Instrument board center control area assembling structure, high-configuration instrument board and low-configuration instrument board

By designing first and second transition brackets in the central control area of ​​the dashboard, and using screw holes and snap-fit ​​structures to achieve simple fixing of the central control screen and radio, the problem of the dashboard requiring two sets of matching structures in the prior art is solved, reducing cost and complexity.

CN223574218UActive Publication Date: 2025-11-21EASYJET NEW ENERGY VEHICLE CO LTD
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Patent Information

Application Number
CN202423247410.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-11-21
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

The existing dashboard requires two different assembly structures for the high-end and low-end central control areas, resulting in high mold development and processing costs, and the fixing structure in the mounting slot is too complicated.

Method used

Design an assembly structure for the central control area of ​​an instrument panel, using a first transition bracket and a second transition bracket to fix the central control screen and radio respectively, and achieve simple assembly through screw holes and snap-fit ​​structure to reduce the complexity of the instrument panel.

Benefits of technology

It reduces the processing difficulty and mold development cost of the central control area of ​​the dashboard, and enables the same dashboard to adapt to different configuration requirements, making assembly and disassembly convenient.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of automobile part structures, in particular to an instrument board center control area assembling structure, a high-configuration instrument board and a low-configuration instrument board. Comprising an instrument board body. The instrument board body is provided with a mounting groove which is concaved forwards in the X direction in a central control area; a first mounting structure for assembling a central control screen or a second mounting structure for assembling a mobile phone bracket and a radio is arranged in the mounting groove; the first installation structure comprises a first transition support used for fixing the central control screen into the installation groove. The second installation structure comprises a second transition support used for fixing the radio in the installation groove. The assembly structure for the central control area of the instrument panel is very simple, the machining difficulty and the mold development cost of the central control area of the instrument panel body are greatly reduced, different assembly requirements can be conveniently met, and assembly and disassembly are very easy.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of automobile parts structure, and specifically points to a kind of instrument panel central control area assembly structure, high configuration instrument panel and low configuration instrument panel. BACKGROUND

[0002] The central control screen area of car is the area that driver often uses, and the reasonable design and arrangement of central control screen area directly influence the comfort of driver operation and the operability of various functions.The central control area can be divided into two modes of high configuration and low configuration according to the different configuration of car, and the manufacturer will install the suspended central control screen in high configuration central control area, to facilitate the operation and use of driver.The manufacturer will install mobile phone support in low configuration central control area, and driver can place mobile phone on mobile phone support to facilitate operation and use.Low configuration central control area and high configuration central control area install two different structures, and existing instrument panel is usually designed different central control assembly structure for high configuration suspended central control screen and low configuration mobile phone support, and two sets of instrument panels are needed for different configurations of the same vehicle, which is very cumbersome in actual production process and does not meet the requirements of efficient production.

[0003] In order to solve this technical problem, the prior art named instrument panel assembly structure, instrument panel with central control screen and instrument panel with mobile phone support proposes an instrument panel structure that can be compatible with central control screen and mobile phone support, which includes instrument panel body, and the instrument panel body is provided with mounting groove in central control area, the mounting groove is recessed groove formed along X direction, and the first mounting structure for assembling central control screen and the second mounting structure for assembling mobile phone support are arranged in the mounting groove.The structure can adapt to different assembly requirements by one set of instrument panel structure, which can install central control screen or mobile phone support, saves the cost of instrument panel mold development and production.But in actual application, the structure also has some problems, because it needs to adapt to central control screen and mobile phone support, the mounting groove of instrument panel needs to be configured with multiple connection and fixing structures, and too many fixing structures integrated in the mounting groove will make the whole instrument panel structure extremely complex, when central control screen is installed in the mounting groove, the second mounting structure for fixing mobile phone support is not used, and when mobile phone support is installed, the first mounting structure in the mounting groove is not used, which makes the position of mounting groove corresponding to the whole instrument panel extremely complex, and the cost of mold development and processing is greatly improved. UTILITY MODEL CONTENT

[0004] The purpose of the present application is to solve the problems in the above background art, and to provide an instrument panel central control area assembly structure, high configuration instrument panel and low configuration instrument panel.

[0005] The technical scheme of the present application is: an instrument panel central control area assembly structure, comprising an instrument panel body; the instrument panel body is provided with a mounting groove recessed forward along the X direction in the central control area; a first mounting structure for assembling a central control screen or a second mounting structure for assembling a mobile phone support and a radio is arranged in the mounting groove; the first mounting structure comprises a first transition support for fixing the central control screen in the mounting groove; the second mounting structure comprises a second transition support for fixing the radio in the mounting groove.

[0006] According to the instrument panel central control area assembly structure provided by the present application, the first mounting structure comprises a plurality of groups of first support screw holes arranged on both sides of the mounting groove in the Z direction and a plurality of groups of second support screw holes arranged on both sides of the mounting groove in the Y direction; the first support screw hole and the second support screw hole are screw hole structures penetrating through the instrument panel body along the X direction for fixing the first transition support.

[0007] According to the instrument panel central control area assembly structure provided by the present application, each group of second support screw holes comprises a plurality of second support screw holes arranged at intervals along the Z direction, and the height difference of adjacent second support screw holes in the same group in the X direction is different.

[0008] According to the instrument panel central control area assembly structure provided by the present application, the first transition support is provided with a first main body screw hole structure for fixing the main body of the central control screen; the first main body screw hole structure comprises a first main body screw hole penetrating through the first transition support along the Z direction and a second main body screw hole penetrating through the first transition support along the X direction.

[0009] According to the instrument panel central control area assembly structure provided by the present application, the first transition support is provided with a plurality of main body clamping grooves for fixing the main body of the central control screen; the main body clamping groove is a slot hole structure penetrating through the first transition support along the X direction.

[0010] According to the instrument panel central control area assembly structure provided by the present application, the instrument panel body is provided with a first upper cover clamping groove for fixing the upper cover of the central control screen on both sides of the Y direction of the mounting groove; the first upper cover clamping groove is a slot hole structure penetrating through the instrument panel body along the Z direction.

[0011] According to the instrument panel central control area assembly structure provided by the present application, the first transition support is provided with a second upper cover clamping groove for fixing the upper cover of the central control screen; the second upper cover clamping groove is a slot hole structure penetrating through the first transition support along the Z direction.

