EP3099197B1 - Stein, der auf ein federelement montiert ist - Google Patents

Stein, der auf ein federelement montiert ist Download PDF

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Publication number
EP3099197B1
EP3099197B1 EP15702380.5A EP15702380A EP3099197B1 EP 3099197 B1 EP3099197 B1 EP 3099197B1 EP 15702380 A EP15702380 A EP 15702380A EP 3099197 B1 EP3099197 B1 EP 3099197B1
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EP
European Patent Office
Prior art keywords
support
crimping
setting system
crimping support
opening
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EP15702380.5A
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English (en)
French (fr)
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EP3099197A1 (de
Inventor
Gabriel Chevallier
Kéwin Bas
Sébastien JOUVENOT
Romain MOYSE
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Cartier International AG
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Cartier International AG
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Publication of EP3099197A1 publication Critical patent/EP3099197A1/de
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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
    • G04B47/00Time-pieces combined with other articles which do not interfere with the running or the time-keeping of the time-piece
    • G04B47/04Time-pieces combined with other articles which do not interfere with the running or the time-keeping of the time-piece with attached ornaments or amusement apparatus
    • G04B47/042Fastening of jewels and the like
    • AHUMAN NECESSITIES
    • A44HABERDASHERY; JEWELLERY
    • A44CPERSONAL ADORNMENTS, e.g. JEWELLERY; COINS
    • A44C17/00Gems or the like
    • A44C17/02Settings for holding gems or the like, e.g. for ornaments or decorations
    • A44C17/0275Settings for holding gems or the like, e.g. for ornaments or decorations in an oscillating way

