6 The Geneva wheel is a mechanism for producing in- termittent rotation. Pin P in the integral unit of wheel A and locking plate B engages the radial slots in wheel C, thus turning wheel C one-fourth of a rev- olution for each revolution of the pin. At the engage- ment position shown, 0 = 45°. For a constant clockwise angular velocity @₁ = 2 rad/s of wheel A, determine the corresponding counterclockwise angu- lar velocity wą of wheel C for 0 = 20°. (Note that the motion during engagement is governed by the geom- etry of triangle O₁O₂P with changing 0.) Ans. w = 1.923 rad/s

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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▶5/56 The Geneva wheel is a mechanism for producing in-
termittent rotation. Pin P in the integral unit of
wheel A and locking plate B engages the radial slots
in wheel C, thus turning wheel C one-fourth of a rev-
olution for each revolution of the pin. At the engage-
ment position shown, = 45°. For a constant
clockwise angular velocity w₁ = 2 rad/s of wheel A,
determine the corresponding counterclockwise angu-
lar velocity wą of wheel C for 0 = 20°. (Note that the
motion during engagement is governed by the geom-
etry of triangle 0₁0₂P with changing 0.)
Ans. w₂ = 1.923 rad/s
200/2
200/12
mm
mm
P
B
-200 mm
Problem 5/56
001
A
002
C
Transcribed Image Text:▶5/56 The Geneva wheel is a mechanism for producing in- termittent rotation. Pin P in the integral unit of wheel A and locking plate B engages the radial slots in wheel C, thus turning wheel C one-fourth of a rev- olution for each revolution of the pin. At the engage- ment position shown, = 45°. For a constant clockwise angular velocity w₁ = 2 rad/s of wheel A, determine the corresponding counterclockwise angu- lar velocity wą of wheel C for 0 = 20°. (Note that the motion during engagement is governed by the geom- etry of triangle 0₁0₂P with changing 0.) Ans. w₂ = 1.923 rad/s 200/2 200/12 mm mm P B -200 mm Problem 5/56 001 A 002 C
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