EP3561612B1 - Zusammenbauverfahren einer uhr - Google Patents

Zusammenbauverfahren einer uhr Download PDF

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Publication number
EP3561612B1
EP3561612B1 EP18168748.4A EP18168748A EP3561612B1 EP 3561612 B1 EP3561612 B1 EP 3561612B1 EP 18168748 A EP18168748 A EP 18168748A EP 3561612 B1 EP3561612 B1 EP 3561612B1
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EP
European Patent Office
Prior art keywords
configuration
case
stem
stage
assembling
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
EP18168748.4A
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English (en)
French (fr)
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EP3561612A1 (de
Inventor
Mihaela Rotaru
Pierre VILLARET
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.)
Rolex SA
Original Assignee
Rolex 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 Rolex SA filed Critical Rolex SA
Priority to EP18168748.4A priority Critical patent/EP3561612B1/de
Priority to JP2019076118A priority patent/JP7497140B2/ja
Priority to US16/383,797 priority patent/US11347187B2/en
Priority to CN201910328516.1A priority patent/CN110389521B/zh
Publication of EP3561612A1 publication Critical patent/EP3561612A1/de
Application granted granted Critical
Publication of EP3561612B1 publication Critical patent/EP3561612B1/de
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • G04B37/00Cases
    • G04B37/08Hermetic sealing of openings, joints, passages or slits
    • G04B37/10Hermetic sealing of openings, joints, passages or slits of winding stems
    • G04B37/106Hermetic sealing of openings, joints, passages or slits of winding stems of push buttons
    • GPHYSICS
    • G04HOROLOGY
    • G04DAPPARATUS OR TOOLS SPECIALLY DESIGNED FOR MAKING OR MAINTAINING CLOCKS OR WATCHES
    • G04D7/00Measuring, counting, calibrating, testing or regulating apparatus
    • G04D7/006Testing apparatus for complete clockworks with regard to external influences or general good working
    • G04D7/007Testing apparatus for complete clockworks with regard to external influences or general good working with regard to the sealing of the case
    • 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
    • G04B18/00Mechanisms for setting frequency
    • G04B18/08Component parts or constructional details
    • 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
    • G04B37/04Mounting the clockwork in the case; Shock absorbing mountings
    • G04B37/05Fixed mountings for pocket or 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
    • G04B37/08Hermetic sealing of openings, joints, passages or slits
    • G04B37/081Complete encasings for wrist or pocket watches also comprising means for hermetic sealing of the winding stem and crown
    • 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
    • G04B37/11Hermetic sealing of openings, joints, passages or slits of the back cover of pocket or wrist watches
    • GPHYSICS
    • G04HOROLOGY
    • G04DAPPARATUS OR TOOLS SPECIALLY DESIGNED FOR MAKING OR MAINTAINING CLOCKS OR WATCHES
    • G04D7/00Measuring, counting, calibrating, testing or regulating apparatus
    • GPHYSICS
    • G04HOROLOGY
    • G04DAPPARATUS OR TOOLS SPECIALLY DESIGNED FOR MAKING OR MAINTAINING CLOCKS OR WATCHES
    • G04D7/00Measuring, counting, calibrating, testing or regulating apparatus
    • G04D7/006Testing apparatus for complete clockworks with regard to external influences or general good working
    • 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
    • G04B37/12Cases for special purposes, e.g. watch combined with ring, watch combined with button

