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DESIGN AND ITS ANALYSIS OF
GENEVA DRIVE
PRESENTED BY
Raghuram - 19Q91A0357
Rathod Ashok - 19Q91A0359
Bhanu madhav - 19Q91A0362
Bhanu prakash - 19Q91A0363
CONTENTS
• Introduction
• Classification of Geneva Mechanism
• Working of Geneva Mechanism
• Advantages of Geneva Mechanism
• Disadvantages of Geneva Mechanism
• Application and Uses
• Future scope
• conclusion
INTRODUCTION
The Geneva drive or Maltese cross is a gear mechanism that translates a
continuous rotation into an intermittent rotary motion. The rotating drive
wheel has a pin that reaches into a slot of the driven wheel advancing it by
one step. The drive wheel also has a raised circular blocking disc that locks
the driven wheel in position between steps.
`
CLASSIFICATION OF GENEVA
MECHANISM
 EXTERNALGENEV
AMECHANISM
In this type of mechanism, the Geneva cross is connected with cam drive
externally which is the most popular and can withstand higher mechanical
stresses. The driver grooves lock the driven wheel pins during dwell.
During movement, the driver pin mates with the driven-wheel slot.
 INTERNAL GENEV
AMECHANISM
In this type of mechanism, the Geneva cross and cam drive are connected
internally in the closed box. The driver and driven wheel rotate in same
direction. The duration of dwell is more than 180º of driver rotation.
 SPHERICAL GENEV
AMECHANISM
In this type of mechanism, the Geneva cross is in spherical shape and cam
drive are connected in externally, which is extremely rare . The driver and
driven wheel are on perpendicular shafts. The duration of dwell is exactly
180° of driver rotation.
WORKING OF GENEVA
MECHANISM
 In the most common arrangement, the driven wheel has four slots and thus
advances by one step of 90 degrees for each rotation of the drive wheel. If
the driven wheel has n slots, it advances by 360°/n per full rotation of the
drive wheel.
 Genevas are also combined with variety of other mechanism , such as four
bar linkages , clutch-brake combinations , non –circular gears etc to modify
the motion curves and dwell motion ratios obtained from pure Geneva.
ADVANTAGES OF GENEVA
MECHANISM
• Geneva mechanism may be the simplest and least Expensive of all
intermittent motion mechanisms.
• They come in a wide variety of sizes, ranging from those used in
instruments, to those used in machine tools to index spindle carriers
weighing several tons.
• They have good motion curves characteristics compared to ratchets, but
exhibit more “jerk” or instantaneous change in acceleration, than better
cam systems.
DISADVANTAGES OF
GENEVAMECHANISM
• The Geneva is not a versatile mechanism and produce jerk.
• The ratio of dwell period to motion is also established once the no of dwells
per revolution has been selected.
• All Geneva acceleration curves start and end with finite acceleration &
deceleration.
APPLICATIONS AND USES
• It is applicable in the production industries and in automobile industries for
mass production.
• Modern film projectors may also use an electronically controlled indexing
mechanism or stepper motor, which allows for fast-forwarding the film.
• Geneva wheels having the form of the driven wheel were also used in
mechanical watches, but not in a drive, rather to limit the tension of the spring,
such that it would operate only in the range where its elastic force is nearly
linear.
• Indexing tables in assembly lines, tool changers for CNC machines, and so
on.
FUTURE SCOPE
 Design optimization of a Geneva mechanism for internal combustion
engine application.
 Bottle Indexing and Filling Mechanism.
 It Can be used in Pen Changed Mechanism in Plotters.
 It has a great scope in automated sampling industries.
CONCLUSION
Geneva drive indexing mechanism converts the continuous motion of the
driver wheel into intermittent rotary motion of the gear. Cam with pin
arrangement integrated with Geneva drive. Input shaft having driver wheel
at one end and cam drive at the other end. Geneva drive and gears are
mounted on the output shaft. By cam with Geneva drive arrangement the
continuous motion of the driver wheel converts into intermittent motion of
gear and chain arrangement. Due to gear rotation the conveyor belt moves
and thus mechanism proves its significance.

