, Rob Thompson
Chapter38: Manual Transmissions And Transaxles
Section: Chapter Questions
Problem 5ASRQ: Technician A says that if a single idler gear is used to obtain reverse gear, its size and number of...
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Transcribed Image Text:3. For the following planetry gear train determine the following
-Internal gear connected
to drive shaft, 427
Sun gear:
-Planet pinions, 127
Planet carrier connected to transmission
Figure not to scale.
N2 = 24 teeth,
Input to Sun gear: w₂ = 100 rpm ccw,
T₂ = 1000 lbf-in
Input to Ring gear: ws = 240 rpm cw
a. Determine the angular velocity of the carrier.
(units and direction).
b. Determine the torque on the arm.
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