MECHANICAL TIMEPIECE MOVEMENT WITH POWER RESERVE DETECTION
20180095422 ยท 2018-04-05
Assignee
Inventors
Cpc classification
G04B9/00
PHYSICS
G04B1/22
PHYSICS
International classification
Abstract
The mechanical timepiece movement with power reserve indication comprises at least one barrel system connected to a winding wheel of a differential gear and an unwinding wheel of the differential gear. An intermediate wheel of the differential gear is connected to a cam wheel set to drive it in rotation via a reducing stage. A rack, which acts on a power reserve indicator, is in contact with the cam wheel set. When the power reserve is at zero, a locking part of the rack comes into contact with a locking member to lock the movement at an unwinding output of the barrel system or in contact with the unwinding wheel of the differential gear.
Claims
1. A mechanical timepiece movement (1) with power reserve indication, comprising at least one barrel system connected to a winding wheel (2c) of a differential gear (2) and an unwinding wheel (2d) of the differential gear (2), an intermediate wheel (2i) of the differential gear (2) being connected to at least one cam wheel set (4) for the driving thereof in rotation, a movable element (5) in contact with the cam wheel set (4) acting on an indicator (7) of the power reserve to be displayed, wherein the movable element (5) is arranged to move and actuate a locking member (10) to lock the movement at an unwinding output of the barrel system or in contact with the unwinding wheel (2d) of the differential gear (2), when the power reserve indicator indicates zero, and in that the cam wheel set (4) includes a wheel for connection to the intermediate wheel (2i) of the differential gear (2) and a cam (4) above the wheel for contact with a corner (15) of the movable element (5).
2. The mechanical timepiece movement (1) according to claim 1, wherein the cam wheel set (4) is driven in rotation via a rotational speed reducing stage (3) disposed between the intermediate wheel (2i) and a wheel of the cam wheel set.
3. The mechanical timepiece movement according to claim 2, wherein the reducing stage includes a drive wheel in contact with the intermediate wheel of the differential gear, and in that a central pinion of the drive wheel is in contact with the wheel of the cam wheel set.
4. The mechanical timepiece movement according to claim 1, wherein the cam of the cam wheel set is a disc or an angular sector, disposed on the axis of rotation of the wheel of the cam wheel set, the distance from the axis of rotation to the periphery of the disc or of the angular sector in contact with the corner of the movable element decreasing between a first end and a second end of the disc or of the angular sector so as to move the movable element between a position of complete winding and a position locking the movement.
5. The mechanical timepiece movement according to claim 4, wherein the cam includes a stop at the first end, where the distance to the axis of rotation is greatest and against which the corner of the movable element presses in the completely wound position of the barrel system.
6. The mechanical timepiece movement according to claim 4, wherein the periphery of the disc-shaped cam 4 defines a curve with a distance to the axis of rotation that is variable from the first end of the disc to the second end of the disc.
7. The mechanical timepiece movement according to claim 4, wherein the movable element is a rack mounted for rotation about an axis of rotation.
8. The mechanical timepiece movement according to claim 7, wherein the rack is pushed against the cam wheel set via a spring.
9. The mechanical timepiece movement according to claim 7, wherein the rack includes an aperture of oblong shape inside which is placed a wheel of the power reserve indicator, the indicator wheel being in contact with an inner surface of the aperture so as to be driven in rotation by the motion of the rack pushed by the cam wheel set.
10. The mechanical timepiece movement according to claim 7, wherein the rack is of flat shape with a catch on a locking part that comes into contact with the locking member in a locking position, when the corner of the rack is at the second end of the disc or of the angular sector of the cam.
11. The mechanical timepiece movement according to claim 1, wherein the locking member includes an arbor mounted for rotation and with a wheel-shaped portion in contact with an unwinding output wheel of the barrel system or with the unwinding wheel of the differential gear, and in that the locking member includes a star wheel with at least one locking tooth fixed on the arbor to be hooked in the movement locking position by a catch of the movable element, when the power reserve is at zero.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] The objects, advantages and features of a mechanical timepiece movement provided with power reserve detection means will appear more clearly in the following description, in a non-limiting manner, with reference to the drawings, in which:
[0012]
[0013]
[0014]
DETAILED DESCRIPTION OF THE INVENTION
[0015] In the following description, all those components of a mechanical timepiece movement provided with power or running reserve detection means that are well known to those skilled in the art in this technical field will be described only in a simplified manner.