[0012] According to the instrument panel central control area assembly structure provided by the present application, the instrument panel body is provided with a first lower cover clamping groove for fixing the lower cover of the central control screen on both sides of the Y direction of the mounting groove.

[0013] According to the instrument panel central control area assembly structure provided by the application, the first transition support is provided with a lower cover second lower cover clamping groove for fixing the central control screen.

[0014] According to the instrument panel central control area assembly structure provided by the application, the second installation structure comprises a plurality of third support screw holes arranged around the installation groove; the third support screw hole is a screw hole structure penetrating through the instrument panel body along the X direction for fixing the second transition support.

[0015] According to the instrument panel central control area assembly structure provided by the application, the second transition support is provided with a radio screw hole structure for fixing the radio; the radio screw hole structure comprises first radio screw holes arranged on the two sides of the second transition support along the Y direction; the first radio screw hole is a screw hole structure penetrating through the second transition support along the X direction for fixing the radio.

[0016] According to the instrument panel central control area assembly structure provided by the application, the second transition support is provided with a radio positioning structure for positioning the radio; the radio positioning structure comprises radio reeds arranged on the two sides of the second transition support along the Y direction; the radio reed is a cross positioning pin structure arranged along the X direction.

[0017] According to the instrument panel central control area assembly structure provided by the application, the first radio screw holes on the same side of the second transition support along the Y direction and the radio reeds are arranged at intervals along the Z direction; the connecting lines of the first radio screw holes on the two sides of the Y direction intersect with the connecting lines of the radio reeds, and the intersection point is located in the middle of the two groups of first radio screw holes.

[0018] According to the instrument panel central control area assembly structure provided by the application, the second installation structure comprises mobile phone support clamping grooves arranged at intervals along the circumference around the installation groove; the mobile phone support clamping groove is a slot hole structure penetrating through the instrument panel body along the X direction for fixing the mobile phone support.

[0019] According to the instrument panel central control area assembly structure provided by the application, the second installation structure further comprises a plurality of first mobile phone support screw holes; the first mobile phone support screw hole is a screw hole structure penetrating through the instrument panel body along the X direction for fixing the mobile phone support.

[0020] The application further provides a high-specification instrument panel, which adopts any one of the instrument panel central control area assembly structures described above, comprising,

[0021] a central control screen, the central control screen comprising a screen body, an upper cover and a lower cover arranged on the two sides of the screen body along the Z direction and covering the installation groove;

[0022] the screen body is fixed on the first transition support through the screw hole structure and the buckle structure;

[0023] The upper cover is fixed on the X front end side of the first transition support and the instrument panel body through a buckle structure.

[0024] The lower cover is fixed on the X rear end side of the first transition support and the instrument panel body through a buckle structure.

[0025] According to the high-specification instrument panel provided in the application, the X front side of the screen body is provided with second body screw hole structures corresponding to first body screw hole structures on the first transition support; the second body screw hole structures include third body screw holes corresponding to first body screw holes in the first body screw hole structures and fourth body screw holes corresponding to second body screw holes in the first body screw hole structures.

[0026] According to the high-specification instrument panel provided in the application, the X front side of the screen body is provided with body spring leaves corresponding to body clamping grooves on the first transition support; the body spring leaves are buckle structures for limiting the screen body to the first transition support by being inserted into the body clamping grooves along the X direction.

[0027] According to the high-specification instrument panel provided in the application, the side of the upper cover facing the mounting groove is provided with first upper cover spring leaves corresponding to first upper cover clamping grooves on the instrument panel body; the first upper cover spring leaves are buckle structures for limiting the upper cover to the instrument panel body by being inserted into the first upper cover clamping grooves along the Z direction.

[0028] According to the high-specification instrument panel provided in the application, the side of the upper cover facing the mounting groove is provided with second upper cover spring leaves corresponding to second upper cover clamping grooves on the first transition support; the second upper cover spring leaves are buckle structures for limiting the upper cover to the first transition support by being inserted into the second upper cover clamping grooves along the Z direction.

[0029] According to the high-specification instrument panel provided in the application, the side of the lower cover facing the mounting groove is provided with first lower cover spring leaves corresponding to first lower cover clamping grooves on the instrument panel body; the first lower cover spring leaves are buckle structures for limiting the lower cover to the instrument panel body by being inserted into the first lower cover clamping grooves along the Z direction.

[0030] According to the high-specification instrument panel provided in the application, the side of the lower cover facing the mounting groove is provided with second lower cover spring leaves corresponding to second lower cover clamping grooves on the first transition support; the second lower cover spring leaves are buckle structures for limiting the lower cover to the first transition support by being inserted into the second lower cover clamping grooves along the Z direction.

[0031] The application also provides a low-specification instrument panel, which adopts the instrument panel central control area assembly structure in any one of the above instrument panels, comprising,

[0032] A radio is fixed on the second transition support through radio screw hole structures and radio positioning structures on the second transition support.

[0033] The mobile phone support is fixed outside the installation slot through the second installation structure, so that the radio is in the hollow cavity formed by the mobile phone support and the instrument panel body.

[0034] According to the low-config instrument panel provided in the application, the Y-direction two sides of the radio are provided with second radio screw holes corresponding to the first radio screw holes in the radio screw hole structure.

[0035] According to the low-config instrument panel provided in the application, the Y-direction two sides of the radio are provided with radio clamping grooves corresponding to the radio reed on the radio positioning structure.

[0036] According to the low-config instrument panel provided in the application, the circumferential edge position of the X-direction front end side of the mobile phone support is provided with a plurality of mobile phone support reeds corresponding to the mobile phone support clamping grooves on the instrument panel body; the mobile phone support reed is a clamping buckle structure extending along the X-direction and inserted into the mobile phone support clamping groove to limit the mobile phone support outside the installation slot.

[0037] According to the low-config instrument panel provided in the application, the X-direction front end side of the mobile phone support is provided with a plurality of second radio screw holes corresponding to the first radio screw holes on the instrument panel body.

