EP3667435B1 - Einstellsystem der position eines ersten gezahnten drehteils in bezug auf eine halterung, auf der dieser ersten gezahnten drehteil drehbar befestigt ist, und uhr, die ein solches system umfasst - Google Patents

Einstellsystem der position eines ersten gezahnten drehteils in bezug auf eine halterung, auf der dieser ersten gezahnten drehteil drehbar befestigt ist, und uhr, die ein solches system umfasst Download PDF

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Publication number
EP3667435B1
EP3667435B1 EP18211344.9A EP18211344A EP3667435B1 EP 3667435 B1 EP3667435 B1 EP 3667435B1 EP 18211344 A EP18211344 A EP 18211344A EP 3667435 B1 EP3667435 B1 EP 3667435B1
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EP
European Patent Office
Prior art keywords
date
wheel
pinion
units
indicator
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
EP18211344.9A
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English (en)
French (fr)
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EP3667435A1 (de
Inventor
Daniel Matteazzi
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.)
Montres Breguet SA
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Montres Breguet 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 Montres Breguet SA filed Critical Montres Breguet SA
Priority to EP18211344.9A priority Critical patent/EP3667435B1/de
Priority to US16/687,831 priority patent/US11550264B2/en
Priority to JP2019215210A priority patent/JP6831439B2/ja
Priority to CN201911260246.1A priority patent/CN111290232B/zh
Publication of EP3667435A1 publication Critical patent/EP3667435A1/de
Application granted granted Critical
Publication of EP3667435B1 publication Critical patent/EP3667435B1/de
Priority to US18/059,663 priority patent/US11899402B2/en
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
    • G04B19/24Clocks or watches with date or week-day indicators, i.e. calendar clocks or watches; Clockwork calendars
    • G04B19/243Clocks or watches with date or week-day indicators, i.e. calendar clocks or watches; Clockwork calendars characterised by the shape of the date indicator
    • G04B19/247Clocks or watches with date or week-day indicators, i.e. calendar clocks or watches; Clockwork calendars characterised by the shape of the date indicator disc-shaped
    • G04B19/253Driving or releasing mechanisms
    • G04B19/25333Driving or releasing mechanisms wherein the date indicators are driven or released mechanically by a clockwork movement
    • G04B19/25353Driving or releasing mechanisms wherein the date indicators are driven or released mechanically by a clockwork movement driven or released stepwise by the clockwork movement
    • 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
    • G04B19/24Clocks or watches with date or week-day indicators, i.e. calendar clocks or watches; Clockwork calendars
    • 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
    • G04B19/24Clocks or watches with date or week-day indicators, i.e. calendar clocks or watches; Clockwork calendars
    • G04B19/243Clocks or watches with date or week-day indicators, i.e. calendar clocks or watches; Clockwork calendars characterised by the shape of the date indicator
    • G04B19/247Clocks or watches with date or week-day indicators, i.e. calendar clocks or watches; Clockwork calendars characterised by the shape of the date indicator disc-shaped
    • G04B19/253Driving or releasing mechanisms
    • G04B19/25333Driving or releasing mechanisms wherein the date indicators are driven or released mechanically by a clockwork movement
    • G04B19/25353Driving or releasing mechanisms wherein the date indicators are driven or released mechanically by a clockwork movement driven or released stepwise by the clockwork movement
    • G04B19/25366Driving or releasing mechanisms wherein the date indicators are driven or released mechanically by a clockwork movement driven or released stepwise by the clockwork movement manually corrected at the end of months having less than 31 days
    • 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
    • G04B13/00Gearwork
    • G04B13/02Wheels; Pinions; Spindles; Pivots
    • 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
    • G04B19/24Clocks or watches with date or week-day indicators, i.e. calendar clocks or watches; Clockwork calendars
    • G04B19/243Clocks or watches with date or week-day indicators, i.e. calendar clocks or watches; Clockwork calendars characterised by the shape of the date indicator
    • G04B19/247Clocks or watches with date or week-day indicators, i.e. calendar clocks or watches; Clockwork calendars characterised by the shape of the date indicator disc-shaped
    • 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
    • G04B19/24Clocks or watches with date or week-day indicators, i.e. calendar clocks or watches; Clockwork calendars
    • G04B19/243Clocks or watches with date or week-day indicators, i.e. calendar clocks or watches; Clockwork calendars characterised by the shape of the date indicator
    • G04B19/247Clocks or watches with date or week-day indicators, i.e. calendar clocks or watches; Clockwork calendars characterised by the shape of the date indicator disc-shaped
    • G04B19/253Driving or releasing mechanisms
    • 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
    • G04B35/00Adjusting the gear train, e.g. the backlash of the arbors, depth of meshing of the gears

Definitions

  • the present invention relates to a system for adjusting the position of a first toothed mobile relative to a support on which the first toothed mobile is pivotally mounted.
