EP3502791B1 - Boite de montre a lunette tournante interchangeable - Google Patents

Boite de montre a lunette tournante interchangeable Download PDF

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Publication number
EP3502791B1
EP3502791B1 EP17208774.4A EP17208774A EP3502791B1 EP 3502791 B1 EP3502791 B1 EP 3502791B1 EP 17208774 A EP17208774 A EP 17208774A EP 3502791 B1 EP3502791 B1 EP 3502791B1
Authority
EP
European Patent Office
Prior art keywords
bezel
ring
watch case
angular
circular element
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP17208774.4A
Other languages
German (de)
English (en)
French (fr)
Other versions
EP3502791A1 (fr
Inventor
Jean-Claude Wahler
Philipp Tschumi
Martial Bringolf
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Certina AG
Original Assignee
Certina AG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Certina AG filed Critical Certina AG
Priority to EP17208774.4A priority Critical patent/EP3502791B1/fr
Priority to CH01568/17A priority patent/CH714476A2/fr
Priority to JP2018232175A priority patent/JP6694943B2/ja
Priority to CN201811542662.6A priority patent/CN109946946B/zh
Priority to KR1020180163823A priority patent/KR102148576B1/ko
Priority to US16/227,330 priority patent/US11126142B2/en
Publication of EP3502791A1 publication Critical patent/EP3502791A1/fr
Application granted granted Critical
Publication of EP3502791B1 publication Critical patent/EP3502791B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • 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
    • G04B19/00Indicating the time by visual means
    • G04B19/28Adjustable guide marks or pointers for indicating determined points of time
    • G04B19/283Adjustable guide marks or pointers for indicating determined points of time on rotatable rings, i.e. bezel
    • 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
    • G04B19/00Indicating the time by visual means
    • G04B19/28Adjustable guide marks or pointers for indicating determined points of time
    • G04B19/283Adjustable guide marks or pointers for indicating determined points of time on rotatable rings, i.e. bezel
    • G04B19/286Adjustable guide marks or pointers for indicating determined points of time on rotatable rings, i.e. bezel with locking means to prevent undesired rotations in both directions
    • 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
    • G04B37/00Cases
    • G04B37/0008Cases for pocket watches and wrist watches
    • 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
    • G04B37/00Cases
    • G04B37/0008Cases for pocket watches and wrist watches
    • G04B37/0041Cases for pocket watches and wrist watches the cover or the bottom can slide or turn with a spring action
    • 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
    • G04B47/046Changeable decorations and parts thereof, decorations for the case which change the external appearance of the clockwork

