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EP2871535A1 - Timepiece pallet with optimised horns - Google Patents

Timepiece pallet with optimised horns Download PDF

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Publication number
EP2871535A1
EP2871535A1 EP20130191770 EP13191770A EP2871535A1 EP 2871535 A1 EP2871535 A1 EP 2871535A1 EP 20130191770 EP20130191770 EP 20130191770 EP 13191770 A EP13191770 A EP 13191770A EP 2871535 A1 EP2871535 A1 EP 2871535A1
Authority
EP
European Patent Office
Prior art keywords
radius
anchor
ankle
horn
profile
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP20130191770
Other languages
German (de)
French (fr)
Other versions
EP2871535B1 (en
Inventor
Andrés Cabezas Jurin
Arthur Queval
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
ETA SA Manufacture Horlogere Suisse
Original Assignee
ETA SA Manufacture Horlogere Suisse
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by ETA SA Manufacture Horlogere Suisse filed Critical ETA SA Manufacture Horlogere Suisse
Priority to EP13191770.0A priority Critical patent/EP2871535B1/en
Priority to US14/514,549 priority patent/US9075395B2/en
Priority to JP2014222321A priority patent/JP5941119B2/en
Priority to CN201420679902.8U priority patent/CN204270013U/en
Priority to CN201410643378.3A priority patent/CN104635468B/en
Publication of EP2871535A1 publication Critical patent/EP2871535A1/en
Priority to HK15110067.0A priority patent/HK1209499A1/en
Application granted granted Critical
Publication of EP2871535B1 publication Critical patent/EP2871535B1/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • G04B15/00Escapements
    • G04B15/14Component parts or constructional details, e.g. construction of the lever or the escape wheel
    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • G04B15/00Escapements
    • G04B15/06Free escapements
    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • G04B15/00Escapements
    • G04B15/06Free escapements
    • G04B15/08Lever escapements

Definitions

  • the invention relates to an anchor for a clockwork escapement mechanism comprising a rocker equipped with an anchor of given radius and oscillating according to a given radius of gyration, said anchor comprising, on either side of an opening, a first horn and a second horn for cooperation with such an ankle.
  • the invention also relates to a rocker equipped with a peg of ankle radius given and oscillating according to a given radius of gyration about a pendulum pivot axis
  • the invention also relates to an escapement mechanism comprising a balance pivoting about a pivot axis of the balance wheel and equipped with an anchor of given radius according to a given radius of gyration, and such an anchor.
  • the invention also relates to a mechanical clockwork movement comprising at least one such escape mechanism.
  • the invention also relates to a watch comprising at least one such mechanical clockwork movement.
  • the invention relates to the field of watch exhaust mechanisms.
  • these securities are provided by at least the horns and the sting.
  • This system has proven its reliability and robustness, but requires however a distinct component, which increases the cost of production and the risk of non-quality.
  • Spreading the horns and the stinger on two separate levels requires sufficient sharing, which has a significant impact on the height of the movement, and therefore on the final thickness of the watch.
  • the invention proposes to improve the safety design, by combining the safety functions of the horns and the stinger of an anchor escapement, whether it is a Swiss lever escapement, English anchor, pegs, or the like.
  • the invention optimizes the design of the horns, so as to ensure the safety functions hitherto devolved to the sting, intended to prevent accidental movement of the anchor fork during the additional oscillation arc balance.
  • the anchor according to the invention is an anchor without sting.
  • the anchor according to the invention is on one level, thanks to a specific form of horns, called “crab tongs”, which ensure, all safety.
  • the invention makes it possible to simplify, not only the anchor, which is now possible on one level, which allows the use of all imaginable manufacturing techniques, but also the balance, since the small plate is no longer necessary because of the disappearance of the sting of the anchor.
  • the invention relates to an anchor for a clockwork escapement mechanism comprising a rocker arm equipped with a peg of ankle radius given and oscillating according to a given radius of gyration, said anchor comprising, on the one hand, and other of an opening, a first horn and a second horn for cooperation with such an ankle, characterized in that said horns have a profile symmetrical to each other with respect to a median plane passing through a pivot axis anchor, and each comprise a concave intrados profile according to a first cylindrical sector bordering said opening and of first radius of curvature greater than or equal to the total of said radius of gyration and said ankle radius, said intrados profile being connected to a convex extrados profile in a second cylindrical sector of second radius of curvature less than or equal to the difference between said radius of gyration and said ankle radius and opposite said opening.
  • the invention also relates to a rocker equipped with a peg of ankle radius given and oscillating according to a given radius of gyration about a pivot axis of a rocker, characterized in that said rocker has a single plate bearing said peg.
  • the invention also relates to an escapement mechanism comprising a balance pivoting about a pivot axis of the balance wheel and equipped with an anchor of given radius according to a given radius of gyration, and such an anchor.
  • the invention also relates to a mechanical clockwork movement comprising at least one such escape mechanism.
  • the invention also relates to a watch comprising at least one such mechanical clockwork movement.
  • the invention relates to the field of watch exhaust mechanisms.
  • the invention improves safety design, combining the safety functions of the horns and the stinger of an anchor escapement.
  • the invention is more precisely described in the preferred and most common, but not limiting, case of the Swiss anchor.
  • the invention thus relates to an anchor 1, in particular a Swiss anchor, for a watchmaking escapement mechanism, which comprises a rocker 11 equipped with a pin 12 of given pin radius R0, this rocker 11 oscillating according to a radius given gyration RG.
  • the anchor 1 according to the invention is preferably designed for a given type of balance, as a function of these parameters of given ankle radius R0 and given radius of gyration RG.
  • the anchor 1 comprises, on either side of an opening 3, a first horn 2A and a second horn 2B for cooperation with such an anchor 12.
  • the dimensioning of the opening 3 depends on the cooperation with the pendulum 11, and also the lever arm L of the anchor head relative to an anchor pivot axis D.
  • the horns 2A, 2B each describe a circular path.
  • the first radius of curvature RC1 is equal to the total of the radius of gyration RG, the radius of ankle R0, and one horn step EC
  • the second radius of curvature RC2 is equal to the difference between on the one hand the radius of gyration RG and on the other hand the total of the radius of ankle R0 and this ecstasy of horn EC.
  • this horn freckle EC is less than or equal to 0.050 mm.
  • the intrados and extrados profiles 25 are thus arranged relative to each other so that a cylinder parallel to the anchor pivot axis D and radius equal to the radius of gyration RG is remote, with the horn fretting, the value of the radius of ankle R0, a profile resulting from the combination between, on the one hand, the extrados profile 25A, 25B, of one of the horns 2A, 2B, and on the other hand the lower surface profile 20B, 20A, on the other of the horns 2B, 2A, so that these lower profile 20 and extrados profile 25 are tangent to the trajectory 15 or 16 of an anchor 12 of such a rocker arm 11 whose axis of pivoting balance D1 is located in the median plane P in a symmetrical position of rest of the escape mechanism 10, visible on the figure 2 .
  • such a lower profile 20 prevents any overturning of the anchor 1 in the event of impact
  • such an extrados profile 25 prevents in turn any reversal of the anchor 1 in case of shock.
  • the figure 3 illustrates such an anchor 1, in a bearing position on a limit stop 13B of the escape mechanism 10, during a clockwise oscillation, the trajectory 15 of the pin 12 is shown in broken lines, and, in the same way, the figure 4 represents the same anchor 1, in a bearing position on a limit stop 13A of the exhaust mechanism 10, during a clockwise oscillation, the trajectory 16 of the pin 12 is shown in broken lines.
  • the anchor 1 comprises, at the ends of the extrados profiles 25A; 25B closest to the anchor pivot axis D, the end-of-travel zones 19A, 19B, which are arranged to constitute stop-stops for such an anchor 12.
  • the intrados 20 profile of each of the horns 2A, 2B is centered on the intrados profile of the opposite horn respectively 2B, 2A, at a center OB, OA, which is also the center of the profile of extrados 25 of the horn considered 2A, 2B.
  • the figure 6 illustrates a Swiss anchor 1 which comprises, around the horns 2A, 2B, an outer ring 17 of ankle stroke limitation, having a first inner limiting surface 17A facing the extrados profile 25A of the first horn 2A, and a second inner limiting surface 17B facing the extrados profile 25B of the second first horn 2B.
  • the gap between the outer ring 17 and the extrados profiles 17A, 17B is equal to twice the radius of ankle R0 plus a radial clearance J less than or equal to 0.100 mm.
  • the safety is further increased, especially during the occurrence of a shock when the ankle 12 leaves the distal end of one of the horns before joining the opposite horn.
  • the figure 7 illustrates a Swiss anchor 1, variant of that of the figure 6 , and which comprises, at each of the intrados profiles 20A, 20B, a notch 18A, 18B, which is dimensioned for the passage of a shaft 110 of such a rocker 11. These notches can also be made on other variants of anchors such as those of Figures 2 to 5 .
  • the anchor 1 according to the invention is flat and devoid of dart.
  • the invention also relates to a rocker arm 11 equipped with an anchor 12 of given ankle radius R0 and oscillating according to a given radius of gyration RG about a rocker pivot axis D1.
  • the rocker 11 comprises a single plate carrying the pin 12. This rocker 11 is suitable for cooperating with an anchor 1 as described above.
  • the sole plate carrying the ankle 12 is constituted by the serge of the balance 11.
  • the invention also relates to an escapement mechanism 10 comprising a rocker arm 11 pivoting about a rocker pivot axis D1 and equipped with an anchor 12 of given radius R0 according to a given radius of gyration RG, and such an anchor 1 according to the invention.
  • the rocker 11 comprises a single plate carrying the peg 12. More particularly, the single plate carrying the peg 12 is constituted by the serge of the rocker 11.
  • the figure 9 shows a variant where the limiting abutments 13A, 13B are formed by protrusions of a bridge 111 of the exhaust mechanism, and the overall number of components is greatly reduced in this advantageous variant of the invention.
  • the horns 2 can advantageously, as visible on the figure 5 , have recesses 29 and / or chambers, to reduce the inertia and unbalance of the anchor 1.
  • the invention also relates to a mechanical clockwork movement 30 comprising at least one such escape mechanism 10.
  • the invention also concerns a timepiece 40, in particular a watch, comprising at least one such mechanical clockwork movement 30.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Micromachines (AREA)
  • Apparatuses For Generation Of Mechanical Vibrations (AREA)
  • Vibration Dampers (AREA)
  • Transmission Devices (AREA)

