Friction systems for watch movements
The friction system in watch movements uses a deformable washer with catches to achieve precise and repeatable friction torque, addressing manual assembly issues and high-torque capability.
Patent Information
- Application Number
- JP2024198253
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2023-12-22
- Filing Date
- 2024-11-13
- Publication Date
- 2026-01-14
- Estimated Expiration
- 2044-11-13
AI Technical Summary
Existing friction systems in watch movements suffer from unpredictable friction torque adjustment, lack of repeatability, and inability to withstand high torques due to manual assembly, and manufacturing reproducibility issues.
A friction system comprising a shaft, fixing elements, a toothed member, and a deformable washer with catches that form a link between the elements to achieve precise and repeatable friction torque, allowing easy adjustment by compressing the washer against the shaft.
Enables high-torque transmission with precise and reproducible friction control, simplifying assembly and ensuring consistent performance.
Smart Images

Figure 0007799008000001 
Figure 0007799008000002 
Figure 0007799008000003
Abstract
Description
[Technical Field]
[0001] The present invention relates to the field of mechanical watchmaking, and more particularly to friction systems for watch movements. [Background technology]
[0002] Friction systems are commonly used in timepiece movements to connect a first member to a second member so that they rotate together until a torque limit is reached, beyond which the two members are no longer connected to rotate together. This type of system is typically used for hour and minute display means, in particular in cannon pinions for driving the display hands or display discs.
[0003] The cannon pinion is usually snapped into place by indenting to ensure friction between the cannon pinion and the arbor. Indenting consists of applying pressure to a tube contained in the cannon pinion, opposite a shoulder or clearance on the arbor. This pressure is applied manually, and the results are unpredictable, as they depend on the dexterity and sensitivity of the watchmaker. This is unfortunate, since the purpose of indenting is to ensure a certain level of friction between the arbor and the cannon pinion during the normal operation of the watch, but the friction torque must not be too high, as the manual hand-setting operation performed by the user applies a torque greater than the friction torque.
[0004] This makes precise adjustment of the friction torque tricky, and therefore it is important to precisely control the applied clamping force, and traditional manual pressing does not provide this precision or the required repeatability.
[0005] Another drawback is that the friction provided by the press-fit cannot withstand the transmission of high torques and is sensitive to assembly and disassembly.
[0006] Other solutions exist for achieving friction, such as metal foils, but it is difficult to guarantee the reproducibility of their manufacture from batch to batch.
[0007] Spiral springs also exist, but these take up too much space. Summary of the Invention [Problem to be solved by the invention]
[0008] A primary object of the present invention is to overcome various drawbacks of the prior art.
[0009] Another object of the present invention is to provide a friction system that is capable of transmitting high torque, is easy to manufacture, and allows for easy control of friction repeatability. [Means for solving the problem]
[0010] To this end, the invention relates to a friction system for a timepiece movement, comprising: an axle intended to be attached to a clock movement; a first fixing element attached to the shaft; a second fixing element attached to the shaft; a toothed member mounted between the first and second fixed elements so as to rotate freely on an axis; a third fixing element attached to the shaft; a spring attached to the shaft and disposed between the second and third fixing elements; The present invention relates to a friction system including:
[0011] According to the invention, the spring takes the form of a washer including an inner portion close to the axis abutting against the third fixing element and an outer peripheral portion of the washer abutting elastically against the annular element of the second fixing element, the spring being elastically deformable and forming a link in the chain both between the first fixing element and the toothed member and between the second fixing element and the toothed member up to a predetermined friction torque.
[0012] According to another advantageous alternative embodiment of the present invention, The washer includes at least two catches arranged on its outer periphery, the catches being arranged to resiliently abut against the annular element of the second fixing element. The first fixing element and the toothed member each have a conical contact surface. The shaft comprises a shoulder intended to cooperate with a flat portion of the second fixation element. The third fixing element takes the form of a ring having an excess thickness portion adjacent the hole for attaching the ring to the shaft, the excess thickness portion being arranged to abut against the spring. The second fixing element has a conical contact surface with the spring catch. The outer catch and inner part of the spring are in two different planes.
