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EP2613206A1 - Hairspring with two spiral springs with improved isochronism - Google Patents

Hairspring with two spiral springs with improved isochronism Download PDF

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Publication number
EP2613206A1
EP2613206A1 EP12194292.4A EP12194292A EP2613206A1 EP 2613206 A1 EP2613206 A1 EP 2613206A1 EP 12194292 A EP12194292 A EP 12194292A EP 2613206 A1 EP2613206 A1 EP 2613206A1
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EP
European Patent Office
Prior art keywords
spiral
spring
spiral spring
fastener
counterweights
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Granted
Application number
EP12194292.4A
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German (de)
French (fr)
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EP2613206B1 (en
Inventor
Jean-Luc Helfer
Kaspar Trümpy
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Montres Breguet SA
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Montres Breguet SA
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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
    • G04B17/00Mechanisms for stabilising frequency
    • G04B17/04Oscillators acting by spring tension
    • G04B17/06Oscillators with hairsprings, e.g. balance
    • G04B17/063Balance construction
    • 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
    • G04B17/00Mechanisms for stabilising frequency
    • G04B17/04Oscillators acting by spring tension
    • G04B17/06Oscillators with hairsprings, e.g. balance
    • G04B17/066Manufacture of the spiral spring

Definitions

  • the invention relates to a hairspring used to form a pendulum - balance resonator whose curvature allows a substantially immobile center of mass development.
  • EP 2 184 652 , EP 2 196 867 and EP 2,105,807 explain how to manufacture curved spirals in micro-machinable materials respectively with three parts, two parts or integrally. These documents are incorporated by reference into the present description.
  • the object of the present invention is to overcome all or part of the disadvantages mentioned above by proposing a hairspring respecting predetermined conditions capable of reducing the displacement of the center of mass of the hairspring in contraction and expansion.
  • a hairspring can be manufactured respecting predetermined conditions in order to reduce the displacement of the center of mass of the hairspring in contraction and expansion.
  • This slight or negligible displacement advantageously makes it possible to reduce the belly of the anisochronism curves to a value that is substantially equal to or less than 0.5 sj -1 .
  • the spiral anisochronism slope can be customized to compensate for that given by the exhaust delay.
  • the invention relates to a resonator for a timepiece comprising a balance characterized in that the rocker cooperates with a hairspring according to one of the previous variants.
  • the hairspring is generally adapted so that its variation as a function of the same amplitude is substantially opposite that of the exhaust.
  • the spiral is adapted so that its variation is minimal between the four vertical positions.
  • a hairspring 1 comprising a first hairspring 3 whose curve extends in a first plane, a second hairspring 5 whose curve extends in a second plane parallel to the foreground .
  • Each end of spiral spring 3, 5 is preferably secured by a fastener 4 to form a double spiral series.
  • the curve of the first spiral spring 3 and the curve of the second spiral spring 5 preferably comprise, each step, a continuously variable pitch and are symmetrical with respect to a line A parallel to the first and second passing planes. by the center of the median plane P of projection of the fastener 4 and the center of the axis of the balance.
  • the end 6 of the spiral spring 3 is connected to a ferrule 10 in one piece and the end 7 of the spiral spring 5, which is opposite the fastener 4, is arranged to cooperate with a stud (not shown ).
  • the main faces 11, 12 of the fastener 4 are substantially parallel to the line of symmetry A.
  • each spiral spring 3, 5 preferably comprises at least two counterweights 8-9, 8'-9 'which are symmetrical along the same line A as the bends in order to compensate for the unbalance formed by the mass of the fastener 4 and customize the anisochronism slope of the hairspring 1.
  • the masses of the counterweights 8, 8 'and 9, 9' are substantially equal and their sum is greater or lesser than that of the fastener 4 according to the difference distance between, on the one hand, the fastener 4 and the balance shaft, and, on the other hand, the counterweights 8, 8 ', 9, 9' and said balance shaft.
  • each counterweight 8, 8 ', 9, 9' is substantially H-shaped, the parallel arms of the H being substantially parallel to the local curvature of the spiral spring 3, 5 with which it is associated.
  • these shapes in H provide a local extra thickness of each spiral spring 3, 5 which locally increases their stiffness.
  • the stiffnesses and / or the masses brought locally by the counterweights 8, 8 ', 9, 9' and the fastener 4 are used to modify the anisochronism slope of the hairspring 1.
  • a simulation of the belly and the slope of anisochronism of the spiral 1 according to the invention was carried out by varying the length of the fastener 4 or the counterweights 8, 8 ', 9, 9' along the spiral 1: Tie 4 Counterweight 9,9 ' Counterweight 8, 8 ' Slope Belly [Mm] [Mm] [Mm] [S / d / 100 °] [S / d] 0.22 0.1 0.1 -8.54 0.26 0.1 0.1 0.1 -7.51 0.35 0.22 0.04 0.22 -12.97 1.14 0.22 0.22 0.04 -7.88 0.54 0.22 0.44 0.22 -5.49 0.22 0.22 0.33 0.22 -5.05 0.29 0.22 0.33 0.25 -4.3 0.49
  • the length represents the length of the portion of the hairspring 1 which is stiffened by the fastener 4 or the counterweight 8, 8 ', 9, 9'.
  • the mass of the fastener 4 and therefore the counterweights 8, 8 ', 9, 9' can also be modified to adapt the slope of anisochronism: Tie 4 Counterweight 9, 9 ' Counterweight 8, 8 ' Tie 4 Slope Belly [Mm] [Mm] [Mm] [mm 3 ] [S / d / 100 °] [S / d] 0.22 0.1 0.1 0.016 -8.54 0.26 0.22 0.1 0.1 0,008 -5.58 0.56 0.22 0.1 0.1 0,002 -4.58 0.53
  • the anisochronism slope of the hairspring 1 can be customized to compensate for that given by the exhaust delay.
  • the present invention is not limited to the illustrated example but is susceptible of various variations and modifications that will occur to those skilled in the art.
  • other framing criteria may be provided such as a limitation of the ratio between the inner radius and the outer radius so that the ends of the spiral springs are not too close to the point of origin where must be present the balance shaft.
  • the inner coil 7 of the second spiral spring 5 comprises, preferably, a shifter 13 arranged to attach to a peg (not shown) in the plane of the second spiral spring. 5.
  • the shifting device 13 is particularly useful for preventing particular shapes of the hairspring 1 make it impossible to mount because of the proximity of its free end 7 relative to the balance shaft.
  • the shifter 13 comprises a part 14 in extension of the inner coil 7 of the second spiral spring 5.
  • the piece 14 is more rigid than the second spiral spring 5 so as not to provide an elastic torque to the balance spring - spiral resonator.
  • the part 14 is preferably made more rigid by a greater thickness, such as for example at least three times greater, with respect to the thickness of the second spiral spring 5, that is to say the width of its blade . It is therefore understood that the shape of the part 14 is partly adapted according to the curvature of the turns of the second spiral spring 5 so that no contact takes place.
  • the piece 14 is integral with the second spiral spring 5 and, preferably, that the latter comprises a height substantially equal to that of the piece 14, it is to say that the latter is contained in the same plane.
  • the extension piece 14 is furthermore preferably connected to the inner coil 7 of the second spiral spring 5 by means of a substantially U-shaped bend 15 in order to further limit the supply of a any elastic couple. It is understood that the extension piece 14 and the elbow 15 can virtually bring the fixed point formed by the peak (not shown) at the end 7 of the hairspring 1.
  • the part 14 has a recess 16, blind or through, of substantially asymmetrical section and intended to cooperate with the peak (not shown).
  • the piece 14 may be partially perforated by holes 19 to reduce its mass and thus make it less penalizing its weight when mounting the hairspring 1.
  • the inner coil 6 of the first spiral spring 3 comprises an enlarging device 17 of the ferrule 10 in the plane of the first spiral spring 3.
  • the enlargement device 17 is particularly useful for preventing particular shapes spiral 1 make it impossible to mount because of the proximity of its free end 6 relative to the balance shaft. It is therefore understood that without the enlarging device 17, the shell 10 would necessarily be of smaller diameter because of the proximity of the inner coil 6.
  • the enlarging device 17 comprises a bead 18 extending the inner coil 6 of the first spiral spring 3, the bead 18 being more rigid than the first spiral spring 3 so as not to provide an elastic torque.
  • the bead 18 is preferably made more rigid by a greater thickness relative to the thickness of the first spiral spring 3, that is to say the width of its blade.
  • the bead 18 is substantially U-shaped.
  • the bead 18 is preferably integral with the first spiral spring 3.
  • a hairspring can be manufactured respecting predetermined conditions in order to reduce the displacement of the center of mass of the hairspring in contraction and expansion.
  • This slight or negligible displacement advantageously makes it possible to reduce the belly of the anisochronism curves to a value that is substantially equal to or less than 0.5 sj -1 .
  • the spiral anisochronism slope can be customized to compensate for that given by the exhaust delay.
  • Figures 9 to 11 defines a very robust axis A of symmetry which makes it possible to minimize the chronometric defects induced by disturbances in the direction orthogonal to the axis A. It is therefore understood that it is possible to maximize the manufacturing accuracy in the fastener-counterweight direction, that is to say the axis A, as the only critical direction instead of two usually.
  • the present invention is not limited to the illustrated example but is susceptible of various variations and modifications that will occur to those skilled in the art.
  • the counterweights 8, 8 ', 9, 9' may be of different shape and / or geometry without departing from the scope of the invention. It is also possible to increase their number and / or distribute them in a different way, that is to say in particular that the counterweights 8, 8 ', 9, 9' are not necessarily symmetrical along the line A as the curvatures .
  • each spiral spring 3, 5 to add two additional counterweights, that is to say to have four counterweights, in order to distribute them substantially at 90 ° one another.
  • the spiral when it is silicon, it can be at least partially covered with silicon dioxide to make it less sensitive to temperature variations and mechanical shocks. It is then understood that the sectional variation of the counterweights 8, 8 ', 9, 9' also modifies the local thermal compensation of the spiral.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Springs (AREA)
  • Stringed Musical Instruments (AREA)