  • the present invention relates to a system for adjusting the angular position of a pinion carried by a wheel with which it forms a mobile.
  • the present invention also relates to a timepiece comprising such an adjustment system.
  • a conventional date display mechanism for a timepiece such as a wristwatch essentially comprises a date ring on the periphery of which are transferred the date indications from “1” to “31”. This date ring advances one step per day. At the end of months with less than 31 days, the owner of the watch must advance the date ring by the date indication "28" or by the date indication "29” in the event of a leap year until 'to the date indication "1" when it is in the month of February, and from the date indication "30" until the date indication "1" for the other months of the year having less of 31 days.
  • Date display mechanisms that require owner intervention at the end of every month less than 31 days are called simple date display mechanisms.
  • the display mechanisms of that require owner intervention only once a year, when February changes to March, are called semi-perpetual date display mechanisms.
  • the date display mechanisms which spontaneously switch from the date indication of the last day of a month of less than 31 days to the date indication of the first day of the following month, including leap years are called perpetual date display mechanisms.
  • the date display mechanisms which comprise a single ring around the periphery of which are distributed the date indications from “1” to “31” have the advantage of comprising a limited number of parts. They are therefore more economical and easier to integrate into a clockwork movement of a mechanical or electromechanical watch. On the other hand, there is only one angular sector of a little less than 12° to reproduce each of the 31 date indications on the date ring. The size of the date indications is therefore necessarily limited by the dimensions of the date ring, which can make these date indications difficult to read.
  • date display mechanisms whose display member is a ring on which the thirty-one date indications are shown, there are also date display mechanisms known as “big date” designed to equip mechanical or electromechanical timepieces. These large date calendar display mechanisms are so called because they allow the date indication to be displayed on a larger scale, which makes it easier to read the date and brings an undeniable plus to the aesthetics of the piece. watchmaking equipped with such a mechanism.
  • Large date date display mechanisms conventionally comprise a first date indicator on which are transferred the indications of the date units from “0” to “9”. These 10 digits are reproduced on the first date indicator according to sequences which depend on the mode of operation of the large date display mechanism considered. These date display mechanisms are completed by a second date indicator on which are reproduced the indications of the tens of the date from “0” to “3”.
  • a first date indicator on which are transferred the indications of the date units from “0” to “9”.
  • These 10 digits are reproduced on the first date indicator according to sequences which depend on the mode of operation of the large date display mechanism considered.
  • These date display mechanisms are completed by a second date indicator on which are reproduced the indications of the tens of the date from “0” to “3”.
  • the first date indicator bears only the indications of the date units and the second date indicator only the indications of the tens of the date, there is more room to reproduce these indications which can therefore be of larger size. Reading a large date date indicator device is therefore easier and the appearance of a timepiece equipped with such a date indicator device is greatly improved.
  • the date display mechanisms of the “big date” type nevertheless pose a problem when changing from “31” of a given month to “01” of the following month.
  • the indication of the date unit "1" which is used to compose the date indication "31” is the same as the indication of the date unit "1” with which composed the date indication “01”. Consequently, during the passage from the date indication "31” to the date indication "01", the indication of the date unit "1" must remain unchanged, while the indication of the tens of the date changes from the value "3" to the value "0".
  • the first date indicator on which the indications of the date units are transferred must remain stationary. To achieve this objective, it is necessary to prevent the clock movement which, in normal times, ensures the daily advance of the large date display mechanism, from driving the first indicator of date when changing from the last day of a 31-day month to the 1st day of the following month.