Definitions

  • the invention relates to the field of watchmaking. It relates more particularly to a watch case with a rotating bezel, as well as a watch equipped with such a case.
  • Watch cases with a rotating bezel are commonly used in diving watches. However, they are suitable for many other activities, especially sports, which require timing.
  • the bezel which generally rotates in one direction (most frequently counterclockwise) is provided with a graduation, typically in tens or quarters, and an index of zero (usually in the form of a triangle one of which points towards the center of the watch).
  • the wearer turns the bezel at the start of the session to align the index with the minute hand. During its journey, it then indicates, to the right of the graduation of the bezel, the time elapsed during the session.
  • This mechanism is of complex architecture and delicate to use.
  • the positioning of the telescope in its unstable angular position must be carried out extremely precisely, otherwise the pins tend to return to their normal position of use in which they prevent the withdrawal of the telescope. It is difficult for a normal user to replace the glasses himself, especially in the midst of sports activities. In fact, it seems that this operation can only be carried out successfully in the workshop.
  • the toothed indexing ring is no longer held on the middle part, and care should be taken not to drop it or even misplace it.
  • a second objective is, while satisfying the first objective, to minimize the number of parts ensuring the holding of the bezel.
  • a third objective of the invention is to form a complete interchangeable unit (integrating the bezel), the parts of which remain integral during removal.
  • the invention proposes to provide a solution in which no individual part, after dismantling the bezel, is not connected to the bezel or to the middle part of the watch case, so as to avoid loss or damage to the watch case. such an individual part by a user of the watch in question or a positioning error during a reassembly of a bezel on the caseband.
  • the telescope In its deployed position, the telescope is capable of rotating in order to be placed in one or other of the positions of the plurality of stable angular positions.
  • To remove the telescope it should be put in an angular position allowing it to be pushed in, then press it towards its retracted position so as to place the coupling system in the coupling configuration, and, finally, to rotate the telescope (which causes the strapping) to disengage each fin from its respective bayonet. Therefore, the sub-assembly comprising the bezel and the fixing structure, on board with it, can be removed from the middle part and replaced by another sub-assembly comprising a different bezel, the fixing structure being able to be assembled with the different bezel. or each bezel has its own fixing structure.
  • the watch case also includes a limited number of parts, which simplifies its manufacture and increases its reliability.
  • FIG. 1 On the FIG. 1 is shown a box 1 intended to equip a watch.
  • the watch includes various components not shown: clockwork movement (mounted in box 1), bracelet (attached to the box), crystal, case back.
  • Case 1 comprises, first of all, a caseband 2.
  • Caseband 2 can be made of metal (eg steel, preferably stainless), or a synthetic material (eg, a composite material comprising a polymer matrix. loaded with fibers, typically carbon).
  • FIG. 1 caseband 2 is circular in outline.
  • the middle 2 defines an interior space configured to accommodate the movement.
  • the middle part 2 comprises horns 3 on which the bracelet is intended to be hooked for wearing the watch on the wrist. Leaving aside the lugs 3, the middle part 2 has a general symmetry of revolution about a central X axis.
  • axial denotes a general direction parallel to the central X axis.
  • transverse or “horizontal” denotes a general orientation in a plane perpendicular to the central X axis.
  • radial designates a general direction along an axis perpendicular and concurrent with the central X axis.
  • tangential designates a general direction along a circle around the central X axis.
  • top and bottom are used in their classic definition, in a position of the box 1 where the latter is laid flat, horns down.
  • the middle 2 defines a peripheral track 4.
  • This track has a circular contour around the central X axis and extends in a transverse plane.
  • the track is bordered internally by a sleeve 5 which projects axially projecting from the track 4, and externally by a flange 6 which also extends axially projecting from the track.
  • the height of the flange 6, measured from the track, is less than that of the socket 5 (also measured from the track).
  • Bayonets are formed in the middle 2. At least two bayonets are provided, eg. diametrically opposed. In the example illustrated, three bayonets 7 are provided (here distributed at 120% around the central X axis). According to a preferred embodiment, each bayonet 7 comprises a groove 8 made in the rim 6, and a notch 9 into which the groove 8 emerges tangentially.
  • Each notch 9 appears, in the illustrated embodiment, as a cutout in the rim 6, which tangentially interrupts the upper face 11 of the groove 8.
  • the bayonet 7 ends with a blind end 13. This blind end is located tangentially opposite the notch 9, and closes the groove 8.
  • the watch case 1 comprises, secondly, a rotating bezel 14 removably mounted on the middle part 1.
  • the bezel is in the form of an annular part.
  • the bezel has an upper face 15 on which is affixed or formed a graduation 16.
  • the graduation comprises indexes, some of which are figurative and are in the form of numbers (preferably Arabic).