Abstract

The spring (1) has hairsprings (3, 5) comprising curves extending in planes, where each curve has continuously variable pitch. The curves are symmetrical relative to a straight line (A) parallel to the planes, and pass through a median projection plane (P) of an attachment element (4). Each curve is arranged such that specific relation is zero to reduce displacements of center of mass during contraction and expansion. Each hairspring has H-shaped counterweights (8, 8', 9, 9') to compensate for unbalance formed by a mass of the element and personalize anisochronism slope of the balance spring. The specific relation includes a moment of the balance spring of order n, length of the balance spring and curvilinear abscissa along the balance spring to the power of n and parameterization of the balance spring by the abscissa. The balance spring is formed from silicon and includes a part coated with silicon dioxide.

Description

Domaine de l'inventionField of the invention

L'invention se rapporte à un spiral utilisé pour former un résonateur balancier - spiral dont la courbure autorise un développement à centre de masse sensiblement immobile.The invention relates to a hairspring used to form a pendulum - balance resonator whose curvature allows a substantially immobile center of mass development.

Arrière plan de l'inventionBackground of the invention

Les documents EP 2 184 652 , EP 2 196 867 et EP 2 105 807 expliquent comment fabriquer des spiraux à élévation de courbe en matériaux micro-usinables respectivement à l'aide de trois parties, de deux parties ou de manière monobloc. Ces documents sont incorporés par référence à la présente description.The documents EP 2 184 652 , EP 2 196 867 and EP 2,105,807 explain how to manufacture curved spirals in micro-machinable materials respectively with three parts, two parts or integrally. These documents are incorporated by reference into the present description.

Il est connu d'appliquer les critères de Phillips pour déterminer la courbure théorique d'une courbe terminale. Cependant, les critères de Phillips sont en fait une approximation qui ne donne pas forcément satisfaction si un écart de marche encore plus réduit est souhaité.It is known to apply the Phillips criteria to determine the theoretical curvature of a terminal curve. However, the Phillips criteria are in fact an approximation that does not necessarily give satisfaction if an even smaller gap is desired.

Résumé de l'inventionSummary of the invention

Le but de la présente invention est de pallier tout ou partie les inconvénients cités précédemment en proposant un spiral respectant des conditions prédéterminées apte à réduire le déplacement du centre de masse du spiral en contraction et en expansion.The object of the present invention is to overcome all or part of the disadvantages mentioned above by proposing a hairspring respecting predetermined conditions capable of reducing the displacement of the center of mass of the hairspring in contraction and expansion.

A cet effet, l'invention se rapporte à un spiral comportant un premier ressort-spiral dont la courbe s'étend dans un premier plan et dont la spire interne comporte une virole, un deuxième ressort-spiral dont la courbe s'étend dans un deuxième plan parallèle au premier plan, une attache solidarisant la spire externe du premier ressort-spiral à la spire externe du deuxième ressort-spiral afin de former un spiral double en série caractérisé en ce que la courbe du premier ressort-spiral et la courbe du deuxième ressort-spiral comportent chacune un pas continûment variable et sont symétriques par rapport à une droite parallèle aux premier et deuxième plans et passant par le plan médian de projection de l'attache, chaque courbe tendant à ce que la relation suivante soit sensiblement nulle : P n = n + 1 L n + 1 0 L ds s n x s

Figure imgb0001

où :

  • P (n) est le moment du spiral d'ordre n ;
  • L est la longueur du spiral ;
  • sn représente l'abscisse curviligne le long du spiral à la puissance d'ordre n ;
  • x (s) est la paramétrisation du spiral par son abscisse curviligne.
afin de réduire les déplacements de son centre de masse lors de ses contraction et expansion et en ce que chaque ressort-spiral comporte en outre au moins deux contrepoids afin de compenser le balourd formé par la masse de l'attache et personnaliser la pente d'anisochronisme du spiral.To this end, the invention relates to a spiral comprising a first spiral spring whose curve extends in a first plane and whose inner turn comprises a ferrule, a second spiral spring whose curve extends in a second plane parallel to the foreground, a fastening solidarisant the outer turn of the first spiral spring to the outer turn of the second spiral spring for forming a double spiral in series characterized in that the curve of the first spiral spring and the curve of the second spiral spring each comprise a continuously variable pitch and are symmetrical with respect to a straight line parallel to the first and second planes and passing through the median projection plane of the clip, each curve tending to make the following relationship substantially nil: P not = not + 1 The not + 1 0 The ds s not x s
Figure imgb0001

or :
  • P ( n ) is the moment of the spiral of order n;
  • L is the length of the spiral;
  • s n represents the curvilinear abscissa along the spiral at the power of order n ;
  • x ( s ) is the parameterization of the spiral by its curvilinear abscissa.
in order to reduce the movements of its center of mass during its contraction and expansion and in that each spiral spring further comprises at least two counterweights in order to compensate for the unbalance formed by the mass of the fastener and to customize the slope of the anisochronism of the spiral.

