The invention concerns a timepiece resonator comprising a mobile component arranged to be capable of oscillation about an axis, and a drive member subjected to a torque inside a timepiece movement.
The invention also concerns a timepiece movement including, secured on a plate: an energy storage means arranged to deliver said torque to a gear train for actuating a mechanism including such an annular resonator, with a said mobile component secured by flexible strips to said plate, and a said drive member driven by said gear train, said drive member 8 controlling display means of said movement.
The invention also concerns a timepiece including one such movement.
The invention concerns the field of the regulation of mechanical timepieces, in particular mechanical watches.
The numerous contacts in a regulating member impair the quality factor and efficiency. It is, moreover, difficult to reconcile the very different frequencies of the components of a resonator.
The invention proposes to create mechanisms exhibiting greater efficiency than conventional resonators.
To this end, the invention concerns a timepiece resonator comprising a mobile component arranged to be capable of oscillation about an axis, and a drive member subjected to a torque inside a timepiece movement, characterized in that said resonator is a substantially annular magnetic or electrostatic resonator wherein said mobile component is periodically excited under the action induced by the motion of said drive member, said drive member is arranged to exert a contactless effort on said mobile component, said mobile component being flexible and deformable at least in a plane perpendicular to said axis, and said mobile component comprising a first area magnetically or electrically charged at a first pitch angle, and said drive member comprising a second area magnetically or electrically charged at a second pitch angle different from said first pitch angle, arranged to cooperate in attraction or in repulsion with said first area, such that said mobile component and said drive member together form a speed reducing or increasing mechanism.
The invention also concerns a timepiece movement including, secured on a plate: an energy storage means arranged to deliver said torque to a gear train actuating a mechanism including such an annular resonator, with a said mobile component secured by flexible strips to said plate, and a said drive member driven by said gear train, said drive member controlling display means of said movement.
The invention also concerns a timepiece including such a movement, characterized in that said timepiece is a watch.
Other features and advantages of the invention will appear upon reading the following detailed description, with reference to the annexed drawings, in which:
A third variant illustrated in
Hereafter, a “ring” means a volume similar to an open torus, extending, closed on itself, about an axis. This ‘ring’ is substantially a surface of revolution about the axis, but not necessarily exactly of revolution about the axis.
The invention may be implemented with the involvement of magnetic and/or electrostatic fields. It is more particularly illustrated in a magnetic variant.
The invention concerns a timepiece resonator 6, comprising a mobile component 7 arranged to be capable of oscillation about an axis A, and a drive member 8 subjected to a torque inside a timepiece movement 10.
According to the invention, this resonator is a substantially annular magnetic or electrostatic resonator 6, whose mobile component 7 is periodically excited under the action induced by the motion of drive member 8; said drive member 8 is arranged to exert a contactless effort on mobile component 7.
Mobile component set 7 is flexible and deformable at least in a plane perpendicular to axis A, and mobile component 7 comprises a first area magnetically or electrically charged at a first pitch angle, and drive member 8 includes a second area magnetically or electrically charged at a second pitch angle different from said first pitch angle, arranged to cooperate in attraction or in repulsion with said first area, so that mobile component 7 and drive member 8 together form a speed reducing or increasing mechanism.
The interaction may occur between a magnetically or respectively electrically charged element, and a conductive or respectively dielectric track.
More specifically, in a non-limiting embodiment illustrated by the Figures, mobile component 7 includes a first quantity of first pole pieces 76 magnetically or electrically charged at a first pitch angle and drive member 8 includes a second quantity of second pole pieces 86 magnetically or electrically charged at a second pitch angle which is different from the first pitch angle. These second pole pieces 86 are arranged to cooperate in attraction or in repulsion with first pole pieces 76, such that mobile component 7 and drive member 8 together form a speed reducing or increasing mechanism.
More specifically, the first quantity differs from the second quantity.
More specifically, the first quantity differs from the second quantity by one unit.
In particular, the speed of drive member 8 defines a speed of propagation of a deformation wave in the material of mobile component 7 all around the latter.
In another implementation of the invention, the speed of drive member 8 defines a standing wave of oscillation of mobile component 7 between repetitive shapes corresponding to standing modes.
