DEVICE FOR RECEIVING A DISPLAY CONTROL DEVICE
20220185199 · 2022-06-16
Inventors
Cpc classification
B60R2011/0084
PERFORMING OPERATIONS; TRANSPORTING
B60R21/055
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A device for receiving a display/operating panel and positioning the display/operating panel in a vehicle structure. The device may include at least one guide, that can bear on a corresponding receiver in the vehicle structure, characterized in that the guide includes both guide elements as well as deformation elements.
Claims
1-10. (canceled)
11. A device for receiving a display/operating panel in a vehicle structure, comprising: at least one guide, configured to bear on a corresponding receiver in the vehicle structure, wherein the guide comprises guide elements and deformation elements integrated on the at least one guide.
12. The device of claim 11, wherein the guide comprises at least two sliding segments spaced at a predetermined distance from each other.
13. The device of claim 11, wherein the guide comprises a honeycomb structure configured as the deformation segment.
14. The device of claim 13, wherein at least one cell in the honeycomb structure is configured as the sliding segment.
15. The device of claim 14, further comprising cells formed between other cells in the honeycomb structure.
16. The device of claim 15, wherein the cells comprise an opening angle of 130°.
17. The device of claim 11, further comprising guide rails configured within the vehicle structure for receiving the guide elements.
18. The device of claim 17, wherein the guide rails are configured to form a stop for the deformation segment of the guide elements.
19. A method for forming a device for receiving a display/operating panel in a vehicle structure, comprising: forming at least one guide, configured to bear on a corresponding receiver in the vehicle structure, wherein the guide comprises guide elements and deformation elements integrated on the at least one guide.
20. The method of claim 19, wherein forming the guide comprises forming at least two sliding segments spaced at a predetermined distance from each other.
21. The method of claim 19, wherein forming the guide comprises forming a honeycomb structure configured as the deformation segment.
22. The method of claim 21, wherein forming the guide comprises forming at least one cell in the honeycomb structure, configured as the sliding segment.
23. The method of claim 22, wherein forming the guide comprises forming cells between other cells in the honeycomb structure.
24. The method of claim 23, wherein forming the guide comprises forming the cells having an opening angle of 130°.
25. The method of claim 29, further comprising forming guide rails configured within the vehicle structure for receiving the guide elements.
26. The method of claim 25, wherein forming the guide rails comprises forming the guide rails to form a stop for the deformation segment of the guide elements.
27. A device for receiving a display/operating panel in a vehicle structure, comprising: at least one guide, configured to bear on a corresponding receiver in the vehicle structure, wherein the guide comprises guide elements and deformation elements integrated on the at least one guide, wherein the guide comprises a honeycomb structure configured as the deformation segment, and wherein at least one cell in the honeycomb structure is configured as the sliding segment.
28. The device of claim 27, wherein the guide comprises at least two sliding segments spaced at a predetermined distance from each other.
29. The device of claim 27, further comprising cells formed between other cells in the honeycomb structure.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The present disclosure shall be described below on the basis of exemplary embodiments, in reference to the associated drawings. Therein:
[0018]
[0019]
[0020]
[0021]
[0022]
DETAILED DESCRIPTION
[0023]
[0024] The device 10 also has a guide 14, by means of which the device can be positioned in a vehicle structure, not shown in
[0025]
[0026] The design of the device 10 according to the invention is illustrated in
[0027] The guide 14 has a guide element 22 that both guides the device in the guide rails (
[0028] Just one guide element 22 is shown in
[0029] The structure and function of the guide elements 22 shall be explained in greater detail in reference to the subsequent figures.
[0030] The guide element 22 is shown in a perspective view in
[0031] In another example, there can be one or more of these enlarged cells 30.
[0032] The guide element 22 also comprises the sliding segment 24 formed by an elastically supported wall section 34 of the guide element 22.
[0033] The guide element 22 is connected in a suitable manner to the guide 14 in the device 10. The guide 14 is inserted into the guide rails 16 (
[0034]
[0035]
[0036] The guide rail 16 also forms a stop 44, which bears on an end section 46 (
[0037] In addition to the guidance of the device 10 in the vehicle structure via the guide elements 22 and the corresponding guide rails 16, the guide element 22 also assumes the function of a deformation element. This shall be explained in reference to
[0038] The upper illustration in the example of
[0039] The honeycomb structure 28 of the guide element 22 is illustrated in the upper illustration in
[0040] If the guide element 22 is then pressed against the stop 44 by a force F along the x-axis, the cells 30 and 48 become deformed. The guide element 22 can be displaced a distance of Δx into the vehicle structure, i.e., against the stationary stop 44.
[0041] The cells 30 and 48 become deformed in the elastic regions and convert the energy of the movement into deformation energy as a function of the value for Δx.
[0042] Depending on the structural design of the honeycomb structure 28, such as the wall thicknesses of the cells 30 and 48, or the opening angles of the cells 30 and 48, parameters can be adjusted with which a force F enables a deformation of Δx.
[0043] The guide element 22 results on the whole in a multifunctional, compact component, which allows for an individual force/distance curve. Because of the integral production, there is no need for additional elements for the guidance and the deformation along the x-axis.
LIST OF REFERENCE SYMBOLS
[0044] 10 device [0045] 12 display/operating panel [0046] 14 guide [0047] 16 guide rails [0048] 18 sliding elements [0049] 20 spring elements [0050] 22 guide element [0051] 24 first sliding segment [0052] 26 second sliding segment [0053] 28 honeycomb structure [0054] 30 cells [0055] 32 outer contact surface [0056] 34 wall section [0057] 36 upper section/delimitation/end [0058] 38 fastening point [0059] 40 guide plate [0060] 42 lower section [0061] 44 stop [0062] 46 end section [0063] 48 small cells [0064] A spacing [0065] F force