  • One of the indexes, called zero index 17, is in the form of a triangle pointing towards the inside of the bezel 14, to form an origin mark from which the user measures, in minutes, the time. elapsed from a predetermined initial instant corresponding to a precise angular position of the bezel with respect to the caseband 2.
  • the bezel 14 also has an opposite lower face 18, which extends opposite the middle part 1 - and more precisely opposite the track 4. As illustrated in the figures. FIG. 7 and FIG. 9 , the bezel is provided with an annular rib 19 which projects radially inwards.
  • the bezel is preferably made of a metallic material, e.g. Stainless steel.
  • the watch case 1 comprises, thirdly, a toothed crown 20.
  • This toothed crown which, as we will see, serves for the angular indexing of the bezel 14 relative to the middle part 2, comprises a peripheral series of teeth 21, here sixty in number.
  • each tooth 21 is asymmetrical, and comprises an inclined ramp 22 and a vertical stop surface 23, optionally connected by a horizontal plate 24.
  • the toothed crown 20 is formed in the material of the bezel 14, that is to say that they together form a single one-piece piece.
  • the toothed crown 20 opens downwards, that is to say that each tooth 21 protrudes in the direction of the caseband 2, on the side of the underside 18 of the bezel 14, below the rib 19 ring finger
  • the box 1 comprises, fourthly, a structure SF for removable fixing of the bezel 14 on the caseband 2.
  • the fixing structure SF comprises, firstly, a ring 25. This ring is provided with a collar. 26 ring finger. The collar 26 extends transversely to the right of the track 4.
  • the ring 25 also comprises a cylindrical skirt 27 which projects axially from an inner edge of the flange 26, so that in cross section the ring has an L-shaped (or square) profile.
  • the ring 25 comprises at least one hook 28 (here in the form of a notched elastic tab) for fixing to the bezel 14.
  • the ring 25 comprises a peripheral series of hooks 28, distributed uniformly (or not) on the periphery. of the ring 24.
  • the (or each) hook projects axially.
  • the (or each) hook 28 projects axially from an upper edge of the skirt 27.
  • each hook 28 has, on an upper edge, a notch 29 by which the hook 28 engages with the annular rib 19 of the bezel 14. It is by the snap-fit of the notch 29 on the rib that the ring 25 is found attached to the bezel 14, on the side of the underside 18 thereof.
  • the ring is mounted on the middle part 2 by fitting the skirt 27 on the sleeve 5 ( FIG. 7 and FIG. 9 ).
  • the flange 26 has an outer diameter smaller than the inner diameter of the rim 6 of the middle part 2, measured at the level of the sleeve 5. In this way, the flange can freely be fitted onto the middle part 2, or be freely removed therefrom.
  • the collar 26 is not necessarily in contact with the track 4 but slightly away from the latter.
  • the ring 25 is preferably made of a metallic material (eg steel). However, it can be made from a plastic material (advantageously of high hardness, for example polyoxymethylene or POM).
  • the fixing structure SF comprises, secondly, a ring 30 interposed between the bezel 14 and the ring 25. This ring is integral in rotation with the ring.
  • the ring 30 comprises a hoop 31.
  • This hoop extends transversely in a circular manner around the axis X, and in line with the collar 26 of the ring 25.
  • the hoop 31 has an upper face 32, facing the lower face 18 of the bezel, and, on the other hand, a lower face 33, facing the collar 26 of the ring.
  • the strapping 31 carries radially projecting fins 34 (outwardly), each capable of fitting removably into a bayonet 7.
  • the overall diameter of the ring 30, measured at the level of the fins 34, is greater than the internal diameter of the rim 6 of the caseband 2, measured to the right of the bayonet 7.
  • the ring 30 is mounted on the ring 25 while being nested on the skirt 27.
  • the internal diameter of the ring 30 is greater than the external diameter of the skirt 27.
  • the internal edge of the strapping 31 can be grooved in line with the hooks.
  • the ring 30 further comprises at least one ratchet spring 35 which projects from the upper face 32 of the strapping 31 to form an angular indexing member of the bezel 14.
  • the ratchet spring 35 resiliently cooperates with it.
  • the ring gear 20 to define a plurality of stable angular positions (as many as there are teeth 21, here consequently sixty in number) of the bezel 14 relative to the middle part 2.
  • at least two pawl springs are provided.
  • the ring 30 includes three pawl springs 35. The springs are in this case distributed so as to balance the forces, typically at 120 ° around the X axis.
  • Each spring 35 is preferably formed integrally (i.e. integrally) with the strapping 31.
  • each spring is formed by a strip cut from an internal edge of the strapping, then pushed upwards.
  • Ring 30 is preferably made entirely of spring steel, its shaping being e.g. produced by stamping.
  • the ring 30 is mounted on the ring 25. As illustrated on FIG. 7 , the strapping 31 is axially wedged in abutment against the collar 26.
  • the ring 30 also comprises at least one claw 36 which protrudes from the lower face 33 of the strapping 31, and which cooperates with a complementary cutout 37, made opposite in the ring 25 (and more precisely in the collar 26) .
  • the ring 30 preferably comprises, to distribute the forces, several claws 36 (three in number in the embodiment of the FIG. 1 ; two in number in the embodiment of the FIG. 11 ), while the ring 25 includes several corresponding cutouts 37 (at number of three in the embodiment of the FIG. 1 ; two in number in the embodiment of the FIG. 11 ).
  • each claw 36 is received in the corresponding cutout 37. This results in a connection in rotation of the ring and the ring.