Conformément à d'autres caractéristiques avantageuses de l'invention :

  • lesdits au moins deux contrepoids sont symétriques selon ladite même droite que les courbures ;
  • deux contrepoids sont situés à côté de l'attache et deux autres contrepoids sont situés du côté opposé à l'attache afin de minimiser le balourd ;
  • chaque contrepoids est sensiblement en forme de H, les bras parallèles du H étant sensiblement parallèles à la courbure locale du ressort-spiral auquel il est associé ;
  • les raideurs et/ou les masses apportées localement par lesdits contrepoids et ladite attache sont utilisées pour modifier la pente d'anisochronisme du spiral ;
  • les faces principales de l'attache sont sensiblement parallèles à ladite droite de symétrie ;
  • la spire interne du deuxième ressort-spiral comporte un dispositif de décalage agencé pour s'attacher à un piton dans le plan du deuxième ressort-spiral ;
  • le dispositif de décalage comporte une pièce en prolongement de la spire interne du deuxième ressort-spiral, ladite pièce étant plus rigide que ledit deuxième ressort-spiral afin de ne pas fournir de couple élastique ;
  • la pièce en prolongement est reliée à la spire interne à l'aide d'un coude sensiblement en forme de U ;
  • la pièce en prolongement est venue de matière avec le deuxième ressort-spiral ;
  • la pièce en prolongement est rendue plus rigide par une épaisseur au moins trois fois supérieure par rapport à celle dudit deuxième ressort-spiral ;
  • la pièce peut être partiellement ajourée pour diminuer sa masse ;
  • la spire interne du premier ressort-spiral comporte un dispositif d'agrandissement de la virole dans le plan du premier ressort-spiral ;
  • le dispositif d'agrandissement comporte un bourrelet prolongeant la spire interne du premier ressort-spiral, ledit bourrelet étant plus rigide que ledit premier ressort-spiral afin de ne pas fournir de couple élastique ;
  • le bourrelet est sensiblement en forme de U ;
  • le bourrelet est venu de matière avec le premier ressort-spiral ;
  • le spiral est formé à partir de silicium ;
  • le spiral comporte au moins une partie recouverte de dioxyde de silicium afin de limiter sa sensibilité aux variations de température et aux chocs mécaniques.
According to other advantageous features of the invention:
  • said at least two counterweights are symmetrical along the same straight line as the curvatures;
  • two counterweights are located next to the clip and two other counterweights are located on the opposite side of the clip to minimize unbalance;
  • each counterweight is substantially H-shaped, the parallel arms of the H being substantially parallel to the local curvature of the spiral spring with which it is associated;
  • the stiffness and / or masses brought locally by said counterweights and said fastener are used to modify the anisochronism slope of the spiral;
  • the main faces of the fastener are substantially parallel to said line of symmetry;
  • the inner coil of the second spiral spring comprises a shifter arranged to attach to a stud in the plane of the second spiral spring;
  • the shifter comprises a piece extending from the inner turn of the second hairspring, said piece being more rigid than said second hairspring so as not to provide an elastic torque;
  • the extension piece is connected to the inner coil with a substantially U-shaped bend;
  • the piece in extension came from matter with the second spiral spring;
  • the extension piece is made more rigid by a thickness at least three times greater than that of said second spiral spring;
  • the piece can be partially perforated to reduce its mass;
  • the inner coil of the first spiral spring comprises a device for enlarging the ferrule in the plane of the first spiral spring;
  • the enlarging device comprises a bead extending the inner coil of the first spiral spring, said bead being more rigid than said first spiral spring so as not to provide elastic torque;
  • the bead is substantially U-shaped;
  • the bead came from material with the first spiral spring;
  • the spiral is formed from silicon;
  • the spiral comprises at least one portion coated with silicon dioxide in order to limit its sensitivity to temperature variations and mechanical shocks.

Par conséquent, avantageusement selon l'invention, un spiral peut être fabriqué en respectant des conditions prédéterminées afin de réduire le déplacement du centre de masse du spiral en contraction et en expansion. Ce déplacement faible ou négligeable permet avantageusement de réduire le ventre des courbes d'anisochronisme à une valeur sensiblement égale ou inférieure 0,5 s.j-1. De plus, avantageusement selon l'invention, la pente d'anisochronisme du spiral peut être personnalisée afin de compenser celle donnée par le retard à l'échappement.Therefore, advantageously according to the invention, a hairspring can be manufactured respecting predetermined conditions in order to reduce the displacement of the center of mass of the hairspring in contraction and expansion. This slight or negligible displacement advantageously makes it possible to reduce the belly of the anisochronism curves to a value that is substantially equal to or less than 0.5 sj -1 . In addition, advantageously according to the invention, the spiral anisochronism slope can be customized to compensate for that given by the exhaust delay.

De plus, l'invention se rapporte à un résonateur pour une pièce d'horlogerie comportant un balancier caractérisé en ce que le balancier coopère avec un spiral conforme à l'une des variantes précédentes.In addition, the invention relates to a resonator for a timepiece comprising a balance characterized in that the rocker cooperates with a hairspring according to one of the previous variants.

Description sommaire des dessinsBrief description of the drawings

D'autres particularités et avantages ressortiront clairement de la description qui en est faite ci-après, à titre indicatif et nullement limitatif, en référence aux dessins annexés, dans lesquels :

  • les figures 1 et 2 sont des schémas destinés à expliquer les raisonnements suivis ;
  • les figures 3 à 5 sont des exemples de calcul de courbures à 2,3 spires respectant respectivement les équations des moments jusqu'à l'ordre 2, 3 et 4 ;
  • les figures 6 à 8 sont des exemples de calcul de courbures à 5,3 spires respectant respectivement les équations des moments jusqu'à l'ordre 2, 3 et 4 ;
  • les figures 9 et 10 sont des représentations en perspective d'un spiral selon l'invention ;
  • la figure 11 est une représentation vue de dessus du spiral des figures 9 et 10.
Other particularities and advantages will emerge clearly from the description which is given hereinafter, by way of indication and in no way limiting, with reference to the appended drawings, in which:
  • the Figures 1 and 2 are diagrams intended to explain the reasoning followed;
  • the Figures 3 to 5 are examples of calculation of curves with 2.3 turns corresponding respectively to the equations of moments up to order 2, 3 and 4;
  • the Figures 6 to 8 are examples of computation of curves with 5.3 turns corresponding respectively to the equations of the moments up to the order 2, 3 and 4;
  • the Figures 9 and 10 are perspective representations of a hairspring according to the invention;
  • the figure 11 is a top view of the spiral of Figures 9 and 10 .

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

Les variations de marche d'une montre mécanique relativement à sa fréquence théorique sont principalement dues à l'échappement et au résonateur balancier - spiral. On distingue deux types de variations de marche suivant qu'elles soient engendrées par l'amplitude d'oscillation du balancier ou par la position du mouvement horloger. C'est pourquoi, pour les tests d'anisochronisme, un mouvement horloger est testé selon six positions, 2 horizontales (cadran vers le haut et vers le bas) et 4 verticales (tige étant tournée de 90° à partir d'une position vers le haut). Des six courbes distinctes obtenues, on détermine l'écart maximal entre ces dernières, également appelé « ventre », exprimant la variation de marche maximale du mouvement en secondes par jour (s.j-1).The variations of a mechanical watch relative to its theoretical frequency are mainly due to the exhaust and the balance resonator - spiral. There are two types of step variations depending on whether they are caused by the oscillation amplitude of the balance or by the position of the watch movement. This is why, for anisochronism tests, a watch movement is tested in six positions, 2 horizontal (dial up and down) and 4 vertical (stem rotated 90 ° from a position towards the top). From the six distinct curves obtained, we determine the maximum distance between them, also called "belly", expressing the maximum movement variation of the movement in seconds per day (sj -1 ).

L'échappement induit une variation de marche en fonction de l'amplitude du balancier qui est difficile à régler. Par conséquent, le spiral est en général adapté afin que sa variation en fonction de la même amplitude soit sensiblement opposée à celle de l'échappement. De plus, le spiral est adapté afin que sa variation soit minimale entre les quatre positions verticales.The escapement induces a variation in operation as a function of the amplitude of the pendulum which is difficult to adjust. Therefore, the hairspring is generally adapted so that its variation as a function of the same amplitude is substantially opposite that of the exhaust. In addition, the spiral is adapted so that its variation is minimal between the four vertical positions.

Les adaptations nécessaires des spiraux ont tenté d'être posées mathématiquement afin de déterminer par calcul les courbures idéales. Des conditions géométriques ont été énoncées notamment par MM. Phillips et Grossmann afin de construire un spiral satisfaisant, c'est-à-dire dont le centre de masse du spiral reste sur l'axe du balancier. Toutefois, les conditions actuelles sont des approximations grossières. De fait, comme de très faibles déplacements du centre de masse peuvent engendrer de grandes variations de marche, les variations de marche obtenues en suivant les conditions géométriques actuelles sont souvent décevantes.The necessary adaptations of the spirals have been tried mathematically to determine by calculation the ideal curvatures. Geometric conditions have been stated in particular by MM. Phillips and Grossmann in order to build a satisfactory hairspring, that is to say whose center of mass of the hairspring stays on the axis of the balance. However, the current conditions are rough approximations. In fact, as very small displacements of the center of mass can generate great variations of step, the variations of step obtained according to the current geometric conditions are often disappointing.

