Device for autonomous adjustment of the active length of a balance spring
11397410 ยท 2022-07-26
Assignee
Inventors
Cpc classification
G04B18/02
PHYSICS
G04B18/028
PHYSICS
G04B17/28
PHYSICS
International classification
G04B18/02
PHYSICS
G04B18/04
PHYSICS
Abstract
A device for autonomous adjustment of the active length of a balance spring includes a regulator mounted on a plate with a cock, a balance spring stud holder being pivotally mounted on the cock, the regulator being pivotally mounted on the stud holder and including a pivot arm and device for changing the active length of the balance spring by pivoting the regulator. The device includes an elastic stress device to exert an elastic, return-to-position action on the regulator, and an inertia block, mounted for free rotation on the cock and connected to the pivot arm of the regulator, arranged to move the pivot arm of the regulator between a rest position and a correction position of the device, and simultaneously act on the device for changing the active length of the balance spring.
Claims
1. A device for autonomous adjustment of the active length of a balance spring, for an oscillator of the balance/balance spring type, comprising a regulator mounted on a plate of a timepiece movement, with a cock in which a balance staff pivots, the balance spring comprising an inner end integral with the balance staff and an outer end integral with a balance spring stud attached to a stud holder, the stud holder being pivotally mounted on the cock concentrically to the balance staff, the regulator being pivotally mounted on the stud holder concentrically to the balance staff and comprising a pivot arm and means for adjusting the active length of the balance spring by pivoting the regulator; the device further includes comprising: elastic stress means configured to exert an elastic, return-to-position action on the regulator; and an inertia block mounted for free rotation on the cock and connected to the pivot arm of the regulator such that a rotation of the inertia block causes a displacement of the pivot arm of the regulator and simultaneously acts on the means for adjusting the active length of the balance spring.
2. The device for autonomous adjustment of the active length of a balance spring according to claim 1, wherein the device further comprises a cam for driving the pivot arm of the regulator, said cam being integral with the inertia block and in contact with the pivot arm.
3. The device for autonomous adjustment of the active length of a balance spring according to claim 2, wherein the inertia block is mounted for free rotation on the cock via an arbor integral with the inertia block, the cam being mounted on the inertia block concentrically to said arbor and integral with said arbor.
4. The device for autonomous adjustment of the active length of a balance spring according to claim 3, wherein the cam is a radial cam with a shaped outer circumference.
5. The device for autonomous adjustment of the active length of a balance spring according to claim 2, wherein the cam is a radial cam with a shaped outer circumference.
6. The device for autonomous adjustment of the active length of a balance spring according to claim 2, wherein, in the rest position of the device, a flat portion of the cam is in contact with the pivot arm of the regulator, and, in the correction position of the device, a corner or an angle of the cam is in contact with the pivot arm.
7. The device for autonomous adjustment of the active length of a balance spring according to claim 2, wherein the cam is in contact with the pivot arm of the regulator regardless of the position of the inertia block.
8. The device for autonomous adjustment of the active length of a balance spring according to claim 1, wherein the elastic stress means comprise an elastically deformable arm, with a first end of the arm resting against a part integral with the cock and a second end of the arm being attached to the regulator.
9. The device for autonomous adjustment of the active length of a balance spring according to claim 8, wherein the regulator, the pivot arm and the elastically deformable arm together form one piece.
10. The device for autonomous adjustment of the active length of a balance spring according to claim 1, wherein the device further comprises means for adjusting the elastic stress defined by the elastic stress means.
11. The device for autonomous adjustment of the active length of a balance spring according to claim 1, wherein the means for adjusting the active length of the balance spring comprise two pins attached to the regulator, the balance spring being arranged such that an outer coil of the balance spring passes between the two pins.
12. The device for autonomous adjustment of the active length of a balance spring according to claim 1, wherein the device further comprises shock absorption means, arranged on the regulator and at least partially resting on the balance staff.
13. The device for autonomous adjustment of the active length of a balance spring according to claim 1, wherein the inertia block is a half-solid disc.
14. The device for autonomous adjustment of the active length of a balance spring according to claim 1, wherein the inertia block is a solid bimaterial disc, the two materials having distinct densities.
15. A timepiece movement comprising an oscillator of the balance/balance spring type and a device for adjusting the active length of the balance spring, wherein the autonomous adjustment device is the device according to claim 1.
16. A timepiece comprising a timepiece movement, wherein the timepiece movement is the movement according to claim 15.
17. A device for autonomous adjustment of the active length of a balance spring, for an oscillator of the balance/balance spring type, comprising a regulator mounted on a plate of a timepiece movement, with a cock in which a balance staff pivots, the balance spring comprising an inner end integral with the balance staff and an outer end integral with a balance spring stud attached to a stud holder, the stud holder being pivotally mounted on the cock concentrically to the balance staff, the regulator being pivotally mounted on the stud holder concentrically to the balance staff and comprising a pivot arm and means for adjusting the active length of the balance spring by pivoting the regulator; the device further comprising: elastic stress means configured to exert an elastic, return-to-position action on the regulator; and an inertia block mounted for free rotation on the plate and connected to the pivot arm of the regulator such that a rotation of the inertia block causes a displacement of the pivot arm of the regulator and simultaneously acts on the means for adjusting the active length of the balance spring.
