1. Field of the Invention
The invention relates to a device for actuating a lock on a vehicle door, wherein the term vehicle door includes any type of lid, hatch, flap, hood and the like on a vehicle. The device comprises: a support to be stationarily mounted on the door; a mount mountable on the support and configured either as a lock cylinder mount or as a lock cylinder-free mount (decoy); a shoulder on the mount that engages at least partially in the secured mounting position of the mount a counter shoulder provided on the support; a screw for securing the mounting position of the mount on the support; and an actuating end on the screw for a screwing adjustment of two end positions, i.e., a release position in which the mount can be mounted on or demounted from the support and a locking position in which the mount is secured in its mounting position on the support. In this configuration, the support to be mounted on the door not only supports the handle but also receives a lock cylinder mount or a lock cylinder decoy. The handle upon actuation acts on a lock in the door or the flap etc.; this holds true also for a lock cylinder when it is actuated by a matching key. These two alternatives, i.e., the lock cylinder mount and the lock cylinder decoy, will be referred to in the following simply as “mount”.
2. Description of the Related Art
The devices of this kind are designed to enable, on the one hand, an easy and reliable mounting of the mount within the receptacle of the support and, on the other hand, to secure the mount after having been mounted properly on the support in a reliable way. For this purpose, the mount of the device has a shoulder that, at least in the secured mounting position of the mount, engages at least partially a counter shoulder provided on the support. For securing the mounting position in the mount, a screw is used whose actuating end is accessible from the narrow side of the door.
In a known device of the aforementioned kind, disclosed in German patent DE 30 30 519 C, the screw is a component of the support. The support has a threaded receptacle in which the screw is received. The inner end of the screw serves for securing the mount. Before mounting, the support is already stationarily secured on the inner side of the door and the mount is inserted from the exterior through an opening provided in the outer door panel of the door and is then mounted on the support by a mounting movement. During this mounting process, the screw is unscrewed out of the threaded receptacle to such an extent that the mounting movement for mounting the mount can be carried out; this mounting movement is comprised of an insertion phase and a subsequent displacement phase that is parallel to the insertion position. During this displacement phase of the mounting movement, the shoulder of the mount moves into a position behind the aforementioned counter shoulder on the support. This engaged position of the shoulder and counter shoulder is secured by the screw in that the screw is threaded into the threaded receptacle to such an extent that its inner end is supported on the sidewall of the mount. In this way, a movement reversing the mounting movement for demounting the mount is blocked. The movement of the mount in a reverse movement relative to the mounting movement is prevented by the tightened screw.
There are also devices where the securing action for the mounted mount on the support is not a direct action but is achieved indirectly, as disclosed in German patent application DE 199 50 172 A1. In this case, a slide is slidably received in guides of the support so as to be slidable in parallel. The slide has a threaded receptacle for a screw that is rotatably supported with its actuating end in an axially fixed position within the support. Before beginning the mounting process of the mount, the screw with its threaded inner end is screwed as far as possible into the threaded receptacle of the slide so that the slide is initially in a position remote from the mount. Then, the mount is inserted from the exterior side of the door into the support provided on the inner side of the door. When the screw is turned such that its threaded inner end is moved out of the threaded receptacle of the slide, the slide, because of the axially fixed rotational support of the screw, is moved more and more against the mount and the mount is parallel displaced within the support. This movement of the slide causes not only the mount to be displaced; moreover, the shoulders on the mount are moved behind the counter shoulders of the support and noses provided on the slide are moved into notches provided on the mount. The securing action is realized by the slide moved against the mount.
It is an object of the present invention to provide a reliable and space-saving device of the aforementioned kind that can be handled comfortably and quickly for mounting and demounting of the mount and that ensures a reliable securing action of the mounted position of the mount on the support.
In accordance with the present invention, this is achieved in that the mount has a threaded receptacle for the screw and the screw is a component of the mount, in that the actuating end of the screw has correlated therewith a stationary support surface on the support, and in that, in the securing position, the actuating end of the screw is supported on the support surface of the support and secures the mounted position of the mount on the support.
