MOON PHASE INDICATOR MECHANISM
20170364031 ยท 2017-12-21
Assignee
Inventors
Cpc classification
G04B45/046
PHYSICS
G04B19/042
PHYSICS
International classification
Abstract
A moon phase indicator mechanism, for a timepiece provided with a movement and a dial, the moon phase indicator mechanism including at least one moon disc, and at least one moon phase train driven by the timepiece movement, the moon phase train meshing with a moon phase wheel which carries the moon disc at least indirectly and in a fixed manner, the moon phase wheel taking the form of a toothed ring in order to move the moon disc with the moon phase train about an axis A.
Claims
1-8. (canceled)
9. A moon phase indicator mechanism, for a timepiece provided with a movement and a dial, the moon phase indicator mechanism comprising at least one moon disc, and at least one moon phase train disposed underneath the dial and driven by the timepiece movement, the moon phase train meshing with a moon phase wheel taking the form of a toothed ring in order to move the moon disc at the periphery of the dial about an axis A arranged at the centre of the dial, with the moon phase train, wherein the moon phase wheel carries, at least indirectly and in a fixed manner, the moon disc with an intermediate part, mounted on the toothed ring, the intermediate part surrounding the dial and the movement.
10. The moon phase indicator mechanism according to claim 9, wherein the intermediate part takes the form of a ring with a protruding peripheral rim on which the moon disc is secured.
11. The moon phase indicator mechanism according to claim 9, wherein the toothed ring is provided with a toothing arranged on the inner rim of the toothed ring comprising one hundred and seventy-five teeth.
12. The moon phase indicator mechanism according to claim 9, comprising a single moon disc arranged to make one revolution of the dial in one lunar cycle.
13. The moon phase indicator mechanism according to claim 9, wherein the timepiece movement further includes at least one hour wheel, the transmission ratio between the hour wheel and the moon phase wheel is equal to 0.0169316.
14. The moon phase indicator mechanism according to claim 9, including a device for correcting the position of the moon disc by acting on the moon phase train.
15. The moon phase indicator mechanism device according to claim 14, wherein the correction device comprises a correction crown, at least one corrector wheel set integral with the moon phase train, and a friction system arranged to detach all or part of the moon phase train from the movement when the position of the moon disc is corrected.
16. A timepiece comprising a moon phase indicator mechanism according to claim 9.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Other features and advantages will appear clearly from the following description, given by way of non-limiting illustration, with reference to the annexed drawings, in which:
[0021]
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
[0026] A moon phase display device according to the invention will now be described below with reference jointly to
[0027] As illustrated in
[0028] The watch also includes a mask 13 of axis A, arranged above dial 11, mask 13 partly masking dial 11.
[0029] The watch is provided with a moon phase display device formed by an aperture 14 made in mask 13, and at least one moon disc 15, mounted to rotate between mask 13 and assembly 11. The at least one moon disc 15 is disposed on the outer diameter of dial 11, to make revolutions around dial 11 and so that moon disc 15 simulates a waxing moon when it appears in aperture 14 and a waning moon when it leaves aperture 14.
[0030] According to a first embodiment, mask 13 may be fixedly mounted and indicate, as required, the moon phases in the Northern Hemisphere or in the Southern Hemisphere.
[0031] According to another embodiment, visible in
[0032] According to a particular feature of the invention, the moon phase mechanism comprises a single moon disc 15 which is arranged to make one revolution of the dial in one lunar cycle.
[0033] As shown, mask 13 is centred on axis A and has a circular aperture 14 which is off-centre relative to axis A.
[0034] As can be observed, the moon phase mechanism is mounted on the dial side of a plate 16 between plate 16 and the assembly forming dial 11.
[0035] Moon phase train 20 is driven by movement 3 of watch 1, and more specifically by an hour wheel, not visible in the Figures. Moon phase train 20 is arranged to mesh with a moon phase wheel which carries moon disc 15 at least indirectly and in a fixed manner.
[0036] According to the invention, the moon phase wheel is formed by a toothed ring 27 cooperating with moon phase train 20 in order to move moon disc 15 about axis A.
[0037] More specifically, moon phase train 20 is mounted on plate 16, and comprises a drive wheel 21 comprising sixty teeth and carrying a pinion 22 with twenty teeth, pinion 22 meshing with a wheel 23 with forty-five teeth carrying a pinion 24 with twenty teeth between strips 231 and 232. Pinion 24 meshes with a wheel 25 with forty-seven teeth meshing with a pinion 26 with twenty teeth cooperating with toothed ring 27 which has seventy-five teeth and receives moon disc 15. This arrangement allows moon disc 15 to make one revolution of the dial in 29.5306 days, which corresponds exactly to one lunar cycle.
[0038] Thus, the transmission ratio between the hour wheel and the moon phase wheel is equal to 0.0169316. With such a moon phase train 20, the daily difference between the real moon and the moon of the mechanism is approximately fifty-six seconds, which corresponds to approximately a discrepancy of one day every one hundred and twenty-eight years, i.e. a relatively accurate mechanism.
[0039] According to a preferred embodiment of the invention, toothed ring 27 has a substantially identical diameter to that of the dial, centred on axis A, so as to move the moon at the periphery of dial 11. As can be observed in the Figures, toothed ring 27 is provided with a toothing 270 arranged on the inner rim of toothed ring 27. Of course, those skilled in the art have the knowledge required to reproduce a similar mechanism with a toothed ring 27 having a toothing on the outer rim.
[0040] As observed in
[0041] It is also observed in
[0042] According to the invention, the moon phase indicator mechanism is provided with a device for correcting the position of the moon phase disc arranged to act on moon phase train 20. The correction device includes a correction crown 2 arranged to cooperate by meshing with at least one corrector wheel set integral with moon phase train 20, and a friction system arranged to detach all or part of moon phase train 20 from the movement when the moon disc position is corrected.
[0043] As illustrated in
[0044] As observed in
[0045] The invention also concerns a timepiece equipped with a moon phase indicator mechanism according to the invention.
[0046] Of course, this invention is not limited to the illustrated example but is capable of different variants and modifications that will appear to those skilled in the art.
LIST OF PARTS
[0047] 1. Watch [0048] 10. Case [0049] 11. Dial [0050] 12. Hands [0051] 13. Mask [0052] 14. Aperture [0053] 15. Moon disc [0054] 16. Plate [0055] 2. Crown [0056] 3. Movement [0057] 4. Crystal [0058] 5. Intermediate part [0059] 50. Screw, [0060] 20. Moon phase train [0061] 21. Drive wheel [0062] 22. Pinion [0063] 23. Friction wheel [0064] 231,232. Strips [0065] 24. Pinion [0066] 25. Wheel [0067] 26. Pinion [0068] 27. Toothed ring [0069] 270. Toothing [0070] 40. Correction pinion [0071] 41. Correction wheel [0072] 42. Intermediate wheel [0073] A. Axis