Definitions

  • the present invention relates to a crimping system for a timepiece or jewelery in which a gemstone is mounted to give a visual effect of vibration of the stone.
  • the present invention also relates to a watch face and a timepiece or jewelery including such a crimping system.
  • a jewelery item has diamonds being illuminated with an illumination source.
  • a controller controls the illumination source so as to vary the intensity of the light emitted by the source, thus making it possible to better highlight the optical effects of the diamond.
  • it is often undesirable to use electronic devices in timepieces or high-end jewelry.
  • the document EP2510824 discloses a jewelery article comprising a precious stone fixed in a kitten mounted on a pivotal element made of plastic or elastomer. Although the whole kitten stone can move, its movement on the pivot element does not give a visual effect of vibration of the stone.
  • the utility model RU100367U describes a jewelery item comprising a gemstone set in a washer-shaped kitten, this set of stone-kitten is bonded to a base of the article by a cylindrical spring.
  • the vibration of the stone mounted on the spring causes a refraction effect of the light. Fixing the ends of the spring to the kitten and the base is however complicated and delicate.
  • small springs required in the case of small stones, the latter can be deformed excessively when the stone moves in relation to its original position, peeling the vibration movement of the stone and therefore the aesthetics of the room.
  • the dimensioning of the spring so as to obtain the desired visual effect makes it fragile and the spring can also be irreversibly deformed by shocks.
  • the patent application WO2012 / 115458 discloses a jewelery article comprising a ring-shaped carrier having a hollow sector in which a kitten is mounted by means of a spiral or conical spring.
  • the ends of the spring are fixed in grooves in the support and in the kitten respectively, and the kitten is oscillated under the effect of external excitations on the support.
  • a pin is mounted through the upper part of the kitten, each end of the pin being housed in the support in a plane parallel to the plane of the spring (the spring being attached to a lower part of the kitten) .
  • the pin is used to prevent the separation of the kitten and the support in case of major shocks.
  • the lower part of the kitten can only vibrate in a direction perpendicular to the pin in the plane of the spring, and the upper part of the kitten remains effectively secured to the support.
  • An object of the present invention is to provide a crimping system for a timepiece or jewelery free of limitations of the prior art known.
  • Another object of the invention is to obtain a crimping system having a much easier and reliable assembly of the stone in comparison with known systems, and being better adapted to the use of small stones.
  • a crimping system for a timepiece or jewelery article comprising a crimping support, a precious stone mounted in or on the crimping support, and a fixed elastic element.
  • the elastic element is fixed on the article, the rest of the elastic element deforming elastically under the effect of the acceleration of the mass of the stone and the crimping support; the crimping system further comprising a stop more rigid than the elastic element, the abutment being adapted to cooperate with the crimping support, so as to limit the amplitude of the axial and radial movement of the crimping support when the latter moves relative to the article, the stop not coming into contact with the crimping support when the latter is in its rest position or when it undergoes only shocks below a certain threshold.
  • the present invention also relates to a dial of a timepiece and a timepiece or jewelery comprising said crimping system.
  • the figures 1 and 2 show a sectional view of a crimping system 1 for a watch or jewelery article 6, according to one embodiment.
  • the crimping system 1 comprises a crimping support 3, or kitten, in which is mounted a gemstone 2, such as a diamond, ruby, sapphire or emerald.
  • a gemstone means at least one gemstone 2, the support 3 being able to support a plurality of gemstones 2.
  • the crimping support 3 comprises a frontal portion 9 of frustoconical shape and serving as a seat for the cylinder head 8 of the stone 2.
  • the inclination of the profile 7 of the front portion 9 is arranged to ensure the maintenance of the cylinder head 8
  • the support 3 may also comprise a bore 16 coaxial with the support 3.
  • the crimping system 1 also comprises an elastic element 5 of which a first end 13 is fixed to the crimping support 3 and the other end 17 to the timepiece or jewelery 6.
  • the elastic element 5 elastically connects the crimping support 3 with the stone 2 to the article 6, so that the stone 2 can oscillate or vibrate on the elastic element 5 following a movement of the article 6 (in other words, so that that the crimping support, and therefore the stone, can oscillate or vibrate on the elastic element 5 following a movement of the article 6).
  • the end 17 of the elastic element 5 fixed on the article 6 remains fixed (relative to the article), while the rest of the elastic element 5 deforms elastically under the effect of the acceleration of the mass of the stone 2 and the crimping support 3.
