The present invention has for its object a sealing device for a control member passing through the wall of a watch casing such as a setting crown or a pushbutton for example.
The object of the present invention is to provide a sealed device for a control member passing through the wall of a watch casing, which permits ensuring normal sealing, for example resistant to 10 Atmospheres, during use of the control member and increased sealing when the control member is not used, for example resistant to 100 Atmospheres.
Another object of the present invention is to avoid, during passage from normal sealing to increased sealing, any angular and/or axial movement of the control member to avoid any interaction with the control mechanism.
Still another object of the invention is the provision of such a sealing device which will be simple to produce and to mount and which can be easily dismounted by post-sale service, for example to change the seals.
The present invention has for its object a sealing device for a control member passing through a watch casing, which overcomes the drawbacks of the existing devices and permits achieving the objects set forth above, this sealing device being distinguished by the characteristics set forth below.
The accompanying drawings show schematically and by way of example three embodiments and two modifications of the sealing device according to the invention.
The present sealing device for a control member passing through a casing, in particular a watch casing, is applicable also to pushbuttons which more particularly have a setting shaft or crown. This device permits considerably increasing the sealing of the control member. With the help of this device, normal sealing of about 10 Atmospheres which is present during manipulations of the control member can be increased to a value of the order of 100 Atmospheres by a simple manipulation of a compression key, which manipulation also immobilizes the control member in its inactive position.
Moreover, as will be seen later, this sealing device is easy to produce and to mount on a sealed casing because it comprises only few pieces that are easy to machine. Moreover, the after sale service is simplified because dismounting the device, particularly to change the seals, can take place easily without returning to the factory by a watchmaker present at the point of sale.
The sealing device according to the present invention is shown in the accompanying drawings in relation to the sealing of a setting crown and comprises a tube 1 comprising an internal cylindrical portion and an external cylindrical portion of larger diameter provided with a screw thread 2. In its lower portion, this tube 1 comprises a cylindrical bore whilst in its upper portion the tube 1 has a central conical opening flaring toward the outer end of the tube 1.
The internal cylindrical end of smaller diameter is forcibly driven into a bore 3 passing through the sealed casing 4. Below the screw threads 2 of the tube 1 there is an annular throat in which is disposed an O-ring joint 5 coacting with this tube 1, with the external surface of the casing 4 and, as will be seen later, with the compression key 6.
The compression key 6 of the first embodiment shown in
Thus, when the tube 1 is driven into the bore 3 of the casing 4 and the compression key 6 is screwed onto this tube, the joint 5 ensures sealing between the compression key 6 and the tube 1 and protects the screw threading 2. Moreover, this joint 5 ensures a certain friction between the tube 1 and the compression key such that the latter will not move untimely, but only under the effect of a couple which the user can impose on it.
As seen in
Screw 12 constitutes a stop coacting with the abutments 10, 11 of the compression key to limit the rotation of the latter between an open position and a closed position.
The sealing device moreover comprises a split ring 14, preferably of Delrin or of steel, of conical shape, disposed in the narrow portion of the internal cone of the tube 1. On this ring 14 is disposed an O-ring joint 15 whose upper portion bears against the lower surface of the upper portion 8 of the compression key.
In the open position, unscrewed, of the compression key 6, this joint 15 is only partially compressed (
The setting crown 17 comprises a shaft 16 passing through the upper portion 8 of the compression key 6, the ring 14 and the cylindrical portion of the tube 1. The end of the shaft 16 of the crown 17 is provided with two O-ring joints 18, 18′ disposed in a circular throat provided in the external cylindrical wall of the shaft 16. These joints 18′ ensure normal sealing of the order of 10 Atmospheres, between the tube 1 and the shaft 16 when the compression key is open. In this position, the user can actuate the setting shaft 16 axially and in rotation.
When the compression key is screwed in or closed, the joint 15 is totally compressed and forces the split ring to the bottom of the cone of the tube 1 and against the setting shaft 16. In this position, the sealing is very substantially increased and reaches a value of 100 Atmospheres and the shaft 14 is blocked.
The shaft 16 of the setting crown comprises, in the usual way, an axial screw thread 19 in its internal end permitting coupling to the setting shaft properly so called of the mechanism.
Thanks to this sealing mechanism, there is achieved a high sealing, 100 Atmospheres, in the closed position of the compression key and the setting shaft is blocked. The watch can be worn in this position and it is only during setting of the time of the movement that the user frees the compression key to permit this function. In this open position, the sealing is nevertheless guaranteed at a normal value of the order of 10 Atmospheres.
A supplemental advantage of the sealing device resides in the fact that during passage from the open position to the closed position of the compression key and vice versa, the shaft 16 of the crown 17 undergoes no axial displacement which could damage the mechanism.
Moreover, if the screw pitch used to screw the compression key onto the tube comprises a left hand thread, when a user tightens the compression key, even if the user simultaneously turns the crown 17, as he might accidentally do, the mechanism cannot be damaged. Thus, the rotation for tightening the compression key takes place in the reverse direction of the rotation of the crown 17 for setting the watch. There is thus never a risk of over-tensioning of the mainspring.
In the second embodiment of the sealing device shown in
In the third embodiment, shown in
In the modifications illustrated in
In these three last embodiments (
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| 01118399 | Jul 2001 | EP | regional |
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| 20030030230 A1 | Feb 2003 | US |