[0016]
[0017] Mechanical timepiece movement 1 includes, for example, a differential gear 2 which is mounted to rotate about a rotational axis and respectively connected to the winding output and to the unwinding output of the barrel system. Differential gear 2 is connected directly or via a rotational speed reducing or increasing stage to the winding output and to the unwinding output of the barrel system. Preferably, differential gear 2 is connected via a rotational speed reducing stage to the winding output and to the unwinding output of the barrel system in order to reduce the rotation for detection of the power reserve explained below.
[0018] Differential gear 2 includes a first winding wheel 2c and a second unwinding wheel 2d preferably disposed on the same axis of rotation as the first winding wheel. Differential gear 2 further includes an intermediate wheel 2i between winding wheel 2c and unwinding wheel 2d and in contact with the winding wheel and the unwinding wheel particularly via a ball or roller bearing arrangement.
[0019] In normal operation of the timepiece movement after an operation to wind the barrel system, winding wheel 2c remains immobile without rotating, whereas unwinding wheel 2d is rotating. In this manner, intermediate wheel 2i is driven in rotation in the same direction as unwinding wheel 2d, but at a lower rotational speed than the rotational speed of unwinding wheel 2d.
[0020] Intermediate wheel 2i of differential gear 2 is connected to a cam wheel set 4, for example, via a rotational speed reducing stage 3. This reducing stage may be a drive wheel 3, whose toothed outer periphery can mesh with an outer toothing of intermediate wheel 2i, whereas a central pinion 3 of smaller diameter comes into contact with cam wheel set 4. This cam wheel set 4 may also be a wheel 4, on which there is fixedly arranged, on the axis of rotation, a disc or at least an angular sector 4 acting as a cam to drive a movable element 5 in order to actuate a power reserve indicator. The disc or the angular sector may be integral or made with the wheel of wheel set 4 in contact with central pinion 3 of drive wheel 3. The wheel of wheel set 4 and central pinion 3 may be provided with a toothing for meshing with one another.
[0021] As represented in
[0022] Movable element 5 includes a corner 15 arranged to enter into contact with the periphery of the disc or of angular sector 4 by being pushed against the periphery by a spring 6 as shown in
[0023] When the barrel or barrels of the barrel system are fully wound, corner 15 of rack 5 comes into contact with a stop 14 of the first end of the disc or of angular sector 4, where the radius or distance to the centre of rotation is greatest. A power reserve indicator 7 is thus provided to display a fully wound indication. This power reserve indicator includes a display wheel 7 possibly with a hand (not represented) fixed on the axis of rotation of display wheel 7. Display wheel 7 is, for example, driven in rotation in contact with an inner surface of an oblong aperture in rack 5 at a distance from its axis of rotation. Display wheel 8 may be toothed to mesh with an inner toothing of oblong aperture 17 in rack 5.
[0024] When the power reserve approaches zero, the radius or the distance from corner 15 of rack 5 in contact at the centre of rotation is smallest at the second end of the disc or of the angular sector. In this case, rack 5 includes a locking part 15 that comes into contact with a locking member 10. This locking member 10 is directly connected to the unwinding output of the barrel system or to unwinding wheel 2d of differential gear 2 to lock the watch movement, when the power reserve (RDM) is at zero.
[0025] This locking member 10 is an intermediate wheel set between the unwinding output wheel of the barrel system and unwinding wheel 2d of the differential gear and may also act as a reducing stage. It is also possible to envisage locking member 10 being connected to other wheels of a reducing stage from the unwinding output of the barrel system to unwinding wheel 2d of differential gear 2. Locking member 10 takes the form of an arbor 11 with or without a toothed portion, which is mounted for rotation. This wheel-shaped portion 11 on arbor 11 may come into contact with an output wheel of the barrel system or preferably with unwinding wheel 2d of differential gear 2. At least one tooth 12 on the rotatably mounted locking member 10 is arranged to be hooked by a catch 15 of the locking part of rack 5, when the power reserve is at zero.
[0026] In
[0027] From the description that has just been given, several variant embodiments of the mechanical timepiece movement with power reserve detection means may be devised by those skilled in the art without departing from the scope of the invention defined by the claims. The movable element for actuating the power reserve indicator and coming into contact with the locking member when the power reserve is at zero could be moved in a rectilinear manner and not in a rotary manner by the cam wheel set. The timepiece movement may take the form of a module with all the elements disposed inside said module.