Problem 3 Figure below shows a quick-return mechanism with dimensions. a) Use a graphical method to calculate the accelerations of points A, B, and C for the position shown. W210 rad/sec CCW b) Use an analytical method to calculate the accelerations of points A, B, and C for one revolution of the input link. 210 rad/sec CCW 6 C L2 = 1.00 in L4 = 4.76 5 B A L5= 4.55 2.86 in 02 = 99° 0402 = = 1.69 @ 15.5°
Problem 3 Figure below shows a quick-return mechanism with dimensions. a) Use a graphical method to calculate the accelerations of points A, B, and C for the position shown. W210 rad/sec CCW b) Use an analytical method to calculate the accelerations of points A, B, and C for one revolution of the input link. 210 rad/sec CCW 6 C L2 = 1.00 in L4 = 4.76 5 B A L5= 4.55 2.86 in 02 = 99° 0402 = = 1.69 @ 15.5°
Managerial Economics: Applications, Strategies and Tactics (MindTap Course List)
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Chapter5: Business And Economic Forecasting
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
Transcribed Image Text:Problem 3
Figure below shows a quick-return mechanism with dimensions.
a) Use a graphical method to calculate the accelerations of points A, B, and C for the position
shown. W210 rad/sec CCW
b) Use an analytical method to calculate the accelerations of points A, B, and C for one revolution of the
input link. 210 rad/sec CCW
6
C
L2 = 1.00 in
L4 = 4.76
5
B
A
L5= 4.55
2.86 in
02 = 99°
0402 =
= 1.69 @ 15.5°
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