Multi-blade shock absorber
10599100 ยท 2020-03-24
Assignee
Inventors
Cpc classification
International classification
Abstract
The present invention relates to a shock-absorbing device for a staff of a wheel set of a timepiece arranged on a support, wherein said support is provided with an at least partially through slot for a pivot element cooperating with a pivot shank of the staff of the wheel set to be inserted therein, wherein said device additionally comprises a spring means comprising at least a first blade and a second blade.
Claims
1. A shock-absorbing device for a timepiece, comprising: a support including a block support, the block support including an at least partially through slot and a through hole; a staff of a wheel set of the timepiece arranged on the support; a pivot stone including a free setting, a pierced stone, and an endstone, the pivot stone being arranged in the slot and placed on a base of the block support, the pierced stone and the endstone having a same width and being driven into the free setting; a pivot shank of the staff of the wheel set to pass through the through hole and the pierced stone, and be inserted in the endstone; and a plurality of blades including at least a first blade and a second blade spaced from one another extending from the support, wherein the first blade is in contact with the endstone and exerts a prestress wherein an upper surface of the endstone in contact with the first blade has a convex shape, and the apex of the convex upper surface contacts the first blade.
2. The device according to claim 1, wherein said plurality of blades extend in parallel.
3. The device according to claim 1, wherein said plurality of blades extend in the same direction.
4. The device according to claim 1, wherein said plurality of blades extend in a convergent direction, wherein a point of intersection of the plurality of blades is located facing the pivot stone.
5. The device according to claim 1, wherein the endstone includes a recess, in which the pivot shank of the shaft is inserted.
6. The device according to claim 1, wherein said pivot stone and the first blade form one single piece.
7. The device according to claim 1, wherein said pivot stone is driven into a hole arranged on the first blade.
8. The device according to claim 1, wherein the plurality of blades further include a third blade, wherein the third blade is more rigid than the second blade.
9. The device according to claim 8, wherein the difference in rigidity between the first blade and the second blade is achieved by at least one of differentiating a material between the first blade and the second blade and having elastic blades of different at least one of dimensions and shapes.
10. The device according to claim 8, wherein the first blade and the second blade are elastic blades of different dimensions or shapes.
11. The device according to claim 1, wherein the plurality of blades are fixed to the support by a stud fitted with washers arranged between two of the plurality of blades to allow them to be spaced, said plurality of blades are elastic.
12. The device according to claim 11, wherein the stud is attached to the support.
13. The device according to claim 11, wherein the stud is formed in a single piece with the support.
14. The device according to claim 13, wherein said slot is a completely through slot and has an inside edge, from which the plurality of blades extend, said plurality of blades are elastic.
15. A shock-absorbing device for a timepiece, comprising: a support including an at least partially through slot; a staff of a wheel set of the timepiece arranged on the support; a pivot stone cooperating with a pivot shank of the staff of the wheel set to be inserted therein, said pivot stone being arranged in the slot; and a plurality of blades including at least a first blade and a second blade spaced from one another extending from the support, wherein the first blade is in contact with the pivotstone and exerts a prestress, wherein the first blade and the second blade having different rigidities, the first blade being less rigid than the second blade, and wherein an upper surface of the pivotstone in contact with the first blade has a convex shape, and the apex of the convex upper surface contacts the first blade.
16. The device according to claim 15, wherein a difference in rigidity between the first blade and the second blade is achieved by at least one of differentiating a material between the first blade and the second blade and having elastic blades of different at least one of dimensions and shapes.
17. The device according to claim 15, wherein the first blade and the second blade are elastic blades of different dimensions or shapes.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1) The aims, advantages and features of the invention will become clearer from the following detailed description of at least one embodiment of the invention given solely as a non-restrictive example and illustrated by the attached drawings, wherein:
(2)
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DETAILED DESCRIPTION
(7) The general idea of the present invention is to provide a shock-absorbing system that is progressive in the absorption of shocks.
