EP1727005B1 - Einschraubkrone und Montageverfahren dieser Krone auf ein Uhrgehäuse - Google Patents

Einschraubkrone und Montageverfahren dieser Krone auf ein Uhrgehäuse Download PDF

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Publication number
EP1727005B1
EP1727005B1 EP05104391A EP05104391A EP1727005B1 EP 1727005 B1 EP1727005 B1 EP 1727005B1 EP 05104391 A EP05104391 A EP 05104391A EP 05104391 A EP05104391 A EP 05104391A EP 1727005 B1 EP1727005 B1 EP 1727005B1
Authority
EP
European Patent Office
Prior art keywords
ring
crown
tube
threaded ring
screwing
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.)
Not-in-force
Application number
EP05104391A
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English (en)
French (fr)
Other versions
EP1727005A1 (de
Inventor
Laurent Coste
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.)
Pibor Iso SA
Original Assignee
Pibor Iso SA
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 Pibor Iso SA filed Critical Pibor Iso SA
Priority to DE602005006249T priority Critical patent/DE602005006249D1/de
Priority to EP05104391A priority patent/EP1727005B1/de
Priority to AT05104391T priority patent/ATE393416T1/de
Publication of EP1727005A1 publication Critical patent/EP1727005A1/de
Application granted granted Critical
Publication of EP1727005B1 publication Critical patent/EP1727005B1/de
Not-in-force 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
    • G04B37/00Cases
    • G04B37/08Hermetic sealing of openings, joints, passages or slits
    • G04B37/10Hermetic sealing of openings, joints, passages or slits of winding stems
    • G04B37/103Hermetic sealing of openings, joints, passages or slits of winding stems by screwing the crown onto the case
    • GPHYSICS
    • G04HOROLOGY
    • G04DAPPARATUS OR TOOLS SPECIALLY DESIGNED FOR MAKING OR MAINTAINING CLOCKS OR WATCHES
    • G04D1/00Gripping, holding, or supporting devices
    • G04D1/0007Gripping, holding, or supporting devices for assembly entirely by hand