  • the solution usually proposed to solve this problem consists in depriving one of the wheels which is located in the kinematic chain between the output of the clockwork movement and the date indicator which bears the indications of the date units by at least a tooth so that, when changing from "31" to "01", this wheel, although driven by the clockwork movement, is unable in turn to drive the pinion with which it is in mesh and which , too, takes part in driving the date units indicator.
  • the pinion remains immobile during this period, the kinematic connection between the clock movement and the first date indicator which bears the date unit indications is interrupted, and the date unit indication "1" remains unchanged.
  • the document EP 3 147 728 A1 discloses a system for adjusting the angular position of a toothed wheel mounted with respect to an axis on which the toothed wheel is pivotally mounted, the adjustment system comprising a positioning lever making it possible to act on an angular position of the wheel toothed, so as to adjust the angular position of the toothed wheel with respect to the axis.
  • the object of the present invention is to solve the problem set out above by providing a mechanism allowing adjustment of the angular position of a first toothed wheel set relative to a support on which the first toothed wheel set is pivotally mounted.
  • the present invention relates to a mechanism for adjusting the angular position of a pinion relative to a wheel with which the pinion forms a mobile.
  • the present invention discloses a system for adjusting the angular position of a pinion relative to a wheel on which the pinion is pivotally mounted, the adjustment system comprising an adjustment member (8) as well as a wheel (60) on which a pinion (56) is pivotally mounted by friction to form a wheel set, the adjustment member (8), pivotally mounted on the wheel (60) being in engagement with the pinion (56) and allowing to pivot this pinion (56) so as to adjust an angular position of the pinion (56) relative to the wheel (60).
  • the adjusting member is a toothed wheel set whose angular position is adjustable and which engages with the first toothed wheel set whose angular position is to be adjusted.
  • the present invention also relates to a timepiece which comprises an adjustment member according to the invention.
  • the present invention provides a system which makes it possible to precisely adjust the angular position of a first toothed wheel set relative to a support on which the first toothed wheel set is pivotally mounted. It is thus possible to guarantee optimum meshing between the first mobile and a second toothed mobile with which the first toothed mobile meshes and, consequently, the correct positioning of all the mobiles which, in a kinematic chain in which the first and second mobiles are included, are arranged upstream and downstream of the first, respectively of the second mobile.
  • the present invention teaches the use of an adjustment member of the type of a key whose angular position is adjustable for example by means of a screwdriver. This adjustment member, pivotally mounted on the support which carries the first mobile or on a separate support, is in engagement with the first mobile, so that by pivoting the adjustment member, it is possible to adjust the angular position of this first mobile.
  • the present invention also relates to a large date calendar display mechanism driven via a kinematic chain by a clockwork movement of a timepiece equipped with this large date calendar display mechanism, this large date calendar comprising a first date indicator on which are reported the indications of the date units from “0" to "9", and a second date indicator on which are reported the indications of the tens of the date from “0" to “3", all the date indications from "01" to "31” that can be obtained by combining the indications of the date units "0" to "9” carried by the first date indicator with the tens of date indications "0" to “3” carried by the second date indicator, the first date indicator remaining stationary for a period of 24 hours which separates the passing of the last day of a month from 31 days to the first day of the following month, the kinematic chain comprising a wheel continuously engaged with the clockwork and which has a perimeter provided with teeth via which the wheel meshes with a pinion which itself takes part in driving the first indicator of the date units
  • a double jumper is pivotally mounted around an axis and comprises, at a first end, a first beak by which it engages with a toothing of the first date indicator and , at a second end, a second beak by which it engages with a toothing of an intermediate pinion, the jumper double being held elastically in engagement with the first date indicator and with the pinion.
  • the present invention provides a large date date display mechanism in which the position of a pinion which participates in driving the indicator of the date units is adjusted with precision, so as to guarantee a optimal meshing between this drive pinion of the units and the intermediate wheel with which this pinion is in mesh.
  • the drive pinion of the units is decoupled from the clockwork movement so that the indicator of the date units remains stationary during this period.