  • the ring 30 is fixed to the middle part 2 by a combined movement comprising an axial translation, during which the fins 34 are introduced into the notches 9, followed by a rotation around the X axis, during which each fin 34 is introduced tangentially into a groove 8.
  • This combined movement completed the ring 25 is held captive between the ring and the middle part 2. More precisely, even though the skirt 27 of the ring 25 is fitted onto the sleeve. 5 of the caseband, its collar 26 is held axially captive between the ring 30 and the track 4.
  • the blind end 13 of at least one of the grooves 8 forms an angular end-of-travel stop for the rotation of the ring 30.
  • the watch case 1 advantageously comprises a mechanism 38 for locking the ring 30 relative to the middle part 2, at the angular end of the ring travel during its assembly.
  • the ring 30 is provided with leaf springs 39 (here three in number arranged at 120 ° around the X axis for a uniform distribution of the forces) which protrude from the lower face 33 of the strapping to come into contact against the annular track 4 of the middle part 2, axially urge the ring upwards and thus press the fins 34 against the upper face 11 of the groove 8 of their respective bayonet 7.
  • the ring 25 is provided, directly above each, with a notch 40 made in the collar 26.
  • the locking mechanism 38 comprises at least one lug 41 protruding from the ring 30, adjacent to a fin 34, and able to snap into a recess of the middle 2 to the left. 'blind end 13 of bayonet 7.
  • each lug and the recess associated with it can be provided at other locations, for example each lug is placed along a respective fin and the recess is arranged in the middle of the corresponding groove of the bayonet in question.
  • each fin and each corresponding bayonet be provided with the same locking mechanism, so that a specific fin is not dedicated to a single given bayonet.
  • the lug 41 comprises a chamfered front edge 42 and a right rear edge 43.
  • the axial translation takes place against the return force of the leaf springs 39, which tends to move the ring axially away from the track 4.
  • the blind end 13 of the bayonet 7 is provided with a reserve 45 in which is snapped the lug 41 at the end of travel, by deployment of the leaf springs 39.
  • the ring 30 is then pressed against the upper face 11 of the groove 8 by the return force of the leaf springs and it is locked in rotation in this closed position.
  • the pawl springs 35 exert on the crown 20 (and therefore on the bezel 14) an axial force which tends to move the bezel 14 away from the middle part 2.
  • the ring 25 is attached to the bezel, the ring is axially stressed. until it comes to rest against the lower face 33 of the strapping 31, which explains the configuration illustrated on the FIG. 7 (in which, taking into account the position of the cutting plane, the bayonet 7 is not visible - this is however visible on the FIG. 9 ).
  • the elastic boss 46 is in the form of a ball mounted on an elastic support (eg a slide mounted in axial translation in a hole 48 made in the track 4, with the interposition of a spring of reminder).
  • an elastic support eg a slide mounted in axial translation in a hole 48 made in the track 4, with the interposition of a spring of reminder.
  • the ring 25 is advantageously provided, in addition to the notch 47 which is wedged on the ball 46 in the locked position ( FIG. 14 ), a wider recess 49 which is positioned around the ball 46 during the axial translation accompanying the joint fixing of the ring 30 and the ring on the middle part 2 ( FIG. 13 ).
  • the recess 49 is angularly offset from the notch 47 by an angle corresponding substantially to the angular extension of a bayonet 7.
  • the locking mechanism 38 may comprise pawl springs, provided in radial projection on a peripheral edge of the ring 30 (and more precisely of the strapping 31), and able to cooperate by snap-fastening with reserves recessed radially formed in the middle part.
  • the male part 50 of the coupling system SC is integral with the bezel, while the female part 51 is integral with the fixing structure SF.
  • the male part 50 is in the form of a pin which projects from the underside 18 of the bezel 14.
  • the pin 50 is advantageously an attached part.
  • the pin is fitted into a hole 52 made in the bezel 14 and emerging on the side of its lower face 18 (see the detail at the top left on the FIG. 2 ).
  • a single pin 50 can be provided, as in the example shown in the FIG. 11 and FIG. 12 . As a variant, several pins can be provided.
  • the female part 51 of the coupling system SC is in the form of an opening made in the ring 30. More precisely, this opening 51, with an advantageously closed contour, is made in the strapping 31.
  • the female part of the system of SC coupling is therefore formed by a recess in the ring and, in general, by a part of this ring forming two stops for the pin, during the rotation of the bezel in the retracted position, respectively in both directions of rotation .
  • the coupling system SC comprises several pins 50, then, correspondingly, it comprises several openings 51 made in the ring 30.
  • the pin 50 is axially separated from the strapping 31.
  • the system Coupling SC is in decoupling configuration, and the telescope can freely rotate with respect to the strapping; the bezel can then be operated by the wearer for example to measure a time interval.
  • the opening 51 preferably has an angular extension equal to or slightly greater than the diameter of the pin 50.
  • the opening 51 is in the form of an oblong hole, which allows a low angular displacement of the bezel 14 when the pin 50 is housed in the opening, for the benefit of ease of use.
  • the recess forming the female part of the coupling system advantageously exhibits angular play when the male part is positioned inside this recess.