Definitions

  • the present invention relates to the field of watchmaking. More particularly, it relates to a screw-type watch crown, such as a winding crown. The invention also relates to a method of assembling such a crown on a watch case, for orienting the crown in a specific position.
  • Document is known WO 01/40881 a screwed crown comprising a first part formed of a head having a front face on which is affixed a logo or a mark which, in the screwed position of this ring, has a specific angular orientation relative to the box.
  • This first part is connected to the movement in a conventional manner.
  • the head is provided on the side opposite the front face, an annular groove which receives an internally threaded ring.
  • This ring is positioned relative to the head using a template so as to index the tapping relative to the logo which has, therefore, a determined angular position and known with respect to the entry of the tapping.
  • the crown further includes a second portion connected to the watch case.
  • This second part comprises an intermediate tube and a nut intended to immobilize the tube on the box in an angular position determined.
  • the tube comprises two externally threaded sections which cooperate respectively with the nut and the indexed tapping of the ring gear.
  • the tube is freely mounted in a smooth through hole in the box. This tube is then wedged using a template to arrange the thread entry in an angular position such that, when the ring is screwed abutting on the tube, the logo is in a defined angular position relative to the box. Once this calibration operation is completed, the tube is immobilized by the nut.
  • such a device has an additional disadvantage. Indeed, the positioning of the tube is performed according to the particular crown with which it is mounted, the relative positions of the two threaded portions being determined and very difficult to change. However, if the crown is inadvertently damaged during assembly or if, in use, it is damaged and a change of crown has to be made, it is then necessary to remove the tightness of the tube to be able to reposition it in relation to the box. The watchmaker who makes this repair must again seal and test, these operations being particularly tedious.
  • a shape memory alloy ring is interposed between the box and the first part of the second tube, so as to allow the creation of a temporary game between the tube and the box.
  • the sealing conditions that a crown screw must present seem difficult to meet with such a device, since if the ring was to deform or if the return of the ring to its normal size was not perfect, the consequences would be very unfortunate.
  • the present invention aims to provide a screw-in crown that can be oriented and reoriented easily in a manner defined with respect to the box, while ensuring a perfect seal at the interface between the crown and the box.
  • the locking member is formed of a nut cooperating with the threaded ring and intended to rest on the watch case.
  • the second part of the second tube has a shoulder against which the nut pushes the ring.
  • the ring comprises, at its base supported against the box, a flange.
  • the locking member is a plate pressed against the box, provided with an opening whose diameter is slightly greater than that of the threaded ring, so as to let the latter while bearing on the flange.
  • the second part of the second tube comprises a shoulder, a space being left free between the threaded ring and the shoulder.
  • the locking member is formed of a ring gear fixed relative to the box and a toothing which is provided with the threaded ring. The toothing may move between a first position in which it cooperates with the ring gear and a second position in which it is free relative to this ring gear.
  • the crown according to the invention comprises a head 14 having a front face 16 with a pattern or logo.
  • This mark or logo has a non-circular geometry. It is therefore preferable that the crown, in the screwed-in position, has a determined angular orientation with respect to the box 12.
  • the ring 10 is kinematically connected to a movement control rod, in particular a winding stem, via a piece 18 called piston.
  • a movement control rod in particular a winding stem
  • the head 14 is connected to this piston 18 by connecting means comprising a first tube 20 secured to the head 14 and sliding on the piston 18, and a spring member 22 which ensures the engagement of the head 14 and the control rod when the ring 10 is in the unscrewed position.
  • the head 14 also has a side face 24 which extends on the end of the tube 20, parallel to it, and whose outer wall is provided with grooves.
  • the side face 24 defines, between the tube 18 and its inner wall, a space 26 whose role will appear later.
  • This inner wall is provided with a threading 28 intended, as will be better understood hereinafter, to screw the crown 10.
  • a second tube 30 is driven into a smooth hole 32 passing through the middle part of the box 12 and defining an edge 36.
  • the tube 30 can also be screwed into the box. hole 32 then having a thread.
  • the tube 30 is permanently positioned, perfectly sealed, by usual techniques, in particular by welding or gluing.
  • the end of the outer portion also comprises a second shoulder 38 whose role will appear later.
  • the outer part is smooth and has no threading.
  • a threaded ring 40 is freely fitted on the outer portion of the tube 30.
  • the ring 40 occupies the entire zone delimited by the second shoulder, that is to say the zone between the two shoulders 34 and 38. It is and perfectly positioned in the axis of the rod 18, between the edge of the middle and the second shoulder 38.
  • sealing means are positioned between the first 20 and the second 30 tubes. More specifically, a seal 42 is housed in a groove 44 formed inside the second tube 30.
  • the ring 40 is free to rotate on the outer portion of the tube, it can be oriented freely relative to the latter. In particular, the entry of its thread can be positioned precisely. It is then necessary to be able to maintain the position of the ring 40 in position.
  • a locking member is arranged to position and hold the ring with respect to the tube 30.