[0013] The invention further relates to a timepiece movement comprising a friction system according to the invention. [Brief explanation of the drawings]
[0014] Other characteristics and advantages of the present invention will become apparent from the following detailed description, given by way of example and in no way limiting, with reference to the accompanying drawings, in which: [Figure 1] 1 shows a perspective view of a friction system according to the present invention; [Figure 2] 1 shows an exploded view of a friction system according to the present invention. [Figure 3] 1 shows a cross-section along axis AA of a friction system according to the invention; DETAILED DESCRIPTION OF THE INVENTION
[0015] 1 shows a friction system 100 according to the invention. The system comprises a shaft 1 arranged to be attached to a clock movement, which shaft may comprise portions with sections 10, 11 of different diameters.
[0016] The shaft 1 carries a toothed member 3, in this case a pinion, mounted so as to rotate freely on the shaft 1. Alternatively, this toothed member 3 may be a wheel. The shaft 1 may also carry multiple toothed members and may take many known forms depending on the needs of those skilled in the art.
[0017] As shown in Figure 2, the system includes a first fixing element 2, such as a flange, which is pressed onto the shaft 1 and extends perpendicular to the shaft 1. This flange 2 has a first conical seating surface 20, which serves as a first friction surface between the toothed member 3 and the flange 2.
[0018] The system 100 further comprises a second locking element 4, the toothed element being arranged between the first locking element 2 and the second locking element 4 and rotating about the axis 1. The second locking element 4 takes the form of a collar including an annular rib 42 on its face directed towards the toothed element 3, forming an annular seating surface between the toothed element 3 and the second locking element 4.
[0019] On its other face, the collar 4 has an annular rim 40 forming a skirt, with an open space 43 extending between the annular rim 40 and the center of the collar 4. As can be seen in Figure 3, the annular rim 40 is tapered to form a conical seating surface.
[0020] Advantageously, the shaft 1 includes a shoulder 12 arranged to cooperate with a flat 41 of the second fixing element 4. This arrangement allows the second fixing element 41 to slide on the shaft and ensures that it is accurately positioned and held on the shaft after installation.
[0021] The system further includes a third fixing element 6 attached or pressed onto the shaft 1. This third fixing element takes the form of a ring 6 having an excess thickness portion 60 near a hole 61 attaching the ring 6 to the shaft 1. The excess thickness portion 60 has a diameter smaller than that of the ring 6 and forms an annular seat 62 for the spring 5.
[0022] The spring 5 is mounted so that it can move or not move around the axis 1 and is arranged between the second and third fixing elements.
[0023] The spring 5 takes the form of a flat washer including an inner portion 51 immediately adjacent to the axis 1 which abuts against the third fixing element 6, more precisely against the excess thickness portion 6, and an outer peripheral portion which abuts elastically against the conical surface 40 of the skirt 4.
[0024] At rest, the spring 5 takes the form of a flat washer, which deforms elastically when stressed between the second fixing element 4 and the third fixing element 5. The use of a flat washer is particularly advantageous, as the use of a flat portion makes it easier to reproduce, for example, in particular compared to a dome-shaped element.
[0025] According to one embodiment of the present invention, the spring 5 comprises at least two catches 50 arranged on the outer periphery of the washer, which catches 50 are intended to bear elastically against the conical seats 40 of the second locking element 4. Thus, once all parts are mounted, the spring 5 makes it possible to form a link of the chain both between the first locking element 2 and the toothed member 3 and between the second locking element 4 and the toothed member 3 up to a predetermined friction torque.
[0026] Preferably, as shown in the figure, the spring 5 has three catches for improved force distribution and to facilitate deformation of the spring.
[0027] The catches 50 are arranged at the same angular distance on the washer 5 for a good distribution of the support force on the annular rim 40 of the collar 4. In the example shown, three catches are arranged at 120° to each other. If there are more catches, for example five catches, the catches are arranged at 72° to each other.
[0028] According to a particularly advantageous embodiment, the friction torque can be perfectly adjusted by precisely pressing the ring 6 onto the shaft 1 against the spring 5, and the elastic force that the spring 5 exerts on the fixing element 4 allows a very precise friction torque to be obtained.
[0029] As shown in FIG. 3, when the system is assembled, the outer catch 50 and inner portion 51 of the spring 5 are positioned in two different planes, and the assembly bends the spring 5 to apply stress between the ring 6 and the collar 4.
