
escapement
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thumb|Animation of an anchor escapement, widely used in [[pendulum clocks]]
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~51 min read
Article
36 sectionsContents
- History
- Liquid-driven escapements
- Mechanical escapements
- Reliability
- Accuracy
- Theory of escapements
- Resonance
- Feedback oscillator
- Q factor
- Isochronism
- The Airy condition
- Detachment
- Mechanical escapements
- Verge escapement
- Cross-beat escapement
- Galileo's escapement
- Anchor escapement
- Deadbeat escapement
- Pin wheel escapement
- Detent escapement
- Cylinder escapement
- Duplex escapement
- Lever escapement
- Grasshopper escapement
- Gravity escapement
- Coaxial escapement
- Other modern watch escapements
- Electromechanical escapements
- Hipp clock
- Synchronome switch
- Free pendulum clock
- See also
- Citations
- References
- Further reading
- External links
thumb|Animation of an anchor escapement, widely used in [[pendulum clocks]]
An escapement is a mechanical linkage in mechanical watches and clocks that gives impulses to the timekeeping element and periodically releases the gear train to move forward, advancing the clock's hands. The impulse action transfers energy to the clock's timekeeping element (usually a pendulum or balance wheel) to replace the energy lost to friction during its cycle and keep the timekeeper oscillating. The escapement is driven by force from a coiled spring or a suspended weight, transmitted through the timepiece's gear train. Each swing of the pendulum or balance wheel releases a tooth of the escapement's escape wheel, allowing the clock's gear train to advance or "escape" by a fixed amount. This regular periodic advancement moves the clock's hands forward at a steady rate. At the same time, the tooth gives the timekeeping element a push, before another tooth catches on the escapement's pallet, returning the escapement to its "locked" state. The sudden stopping of the escapement's tooth is what generates the characteristic "ticking" sound heard in operating mechanical clocks and watches.