  • this locking member is constituted by a nut 46 which is screwed on the thread of the ring 40, on the side of the middle part. When the nut 46 is tightened, it pushes the ring 40 against the second shoulder 38, thus keeping it in position.
  • the threading 28 can then collaborate with the threaded ring 40 to screw or unscrew the ring 10 which can drive the rod when it is in the unscrewed position.
  • the smooth hole 32 opens, outside the box, in an annular housing 48 of diameter greater than that of the ring 10.
  • the first shoulder 36 is at depth relative to the edge of the middle part 12 and the nut 46 rests on the bottom of the housing 48.
  • the prominence of the assembly is decreased.
  • the ring 40 has two portions of different threads.
  • the thread of the portion on which the ring 10 is screwed has a greater pitch than that of the portion cooperating with the nut 46.
  • a tool 50 in three elements 52, 54, 56 is illustrated on the figure 3 which includes an enlarged view of the essential elements. This tool and its use are described below.
  • the first step in adjusting the orientation of the crown logo is to define the initial orientation of the threaded ring 40.
  • the crown 10 is mounted on the rod 18 and screwed completely, as would the user.
  • the angular deviation of the logo from the desired position is then raised.
  • the ring 10 is then dismounted.
  • the ring 40 being blocked by the nut 46, these operations are done without it moving.
  • the second step is to orient the threaded ring 40 in the desired position.
  • We understand the difficulty of this operation since in a small space, it must be possible to release the ring of the locking member, orient it accurately and block it again without turning.
  • the tool mentioned above aims to solve this problem.
  • the first element 52 of the tool is of tubular overall shape. It is hollow and ends with a first end 52a whose profile is sized to fit on the nut. If the case has a housing 48, this end 52a adapts, in addition, to the shape of the housing. At its second end 52b, the element has a wider portion, possibly knurled, which keeps it rotating.
  • the first element 52 is mounted on the nut.
  • the second element 54 of the tool is also tubular. For the most part, its outside diameter is slightly smaller than the inside diameter of the first element 52. It is hollow and ends with a first end 54a which can be screwed onto the threaded ring. This first end leaves a free space between the ring and the element 54. At its second end 54b, the element has a wider portion, optionally knurled, which keeps it rotating. The second element is introduced into the first, and is screwed onto the threaded ring 40, to the vicinity of the nut 46 leaving a gap.
  • the third element 56 of the tool is of cylindrical overall shape. Its outside diameter is slightly less than the inside diameter of the second element 54. It ends with a first end 56a which can be screwed onto the threaded ring 40 in the space left free by the second element 54. At its second end 56b, the element has a structure, possibly a knurling, which allows its screwing on the ring.
  • the third element 56 is inserted in the second 54, screwed on the ring 40 while the element 54 is retained in rotation, until the locking of the element 56 on the element 54. In this way, the threaded ring 40 and the second 54 and third 56 elements are made integral.
  • the nut 46 is then screwed and locked by action on the first element 52.
  • the position of the threaded ring 40 is ensured during this operation by maintaining the assembly formed by the ring 40 and the second 54 and third 56 elements.
  • the elements 54 and 56 can then be unscrewed, then the first element 52 is removed.
  • the crown 10 is then raised and screwed and its orientation is controlled. If necessary, the aforementioned operations are repeated.
  • the figure 4 represents a first variant of the locking member of the threaded ring 40.
  • the housing 48 formed in the middle takes a more important place.
  • the ring 40 comprises, at its base supported against the middle part, a flange 60 which extends on the bottom of the housing 48.
  • a plate 62 whose contour is adjusted, is disposed in the housing 48. It is provided with an opening whose diameter is slightly greater than that of the ring 40, so as to let the latter while bearing on the flange 60.
  • Two screws 64 cooperate with two threads formed in the middle to press the plate on the flange 60, thus maintaining the ring 40 in rotation.
  • the screws 64 could also bear directly on the flange 60 of the ring, preferably without passing through it, simply by crushing the edge of the flange 60 between a portion of the head of the screw and the middle part. In this way, it is not necessary to completely remove the screws 60 to allow rotation of the ring 40.
  • the figure 5 illustrates a further variant for the locking member of the threaded ring 40 and has an enlarged view of a part of this member.
  • the threaded ring 40 is lower than in the above versions and does not occupy the entire area between the shoulders 36 and 38. A space 68 is thus left free between the ring and the second shoulder. It is intended to receive a resilient split ring 70, circlip type.
  • the threaded ring 40 has an internal toothing 72 located at one of its ends.
  • the tube 30 is not smooth and has on its outer periphery a ring gear 74 juxtaposed along the axis of the rod 18 to a groove 76, located between the ring gear 74 and the space 68.
  • the ring gear 74 can also be directly juxtaposed to the space 68, which then plays the role of the groove 76.
  • the threaded ring 40 is positioned on the tube 18. When the teeth of one and the other cooperate, the ring 40 is kept rotating. The circlip 70 is then placed in the space 68, resting on the second shoulder 38 to maintain the ring 40 in the direction of the axis of the tube. The teeth are kept engaged and the ring is locked.
  • the toothed portion 72 which is provided with the threaded ring could also extend on the outside and cooperate with a toothing formed directly in the box 12, disposed in the housing 48.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Adornments (AREA)
  • Gasket Seals (AREA)

