All three meshing gears shown in Figure Q6 have a module ot 5 mm and a 20" pressure anglU. Driving gear 1 transmits 40 kW of power at 2000 rpm to the idler gear 2 located on shaft B. Output gear 3 is mounted on shaft C, which drives a machine. a) Using a free body diagram of gear 2, calculate the tangential and radial forces acting on it. b) What is the reaction force on shaft B.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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All three meshing gears shown in Figure Q6 have a module of 5 mm and a 20° pressure angle.
Driving gear 1 transmits 40 kW of power at 2000 rpm to the idler gear 2 łocated on shaft B.
Output gear 3 is mounted on shaft C, which drives a machine.
a)
Using a free body diagram of gear 2, calculate the tangential and radial forces acting on
it.
b)
What is the reaction force on shaft B.
B
Gear 2
(idler)
N2 = 40
Gear 3
N3 = 30
-Gear 1
(pinion)
N1 = 20
2000 rpm
Transcribed Image Text:All three meshing gears shown in Figure Q6 have a module of 5 mm and a 20° pressure angle. Driving gear 1 transmits 40 kW of power at 2000 rpm to the idler gear 2 łocated on shaft B. Output gear 3 is mounted on shaft C, which drives a machine. a) Using a free body diagram of gear 2, calculate the tangential and radial forces acting on it. b) What is the reaction force on shaft B. B Gear 2 (idler) N2 = 40 Gear 3 N3 = 30 -Gear 1 (pinion) N1 = 20 2000 rpm
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