[0030] In this way, the stress in spring 5 can be changed by moving ring 6 on axis 1, thereby acting on the distance between the planes of seating surface 62 and seating surface 40, and consequently changing the friction torque that the system can withstand before toothed member 3 pivots relative to axis 1. Such an arrangement makes adjustment very simple and easy to reproduce.
[0031] The invention further relates to a timepiece movement comprising a friction system according to the invention.
[0032] The present invention further provides a method of assembling a friction system according to the present invention, comprising the steps of: providing an axis 1; - pushing the first fixing element 2 onto the shaft 1 until it is in place; - sliding the toothed element 3 on the shaft 1 up to the first fixing element 2; sliding the second locking element 4 onto the shaft 1 while orienting it relative to the shaft by means of a flat 41 cooperating with a shoulder 12 formed on the shaft 1; - positioning the spring 5 with at least three catches 50 arranged on the outer periphery of the spring 5, the catches 50 abutting the second fixing element 4; gradually pushing the third fixing element 6 onto the shaft 1 and compressing the spring 5 between the second fixing element 4 and the third fixing element 6 in order to obtain a link in the chain both between the first element and the toothed member and between the second fixing element and the toothed member until a predetermined friction torque is obtained; The present invention relates to a method comprising:
[0033] Of course, the present invention is not limited to the embodiments shown, but various alternatives and modifications apparent to those skilled in the art are possible within the scope of the invention as defined by the claims.
Claims
1. A friction system (100) for a timepiece movement, comprising: an axle (1) intended to be attached to a clock movement; a first fixing element (2) attached to said shaft; a second fixing element (4) attached to said shaft; a toothed member (3) mounted between said first and second fixing elements so as to rotate freely on said axis; a third fixing element (6) attached to said shaft; a spring (5) attached to the shaft and arranged between the second fixing element (4) and the third fixing element (6); Including, said spring (5) takes the form of a flat washer comprising an inner part (51) close to said axis (1) and abutting against said third fixing element (6) and an outer peripheral part of the washer abutting elastically against an annular element of said second fixing element (4); The spring is arranged to be stressed to elastically deform between the second and third locking elements (4, 6) and to form a chain link both between the first locking element (2) and the toothed member (3) and between the second locking element (4) and the toothed member (3) up to a predetermined friction torque.
2. Friction system (100) according to claim 1, characterized in that the washer comprises at least two catches (50) arranged on its outer periphery, the catches (50) being arranged to elastically abut against an annular element of the second fixed element (4).
3. Friction system (100) according to claim 1, characterized in that the first fixed element (2) and the toothed member (3) each have a conical contact surface (20, 30).
4. Friction system (100) according to claim 1, characterized in that the shaft (1) comprises a shoulder (12) arranged to cooperate with a flat (41) of the second fixing element.
5. Friction system (100) according to claim 1, characterized in that the third fixing element (6) takes the form of a ring, the ring having an excess thickness portion (60) near a hole (61) for attaching the ring to the shaft (1), the excess thickness portion (60) being arranged to abut against the spring (5).
6. Friction system (100) according to claim 1, characterized in that the second fixing element (4) has a conical contact surface (40) with a catch (50) of the spring (5).
7. Friction system (100) according to claim 1, characterized in that the outer circumferential catch (50) and the inner part (51) of the spring (5) lie in two different planes.
8. A method of assembling a friction system, comprising: - providing an axis (1); - pushing the first fixing element (2) onto the shaft (1) until it is in position; - sliding a toothed member (3) on said shaft (1) up to said first fixing element (2); - sliding the second locking element (4) onto the shaft (1) while orienting it relative to the shaft (1) by means of a flat (41) cooperating with a shoulder (12) formed on the shaft (1); - placing a spring (5) on said shaft (1); gradually forcing a third locking element (6) onto the shaft (1) and compressing the spring (5) between the second locking element (4) and the third locking element (6) in order to obtain a link in the chain both between the first locking element and the toothed member and between the second locking element and the toothed member until a predetermined friction torque is obtained; A method comprising:
Citation Information
Patent Citations
JP1978021249U
JP1978117867U
Gear train for analog display timepiece
US4308610A