A slider-crank mechanism is shown in Figure1. You should draw free body diagrams for each moving links and indicate constraint and inertial forces & moments on the links. Then, you should write down force and moments equations according to D'Alembert principle. Assume no friction and no gravitational loads. A • G3 Oc O2 OB
A slider-crank mechanism is shown in Figure1. You should draw free body diagrams for each moving links and indicate constraint and inertial forces & moments on the links. Then, you should write down force and moments equations according to D'Alembert principle. Assume no friction and no gravitational loads. A • G3 Oc O2 OB
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![A slider-crank mechanism is shown in Figure1. You should draw free body diagrams for each
moving links and indicate constraint and inertial forces & moments on the links. Then, you should write
down force and moments equations according to D'Alembert principle. Assume no friction and no
gravitational loads.
AQ
Oc
• Gz
3/
02
4
B
a](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F3947894f-3052-4cec-a879-704da782bb38%2Fd17f492a-f1ba-4fd2-95f3-48bff72f74f0%2Fcrlika_processed.png&w=3840&q=75)
Transcribed Image Text:A slider-crank mechanism is shown in Figure1. You should draw free body diagrams for each
moving links and indicate constraint and inertial forces & moments on the links. Then, you should write
down force and moments equations according to D'Alembert principle. Assume no friction and no
gravitational loads.
AQ
Oc
• Gz
3/
02
4
B
a
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