[0038] The advantages of the application are: 1. The first transition support specially used for installing the central control screen and the second transition support used for installing the radio are designed, on the one hand, different central control areas can be configured through the same set of instrument panels, and on the other hand, the assembly structure is transferred to the transition support, so that the assembly structure in the installation slot of the instrument panel can be constructed very simply, without the need to design a complex assembly structure, only the fixing structure of the first transition support, the second transition support and the mobile phone support is needed, the processing difficulty and mold development difficulty of the instrument panel assembly structure are greatly reduced, in addition, the first transition support and the second transition support are single components, the processing difficulty is low, and the assembly and disassembly are very convenient;

[0039] 2. The first transition support is used to fix and install the central control screen, the screen body, the upper cover and the lower cover of the central control screen are connected with the first transition support through the screw hole structure and the clamping buckle structure, the overall assembly is very convenient and easy to operate, and the assembly and disassembly are extremely easy;

[0040] 3. The installation structure of the radio and the mobile phone support in the central control area is very simple, the radio is directly installed in the installation slot through the second transition support, and the mobile phone support is fixed on the installation slot through the clamping buckle structure and the screw hole structure, and the overall assembly and disassembly are very simple.

[0041] The instrument panel center control area assembly structure of the application is very simple, greatly reduces the processing difficulty and mold development cost of the instrument panel body center control area, can conveniently adapt to different assembly requirements, and is extremely easy to assemble and disassemble, and has great popularization value. BRIEF DESCRIPTION OF DRAWINGS

[0042] Figure 1 : The center control area schematic diagram of the instrument panel body of the application;

[0043] Figure 2 : The mounting groove structure schematic diagram of the application;

[0044] Figure 3 : The high configuration instrument panel schematic diagram of the application;

[0045] Figure 4 : The structure schematic diagram of the first transition support assembled to the mounting groove of the application;

[0046] Figure 5 : The screen body axial view of the center control screen of the application;

[0047] Figure 6 : The back view of the screen body of the center control screen of the application;

[0048] Figure 7 : The upper cover structure schematic diagram of the application;

[0049] Figure 8 : The lower cover structure schematic diagram of the application;

[0050] Figure 9 : The axial view of the first transition support of the application;

[0051] Figure 10 : The front view of the first transition support of the application;

[0052] Figure 11 : The top view of the first transition support of the application;

[0053] Figure 12 : The low configuration instrument panel schematic diagram of the application;

[0054] Figure 13 : The internal assembly position schematic diagram of the low configuration instrument panel of the application;

[0055] Figure 14 : The structure schematic diagram of the second transition support assembled to the mounting groove of the application;

[0056] Figure 15 : The radio structure schematic diagram of the application;

[0057] Figure 16 : The axial view of the mobile phone support of the application;

[0058] Figure 17 Figure 5 is a schematic view of the back of the mobile phone support of the present application;

[0059] Figure 18 Figure 6 is a schematic view of the second transition support of the present application;

[0060] 1 - instrument panel body; 11 - mounting groove; 12 - first support screw hole; 13 - second support screw hole; 14 - third support screw hole; 15 - mobile phone support clamping groove; 16 - first mobile phone support screw hole; 17 - first upper cover clamping groove; 18 - first lower cover clamping groove;

[0061] 2 - central control screen; 20 - screen body; 21 - lower cover; 22 - upper cover; 23 - third body screw hole; 24 - fourth body screw hole; 25 - body spring piece; 26 - first upper cover spring piece; 27 - second upper cover spring piece; 28 - first lower cover spring piece; 29 - second lower cover spring piece;

[0062] 3 - first transition support; 31 - first body screw hole; 32 - second body screw hole; 33 - body clamping groove; 34 - second upper cover clamping groove; 35 - fastening screw hole; 36 - second lower cover clamping groove;

[0063] 4 - radio; 41 - second radio screw hole; 42 - radio clamping groove;

[0064] 5 - second transition support; 51 - first radio screw hole; 52 - radio spring piece; 53 - fixing screw hole;

[0065] 6 - mobile phone support; 61 - mobile phone support spring piece; 62 - second mobile phone support screw hole. DETAILED DESCRIPTION

[0066] The embodiments of the present application will be described in detail below with reference to the drawings, wherein the same or similar components are denoted by the same or similar reference numerals throughout the drawings. The embodiments described below by reference to the drawings are exemplary and are intended to explain the present application, and should not be understood as limiting the present application.

[0067] In the description of the present application, it should be understood that the terms "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and therefore should not be understood as indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be understood as limiting the present application.

[0068] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0069] The present application will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0070] This application relates to an assembly structure for the central control area of ​​an instrument panel. This assembly structure involves installing functional components in the central control area of ​​the instrument panel. These functional components include a central control screen, a radio, and a mobile phone holder. Installing the central control screen creates a high-end instrument panel, while installing the radio and mobile phone holder creates a low-end instrument panel. The central control screen is installed using a first transition bracket, and the radio is installed using a second transition bracket. The mounting slot in the central control area contains the assembly structure for the first transition bracket, the second transition bracket, and the mobile phone holder. The assembly structure within the mounting slot mainly consists of screw holes and slots. Therefore, the processing difficulty of the instrument panel's central control area is significantly reduced, and the instrument panel structure is standardized. During actual assembly, a high-end central control screen or a low-end radio and mobile phone holder can be selected for the central control area assembly, depending on requirements. The overall operation is very simple, and assembly and disassembly are extremely convenient.

[0071] Specifically, such as Figures 1-18 As shown, a dashboard center console assembly structure of this application includes a dashboard body 1. The dashboard body 1 has a mounting groove 11 recessed forward along the X direction in the center console area. This application essentially constructs the mounting of functional components within the mounting groove. The functional components are installed on the open side of the mounting groove, forming the desired center console area on the surface of the dashboard. The mounting groove 11 is provided with a first mounting structure for mounting a center console screen 2 or a second mounting structure for mounting a mobile phone holder 6 and a radio 4. The first mounting structure includes a first transition bracket 3 for fixing the center console screen 2 into the mounting groove 11, and the second mounting structure includes a second transition bracket 5 for fixing the radio 4 into the mounting groove 11.

[0072] This application uses a first transition bracket 3 to install the central control screen 2 into the mounting slot, and a second transition bracket 5 to install the radio 4 into the mounting slot. The mobile phone holder 6 is directly assembled into the mounting slot, and the mobile phone holder 6 is installed on the open side of the mounting slot, covering the radio 4 inside the mounting slot. That is, after forming a low-end dashboard, the radio 4 is not visible from the outside of the dashboard.