(8)
(9) This base element or support 101 is provided with an opening 102 facing the staff 2 to be damped. The staff 2 cooperates with a pivot element 103. This pivot element 103 can be a pivot stone having a recess so that the pivot shank of the shaft is inserted there. This pivot stone could be freely positioned directly in the opening or via a setting so that it can be displaced at least axially during a shock.
(10) The shock-absorbing device additionally comprises one of the spring means 110 to damp the staff of the wheel set.
(11) These spring means, evident in
(12) The assembly 110 formed by the elastic blades 112 and the stud 114 is thus arranged so that one of the elastic blades, in particular the elastic blade facing the pivot element, exerts a prestress. It is understood from this that the elastic blade is in contact with the pivot element and exerts a pressure on it. This configuration with several blades allows a progressive anti-shock rigidity enabling a greater quantity of energy (of the shock) to dissipate through multiple impacts and by using highly dissipative materials.
(13) In a first embodiment evident in
(14) The discontinuous rigidity occurs when one of the blades 112 is deflected sufficiently to come into abutment against the following blade: at this moment the energy of the shock (kinetic energy of the balance) is partially dissipated by an impact mechanism (characterised by a certain coefficient of restitution). Therefore, the discontinuous rigidity allows the dissipation of energy to increase during the shock.
(15) In a second embodiment evident in
(16) The use of different materials can allow the introduction of highly dissipative materials (such as certain copper or aluminium variants) together with perfectly elastic materials (that exhibit no dissipation at all) such as silicon, silicon carbide, silicon nitride or metallic glasses.
(17) In this case the elastic blade or blades 112 allow perfect positioning after the shock, whereas blades 112 made of dissipative materials allow a reduction of the energy of the shock experienced by the pivot of the balance. This dual behaviour is impossible to obtain with a single blade, because generally highly dissipative materials are very easily subject to plastic deformations. Advantageously, the main blade 112 that rests directly on the pivot stone must have dimensions ranging between the following limits:
(18) Length: 10 mm-20 mm
(19) Width: 0.2 mm-2 mm
(20) Thickness: 0.05 mm-0.5 mm
(21) The other blades 112 can be adjusted outside these limits in accordance with the materials used, the weight of the balance and other geometric parameters of the movement.
(22) In the case of a change in dimension the aim to be achieved is the same, i.e. to modify the rigidity of the blades 112 in order to obtain an adequate response to a shock.
(23) Preferably, the first elastic blade 112, i.e. the blade 112 in contact with the pivot element 103, is designed to be sufficiently elastic to plasticise sufficiently late, and the other blades 112 are more rigid to allow a better dissipation of the energy of the shock.
(24) In a second embodiment the elastic blades 112 are arranged to replace the pivot element 103. This is understood to mean that the elastic blades 112 and the pivot element 103 form a single unit.
(25) For this, these elastic blades 112 are arranged so that the first blade, i.e. the blade closest to the base element (plate or bridge), serves as pivot element 103. There are two possible solutions for this.
(26) The first solution evident in
(27) In a second solution evident from
(28) This second solution advantageously allows protection against any possible problems of incompatibility. In fact, the use of a stone made from ruby guarantees a restriction of the vibrations at the level of the pivot shank or the staff and therefore better efficiency.
(29) In a variant of this second embodiment evident in
(30) This variant advantageously allows a greater compactness by integrating the blades 112 directly in the opening 102, which limits the thickness of the system.
(31) In a variant of these two embodiments evident in
(32) Another solution consists of making the assembly formed by the spring means and the base element from silicon using a LIGA or DRIE method.
(33) It will be understood that various modifications and/or improvements evident to a person skilled in the art can be applied to the different embodiments of the invention described in the present description without departing from the framework of the invention.
(34) In fact, it is possible to conceive an overall increase in absorption by adding a viscoelastic material or a viscous fluid between two or more blades.
(35) Moreover, it is also possible that the opening 102 of the base element serves to drive therein a block support 200 provided with a slot 201 and a through hole 202 in order to accommodate the pivot element 103 therein, which will be located at the base of the slot of the block support of the opening. The pivot element, which will be a simple stone or a setting 204 with a pierced stone 205 and an endstone 205 will rest in the base of the block support, as evident in