This application claims priority from German patent application serial no. 10 2008 054 668.2 filed Dec. 15, 2008.
The invention concerns an electromagnetically actuated transmission shifting element, in particular for an electromagnetically actuated transmission brake.
An electromagnetically actuated transmission brake for a motor vehicle is known from DE 102 58 505 A1. The transmission brake disclosed therein has a disk packet such that a set of first disks of the disk packet are associated with a transmission shaft to be braked, and a set of second disks of the disk packet are associated with a fixed housing. Besides the disk packet, the transmission brake, known from this prior art, also comprises an electromagnetic actuator whose purpose is to compress the disk packet, to a greater or lesser extent, and thereby bring about a defined braking of the transmission shaft. The electromagnetic actuator of the transmission brake comprises an annular coil and an annular armature such that, when the annular coil is energized, a magnetic field is built up which acts on the annular armature. In addition, the transmission brake known from this prior art has a rotational speed sensor which co-operates with a signal-emitter wheel so that, with the help of the said speed sensor and emitter wheel, the speed of the transmission shaft to be braked can be detected in order thereby to control or regulate the braking of the shaft. According to DE 102 58 505 A1, the emitter wheel can be associated with the transmission shaft to be braked. The speed sensor constitutes a separate, independent structural group.
Starting from this, the present invention addresses the problem of providing a new type of electromagnetically actuated transmission shifting element.
According to the invention the, or each speed sensor is integrated in the electromagnetic actuator.
According to the present invention, the speed sensor is integrated in the electromagnetic actuator of the electromagnetically actuated transmission brake. Preferably, the speed sensor is integrated in a magnet body which also holds the coil, or all the coils of the electromagnetic actuator. This then makes it possible to combine electric connections for the coil or coils and for the speed sensor. Thereby, a simpler and more compact structure is obtained and the transmission shifting element can be produced with less assembly effort.
Preferred further developments of the invention emerge from the subordinate claims and from the description given below. An example embodiment of the invention, to which it is not limited, is explained in more detail with reference to the drawing which shows:
The electromagnetically actuated transmission brake 1 comprises a disk packet 3 having a plurality of disks, namely, a set of first disks 4 associated with the transmission shaft 2 to be braked and a set of second disks 5 associated with a stator-side housing 6 of the transmission brake 1.
With the help of an electromagnetic actuator, the disks 4, 5 of the disk packet 3 can be adjustably compressed together, to a greater or lesser extent, so as to brake the transmission shaft 2 more intensely or less so.
The electromagnetic actuator of the transmission brake 1 comprises at least one coil 7, integrated in a magnet body 8, and an armature 9 so that when the coil 7 is energized, an electromagnetic field is built up which acts upon the armature 9 in such manner that, depending on the strength of the magnetic field, the disk packet 3 of the transmission brake is compressed more, or less.
To control or regulate operation of the transmission brake 1, the brake comprises a speed sensor 10 by which the rotational speed of the transmission shaft 2, to be braked, can be detected by measurement-technological means.
In the context of the present invention, the speed sensor 10 that serves to determine, by measurement means, the speed of the transmission shaft 2 to be braked is integrated in the electromagnetic actuator, namely, in the case of the preferred example embodiment illustrated in
A signal-emitter wheel 12 which, in the example embodiment of
In the said example embodiment of
As an alternative to the example embodiment shown, the emitter wheel 12 could also move past a surface of the speed sensor 10 extending perpendicularly to the rotational axis of the transmission shaft 2 to be braked. In that case, the speed of the transmission shaft 2 to be braked would be detected axially.
In another alternative to the example embodiment illustrated in
It is preferable to use a sensor that operates using a differential measurement principle, for example, a differential Hall sensor as the speed sensor 10. A magnetic bias can be imposed on the speed sensor 10 by the energizing field of the coil 7.
The magnet body 8 can, in particular, be integrated in the housing 6 or connected permanently to it, or made integrally with the housing 6, in order to make the transmission shifting element particularly compact.
Although the present invention has been described with reference to
Since, in this case, the speeds of two shafts have to be detected, two speed sensors are needed which, in turn, in accordance with the invention, are integrated in the electromagnetic actuator by means of which the disk packet can be compressed. The two speed sensors each co-operate with an emitter wheel associated, in each case, with the respective shaft or disk packet.
Number | Date | Country | Kind |
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10-2008 054 668.2 | Dec 2005 | DE | national |