C'est pourquoi, avantageusement selon l'invention, de nouvelles conditions sont présentées ci-après afin d'obtenir de meilleurs résultats de variation de marche que par des conditions géométriques actuelles, notamment celles édictées par MM. Phillips et Grossmann.This is why, advantageously according to the invention, new conditions are presented below in order to obtain better results of variation of step than by current geometrical conditions, in particular those enacted by MM. Phillips and Grossmann.

On définit un « moment du spiral d'ordre n », P (n), par la formule suivante : P n = n + 1 L n + 1 0 L ds s n x s

Figure imgb0002

où :

  • L est la longueur du spiral ;
  • sn représente l'abscisse curviligne le long du spiral à la puissance d'ordre n ;
  • x (s) est la paramétrisation du spiral par son abscisse curviligne.
We define a "moment of the spiral of order n", P ( n ) , by the following formula: P not = not + 1 The not + 1 0 The ds s not x s
Figure imgb0002

or :
  • L is the length of the spiral;
  • s n represents the curvilinear abscissa along the spiral at the power of order n ;
  • x ( s ) is the parameterization of the spiral by its curvilinear abscissa.

Ainsi, dans le but d'obtenir un centre de masse immobile, il est nécessaire, pour chaque ordre n, que le moment du spiral P (n) soit nul. Tous les ordres ne peuvent pas être calculés puisqu'il en existe un nombre infini. Ainsi, plus un nombre important d'ordres dont la relation (1) nulle est respectée, plus la quantité de déplacement du centre de masse sera diminuée.Thus, in order to obtain an immobile center of mass, it is necessary, for each order n , that the moment of the spiral P ( n ) zero. All orders can not be calculated since there is an infinite number. Thus, the greater the number of orders whose zero relation (1) is respected, the more the amount of displacement of the center of mass will be reduced.

Dans l'exemple illustré à la figure 1, huit ordres de moment du spiral sont représentés par des points qui permettent, par une paramétrisation à l'aide d'un polynôme comportant au moins autant de coefficients que d'ordres (dans notre cas au moins huit), de définir une courbure théorique « idéale ».In the example shown in figure 1 , eight orders of moment of the spiral are represented by points which allow, by a parametrization using a polynomial comprising at least as many coefficients as orders (in our case at least eight), to define a theoretical curvature "Ideal".

Dans le but d'appliquer ces conditions du moment du spiral nul, on part d'un spiral du type des figures 9 à 11, c'est-à-dire, un spiral 1 comportant un premier ressort-spiral 3 dont la courbe s'étend dans un premier plan, un deuxième ressort-spiral 5 dont la courbe s'étend dans un deuxième plan parallèle au premier plan. Chaque extrémité de ressort-spiral 3, 5 est préférentiellement solidarisée par une attache 4 afin de former un spiral double en série.In order to apply these conditions of the moment of the null spiral, we start from a spiral of the type of Figures 9 to 11 , that is to say, a hairspring 1 comprising a first hairspring 3 whose curve extends in a first plane, a second hairspring 5 whose curve extends in a second plane parallel to the foreground . Each end of spiral spring 3, 5 is preferably secured by a fastener 4 to form a double spiral series.

Comme expliqué ci-dessus, la fabrication d'un tel spiral est possible par les procédés expliqués dans les documents EP 2 184 652 , EP 2 196 867 et EP 2 105 807 à partir de matériaux micro-usinables tels que le silicium respectivement à l'aide de trois parties, de deux parties ou de manière monobloc. Bien évidemment, un tel spiral peut être fabriqué à partir d'autres procédés et/ou d'autres matériaux.As explained above, the manufacture of such a hairspring is possible by the methods explained in the documents EP 2 184 652 , EP 2 196 867 and EP 2,105,807 from micro-machinable materials such as silicon respectively using three parts, two parts or in one piece. Of course, such a hairspring can be made from other processes and / or other materials.

Afin de simplifier les calculs, la courbe du premier ressort-spiral 3 et la courbe du deuxième ressort-spiral 5 comportent, de manière préférée, chacune un pas continûment variable et sont symétriques par rapport à une droite A parallèle aux premier et deuxième plans passant par le centre du plan médian P de projection de l'attache 4 et le centre de l'axe du balancier.In order to simplify the calculations, the curve of the first spiral spring 3 and the curve of the second spiral spring 5 preferably comprise, each step, a continuously variable pitch and are symmetrical with respect to a line A parallel to the first and second passing planes. by the center of the median plane P of projection of the fastener 4 and the center of the axis of the balance.

Par conséquent, à titre d'exemple, pour chaque ressort-spiral 3, 5, les sept premiers ordres doivent respecter les relations suivantes : P x 0 = 0

Figure imgb0003
P y 1 = 2 P y 0
Figure imgb0004
P x 2 = 3 P x 1
Figure imgb0005
P y y = 4 P y 2 - 8 P y 0
Figure imgb0006
P x 4 = 5 P x 3 - 20 P x 1
Figure imgb0007
P y 5 = 6 P y 4 - 40 P y 2 + 96 P y 0
Figure imgb0008
P x 6 = 7 P x 5 - 70 P x 3 + 336 P x 1
Figure imgb0009
Therefore, by way of example, for each spiral spring 3, 5, the first seven orders must respect the following relationships: P x 0 = 0
Figure imgb0003
P there 1 = 2 P there 0
Figure imgb0004
P x 2 = 3 P x 1
Figure imgb0005
P there there = 4 P there 2 - 8 P there 0
Figure imgb0006
P x 4 = 5 P x 3 - 20 P x 1
Figure imgb0007
P there 5 = 6 P there 4 - 40 P there 2 + 96 P there 0
Figure imgb0008
P x 6 = 7 P x 5 - 70 P x 3 + 336 P x 1
Figure imgb0009

Comme expliqué ci-dessus, plus le nombre de relations (2)-(8) sont respectées, plus le déplacement du centre de masse du spiral 1 sera limité. A titre de comparaison, les conditions de Phillips s'approchent de la relation (2), c'est-à-dire une approximation au premier ordre. Une application des relations (2)-(5) est représentée à la figure 2 qui est une vue partielle et agrandie de la figure 1.As explained above, the more the number of relations (2) - (8) are respected, the more the displacement of the center of mass of the spiral 1 will be limited. By way of comparison, the Phillips conditions approach the relation (2), that is to say a first-order approximation. An application of relations (2) - (5) is represented in figure 2 which is a partial and enlarged view of the figure 1 .

A l'aide d'une paramétrisation comme expliquée ci-dessus, il est possible de définir une grande variété de courbes de ressort-spiral suivant l'inertie choisie du balancier, le matériau, la section et la longueur du spiral mais également les coefficients des polynômes de paramétrisation. Il est également possible de choisir des solutions particulières en limitant par exemple le nombre d'ordres et/ou le nombre de spires.Using a parameterization as explained above, it is possible to define a wide variety of spring-spiral curves depending on the inertia chosen of the balance, the material, the section and the length of the balance spring, but also the coefficients parametrization polynomials. It is also possible to choose particular solutions by limiting for example the number of orders and / or the number of turns.