Abstract

Ancre (1) pour mécanisme d'échappement (10) comportant un balancier (11) avec une cheville (12) de rayon de cheville donné (R0) et oscillant selon un rayon de giration donné (RG), ladite ancre (1) comportant deux cornes (2A ; 2B) pour la coopération avec une telle cheville (12). Lesdites cornes (2A ; 2B) sont symétriques entre elles par rapport à un plan médian (P) passant par un axe de pivotement d'ancre (D), et comportent chacune un profil d'intrados (20) concave selon un premier rayon de courbure (RC1) supérieur ou égal au total dudit rayon de giration (RG) et dudit rayon de cheville (R0), ledit profil d'intrados (20) connexe à un profil d'extrados (25) convexe selon un deuxième rayon de courbure (RC2) inférieur ou égal à la différence entre ledit rayon de giration (RG) et ledit rayon de cheville (R0).Anchor (1) for an escapement mechanism (10) comprising a rocker (11) with a peg (12) of given peg radius (R0) and oscillating with a given radius of gyration (RG), said anchor (1) comprising two horns (2A, 2B) for cooperation with such an ankle (12). Said horns (2A; 2B) are symmetrical with each other with respect to a median plane (P) passing through an anchor pivot axis (D), and each comprise a concave intrados (20) profile according to a first radius of curvature (RC1) greater than or equal to the total of said radius of gyration (RG) and said ankle radius (R0), said intrados profile (20) connected to an extrados profile (25) convex in a second radius of curvature (RC2) less than or equal to the difference between said radius of gyration (RG) and said ankle radius (R0).

Description

Domaine de l'inventionField of the invention

L'invention concerne une ancre pour un mécanisme d'échappement d'horlogerie comportant un balancier équipé d'une cheville de rayon donné et oscillant selon un rayon de giration donné, ladite ancre comportant, de part et d'autre d'une ouverture, une première corne et une deuxième corne pour la coopération avec une telle cheville.The invention relates to an anchor for a clockwork escapement mechanism comprising a rocker equipped with an anchor of given radius and oscillating according to a given radius of gyration, said anchor comprising, on either side of an opening, a first horn and a second horn for cooperation with such an ankle.

