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AIM: MULTI-BODY DYNAMICS SIMULATION OF INTERNAL GENEVA MECHANISM IN SOLIDWORKS. THEORY: Geneva mechanism is the mechanism through which continuous rotation motion is converted into intermittent rotation motion. In this, the driver wheel rotates continuously and the driven wheel has rotation in regular intervals not continuously.…
NAVEEN SWAMI
updated on 02 Jun 2020
AIM: MULTI-BODY DYNAMICS SIMULATION OF INTERNAL GENEVA MECHANISM IN SOLIDWORKS.
THEORY:
Geneva mechanism is the mechanism through which continuous rotation motion is converted into intermittent rotation motion. In this, the driver wheel rotates continuously and the driven wheel has rotation in regular intervals not continuously.
The driver wheel is equipped with a pin that goes into the slot created in the driven wheel so that it advances a step at a time.
The Geneva drive has two versions: External Geneva Mechanism and Internal Geneva Mechanism.
EXTERNAL GENEVA MECHANISM:
INTERNAL GENEVA MECHANISM:
OBJECTIVE:
3-D MODELLING OF GENEVA COMPONENTS
DRIVEN WHEEL
DRIVER WHEEL
ASSEMBLY
MOTION ANALYSIS:
CONTACT FORCE: (between driver and driven wheel)
Angular Displacement of the driven wheel
Angular velocity of driver wheel
CONTACT FORCE: (between driver and driven wheel)
Angular Displacement of driven wheel
Angular velocity of driver wheel
CONTACT FORCE: (between driver and driven wheel)
Angular Displacement of driven wheel
Angular velocity of driver wheel
CONTACT FORCE: (between driver and driven wheel)
Angular Displacement of driven wheel
Angular velocity of driver wheel
OBSERVATION :
Sn. no |
Motion Type |
Max. Contact force (N) |
1 |
Rpm = 10 (without precision contact) |
870 |
2 |
Rpm = 10 (with precision contact) |
1013 |
3 |
Rpm = 20 (without precision contact) |
1431 |
4 |
Rpm = 20 (with precision contact) |
2258 |
Explanation of plots:
ANIMATION: https://youtu.be/V0cnIDkNunc
CAD MODEL OF PARTS AND ASSEMBLY: https://drive.google.com/drive/folders/1sSiBRfghMEd4I_veoCXajZb862if7-S3?usp=sharing
CONCLUSION:
The motion analysis of the Geneva mechanism gives us important results. By observing the contact forces, we can choose the optimum value of rpm and also design the components of the mechanism according to that. It also gives us validation that our mechanism is working correctly. We can monitor the angular displacement of the driven wheel to accomplish the target value.
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