This application claims priority to European Patent Application No. 19213595.2 filed on Dec. 4, 2019, the entire disclosure of which is hereby incorporated herein by reference.
The invention relates to a rotating-bezel system comprising a ceramic rotating bezel.
The invention also relates to a watch case comprising a middle and the rotating-bezel system mounted for rotation on the middle.
The invention also relates to a watch including the watch case.
Known rotating-bezel systems comprise a ceramic rotating bezel, an annular ring, and an annular connecting joint between the rotating bezel and the annular ring. In such a system, the annular ring is generally driven into the rotating bezel. The annular ring is intended to cooperate with an element angularly secured to a watch-case middle on which the ceramic rotating bezel is mounted, such as an open spring with faces.
The annular joint is inserted between the annular ring and the rotating bezel, and forms a friction element configured to hold the bezel on the annular ring. However, one drawback of such a rotating-bezel system is that the annular joint does not provide a sufficiently strong connection between the rotating bezel and the ring, in particular when the system is dismantled. However, during such a dismantling operation, for example necessary for replacing a part or for repairing an element, such a weakness of connection provided by the annular joint may result in the bezel becoming disengaged from the ring, the latter then remaining on the middle of the watch case. This gives rise to unnecessary and tedious operations for the operator responsible for dismantling the system, which is detrimental to the practicality and reliability of the latter.
The aim of the invention is therefore to provide a simple and reliable rotating-bezel system for securing the holding of the rotating bezel on the annular ring, in particular when the system is dismantled, and overcoming the aforementioned drawbacks of the prior art.
To this end, the invention relates to a rotating-bezel system that comprises a ceramic rotating bezel, an annular ring configured to cooperate with an element angularly secured to the middle, an annular joint for connection between the rotating bezel and the annular ring, the annular ring being placed in the rotating bezel, and at least one element for locking the annular ring on the rotating bezel, the at least one element being configured to lock any relative rotation between the annular ring and the bezel and thus to angularly secure the assembly formed by the ring and the bezel.
Particular embodiments of the system include additional features described hereinafter.
By virtue of the presence in the system of at least one element for locking the annular ring on the rotating bezel, the holding of the rotating bezel on the annular ring is improved, in particular when the system is dismantled. This is because the or each locking element is configured to lock any relative rotation between the ring and the bezel. Such a configuration then makes it possible to angularly secure the assembly formed by the ring and the bezel, thus making it possible to avoid any disengagement between them, in particular during dismantling, and thus securing the holding of the assembly. The reliability of the system is thus advantageously improved.
Advantageously, the system comprises at least two locking elements distributed over 360°. This distributes the mechanical stresses exerted on the system as well as limiting the clearance between the annular ring and the rotating bezel. According to a preferential embodiment of the invention, the system comprises four locking elements distributed over 360°, the four locking elements being spaced apart, two by two, by 90°.
Advantageously, the annular joint is formed by a polymer material, for example asutane. The joint being made from flexible material, it can deform and compress, and thus makes it possible to compensate for clearances and to clamp (secure) the parts together.
Advantageously, at least one opening for receiving the or one of the locking elements is machined locally in the annular ring. This facilitates the installation of the locking element or elements in the system.
Advantageously, the annular joint is driven between the annular ring and the or each locking element. Such an annular joint thus configured makes it possible to form a friction element for preventing any sliding between the locking element or elements and the annular ring, and furthermore prevents non-return of the locking elements.
Advantageously, the annular rotating bezel system is formed by an independent module, said module being configured to be snapped onto the middle. This makes it possible to obtain simple and practical mounting of the rotating-bezel system on the middle, also allowing easy dismantling. This further simplifies the assembly and dismantling of the system. The system of mounting by snapping on used forms a free hooking system, and the principles of normal mounting of rotating bezels with a spring with faces is kept.
To this end, the invention also relates to a watch case comprising a middle as well as the rotating-bezel system described above.
To this end, the invention also relates to a watch including the watch case described above.
The aims, advantages and features of the rotating-bezel system according to the invention will emerge more clearly in the following description on the basis of at least one non-limitative embodiment illustrated by the drawings, in which:
As illustrated in
The rotating-bezel system 6 comprises a rotating bezel 14, an annular ring 16, an annular joint 18 for connection between the rotating bezel 14 and the annular ring 16, and at least one element 20 for locking the annular ring 16 on the rotating bezel 14. Preferably, the system 6 includes at least two locking elements 20 distributed over 360°. According to a preferential embodiment, the system 6 includes four locking elements 20 distributed over 360°, the four locking elements 20 being spaced apart, two by two, by 90°. The rotating bezel 14 is made from ceramic, typically based on alumina, zirconia or silicon nitride.
The annular ring 16 is placed in the rotating bezel 14, and cooperates with the element angularly secured to the middle 4. In the particular example embodiment illustrated in
As illustrated in
In the particular example embodiment illustrated in
Each locking element 20 is configured to lock any relative rotation between the annular ring 16 and the bezel 14. In the preferential example embodiment illustrated in
Preferably, each locking element 20 is formed from the same material as that from which the annular ring 16 is formed, typically a metallic material, for example steel or gold.
The assembly of the rotating bezel system 6 according to the invention will now be described with reference to
As illustrated in
During a following step shown in
Finally, and as shown in
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Entry |
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European Search Report dated May 20, 2020 in European Application 19213595.2 filed Dec. 4, 2019 (with English Translation of Categories of Cited Documents), 3 pages. |
Notice of the Reason for Refusal dated Sep. 21, 2021 in Japanese Patent Application No. 2020-167445 (with English language translation), 8 pages. |
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Number | Date | Country | |
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20210173345 A1 | Jun 2021 | US |