  • the ring 25 may itself also be provided, in line with the opening 51 in the ring, with a secondary opening 53 capable of accommodating a end of pin 50 (see detail medallions middle left on FIG. 1 and on the FIG. 12 ).
  • the box 1 comprises one or more stop (s) 54 for limiting the axial travel of the bezel 14.
  • This (these) stop (s) is (are) for example. carried by the telescope 14.
  • the (or each) stopper is in the form of an attached pin, fitted into a complementary hole 55 made in the bezel 14 on the side of its lower face 18.
  • the box 1 comprises for example at least two stops 54 arranged on either side, and close to the (or each) pin 50, as illustrated in FIG. FIG. 10 .
  • Each stopper is situated axially set back from the pin 50, so as to allow the latter to be inserted into the opening 51. Whatever the number of pins, it is preferable to provide several stops 54 distributed over the circumference of the bezel 14 to distribute the forces.
  • the ring 30 is mounted on the ring 25 by threading it over the skirt 27.
  • the hooks 28 pass through the opening. interior of the strapping 31 without difficulty, especially if it is grooved internally to the right of the hooks.
  • the strapping 31 comes to rest on the collar 26.
  • the bezel 14 is snapped onto the ring 25, the hooks 28 flexing elastically before hooking onto the annular rib 19.
  • the ring 30 is then sandwiched between the bezel and the ring, the pawl springs 35 cooperating. with the teeth 21 of the crown 20 and exerting an axial return force which tends to move the bezel 14 away from the ring 25 and thus to keep the notches 29 of the hooks resting against the rib 19. Under these conditions, the collar 26 is applied against the lower face 33 of the strapping 31.
  • the length of the pin 50, and its axial positioning in its hole 52, are such that, even when it is not aligned with the opening 51, it nevertheless allows sufficient axial movement of the bezel 14 to allow it to snap into place. on the ring 25.
  • the bezel 14 is advantageously unidirectional. Given the orientation of the pawl springs 35, the bezel is, here, constrained to a rotation (with respect to the ring 30 and to the ring 25 which remain fixedly fixed in rotation with respect to the middle part 2) in the anticlockwise. As the ring and the ring are invisible to the wearer, the latter only sees the rotation of the bezel 14 relative to the caseband 2.
  • the timing of an activity is done as follows.
  • the wearer rotates the bezel 14 until the index 17 is brought from zero in line with the minute hand.
  • the pin 50 being spaced from the upper face 32 of the ring 30, it in no way hinders the rotation of the bezel.
  • the passage of time causes the minute hand to travel through an angular sector on the bezel 14, which allows the wearer to measure on the graduation the time elapsed (eg ten or fifteen minutes) since the moment at which it was taken. carried out the positioning of the index 17 from zero.
  • the angular position of the bezel 14 corresponding to the alignment of the pin with the opening 51 can be determined by the alignment of visual marks (eg lines or dots) formed respectively on the bezel and on the middle 2 .
  • the axial support on the bezel 14 enables the lug 41 to be released from the reserve 45, and therefore to unlock the ring 30 to release it in rotation relative to the caseband 2. and thus allow disassembly of the bezel.
  • the sub-assembly thus removed can then be set aside, and replaced by another sub-assembly comprising a bezel 14 of different shape and / or color, according to the assembly procedure already described.
  • the frame SF for fixing the bezel can be in the form of a single piece. More precisely, it is conceivable that the ring 25 and the ring 30 are formed in the same piece made in one piece. Conversely, the fixing structure SF could include a larger number of parts.
  • leaf springs 39 may be carried by the ring 30, it is alternatively conceivable that such leaf springs are formed on a separate part, e.g. by a retaining ring underlying the ring 25.
  • the skirt 27 is integrated into the ring 25, it could be envisaged, in a variant, that it be in the form of a separate part, which would form a ring ensuring an axial connection of the the bezel 14 to the flange 26.
  • Such a connection can be achieved by providing in the internal machining of the bezel a groove into which the hooks 28 are inserted with a small clearance.
  • the springs 39 may be integral not with the ring 30 but with the collar 26, for example be integral with this collar and produced by cutting the latter.
  • the pins 54 forming stops for transmitting an axial force applied to the bezel during its dismantling, can be omitted without risk of damaging the pawl springs 35 and the teeth of the ratchet. ring gear 20, because this axial force is then directly transmitted from the bezel to the collar carrying the springs 39.
  • the pawl springs 35 and the fins 34 are formed by the ring 30, one could imagine, in a variant, that they are formed by two separate parts but integral in rotation within the SF fixing structure.
  • the removable fixing system of a rotating bezel on a middle part has a particular advantage in that the bayonets provided in an internal wall of the middle part are not only suitable for receiving a rotating bezel, unidirectional or bidirectional, but also a non-rotating bezel provided with fixing fins integral with such a bezel. It will therefore be understood that the present invention makes it possible to have a very large choice for a set of glasses capable of being associated alternately with the middle part of the watch case in order to vary its appearance and, where appropriate, its functionality.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Snaps, Bayonet Connections, Set Pins, And Snap Rings (AREA)
  • Adornments (AREA)
EP17208774.4A 2017-12-20 2017-12-20 Boite de montre a lunette tournante interchangeable Active EP3502791B1 (fr)

