Annular rotating bezel system comprising a spring ring provided with at least two lugs
US-2020050153-A1 · Feb 13, 2020 · US
US11977355B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11977355-B2 |
| Application number | US-202117558563-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 21, 2021 |
| Priority date | Dec 22, 2020 |
| Publication date | May 7, 2024 |
| Grant date | May 7, 2024 |
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A spring ( 1 ) for a notching system, the spring including at least two elastic arms ( 11, 12 ), and a first toothset javomg first notching teeth ( 11 a, 12 a ) disposed on each of the arms, the spring being designed such that, in a position in which one of the arms of the spring is not loaded, the arm is convex as seen from the top of the first notching tooth of this arm.
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The invention claimed is: 1. A spring for a notching system, the spring comprising: at least two elastic arms, and a first toothset comprising first notching teeth disposed on each of the arms, wherein each of the first notching teeth is disposed at a midway point of each of the elastic arms, the spring being designed so that, in a position in which a first one of the arms of the spring is not loaded, the first arm is convex as seen from the top of the first notching tooth of the first arm. 2. The spring as claimed in claim 1 , wherein the spring comprises at least one first pivot connection element between the two elastic arms. 3. The spring as claimed in claim 1 , wherein the spring is in the form of a closed loop. 4. The spring as claimed in claim 1 , wherein each of the elastic arms, when it is not loaded, is in the form of a circular arc, the center of which is situated on a first circle coaxial with the spring and having a non-zero radius. 5. The spring as claimed in claim 4 , wherein the first circle has a radius greater than 1.5 times a radius of the spring. 6. The spring as claimed in claim 4 , wherein the first circle has a radius greater than 0.2 times the radius of the spring. 7. The spring as claimed in claim 4 , wherein the first circle has a radius greater than 1.8 times the radius of the spring. 8. The spring as claimed in claim 1 , wherein the at least two elastic arms form a clamp adapted to act on a first member having a second toothset comprising second notching teeth. 9. The spring as claimed in claim 1 , wherein the spring is designed so that a radius of curvature of any one of the arms of the spring increases, or is reversed, when the arm is loaded by an action of second notching teeth. 10. The spring as claimed in claim 1 , wherein each of the first notching teeth comprises a first stop element. 11. The spring as claimed in claim 1 , wherein each of the elastic arms comprises a first abutment force reacting element. 12. The spring as claimed in claim 1 , wherein at least one of the following: the spring comprises n elastic arms, where n≥2, the spring comprises n first pivot connection elements, where n≥2, the spring comprises n elastic arms and n first pivot connection elements, where n≥2, the spring exhibits n-fold symmetry of revolution. 13. The spring as claimed in claim 1 , wherein at least one of the following: the spring has substantially a polygonal shape, segments linking the axes of first pivot connection elements constitute a polygonal shape. 14. A notching system comprising: a spring as claimed in claim 1 , and a first member having a second toothset, the spring and the first member being arranged so as to act on one another. 15. The notching system as claimed in claim 1 , which comprises a second member mounted so as to be movable with respect to the first member or vice versa, the second member comprising at least one second pivot connection element cooperating with at least one first pivot connection element in order to create at least one pivot connection between the spring and the second member. 16. The notching system as claimed in claim 14 , wherein the first toothset comprises n first teeth, and wherein the second toothset comprising m second teeth, wherein: n=8 and m=6, or n=6 and m=5, or n=10 and m=12, or n=12 and m=15, or n=12 and m=20, or n=8 and m=15. 17. A timepiece device, wherein the timepiece device is: a rotary bezel, or a rotary flange, or an orientable back, or an orientable crown, or a display device for a time zone or a display device for a programmable display, wherein the timepiece device comprises a spring as claimed in claim 1 . 18. A timepiece case comprising a spring as claimed in claim 1 . 19. A timepiece comprising a case as claimed in claim 18 . 20. The spring as claimed in claim 1 , wherein each of the elastic arms comprises a first abutment force reacting element, and wherein the first abutment force reacting element is disposed at a midway point of each of the elastic arms. 21. A spring for a notching system, the spring comprising: at least two elastic arms, and a first toothset comprising first notching teeth disposed on each of the arms, the spring being designed so that, in a position in which a first one of the arms of the spring is not loaded, the first arm is convex as seen from the top of the first notching tooth of the first arm, wherein each of the elastic arms comprises a first abutment force reacting element, and wherein the first abutment force reacting element is disposed at a midway point of each of the elastic arms. 22. A spring for a notching system, the spring comprising: at least two elastic arms, and a first toothset comprising first notching teeth disposed on each of the arms, the spring being designed so that, in a position in which a first one of the arms of the spring is not loaded, the first arm is convex as seen from the top of the first notching tooth of the first arm, wherein each of the elastic arms, when it is not loaded, is in the form of a circular arc, the center of which is situated on a first circle coaxial with the spring and having a non-zero radius, wherein the first circle has a radius greater than 1.5 times a radius of the spring. 23. The spring as claimed in claim 22 , wherein the first circle has a radius greater than 0.2 times the radius of the spring. 24. The spring as claimed in claim 22 , wherein the first circle has a radius greater than 1.8 times the radius of the spring. 25. A notching system comprising: a spring, and a first member having a second toothset, the spring and the first member being arranged so as to act on one another, wherein the spring comprises: at least two elastic arms, and a first toothset comprising first notching teeth disposed on each of the arms, the spring being designed so that, in a position in which a first one of the arms of the spring is not loaded, the first arm is convex as seen from the top of the first notching tooth of the first arm, and wherein the first toothset comprises n first teeth and the second toothset comprises m second teeth, wherein: n=8 and m=6, or n=6 and m=5, or n=10 and m=12, or n=12 and m=15, or n=12 and m=20, or n=8 and m=15. 26. The notching system as claimed in claim 25 , which comprises a second member mounted so as to be movable with respect to the first member or vice versa, the second member comprising at least one second pivot connection element cooperating with at least one first pivot connection element in order to create at least one pivot connection between the spring and the second member.
Mainsprings; Bridles therefor (mainsprings with bridles G04B1/18; alloys C22C; springs in general F16F {; constructions for compensation of changes in the motive power of the mainspring G04B1/22; construction of the hairspring G04B17/066; arrangements facilitating the removal of the mainspring G04B33/14}) · CPC title
allowing rotational slipping when a threshold torque is exceeded · CPC title
with elastic means between the toothing and the hub of a toothed wheel · CPC title
on rotatable rings, i.e. bezel (for graduations on the bezels G04B19/18) · CPC title
with rotary disc, rotary bezel, or rotary dial · CPC title
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