The invention relates to a filter device for a filter system of a motor vehicle. The invention further relates to a filter element for the filter device and a filter module for the filter device.
Such filter devices are known particularly as air dryers for compressed air systems for braking systems of trucks, Such filter devices usually comprise a filter element which is attached to a filter module and can be removed from time to time for replacing corresponding components. For that purpose, the filter element has been secured to the filter module thus far by rotating about a central axis in a rotational direction and released from the filter module by rotating in an opposite rotational direction. So far, a pipe nozzle with external thread arranged coaxially to the filter element has been provided on the side of the filter module, wherein the filter element with a central internal thread arranged in its base is screwed on to or off from the pipe nozzle. This screw connection is relatively time-consuming during assembly and in addition, a precise torque must be generated with it between the filter element and the filter module in order to achieve sufficient sealing between the components. This requires a specific tool in order to generate the required torque.
In addition, an air dryer for air brake systems of vehicles is known from DE 8228745 U1. This air dryer comprises an air dryer cartridge which can be attached to an air dryer module by means of a bayonet closure fastened to the outer circumference of the connecting surface.
Therefore, the present invention addresses the problem of creating a filter device, a filter element, and a filter module of the initially described type, with which an improved assembly and sealing within the filter device can be achieved.
In order to create a filter device that is particularly easy to install and has a. high tightness, it is provided that the securing means of the filter element are designed as arc-shaped guide grooves in the base of the filter element, the grooves having an insertion opening at one end and a latching contour at the other end for a corresponding head pin as securing means of the filter module, and an edge region of each arc-shaped guide groove slopes from the insertion opening to the latching contour. The filter element is particularly an air dryer cartridge of an air dryer of a compressed air system of a truck which is connected to an air dryer module of the air dryer by means of the bayonet closure. The bayonet closure allows for both a much faster installation or removal of the filter element and the filter module and a higher tightness of the filter device because each of the securing means arranged on the filter module and on the filter element can be adjusted to one another such that there is always a continuous or reproducible sealing force which acts on the seal between the filter element and the filter module. Such a sealing force is obviously much easier to adjust than the screw connection of filter element and filter module known from the prior art because the screw connection requires the use of a separate tool or a separate adjustment of the torque. This is not the case in the present case with the use of securing means on both the filter element and the filter module which form the bayonet closure; in fact, these elements can be adjusted reproducibly to one another by selecting a suitable geometry such that it always results in the same sealing forces.
It has proven advantageous for the securing means of the air dryer cartridge to be designed as arc-shaped guide grooves which have the insertion opening at one end and the latching contour at the other end for the corresponding head pin as securing means of the air dryer module. As a result, a bayonet closure is ensured which allows for both an easy insertion of the corresponding head pins at the guide grooves and ensures a secure immobilization of the head pins in the appropriate end positions on the guide grooves.
In addition, the edge region of each arc-shaped guide groove slopes upwardly from the insertion opening to the latching contour. As a result, during securing of or the rotation of the air dryer cartridge, a sealing force for its fastening can be increased continuously until the appropriate end position of the air dryer cartridge is reached.
In a further embodiment of the invention, it has proven advantageous if latching means, which interact with one another, are provided on the filter element and the filter module, by means of which the filter element is secured in an fastened end position on the filter module. As a result, an unintentional release of the bayonet closure between the filter element and the filter module can be reliably prevented.
The advantages described above in connection with the filter device according to the invention follow in a similar manner for the filter element and for the filter module.
A further advantageous embodiment of the invention provides that on the underside of a base having the arc-shaped guide grooves, a support element with a seal is provided. With this support element, a particularly even sealing force is generated.
In a further embodiment of the invention, the securing means of the filter module are designed as head pins which interact with the corresponding guide grooves. Such head pins ensure a particularly quickly releasable or quickly producible bayonet closure.
A further advantageous embodiment of the invention provides that the filter module has a central center bearing, around which the filter element is rotatable. Thus, a particularly easily reproducible rotary movement about the central axis of the filter element is ensured which guarantees a particularly reliable and secure installation of the filter element on the filter module.
It is further provided that the filter module has a continuous annular sealing surface, on which a seal of the filter element can be supported. Such a sealing surface allows for particularly even sealing forces in a continuous manner and thus for a particularly favorable sealing of the filter device.
Further advantages, features, and details of the invention follow from the following description of a preferred embodiment and the drawings. The features and combinations of features mentioned above in the description and the features and combinations of features mentioned below in the description of the drawings and/or shown individually in the drawings are not only usable in each of the indicated combinations but also in different combinations or in isolation without exceeding the scope of the invention.
Other objects, advantages and novel features of the present invention will become apparent from the following detailed description of one or more preferred embodiments when considered in conjunction with the accompanying drawings.
In the following, an exemplary embodiment of the filter element, which is replaceable and can be used for filtering fluidic or gaseous media, of the filter device is described as an air dryer cartridge 10 of an air dryer. However, the description of the air dryer as an exemplary filter device is not supposed to be understood as limiting. The filter device can be used in all kinds of applications. For example, the filter element of the filter device can alternatively be a filter element of an air conditioning system of a vehicle, or also a filter element for oil or fuel which is to be connected with a connector in the through-flow cross-section and is supposed to be sealed against the connector.
First,
As can be seen in
For installing the air dryer cartridge 10 on the air dryer module 12, it is first—as the first movement of a bayonet closure—placed onto the air dryer module 12 according to the arrow 28 in
Proceeding from the attached position shown in
Furthermore, it can be seen in
The seal 48 is attached on the underside of a continuous and annular support element 50 in the form of a support plate, wherein the support plate is securely fastened to the underside of the base 14 of the air dryer cartridge 10. In the present case, this is accomplished by a multiplicity of tabs 52 which engage the base 14 in the area of corresponding openings 54 from behind. As a result, the slope in the area of the respective edge areas 40 of the guide grooves 20 generates a sealing force according to arrow 46 which presses the seal 48 against the corresponding sealing surface 26 of the air dryer module 12. The pressure is evenly distributed by the support element 50.
Overall, it can thus be seen from the drawings that presently, a simple option is created by means of appropriate securing means—both the head pins 24 and the guide grooves 20—to produce a bayonet closure between the air dryer cartridge 10 and the air dryer module 12 by rotating in one rotational direction, and to release the bayonet closure by rotating in the other direction, wherein the attaching, i.e. the movement of the air dryer cartridge 10 in axial direction, is achieved by providing a correspondingly enlarged insertion opening 30 with the corresponding guide groove 20. The bayonet closure not only allows for a very quick installation, but due to the design of the guide grooves 20 and the head pins 24, a defined force (arrows 46) can be generated which is applied to the seal 48, thus holding the air dryer cartridge 10 on the air dryer module 12.
Number | Date | Country | Kind |
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10 2016 003 699.0 | Mar 2016 | DE | national |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2017/000353 | 3/20/2017 | WO | 00 |