[0073] In actual assembly, when assembling the high-end instrument panel, firstly, the first transition bracket 3 is assembled into the mounting slot, and then the central control screen 2 is assembled onto the first transition bracket 3; when assembling the low-end instrument panel, firstly, the second transition bracket 5 is assembled into the mounting slot, the radio 4 is installed onto the second transition bracket 5, and finally, the mobile phone holder 6 is assembled onto the open side of the mounting slot to form the required low-end instrument panel.

[0074] In some embodiments of this application, the first mounting structure described above has been optimized, specifically, as follows: Figures 1-2 As shown, the first mounting structure includes multiple sets of first bracket screw holes 12 distributed on both sides of the mounting groove 11 in the Z direction and multiple sets of second bracket screw holes 13 distributed on both sides of the mounting groove 11 in the Y direction. The first bracket screw holes 12 and the second bracket screw holes 13 are screw hole structures that penetrate the instrument panel body 1 along the X direction for fixing the first transition bracket 3. The first mounting structure is a structure for fixing the first transition bracket 3 in the mounting groove 11, as shown... Figure 2 As shown, in this embodiment, two sets of first bracket screw holes 12 are provided on both sides of the mounting groove in the Z direction, and two sets of second bracket screw holes 13 are provided on both sides of the mounting groove in the Y direction. Each set of first bracket screw holes 12 includes two first bracket screw holes 12 spaced apart along the Y direction, and each set of second bracket screw holes 13 includes two second bracket screw holes 13 spaced apart along the Z direction. Adjacent second bracket screw holes 13 in the same set have different height differences in the X direction. This design ensures that the connection points between the second bracket screw holes 13 and the first transition bracket 3 are not on the same plane in the X and Z directions, increasing the connection strength and stability between the mounting groove 11 and the first transition bracket 3.

[0075] like Figure 4 , 9 The first transition bracket 3 is a bracket structure assembled in the mounting groove. Extended ear plates are provided on the Z and Y sides of the first transition bracket 3. The ear plates have fastening screw holes 35 corresponding to the first bracket screw holes 12 and the second bracket screw holes 13. During actual assembly of the first transition bracket 3, the fastening screw holes 35 on the ear plates of the first transition bracket 3 are aligned with the first bracket screw holes 12 and the second bracket screw holes 13 one by one. Then, bolts are driven into the aligned screw holes and tightened to fix the first transition bracket 3 into the mounting groove 11, completing the assembly of the first transition bracket 3 into the mounting groove 11.

[0076] In this embodiment, the central control screen 2 involves a screen body 20, a lower cover 21, and an upper cover 22. The screen body 20 is the main part of the central control screen 2. The upper cover 22 and the lower cover 21 are respectively placed on both sides of the screen body 20 in the Z direction, covering the mounting groove 11, and forming a complete central control screen 2 structure with the screen body 20. The upper cover 22 and the lower cover 21 cover and shield the parts of the mounting groove 11 that are not covered by the screen body 20, so as to prevent the internal structure of the central control screen 2 from being exposed to the line of sight. The screen body 20 of the central control screen 2 is fixed on the first transition bracket 3, and the upper cover 22 and the lower cover 21 are fixed on the first transition bracket 3 and the instrument panel body 1.

[0077] like Figures 8-10 As shown, the first transition bracket 3 is provided with a first main body screw hole structure for fixing the screen body 20 of the central control screen 2. The first main body screw hole structure includes a first main body screw hole 31 penetrating the first transition bracket 3 along the Z direction and a second main body screw hole 32 penetrating the first transition bracket 3 along the X direction. The first main body screw hole structure on the first transition bracket 3 corresponds to the second main body screw hole structure on the screen body 20, as shown. Figures 5-6 As shown, the front X-axis of the screen body 20 is provided with a second main body screw hole structure corresponding to the first main body screw hole structure on the first transition bracket 3. The second main body screw hole structure includes a third main body screw hole 23 corresponding to the first main body screw hole 31 in the first screw hole structure and a fourth main body screw hole 24 corresponding to the second main body screw hole 32 in the first main body screw hole structure. The front X-axis of the screen body 20 is provided with two sets of screw holes, namely the third main body screw hole 23 on the Z-up side and the fourth main body screw hole 24 on the Z-down side. The two third main body screw holes 23 and the two fourth main body screw holes 24 bolt the screen body 20 to the first transition bracket 3. The front X-axis of the screen body 20 is provided with a top plate perpendicular to the Z-direction. The top plate has two third main body screw holes 23 that run through the Z-direction. Correspondingly, the first transition bracket 3 has two first main body screw holes 31 that run through the first transition bracket 3 in the Z-direction. Two connecting plates perpendicular to the X-direction are provided on the front X-side of the screen body 20. One end of the connecting plate is connected to the screen body 20. A fourth main body screw hole 24 is provided on the connecting plate, which runs through the connecting plate in the X-direction. A second main body screw hole 32 is provided on the first transition bracket 3, which runs through the first transition bracket 3 in the X-direction. The fourth main body screw hole 24 and the second main body screw hole 32 correspond to each other.

[0078] Meanwhile, to facilitate the connection between the first transition bracket 3 and the screen body 20, this embodiment provides a first main body buckle structure on the first transition bracket 3 for fixing the screen body 20 of the central control screen 2, and a second buckle structure corresponding to the first main body buckle structure on the X-front side of the screen body 20 is provided. Figures 9-10As shown, the first main body buckle structure includes a plurality of main body card slots 33 through the first transition support 3 along the X direction, and four main body card slots 33 are arranged on the first transition support 3 in the embodiment, which are spaced apart in pairs. Figures 5-6 As shown, the second main body buckle structure includes a plurality of main body spring sheets 25 corresponding to the main body card slots 33 of the first main body buckle structure one by one, and the main body spring sheet 25 is a buckle structure extending along the X direction and inserted into the main body card slot 33 to limit the screen body 20 on the first transition support 3. The main body spring sheet 25 is a tapered structure with a small end and a large end, the small end of the main body spring sheet 25 extends into the corresponding main body card slot 33, and the large end of the main body spring sheet 25 is located on the other side of the main body card slot 33. The large end of the main body spring sheet 25 limits the main body spring sheet 25 from being pulled out of the main body card slot 33, thereby limiting the screen body 20 on the corresponding first transition support 3.