L'invention concerne encore un balancier équipé d'une cheville de rayon de cheville donné et oscillant selon un rayon de giration donné autour d'un axe de pivotement de balancierThe invention also relates to a rocker equipped with a peg of ankle radius given and oscillating according to a given radius of gyration about a pendulum pivot axis

L'invention concerne encore un mécanisme d'échappement comportant un balancier pivotant autour d'un axe de pivotement de balancier et équipé d'une cheville de rayon donné selon un rayon de giration donné, et une telle ancre.The invention also relates to an escapement mechanism comprising a balance pivoting about a pivot axis of the balance wheel and equipped with an anchor of given radius according to a given radius of gyration, and such an anchor.

L'invention concerne encore un mouvement mécanique d'horlogerie comportant au moins un tel mécanisme d'échappement.The invention also relates to a mechanical clockwork movement comprising at least one such escape mechanism.

L'invention concerne encore une montre comportant au moins un tel mouvement mécanique d'horlogerie.The invention also relates to a watch comprising at least one such mechanical clockwork movement.

L'invention concerne le domaine des mécanismes d'échappement d'horlogerie.The invention relates to the field of watch exhaust mechanisms.

Arrière-plan de l'inventionBackground of the invention

Dans une montre équipée d'un échappement, notamment à ancre suisse, les fonctions de l'échappement doivent être préservées quelques soient les chocs subis par la montre. L'échappement doit être robuste et en mesure de résister aux chocs axiaux et radiaux, et ceci dans toutes les positions de la montre. Pour cela, des éléments mécaniques, appelés sécurités de l'échappement, viennent limiter la course d'éléments en rotation ou en oscillation, afin d'éviter toute position critique qui pourrait, soit perturber la marche, soit arrêter la montre.In a watch equipped with an escapement, in particular with Swiss anchor, the functions of the escapement must be preserved whatever the shocks suffered by the watch. The exhaust must be robust and able to withstand axial and radial shocks in all positions of the watch. For that, mechanical elements, called safety of the escapement, come to limit the running of elements in rotation or in oscillation, in order to avoid any critical position which could, either to disrupt the march, or to stop the watch.

Particulièrement, dans un échappement à ancre suisse, ces sécurités sont assurées par au moins les cornes et le dard. Ce système a prouvé sa fiabilité et sa robustesse, mais nécessite toutefois un de composants distincts, qui augmente le coût de production et le risque de non-qualité. Le fait de répartir les cornes et le dard sur deux niveaux distincts nécessite un partagement suffisant, qui a un impact important sur la hauteur du mouvement, et donc sur l'épaisseur finale de la montre.Particularly, in a Swiss lever escapement, these securities are provided by at least the horns and the sting. This system has proven its reliability and robustness, but requires however a distinct component, which increases the cost of production and the risk of non-quality. Spreading the horns and the stinger on two separate levels requires sufficient sharing, which has a significant impact on the height of the movement, and therefore on the final thickness of the watch.

Résumé de l'inventionSummary of the invention

L'invention se propose d'améliorer la conception des sécurités, en combinant les fonctions de sécurité des cornes et du dard d'un échappement à ancre, qu'il s'agisse d'un échappement à ancre suisse, à ancre anglais, à chevilles, ou similaire.The invention proposes to improve the safety design, by combining the safety functions of the horns and the stinger of an anchor escapement, whether it is a Swiss lever escapement, English anchor, pegs, or the like.

L'invention optimise la conception des cornes, de façon à assurer les fonctions de sécurité jusqu'alors dévolues au dard, destiné à empêcher les déplacements accidentels de la fourchette d'ancre pendant l'arc d'oscillation supplémentaire du balancier. L'ancre selon l'invention est donc une ancre sans dard.The invention optimizes the design of the horns, so as to ensure the safety functions hitherto devolved to the sting, intended to prevent accidental movement of the anchor fork during the additional oscillation arc balance. The anchor according to the invention is an anchor without sting.

L'ancre selon l'invention est sur un seul niveau, grâce à une forme spécifique des cornes, dite « en pinces de crabe », qui assurent, seules, toutes les sécurités.The anchor according to the invention is on one level, thanks to a specific form of horns, called "crab tongs", which ensure, all safety.

L'invention permet de simplifier, non seulement l'ancre, désormais réalisable sur un seul niveau, ce qui autorise le recours à toutes les techniques de fabrication imaginables, mais aussi le balancier, puisque le petit plateau n'est plus nécessaire du fait de la disparition du dard de l'ancre.The invention makes it possible to simplify, not only the anchor, which is now possible on one level, which allows the use of all imaginable manufacturing techniques, but also the balance, since the small plate is no longer necessary because of the disappearance of the sting of the anchor.

A cet effet, l'invention concerne une ancre pour un mécanisme d'échappement d'horlogerie comportant un balancier équipé d'une cheville de rayon de cheville donné et oscillant selon un rayon de giration donné, ladite ancre comportant, de part et d'autre d'une ouverture, une première corne et une deuxième corne pour la coopération avec une telle cheville, caractérisée en ce que lesdites cornes ont un profil symétrique l'une de l'autre par rapport à un plan médian passant par un axe de pivotement d'ancre, et comportent chacune un profil d'intrados concave selon un premier secteur cylindrique bordant ladite ouverture et de premier rayon de courbure supérieur ou égal au total dudit rayon de giration et dudit rayon de cheville, ledit profil d'intrados étant connexe à un profil d'extrados convexe selon un deuxième secteur cylindrique de deuxième rayon de courbure inférieur ou égal à la différence entre ledit rayon de giration et ledit rayon de cheville et à l'opposé de ladite ouverture.To this end, the invention relates to an anchor for a clockwork escapement mechanism comprising a rocker arm equipped with a peg of ankle radius given and oscillating according to a given radius of gyration, said anchor comprising, on the one hand, and other of an opening, a first horn and a second horn for cooperation with such an ankle, characterized in that said horns have a profile symmetrical to each other with respect to a median plane passing through a pivot axis anchor, and each comprise a concave intrados profile according to a first cylindrical sector bordering said opening and of first radius of curvature greater than or equal to the total of said radius of gyration and said ankle radius, said intrados profile being connected to a convex extrados profile in a second cylindrical sector of second radius of curvature less than or equal to the difference between said radius of gyration and said ankle radius and opposite said opening.

L'invention concerne encore un balancier équipé d'une cheville de rayon de cheville donné et oscillant selon un rayon de giration donné autour d'un axe de pivotement de balancier, caractérisé en ce que ledit balancier comporte un plateau unique porteur de ladite cheville.The invention also relates to a rocker equipped with a peg of ankle radius given and oscillating according to a given radius of gyration about a pivot axis of a rocker, characterized in that said rocker has a single plate bearing said peg.

