Coupled timepiece oscillators
09958833 ยท 2018-05-01
Assignee
Inventors
Cpc classification
International classification
Abstract
Timepiece movement or watch including one isochronous oscillator mechanism, including only a first sprung balance oscillator including a first balance spring attached to a fixed structure at a first stud and to a first mobile component pivoting about a first axis, and a second sprung balance oscillator including a second balance spring fixed to a second mobile component, coupled to each other by mechanical connection via this second elastic return means attached to the first mobile component, this second balance spring being attached, to a felloe or an arm of the first mobile component at a second stud, and to this second mobile component which pivots about a second axis, and the maintenance of the oscillations is effected on only one of first mobile component or second mobile component.
Claims
1. An isochronous timepiece oscillator mechanism with coupled oscillators, consisting only of a first oscillator including a first elastic return attached to a fixed structure at a first anchoring point and to a first mobile component pivoting about a first axis, and a second oscillator including a second elastic return fixed to a second mobile component, wherein said first oscillator and said second oscillator are coupled to each other by mechanical connection via said second elastic return which is then attached to said first mobile component, wherein said first oscillator is a first sprung balance oscillator and wherein said first elastic return is a first balance spring attached to said fixed structure by a first balance spring stud forming said first anchoring point, and wherein said second oscillator is a second sprung balance oscillator and wherein said second elastic return is a second balance spring attached to said second mobile component, wherein said second balance spring is attached to the felloe or to an arm of said first mobile component at a second balance spring stud and to said second mobile component which pivots about a second axis, wherein maintenance of the oscillations of said oscillator mechanism is effected on only one of said first mobile component or second mobile component.
2. The oscillator mechanism according to claim 1, wherein at least a third mobile component is inserted between the parts of largest diameter of said first mobile component and of said second mobile component, said third mobile component having only the freedom to pivot on itself or to slide in a direction orthogonal to the straight line that defines the minimum distance between the parts of largest diameter of said first mobile component and of said second mobile component.
3. The oscillator mechanism according to claim 2, wherein said third mobile component is attached to a third elastic return independent of said first elastic return and of said second elastic return to define a third oscillator coupled by aerodynamic connection to said first oscillator and to said second oscillator.
4. The oscillator mechanism according to claim 1, wherein the rigidity of said second elastic return is less than half the rigidity of said first elastic return.
5. The oscillator mechanism according to claim 4, wherein the rigidity of said second elastic return is comprised between 0.30 and 0.40 times the rigidity of said first elastic return.
6. The oscillator mechanism according to claim 1, wherein the inertia of said second mobile component is less than one third the inertia of said first mobile component.
7. The oscillator mechanism according to claim 6, wherein the inertia of said second mobile component is comprised between 0.20 and 0.30 times the inertia of said first mobile component.
8. The oscillator mechanism according to claim 1, wherein said first mobile component and said second mobile component are balance wheels.
9. The oscillator mechanism according to claim 1, wherein said first mobile component or said second mobile component is a carriage of a tourbillon or of a carousel, and wherein said second mobile component or respectively said first mobile component is a balance wheel.
10. The oscillator mechanism according to claim 9, wherein said balance wheel forming said second mobile component or respectively said first mobile component is coaxial to the carriage of said tourbillon or carousel forming said first mobile component or respectively said second mobile component, and pivoted inside said carriage, wherein said second balance spring stud of said second oscillator is attached to an arm or to the drum of said carriage, and wherein maintenance of the oscillations of said oscillator mechanism is effected by a pallet lever or a detent cooperating with a small roller attached to said tourbillon or carousel at the pivot axis thereof.
11. The oscillator mechanism according to claim 1, wherein the minimum distance between the parts of largest diameter of said first mobile component and of said second mobile component is less than 0.5 mm.
12. The oscillator mechanism according to claim 1, wherein said second mobile component and said first mobile component are coaxial.
13. The oscillator mechanism according to claim 1, wherein, at least in projection, said second mobile component is inside said first mobile component.
14. The oscillator mechanism according to claim 1, wherein the parts of largest diameter of said first mobile component and of said second mobile component, which are positioned on two different stages, are of substantially the same diameter and substantially opposite each other.
15. The oscillator mechanism according to claim 14, wherein said second elastic return is a second balance spring that extends over two stages.
16. The oscillator mechanism according to claim 1, wherein said second mobile component and said first mobile component are positioned side by side and substantially coplanar to each other.
17. A timepiece movement including at least one oscillator mechanism according to claim 1.
18. A watch including a movement according to claim 17.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Other features and advantages of the invention will appear upon reading the following detailed description, with reference to the annexed drawings, in which:
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DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
(12) The invention concerns an isochronous timepiece oscillator mechanism 100 with coupled oscillators, which is achieved very simply, by the combination of only two primary oscillators: this oscillator mechanism 100 consists only of a first oscillator 10 and a second oscillator 20.
(13) We name in the present description a mobile component any component able to pivot around a pivot axis, namely a wheel set in a non-limiting embodiment.