  • the stiffness of the element 5, the mass of the stone 2 and the crimping support 3, as well as the intensity of the shock are the main factors defining the amplitude of the vibrations (or oscillations) of the stone 2.
  • the oscillation of the stone 2 is in a radial movement with respect to an axis of symmetry 15 and an axial movement relative to this same axis 15. It will be noted, however, that the amplitude of the axial movements along the axis 15 are small in comparison with the radial movements along this same axis.
  • the crimping system 1 further comprises a stop 18 more rigid than the elastic element 5 and arranged to cooperate with the crimping support 3 so as to limit the amplitude of the axial and / or radial movement of the stone 2 (in other words , so as to limit the amplitude of axial and / or radial movement of the crimping support, and therefore of the stone mounted in the crimping support 3) when the latter oscillates.
  • the stop may be rigid or it may have a slight elasticity. In other words, the stop has a second stiffness K 2 greater than the first stiffness K 1 of the elastic element 5.
  • proximal means on a near side of the stone 2
  • distal means on a side remote from the stone 2.
  • radial corresponds to a plane perpendicular to the axis of symmetry 15.
  • a radial movement corresponds to a lateral displacement with respect to the axis of symmetry 15, so to the left or the right on the figures 1 and 2 .
  • axial corresponds to a plane parallel to the axis of symmetry 15.
  • an axial movement corresponds to a displacement oriented along the axis of symmetry 15, hence from top to bottom on the figures 1 and 2 .
  • the elastic element comprises a cylindrical spring 5 having the shape of a tube.
  • the crimping support 3 comprises a peg 30, integral with the crimping support 3 and being housed, at least in part, in a first end 13 of the spring 5, so as to fix the peg 30 to the elastic element 5 by Tightening.
  • the second end 17 of the spring 5 is fixed in article 6 by at least one of the methods comprising tightening, driving, clipping or welding, or any other appropriate method.
  • the stop takes the form of a bar 18 concentrically housed in the cylindrical spring 5. The bar 18 extends over at least a portion of the length of the cylindrical spring 5, and preferably almost all this length.
  • the proximal end 20 of the bar 18 cooperates with the crimping support 3 which serves as a counter-stop when the stone 2 (mounted in the crimping support 3) is oscillated.
  • the second end 17 of the spring 5 is fixed to the article 6 by means of a pin 14.
  • the pin 14 is fixed, for example by driving or by screwing, in the article 6 and the second end 17 of the spring 5 is attached, for example by clamping, to the pin 14.
  • the distal end of the bar 18 passes through a hole in the pin 14 and is fixed to the support 6 by a suitable method, such as driving, clamping or clipping.
  • the crimping support 3, in this case the ankle 30, comprises a recess 19 in which the proximal end 20 of the bar 18 extends.
  • the amplitude of the radial movement of the stone 2 is limited by the proximal end 20 of the bar 18 abutting against an inner wall 21 of the recess 19.
  • the bar 18 does not come into contact with the crimping support 3 when the latter is in its rest position or when it is subjected only to shocks below a certain threshold.
  • the size of the recess and the size of the bar in a manner appropriate for a given elastic member 5, it can be ensured that the bar 18 abuts against the wall 21 when an impact is above a threshold at which a permanent deformation of the elastic element 5 can take place.
  • the crimping support 3 carrying the stone 2 can oscillate or vibrate freely as long as there is no risk of damaging the system.
  • the cylindrical spring 5 generally comprise at least one turn on a portion of its length, for example in the middle of the spring 5.
  • the spring 5 may also comprise turns in the vicinity of the two ends 13, 17 of the spring 5 and the turns in a portion between the two ends 13, 17.
  • the turns in the vicinity of both ends 13, 17 may have a height much greater than the turns included in the portion of the spring 5 located between the two ends 13, 17.
  • the spring 5 can be made of metal or plastic by a laser cutting process or any other appropriate method.
  • the first end 13 of the spring 5 comprises an opening 12, or a slit of elasticity, for absorbing radially elastically and / or plastically deformed at least a portion of the driving force of the ankle 30.
  • Such an opening 12 may also be provided at the second end 17 of the spring 5, for example to facilitate the driving, when the spring 5 is driven into the pin 14.
  • a single abutment element of the crimping system can be adapted to cooperate with the crimping support so as to limit the amplitude of the radial movement and the amplitude of the movement. axial position of the crimping support 3.
  • the inner wall 21 comprises fins 191 radially deformable.
  • the fins 191 forming a distal opening 190.