L'invention concerne encore un mécanisme d'échappement comportant un balancier pivotant autour d'un axe de pivotement de balancier et équipé d'une cheville de rayon donné selon un rayon de giration donné, et une telle ancre.The invention also relates to an escapement mechanism comprising a balance pivoting about a pivot axis of the balance wheel and equipped with an anchor of given radius according to a given radius of gyration, and such an anchor.

L'invention concerne encore un mouvement mécanique d'horlogerie comportant au moins un tel mécanisme d'échappement.The invention also relates to a mechanical clockwork movement comprising at least one such escape mechanism.

L'invention concerne encore une montre comportant au moins un tel mouvement mécanique d'horlogerie.The invention also relates to a watch comprising at least one such mechanical clockwork movement.

Description sommaire des dessinsBrief description of the drawings

D'autres caractéristiques et avantages de l'invention apparaîtront à la lecture de la description détaillée qui va suivre, en référence aux dessins annexés, où :

  • la figure 1 représente, de façon schématisée, partielle, et en section dans un plan passant par un axe de pivotement de balancier et un axe de pivotement d'ancre, un détail d'un mécanisme d'échappement selon l'invention, comportant une ancre sans dard, et un balancier sans petit plateau ;
  • la figure 2 représente, de façon schématisée, partielle et en plan, une extrémité d'une ancre sans dard à cornes optimisées selon l'invention, dans une position de repos en symétrie entre deux butées de renversement ;
  • la figure 3 représente, de façon analogue à la figure 3, la même ancre, dans une position d'appui sur butée lors d'une oscillation dans le sens horaire ;
  • la figure 4 représente, de façon analogue à la figure 3, la même ancre, dans une position d'appui sur butée lors d'une oscillation dans le sens anti-horaire ;
  • la figure 5 représente, de façon schématisée et en plan, une ancre suisse sans dard à cornes optimisées selon l'invention, dans une position d'appui sur butée lors d'une oscillation dans le sens anti-horaire ;
  • la figure 6 représente, de façon schématisée et en plan, une ancre suisse sans dard à cornes optimisées selon l'invention, et comportant un anneau externe de limitation de course de cheville, dans une position d'appui sur butée lors d'une oscillation dans le sens anti-horaire ;
  • la figure 7 représente, de façon schématisée et en plan, une ancre suisse sans dard à cornes optimisées selon l'invention, et comportant un anneau externe de limitation de course de cheville, et comportant encore des encoches dimensionnées pour le passage de l'arbre d'un balancier, dans une position d'appui sur butée lors d'une oscillation dans le sens anti-horaire ;
  • la figure 8 représente, de façon schématisée, partielle, et en section dans un plan passant par un axe de pivotement de balancier et un axe de pivotement d'ancre, un détail d'un mécanisme d'échappement selon l'invention, comportant une ancre sans dard, et un balancier sans petit plateau ;
  • la figure 9 représente, de façon schématisée, partielle, et en vue en paln, le mécanisme de la figure 8 ;
  • la figure 10 représente, sous forme d'un schéma-blocs, une montre comportant un mouvement comportant un mécanisme d'échappement selon l'invention.
Other features and advantages of the invention will appear on reading the detailed description which follows, with reference to the appended drawings, in which:
  • the figure 1 represents, schematically, partially, and in section in a plane passing through a rocker pivot axis and an anchor pivot axis, a detail of an escapement mechanism according to the invention, comprising an anchor without stinger , and a pendulum without a small plate;
  • the figure 2 represents, schematically, partially and in plan, an end of an anchor without stinger optimized horns according to the invention, in a position of rest in symmetry between two overturning stops;
  • the figure 3 represents, in a similar way to figure 3 , the same anchor, in a position of support on abutment during a oscillation in the clockwise direction;
  • the figure 4 represents, in a similar way to figure 3 , the same anchor, in a position of support on abutment during a swing in the counterclockwise direction;
  • the figure 5 schematically shows in plan a Swiss leverless anchor with optimized horns according to the invention, in a position of abutment support during a swing in the counterclockwise direction;
  • the figure 6 schematically shows in plan view a Swiss leverless anchor with horns optimized according to the invention, and comprising an external ankle stroke limitation ring, in a bearing abutment position during an oscillation in the direction anti-clockwise;
  • the figure 7 schematically shows in plan a Swiss leverless anchor with horns optimized according to the invention, and comprising an external ankle stroke limiting ring, and further comprising notches sized for the passage of the shaft of a pendulum, in a position of support on abutment during a swing in the counterclockwise direction;
  • the figure 8 represents, schematically, partially, and in section in a plane passing through a rocker pivot axis and an anchor pivot axis, a detail of an escapement mechanism according to the invention, comprising an anchor without stinger , and a pendulum without a small plate;
  • the figure 9 represents, schematically, partially, and in paln view, the mechanism of the figure 8 ;
  • the figure 10 represents, in the form of a block diagram, a watch comprising a movement comprising an escape mechanism according to the invention.

Description détaillée des modes de réalisation préférésDetailed Description of the Preferred Embodiments

L'invention concerne le domaine des mécanismes d'échappement d'horlogerie.The invention relates to the field of watch exhaust mechanisms.

L'invention améliore la conception des sécurités, en combinant les fonctions de sécurité des cornes et du dard d'un échappement à ancre. L'invention est plus précisément décrite dans le cas préféré et le plus usuel, mais non limitatif, de l'ancre suisse.The invention improves safety design, combining the safety functions of the horns and the stinger of an anchor escapement. The invention is more precisely described in the preferred and most common, but not limiting, case of the Swiss anchor.

L'invention concerne ainsi une ancre 1, notamment une ancre suisse, pour un mécanisme d'échappement 10 d'horlogerie, lequel comporte un balancier 11 équipé d'une cheville 12 de rayon de cheville donné R0, ce balancier 11 oscillant selon un rayon de giration donné RG.The invention thus relates to an anchor 1, in particular a Swiss anchor, for a watchmaking escapement mechanism, which comprises a rocker 11 equipped with a pin 12 of given pin radius R0, this rocker 11 oscillating according to a radius given gyration RG.

L'ancre 1 selon l'invention est de préférence conçue pour un type de balancier donné, en fonction de ces paramètres de rayon de cheville donné R0 et de rayon de giration donné RG.The anchor 1 according to the invention is preferably designed for a given type of balance, as a function of these parameters of given ankle radius R0 and given radius of gyration RG.