Definitions

  • the invention relates to a method for mounting or assembling a waterproof timepiece.
  • the invention also relates to a timepiece, in particular a timepiece obtained by implementing such a process.
  • a variation of pressure on a watch movement modifies its rate.
  • the variation is of the order of 0.01 to 0.02 seconds per day and per mmHg, or 10 to 15 seconds per day and per bar. This effect of pressure on the rate of the watch is used in particular to check the tightness of the case as described in the document EP3136189 .
  • the document CH702865A2 describes a diver's watch equipped with a purge valve.
  • the casing step of a movement in a waterproof watch case also influences the rate of the movement, because the locking of the back of the case induces an increase in the pressure within the case. This pressure equilibrates over time to become equal to the pressure of the environment outside the watch case.
  • the adjustment of the bare movement as it will have been presented for inspection or certification, for example to the COSC, is disrupted for a period of a few months, until the overpressure disappears. Once assembled, the watch therefore has a different rate from that of the bare movement.
  • the pressure variation therefore depends on the geometry of the box and the movement. For a watch with a diameter of approximately 40 mm, the variation in pressure linked to the closing of the back can induce a rate delay of nearly one second per day.
  • the period of oscillation of a pendulum is influenced by the surrounding gas.
  • the on-pressure function is generally in the order of 0.01 to 0.02 s/d per mmHg, with a delay when the pressure increases. The larger the balance wheel, the smaller the rate variations.
  • the measurements carried out on different calibers to assess the rate variation as a function of the pressure show a variation of more than 10 seconds per day for a difference of 1 bar and also confirm that the cased movement is practically no longer subject to atmospheric variations.
  • a stabilization time could be estimated at three months for the pressures outside and inside a watch case to balance and for the rate to stabilize.
  • Theoretical pressure calculations are set out below for a watch case having a back screwed onto the middle.
  • the object of the invention is to provide a method for mounting or assembling a sealed timepiece making it possible to remedy the drawbacks mentioned above and to improve the known methods of the prior art.
  • the invention proposes a simple mounting method which makes it possible to improve the chronometric precision of the timepieces thus mounted.
  • Timepieces according to the invention are defined by claims 13 to 15.
  • the timepiece is for example a watch, in particular a wristwatch.
  • the timepiece comprises a movement 2.
  • the movement is a mechanical movement.
  • the movement can in particular be an automatic mechanical movement.
  • the timepiece also includes a watch case, in particular a waterproof watch case.
  • the watch case is intended to enclose the movement in a watertight manner.
  • the watch case defines an environment 4 inside the watch case isolated from an environment 5 outside the watch case.
  • the watch case comprises a middle part 33 closed on a first side by a crystal and on a second side by a first case element, for example by a bottom 31. It also comprises the element or elements necessary for fixing the second case element, for example a crown tube.
  • first seal 34 The seal between the middle part and the first element is ensured by a first seal 34.
  • the first element can be mounted screwed onto the middle part, that is to say the first element can be linked by a helical connection to the middle part.
  • the first element can be mounted using screws on the caseband.
  • the mounting of the first element compresses or crushes the first seal. This compression or this crushing of the first seal causes a reduction in the volume inside the watch case. Assuming that, from the continuous contact over the entire circumference of the first seal with the first element, the interior environment 4 of the watch case is insulated, the deformation, in particular the compression or the crushing of the first seal causes an increase in the pressure in the interior environment of the watch case, if it is assumed that the watch case is not open in another place.
  • the box is further closed by a second box element.
  • the second element is a winding crown 320 associated with a stem 321 passing through the caseband, in particular a crown stem passing through the caseband.
  • the second element is a movable element, in particular movable between a first configuration and a second configuration. These two configurations can be reached via different positions of the second element.
  • the second element is for example movable longitudinally, that is to say along the longitudinal direction of the second element.
  • THE figures 1, 2 And 3 illustrate first configuration positions. There figure 4 illustrates a position corresponding to the second configuration.
  • the second element is arranged so that in the second configuration, the second element is able to seal the case and arranged so that in the first configuration, the second element is able to allow fluid communication between the interior 4 of the watch case and the environment 5 outside the watch case.
  • the second element crosses for example the middle part.
  • the watchcase also includes a second seal 35.
  • the second seal cooperates with the second element to seal the watchcase at the interface between the second element and the middle part.
  • the state of the second seal can define the tightness and the configuration of the second element.
  • the interior of the watch case is in fluid communication with the exterior and the second element is therefore in the first configuration.
  • the second gasket is in contact with the two parts at the interface of which it is intended to provide sealing and it is compressed between these two parts, the interior of the watch case is insulated from the outside, the case is then sealed, and the second element is in the second configuration.