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genevamechanismppt-170318100902 (1).pptx

  • 1. DESIGN AND ITS ANALYSIS OF GENEVA DRIVE PRESENTED BY Raghuram - 19Q91A0357 Rathod Ashok - 19Q91A0359 Bhanu madhav - 19Q91A0362 Bhanu prakash - 19Q91A0363
  • 2. CONTENTS • Introduction • Classification of Geneva Mechanism • Working of Geneva Mechanism • Advantages of Geneva Mechanism • Disadvantages of Geneva Mechanism • Application and Uses • Future scope • conclusion
  • 3. INTRODUCTION The Geneva drive or Maltese cross is a gear mechanism that translates a continuous rotation into an intermittent rotary motion. The rotating drive wheel has a pin that reaches into a slot of the driven wheel advancing it by one step. The drive wheel also has a raised circular blocking disc that locks the driven wheel in position between steps. `
  • 4. CLASSIFICATION OF GENEVA MECHANISM  EXTERNALGENEV AMECHANISM In this type of mechanism, the Geneva cross is connected with cam drive externally which is the most popular and can withstand higher mechanical stresses. The driver grooves lock the driven wheel pins during dwell. During movement, the driver pin mates with the driven-wheel slot.
  • 5.  INTERNAL GENEV AMECHANISM In this type of mechanism, the Geneva cross and cam drive are connected internally in the closed box. The driver and driven wheel rotate in same direction. The duration of dwell is more than 180º of driver rotation.
  • 6.  SPHERICAL GENEV AMECHANISM In this type of mechanism, the Geneva cross is in spherical shape and cam drive are connected in externally, which is extremely rare . The driver and driven wheel are on perpendicular shafts. The duration of dwell is exactly 180° of driver rotation.
  • 7. WORKING OF GENEVA MECHANISM  In the most common arrangement, the driven wheel has four slots and thus advances by one step of 90 degrees for each rotation of the drive wheel. If the driven wheel has n slots, it advances by 360°/n per full rotation of the drive wheel.  Genevas are also combined with variety of other mechanism , such as four bar linkages , clutch-brake combinations , non –circular gears etc to modify the motion curves and dwell motion ratios obtained from pure Geneva.
  • 8. ADVANTAGES OF GENEVA MECHANISM • Geneva mechanism may be the simplest and least Expensive of all intermittent motion mechanisms. • They come in a wide variety of sizes, ranging from those used in instruments, to those used in machine tools to index spindle carriers weighing several tons. • They have good motion curves characteristics compared to ratchets, but exhibit more “jerk” or instantaneous change in acceleration, than better cam systems.
  • 9. DISADVANTAGES OF GENEVAMECHANISM • The Geneva is not a versatile mechanism and produce jerk. • The ratio of dwell period to motion is also established once the no of dwells per revolution has been selected. • All Geneva acceleration curves start and end with finite acceleration & deceleration.
  • 10. APPLICATIONS AND USES • It is applicable in the production industries and in automobile industries for mass production. • Modern film projectors may also use an electronically controlled indexing mechanism or stepper motor, which allows for fast-forwarding the film. • Geneva wheels having the form of the driven wheel were also used in mechanical watches, but not in a drive, rather to limit the tension of the spring, such that it would operate only in the range where its elastic force is nearly linear. • Indexing tables in assembly lines, tool changers for CNC machines, and so on.
  • 11. FUTURE SCOPE  Design optimization of a Geneva mechanism for internal combustion engine application.  Bottle Indexing and Filling Mechanism.  It Can be used in Pen Changed Mechanism in Plotters.  It has a great scope in automated sampling industries.
  • 12. CONCLUSION Geneva drive indexing mechanism converts the continuous motion of the driver wheel into intermittent rotary motion of the gear. Cam with pin arrangement integrated with Geneva drive. Input shaft having driver wheel at one end and cam drive at the other end. Geneva drive and gears are mounted on the output shaft. By cam with Geneva drive arrangement the continuous motion of the driver wheel converts into intermittent motion of gear and chain arrangement. Due to gear rotation the conveyor belt moves and thus mechanism proves its significance.