L'ancre 1 comporte, de part et d'autre d'une ouverture 3, une première corne 2A et une deuxième corne 2B pour la coopération avec une telle cheville 12. Le dimensionnement de l'ouverture 3 dépend de la coopération avec le balancier 11, et aussi du bras de levier L de la tête d'ancre par rapport à un axe de pivotement d'ancre D.The anchor 1 comprises, on either side of an opening 3, a first horn 2A and a second horn 2B for cooperation with such an anchor 12. The dimensioning of the opening 3 depends on the cooperation with the pendulum 11, and also the lever arm L of the anchor head relative to an anchor pivot axis D.

Lors du pivotement de l'ancre 1 autour de cet axe de pivotement d'ancre D, les cornes 2A, 2B, décrivent chacune une trajectoire circulaire.During the pivoting of the anchor 1 around this anchor pivot axis D, the horns 2A, 2B, each describe a circular path.

Selon l'invention, et tel que visible sur la figure 2, la première corne 2A et la deuxième corne 2B ont un profil symétrique l'une de l'autre par rapport à un plan médian P passant par l'axe de pivotement d'ancre D. La première corne 2A et la deuxième corne 2B comportent chacune :

  • un profil d'intrados 20 concave selon un premier secteur cylindrique 21 bordant l'ouverture 3 et de premier rayon de courbure RC1. Ce premier rayon de courbure R1 est supérieur ou égal au total du rayon de giration RG et du rayon de cheville R0 ;
  • ce profil d'intrados 20 étant connexe à un profil d'extrados 25 convexe selon un deuxième secteur cylindrique 26 de deuxième rayon de courbure RC2. Ce deuxième rayon de courbure R2 est inférieur ou égal à la différence entre le rayon de giration RG et le rayon de cheville R0 ; ce deuxième secteur cylindrique 26 est situé à l'opposé de l'ouverture 3.
According to the invention, and as visible on the figure 2 , the first horn 2A and the second horn 2B have a profile symmetrical to each other with respect to a median plane P passing through the anchor pivot axis D. The first horn 2A and the second horn 2B comprise each:
  • a concave intrados 20 profile according to a first cylindrical sector 21 bordering the opening 3 and first radius of curvature RC1. This first radius of curvature R1 is greater than or equal to the total of the radius of gyration RG and the radius of ankle R0;
  • this lower profile 20 being connected to a convex extrados profile in a second cylindrical sector 26 of second radius of curvature RC2. This second radius of curvature R2 is less than or equal to the difference between the radius of gyration RG and the ankle radius R0; this second cylindrical sector 26 is situated opposite the opening 3.

Dans une réalisation particulière, le premier rayon de courbure RC1 est égal au total du rayon de giration RG, du rayon de cheville R0, et d'un ébat de corne EC, et le deuxième rayon de courbure RC2 est égal à la différence entre d'une part le rayon de giration RG et d'autre part le total du rayon de cheville R0 et de cet ébat de corne EC. De préférence, cet ébat de corne EC est inférieur ou égal à 0,050 mm.In a particular embodiment, the first radius of curvature RC1 is equal to the total of the radius of gyration RG, the radius of ankle R0, and one horn step EC, and the second radius of curvature RC2 is equal to the difference between on the one hand the radius of gyration RG and on the other hand the total of the radius of ankle R0 and this ecstasy of horn EC. Preferably, this horn freckle EC is less than or equal to 0.050 mm.

Les profils d'intrados 20 et d'extrados 25 sont ainsi agencés l'un par rapport à l'autre de façon à ce qu'un cylindre parallèle à l'axe de pivotement d'ancre D et de rayon égal au rayon de giration RG soit distant, à l'ébat de corne près, de la valeur du rayon de cheville R0, d'un profil résultant de la combinaison entre, d'une part le profil d'extrados 25A, 25B, de l'une des cornes 2A, 2B, et d'autre part le profil d'intrados 20B, 20A, de l'autre des cornes 2B, 2A, de façon à ce que ces profil d'intrados 20 et profil d'extrados 25 soient tangents à la trajectoire 15 ou 16 d'une cheville 12 d'un tel balancier 11 dont l'axe de pivotement de balancier D1 est situé dans le plan médian P dans une position symétrique de repos du mécanisme d'échappement 10, visible sur la figure 2.The intrados and extrados profiles 25 are thus arranged relative to each other so that a cylinder parallel to the anchor pivot axis D and radius equal to the radius of gyration RG is remote, with the horn fretting, the value of the radius of ankle R0, a profile resulting from the combination between, on the one hand, the extrados profile 25A, 25B, of one of the horns 2A, 2B, and on the other hand the lower surface profile 20B, 20A, on the other of the horns 2B, 2A, so that these lower profile 20 and extrados profile 25 are tangent to the trajectory 15 or 16 of an anchor 12 of such a rocker arm 11 whose axis of pivoting balance D1 is located in the median plane P in a symmetrical position of rest of the escape mechanism 10, visible on the figure 2 .

Ainsi, dans un première partie de l'oscillation du balancier 11 un tel profil d'intrados 20 prévient tout renversement de l'ancre 1 en cas de choc, et, dans une deuxième partie de l'oscillation du balancier 11 correspondant au reste de son oscillation un tel profil d'extrados 25 prévient à son tour tout renversement de l'ancre 1 en cas de choc.Thus, in a first part of the oscillation of the rocker 11, such a lower profile 20 prevents any overturning of the anchor 1 in the event of impact, and, in a second part of the oscillation of the balance 11 corresponding to the remainder of the its oscillation such an extrados profile 25 prevents in turn any reversal of the anchor 1 in case of shock.

La figure 3 illustre une telle ancre 1, dans une position d'appui sur une butée de limitation 13B du mécanisme d'échappement 10, lors d'une oscillation dans le sens horaire, la trajectoire 15 de la cheville 12 est représentée en trait interrompu, et, de la même façon, la figure 4 représente la même ancre 1, dans une position d'appui sur une butée de limitation 13A du mécanisme d'échappement 10, lors d'une oscillation dans le sens horaire, la trajectoire 16 de la cheville 12 est représentée en trait interrompu.The figure 3 illustrates such an anchor 1, in a bearing position on a limit stop 13B of the escape mechanism 10, during a clockwise oscillation, the trajectory 15 of the pin 12 is shown in broken lines, and, in the same way, the figure 4 represents the same anchor 1, in a bearing position on a limit stop 13A of the exhaust mechanism 10, during a clockwise oscillation, the trajectory 16 of the pin 12 is shown in broken lines.

