Design of Crank-Rocker Mechanisms For Problems 5-19 through 5-28, design a crank-rocker mechanism with a time ratio of Q, throw angle of (AO,)max and time per cycle of t. Use either the graphical or analytical method. Specify the link lengths L1, L2, L3, L4, and the crank speed. 5-19. Q = 1; (A04)max = 78°; t = 1.2s. %3D 5-20. Q = 1; (A04)max = 100°; t = 3.5 s. %3D 5-21. Q = 1.15; (A04)max = 55°; t = 0.45 s. %3D 5-22. Q= 1.24; (AA)max 5-23. Q = 1.36; (A04)max 85°; t = ].8s. %3D = 45°; t = 1.2 s. %3D 5-24. Q = 1.20; (A04)max 96°; t = 0.3 s. %3D 5-25. Q = = 72°; t = 0.08 s; L = 8.0 in. = 115°; t= 0.2 s; L = 6.5 in. 1.18; (A4)max %3D 5-26. Q 1.10; (A0)max 5-27. Q= 1.22; (A0,)max- 88°; t 0.75 s; L = 8.0 in. =D105°; r 1.50 s; 5-28. Q= 1.08; (A04)max L=100.0 mm.
Design of Crank-Rocker Mechanisms For Problems 5-19 through 5-28, design a crank-rocker mechanism with a time ratio of Q, throw angle of (AO,)max and time per cycle of t. Use either the graphical or analytical method. Specify the link lengths L1, L2, L3, L4, and the crank speed. 5-19. Q = 1; (A04)max = 78°; t = 1.2s. %3D 5-20. Q = 1; (A04)max = 100°; t = 3.5 s. %3D 5-21. Q = 1.15; (A04)max = 55°; t = 0.45 s. %3D 5-22. Q= 1.24; (AA)max 5-23. Q = 1.36; (A04)max 85°; t = ].8s. %3D = 45°; t = 1.2 s. %3D 5-24. Q = 1.20; (A04)max 96°; t = 0.3 s. %3D 5-25. Q = = 72°; t = 0.08 s; L = 8.0 in. = 115°; t= 0.2 s; L = 6.5 in. 1.18; (A4)max %3D 5-26. Q 1.10; (A0)max 5-27. Q= 1.22; (A0,)max- 88°; t 0.75 s; L = 8.0 in. =D105°; r 1.50 s; 5-28. Q= 1.08; (A04)max L=100.0 mm.
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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Problem 1.1MA
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Question
5-24
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![Design of Crank-Rocker Mechanisms
For Problems 5-19 through 5-28, design a crank-rocker mechanism
with a time ratio of Q, throw angle of (A6,)maxo and time per cycle
of t. Use either the graphical or analytical method. Specify the link
lengths L1, L2, L3, L4, and the crank speed.
5-19. Q = 1; (A04)max
78°; t = 1.2 s.
5-20. Q = 1; (A84)max
= 100°; t = 3.5 s.
%3D
5-21. Q = 1.15; (A04)max
5-22. Q = 1.24; (AA)max
5-23. Q = 1.36; (A04)max
55°; t = 0.45 s.
= 85°; t = J.8s.
45°; t = 1.2 s.
%3D
5-24. Q = 1.20; (A0,)max
96°; t = 0.3s.
5-25. Q= 1.18;(A04)max
= 72°; t = 0.08 s; L = 8.0 in.
%3D
5-26. Q = 1.10; (A0,)ay = 115°; t = 0.2 s; L = 6,5 in.
5-27. Q = 1.22; (A0,). = 88: 0.75 s; L = 8.0 in.
%3D
5-28. Q = 1.08; (A0,) = 105: r = 1.50s;
100.0 mm.
105°; t 1.50s;](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fed0f0082-aa70-4465-9b45-150a140cea8d%2F6b5b2c5d-b4bb-4e56-968c-306d73a8b96a%2F8arv9wk_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Design of Crank-Rocker Mechanisms
For Problems 5-19 through 5-28, design a crank-rocker mechanism
with a time ratio of Q, throw angle of (A6,)maxo and time per cycle
of t. Use either the graphical or analytical method. Specify the link
lengths L1, L2, L3, L4, and the crank speed.
5-19. Q = 1; (A04)max
78°; t = 1.2 s.
5-20. Q = 1; (A84)max
= 100°; t = 3.5 s.
%3D
5-21. Q = 1.15; (A04)max
5-22. Q = 1.24; (AA)max
5-23. Q = 1.36; (A04)max
55°; t = 0.45 s.
= 85°; t = J.8s.
45°; t = 1.2 s.
%3D
5-24. Q = 1.20; (A0,)max
96°; t = 0.3s.
5-25. Q= 1.18;(A04)max
= 72°; t = 0.08 s; L = 8.0 in.
%3D
5-26. Q = 1.10; (A0,)ay = 115°; t = 0.2 s; L = 6,5 in.
5-27. Q = 1.22; (A0,). = 88: 0.75 s; L = 8.0 in.
%3D
5-28. Q = 1.08; (A0,) = 105: r = 1.50s;
100.0 mm.
105°; t 1.50s;
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