[0079] The above describes the assembly of the screen body 20 of the central control screen 2 and the first transition support 3 in the embodiment, and the assembly structure of the upper cover 22 and the first transition support 3 in the embodiment is as shown in Figure 7 and 11 As shown, the first transition support 3 is provided with a first upper cover buckle structure for fixing the upper cover 22 of the central control screen 2, and the side of the upper cover 22 facing the mounting groove 11 is provided with a second upper cover buckle structure corresponding to the first upper cover buckle structure on the first transition support 3. The upper cover 22 is fixedly connected with the first upper cover buckle structure on the first transition support 3 through the second upper cover buckle structure, and the first upper cover buckle structure and the second upper cover buckle structure are used to assemble the first transition support 3 and the upper cover 22.

[0080] As shown in Figure 11 The first upper cover buckle structure includes a plurality of second upper cover card slots 34 through the first transition support 3 along the Z direction, and five second upper cover card slots 34 are arranged on the first transition support 3 in the embodiment, which are arranged in the front three and the rear two manner, and the second upper cover card slot 34 is a slot hole structure through the first transition support 3 along the Z direction. As shown in Figure 7 The second upper cover buckle structure includes five second upper cover spring sheets 27 corresponding to the second upper cover card slots 34 of the first upper cover buckle structure one by one, and the second upper cover spring sheet 27 is a buckle structure extending along the Z direction and inserted into the second upper cover card slot 34 to limit the upper cover 22 on the first transition support 3. Similarly, the second upper cover spring sheet 27 is a tapered structure with a large end and a small end, and after being inserted into the corresponding second upper cover card slot 34, the second upper cover spring sheet 27 can limit the upper cover 22 on the first transition support 3.

[0081] In addition, in order to further fix the upper cover 22, the upper cover 22 is further fixedly connected with the instrument panel body 1 in the embodiment. As shown in Figure 2 and 7As shown, the instrument panel body 1 is provided with two groups of first upper cover clamping grooves 17 on both sides of the installation groove 11Y, each group of first upper cover clamping grooves 17 includes two first upper cover clamping grooves 17 spaced apart along the X direction, and the first upper cover clamping groove 17 is a slot hole structure penetrating through the instrument panel body 1 along the Z direction. The Y direction both sides of the side of the installation groove of the corresponding upper cover 22 are provided with two groups of first upper cover spring sheets 26, and each group of first upper cover spring sheets 26 also includes two first upper cover spring sheets 26 arranged along the X direction. The structure of the first upper cover spring sheet 26 is also a tapered structure with one end large and one end small, and the first upper cover spring sheet 26 inserted into the corresponding first upper cover clamping groove 17 can limit the upper cover 22 on the instrument panel body 1.

[0082] The central control screen 2 of the present application also includes a lower cover 21, which is located at the X direction rear side of the central control screen 20, as shown in the figure. Figure 8 As shown, the lower cover 21 is fixed on the first transition support 3 and the instrument panel body 1, and the instrument panel body 1 is provided with a first lower cover clamping groove 18 on both sides of the Y direction of the installation groove 11 for fixing the lower cover 21 of the central control screen 2, and the first lower cover clamping groove 18 is a slot hole structure penetrating through the instrument panel body 1 along the Z direction, and the side of the installation groove 11 of the lower cover 21 is provided with a first lower cover spring sheet 28 corresponding to the first lower cover clamping groove 18 on the instrument panel body 1, and the first lower cover spring sheet 28 is a buckle structure extending along the Z direction and inserted into the first lower cover clamping groove 18 to limit the lower cover 21 on the instrument panel body 1, and the structure of the first lower cover spring sheet 28 is also a tapered structure with one end large and one end small, and the first lower cover spring sheet 28 inserted into the corresponding first lower cover clamping groove 18 can limit the lower cover 21 on the instrument panel body 1.

[0083] Similarly, the first transition support 3 of the present embodiment is provided with a second lower cover clamping groove 36 for fixing the lower cover 21 of the central control screen 2, and the second lower cover clamping groove 36 is located at the Z direction bottom position of the first transition support 3, penetrating through the first transition support 3 along the Z direction, and the side of the installation groove 11 of the lower cover 21 is provided with a second lower cover spring sheet 29 corresponding to the second lower cover clamping groove 36 on the first transition support 3, and the second lower cover spring sheet 29 is a buckle structure extending along the Z direction and inserted into the second lower cover clamping groove 36 to limit the lower cover 21 on the first transition support 3. The structure of the second lower cover spring sheet 29 is also a tapered structure with one end large and one end small, and the second lower cover spring sheet 29 inserted into the corresponding second lower cover clamping groove 36 can limit the lower cover 21 on the first transition support 3.

[0084] In actual assembly, the first transition bracket 3 is installed first, the fastening screw holes 35 on the ear plates of the first transition bracket 3 are aligned with the first bracket screw holes 12 and the second bracket screw holes 13 one by one, then bolts are screwed into the aligned screw holes, and the first transition bracket 3 is fixed into the installation groove 11 by tightening the bolts; the screen main body 20 of the central control screen 2 is installed on the first transition bracket 3, the main body spring leaf 25 of the screen main body 20 is aligned with the main body clamping groove 33 on the first transition bracket 3 one by one, the third main body screw hole 23 on the screen main body 20 is aligned with the first main body screw hole 31 of the first transition bracket 3, the fourth main body screw hole 24 on the screen main body 20 is aligned with the second main body screw hole 32 of the first transition bracket 3, the main body spring leaf 25 is inserted into the corresponding main body clamping groove 33, the lower cover 21 is limited on the first transition bracket 3, then a bolt is screwed into the aligned third main body screw hole 23 and the first main body screw hole 31, and a bolt is screwed into the aligned fourth main body screw hole 24 and the second main body screw hole 32, so that the screen main body 20 is stably installed on the first transition bracket 3; the upper cover 22 is installed, the second upper cover spring leaf 27 on the upper cover 22 is aligned with the second upper cover clamping groove 34 on the first transition bracket 3 one by one, the first upper cover spring leaf 26 on the upper cover 22 is aligned with the first upper cover clamping groove 17 on the two sides of the installation groove 11Y of the instrument panel body 1, the upper cover 22 is pressed, the second upper cover spring leaf 27 is inserted into the corresponding second upper cover clamping groove 34, the first upper cover spring leaf 26 is inserted into the corresponding first upper cover clamping groove 17, and the upper cover 22 is stably fixed on the first transition bracket 3 and the instrument panel body 1; the lower cover 21 is installed, the first lower cover spring leaf 28 on the lower cover 21 is aligned with the first lower cover clamping groove 18 on the instrument panel body 1, the second lower cover spring leaf 29 on the lower cover 21 is aligned with the second lower cover clamping groove 36 on the first transition bracket 3, the lower cover 21 is pressed, the first lower cover spring leaf 28 is inserted into the corresponding first lower cover clamping groove 18, the second lower cover spring leaf 29 is inserted into the corresponding second lower cover clamping groove 36, and the installation of the lower cover 21 on the instrument panel body 1 and the first transition bracket 3 is completed; thus the installation of the central control screen 2 is completed.