Preferably, the movement of drive member 8 includes at least one pivoting motion.
More specifically, and as illustrated in a non-limiting manner by the Figures, the movement of drive member 8 is a pivoting motion about axis A.
In a specific embodiment, as seen in
In a first variant, these flexible strips 9 are more flexible than mobile component 7, arranged to maintain mobile component 7 substantially centered on axis A, and to restrict the movements of oscillation of mobile component 7 in the same plane P perpendicular to said axis A with limited displacements of the centre of inertia of mobile component 7, less than one tenth of the smallest external dimension of mobile component 7 in plane P.
In a second variant, these flexible strips 9 are stiffer than mobile component 7, arranged to maintain mobile component 7 substantially centered on axis A, and to restrict the movements of mobile component 7 in the same plane P perpendicular to said axis A with limited displacements of the centre of inertia of mobile component 7, less than one tenth of the smallest external dimension of mobile component 7 in plane P.
More particularly, mobile component 7 is weighted on its periphery in a continuous or periodic manner.
In particular, mobile component 7 is weighted by a plurality of inertia-blocks.
In particular, mobile component 7 has variable sections and/or thicknesses around its periphery.
Advantageously mobile component 7 is made of micromachinable material or silicon and has a rectangular section in every plane passing through said axis A
Advantageously, mobile component 7 is integral with a plurality of flexible strips 9 for connection to a plate 5 comprised in timepiece movement 10.
Advantageously, mobile component 7 is integral with the plurality of flexible strips 9 and with plate 5.
In a particular embodiment, in an unstressed free state, mobile component 7 has a polygonal or polylobate shape in a plane P orthogonal to axis A.
In a particular embodiment illustrated in
In a particular embodiment, as seen in
The invention also concerns a timepiece movement 10 including, secured on a plate 5, an energy storage means 3, notably a barrel, arranged to deliver torque to a gear train 2 for actuating a mechanism 1 comprising such an annular resonator 6, with such a mobile component 7 secured by flexible strips 9 to plate 5, and a drive member 8, notably an escape wheel, driven by gear train 2, drive member 8 preferably controlling display means 4 of movement 10.
The invention also concerns a timepiece 100 including such a movement 10. Preferably, this timepiece 100 is a watch.
More specifically, the Figures illustrate advantageous variant embodiments.
Mobile component 7 includes first pole pieces 76, and drive member 8 includes second pole pieces 86. The number of pole pieces on each structure is selected such that, for a given angle of drive member 8, the pole pieces at 12 o'clock and 6 o'clock of mobile component 7 and of drive member 8 are facing each other and the pole pieces at 3 o'clock and 9 o'clock are not facing each other. With a small rotation of angle e of drive member 8, the alignments are reversed.
In
In
The interaction effort diagram can thus be drawn as a function of the angle of drive member 8, corresponding to
A third variant illustrated in
A fourth variant (not illustrated) is the out-of-plane version of the second variant very close to the third variant.
Another variant, not illustrated, includes a drive member 8 which, instead of individual magnets, includes a track which interacts with magnets on vibrating mobile component 7, in the same manner as magnet-to-magnet cooperation.
The invention makes it possible to remove contacts in the regulating member, resulting in an improved quality factor, and increasing efficiency. Moreover, drive member 8, preferably formed by an escape wheel, rotates at a low frequency and mobile component 7, preferably a ring, resonates at a high frequency.
The embodiment of
Number | Date | Country | Kind |
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02140/13 | Dec 2013 | CH | national |
02141/13 | Dec 2013 | CH | national |
13199427.9 | Dec 2013 | EP | regional |
13199428.7 | Dec 2013 | EP | regional |
01057/14 | Jul 2014 | CH | national |
14176816.8 | Jul 2014 | EP | regional |
01365/14 | Sep 2014 | CH | national |
14184158.5 | Sep 2014 | EP | regional |
01416/14 | Sep 2014 | CH | national |
14185638.5 | Sep 2014 | EP | regional |
14186652.5 | Sep 2014 | EP | regional |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2014/076991 | 12/9/2014 | WO | 00 |