The special feature of the invention resides in that the threaded receptacle of the screw provided for securing the mount is not located within the support or in a slide mounted on the support but is provided within the mount itself. According to the invention, the mount and the screw for securing the mount form of pre-assembled module. The support itself only must provide a stationary screw support surface on which, in the locking position, the actuating end of the screw is supported. During mounting, the screw is screwed into the mount as far as possible until the shoulder on the mount engages behind the counter shoulder provided on the support. Subsequently, for securing this mounting position of the mount on the support, the screw is unscrewed from the mount to such an extent that, as mentioned above, its actuating end rests against the screw support surface on the support. Not the inner end of the screw, as in the aforementioned prior art devices, but the opposed actuating end of the screw secures the engagement of the mount shoulder at the counter shoulder on the support.
In the drawing:
Only one end of the support 10 of the device is shown in
Such a handle 15 can also be mounted on the support 10 at a later time, i.e., after the support 10 has been mounted on the door, from the outer side of the door through openings in the outer door panel. In this connection, one end of the handle is coupled with a bearing provided on the support while the other end of the handle has the aforementioned elements that are to be positioned in the cutout 18 of the support 10. he cutout 18 has a sufficiently large size so that in addition to the mounted elements of the handle a mount 20 can be mounted. It will suffice to explain the configuration and the function of the mount with the aid of the second embodiment of
As can be seen best in
The stabilization member 26 has the following configuration. At the outer end of the bushing 28 an end member 35 that is all around widened like a flange is provided that, upon insertion of the stabilization member 26 into a bore 43 of the mount housing 21 for forming a preassembled unit, will abut by means of an inner profile 29 according to
The module 21, 26, 30 of the second embodiment of
Upon completion of assembly according to
In the mounted position of the mount 20, the actuation end 31 of the screw 30 that is in the release position 30.1 is aligned with a cutout 37 provided within the support end 14 (
According to the prior art, a worker who must mount such devices on doors or flaps of vehicles, is used to rotate the tool in the clockwise direction in order to transfer the screw for securing the mounted mount 20 in the securing position. However, according to the invention, the screw, as described above, is moved out of the mount 20 with its actuating end 31 during this securing action. In the case of a conventional right-handed thread of the prior art, the screw 30 therefore would have to be rotated in the counter-clockwise direction. The worker therefore would be required to retrain mounting of the device according to the invention and rotate the screwing tool in the opposite direction. This would be confusing to a worker when, at times, he would have to mount also prior art devices in between. For this reason, it is proposed to provide the screw 30 and the threaded receptacle within the mount as so-called left-handed threads. In this case, the worker can actuate the screwing tool in the clockwise direction as usual because the screw will then be axially moved out of the mount 20. This has the advantage that the worker must not pay attention whether the device to be mounted is configured according to the invention or according to the prior art.
When the mount 20 is mounted, the slanted surface 24 shown in
While specific embodiments of the invention have been shown and described in detail to illustrate the inventive principles, it will be understood that the invention may be embodied otherwise without departing from such principles.
Number | Date | Country | Kind |
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103 36 764 | Aug 2003 | DE | national |
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4293256 | Pamer | Oct 1981 | A |
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6401302 | Josserand et al. | Jun 2002 | B1 |
6415636 | Fukumoto et al. | Jul 2002 | B1 |
6494066 | Muneta | Dec 2002 | B2 |
6523379 | Teskey | Feb 2003 | B2 |
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6672633 | Nomura et al. | Jan 2004 | B2 |
6748775 | Bucker et al. | Jun 2004 | B1 |
Number | Date | Country |
---|---|---|
3030519 | Feb 1982 | DE |
199 50 172 | Apr 2001 | DE |
Number | Date | Country | |
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20050034495 A1 | Feb 2005 | US |