[0085] In some embodiments of the present application, the second installation structure described above is optimized, and specifically, as shown in Figure 2 the second installation structure of the present embodiment includes a plurality of third bracket screw holes 14 surrounding the installation groove 11, the third bracket screw holes 14 are screw hole structures penetrating the instrument panel body 1 along the X direction for fixing the second transition bracket 5. As shown in Figure 14 and 18As shown, the second transition bracket 5 is provided with fixing screw holes 53 corresponding to the third bracket screw holes 14, when the second transition bracket 5 needs to be installed into the installation groove 11, the fixing screw holes 53 on the second transition bracket 5 are aligned with the third bracket screw holes 14 around the installation groove 11, then bolts are screwed into the aligned screw holes, so that the second transition bracket 5 can be stably fixed into the installation groove 11. The third bracket screw holes 14 of the present embodiment can be coincident with the first bracket screw holes 12 described above, or can be non-coincident, that is, the bracket screw holes for installing the first transition bracket 3 and the bracket screw holes for installing the second transition bracket 5 can adopt the same set of screw hole structures, or different screw hole structures. The third bracket screw holes 14 of the present application are coincident with the first bracket screw holes 12, see Figure 2 The third bracket screw holes 14 are not shown in the figure.

[0086] The second transition bracket 5 is a fixed bracket structure for installing the radio 4, and the radio 4 is fixed into the installation groove 11 through the second transition bracket 5. As shown in Figures 13-15 As shown in Figs. 16 and 18, the second transition bracket 5 is provided with a radio screw hole structure for fixing the radio 4, and the radio screw hole structure includes first radio screw holes 51 arranged on the Y-direction both sides of the second transition bracket 5, and the first radio screw holes 51 are screw holes penetrating through the second transition bracket 5 along the X-direction for fixing the radio 4. The Y-direction both sides of the radio 4 are provided with ear plate structures extending along the Y-direction, and the ear plate structures are provided with second radio screw holes 41 corresponding to the first radio screw holes 51.

[0087] In addition, the installation and fixation of the second transition bracket 5 and the radio 4 not only adopts bolted connection, but also adopts a combined connection structure of spring leaf and clamping groove, as shown in Figure 13 、 14 As shown in Figs. 16 and 18, the second transition bracket 5 is provided with a radio screw hole structure for fixing the radio 4, and the radio screw hole structure includes first radio screw holes 51 arranged on the Y-direction both sides of the second transition bracket 5, and the first radio screw holes 51 are screw holes penetrating through the second transition bracket 5 along the X-direction for fixing the radio 4. The Y-direction both sides of the radio 4 are provided with ear plate structures extending along the Y-direction, and the ear plate structures are provided with second radio screw holes 41 corresponding to the first radio screw holes 51.

[0088] As shown in Figs. 16 and 18, the second transition bracket 5 is provided with a radio screw hole structure for fixing the radio 4, and the radio screw hole structure includes first radio screw holes 51 arranged on the Y-direction both sides of the second transition bracket 5, and the first radio screw holes 51 are screw holes penetrating through the second transition bracket 5 along the X-direction for fixing the radio 4. The Y-direction both sides of the radio 4 are provided with ear plate structures extending along the Y-direction, and the ear plate structures are provided with second radio screw holes 41 corresponding to the first radio screw holes 51. Figure 14 、 15As shown in FIG. 18, two sets of fixing structures for fixing the radio 4 are arranged on the Y-direction both sides of the second transition bracket 5, each set of fixing structure includes a radio reed 52 and a first radio screw hole 51, that is, two radio reeds 52 and two first radio screw holes 51 are arranged on the Y-direction both sides of the mounting hole of the second transition bracket 5 for installing the radio 4, and the two radio reeds 52 and the two first radio screw holes 51 are respectively arranged at the four corners of the mounting hole. Figure 18 As shown in FIG. 19, the first radio screw hole 51 and the radio reed 52 on the same side of the Y-direction of the second transition bracket 5 are arranged in the Z-direction, and the connecting line of the first radio screw hole 51 on the Y-direction both sides intersects with the connecting line of the radio reed 52, and the intersection point is in the middle of the two first radio screw holes 51. That is, the two radio reeds 52 of the embodiment are arranged at the opposite corners of the mounting hole, and the two first radio screw holes 51 are arranged at the opposite corners of the mounting hole. The purpose of such design is to make the mounting connection of the radio 4 and the second transition bracket 5 more closely and stably.

[0089] In actual assembly of the radio 4, first, the second transition bracket 5 is assembled into the mounting groove 11, the fixing screw holes 53 on the second transition bracket 5 are aligned with the third bracket screw holes 14 on the instrument panel body 1 one by one, and bolts are screwed into the aligned fixing screw holes 53 and the third bracket screw holes 14 to fix the second transition bracket 5 to the instrument panel body 1 around the mounting groove 11; the second radio screw holes 41 on the radio 4 are aligned with the first radio screw holes 51 on the second transition bracket 5, the radio clamping grooves 42 on the radio 4 are aligned with the radio reeds 52 on the second transition bracket 5, the radio 4 is pressed to make the radio reeds 52 inserted into the corresponding radio clamping grooves 42 to limit the radio 4 on the second transition bracket 5, and then the bolts are screwed into the aligned second radio screw holes 41 and the first radio screw holes 51 to fix the radio 4 to the second transition bracket 5, thereby completing the assembly of the radio 4 and the second transition bracket 5.