Des simulations de courbes possibles sont représentées aux figures 3 à 8. Ainsi, pour former la figure 3, la paramétrisation s'est limitée aux relations (2) à (4) avec un spiral à 2,3 spires et un polynôme de paramétrisation de degré 2. La figure 4 correspond à la paramétrisation avec un polynôme de degré 3 à partir des relations (2) à (5) toujours en limitant l'enroulement à 2,3 spires. Enfin, la figure 5 correspond à la paramétrisation avec un polynôme de degré 4 à partir des relations (2) à (6) en limitant l'enroulement à 2,3 spires. Les figures 6 à 8 correspondent aux mêmes critères respectivement que les figures 3 à 5 mais en augmentant l'enroulement de 2,3 spires à 5,3 spires. On s'aperçoit qu'il existe une infinité de solutions de courbe tout en respectant les relations (2)-(8) énoncées.Simulations of possible curves are represented at Figures 3 to 8 . So, to form the figure 3 , parametrization was limited to relations (2) to (4) with a spiral with 2.3 turns and a parametrization polynomial of degree 2. The figure 4 corresponds to the parametrization with a polynomial of degree 3 from relations (2) to (5) always limiting the winding to 2.3 turns. Finally, figure 5 corresponds to the parameterization with a polynomial of degree 4 from relations (2) to (6) by limiting the winding to 2.3 turns. The Figures 6 to 8 correspond to the same criteria respectively as the Figures 3 to 5 but by increasing the winding of 2.3 turns to 5.3 turns. We realize that there is an infinity of curve solutions while respecting the relations (2) - (8) stated.

Comme illustré aux figures 9 à 11, l'extrémité 6 du ressort-spiral 3 est reliée à une virole 10 en une seule pièce et l'extrémité 7 du ressort-spiral 5, qui est opposée à l'attache 4, est agencée pour coopérer avec un piton (non représenté). De plus, comme visibles aux figures 9 à 11, les faces principales 11, 12 de l'attache 4 sont sensiblement parallèles à la droite de symétrie A.As illustrated in Figures 9 to 11 , the end 6 of the spiral spring 3 is connected to a ferrule 10 in one piece and the end 7 of the spiral spring 5, which is opposite the fastener 4, is arranged to cooperate with a stud (not shown ). Moreover, as visible to Figures 9 to 11 , the main faces 11, 12 of the fastener 4 are substantially parallel to the line of symmetry A.

Dans le cas particulier des figures 9 à 11 dans lequel le spiral 1 est formé à partir de trois parties comme expliqué dans le document EP 2 184 652 , en plus de respecter le plus de relations (2)-(8), il devient alors nécessaire de compenser le balourd engendré par l'attache 4, c'est-à-dire compenser la masse de l'attache 4 par rapport à son éloignement de l'axe du balancier.In the particular case of Figures 9 to 11 wherein the hairspring 1 is formed from three parts as explained in the document EP 2 184 652 , in addition to respecting the most relations (2) - (8), it then becomes necessary to compensate for the unbalance generated by the fastener 4, that is to say to compensate for the mass of the fastener 4 with respect to its distance from the axis of the balance.

Ainsi, comme illustré aux figures 9 à 11, chaque ressort-spiral 3, 5 comporte, de manière préférée, au moins deux contrepoids 8-9, 8'-9' qui sont symétriques selon la même droite A que les courbures afin de compenser le balourd formé par la masse de l'attache 4 et personnaliser la pente d'anisochronisme du spiral 1. Préférentiellement, les masses des contrepoids 8, 8' et 9, 9' sont sensiblement égales et leur somme est plus ou moins grande par rapport à celle de l'attache 4 suivant la différence d'éloignement entre, d'une part, l'attache 4 et l'axe de balancier, et, d'autre part, les contrepoids 8, 8', 9, 9' et ledit axe de balancier.Thus, as illustrated in Figures 9 to 11 each spiral spring 3, 5 preferably comprises at least two counterweights 8-9, 8'-9 'which are symmetrical along the same line A as the bends in order to compensate for the unbalance formed by the mass of the fastener 4 and customize the anisochronism slope of the hairspring 1. Preferably, the masses of the counterweights 8, 8 'and 9, 9' are substantially equal and their sum is greater or lesser than that of the fastener 4 according to the difference distance between, on the one hand, the fastener 4 and the balance shaft, and, on the other hand, the counterweights 8, 8 ', 9, 9' and said balance shaft.

En effet, il a été montré empiriquement que deux uniques contrepoids sur le côté opposé de l'attache ne permettaient pas de baisser le ventre de la variation de marche en dessous de 1,4 s.j-1. Cela vient du fait que même si les contrepoids équilibrent parfaitement le balourd pour un angle de rotation de la virole de 0°, cela n'est plus le cas lorsque la virole tourne d'un certain angle car la distance radiale de l'attache 4 ne varie pas de la même manière que la distance radiale des contrepoids 9, 9'.Indeed, it has been shown empirically that two single counterweights on the opposite side of the fastener did not allow to lower the belly of the variation of walking below 1.4 sj -1 . This is because even if the counterweights perfectly balance the unbalance for a rotation angle of the ferrule of 0 °, this is no longer the case when the ferrule rotates at a certain angle because the radial distance of the fastener 4 does not vary in the same way as the radial distance of the counterweights 9, 9 '.

C'est pourquoi pour mieux équilibrer le balourd sur une plage d'angle de rotation habituelle de 0° à sensiblement 300°, on ajoute au moins deux contrepoids 8, 8' supplémentaires en les plaçant à d'autres endroits sur les ressorts-spiraux 3, 5. Ainsi, il a été trouvé que quatre contrepoids 8, 8', 9, 9' tous alignés sur l'axe A comme visible à la figure 11, deux 8, 8' à côté de l'attache 4 et deux 9, 9' du côté opposé à l'attache 4 permettent d'optimiser le balourd en le rendant quasiment nul quelque soit l'angle de la virole 10.That is why to better balance the unbalance over a range of usual rotation angle of 0 ° to substantially 300 °, is added at least two additional counterweight 8, 8 'by placing them in other places on the spiral springs 3, 5. Thus, it has been found that four counterweights 8, 8 ', 9, 9' all aligned on the axis A as visible in FIG. figure 11 , two 8, 8 'next to the fastener 4 and two 9, 9' on the opposite side to the fastener 4 optimize the imbalance by making it virtually zero whatever the angle of the ferrule 10.

Préférentiellement selon l'invention, chaque contrepoids 8, 8', 9, 9' est sensiblement en forme de H, les bras parallèles du H étant sensiblement parallèles à la courbure locale du ressort-spiral 3, 5 auquel il est associé. Comme visible aux figures 9 à 11, on remarque que ces formes en H apportent une surépaisseur locale de chaque ressort-spiral 3, 5 qui augmente localement leur raideur.Preferably according to the invention, each counterweight 8, 8 ', 9, 9' is substantially H-shaped, the parallel arms of the H being substantially parallel to the local curvature of the spiral spring 3, 5 with which it is associated. As visible to Figures 9 to 11 , we note that these shapes in H provide a local extra thickness of each spiral spring 3, 5 which locally increases their stiffness.

Ainsi, avantageusement selon l'invention, les raideurs et/ou les masses apportées localement par les contrepoids 8, 8', 9, 9' et l'attache 4 sont utilisées pour modifier la pente d'anisochronisme du spiral 1.Thus, advantageously according to the invention, the stiffnesses and / or the masses brought locally by the counterweights 8, 8 ', 9, 9' and the fastener 4 are used to modify the anisochronism slope of the hairspring 1.