  • the marking "1" carried by the date units indicator is used both to compose the date indication "31” at the end of a month of 31 days, and to compose the date indication “01” at the beginning of the following month. It is therefore essential for the indicator of the date units to remain stationary during this lapse of time so that the date indication which appears through an aperture provided in a dial of the timepiece is accurate. As a result, it is necessary to decouple the drive pinion from the units so that the clock movement which operates permanently cannot drive the indicator of the date units.
  • a double jumper is provided in engagement at one of its ends with a toothing of the drive pinion of the units.
  • the double jumper meshes with a toothing of the date unit indicator in order to permanently ensure the correct positioning of the date unit indication in the aperture drilled in the dial of the piece. watchmaking.
  • the double jumper is pivotally articulated, it is disengaged from its engagement with the drive pinion of the units when it is pushed back by the toothing of the first date indicator, and vice versa.
  • the present invention proceeds from the general inventive idea which consists in guaranteeing precise angular positioning between a first toothed wheel set and a support on which the first toothed wheel set is rotatably mounted in order to guarantee optimal meshing between this first toothed wheel set and a second wheel set. toothed with which the first toothed mobile is engaged.
  • the present invention teaches precisely adjusting the angular position of the first toothed wheel set relative to the support on which the first toothed wheel set is mounted.
  • an adjusting member is provided, the position of which can be adjusted by means of a tool such as a screwdriver and which meshes with the first toothed wheel set.
  • the present invention finds its interest in particular, but not exclusively, in a large date calendar display mechanism in which, in order to be able to guarantee the correct operation of this date display mechanism, it is necessary, when passing from the last day of a month of 31 days to the first day of the following month, to interrupt the mechanical connection between the clock movement and the date unit indicator. During this period of time, however, an intermediate pinion is no longer engaged with the drive wheel which drives it for the rest of the time. The indexing of the angular position of this intermediate pinion is therefore no longer ensured.
  • the present invention provides for finely adjusting the angular position of a wheel set included in the kinematic chain to which the intermediate pinion belongs, this with the aim of guaranteeing optimal meshing between the different mobiles of this kinematic chain.
  • the present invention will be described in connection with a date display mechanism of the "big date” type in which the problem of adjusting the angular position of a pinion relative to a wheel with which the pinion meshes arises.
  • a date display mechanism of the "big date” type in which the problem of adjusting the angular position of a pinion relative to a wheel with which the pinion meshes arises.
  • the adjustment system according to the invention of the angular position of a first mobile relative to another mobile with which the first mobile meshes can be used in any type of watch mechanism in which the problem arises of the correct angular positioning of one mobile relative to another.
  • the adjustment system 1 comprises a support 2 on which a first toothed wheel set 4 is rotatably mounted. This first toothed wheel 4 meshes with a second toothed wheel 6.
  • One of the aims of the invention is to be able to precisely adjust the angular position of the first toothed wheel 4 with respect to the second toothed wheel 6 in order to guarantee optimum meshing between the two toothed mobiles 4 and 6.
  • the adjustment system 1 according to the invention comprises an adjustment member 8 which is pivotally mounted on the support 2.
  • the adjusting member 8 can be mounted on a support other than that on which the first toothed mobile 4 is mounted.
  • This adjusting member 8 comprises a toothed sector 10 by which it meshes with the first toothed mobile 4. by pivoting this adjustment member 8 in one direction or the other, for example by means of a screwdriver, it is possible to finely adjust the position of the first toothed wheel set 4 with respect to the second toothed wheel set 6.
  • the adjustment system 1 can be integrated into a large date display mechanism 12 equipping (see picture 2 ) a timepiece 14 such as a wristwatch.
  • This timepiece 14 comprises a dial 16 in which is formed an aperture 18 through which a large date indication 20 is visible.
  • the large date display mechanism 12 comprises a central reference 22 which is conventionally attached to an hour wheel driven by a timer of a clock movement (not shown). This return to the center 22 meshes with a cam drive wheel 24 which is driven at the rate of one revolution per day. This cam drive wheel 24 in turn drives a cam wheel 26 to which a cam 28 is fixed.
  • the cam drive wheel 24 and the cam wheel 26 are kinematically linked together by means of a pin 30 driven into the cam wheel 26 and which passes freely through an oblong hole 32 made in the cam drive wheel 24 ( see figure 6 ).