  • a limit configuration in which the second seal is just in contact with the two parts at the interface of which it is intended to provide sealing, without it being compressed between these two parts. In this limit configuration, one can speak of a partial watertightness of the watch case.
  • the second seal is for example a second O-ring.
  • This second seal is, for example, housed in a groove in the middle part or in a part necessary for fixing the second element, attached to the middle.
  • a second seal can be housed in a groove of the second element.
  • a second seal can be housed in a cap bottom of the second element, in particular at the bottom of a crown.
  • the second element is, in the second configuration, in a situation of contact with the second seal 35 and, in the first configuration, in a situation of broken or partially broken contact with the second seal.
  • the second element has a portion 321 of reduced section intended to come face to face with the second seal 35 in the first configuration of the second element.
  • the reduced section portion may comprise a first groove or a first groove made on the second element.
  • the second element comprises a rod, this rod has for example a shape of revolution, in particular the rod is preferably generally cylindrical of revolution.
  • the second element may comprise a stem and a crown secured to the stem.
  • the second element may comprise a rod and a cap secured to the rod.
  • This rod has a second groove or second groove 322 intended to cooperate with a pull tab 21, in particular intended to cooperate with a stud 22 of the pull tab.
  • the second groove is provided to receive the pull stud.
  • the second element is a stem 32A of a valve 39.
  • the stem 32A is screwed onto the middle part 3 and can be moved in a helical connection between a first configuration where there is play between the stem and the middle part ( figure 5 , right view) and a second configuration where sealing between the stem and the caseband is ensured ( figure 5 , left view), in particular ensured by means of a joint 35A.
  • Stem 32A can be screwed onto caseband 3 and can be moved in a helical connection, via a cap integral with the second element or forming part of the second element.
  • the second element is also a stem 32A of a valve 39.
  • the stem 32A is slidably mounted in the middle part, in particular pivot-mounted sliding in the middle part 3.
  • a spring in particular a spring arranged inside the watch case, brings the stem back into a second configuration where the seal between the stem and the middle part is ensured ( figure 6 ) in particular by the action of a second seal.
  • the stem has a head on the outside of the watch case. This head is shaped to be manipulated by a user or a watchmaker, via a tool 40. Indeed, using the tool 40, it is possible to act on the stem head, in particular to pull on the stem head, against the spring, so as to bring the stem into a first configuration where there is play between the stem and the caseband.
  • the second element may be a stem of a pusher.
  • movement 2 is fitted, that is to say, the movement is integrated into the watch case.
  • This operation is carried out for example by a watchmaker during the production of the timepiece or by a watchmaker during an after-sales service operation.
  • the first step aims to insert and fix the movement in a waterproof watch case so as to allow adjustment of the movement. It includes in particular the insertion of a rod allowing the various manipulations of the movement to be carried out.
  • This rod can be a working rod, which is removed before screwing the bottom and which is replaced by a final rod once the bottom is screwed.
  • the movement is adjusted.
  • the rate of the movement is adjusted.
  • the rate M1 of the nested movement is measured.
  • the second element is positioned in a first configuration in which fluid communication between the interior 4 of the box and the environment 5 outside the box is permitted.
  • the reduced section portion 321 of the stem comes face to face with the second seal 35.
  • the seal is in contact with only one part, either the box or the second element.
  • the movement to put the second element in the first configuration is authorized by an action of the watchmaker on a third element of the watch movement, in particular by an action on the pull tab 21, in particular on the stud 22 of the pull tab.
  • This step can therefore only be implemented with the bottom of the box deposited. This step therefore cannot be implemented by the wearer of the watch.
  • it is possible to completely remove the winding stem in particular when the watchmaker uses a working stem and he replaces the working stem with a final stem after fixing the first element.
  • a suitable laying is preferably used.
  • This mounting comprises for example a stopper making it possible to limit the withdrawal of the stem from the movement and to ensure that the stem comes perfectly into the first configuration.
  • This stop therefore defines a position corresponding to the first configuration, position by which the rod remains engaged in the pinions and wheels of the systems operating using the rod.
  • the first configuration can be reached after complete insertion of the stem into the movement, or at least after deeper insertion of the stem into the movement.
  • the rod, in particular the working rod could be completely withdrawn from the movement to reach the first configuration.
  • this solution is more risky because it requires subsequent insertion of the final stem without being able to ensure visually that it engages well in the sliding pinion, and therefore requires a certain skill.
  • the fourth step is carried out by the watchmaker with the aid of a tool 40, in particular a tool making it possible to operate a valve of the case. This fourth step is then implemented after the box closing steps.