  • the bar 18 includes a proximal head 35 having a decreasing diameter distally. The largest diameter 36 of the proximal head 35 is smaller than the diameter 192 of the cavity 19 but greater than the diameter of the distal opening 190. The proximal head 35 can therefore be inserted into the cavity 19 from the distal opening 190 By deformation of the fins 191. Once the proximal head 35 is inserted into the cavity 19, it abuts against the fins 191 when the crimping support 3 is impacted above the threshold.
  • the radial displacement of the crimping support 3 is therefore limited by the axial fins 191 abutting against the proximal head 35.
  • the axial displacement of the crimping support 3 is also limited by the distal ends of the fins 191, which are generally L-shaped, abutting against the proximal head 35.
  • the proximal head 35 and the bar 18 are formed integrally with the pin 14.
  • the bar 18 has a concave shape corresponding to the diameter of the proximal head 35 decreasing distally.
  • the proximal head 35 and the fins 191 may be sized so that, when the proximal head 35 is inserted into the cavity 19, the axis of rotation of the crimping holder 3 on the proximal head 35 (represented by the number 151 in the figure 9 ) as low as possible.
  • this axis of rotation 151 is shown at about one-third of the total height H of the spring 5.
  • the ratio of the distance h between the distal opening 190 and the length of the spring 5 is about one-third.
  • the ratio of the distance h to the total height H of the spring 5 is about a quarter or less.
  • an ankle 30 extends distally from the crimping support 3 and includes a distal head 32 at its distal end.
  • the distal end 17 of the spring 5 is attached to the article 6 via a distal fixation member comprising a first support member 22 extending radially from the distal end 17 of the spring 5.
  • the the distal attachment member also includes a second support member 24 extending radially substantially parallel to the first support member to the first support member 22.
  • the second support member 24 includes a second opening 240 in which substantially concentrically the distal head 32.
  • a flexible member 64 is housed between the first support member 22 and the second support member 24.
  • the flexible member 64 has a flexible opening 63 concentric with the first opening 220 and the second opening 240.
  • the figure 11a shows an exploded view of the crimping system 1 in which the first support member 22, the flexible member 64 and the second support member 24 are individually visible.
  • the figure 11b shows an example of a quadrilobe shape that can take the flexible opening 63.
  • the distal head 32 has a decreasing diameter distally and its largest diameter 33 is greater than the diameter of the flexible opening 63 (shown by the dashed circle 65 in the figure 11b ).
  • the distal end 17 of the spring 5 can be arranged to snap rigidly into the first support member 22.
  • the distal head 32 passes through the flexible opening 63 and is housed in the second opening 240
  • the flexibility of the flexible opening 63 makes it possible to pass the distal head 32 despite its diameter 33 greater than the diameter 65 of the flexible opening 63.
  • the axial displacement of the crimping support 3 upwards is limited by a flat portion 39 of the distal head 32 which abuts against the flexible element 64 (against the portions 641 between the lobes of the flexible opening 63 in the example shown in FIG. figure 11b ).
  • the second opening 240 may comprise a concentric housing 243 allowing a certain axial displacement of the flexible element 64 in said housing 243.
  • the axial displacement of the crimping support 3 downwards is limited by the compression of the turns of the spring 5.
  • the opening 220 of the first support member 22 comprises a flange 222 of smaller diameter than the maximum diameter 33 of the distal head 32.
  • the first support member 22 may be sufficiently flexible to insert the distal head 32 in the first opening 220 through the collar 222. Once the distal head 32 passed through the opening 220, the axial displacement of the crimping support 3 upwards is limited by the flat portion 39 abutting against the flange 222.
  • the figure 11a shows different possible configurations for the first opening 220 and the flange 222.
  • the figure 11b shows a detail of an aperture 63 of quadrilobe shape whose parts 641 between the lobes play the role of the collar.
  • the elastic member comprises a flat spring 50 extending radially from the crimping support 3.
  • the elastic element comprises a band 51 having a plurality of flat springs 50, each flat spring 50 being attached to a crimping support 3 (only one being shown on the figure 5 ).
  • the band 51 is mounted on a first rigid support member 22 extending radially and can be fixed to the article 6 by fastening means typically including screws and nuts 224.
  • Each of the flat springs 50 may take the form of a flat spiral spring or a flexible membrane, for example an elastomer.
  • the flat spring 50 may also comprise a helical spring, for example conical.
  • the flat spring 50 allows the crimping support 3, and thus the stone 2, to oscillate or vibrate radially and axially by deformation of the spring 50 following a movement of the article 6.
  • the radial movement of the stone 2 is limited by the crimping support 3 abutting against a radially extending abutment member.