Claims (12)

  1. Schraubkrone (10), die dazu bestimmt ist, auf einem Uhrengehäuse (12) Platz zu nehmen, in dessen Innern ein Uhrwerk eines Uhrenstücks Platz nimmt, umfassend:
    - einen Kopf (14) mit einer Frontfläche (16), die mit einem Logo mit einer nicht kreisförmigen Geometrie versehen ist, und einer Seitenfläche (24) mit einer Innenwand mit einem Gewinde, und
    - ein erstes Rohr (20), das mit dem Kopf (14) verbunden ist und dazu bestimmt, kinematisch mit dem besagten Uhrwerk verbunden zu sein,
    - ein zweites Rohr (30), in welchem das besagte erste Rohr (20) Platz nimmt, gebildet aus einem ersten Abschnitt, der dazu bestimmt ist, seine ständige Befestigung auf dem Gehäuse der Uhr zu gewährleisten, und einem zweiten Abschnitt, der derart aufgebaut ist, um aus dem Gehäuse nach außen herauszutreten,
    dadurch gekennzeichnet, dass sie weiterhin umfasst:
    - einen Gewindering (40), der dazu bestimmt ist, mit dem Gewinde der besagten Innenwand zusammenzuarbeiten, der auf dem zweiten Abschnitt frei drehend montiert ist, ohne davon abziehbar zu sein, und
    - ein Blockierorgan, das dazu bestimmt ist, die Rotation des besagten Rings im Verhältnis zum besagten Rohr zu blockieren.
  2. Schraubkrone nach Anspruch 1, dadurch gekennzeichnet, dass das besagte Blockierorgan von einer Mutter (46) gebildet wird, die mit dem besagten Gewindering (40) zusammenarbeitet und dazu bestimmt ist, sich auf dem Uhrengehäuse (12) zu stützen, wobei der besagte zweite Abschnitt des zweiten Rohrs (30) einen Absatz (38) aufweist, gegen den die besagte Mutter (46) den besagten Ring (40) drückt.
  3. Schraubkrone nach Anspruch 2, dadurch gekennzeichnet, dass der besagte Ring (40) dimensioniert ist, um den gesamten Bereich des zweiten Abschnitts des besagten zweiten Rohrs (30) zu besetzen, der von dem besagten Absatz (38) begrenzt wird.
  4. Schraubkrone nach einem der Ansprüche 2 und 3, dadurch gekennzeichnet, dass der besagte Ring zwei Abschnitte mit unterschiedlichen Gewinden aufweist.
  5. Schraubkrone nach Anspruch 1, dadurch gekennzeichnet, dass der besagte Ring (40) an seiner gegen das Gehäuse (12) gedrückten Basis einen Rand (60) aufweist, und dadurch, dass das besagte Blockierorgan eine gegen das Gehäuse (12) gespannte Platte (62) ist, wobei die besagte Platte (62) mit einer Öffnung ausgestattet ist, deren Durchmesser etwas größer ist als der Durchmesser des Rings (40), so dass dieser passieren kann und sich dabei auf dem besagten Rand (60) abstützt.
  6. Schraubkrone nach Anspruch 1, dadurch gekennzeichnet, dass der besagten zweite Abschnitt des zweiten Rohrs (30) einen Absatz (38) aufweist, wobei ein Raum (68) zwischen dem besagten Ring (40) und dem besagten Absatz (38) freigelassen ist, und dadurch, dass das besagte Blockierorgan von einer im Verhältnis zum Gehäuse (12) starren Zahnkrone (74) gebildet wird, und von einer Zahnung (72), mit der der besagte Gewindering (40) ausgestattet ist, wobei die besagte Zahnung (72) zwischen einer ersten Stellung, in der sie mit der besagten Zahnkrone (74) zusammenarbeitet, und einer zweiten Stellung, in der sie relativ zu der besagten Zahnkrone (74) frei ist, bewegbar ist.
  7. Schraubkrone nach Anspruch 6, dadurch gekennzeichnet, dass ein gespaltener elastischer Ring (70) aus dem besagten Raum (68) herausziehbar ist, um den Übergang der besagten Zahnung (72) aus ihrer ersten in ihre zweite Stellung zu erlauben, und in den besagten Raum (68) einsetzbar ist, um den Übergang der besagten Zahnung (72) von ihrer zweiten in ihre erste Stellung zu erlauben.
  8. Schraubkrone nach einem der Ansprüche 6 und 7, dadurch gekennzeichnet, dass die besagte Zahnkrone (74) auf dem besagten zweiten Rohr neben einer Nut angeordnet ist.
  9. Schraubkrone nach einem der Ansprüche 6 und 7, dadurch gekennzeichnet, dass die besagte Zahnkrone (74) auf dem Gehäuse (12) angeordnet ist.
  10. Schraubkrone nach einem der Ansprüche 1 bis 9, dadurch gekennzeichnet, dass an der Schnittstelle zwischen dem besagten ersten und zweiten Rohr Abdichtmittel (42) angeordnet sind.
  11. Verfahren zur Ausrichtung einer Schraubkrone nach einem der Ansprüche 1 bis 6, dadurch gekennzeichnet, dass es die folgenden Schritte umfasst:
    - Montieren der Krone (10), wobei der Gewindering (40) vom Blockierorgan gehalten wird,
    - Festlegen der Erstausrichtung des besagten Gewinderings (40) im Verhältnis zum besagten zweiten Rohr (30),
    - Demontieren der Krone (10), wobei der Gewindering (40) vom Blockierorgan gehalten wird,
    - Freisetzen des Gewinderings (40) vom Blockierorgan,
    - Ausrichten des besagten Gewinderings (40) im Verhältnis zum besagten zweiten Rohr,
    - Halten des Gewinderings (40) durch das Blockierorgan in der Stellung, die beim vorangehenden Schritt eingenommen wurde, und
    - Montieren der Krone (10).
  12. Werkzeug für die Montage einer Krone nach einem der Ansprüche 2 bis 4 gemäß dem Verfahren nach Anspruch 11, dadurch gekennzeichnet, dass es umfasst:
    - ein erstes, allgemein rohrförmiges Element (52), das durch ein erstes Ende (52a) abschließt, dessen Profil dimensioniert ist, um sich auf der Mutter (46) anzupassen, und durch ein zweites Ende (52b), das eine Struktur aufweist, die es erlaubt, auf die Rotation des besagten ersten Elements einzuwirken,
    - ein zweites, allgemein rohrförmiges Element (54) mit einem Durchmesser, der etwas kleiner ist als der Innendurchmesser des ersten Elements (52), und das durch ein erstes Ende (54a) abschließt, das angepasst ist, um auf den Gewindering (40) geschraubt zu werden, und durch ein zweites Ende (54b), das eine Struktur aufweist, die es erlaubt, auf seine Rotation einzuwirken und es in Rotation zu halten, wobei das besagte erste Ende angepasst ist, um einen Freiraum zwischen dem Ring und ihm zu lassen, und
    - ein drittes, allgemein zylindrisches Element (56) mit einem Durchmesser, der etwas kleiner ist als der Innendurchmesser des zweiten Elements, und das durch ein erstes Ende (56a) abschließt, das angepasst ist, um in dem Raum, der vom besagten zweiten Element freigelassen wurde, auf den Gewindering (40) geschraubt zu werden, und durch ein zweites Ende (56b), das eine Struktur aufweist, die es erlaubt, auf seine Rotation einzuwirken.
EP05104391A 2005-05-24 2005-05-24 Einschraubkrone und Montageverfahren dieser Krone auf ein Uhrgehäuse Not-in-force EP1727005B1 (de)