Une simulation du ventre et de la pente d'anisochronisme du spiral 1 selon l'invention a été réalisée en variant la longueur de l'attache 4 ou des contrepoids 8, 8', 9, 9' le long du spiral 1 : Attache 4 Contrepoids 9,9' Contrepoids 8, 8' Pente Ventre [mm] [mm] [mm] [s/j/100°] [s/j] 0,22 0,1 0,1 -8,54 0,26 0,1 0,1 0,1 -7,51 0,35 0,22 0,04 0,22 -12,97 1,14 0,22 0,22 0,04 -7,88 0,54 0,22 0,44 0,22 -5,49 0,22 0,22 0,33 0,22 -5,05 0,29 0,22 0,33 0,25 -4,3 0,49 A simulation of the belly and the slope of anisochronism of the spiral 1 according to the invention was carried out by varying the length of the fastener 4 or the counterweights 8, 8 ', 9, 9' along the spiral 1: Tie 4 Counterweight 9,9 ' Counterweight 8, 8 ' Slope Belly [Mm] [Mm] [Mm] [S / d / 100 °] [S / d] 0.22 0.1 0.1 -8.54 0.26 0.1 0.1 0.1 -7.51 0.35 0.22 0.04 0.22 -12.97 1.14 0.22 0.22 0.04 -7.88 0.54 0.22 0.44 0.22 -5.49 0.22 0.22 0.33 0.22 -5.05 0.29 0.22 0.33 0.25 -4.3 0.49

La longueur représente la longueur de la portion du spiral 1 qui est rigidifié par l'attache 4 ou le contrepoids 8, 8', 9, 9'. Pour la simulation, il a été choisi une inertie de balancier s'élevant à 2,5 mg.cm2 et un spiral 1 en silicium d'une section de 0,033 mm x 0,1 mm et une longueur L de 45 mm.The length represents the length of the portion of the hairspring 1 which is stiffened by the fastener 4 or the counterweight 8, 8 ', 9, 9'. For the simulation, it was chosen a pendulum inertia amounting to 2.5 mg.cm 2 and a spiral 1 silicon of a section of 0.033 mm x 0.1 mm and a length L of 45 mm.

On s'aperçoit qu'en diminuant la longueur de l'attache 4, la pente d'anisochronisme tend à se redresser alors que le ventre reste avantageusement inférieur à 0,4 s.j-1. De plus, en diminuant la longueur des contrepoids 9, 9', la pente d'anisochronisme tend à se redresser alors que le ventre reste avantageusement inférieur à 0,3 s.j-1. Enfin, en augmentant la longueur des contrepoids 8, 8', la pente d'anisochronisme tend à se redresser alors que le ventre reste avantageusement inférieur à 0,5 s.j-1.It can be seen that by decreasing the length of the fastener 4, the slope of anisochronism tends to recover while the belly advantageously remains less than 0.4 sj -1 . In addition, by decreasing the length of the counterweights 9, 9 ', the slope of anisochronism tends to recover while the belly is advantageously less than 0.3 sj -1 . Finally, by increasing the length of the counterweights 8, 8 ', the slope of anisochronism tends to recover while the belly remains advantageously less than 0.5 sj -1 .

Bien entendu, la masse de l'attache 4 et donc des contrepoids 8, 8', 9, 9' peut également être modifiée pour adapter la pente d'anisochronisme : Attache 4 Contrepoids 9, 9' Contrepoids 8, 8' Attache 4 Pente Ventre [mm] [mm] [mm] [mm3] [s/j/100°] [s/j] 0,22 0,1 0,1 0,016 -8,54 0,26 0,22 0,1 0,1 0,008 -5,58 0,56 0,22 0,1 0,1 0,002 -4,58 0,53 Of course, the mass of the fastener 4 and therefore the counterweights 8, 8 ', 9, 9' can also be modified to adapt the slope of anisochronism: Tie 4 Counterweight 9, 9 ' Counterweight 8, 8 ' Tie 4 Slope Belly [Mm] [Mm] [Mm] [mm 3 ] [S / d / 100 °] [S / d] 0.22 0.1 0.1 0.016 -8.54 0.26 0.22 0.1 0.1 0,008 -5.58 0.56 0.22 0.1 0.1 0,002 -4.58 0.53

On s'aperçoit alors qu'en diminuant la masse de l'attache 4, la pente d'anisochronisme tend à se redresser alors que le ventre reste avantageusement inférieur à 0,6 s.j-1. Par conséquent, avantageusement selon l'invention, la pente d'anisochronisme du spiral 1 peut être personnalisée afin de compenser celle donnée par le retard à l'échappement.It can be seen that by decreasing the mass of the fastener 4, the slope of anisochronism tends to recover while the belly advantageously remains less than 0.6 sj -1 . Therefore, advantageously according to the invention, the anisochronism slope of the hairspring 1 can be customized to compensate for that given by the exhaust delay.

Bien entendu, la présente invention ne se limite pas à l'exemple illustré mais est susceptible de diverses variantes et modifications qui apparaîtront à l'homme de l'art. En particulier, d'autres critères d'encadrement peuvent être prévus comme par exemple une limitation du rapport entre le rayon intérieur et le rayon extérieur afin que les extrémités des ressort-spiraux ne soient pas trop proches du point d'origine où doit être présent l'axe de balancier.Of course, the present invention is not limited to the illustrated example but is susceptible of various variations and modifications that will occur to those skilled in the art. In particular, other framing criteria may be provided such as a limitation of the ratio between the inner radius and the outer radius so that the ends of the spiral springs are not too close to the point of origin where must be present the balance shaft.

En outre, avantageusement selon l'invention, la spire interne 7 du deuxième ressort-spiral 5 comporte, de manière préférée, un dispositif de décalage 13 agencé pour s'attacher à un piton (non représenté) dans le plan du deuxième ressort-spiral 5. Le dispositif de décalage 13 est notamment utile pour éviter que des formes particulières du spiral 1 rendent impossible son montage à cause de la proximité de son extrémité libre 7 par rapport à l'axe de balancier.In addition, advantageously according to the invention, the inner coil 7 of the second spiral spring 5 comprises, preferably, a shifter 13 arranged to attach to a peg (not shown) in the plane of the second spiral spring. 5. The shifting device 13 is particularly useful for preventing particular shapes of the hairspring 1 make it impossible to mount because of the proximity of its free end 7 relative to the balance shaft.

Comme visible aux figures 9 à 11, le dispositif de décalage 13 comporte une pièce 14 en prolongement de la spire interne 7 du deuxième ressort-spiral 5. Préférentiellement, la pièce 14 est plus rigide que le deuxième ressort-spiral 5 afin de ne pas fournir de couple élastique au résonateur balancier - spiral. De plus, la pièce 14 est préférentiellement rendue plus rigide par une épaisseur supérieure, comme par exemple au moins trois fois supérieure, par rapport à l'épaisseur du deuxième ressort-spiral 5, c'est-à-dire la largeur de sa lame. On comprend donc que la forme de la pièce 14 est en partie adaptée en fonction de la courbure des spires du deuxième ressort-spiral 5 afin qu'aucun contact n'ait lieu.As visible to Figures 9 to 11 , the shifter 13 comprises a part 14 in extension of the inner coil 7 of the second spiral spring 5. Preferably, the piece 14 is more rigid than the second spiral spring 5 so as not to provide an elastic torque to the balance spring - spiral resonator. In addition, the part 14 is preferably made more rigid by a greater thickness, such as for example at least three times greater, with respect to the thickness of the second spiral spring 5, that is to say the width of its blade . It is therefore understood that the shape of the part 14 is partly adapted according to the curvature of the turns of the second spiral spring 5 so that no contact takes place.

De plus, selon une alternative particulière, il est préféré que la pièce 14 soit venue de matière avec le deuxième ressort-spiral 5 et, de manière préférée, que ce dernier comporte une hauteur sensiblement égale à celle de la pièce 14, c'est-à-dire que cette dernière est contenue dans le même plan.In addition, according to a particular alternative, it is preferred that the piece 14 is integral with the second spiral spring 5 and, preferably, that the latter comprises a height substantially equal to that of the piece 14, it is to say that the latter is contained in the same plane.

La pièce en prolongement 14 est en outre reliée, de manière préférée, à la spire interne 7 du deuxième ressort-spiral 5 à l'aide d'un coude 15 sensiblement en forme de U afin de limiter d'avantage la fourniture d'un quelconque couple élastique. On comprend que la pièce en prolongement 14 et le coude 15 permettent de virtuellement rapprocher le point fixe formé par le piton (non représenté) à l'extrémité 7 du spiral 1.The extension piece 14 is furthermore preferably connected to the inner coil 7 of the second spiral spring 5 by means of a substantially U-shaped bend 15 in order to further limit the supply of a any elastic couple. It is understood that the extension piece 14 and the elbow 15 can virtually bring the fixed point formed by the peak (not shown) at the end 7 of the hairspring 1.