De préférence, l'ancre 1 comporte, aux extrémités des profils d'extrados 25A ; 25B les plus proches de l'axe de pivotement d'ancre D, des zones de fin de course 19A, 19B, qui sont agencées pour constituer des butées d'arrêt d'un telle cheville 12.Preferably, the anchor 1 comprises, at the ends of the extrados profiles 25A; 25B closest to the anchor pivot axis D, the end-of-travel zones 19A, 19B, which are arranged to constitute stop-stops for such an anchor 12.

Dans une réalisation préférée, tel que visible sur les figures 2 à 4, le profil d'intrados 20 de chacune des cornes 2A, 2B, est centré sur le profil d'intrados de la corne opposée respectivement 2B, 2A, au niveau d'un centre OB, OA, qui est aussi le centre du profil d'extrados 25 de la corne considérée 2A, 2B.In a preferred embodiment, as visible on the Figures 2 to 4 , the intrados 20 profile of each of the horns 2A, 2B, is centered on the intrados profile of the opposite horn respectively 2B, 2A, at a center OB, OA, which is also the center of the profile of extrados 25 of the horn considered 2A, 2B.

La figure 6 illustre une ancre suisse 1 qui comporte, autour des cornes 2A, 2B, un anneau externe 17 de limitation de course de cheville, comportant une première surface intérieure de limitation 17A faisant face au profil d'extrados 25A de la première corne 2A, et une deuxième surface intérieure de limitation 17B faisant face au profil d'extrados 25B de la deuxième première corne 2B. Dans une réalisation particulière de cette variante, l'écart entre l'anneau externe 17 et les profils d'extrados 17A, 17B, est égal au double du rayon de cheville R0 majoré d'un jeu radial J inférieur ou égal à 0,100 mm. Dans cette variante, la sécurité est encore augmentée, notamment lors de la survenance d'un choc lorsque la cheville 12 quitte l'extrémité distale d'une des cornes avant de rejoindre la corne opposée.The figure 6 illustrates a Swiss anchor 1 which comprises, around the horns 2A, 2B, an outer ring 17 of ankle stroke limitation, having a first inner limiting surface 17A facing the extrados profile 25A of the first horn 2A, and a second inner limiting surface 17B facing the extrados profile 25B of the second first horn 2B. In a particular embodiment of this variant, the gap between the outer ring 17 and the extrados profiles 17A, 17B, is equal to twice the radius of ankle R0 plus a radial clearance J less than or equal to 0.100 mm. In this variant, the safety is further increased, especially during the occurrence of a shock when the ankle 12 leaves the distal end of one of the horns before joining the opposite horn.

La figure 7 illustre une ancre suisse 1, variante de celle de la figure 6, et qui comporte, au niveau de chacun des profils d'intrados 20A, 20B, une encoche 18A ,18B, qui est dimensionnée pour le passage d'un arbre 110 d'un tel balancier 11. Ces encoches peuvent aussi être réalisées sur d'autres variantes d'ancres telles celles des figures 2 à 5.The figure 7 illustrates a Swiss anchor 1, variant of that of the figure 6 , and which comprises, at each of the intrados profiles 20A, 20B, a notch 18A, 18B, which is dimensioned for the passage of a shaft 110 of such a rocker 11. These notches can also be made on other variants of anchors such as those of Figures 2 to 5 .

De préférence, dans ses différentes exécutions, l'ancre 1 selon l'invention est plate et dépourvue de dard.Preferably, in its various embodiments, the anchor 1 according to the invention is flat and devoid of dart.

L'invention concerne encore un balancier 11 équipé d'une cheville 12 de rayon de cheville donné R0 et oscillant selon un rayon de giration donné RG autour d'un axe de pivotement de balancier D1. Selon l'invention le balancier 11 comporte un plateau unique porteur de la cheville 12. Ce balancier 11 est approprié pour coopérer avec une ancre 1 telle que décrite ci-dessus.The invention also relates to a rocker arm 11 equipped with an anchor 12 of given ankle radius R0 and oscillating according to a given radius of gyration RG about a rocker pivot axis D1. According to the invention the rocker 11 comprises a single plate carrying the pin 12. This rocker 11 is suitable for cooperating with an anchor 1 as described above.

Dans une réalisation particulière, le plateau unique porteur de la cheville 12 est constitué par la serge du balancier 11.In a particular embodiment, the sole plate carrying the ankle 12 is constituted by the serge of the balance 11.

L'invention concerne encore un mécanisme d'échappement 10 comportant un balancier 11 pivotant autour d'un axe de pivotement de balancier D1 et équipé d'une cheville 12 de rayon donné R0 selon un rayon de giration donné RG, et une telle ancre 1 selon l'invention.The invention also relates to an escapement mechanism 10 comprising a rocker arm 11 pivoting about a rocker pivot axis D1 and equipped with an anchor 12 of given radius R0 according to a given radius of gyration RG, and such an anchor 1 according to the invention.

Avantageusement le balancier 11 comporte un plateau unique porteur de la cheville 12. Plus particulièrement, le plateau unique porteur de la cheville 12 est constitué par la serge du balancier 11.Advantageously, the rocker 11 comprises a single plate carrying the peg 12. More particularly, the single plate carrying the peg 12 is constituted by the serge of the rocker 11.

La figure 9 montre une variante où les butées de limitation 13A, 13B, sont réalisées par des excroissances d'un pont 111 du mécanisme d'échappement, ainsi le nombre global de composants est fortement réduit dans cette variante avantageuse de l'invention.The figure 9 shows a variant where the limiting abutments 13A, 13B are formed by protrusions of a bridge 111 of the exhaust mechanism, and the overall number of components is greatly reduced in this advantageous variant of the invention.

Les cornes 2 peuvent avantageusement, tel que visible sur la figure 5, comporter des évidements 29 ou/et des chambres, pour réduire l'inertie et le balourd de l'ancre 1.The horns 2 can advantageously, as visible on the figure 5 , have recesses 29 and / or chambers, to reduce the inertia and unbalance of the anchor 1.

L'invention concerne encore un mouvement mécanique d'horlogerie 30 comportant au moins un tel mécanisme d'échappement 10.The invention also relates to a mechanical clockwork movement 30 comprising at least one such escape mechanism 10.

L'invention concerne encore une pièce d'horlogerie 40, notamment une montre, comportant au moins un tel mouvement mécanique d'horlogerie 30.The invention also concerns a timepiece 40, in particular a watch, comprising at least one such mechanical clockwork movement 30.