Priority Applications (6)

Application Number Priority Date Filing Date Title
EP17208774.4A EP3502791B1 (fr) 2017-12-20 2017-12-20 Boite de montre a lunette tournante interchangeable
CH01568/17A CH714476A2 (fr) 2017-12-20 2017-12-20 Boîte de montre à lunette tournante interchangeable.
JP2018232175A JP6694943B2 (ja) 2017-12-20 2018-12-12 交換可能な回転式ベゼルを備えた腕時計ケース
CN201811542662.6A CN109946946B (zh) 2017-12-20 2018-12-17 带可互换的旋转表圈的表壳
KR1020180163823A KR102148576B1 (ko) 2017-12-20 2018-12-18 교체가능한 회전 베젤을 갖는 시계 케이스
US16/227,330 US11126142B2 (en) 2017-12-20 2018-12-20 Watch case with interchangeable rotating bezel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP17208774.4A EP3502791B1 (fr) 2017-12-20 2017-12-20 Boite de montre a lunette tournante interchangeable

Publications (2)

Publication Number Publication Date
EP3502791A1 EP3502791A1 (fr) 2019-06-26
EP3502791B1 true EP3502791B1 (fr) 2020-12-02

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP17208774.4A Active EP3502791B1 (fr) 2017-12-20 2017-12-20 Boite de montre a lunette tournante interchangeable

Country Status (6)

Country Link
US (1) US11126142B2 (ko)
EP (1) EP3502791B1 (ko)
JP (1) JP6694943B2 (ko)
KR (1) KR102148576B1 (ko)
CN (1) CN109946946B (ko)
CH (1) CH714476A2 (ko)

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US11231686B2 (en) * 2019-06-05 2022-01-25 Walter Neighbors Watch having an in interchangeable bezel
EP3754435B1 (fr) * 2019-06-21 2021-12-29 The Swatch Group Research and Development Ltd Piece d'horlogerie a cornes rapportees
EP3796104B1 (fr) 2019-09-20 2022-04-20 The Swatch Group Research and Development Ltd Sous-ensemble d'habillage pour pièce d'horlogerie ou montre ou bijou
CH716627A1 (fr) * 2019-09-23 2021-03-31 Mft Dhorlogerie Audemars Piguet Sa Matériau composite forgé.
EP3800514B1 (fr) * 2019-10-04 2024-01-17 Comadur S.A. Anneau ressort d'encliquetage d'une lunette tournante
EP3958067A1 (fr) * 2020-08-17 2022-02-23 The Swatch Group Research and Development Ltd Dispositif de fixation d'un fond sur une carrure pour piece d'horlogerie
KR20220102314A (ko) * 2021-01-13 2022-07-20 삼성전자주식회사 전자장치 및 그 제조방법
EP4177678A4 (en) 2021-01-13 2024-03-06 Samsung Electronics Co Ltd ELECTRONIC DEVICE AND ITS MANUFACTURING METHOD
JP2022177439A (ja) * 2021-05-18 2022-12-01 セイコーエプソン株式会社 時計
CN113219810B (zh) * 2021-05-20 2022-07-29 读书郎教育科技有限公司 一种电话手表控制装置及方法
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CN109946946A (zh) 2019-06-28
KR20190074985A (ko) 2019-06-28
US11126142B2 (en) 2021-09-21
JP2019113543A (ja) 2019-07-11
JP6694943B2 (ja) 2020-05-20
EP3502791A1 (fr) 2019-06-26
CN109946946B (zh) 2021-02-02
KR102148576B1 (ko) 2020-08-27
US20190187619A1 (en) 2019-06-20
CH714476A2 (fr) 2019-06-28

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