[0090] In the preferred embodiment of the present application, the second mounting structure is further optimized, and the second mounting structure also relates to the installation of the mobile phone bracket 6, as shown in FIG. 20. Figure 2 15 ​As shown in Figs. 16, 17, the second mounting structure comprises mobile phone holder clamping grooves 15 arranged along the circumference of the mounting groove 11, which are through holes in the X direction of the instrument panel body 1 for fixing the mobile phone holder 6. The circumferential edge of the X direction front end side of the mobile phone holder 6 is provided with a plurality of mobile phone holder spring leaves 61 corresponding to the mobile phone holder clamping grooves 15 on the instrument panel body 1, which are clamping structures extending in the X direction inserted into the mobile phone holder clamping grooves 15 to limit the mobile phone holder 6 outside the mounting groove 11. The mobile phone holder spring leaf 61 is also a tapered structure with one end large and one end small. When the mobile phone holder spring leaf 61 is inserted into the corresponding mobile phone holder clamping groove 15, the mobile phone holder 6 can be limited on the instrument panel body 1.

[0091] In addition, the mounting of the instrument panel body 1 and the mobile phone holder 6 also adopts the way of bolt connection, as shown in Figs. 16, 17. Figure 2 and 16 As shown in Figs. 16, 17, the second mounting structure further comprises a plurality of first mobile phone holder screw holes 16 through the instrument panel body 1 in the X direction. The X direction front end side of the mobile phone holder 6 is provided with a plurality of second mobile phone holder screw holes 62 corresponding to the first mobile phone holder screw holes 16 on the instrument panel body 1.

[0092] The first mobile phone holder screw hole 16 is arranged at the lower end of the Z direction on both sides of the Y direction of the mounting groove 11 in this embodiment. The second mobile phone holder screw hole 62 corresponds to the first mobile phone holder screw hole 16 one by one.

[0093] When the mobile phone holder 6 needs to be assembled, the sixth X direction second mobile phone holder screw hole 62 on the mobile phone holder 6 is aligned with the first mobile phone holder screw hole 16 on the instrument panel body 1 one by one, the mobile phone holder spring leaf 61 on the mobile phone holder 6 is aligned with the mobile phone holder clamping groove 15 on the instrument panel body 1 one by one, the mobile phone holder 6 is pressed, the mobile phone holder spring leaf 61 is inserted into the mobile phone holder clamping groove 15, the mobile phone holder 6 is limited on the instrument panel body 1, and then the second mobile phone holder screw hole 62 and the first mobile phone holder screw hole 16 are screwed into the bolt, and the mobile phone holder 6 is fixed to the instrument panel body 1.

[0094] As shown in Figs. 16, 17, the mobile phone holder 6 is a hollow structure, and the mobile phone holder 6 is provided with a fixed groove for placing a mobile phone. Figure 13 、 16 As shown in Figs. 16, 17, the mobile phone holder 6 is a hollow structure, and the mobile phone holder 6 is provided with a fixed groove for placing a mobile phone.

[0095] The present application can select different assembly structures according to actual needs. When the instrument panel to be configured is high configuration, that is, the center control screen 2 needs to be installed in the center control area of the instrument panel body 1, the following method can be used: first, install the first transition support 3, align the fastening screw holes 35 on the ear plate of the first transition support 3 with the first support screw holes 12 and the second support screw holes 13 one by one, then screw the bolts into the aligned screw holes, and tighten the bolts to fix the first transition support 3 in the mounting groove 11; then install the screen body 20 of the center control screen 2 on the first transition support 3, align the main body spring leaf 25 of the screen body 20 with the main body clamping groove 33 on the first transition support 3 one by one, align the third main body screw hole 23 on the screen body 20 with the first main body screw hole 31 of the first transition support 3, align the fourth main body screw hole 24 on the screen body 20 with the second main body screw hole 32 of the first transition support 3, insert the main body spring leaf 25 into the corresponding main body clamping groove 33, and limit the lower cover 21 on the first transition support 3, then screw the bolts into the aligned third main body screw hole 23 and first main body screw hole 31, and screw the bolts into the aligned fourth main body screw hole 24 and second main body screw hole 32, so that the screen body 20 can be stably installed on the first transition support 3; install the upper cover 22, align the second upper cover spring leaf 27 on the upper cover 22 with the second upper cover clamping groove 34 on the first transition support 3 one by one, align the first upper cover spring leaf 26 on the upper cover 22 with the first upper cover clamping groove 17 on the Y side of the mounting groove 11 of the instrument panel body 1, press the upper cover 22, insert the second upper cover spring leaf 27 into the corresponding second upper cover clamping groove 34, insert the first upper cover spring leaf 26 into the corresponding first upper cover clamping groove 17, and stably fix the upper cover 22 on the first transition support 3 and the instrument panel body 1; install the lower cover 21, align the first lower cover spring leaf 28 on the lower cover 21 with the first lower cover clamping groove 18 on the instrument panel body 1, align the second lower cover spring leaf 29 on the lower cover 21 with the second lower cover clamping groove 36 on the first transition support 3, press the lower cover 21, insert the first lower cover spring leaf 28 into the corresponding first lower cover clamping groove 18, and insert the second lower cover spring leaf 29 into the corresponding second lower cover clamping groove 36, to complete the installation of the lower cover 21 on the instrument panel body 1 and the first transition support 3; thus the installation of the center control screen 2 is completed, and a high configuration instrument panel is formed.