  • the box is closed by putting in place and locking the first box element 31, in particular the bottom 31.
  • Closing the box can include screwing the bottom 31 onto the middle part 33 or mounting the bottom using screws. The blocking of the back on the middle part 33 deforms, in particular compresses, the first seal 34.
  • the box is closed by actuating the second element 32.
  • the actuation of the second element allows it to pass from its first configuration to a second configuration in which the fluid communication between the interior 4 of the box and the environment outside 5 of the box is limited.
  • the seal 35 is brought into contact with the two parts: the box and the second element. Ideally, for example by a screwing action of the crown, the seal 35 is compressed to guarantee greater sealing.
  • the fluid communication between the interior 4 of the box and the environment 5 outside the box is limited as much as possible.
  • This fluidic communication can be limited sufficiently so that the watch case can be waterproof, in particular waterproof to 100 m or 300 m or 1220 m according to the standards NIHS 92-10 (1986) or NIHS 92-11 (1996).
  • this fluid communication can be limited sufficiently to be less than or equal to 50 ⁇ g/min for air with a pressure difference of 2 bars between the environment 4 inside the watch case and the environment 5 outside the watch case.
  • the actuation of the second element 32 may comprise a displacement of the second element from the first configuration to the second configuration, in particular a longitudinal displacement of the stem, in particular of the winding stem. This actuation can also be done by means of a helical movement (screwing of the crown which compresses a seal).
  • the second element 32 is for example arranged so that the passage from the first configuration to the second configuration causes an increase in pressure in the box, less than or equal to 0.1% or less than or equal to 0.5% and/or causes a reduction in the free volume inside the box less than or equal to 0.5% or less than or equal to 0.2% and/or causes a rate variation considered to be zero.
  • the second element is preferably in a contact condition with the second seal 35 and, in the first configuration, the second element is preferably in a broken or partially broken contact condition with the seal.
  • a seventh step the rate M2 of the movement enclosed in the watch case is measured.
  • the rate measurement step can be part of a box leak test.
  • the steps M1 and M2 measured during the previous steps are compared.
  • the assembly method described makes it possible, in the case of a watertight watch case, to retain the adjustment of the movement as it was done outside the case, or in-situ in the movement, before closing the back.
  • the second element is removed before or after closing the first box element and the second box element is inserted again or a new box element is inserted later, in any case once the first box element has been put in place and fixed.
  • the stem can be inserted at its end into one or more pinions of a stem mechanism, in particular a sliding pinion, while ensuring that a portion of stem of a predetermined diameter is placed at the level of the stem hole formed on the middle part when the case back is closed, so as to allow air to pass between the middle part and the stem.
  • This position can be precisely determined by means of assembly laying.
  • This position is preferably a position separate from the stem positions enabling the watchmaking functions of winding and correction to be performed, in particular time correction, time zone correction, date correction.
  • the assembly process and any fitting adapted to the process make it possible to achieve the objectives.
  • the rod can be inserted normally by the watchmaker to adjust the movement.
  • he can, by means of an action on the pull stud and the use of the appropriate fitting, withdraw the rod to the specific position.
  • the thin part or part of the reduced section of the stem is at the level of the joint 35.
  • the back can then be closed and locked without inducing an increase in pressure, and the watchmaker can then insert the stem completely into the movement without risk.
  • the zipper stud makes it possible to prevent the wearer from does not withdraw the rod too far and the tightness of the case is lost, this tightness being preferably guaranteed also in the adjustment or correction positions.
  • the working stem can be removed by action on the pull stud, before screwing on the bottom and subsequently fitting a final stem of the product.
  • the final rod is fitted with the bottom closed, taking care to engage it correctly in the sliding pinion.
  • the first stem configuration may comprise the position of the stem furthest drawn out of the caseband.
  • the first stem configuration may include a stem position in which the crown is unscrewed.
  • the first stem configuration may comprise a stem position in which the crown is unscrewed and/or a stem position allowing the movement to be wound and/or at least one stem position allowing correction, in particular a stem position allowing date correction and/or a stem position allowing time zone correction and/or a stem position allowing time correction.
  • the first configuration can comprise several positions of the second element and/or the second configuration can comprise several positions of the second element.
  • the second stem configuration can comprise a stem position in which the crown is screwed down or the most depressed position of the stem in the caseband.
  • the second element can be arranged unidirectionally movable from the first configuration to the second configuration.
  • the second element can be arranged to move from the second configuration to the first configuration by means of the action of a watchmaker on the movement and/or the second element can be arranged to move freely from the first configuration to the second configuration.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Electric Clocks (AREA)