L'invention présente de nombreux avantages :

  • la suppression du dard d'ancre traditionnel ;
  • la suppression du petit plateau de balancier correspondant à ce dard ;
  • la diminution des risques et coûts de non-qualité, grâce à la suppression d'un assemblage
  • la réduction de l'encombrement en hauteur du mécanisme d'échappement (un seul niveau d'ancre au lieu de deux, un seul niveau de balancier au lieu de deux voire trois), et donc du mouvement complet ;
  • la liberté de géométrie de forme autorisant une fabrication de l'ancre par étampage, ou par fabrication de type DRIE -Silicium/Ni- « LIGA » ou similaire, ou par injection plastique ;
  • la possibilité de chasser la cheville de balancier directement dans un bras de la serge du balancier, l'assemblage d'un plateau n'étant alors plus nécessaire ;
  • les sécurités sont parfaitement assurées dans toutes les positions ;
  • l'invention est applicable à tout type d'échappement à ancre, notamment à ancre suisse.
The invention has many advantages:
  • removal of the traditional anchor stinger;
  • the removal of the small balance plate corresponding to this sting;
  • reducing the risks and costs of non-quality, thanks to the removal of an assembly
  • the reduction in the height of the escapement mechanism (only one level of anchor instead of two, a single level of balance instead of two or three), and therefore the complete movement;
  • freedom of shape geometry authorizing manufacture of the anchor by stamping, or by DRIE -Silicon / Ni- "LIGA" type manufacturing or similar, or by plastic injection;
  • the possibility of driving the balance peg directly into an arm of the balance rod serge, the assembly of a tray being then no longer necessary;
  • the securities are perfectly insured in all positions;
  • the invention is applicable to any type of escapement anchor, including Swiss anchor.

Claims (17)

Ancre (1) pour un mécanisme d'échappement (10) d'horlogerie comportant un balancier (11) équipé d'une cheville (12) de rayon de cheville donné (R0) et oscillant selon un rayon de giration donné (RG), ladite ancre (1) comportant, de part et d'autre d'une ouverture (3), une première corne (2A) et une deuxième corne (2B) pour la coopération avec une telle cheville (12) , caractérisée en ce que lesdites première et deuxième cornes (2A ; 2B) ont un profil symétrique l'une de l'autre par rapport à un plan médian (P) passant par un axe de pivotement d'ancre (D), et comportent chacune un profil d'intrados (20) concave selon un premier secteur cylindrique (21) bordant ladite ouverture (3) et de premier rayon de courbure (RC1) supérieur ou égal au total dudit rayon de giration (RG) et dudit rayon de cheville (R0), ledit profil d'intrados (20) étant connexe à un profil d'extrados (25) convexe selon un deuxième secteur cylindrique (26) de deuxième rayon de courbure (RC2) inférieur ou égal à la différence entre ledit rayon de giration (RG) et ledit rayon de cheville (R0) et à l'opposé de ladite ouverture (3).Anchor (1) for a clockwork escapement mechanism (10) comprising a rocker arm (11) equipped with a pin (12) of given ankle radius (R0) and oscillating according to a given radius of gyration (RG), said anchor (1) having, on either side of an opening (3), a first horn (2A) and a second horn (2B) for cooperation with such an ankle (12), characterized in that said first and second horns (2A; 2B) have a profile symmetrical to each other with respect to a median plane (P) passing through an anchor pivot axis (D), and each comprise a lower profile; (20) concave according to a first cylindrical sector (21) bordering said opening (3) and of first radius of curvature (RC1) greater than or equal to the total of said radius of gyration (RG) and of said ankle radius (R0), said profile lower surface (20) being connected to a convex extrados profile (25) in a second cylindrical sector (26) of second inferior radius of curvature (RC2) than or equal to the difference between said radius of gyration (RG) and said ankle radius (R0) and opposite said opening (3). Ancre (1) selon la revendication 1, caractérisée en ce que ledit premier rayon de courbure (RC1) est égal au total dudit rayon de giration (RG), dudit rayon de cheville (R0), et d'un ébat de corne (EC), et en ce que ledit deuxième rayon de courbure (RC2) est égal à la différence entre d'une part ledit rayon de giration (RG) et d'autre part le total dudit rayon de cheville (R0) et dudit ébat de corne (EC).Anchor (1) according to claim 1, characterized in that said first radius of curvature (RC1) is equal to the total of said radius of gyration (RG), said radius of ankle (R0), and a horn frost (EC) ), and in that said second radius of curvature (RC2) is equal to the difference between, on the one hand, said radius of gyration (RG) and, on the other hand, the total of said ankle radius (R0) and said horn frol (EC). Ancre (1) selon la revendication 2, caractérisée en ce que ledit ébat de corne (EC) est inférieur ou égal à 0,050 mm.Anchor (1) according to claim 2, characterized in that said horn frog (EC) is less than or equal to 0.050 mm. Ancre (1) selon l'une des revendications précédentes, caractérisée en ce que ledit profil d'intrados (20) de chacune desdites cornes (2A ; 2B) est centré sur ledit profil d'intrados de la corne opposée (2B ; 2A) au niveau d'un centre (OB ; OA) qui est aussi celui dudit profil d'extrados (25) de ladite corne considérée (2A ; 2B).Anchor (1) according to one of the preceding claims, characterized in that said pressure profile (20) of each of said horns (2A; 2B) is centered on said intrados profile of the opposite horn (2B; 2A) at a center (OB; OA) which is also that of said extrados profile (25) of said horn considered (2A; 2B). Ancre (1) selon l'une des revendications précédentes, caractérisée en ce qu'elle comporte, autour desdites cornes (2A ; 2B), un anneau externe (17) de limitation de course de cheville, comportant une première surface intérieure de limitation (17A) faisant face audit profil d'extrados (25A) de ladite première corne (2A), et une deuxième surface intérieure de limitation (17B) faisant face audit profil d'extrados (25B) de ladite deuxième première corne (2B).Anchor (1) according to one of the preceding claims, characterized in that it comprises, around said horns (2A; 2B), an outer ring (17) for ankle stroke limitation, comprising a first inner limiting surface ( 17A) facing said extrados profile (25A) of said first horn (2A), and a second inner limiting surface (17B) facing said extrados profile (25B) of said second first horn (2B). Ancre (1) selon la revendication précédente, caractérisée en ce que l'écart entre ledit anneau externe (17) et lesdits profils d'extrados (17A ; 17B) est égal au double dudit rayon de cheville (R0) majoré d'un jeu radial (J) inférieur ou égal à 0,100 mm.Anchor (1) according to the preceding claim, characterized in that the distance between said outer ring (17) and said extrados profiles (17A; 17B) is equal to twice said ankle radius (R0) plus one set radial (J) less than or equal to 0.100 mm. Ancre (1) selon l'une des revendications précédentes, caractérisée en ce qu'elle comporte, au niveau de chacun desdits profils d'intrados (20A ; 20B), une encoche (18A ; 18B) dimensionnée pour le passage d'un arbre (19) d'un dit balancier (11).Anchor (1) according to one of the preceding claims, characterized in that it comprises, at each of said lower surface profiles (20A; 20B), a notch (18A; 18B) sized for the passage of a shaft (19) of a said pendulum (11). Ancre (1) selon l'une des revendications précédentes, caractérisée en ce qu'elle comporte, aux extrémités desdits profils d'extrados (25A ; 25B) les plus proches dudit axe de pivotement d'ancre (D), des zones de fin de course (19A ; 19B) agencées pour constituer des butées d'arrêt d'un dite cheville (12).Anchor (1) according to one of the preceding claims, characterized in that it comprises, at the ends of said extrados profiles (25A; 25B) closest to said anchor pivot axis (D), end zones. stroke (19A; 19B) arranged to constitute stops for stopping a said peg (12). Ancre (1) selon l'une des revendications précédentes, caractérisée en ce qu'elle est une ancre suisse.Anchor (1) according to one of the preceding claims, characterized in that it is a Swiss anchor. Ancre (1) selon l'une des revendications précédentes, caractérisée en ce qu'elle est plate et dépourvue de dard.Anchor (1) according to one of the preceding claims, characterized in that it is flat and devoid of stinger. Balancier (11) équipé d'une cheville (12) de rayon de cheville donné (R0) et oscillant selon un rayon de giration donné (RG) autour d'un axe de pivotement de balancier (D1), caractérisé en ce que ledit balancier (11) comporte un plateau unique porteur de ladite cheville (12).Pendulum (11) equipped with a peg (12) of given peg radius (R0) and oscillating according to a given radius of gyration (RG) about a pendulum pivot axis (D1), characterized in that said pendulum (11) comprises a single plate carrying said pin (12). Balancier (11) selon la revendication précédente, caractérisé en ce que ledit plateau unique porteur de ladite cheville (12) est constitué par la serge dudit balancier (11).Pendulum (11) according to the preceding claim, characterized in that said single plate bearing said pin (12) is constituted by the serge said balance (11). Mécanisme d'échappement (10) comportant un balancier (11) équipé d'une cheville (12) de rayon de cheville donné (R0) et oscillant selon un rayon de giration donné (RG) autour d'un axe de pivotement de balancier (D1), caractérisé en ce que ladite cheville (12) coopère avec une ancre (1) selon l'une des revendications 1 à 10.Exhaust mechanism (10) comprising a rocker (11) equipped with a peg (12) of given peg radius (R0) and oscillating according to a given radius of gyration (RG) around a rocking pivot axis ( D1), characterized in that said pin (12) cooperates with an anchor (1) according to one of claims 1 to 10. Mécanisme d'échappement (10) selon la revendication précédente, caractérisé en ce que ledit balancier (11) comporte un plateau unique porteur de ladite cheville (12).Exhaust mechanism (10) according to the preceding claim, characterized in that said rocker (11) comprises a single plate bearing said pin (12). Mécanisme d'échappement (10) selon la revendication précédente, caractérisé en ce que ledit plateau unique porteur de ladite cheville (12) est constitué par la serge dudit balancier (11).Exhaust mechanism (10) according to the preceding claim, characterized in that said single plate bearing said pin (12) is constituted by the serge said balance (11). Mouvement mécanique d'horlogerie (30) comportant au moins un dit mécanisme d'échappement (10) selon l'une des revendications 13 à 15.Mechanical clockwork movement (30) comprising at least one said exhaust mechanism (10) according to one of claims 13 to 15. Montre (40) comportant au moins un tel mouvement mécanique d'horlogerie (30) selon la revendication précédente.Watch (40) comprising at least one such mechanical clockwork movement (30) according to the preceding claim.
EP13191770.0A 2013-11-06 2013-11-06 Timepiece pallet with optimised horns Active EP2871535B1 (en)