  • the cam driving wheel 24 rotates, it drives the cam wheel 26 thanks to the pin 30 which abuts against an inner edge 32a of the oblong hole 32.
  • the cam 28 has a profile 28a in a place of which a recess 28b is provided.
  • a trigger rocker 34 elastically constrained by a spring 36, comprises a beak 38 by which it follows the profile 28a of the cam 28.
  • the trigger rocker 34 falls along the step 28b of the profile 28a of the cam 28 and causes the instantaneous pivoting of the cam wheel 26 by an angle which is defined by the step 28b of the profile 28a of the cam 28. It will be noted that the dimensions of the oblong hole 32 are sufficient to allow the cam wheel 26 to perform its instantaneous pivoting movement without being hindered by the pin 30.
  • the cam wheel 26 drives a date driving wheel 40 which carries a finger 42 by which the date driving wheel 40 controls, once a day, the advance of a wheel of thirty-one teeth 44 of a no see figure 4 ). Furthermore, a programming wheel 46 is fixed on the thirty-one-tooth wheel 44. The thirty-one-tooth wheel 44 in turn meshes with a driving wheel 48 itself in engagement with an intermediate pinion. 50 of an intermediate wheel set 52. Finally, an intermediate wheel 54 of the intermediate wheel set 52 meshes with a unit drive pinion 56 of a unit drive wheel set 58 of which a unit drive wheel 60 drives a date units indicator.
  • this date unit indicator is in the form of a ring 62.
  • This unit indicator ring 62 bears the indications "0", “1", “2”, “3”,”4",”5",”6”,”7”,”8” and "9" which correspond to the indications of the units of the date and advance at the rate of one step per day, except when passing the "31" of one month to "1" of the following month.
  • the programming wheel 46 is provided with four teeth 46a, 46b, 46c and 46d by which this programming wheel 46 drives by one step every 10 days a star with four teeth 64 on which is fixed a tens of the date indicator.
  • this tens of date indicator is designed in the form of a disc 66.
  • the tens indicator disc 66 bears the indications “0”, “1”, “2” and “3” which correspond to the tens indications of the date.
  • the units indicator ring 62 advances one step per day, except when changing from the "31" of one month to the "1" of the next month. During this passage, the unit indicator ring 62 must remain stationary. Indeed, the marking "1" carried by the date units indicator is used both to compose the date indication "31" at the end of a month of 31 days, and to compose the indication of date "01" at the beginning of the following month. It is therefore essential that the unit indicator ring 62 remains stationary during this period of time so that the date indication which appears through the window 18 made in the dial 16 of the timepiece 14 is accurate.
  • the drive pinion of the units 56 which plays the role of the first toothed mobile whose angular position is to be adjusted is mounted by friction on the drive wheel of the units 60 which plays the role of support.
  • the drive pinion of the units 56 comprises an axis 56a by which it is mounted friction between two parallel arms 60a and 60b which extend substantially along a diameter of the driving wheel of the units 60.
  • the adjustment system 1 according to the invention is completed by an adjusting member 72 pivotally mounted on the driving wheel of the units 60.
  • This adjusting member 72 comprises a toothed sector 74 by which it meshes with the teeth of the drive pinion of the units 56 (see figure 7B ).
  • By rotating the adjusting member 72 for example by means of a screwdriver, in one direction or the other, it is possible to precisely adjust the angular position of the driving pinion of the units 56, so that this driving pinion of the units 56 meshes optimally with the intermediate wheel 54 which drives it.
  • the frictional forces present between the drive pinion of the units 56 and the drive wheel of the units 60 are sufficiently great for the drive pinion of the units 56 to be able to drive the drive wheel of the units 60 in rotation when it is itself driven in rotation.
  • the units drive wheel 60 drives the units indicator ring 62 by meshing with the internal toothing 68 of this units indicator ring 62.
  • This double jumper 76 is provided with a first beak 76a by which it engages with the toothing 70 of the intermediate pinion 50, and with a second beak 76b by which it engages with an internal toothing 78 of the indicator ring of the units 62.