  • the crimping system 1 comprises a second support member 24 extending radially above the first support member 22.
  • the second support member 24 can be attached to the first support member 22 via the screws 223, as illustrated in the figure 5 .
  • the second support member 24 has a plurality of openings 240, each of the openings 240 being in axial alignment with one of the crimping supports 3. In this configuration, the radial oscillation amplitude of the stone 2 is limited by the crimping support 3 abutting against the lateral wall of the opening 240.
  • the wall of the opening 240 has a first chamfer 241 made on one of the faces of the second support member 24 so that, when the stone 2 (mounted on its crimping support 3) oscillates, the inclined face 31 of the crimping support 3 bears on the first chamfer 241.
  • the crimping support 3 comprises a proximal element 34 in the form of a disc or boss extending generally radially from the crimping support 3 and having an inclined face 340.
  • the proximal disc 34 is configured so that the inclined face 340 comes into position. stop on the wall of the opening 240 so as to limit the radial movement of the stone 2.
  • the wall may also include a second chamfer 242 on the opposite face of the second support member 24, so that the inclined face 340 abuts against the second chamfer 242.
  • the crimping support 3 comprises a pin 30 extending distally in the first support member 22.
  • the radial movement of the stone 2 is limited by the pin 30 of the crimping support 3 abutting against the radial stop element.
  • the first support element 22 has an opening 220 concentric with the crimping support 3 and extending axially below the elastic element 50.
  • the elastic element 50 can be fixed to the crimping support 3 so that during the oscillation of the stone 2, the pin 30 oscillates in opposition with the stone 2.
  • the pin 30 can abut against the wall 221 of the opening 220, limiting the radial movement of the stone 2.
  • the wall 221 thus constitutes a radial abutment element.
  • the ankle 30 comprises a distal element 32 in the form of a disc or bump extending radially from a distal portion of the ankle 30.
  • a distal element 32 in the form of a disc or bump extending radially from a distal portion of the ankle 30.
  • the distal disk 32 may be manufactured in one piece with the crimping support 3 or as a separate part which is subsequently fixed on the dowel 30 of the support. crimping 3.
  • the crimping system 1 also comprises an axial abutment element 23 extending radially and centered on the axis of symmetry 15.
  • the element 23 is fixed to the first support element 22 by the intermediate screw 223 below the latter, as illustrated in FIG. figure 4 .
  • the crimping support 3 abuts against the axial abutment element 23 and limits the amplitude of the axial movement of the stone 2.
  • the crimping support 3 comprises the pin 30, it is the latter which abuts against the axial abutment element 23.
  • the ankle 30 of the crimping support 3 extends distally beyond the first support member 22 so that the distal disk 32 is under the first support member 22.
  • the distal disk 32 abuts against the lower face 225 of the first support member 22 so as to limit the axial movement of the stone 2 (mounted in the crimping support 3) during an axial displacement of the stone 2 to the top.
  • the disk or the distal element 32 also has the unbalance function, because it allows, by its dimensioning and its mass, to position the center of gravity of the oscillating elements (the stone 2 and the crimping support) and thus of balance and keep this set at the same inclination in vertical and horizontal position, under the effect of gravity.
  • the crimping system 1 may comprise a plurality of crimping supports 3, or even an array of crimping supports 3 allowing, for example, to represent a pattern.
  • the crimping system 1 may also comprise a single crimping support 3.
  • the distal fixation element comprises a second support element 24.
  • the ankle 30 comprises a distal head 32 arranged to cooperate, in the manner of a ball joint, with the wall 241 of a second opening, here taking the form of a a cavity 240 formed in the second support member 24.
  • a flat spring 50 cooperates with the pin 30 at an axial position 38, between the distal head 32 and the crimping support 3, so that the ankle 30 and the crimping support 3 can oscillate around the distal head 32 with respect to an axis of symmetry 15.
  • the distal attachment member also includes a first support member 22 on which the flat spring 50 is mounted.
  • the first support member 22 includes a first opening 220 through which the pin 30 passes. When the crimping support 3 is shocked. above the threshold, the pin 30 abuts between the axial position 38 and the crimping support 3 with a wall 221 of the opening 220.
  • the flat spring 50 may be a flat spiral spring or a flexible membrane.
  • the crimping system 1 is fixed in a dial of a timepiece.
  • the crimping system 1 can also be fixed on another part of the timepiece, on a piece of jewelery, or on glasses.
  • the elements Elastics 5 and the abutment elements are not noticeable to the wearer of the article and do not deny the appearance of the article.