De plus, la pièce 14 comporte un évidement 16, borgne ou traversant, de section sensiblement asymétrique et destiné à coopérer avec le piton (non représenté). Enfin, comme visible aux figures 9 à 11, la pièce 14 peut être partiellement ajourée par des trous 19 pour diminuer sa masse et ainsi rendre moins pénalisant son poids lors du montage du spiral 1.In addition, the part 14 has a recess 16, blind or through, of substantially asymmetrical section and intended to cooperate with the peak (not shown). Finally, as visible Figures 9 to 11 , the piece 14 may be partially perforated by holes 19 to reduce its mass and thus make it less penalizing its weight when mounting the hairspring 1.

De manière similaire, la spire interne 6 du premier ressort-spiral 3 comporte un dispositif d'agrandissement 17 de la virole 10 dans le plan du premier ressort-spiral 3. Le dispositif d'agrandissement 17 est notamment utile pour éviter que des formes particulières du spiral 1 rendent impossible son montage à cause de la proximité de son extrémité libre 6 par rapport à l'axe de balancier. On comprend donc que sans le dispositif d'agrandissement 17, la virole 10 serait nécessairement d'un plus petit diamètre à cause de la proximité de la spire interne 6.Similarly, the inner coil 6 of the first spiral spring 3 comprises an enlarging device 17 of the ferrule 10 in the plane of the first spiral spring 3. The enlargement device 17 is particularly useful for preventing particular shapes spiral 1 make it impossible to mount because of the proximity of its free end 6 relative to the balance shaft. It is therefore understood that without the enlarging device 17, the shell 10 would necessarily be of smaller diameter because of the proximity of the inner coil 6.

Préférentiellement, le dispositif d'agrandissement 17 comporte un bourrelet 18 prolongeant la spire interne 6 du premier ressort-spiral 3, le bourrelet 18 étant plus rigide que le premier ressort-spiral 3 afin de ne pas fournir de couple élastique. De plus, le bourrelet 18 est préférentiellement rendue plus rigide par une épaisseur supérieure par rapport à l'épaisseur du premier ressort-spiral 3, c'est-à-dire la largeur de sa lame.Preferably, the enlarging device 17 comprises a bead 18 extending the inner coil 6 of the first spiral spring 3, the bead 18 being more rigid than the first spiral spring 3 so as not to provide an elastic torque. In addition, the bead 18 is preferably made more rigid by a greater thickness relative to the thickness of the first spiral spring 3, that is to say the width of its blade.

En outre, selon une alternative particulière, il est préféré que le bourrelet 18 soit sensiblement en forme de U. Enfin, le bourrelet 18 est préférentiellement venu de matière avec le premier ressort-spiral 3.In addition, according to a particular alternative, it is preferred that the bead 18 is substantially U-shaped. Finally, the bead 18 is preferably integral with the first spiral spring 3.

Par conséquent, avantageusement selon l'invention, un spiral peut être fabriqué en respectant des conditions prédéterminées afin de réduire le déplacement du centre de masse du spiral en contraction et en expansion. Ce déplacement faible ou négligeable permet avantageusement de réduire le ventre des courbes d'anisochronisme à une valeur sensiblement égale ou inférieure 0,5 s.j-1. De plus, avantageusement selon l'invention, la pente d'anisochronisme du spiral peut être personnalisée afin de compenser celle donnée par le retard à l'échappement.Therefore, advantageously according to the invention, a hairspring can be manufactured respecting predetermined conditions in order to reduce the displacement of the center of mass of the hairspring in contraction and expansion. This slight or negligible displacement advantageously makes it possible to reduce the belly of the anisochronism curves to a value that is substantially equal to or less than 0.5 sj -1 . In addition, advantageously according to the invention, the spiral anisochronism slope can be customized to compensate for that given by the exhaust delay.

Enfin, la configuration des figures 9 à 11 défini un axe A de symétrie très robuste qui permet de minimiser les défauts chronométriques induits par des perturbations dans la direction orthogonale à l'axe A. On comprend donc qu'il est possible de maximiser la précision de fabrication dans la direction attache - contrepoids, c'est-à-dire l'axe A, comme seule direction critique au lieu de deux habituellement.Finally, the configuration of Figures 9 to 11 defines a very robust axis A of symmetry which makes it possible to minimize the chronometric defects induced by disturbances in the direction orthogonal to the axis A. It is therefore understood that it is possible to maximize the manufacturing accuracy in the fastener-counterweight direction, that is to say the axis A, as the only critical direction instead of two usually.

Bien entendu, la présente invention ne se limite pas à l'exemple illustré mais est susceptible de diverses variantes et modifications qui apparaîtront à l'homme de l'art. En particulier, les contrepoids 8, 8', 9, 9' peuvent être de forme et/ou de géométrie différentes sans sortir du cadre de l'invention. Il est également possible d'augmenter leur nombre et/ou les distribuer de manière différente, c'est-à-dire notamment que les contrepoids 8, 8', 9, 9' ne sont pas nécessairement symétriques selon la droite A comme les courbures.Of course, the present invention is not limited to the illustrated example but is susceptible of various variations and modifications that will occur to those skilled in the art. In particular, the counterweights 8, 8 ', 9, 9' may be of different shape and / or geometry without departing from the scope of the invention. It is also possible to increase their number and / or distribute them in a different way, that is to say in particular that the counterweights 8, 8 ', 9, 9' are not necessarily symmetrical along the line A as the curvatures .

Ainsi, à titre d'exemple, il est parfaitement envisageable, pour chaque ressort-spiral 3, 5, d'ajouter deux contrepoids supplémentaires, c'est-à-dire d'avoir quatre contrepoids, afin de les distribuer sensiblement à 90° les uns des autres.Thus, for example, it is perfectly possible, for each spiral spring 3, 5, to add two additional counterweights, that is to say to have four counterweights, in order to distribute them substantially at 90 ° one another.

De plus, quand le spiral est en silicium, il peut être au moins partiellement recouvert de dioxyde de silicium afin de le rendre moins sensible aux variations de température et aux chocs mécaniques. On comprend alors que la variation de section des contrepoids 8, 8', 9, 9' modifie également la compensation thermique locale du spiral.In addition, when the spiral is silicon, it can be at least partially covered with silicon dioxide to make it less sensitive to temperature variations and mechanical shocks. It is then understood that the sectional variation of the counterweights 8, 8 ', 9, 9' also modifies the local thermal compensation of the spiral.

Enfin, il peut être envisagé de compenser également le balourd induit par le bourrelet 18 en ajoutant un contrepoids supplémentaire sur le côté opposé de virole 10.Finally, it may be envisaged also to compensate the unbalance induced by the bead 18 by adding an additional counterweight on the opposite side of ferrule 10.

Claims (19)

Spiral (1) comportant un premier ressort-spiral (3) dont la courbe s'étend dans un premier plan et dont la spire interne (6) comporte une virole (10), un deuxième ressort-spiral (5) dont la courbe s'étend dans un deuxième plan parallèle au premier plan, une attache (4) solidarisant la spire externe du premier ressort-spiral (3) à la spire externe du deuxième ressort-spiral (5) afin de former un spiral (1) double en série caractérisé en ce que la courbe du premier ressort-spiral (3) et la courbe du deuxième ressort-spiral (5) comportent chacune un pas continûment variable et sont symétriques par rapport à une droite (A) parallèle aux premier et deuxième plans et passant par le plan médian de projection (P) de l'attache (4), chaque courbe étant telle que la relation suivante soit sensiblement nulle : P n = n + 1 L n + 1 0 L ds s n x s
Figure imgb0010