  • the double jumper 76 is held elastically against the toothing 70 of the intermediate pinion 50 and against the internal toothing 78 of the indicator ring of the units 62 by a spring 80.
  • the double jumper 76 pivots around its center of pivot O and its beak 76a disappears while passing from the hollow between two consecutive teeth of the toothing 70 of this intermediate pinion 50 to the next trough.
  • the second beak 76b of the double jumper 76 emerges from the hollow between the two teeth of the internal toothing 78 of the unit indicator ring 62 and falls into the next hollow.
  • the geometry of the double jumper 76 and the positioning of its center of pivot O are such that when the double jumper 76 pivots, it simultaneously disengages from the toothing 70 of the intermediate pinion 50 and from the internal toothing 78 of the unit indicator ring. 62.
  • the intermediate pinion 50 although not being in taken with the drive wheel 48, is held in position by the beak 76a of the double jumper 76, so that there is no risk that the date indication "1" is not properly centered in the aperture 18 provided in dial 16 of timepiece 14.
  • the intermediate pinion 50 belongs to the intermediate mobile 52 with an intermediate wheel 54 to which it is coupled in rotation.
  • This intermediate wheel 54 in turn meshes with a unit drive pinion 56 of a unit drive mobile 58 of the unit indicator ring 62.
  • This unit drive pinion 56 is rotationally coupled with the unit drive wheel 60 which drives the units indicator ring 62 by meshing with the internal toothing 78 of this units indicator ring 62.
  • the present invention is not limited to the embodiment which has just been described and that various simple modifications and variants can be envisaged by those skilled in the art without departing from the scope of the invention as defined. by the appended claims. It will be noted in particular that the number of teeth of the toothing 68 of the driving wheel 48 can be different from thirty-one teeth and that the number of omitted teeth can be different from two, for example equal to one or three.

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

Claims (4)

  1. Einstellsystem der Winkelposition eines Triebs in Bezug auf ein Rad auf dem der Trieb drehbar angebracht ist, wobei das Einstellsystem ein Einstellorgan (8), sowie ein Rad (60) umfasst, auf dem ein Trieb (56) in Schwenkbardrehung angebracht ist, um ein Drehteil zu bilden, wobei das Einstellorgan (8), das drehbar auf dem Rad (60) angebracht ist, mit dem Trieb (56) in Eingriff steht, und es ermöglicht, diesen Trieb (56) derart drehen zu lassen, um eine Winkelposition des Triebs (56) in Bezug auf das Rad (60) einzustellen.
  2. Einstellsystem nach Anspruch 1, dadurch gekennzeichnet, dass das Einstellorgan (8) ein Drehteil ist, das einen gezahnten Abschnitt (10) aufweist, dessen Winkelposition anpassbar ist und der mit dem Trieb (56) in Eingriff steht, dessen Winkelposition einzustellen ist.
  3. Uhrmachereistück, das ein Einstellsystem nach einem der Ansprüche 1 und 2 umfasst.
  4. Anzeigemechanismus eines Großdatums, das ein Einstellsystem nach einem der Ansprüche 1 und 2 umfasst, wobei dieser Anzeigemechanismus eines Großdatums über eine Kinematikkette durch ein Uhrwerk eines Uhrmachereistücks (14) angetrieben wird, das mit diesem Anzeigemechanismus eines Großdatums (12) ausgestattet ist, wobei dieser Anzeigemechanismus eines Großdatums (12) einen ersten Datumsanzeiger (62) umfasst, auf den die Anzeigen der Datumseinheiten von "0" bis "9" übertragen werden, und einen zweiten Datumsanzeiger (66), auf den die Anzeigen der Datumszehner von "0" bis "3" übertragen werden, wobei alle Datumsanzeigen von "01" bis "31" durch Kombinieren der Anzeigen der Datumseinheiten "0" bis "9", die von dem ersten Datumsanzeiger (62) getragen werden, mit den Anzeigen