(14) First oscillator 10 includes a first elastic return means 11, which is attached, on the one hand, to a fixed structure 1 at a first anchoring point 12, and on the other hand, to a first mobile component 13 pivoting about a first axis D1.
(15) Second oscillator 20 includes a second elastic return means 21 attached to a second mobile component 23.
(16) According to the invention, first oscillator 10 and second oscillator 20 are coupled to each other, by aerodynamic connection between first mobile component 13 and second mobile component 23 and/or by mechanical connection via second elastic return means 21, which is then attached to first mobile component 13.
(17) In particular, there is only one first elastic return means 11 and only one second elastic return means 21.
(18) More particularly, first oscillator 10 and second oscillator 20 are coupled to each other, both by aerodynamic connection between first mobile component 13 and second mobile component 23, and by mechanical connection via second elastic return means 21 which is attached to first mobile component 13.
(19) In a particular embodiment of the invention, second elastic return means 21 is a monolithic articulated structure or flexible bearing with thin strips.
(20) In a particular and non-limiting embodiment of the invention, first oscillator 10 is of the sprung balance type, and first elastic return means 11 is a first balance spring attached to fixed structure 1 by a first balance spring stud forming first anchoring point 12. Second oscillator 20 is also of the sprung balance type, and a second elastic return means 21 is a second balance spring attached to a second mobile component 23.
(21) In other embodiments of the invention, first elastic return means 11, and/or second elastic return means 21 for coupling, is a thin resilient strip, or similar.
(22) In a particular variant of this embodiment comprising balance springs, second spring 21 is attached, on the one hand to the rim or to an arm of first mobile component 13 at a second balance spring stud 22, and on the other hand, to second mobile component 23, which pivots about a second axis D2. Maintenance of the oscillations of oscillator mechanism 100 is effected on only one of the first mobile component 13 or the second mobile component 23.
(23) In another variant, maintenance of the oscillations is effected independently on each of the two primary oscillators 10 and 20.
(24) More particularly, the rigidity of the second elastic return means 21 is less than half the rigidity of first elastic return means 11.
(25) More particularly still, the rigidity of second elastic return means 21 is comprised between 0.30 and 0.40 times the rigidity of first elastic return means 11.
(26) More particularly, the inertia of second mobile component 23 is less than one third of the inertia of first mobile component 13.
(27) More particularly still, the inertia of second mobile component 23 is comprised between 0.20 and 0.30 times the inertia of first mobile component 13.
(28) In a particular embodiment, first mobile component 13 and second mobile component 23 are balance wheels.
(29) In another particular embodiment, first mobile component 13 or second mobile component 23 is a carriage of a tourbillon or a karussel, and second mobile component 23 or respectively first mobile component 13 is a balance wheel.
(30) More particularly, the balance wheel forming second mobile component 23, or respectively first mobile component 13, is coaxial to the tourbillon or karussel carriage forming first mobile component 13, or respectively second mobile component 23, and is pivoted inside the carriage. The second balance spring stud 22 of second oscillator 20 is attached to an arm or to a drum of the carriage. Maintenance of the oscillations of oscillator mechanism 100 is effected by a pallet lever 3 or a detente cooperating with a small roller attached to the tourbillon or karussel at the pivot axis thereof.
(31) In a particular embodiment, which is advantageous for permitting aerodynamic coupling, the minimum distance G between parts of large diameter, particularly the parts of largest diameter, of first mobile component 13 and of second mobile component 23 is less than 0.5 mm. This aerodynamic coupling is advantageous, even when a main coupling is achieved by second elastic return means 21, since the aerodynamic coupling tends to stabilise oscillator mechanism 100 over only one of the two modes (inphase or in phase opposition). An aerodynamic coupling exists even with discontinuous services, for example between the arms 4 of a tourbillon or karussel carriage on the one hand, and a balance rim 5 on the other.
(32) Advantageously, oscillator mechanism 100 includes means for varying this distance between first mobile component 13 and second mobile component 23, preferably within the range 0.1 to 0.5 mm.
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(34) In a particular embodiment, second mobile component 23 and first mobile component 13 are coaxial.
(35) In another particular embodiment, at least in projection, second mobile component 23 is inside first mobile component 13.
(36) In another particular embodiment, the parts of greatest diameter of first mobile component 13 and of second mobile component 23, which are positioned on two different stages, are of substantially the same diameter and substantially opposite each other.
(37) In this latter variant, and with no particular embodiment, the second elastic return means 21 is a second balance spring which extends over two stages.
(38) In yet another particular embodiment, second mobile component 23 and first mobile component 13 are positioned side-by-side and are substantially coplanar.
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(40) The insertion of one or more mobile components ensures the stabilisation of the system of two coupled oscillators in the anti-phase mode, which has a higher frequency. Each of these mobile components can be connected to an independent elastic return means, thereby imposing a regular oscillation of the mobile component. In the case of balance wheels, such a variant can be achieved in a MEMS type or similar embodiment, made of micromachinable material, of the silicon or other type, with integrated flexible bearings.
(41) The invention also concerns a timepiece movement 200 including at least one such oscillator mechanism 100.
(42) The invention also concerns a watch 1000 including a movement 200 of this type.