GUIDE DEVICE FOR GUIDING AN ADJUSTMENT MOVEMENT OF A VEHICLE SEAT
20200269728 ยท 2020-08-27
Assignee
Inventors
Cpc classification
B60N2/0727
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The invention relates to a guide device for guiding an adjustment movement of a vehicle seat, comprising a guide rail device and a slide rail device arranged to be displaceable in a longitudinal adjustment direction of the guide device, the slide rail device having a first stop element and a second stop element, an integral component being arranged between the slide rail device and the guide rail device which is divided into a first and a second section in the longitudinal direction of the guide device, the component being fixedly connected to the guide rail device by means of at least one connection element arranged in the first section, the second section of the component having at a first end a first stop element for one of the stop elements of the slide rail device and at a second end a second stop element for the other of the stop elements of the slide rail device.
Claims
1. A guide device for guiding an adjustment movement of a vehicle seat, comprising a guide rail device and a slide rail device arranged displaceably thereto in a longitudinal adjustment direction of the guide device, the slide rail device having a first stop element and a second stop element, a one-piece component being arranged between the slide rail device and the guide rail device, and divided in the longitudinal direction of the guide device into a first and a second section, the component being fixedly connected to the guide rail device by means of at least one connection element arranged in the first section, wherein the second section of the component at a first end forms a first stop element for one of the stop elements of the slide rail device and at a second end forms a second stop element for the other of the stop elements of the slide rail device.
2. The guide device according to claim 1, wherein the component has exactly one mirror symmetry plane which is arranged parallel to the longitudinal direction of the guide device.
3. The guide device according to claim 1, wherein the component has a homogeneous thickness over its entire length and/or width and/or that the first section of the component as seen in the longitudinal direction is linear and/or that the second section of the component, which is preferably arranged directly adjacent to the first section, has a U shape.
4. The guide device according to claim 1, wherein the longitudinal adjustment direction of the guide device is a direction towards the front and/or a direction towards the rear, wherein there is at least a first and at least a second installation state of the component, wherein according to the first installation state with respect to the longitudinal adjustment direction towards the front the first section of the component is arranged in front of the second section, and according to the second installation state with respect to the longitudinal adjustment direction to the front the first section of the component is arranged behind the second section.
5. The guide device according to claim 1, wherein the component in the first section has at least one, preferably a plurality of recesses, wherein it can be connected to at least one fastening element of the guide rail device by means of at least one of the recesses.
6. The guide device according to claim 1, wherein the component in the first section has a width which tapers towards the second section, and/or that the component has a homogeneous width in the second section.
7. The guide device according to claim 1, wherein the component is formed in direct contact with a guide rail element of the guide rail device and is spaced apart from a slide rail element of the slide rail device.
8. The guide device according to claim 1, wherein the longitudinal adjustment direction of the guide device can be arranged parallel to a longitudinal direction of the vehicle seat, and that the guide rail device can be firmly connected to a lower part of the vehicle seat and the slide rail device can be firmly connected to an upper part of the vehicle seat.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0049] Further advantages, aims and properties of the present invention are described with reference to the accompanying drawings and the following description, in which embodiments of the used component and of the guide device according to the invention are shown and described by way of example. In the drawings:
[0050]
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DETAILED DESCRIPTION
[0058] It should be mentioned that parts have been omitted from the drawings for better clarity. For example,
[0059] The invention is described below on the basis of a guide device 1 for guiding an adjustment movement of a vehicle seat S, wherein the adjustment movement represents, for example, the displacement of an upper seat part SO relative to a lower seat part SU. For this purpose, as shown here, the upper seat part SO is fixedly connected to the slide rail device 3 and the lower seat part SU is connected fixedly to the guide rail device 2.
[0060] Parts of a vehicle seat S are shown, for example, with reference to
[0061] A co-ordinate system in
[0062] According to
[0063] When the two rail devices 2, 3 are displaced to a maximum extent relative to one another in the first adjustment direction 1xa, a first standard stop element 7a of the guide rail device 2 forms a mechanical interaction with a first standard stop element 8a of the slide rail device 3, so that a further displacement in this direction 1xa is not possible. This case applies if no component 5 is inserted into the guide device 1.
[0064] Analogously, when the two rail devices 2, 3 are displaced to a maximum extent relative to one another in the second adjustment direction 1xb, a second standard stop element 7b of the guide rail device 2 forms a mechanical interaction with a second standard stop element 8b of the slide rail device 3, so that a further displacement in this direction 1xb is likewise not possible. In the present case, the standard stop elements 7a, 7b, 8a, 8b are each configured as lugs, that is to say as folded tabs of a guide rail element 20 of the guide rail device 2 and of a slide rail element 30 of the slide rail device 3. This case also applies if no component 5 is inserted into the guide device 1.