der Datumszehner "0" bis "3", die vom zweiten Datumsanzeiger (66) getragen werden, erhalten werden können, wobei der erste Datumsanzeiger (62) während einer Periode von 24 Stunden, die den Übergang vom letzten Tag eines Monats von 31 Tagen auf den ersten Tag des folgenden Monats trennt, unbeweglich bleibt, wobei die Kinematikkette ein Rad (48) umfasst, das kontinuierlich in Eingriff mit dem Uhrwerk steht und einen Umfang aufweist, der mit einer Verzahnung (68) versehen ist, über die das Rad (48) in einen Trieb (50) eingreift, der selbst am Antrieb des ersten Anzeigers der Datumseinheiten (62) teilnimmt, wobei das Rad (48) an einer Stelle (69) seines Umfangs mit keinem Zahn versehen ist, damit das Rad (48) während der Periode von 24 Stunden, die den Übergang vom letzten Tag eines Monats von 31 Tagen auf den ersten Tag des folgenden Monats trennt, nicht in den Trieb (50) eingreift, der ebenso wie der erste Datumsanzeiger (62) somit unbeweglich bleibt, wobei der Anzeigemechanismus eines Großdatums (12) auch einen Trieb zum Antreiben der Einheiten (56) in Eingriff mit einem Zwischenrad (54) umfasst, wobei der Trieb zum Antreiben der Einheiten (56) in Reibung auf einem Antriebsrad der Einheiten (60) angebracht ist, mit dem er ein Drehteil zum Antreiben der Einheiten (58) bildet, wobei die Reibungskräfte, die zwischen dem Trieb zum Antreiben der Einheiten (56) und dem Antriebsrad der Einheiten (60) vorhanden sind, groß genug sind, damit der Trieb zum Antreiben der Einheiten (56) das Antriebsrad der Einheiten (60) in Drehung antreiben kann, wenn er selbst durch das Zwischenrad (54) in Drehung angetrieben wird, jedoch auch schwach genug, damit die Winkelposition des Triebs zum Antreiben der Einheiten (56) angepasst werden kann, wobei ein Einstellorgan (72) dessen Winkelposition anpassbar ist, und das in Eingriff mit dem Trieb zum Antreiben der Einheiten (56) steht, durch das Antriebsrad der Einheiten (60) getragen wird.
EP18211344.9A 2018-12-10 2018-12-10 Einstellsystem der position eines ersten gezahnten drehteils in bezug auf eine halterung, auf der dieser ersten gezahnten drehteil drehbar befestigt ist, und uhr, die ein solches system umfasst Active EP3667435B1 (de)

Priority Applications (5)

Application Number Priority Date Filing Date Title
EP18211344.9A EP3667435B1 (de) 2018-12-10 2018-12-10 Einstellsystem der position eines ersten gezahnten drehteils in bezug auf eine halterung, auf der dieser ersten gezahnten drehteil drehbar befestigt ist, und uhr, die ein solches system umfasst
US16/687,831 US11550264B2 (en) 2018-12-10 2019-11-19 System for adjusting the position of a first toothed wheel set relative to a support on which the first toothed wheel set is pivotably mounted and timepiece comprising such a system
JP2019215210A JP6831439B2 (ja) 2018-12-10 2019-11-28 第1の歯付きホイール・セットがその上に枢動可能に装着されているサポートに対する第1の歯付きホイール・セットの位置決めを調節するためのシステム、および、そのようなシステムを含む時計
CN201911260246.1A CN111290232B (zh) 2018-12-10 2019-12-10 调节第一齿轮组相对于支架位置的系统及包括其的时计
US18/059,663 US11899402B2 (en) 2018-12-10 2022-11-29 System for adjusting the position of a first toothed wheel set relative to a support on which the first toothed wheel set is pivotably mounted and timepiece comprising such a system

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EP18211344.9A EP3667435B1 (de) 2018-12-10 2018-12-10 Einstellsystem der position eines ersten gezahnten drehteils in bezug auf eine halterung, auf der dieser ersten gezahnten drehteil drehbar befestigt ist, und uhr, die ein solches system umfasst

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US20200183332A1 (en) 2020-06-11
CN111290232A (zh) 2020-06-16
CN111290232B (zh) 2022-08-02
EP3667435A1 (de) 2020-06-17
US11899402B2 (en) 2024-02-13
JP2020095032A (ja) 2020-06-18
JP6831439B2 (ja) 2021-02-17
US11550264B2 (en) 2023-01-10

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