Claims (15)

  1. Zusammenbauverfahren einer Uhr (1), die ein Uhrwerk (2) und ein dichtes Gehäuse (3) beinhaltet, wobei das Verfahren die folgenden Schritte beinhaltet:
    - einen ersten Schritt des Schließens des Gehäuses durch das Einsetzen und Arretieren eines ersten Gehäuseelements (31), insbesondere eines Bodens (31), dann
    - einen zweiten Schritt des Schließens des Gehäuses durch das Betätigen eines zweiten Gehäuseelements (32), wobei das zweite Gehäuseelement (32) eine Aufzugswelle (32) ist, die zwischen einer ersten Konfiguration, in der eine Fluidkommunikation zwischen dem Inneren (4) des Gehäuses und einer Außenumgebung (5) des Gehäuses gestattet ist, und einer zweiten Konfiguration, die dazu fähig ist, die Dichtheit des Gehäuses zu gewährleisten, beweglich ist,
    wobei der zweite Schritt des Schließens eine Betätigung ist, bei der das zweite Element von der ersten Konfiguration in die zweite Konfiguration übergeht.
  2. Zusammenbauverfahren nach dem vorhergehenden Anspruch, dadurch gekennzeichnet, dass das zweite Element (32) so angeordnet ist, dass der Übergang des zweiten Elements von der ersten Konfiguration in die zweite Konfiguration in dem Gehäuse eine Fluidverdrängung bewirkt, die kleiner als oder gleich 25 %, insbesondere kleiner als oder gleich 10 %, insbesondere kleiner als oder gleich 5 %, derjenigen Fluidverdrängung ist, die durch Folgendes bewirkt wird:
    - einen Übergang des ersten Elements von einer dritten Konfiguration, in der eine Fluidkommunikation zwischen dem Inneren (4) des Gehäuses und der Außenumgebung (5) des Gehäuses gestattet ist, in eine vierte Konfiguration, in der die Fluidkommunikation zwischen dem Inneren (4) des Gehäuses und der Außenumgebung (5) des Gehäuses so weit begrenzt ist, dass das Armbanduhrengehäuse (3) dicht ist, insbesondere bis 100 m oder 300 m oder 1220 m dicht ist; oder
    - das Einsetzen und Arretieren des ersten Elements (31) an dem Gehäuse (3).
  3. Zusammenbauverfahren nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass es einen dritten Schritt des Testens der Dichtheit des Gehäuses (3) im Anschluss an den zweiten Schritt beinhaltet, insbesondere einen dritten Schritt des Testens der Dichtheit des Gehäuses, bei dem eine Ganggenauigkeit der Uhrwerks gemessen wird.
  4. Zusammenbauverfahren nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass es vor dem ersten Schritt einen Schritt des Einstellens des Ganges des Uhrwerks (2) beinhaltet.
  5. Zusammenbauverfahren nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der erste Schritt des Schließens des Gehäuses (3) das Schrauben eines Bodens (31) auf einen Gehäusemittelteil (33) beinhaltet.
  6. Zusammenbauverfahren nach dem vorhergehenden Anspruch, dadurch gekennzeichnet, dass durch das Schrauben des Bodens (31) auf das Gehäusemittelteil (33) eine erste Dichtung (34) verformt, insbesondere komprimiert, wird.
  7. Zusammenbauverfahren nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der zweite Schritt des Schließens des Gehäuses (3) ein Verschieben des zweiten Elements (32) von der ersten Konfiguration in die zweite Konfiguration beinhaltet.
  8. Zusammenbauverfahren nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass sich das zweite Element (32) in der zweiten Konfiguration in einer Situation in Kontakt mit einer zweiten Dichtung (35) befindet und sich in der ersten Konfiguration in einer Situation mit unterbrochenem oder teilweise unterbrochenem Kontakt mit der zweiten Dichtung befindet.
  9. Zusammenbauverfahren nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass das zweite Element (32) eine Welle ist und dass die Welle in der ersten Konfiguration einen Abschnitt (321) mit reduziertem Querschnitt gegenüber der zweiten Dichtung (35) aufweist.
  10. Zusammenbauverfahren nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass es einen vierten Schritt des Betätigens des zweiten Gehäuseelements (32) beinhaltet, um das zweite Gehäuseelement in die erste Konfiguration zu bringen, wobei der dritte Schritt vor dem ersten Schritt liegt.
  11. Zusammenbauverfahren nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass ein Verschieben, um das zweite Element (32) in die erste Konfiguration zu bringen, eine Aktion an einem dritten Element (21) des Uhrwerks, insbesondere eine Aktion an einem Winkelhebel (21), erfordert.
  12. Zusammenbauverfahren nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass ein Verschieben, um das zweite Element (32) in die zweite Konfiguration zu bringen, unabhängig von einer Aktion an einem dritten Element (21) des Uhrwerks, insbesondere unabhängig von einer Aktion an einem Winkelhebel (21), vorgenommen wird.
  13. Uhr (1), insbesondere eine Armbanduhr, die ein Uhrwerk und ein Armbanduhrengehäuse (3) mit einer Aufzugswelle (32) beinhaltet, wobei die Welle so angeordnet ist, dass sie zwischen einer ersten Konfiguration, die dazu fähig ist, die Fluidkommunikation zwischen dem Inneren (4) des Armbanduhrengehäuses und einer Außenumgebung (5) des Armbanduhrengehäuses zu gestatten, beweglich ist.
  14. Uhr nach dem vorhergehenden Anspruch, dadurch gekennzeichnet, dass die Welle (32) eine Welle ist, die einen Abschnitt (321) mit reduziertem Querschnitt aufweist, der dazu bestimmt ist, in der ersten Konfiguration der Welle gegenüber einer Dichtung (35) zu liegen zu kommen, und/oder dass die Welle nur in einer Richtung von der ersten Konfiguration in die zweite Konfiguration beweglich angeordnet ist und/oder dass die Welle von der zweiten Konfiguration in die erste Konfiguration beweglich angeordnet ist, wenn ein Uhrmacher eine Aktion an dem Uhrwerk vornimmt, und/oder dass die Welle von der ersten Konfiguration in die zweite Konfiguration frei beweglich angeordnet ist.
  15. Uhr (1), insbesondere eine Armbanduhr, die durch die Umsetzung des Verfahrens nach einem der Ansprüche 1 bis 12 erhalten wird.
EP18168748.4A 2018-04-23 2018-04-23 Zusammenbauverfahren einer uhr Active EP3561612B1 (de)