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Claims (18)

  1. Crimp-System (1) für einen Uhren- (6) oder Schmuckartikel, umfassend:
    einen Fassungsträger (3);
    einen Edelstein (2), welcher in oder auf dem Fassungsträger (3) montiert ist;
    und ein Federelement (5, 50), welches am Fassungsträger (3) befestigt ist, sodass der Fassungsträger (3) mit dem besagten Artikel (6) auf flexible Weise verbunden ist, damit der Fassungsträger (3) entlang einer axialen und radialen Bewegung in Bezug auf eine Symmetrieachse (15) infolge einer Bewegung des Artikels (6) schwingen kann;
    wobei das Federelement (5, 50) auf dem Artikel (6) befestigt ist, wobei der Rest des Federelements (5, 50) sich unter der Einwirkung der Beschleunigung der Masse des Edelsteins (2) und des Fassungsträgers (3) elastisch verformt,
    dadurch gekennzeichnet, dass das Crimp-System (1) zudem einen Anschlag (18, 221, 241, 23, 35, 38) aufweist, welcher starrer ist als das Federelement (5) ist, wobei der Anschlag (18, 221, 241, 23, 35, 38) mit dem Fassungsträger (3) zusammenzuwirken vermag, um die Amplitude der axialen und/oder radialen Bewegung des Fassungsträger (3) zu begrenzen, wenn Letzterer sich in Bezug auf den Artikel (6) bewegt, wobei der Anschlag (18, 221, 241, 23, 35, 38) nicht in Kontakt mit dem Fassungsträger (3) kommt, wenn sich Letzterer in seiner Ruhelage befindet oder wenn er nur Stössen unterhalb einer bestimmten Schwelle unterworfen wird.
  2. Crimp-System (1) gemäss Anspruch 1, worin sich der Fassungsträger (3) einen Stift (30) umfasst, der sich distal vom Fassungsträger (3) erstreckt und dessen mindestens eine Teil mit dem Anschlag (18, 35, 38, 221, 241, 23) zusammenwirkt.
  3. Crimp-System (1) gemäss Anspruch 2, worin das Federelement (5) mit dem Stift (30) verbunden ist und sich axial zwischen dem Fassungsträger (3) und dem Artikel (6) erstreckt.
  4. Crimp-System (1) gemäss Anspruch 3, worin der besagte Teil des Stifts (30) eine Ausnehmung (19) aufweist, wobei der Anschlag (18, 35) mit einer Wand (21) der Ausnehmung (19) zusammenwirkt.
  5. Crimp-System (1) gemäss Anspruch 4, worin der Anschlag eine Stange (18) umfasst, welche sich auch axial über mindestens einen Abschnitt der Länge des Federelements (5) erstreckt, und dessen eine Ende (20) mit der Wand (21) der Ausnehmung (19) zusammenwirkt.
  6. Crimp-System (1) gemäss Anspruch 5, worin die Wand (21) radial verformbare Flügel (191) umfasst, welche eine distale Öffnung (190) bilden; und worin die Stange (18) einen proximalen Kopf (35) mit einem sich distal verjüngenden Durchmesser aufweist, wobei der grösste Durchmesser (36) des proximalen Kopfes (35) kleiner als der Durchmesser der Ausnehmung (19), jedoch grösser als der Durchmesser der distalen Öffnung (190)) ist, so dass der proximale Kopf (35) in die Ausnehmung (19) aus der distalen Öffnung (190) durch Verformung der Flügel (191) eingeführt werden kann und wobei, nach seiner Einführung davon, der proximale Kopf (35) konfiguriert ist, um gegen die Flügel (191) anzustossen, wenn der Fassungsträger (3) Stössen über der besagten gewissen Schwelle ausgesetzt wird.
  7. Crimp-System (1) gemäss einem der Ansprüche 1 bis 6, worin das Federelement eine zylindrische Feder (5) in Form einer Röhre aufweist, und in welcher der Anschlag (18, 35) untergebracht ist.
  8. Crimp-System (1) gemäss Anspruch 2, mit einem distalen Befestigungselement umfassend ein erstes Stützelement (22), auf welchem das Federelement (5) befestigt ist, wobei das erste Stützelement (22) eine erste Öffnung (220) umfasst; und
    ein zweites distales Stützelement (24), welches sich radial auf im Wesentlichen parallele Weise zum ersten Stützelement (22) erstreckt, und welches eine zweite Öffnung (240) mit einer zweiten, als Anschlag dienende Wand (241) umfasst.
  9. Crimp-System (1) gemäss Anspruch 8, worin der besagte Teil des Stifts (30) einen distalen Kopf (32) aufweist, der sich im Wesentlichen konzentrisch in der zweiten Öffnung (240) erstreckt.
  10. Crimp-System (1) gemäss Anspruch 9, zudem mit einem flexiblen Element (64) zwischen dem ersten Stützelement (22) und dem zweiten Stützelement (24) und mit einer mit der ersten und zweiten Öffnung (220, 240) konzentrischen flexiblen Öffnung (63); und
    worin der distale Kopf (32) einen sich distal verjüngenden Durchmesser aufweist, wobei der grösste Durchmesser (33) des distalen Kopfes (32) grösser als der Durchmesser der flexiblen Öffnung (63) ist, so dass der distale Kopf (32) gegen das flexible Element (64) anstossen kann, um die axiale Bewegung des Fassungsträgers (3) in eine zum Artikel (6) entgegengesetzte Richtung zu begrenzen.
  11. Crimp-System (1) gemäss Anspruch 10, worin die zweite Wand eine erste Abschrägung (241) aufweist, die mit einer geneigten Fläche (31) des Fassungsträgers (3) zusammenwirkt.
  12. Crimp-System (1) gemäss Anspruch 11, worin der Fassungsträger (3) ein proximales Element (34) umfasst, das sich radial vom Fassungsträger (3) erstreckt und eine geneigte Fläche (340) aufweist; und
    worin die zweite Wand eine zweite Abschrägung (242) aufweist, die mit der geneigten Fläche (340) des proximalen Elements (34) zusammenwirkt.
  13. Crimp-System (1) gemäss Anspruch 11 oder 12, worin der besagte Teil des Stifts (30) einen distalen Kopf (32) aufweist, der sich im Wesentlichen konzentrisch in der ersten Öffnung (220) erstreckt und mit der ersten Wand (221) zusammenwirkt.
  14. Crimp-System (1) gemäss einem der Ansprüche 11 bis 13, worin der Anschlag zudem ein axiales Anschlagelement (23) umfasst, der mit dem Stift (30) zusammenzuwirken vermag, um die axiale Bewegung des Fassungsträgers (3) zu begrenzen.
  15. Crimp-System (1) gemäss Anspruch 9, worin der distale Kopf (32) mit der Wand (241) einer zweiten Öffnung (240) wie ein Kugelkopf zusammenwirkt;
    wobei die Feder (50) mit dem Stift (30) in einer axialen Position (38) zwischen dem distalen Kopf (32) und dem Fassungsträger (3) zusammenwirkt, so dass der Stift (30) und der Fassungsträger (3) in Bezug auf eine Symmetrieachse (15) um den distalen Kopf (32) schwingen können.
  16. Crimp-System (1) gemäss einem der Ansprüche 8 bis 15, worin das Federelement (5) eine flache Feder (50) umfasst, welche sich radial aus dem Fassungsträger (3) erstreckt.
  17. Zifferblatt einer Uhr mit dem Crimp-System (1), welches durch einen der Ansprüche 1 bis 16 gekennzeichnet ist.
  18. Uhren- oder Schmuckartikel (6) mit dem Crimp-System (1), welches durch einen der Ansprüche 1 bis 16 gekennzeichnet ist.
EP15702380.5A 2014-01-31 2015-01-07 Stein, der auf ein federelement montiert ist Active EP3099197B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
EP14153533.6A EP2901883A1 (de) 2014-01-31 2014-01-31 Stein, der auf ein Federelement montiert ist
PCT/EP2015/050172 WO2015113788A1 (fr) 2014-01-31 2015-01-07 Pierre montée sur un élément ressort

