Attachment arrangement of an antenna device for a vehicle
11502386 ยท 2022-11-15
Assignee
Inventors
Cpc classification
H01Q1/3275
ELECTRICITY
B60R11/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60R11/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An antenna device for a vehicle includes a base plate, an expansion element formed by a first expansion element part and a second expansion element part mated with the first expansion element part, and an actuating element cooperating with the base plate and the expansion element. Each of the first expansion element part and the second expansion element part has a flat area, a side arm protruding at an angle from the flat area, and a laterally open breakthrough in the flat area. The laterally open breakthrough of each of the first expansion element part and the second expansion element part when mated forms a single passage opening for the actuating element.
Claims
1. An antenna device for a vehicle, comprising: a base plate; an expansion element formed by a first expansion element part and a second expansion element part mated with the first expansion element part, each of the first expansion element part and the second expansion element part has a flat area, a side arm protruding at an angle from the flat area, and a laterally open breakthrough in the flat area open outward to a lateral side of the flat area; and an actuating element cooperating with the base plate and the expansion element, the laterally open breakthrough of each of the first expansion element part and the second expansion element part when mated forms a single passage opening for the actuating element.
2. The antenna device of claim 1, further comprising a spring element at the base plate, the first expansion element part and the second expansion element part are prestressed by the spring element.
3. The antenna device of claim 2, wherein the spring element is a spiral spring.
4. The antenna device of claim 1, wherein each of the first expansion element part and the second expansion element part has a pair of flat areas.
5. The antenna device of claim 4, wherein the pair of flat areas of the first expansion element part are offset from one another and the pair of flat areas of the second expansion element part are offset from one another.
6. The antenna device of claim 1, wherein each of the first expansion element part and the second expansion element part has an angled edge area around the flat area.
7. The antenna device of claim 1, wherein the side arm has an angled region oriented in a longitudinal direction of the side arm.
8. The antenna device of claim 7, wherein the angled region ends at a distance from a front end of the side arm.
9. The antenna device of claim 7, wherein the angled region has an arcuate shape at a front end.
10. The antenna device of claim 1, wherein the side arm has a pair of angled regions that are parallel to one another.
11. The antenna device of claim 1, wherein each of the first expansion element part and the second expansion element part are formed from a plastic material.
12. The antenna device of claim 1, wherein each of the first expansion element part and the second expansion element part are formed from a metal substance.
13. The antenna device of claim 1, wherein the first expansion element part and the second expansion element part are identical parts.
14. The antenna device of claim 1, wherein the laterally open breakthrough is open to the lateral side of the flat area in a direction perpendicular to the extension of the actuating element through the single passage opening.
15. The antenna device of claim 1, wherein the base plate has a plurality of protrusions on an underside of the base plate spacing the base plate from an upper side of a bodywork surface of the vehicle.
16. The antenna device of claim 15, wherein the base plate has a dome extending from the underside.
17. The antenna device of claim 16, wherein the dome has a plurality of supports corresponding to the bodywork surface of the vehicle.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will now be described by way of example with reference to the accompanying Figures, of which:
(2)
(3)
(4)
(5)
(6)
DETAILED DESCRIPTION OF THE EMBODIMENT(S)
(7) In the following, the invention is explained in greater detail with reference to the accompanying drawings, in which exemplary embodiments are shown. In the figures, the same reference numerals are used for elements that correspond to one another in terms of their function and/or structure. According to the description of the various aspects and embodiments, elements shown in the drawings can be omitted if the technical effects of those elements are not needed for a particular application, and vice versa: i.e. elements that are not shown or described with reference to the figures but are described above can be added if the technical effect of those particular elements is advantageous in a specific application.
(8) An antenna device and an attachment arrangement are shown in
(9) The antenna device depicted in
(10) The front ends of the supports 4 are in particular selected such that they correspond to side rims of a recess in the bodywork surface (not depicted yet in
(11) The further elements of the attachment arrangement are an actuating element in the form of a screw 7. The screw 7 has a screw head 8 and a threaded piece 9. The threaded piece 9 corresponds to the internal thread in the threaded opening 3 in the dome 2. An internal thread may also be provided only in the base plate 1, for example (omitting the dome 2). The actuating element may alternatively also be formed as a latching element or as an expansion element. However, the configuration of the actuating element as a screw 7 applies defined forces in order to fix the antenna device permanently on the bodywork surface of the vehicle. This may be done, for example, by tightening the screw 7 with a torque wrench.