18. The device for autonomous adjustment of the active length of a balance spring according to claim 17, wherein the device further comprises a cam for driving the pivot arm of the regulator, said cam being integral with the inertia block and in contact with the pivot arm.
19. The device for autonomous adjustment of the active length of a balance spring according to claim 18, wherein the inertia block is mounted for free rotation on the plate via an arbor integral with the inertia block, the cam being mounted on the inertia block concentrically to said arbor and integral with said arbor.
20. The device for autonomous adjustment of the active length of a balance spring according to claim 18, wherein, in the rest position of the device, a flat portion of the cam is in contact with the pivot arm of the regulator, and, in the correction position of the device, a corner or an angle of the cam is in contact with the pivot arm.
21. The device for autonomous adjustment of the active length of a balance spring according to claim 18, wherein the cam is in contact with the pivot arm of the regulator regardless of the position of the inertia block.
22. The device for autonomous adjustment of the active length of a balance spring according to claim 17, wherein the device further comprises means for adjusting the elastic stress defined by the elastic stress means.
23. The device for autonomous adjustment of the active length of a balance spring according to claim 17, wherein the means for adjusting the active length of the balance spring include two pins attached to the regulator, the balance spring being arranged such that an outer coil of the balance spring passes between the two pins.
24. The device for autonomous adjustment of the active length of a balance spring according to claim 17, wherein the device further comprises shock absorption means, arranged on the regulator and at least partially resting on the balance staff.
25. The device for autonomous adjustment of the active length of a balance spring according to claim 17, wherein the inertia block is a half-solid disc.
26. The device for autonomous adjustment of the active length of a balance spring according to claim 17, wherein the inertia block is a solid bimaterial disc, the two materials having distinct densities.
27. A timepiece movement comprising an oscillator of the balance/balance spring type and a device for adjusting the active length of the balance spring, wherein the autonomous adjustment device is the device according to claim 17.
28. A timepiece comprising a timepiece movement, wherein the timepiece movement is the movement according to claim 27.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The objects, advantages and features of the device for adjusting the active length of a balance spring and of a timepiece comprising the same will appear more clearly in the following description based on at least one non-limiting embodiment, illustrated by the drawings, in which:
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION OF THE INVENTION
(6) In the following description, reference is made to a timepiece movement provided with a device for adjusting the active length of a balance spring, for an oscillator of the balance/balance spring type. The ordinary components of the timepiece movement, which are well known to those skilled in the art in this technical field, will be described only in a simplified manner or not described at all. Those skilled in the art will know how to adapt these different components and make them work together for the timepiece movement to operate. In particular, there will be no description below of anything relating to the escapement mechanism of the timepiece movement, although an escapement mechanism can advantageously cooperate with the adjustment device according to the invention.
(7)
(8) Adjustment device 6 is mounted on a frame 13 of timepiece movement 2 via cock 12 and includes a regulator 14. As represented in
(9) Means 18 for changing the active length of balance spring 5 are capable of changing the active length of balance spring 5 by pivoting regulator 14. In the particular example embodiment illustrated in
(10) Adjustment device 6 further includes elastic stress means 20 and an inertia block 22. In a preferred example embodiment, adjustment device 6 further includes a cam 24 for driving pivot arm 16 of regulator 14. Preferably, adjustment device 6 may also include means 26 for adjusting the elastic stress defined by elastic stress means 20, and shock absorption means 28.
(11) Elastic stress means 20 are configured to exert an elastic, return-to-position action on regulator 14. More precisely, elastic stress means 20 are configured to exert on regulator 14 an elastic return action to a rest position of adjustment device 6 illustrated in
(12) According to a preferred embodiment, inertia block 22 is mounted for free rotation on cock 12 and is connected to pivot arm 16 of regulator 14 such that a rotation of inertia block 22 causes a displacement of pivot arm 16 of regulator 14 and simultaneously acts on means 18 for adjusting the active length of balance spring 5. The displacement of pivot arm 16 of regulator 14 caused by the rotation of inertia block 22, which is itself subject to gravity, is carried out between a rest position of device 6, illustrated in
(13) According to another embodiment, inertia block 22 is mounted for free rotation on plate 13.
(14) In the preferred example embodiment, wherein device 6 includes a cam 24 driving pivot arm 16 of regulator 14, cam 24 is integral with inertia block 22 and is in contact with pivot arm 16. In a variant of this preferred example, illustrated in
(15) Preferably, cam 24 is a radial cam with a shaped outer circumference. Although a radial cam 24 with a substantially rectangular outer circumference is represented in
(16) In the particular example embodiment illustrated in
(17) Elastic stress adjusting means 26 can serve as support part 34 for elastic deformable arm 30. In a particular example embodiment, illustrated in
(18) Elastic stress adjustment button 44 has, for example, an outer profile defining a radial contour of variable radius. In the illustrative example of
(19) Shock absorption means 28 are arranged on regulator 14 and at least partially rest on staff 7 of balance 4. Shock absorption means 28 include, for example, an ordinary shock absorber 46 into which a clover spring 48 is driven.
(20) It is therefore envisaged that, according to the position of timepiece movement 2 in space, inertia block 22 which is subject to gravity, can rotate about its axis of rotation and thus cause a displacement of pivot arm 16 of regulator 14, as illustrated in