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EP3099197A1 EP3099197A1 (de) 2016-12-07
EP3099197B1 true EP3099197B1 (de) 2019-09-25

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EP15702380.5A Active EP3099197B1 (de) 2014-01-31 2015-01-07 Stein, der auf ein federelement montiert ist

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EP (2) EP2901883A1 (de)
JP (1) JP6513688B2 (de)
CN (1) CN106163321B (de)
HK (1) HK1209603A1 (de)
WO (1) WO2015113788A1 (de)

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CH710598A1 (fr) * 2015-01-07 2016-07-15 Cartier Int Ag Système de sertissage pour un article d'horlogerie ou de joaillerie
WO2017062817A1 (en) 2015-10-07 2017-04-13 B/E Aerospace, Inc. Flexible led lighting element
USD813702S1 (en) * 2017-03-17 2018-03-27 Citizen Watch Co., Ltd. Watch glass
DE102020112541B4 (de) * 2020-05-08 2022-01-13 Realization Desal Ag Uhrglas mit einem dekorativen Element
EP4012508A1 (de) * 2020-12-08 2022-06-15 Montres Breguet S.A. Anzeigevorrichtung einer uhr auf mehreren ebenen

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Also Published As

Publication number Publication date
US9971308B2 (en) 2018-05-15
JP6513688B2 (ja) 2019-05-15
US20160327912A1 (en) 2016-11-10
CN106163321A (zh) 2016-11-23
HK1209603A1 (en) 2016-04-08
EP3099197A1 (de) 2016-12-07
EP2901883A1 (de) 2015-08-05
JP2017505665A (ja) 2017-02-23
CN106163321B (zh) 2018-10-09
WO2015113788A1 (fr) 2015-08-06

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