(12) As shown in the embodiment of
(13) Each expansion element part 10,11, starting from the associated flat area 14 and 15 respectively, has a side arm 16 and 17 respectively, as shown in
(14) In the central area of the flat areas 12,14 and 13,15 respectively (regardless of whether these flat areas are arranged in one plane or offset from one another), there is present in each case one breakthrough 19 for the actuating element, in particular the screw 7, as shown in
(15) This opening causes the two expansion element parts 10,11 to be able to be mated by a movement transverse to the axial orientation of the actuating element, in particular the screw 7. This process takes place by way of the two expansion element parts 10,11 firstly being applied to one another at a particular angle and then mated (inserted into one another). Thereafter, the two mated expansion element parts are pivoted so that the flat areas 12,14 of the first expansion element part 10 come to rest flatly on the associated flat areas 13,15 of the further expansion element part 11. The completed mating process and completed pivoting and thus the final orientation of the two expansion element parts 10,11 for forming a single expansion element are shown in
(16) The flat areas 12-15 are oriented parallel to one another as shown in
(17) As shown in
(18) In an embodiment, the expansion element parts 10,11 are formed from a plastics material or a metal substance. If plastic is used, the expansion element parts 10,11 can be manufactured inexpensively, precisely and in large quantities in a plastics injection-molding method. This is particularly appropriate if the expansion element parts do not have to take on any electrical function. However, if, for example, a ground connection of the antenna device to further electrical units within the vehicle is required, for example via the electrically conductive bodywork surface, the expansion element parts 10,11 are formed from a metal substance. In such a case, the manufacture can be carried out in a known stamping-bending method, for example, wherein the desired geometry of the respective expansion element part 10,11 is formed from a flat sheet-metal material. In order to form a single expansion element from two (or where necessary more than two) expansion element parts 10,11, expansion element parts made of identical materials (i.e. either made only of plastic or only of a metal substance) are used. However, it is also conceivable, for example, to mate one expansion element part made of plastic and one expansion element part made of a metal substance to form the single expansion element.
(19) In an embodiment, the at least two expansion element parts 10,11 are configured as identical parts (either made of plastic or made of a metal substance). This simplifies the manufacture of the expansion element parts 10,11, reduces the variety of parts and increases the ease of mounting because the necessity of mating two different parts is effectively avoided.
(20) In order to perform prestressing of the mated and pivoted expansion element parts 10,11 at the base plate 1, a spring element 21 shown in
(21) After the required elements of the attachment arrangement have been described in view of
(22) The premounting position of the attachment arrangement of the antenna device is thus depicted in
(23) The prepared antenna device is moved, with the attachment arrangement at the front, in the direction of the upper side of the bodywork surface, wherein the attachment arrangement is fed through the recess 23 in the bodywork surface, in particular the vehicle roof 22, until the underside of the base plate 1 comes to rest on the upper side of the bodywork surface. This step is depicted in
(24) While, in
(25) After the side arms 16 are pressed together due to the feeding of the attachment arrangement of the antenna device through the recess 23 in the bodywork surface, and after the side arms 16 are pivoted back again upon completion of the feeding-through as shown in
(26) In the movement sequence depicted in
(27) The guiding described above may be present, but does not have to be present. A direction coding pin, for example, is also conceivable. A spike (pin) which projects out of the base plate, in front of or behind the locking mechanism, in the direction of the bodywork and which, during mounting, is inserted into a hole which determines the orientation of the roof antenna.
(28) The movement sequence described with regard to
(29) In conclusion, an improved antenna device, in particular an attachment arrangement of an antenna device which is clearly improved compared to the prior art, is available according to the invention, which antenna device is constructed very compactly, requires fewer parts and is very simple to mount. The simplification can be seen in particular in that the antenna device can be prepared and made available with its attachment arrangement. Only thereafter is the antenna device, which is prepared in this manner, employed when finally mounted on the vehicle and can be handled very easily in this regard.
(30) This antenna device and attachment arrangement of the invention has the advantage that only one single expansion element, consisting of two individual parts 10,11, is required in order to arrange and permanently fix the antenna device on a bodywork surface. The two expansion element parts 10,11 are provided for this purpose, with these not functioning in isolation but fulfilling the required function when mated. On the one hand, the two mated expansion element parts 10,11 form a circumferentially closed passage opening for the actuating element, with them being laterally open in their flat area 12,14 and 13,15 in the not yet mated state in order to enable mating, which takes place transverse to the axial orientation of the actuating element. Furthermore, the side arms 16,17 can be configured significantly simpler since it is not necessary to achieve a spring effect with these. The side arms 16,17 thus extend at an angle from the flat area 12,14 and 13,15 of the respective expansion element part in the direction of the base plate of the antenna device, such that the attachment arrangement of the antenna device, after being placed onto the bodywork surface of the vehicle, can be supported by the front end of the side arms 16,17 on the underside of the bodywork surface. In an embodiment, precisely two expansion element parts 10,11 form the single expansion element of the attachment arrangement. Consideration can also be given to using more than two expansion element parts 10,11 which are then arranged in a triangle, in a cross or the like and form the single expansion element of the attachment arrangement.
(31) In the shown embodiment, the side arm 16,17 has two parallel angled regions 18. As a result, the entire strength of the attachment arrangement, with which the antenna device is arranged and fixed permanently and releasably on the bodywork surface, is significantly increased after the attaching process due to a uniform distribution of forces.