Priority Applications (4)

Application Number Priority Date Filing Date Title
EP18168748.4A EP3561612B1 (de) 2018-04-23 2018-04-23 Zusammenbauverfahren einer uhr
JP2019076118A JP7497140B2 (ja) 2018-04-23 2019-04-12 時計の組立方法及び時計
US16/383,797 US11347187B2 (en) 2018-04-23 2019-04-15 Method of assembling a timepiece
CN201910328516.1A CN110389521B (zh) 2018-04-23 2019-04-23 组装计时器的方法

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP18168748.4A EP3561612B1 (de) 2018-04-23 2018-04-23 Zusammenbauverfahren einer uhr

Publications (2)

Publication Number Publication Date
EP3561612A1 EP3561612A1 (de) 2019-10-30
EP3561612B1 true EP3561612B1 (de) 2023-07-26

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US (1) US11347187B2 (de)
EP (1) EP3561612B1 (de)
JP (1) JP7497140B2 (de)
CN (1) CN110389521B (de)

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EP4202566A1 (de) * 2021-12-21 2023-06-28 Omega SA Kompensation der gangvariation in einer armbanduhr

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US20190324402A1 (en) 2019-10-24
CN110389521A (zh) 2019-10-29
EP3561612A1 (de) 2019-10-30
US11347187B2 (en) 2022-05-31
JP7497140B2 (ja) 2024-06-10
CN110389521B (zh) 2022-09-27
JP2019215323A (ja) 2019-12-19

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