[0065] In particular in accordance with
[0066] The second section 52 of the component 5 forms a first stop element 54 for the first stop element 4a of the slide rail device 3 at a first end 52a and a second stop element 55 for the second stop element 4b of the slide rail device 3 at a second end 52b. According to
[0067] In the present case, the component 5 is not designed as part of the guide rail device 2 and/or the slide rail device 3, but independently of it. According to
[0068] In the present case, the component 5 is designed such that for insertion of the component 5 (threading) into the guide device 1, the component 5 only undergoes a translation in the longitudinal direction 1x of the guide device 1 and a rotation about an axis in the width direction 1y of the guide device 1.
[0069]
[0070] According to
[0071] According to
[0072] By means of the component 5 shown, however, a total of two differently sized limitations of the adjustment path can be implemented.
[0073] In the present case, the longitudinal adjustment direction 1x of the guide device 1 can be a direction towards the front 1xa and a direction towards the rear 1xb. There is at least a first installation state A and at least a second installation state B of the component 5. Thus,
[0074]
[0075] According to
[0076] According to
[0077] In the present case, the stop elements 4a, 4b of the slide rail device 3 which can interact with the stop elements 54, 55 of the component 5, are likewise part of the standard guide rail and, for example, as part of screw connections, in the present case as hexagon nuts. In the present case, these screw connections are provided for connecting the slide rail device 3 to an upper part to be moved, in this case the upper seat part SO.
[0078] In the present case, the stop elements 4a, 4b of the slide rail device 3 are designed as mechanical stop elements which project into an installation space 9 (see
[0079] In the present case, the component 5 comprises precisely one first section 51 and precisely one second section 52 and is otherwise free of further sections.
[0080]
[0081] It is also shown that the component 5 has a homogeneous thickness t over its entire length 5L and width 5B. In the present case, the length 5L of the component 5 extends in the longitudinal direction 5x of the component 5. In the present case, the width 5B of the component 5 extends in the width direction 5y of the component 5. In the present case, the thickness t of the component 5 extends at least in sections in the height direction 5z of the component 5.
[0082] It is shown that the first section 51 of the component 5 is linear when seen in the longitudinal direction 5x, 1x. Furthermore, it is shown that the second section 52 of the component 5, which in the present case is arranged directly adjacent to the first section 51, has a U shape, which is designed with respect to the longitudinal direction 5x of the component 5.
[0083] In the present case, the second section 52 has a total of three rounded portions 57, which form the corners of the U-shape. One of the rounded portions 57 is arranged directly adjacent to the first section 51 and forms the connection point to the first section 51.
[0084] In the present case, a rounded portion 57 forms a stop element 54 or 55 of the second section 52 of the component 5.
[0085] In the present case, the component 5 is designed as a sheet metal part, the manufacture of which in terms of shape only comprises the production of the blank from a metal sheet and the folding of the blank. Afterwards, surface-treating or finishing steps such as galvanizing or powder coating are possible.
[0086] In the present case, the component 5 has only four tabs which are folded to one another as production elements. The component 5 is thus free of further production elements such as folds, envelopes, standing seams, beads, gills, threaded holes, welds and/or deep-drawn bodies. In the present case, the component 5, apart from the recess 56 in the first section 51, is otherwise free of further recesses.
[0087] In the present case, the width 5B of the component 5 is designed such that it changes over its length 5L and its height 5H changes only in the first section 51; in the present case from the maximum width 5B to the reduced width 5B. It is thus shown that the component 5 in the first section 51 has a width 5B, 5B which tapers in the direction of the second section 52. In the present case, the recess 56 is arranged in a wider part of the first section 51 and not in the narrower part of the first section 51. It is also shown that the component 5 in the second section 52 has a homogeneous width 5B.
[0088] According to
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[0090] It shall be understood that the embodiment described above is only a first configuration of the guide device according to the invention. In this respect, the configuration of the invention is not limited to this embodiment.
[0091] All the features disclosed in the application documents are claimed as being essential to the invention, provided that, individually or in combination, they are novel over the prior art.
LIST OF REFERENCE SIGNS
[0092] 1 guide device [0093] 1x, 5x, Sx longitudinal direction [0094] 1xa direction towards the front [0095] 1xb direction towards the rear [0096] 1y, 5y, Sy width direction [0097] 1z, 5z, Sz height direction [0098] 2 guide rail device [0099] 3 slide rail device [0100] 4a, 4b, 54, 55 stop element [0101] 5 component [0102] 5B, 5B width [0103] 5H height [0104] 5L length [0105] 6a, 6b fastening element [0106] 7a, 7b, 8a, 8b standard stop elements [0107] 9 installation space [0108] 20 guide rail element [0109] 21, 31 end face [0110] 30 slide rail element [0111] 51, 52 section [0112] 52a, 52b end [0113] 53 connection element [0114] 56 recess [0115] A, B installation state [0116] E1 mirror symmetry plane [0117] S vehicle seat [0118] SO upper part [0119] SU lower part [0120] t thickness