Priority Applications (3)

Application Number Priority Date Filing Date Title
DE602005006249T DE602005006249D1 (de) 2005-05-24 2005-05-24 Einschraubkrone und Montageverfahren dieser Krone auf ein Uhrgehäuse
EP05104391A EP1727005B1 (de) 2005-05-24 2005-05-24 Einschraubkrone und Montageverfahren dieser Krone auf ein Uhrgehäuse
AT05104391T ATE393416T1 (de) 2005-05-24 2005-05-24 Einschraubkrone und montageverfahren dieser krone auf ein uhrgehäuse

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP05104391A EP1727005B1 (de) 2005-05-24 2005-05-24 Einschraubkrone und Montageverfahren dieser Krone auf ein Uhrgehäuse

Publications (2)

Publication Number Publication Date
EP1727005A1 EP1727005A1 (de) 2006-11-29
EP1727005B1 true EP1727005B1 (de) 2008-04-23

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EP05104391A Not-in-force EP1727005B1 (de) 2005-05-24 2005-05-24 Einschraubkrone und Montageverfahren dieser Krone auf ein Uhrgehäuse

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EP (1) EP1727005B1 (de)
AT (1) ATE393416T1 (de)
DE (1) DE602005006249D1 (de)

Families Citing this family (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CH699877A1 (fr) * 2008-10-31 2010-05-14 Pibor Iso S A Couronne a visser et procédé d'orientation d'une telle couronne sur une boîte de montre.
EP2385432A2 (de) 2010-05-04 2011-11-09 Rolex Sa Uhrgehäuse
CH705089A2 (fr) * 2011-06-08 2012-12-14 Omega Sa Dispositif et procédé de fixation d'un élément de montre avec orientation angulaire réglable.
EP3279745B1 (de) 2016-08-02 2023-06-14 Meco S.A. Ausrichtbare geschraubte krone
EP3451071B1 (de) * 2017-09-01 2020-07-22 Omega SA Vorrichtung mit drucktaste für uhr
CN112965362B (zh) * 2019-12-12 2022-07-29 华为技术有限公司 一种操作穿戴设备的装置
CN112433460B (zh) * 2020-11-26 2022-03-01 歌尔科技有限公司 一种表冠及具有该表冠的腕戴设备
CN114967405B (zh) * 2022-05-30 2023-12-05 天王电子(深圳)有限公司 手表底盖组装工具

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CH1445170A4 (de) * 1970-09-30 1975-03-14
FR2783939B1 (fr) * 1998-09-25 2000-11-17 Herve Schick Dispositif de reglage pour montre etanche
CH705218B1 (fr) * 1999-12-02 2013-01-15 Ks 22 S A Procédé de montage d'une couronne vissée sur une boîte de montre.
CH705649B1 (fr) * 2000-02-08 2013-04-30 Boninchi Sa Dispositif permettant le réglage de l'orientation d'une couronne à vis d'une montre par rapport à la carrure de la montre.

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Publication number Publication date
ATE393416T1 (de) 2008-05-15
EP1727005A1 (de) 2006-11-29
DE602005006249D1 (de) 2008-06-05

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