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EP13191770.0A EP2871535B1 (en) 2013-11-06 2013-11-06 Timepiece pallet with optimised horns
US14/514,549 US9075395B2 (en) 2013-11-06 2014-10-15 Timepiece pallet lever with optimised horns
JP2014222321A JP5941119B2 (en) 2013-11-06 2014-10-31 Watch ankle lever with optimized squares
CN201420679902.8U CN204270013U (en) 2013-11-06 2014-11-06 Escapement bar, escapement, escapement, movement of mechanical clock and clock and watch
CN201410643378.3A CN104635468B (en) 2013-11-06 2014-11-06 Clock and watch escapement bar with optimal corner
HK15110067.0A HK1209499A1 (en) 2013-11-06 2015-10-14 Timepiece pallet lever with optimised horns

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US11846913B2 (en) 2018-04-17 2023-12-19 François Besse Escapement mechanism with locking anchor and timepiece provided with such an escapement mechanism

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EP2871535B1 (en) * 2013-11-06 2017-06-28 ETA SA Manufacture Horlogère Suisse Timepiece pallet with optimised horns
EP2947522B1 (en) 2014-05-20 2017-05-03 Société anonyme de la Manufacture d'Horlogerie Audemars Piguet & Cie Timepiece pallet for mechanical oscillator and timer-controlled timepiece trigger mechanism
WO2019219679A1 (en) * 2018-05-16 2019-11-21 Dominique Renaud Sa Escapement mechanism for timepiece
US11740589B2 (en) * 2018-07-19 2023-08-29 Werner Janer Multi-cam, continuous-drive escapement mechanism

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Also Published As

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CN104635468B (en) 2017-10-27
US9075395B2 (en) 2015-07-07
HK1209499A1 (en) 2016-04-01
CN204270013U (en) 2015-04-15
JP5941119B2 (en) 2016-06-29
JP2015090366A (en) 2015-05-11
CN104635468A (en) 2015-05-20
EP2871535B1 (en) 2017-06-28
US20150124570A1 (en) 2015-05-07

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