[0096] When the instrument panel to be configured is a low configuration, that is, the radio 4 and the mobile phone holder 6 need to be installed in the central control area of the instrument panel body 1, the following method can be used: first, assemble the second transition holder 5 into the mounting groove 11, align the fixing screw holes 53 on the second transition holder 5 with the third holder screw holes 14 on the instrument panel body 1 one by one, and then screw bolts into the aligned fixing screw holes 53 and third holder screw holes 14 to fix the second transition holder 5 to the instrument panel body 1 around the mounting groove 11; align the second radio screw holes 41 on the radio 4 with the first radio screw holes 51 on the second transition holder 5, align the radio clamping grooves 42 on the radio 4 with the radio reed 52 on the second transition holder 5, press the radio 4 so that the radio reed 52 is inserted into the corresponding radio clamping groove 42, and then limit the radio 4 on the second transition holder 5, and then screw bolts into the aligned second radio screw holes 41 and first radio screw holes 51 to fix the radio 4 to the second transition holder 5, completing the assembly of the radio 4 and the second transition holder 5; then assemble the mobile phone holder 6, align the second mobile phone holder screw holes 62 on the mobile phone holder 6 with the first mobile phone holder screw holes 16 on the instrument panel body 1 one by one, align the mobile phone holder reed 61 on the mobile phone holder 6 with the mobile phone holder clamping groove 15 on the instrument panel body 1 one by one, press the mobile phone holder 6 so that the mobile phone holder reed 61 is inserted into the mobile phone holder clamping groove 15, and then limit the mobile phone holder 6 on the instrument panel body 1, and then screw bolts into the aligned second mobile phone holder screw holes 62 and first mobile phone holder screw holes 16 to fix the mobile phone holder 6 to the instrument panel body 1; complete the assembly of the radio 4 and the mobile phone holder 6 to form a low configuration instrument panel.

[0097] The X direction of the present application refers to the front-rear direction of the vehicle, as shown by the vertical paper surface direction, the Y direction of the present application refers to the left-right direction of the vehicle, as shown by the left-right direction in Figure 6 , and the Z direction of the present application refers to the up-down direction of the vehicle, as shown by the up-down direction in Figure 6 . Figure 6

[0098] The above shows and describes the basic principles, main features and advantages of the present application. Those skilled in the art should understand that the present application is not limited to the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the present application, and various changes and improvements can be made without departing from the spirit and scope of the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.​

Claims

1. An assembly structure for the central control area of ​​an instrument panel, characterized in that: The instrument panel includes a dashboard body (1); the dashboard body (1) has a mounting groove (11) recessed forward along the X direction in the central control area; the mounting groove (11) is provided with a first mounting structure for mounting a central control screen (2) or a second mounting structure for mounting a mobile phone holder (6) and a radio (4); the first mounting structure includes a first transition bracket (3) for fixing the central control screen (2) into the mounting groove (11); the second mounting structure includes a second transition bracket (5) for fixing the radio (4) into the mounting groove (11).

2. The instrument panel central control area assembly structure as described in claim 1, characterized in that: The first mounting structure includes multiple sets of first bracket screw holes (12) placed on both sides of the mounting groove (11) in the Z direction and multiple sets of second bracket screw holes (13) placed on both sides of the mounting groove (11) in the Y direction; the first bracket screw holes (12) and the second bracket screw holes (13) are screw hole structures that penetrate the instrument panel body (1) in the X direction for fixing the first transition bracket (3).

3. The instrument panel central control area assembly structure as described in claim 1, characterized in that: The first transition bracket (3) is provided with a first screw hole structure for fixing the screen body (20) of the central control screen (2); the first screw hole structure includes a first main body screw hole (31) that penetrates the first transition bracket (3) along the Z direction and a second main body screw hole (32) that penetrates the first transition bracket (3) along the X direction.

4. The instrument panel central control area assembly structure as described in claim 3, characterized in that: The first transition bracket (3) is provided with multiple main body slots (33) for fixing the screen body (20) of the central control screen (2); the main body slots (33) are slot structures that pass through the first transition bracket (3) along the X direction.

5. The instrument panel central control area assembly structure as described in claim 4, characterized in that: The first transition bracket (3) is provided with a second upper cover slot (34) for fixing the upper cover (22) of the central control screen (2); the second upper cover slot (34) is a slot structure that passes through the first transition bracket (3) along the Z direction.

6. The instrument panel central control area assembly structure as described in claim 1, characterized in that: The second mounting structure includes a plurality of third bracket screw holes (14) surrounding the mounting groove (11); the third bracket screw holes (14) are screw hole structures that penetrate the instrument panel body (1) along the X direction for fixing the second transition bracket (5).

7. The instrument panel central control area assembly structure as described in claim 6, characterized in that: The second transition bracket (5) is provided with a radio screw hole structure for fixing the radio (4); the radio screw hole structure includes a first radio screw hole (51) located on both sides of the second transition bracket (5) in the Y direction; the first radio screw hole (51) is a screw hole structure that passes through the second transition bracket (5) in the X direction for fixing the radio (4).

8. The instrument panel central control area assembly structure as described in claim 7, characterized in that: The second transition bracket (5) is provided with a radio positioning structure for fixing the radio (4); the radio positioning structure includes radio springs (52) placed on both sides of the second transition bracket (5) in the Y direction; the radio springs (52) are cross positioning pin structures that extend along the X direction.

9. A high-end instrument panel, characterized in that: The instrument panel adopts an assembly structure for the central control area of ​​the instrument panel as described in any one of claims 1 to 5. include, The central control screen (2) includes a screen body (20), an upper cover (22) and a lower cover (21) respectively placed on both sides of the screen body (20) in the Z direction and covering the mounting groove (11); The screen body (20) is fixed to the first transition bracket (3) by a screw hole structure and a snap-fit ​​structure; The upper cover (22) is fixed to the front X-direction side of the first transition bracket (3) and the instrument panel body (1) by a snap-fit ​​structure; The lower cover (21) is fixed to the X-direction rear end side of the first transition bracket (3) and the instrument panel body (1) by a snap-fit ​​structure.

10. A low-spec dashboard, characterized in that: The instrument panel adopts an assembly structure for the central control area of ​​the instrument panel as described in any one of claims 1, 6 to 8. include, Radio (4), the radio (4) is fixed on the second transition bracket (5) by a screw hole structure and a snap-fit ​​structure on the second transition bracket (5); The mobile phone holder (6) is fixed to the outside of the mounting groove (11) by a second mounting structure so that the radio (4) is located in the hollow cavity formed by the mobile phone holder (6) and the instrument panel body (1).