où : - P (n) est le moment du spiral d'ordre n ; - L est la longueur du spiral ; - sn représente l'abscisse curviligne le long du spiral à la puissance d'ordre n ; - x (s) est la paramétrisation du spiral par son abscisse curviligne. afin de réduire les déplacements de son centre de masse lors de ses contraction et expansion et en ce que chaque ressort-spiral (3, 5) comporte en outre au moins deux contrepoids (8, 8', 9, 9') afin de compenser le balourd formé par la masse de l'attache (4) et personnaliser la pente d'anisochronisme du spiral (1).
Spiral (1) comprising a first spiral spring (3) whose curve extends in a first plane and whose inner coil (6) comprises a ferrule (10), a second spiral spring (5) whose curve s extends in a second plane parallel to the foreground, a fastener (4) solidarisant the outer turn of the first spiral spring (3) to the outer turn of the second spiral spring (5) to form a spiral (1) double series characterized in that the curve of the first spiral spring (3) and the curve of the second spiral spring (5) each comprise a continuously variable pitch and are symmetrical with respect to a line (A) parallel to the first and second planes and passing through the median projection plane (P) of the fastener (4), each curve being such that the following relationship is substantially zero: P not = not + 1 The not + 1 0 The ds s not x s
Figure imgb0010

or : - P ( n ) is the moment of the spiral of order n; - L is the length of the hairspring; - s n represents the curvilinear abscissa along the spiral at the power of order n ; - x ( s ) is the parameterization of the spiral by its curvilinear abscissa. in order to reduce the displacements of its center of mass during its contraction and expansion and in that each spiral spring (3, 5) further comprises at least two counterweights (8, 8 ', 9, 9') in order to compensate for the unbalance formed by the mass of the fastener (4) and customize the anisochronism slope of the spiral (1).
Spiral (1) selon la revendication précédente, caractérisé en ce que lesdits au moins deux contrepoids (8, 8', 9, 9') sont symétriques selon ladite même droite (A) que les courbures.Spiral (1) according to the preceding claim, characterized in that said at least two counterweights (8, 8 ', 9, 9') are symmetrical along the same line (A) as the curvatures. Spiral (1) selon la revendication 1 ou 2, caractérisé en ce que deux contrepoids (8, 8') sont situés à côté de l'attache (4) et deux autres contrepoids (9, 9') sont situés du côté opposé à l'attache (4) afin de minimiser le balourd.Spiral (1) according to claim 1 or 2, characterized in that two counterweights (8, 8 ') are located next to the fastener (4) and two other counterweights (9, 9') are located on the opposite side to the clip (4) to minimize unbalance. Spiral (1) selon l'une des revendications précédentes, caractérisé en ce que chaque contrepoids (8, 8', 9, 9') est sensiblement en forme de H, les bras parallèles du H étant sensiblement parallèles à la courbure locale du ressort-spiral (3, 5) auquel il est associé.Spiral (1) according to one of the preceding claims, characterized in that each counterweight (8, 8 ', 9, 9') is substantially H-shaped, the parallel arms of the H being substantially parallel to the local curvature of the spring -spiral (3, 5) with which it is associated. Spiral (1) selon l'une des revendications précédentes, caractérisé en ce que les raideurs et/ou les masses apportées localement par lesdits contrepoids (8, 8', 9, 9') et ladite attache (4) sont utilisées pour modifier la pente d'anisochronisme du spiral (1).Spiral (1) according to one of the preceding claims, characterized in that the stiffnesses and / or the masses provided locally by said counterweights (8, 8 ', 9, 9') and said fastener (4) are used to modify the slope of anisochronism of the spiral (1). Spiral (1) selon l'une des revendications précédentes, caractérisé en ce que les faces principales (11, 12) de l'attache (4) sont sensiblement parallèles à ladite droite de symétrie (A).Spiral (1) according to one of the preceding claims, characterized in that the main faces (11, 12) of the fastener (4) are substantially parallel to said line of symmetry (A). Spiral (1) selon l'une des revendications précédentes, caractérisé en ce que la spire interne (7) du deuxième ressort-spiral (5) comporte un dispositif de décalage (13) agencé pour être attaché à un piton dans le plan du deuxième ressort-spiral (5).Spiral (1) according to one of the preceding claims, characterized in that the inner coil (7) of the second spiral spring (5) comprises an offset device (13) arranged to be attached to a pin in the plane of the second spiral spring (5). Spiral (1) selon la revendication précédente, caractérisé en ce que le dispositif de décalage (13) comporte une pièce en prolongement (14) de la spire interne (7) du deuxième ressort-spiral (5), ladite pièce étant plus rigide que ledit deuxième ressort-spiral afin de ne pas fournir de couple élastique.Spiral (1) according to the preceding claim, characterized in that the shifter (13) comprises an extension piece (14) of the inner coil (7) of the second spiral spring (5), said piece being more rigid than said second spiral spring so as not to provide an elastic torque. Spiral (1) selon la revendication précédente, caractérisé en ce que la pièce en prolongement (14) est reliée à la spire interne à l'aide d'un coude (15) sensiblement en forme de U.Spiral (1) according to the preceding claim, characterized in that the extension piece (14) is connected to the inner coil with a bend (15) substantially U-shaped. Spiral (1) selon la revendication 8 ou 9, caractérisé en ce que la pièce en prolongement (14) est venue de matière avec le deuxième ressort-spiral (5).Spiral (1) according to claim 8 or 9, characterized in that the extension piece (14) is integral with the second spiral spring (5). Spiral (1) selon l'une des revendications 8 à 10, caractérisé en ce que la pièce en prolongement (14) est rendue plus rigide par une épaisseur au moins trois fois supérieure par rapport à celle dudit deuxième ressort-spiral.Spiral (1) according to one of claims 8 to 10, characterized in that the extension piece (14) is made more rigid by a thickness at least three times greater than that of said second spiral spring. Spiral (1) selon l'une des revendications 8 à 11, caractérisé en ce que la pièce (14) peut être partiellement ajourée pour diminuer sa masse.Spiral (1) according to one of claims 8 to 11, characterized in that the piece (14) may be partially perforated to reduce its mass. Spiral (1) selon l'une des revendications précédentes, caractérisé en ce que la spire interne (6) du premier ressort-spiral (3) comporte un dispositif d'agrandissement (17) de la virole (10) dans le plan du premier ressort-spiral (3).Spiral (1) according to one of the preceding claims, characterized in that the inner coil (6) of the first spiral spring (3) comprises an enlarging device (17) of the shell (10) in the plane of the first spiral spring (3). Spiral (1) selon la revendication précédente, caractérisé en ce que le dispositif d'agrandissement (17) comporte un bourrelet (18) prolongeant la spire interne (6) du premier ressort-spiral (3), ledit bourrelet étant plus rigide que ledit premier ressort-spiral afin de ne pas fournir de couple élastique.Spiral (1) according to the preceding claim, characterized in that the enlarging device (17) comprises a bead (18) extending the inner coil (6) of the first spiral spring (3), said bead being more rigid than said first spring spiral so as not to provide elastic torque. Spiral (1) selon la revendication précédente, caractérisé en ce que le bourrelet (18) est sensiblement en forme de U.Spiral (1) according to the preceding claim, characterized in that the bead (18) is substantially U-shaped. Spiral (1) selon la revendication 14 ou 15, caractérisé en ce que le bourrelet (18) est venu de matière avec le premier ressort-spiral (3).Spiral (1) according to claim 14 or 15, characterized in that the bead (18) is integral with the first spiral spring (3). Spiral (1) selon l'une des revendications précédentes, caractérisé en ce qu'il est formé à partir de silicium.Spiral (1) according to one of the preceding claims, characterized in that it is formed from silicon. Spiral (1) selon la revendication précédente, caractérisé en ce qu'il comporte au moins une partie recouverte de dioxyde de silicium afin de limiter sa sensibilité aux variations de température et aux chocs mécaniques.Spiral (1) according to the preceding claim, characterized in that it comprises at least one portion coated with silicon dioxide in order to limit its sensitivity to temperature variations and mechanical shocks. Résonateur pour une pièce d'horlogerie comportant un balancier caractérisé en ce que le balancier coopère avec un spiral (1) conforme à l'une des revendications précédentes.Resonator for a timepiece comprising a balance characterized in that the rocker cooperates with a hairspring (1) according to one of the preceding claims.
EP12194292.4A 2012-01-05 2012-11-26 Hairspring with two spiral springs with improved isochronism Active EP2613206B1 (en)

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