Multi-equipment integrated mounting bracket structure
By using a multi-equipment integrated mounting bracket structure, and by combining web plates, mounting bosses, and reinforcing ribs, the problem of numerous components and compact space for multi-equipment installation inside the aircraft is solved. This achieves reliable connection of equipment and continuity of load transfer, and improves the rigidity of the aircraft.
Patent Information
- Application Number
- CN202423048367.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-10
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2034-12-10
AI Technical Summary
When multiple devices are installed inside an aircraft, the existing equipment mounting bracket structure has a large number of parts, is difficult to install, has a compact space, and suffers from poor structural continuity and load transfer.
Design a multi-equipment integrated mounting bracket structure, which adopts a combination of web plate, mounting boss and reinforcing ribs. The bracket achieves reliable connection of equipment and cable connection maintenance by reducing the weight of the groove, and arranges three horizontal and five vertical continuous reinforcing ribs under the bracket to improve strength and rigidity.
Reducing the number of parts saves installation space, lowers assembly difficulty, enables lightweight and reliable connections of equipment, ensures the continuity of load transfer, and improves the rigidity of the aircraft.
Smart Images

Figure CN223618926U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mechanical mechanism design technology, and in particular to a multi-equipment integrated installation bracket structure. Background Technology
[0002] To facilitate the rapid installation and securing of equipment inside aircraft, mounting brackets are typically installed within the aircraft. Currently, the relationship between equipment and mounting brackets is mostly one-to-one, meaning one device corresponds to one independent mounting bracket. While this installation method ensures the reliability of equipment installation, multiple mounting brackets are required for locations where multiple devices need to be installed. This increases the number of components and the installation difficulty, making it unsuitable for installing equipment in the confined space of an aircraft. Furthermore, it weakens structural continuity and is detrimental to load transfer. Utility Model Content
[0003] Purpose of the utility model: To address the shortcomings of existing equipment mounting bracket structure designs, this utility model provides a multi-equipment integrated mounting bracket structure. This structure not only ensures the reliability of equipment installation inside the aircraft, reduces the number of parts, lowers assembly difficulty, saves installation space, and facilitates later maintenance, but also enables the integrated installation of multiple devices. Furthermore, by connecting both sides of the cabin through this bracket, it ensures the continuity of load transfer and improves the rigidity of the aircraft.
[0004] Technical solution: A multi-equipment integrated mounting bracket structure, consisting of a web and mounting bosses. The web is provided with multiple mounting bosses, each for mounting equipment. Each mounting boss is also provided with a corresponding lightening groove, which serves as both an installation / disassembly window and a connection / maintenance window for the equipment's connecting cables.
[0005] Furthermore, the web is also provided with reinforcing ribs to improve the strength and rigidity of the mounting bracket.
[0006] Furthermore, the reinforcing ribs are arranged in a three-horizontal-five-vertical configuration.
[0007] Furthermore, the mounting boss includes a first mounting boss, a second mounting boss, a third mounting boss, a fourth mounting boss, and a fifth mounting boss. The first mounting boss includes four mounting points, and the mounting area formed by the four mounting points covers two light-reducing grooves. The second mounting boss includes four mounting points, and the mounting area formed by the four mounting points covers one light-reducing groove. The third mounting boss includes two mounting points located between two adjacent light-reducing grooves. The fourth mounting boss includes four mounting points, and the mounting area formed by the four mounting points covers two light-reducing grooves. The fifth mounting boss includes four mounting points, and the mounting area formed by the four mounting points covers four light-reducing grooves.
[0008] Furthermore, the first mounting boss and the fourth mounting boss are located on the upper and lower planes of the same area of the web.
[0009] Furthermore, the third mounting boss and the fifth mounting boss are located on the upper and lower planes of the same area of the web, and the mounting area corresponding to the fifth mounting boss completely covers the four adjacent light-reducing grooves around the third mounting boss.
[0010] The mounting bracket structure proposed in this utility model allows multiple devices to be safely and reliably connected to the mounting bracket via corresponding mounting bosses during use. To meet the requirements of lightweighting, multiple light-reducing grooves are provided on the web plate. The position of the light-reducing grooves ensures convenient installation and disassembly of the devices and also allows for the connection and maintenance of the device connection cables. To improve the strength and rigidity of the mounting bracket, three horizontal and five vertical continuous reinforcing ribs are designed at the bottom of the mounting bracket. While ensuring direct and continuous stress transmission, these ribs can also serve as mounting bosses to connect the devices to the bracket and reduce the difficulty of processing and manufacturing. The first device is fastened to the second mounting boss of the bracket from bottom to top via the light-reducing grooves. The second and third devices are respectively mounted upside down on the third and fifth mounting bosses below the bracket. The fourth device is mounted upright on the fourth mounting boss of the bracket, effectively utilizing the installation space on the upper and lower sides of the bracket. The fifth device is mounted upright on the fifth mounting boss above the bracket, and the connection and maintenance of the devices are achieved through the light-reducing grooves.
[0011] Technical effects: The multi-device integrated mounting bracket structure proposed in this utility model can achieve the following advantages:
[0012] 1. Reduces the number of parts and saves installation space, making it particularly suitable for the installation and fixation of multiple sets of equipment in situations where the internal space of an aircraft is compact;
[0013] 2. Meets the requirements for lightweight design, facilitating equipment connection and maintenance;
[0014] 3. While ensuring the accuracy of equipment installation, reduce processing and manufacturing costs and assembly difficulty;
[0015] 4. The structure is simple and the connection is reliable, which realizes the continuity of load transfer and improves strength and rigidity. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the equipment installation of the multi-device integrated mounting bracket structure of this utility model;
[0017] Figure 2 This is a bottom view of the equipment installation of the multi-equipment integrated mounting bracket structure of this utility model;
[0018] Figure 3 This is a bottom view of the multi-device integrated mounting bracket structure of this utility model;
[0019] Figure 4 This is a top view of the multi-device integrated mounting bracket structure of this utility model;
[0020] Among them, web 1, reinforcing rib 2, lightening groove I 3, lightening groove II 4, lightening groove III 5, lightening groove IV 6, lightening groove V 7, lightening groove VI 8, lightening groove VII 9, mounting boss I 10, mounting boss II 11, mounting boss III 12, mounting boss IV 13, mounting boss V 14, equipment I 31, equipment II 32, equipment III 33, equipment IV 34, and equipment V 35. Detailed Implementation
[0021] To more clearly illustrate the technical solutions of the embodiments of this utility model, the present utility model will be described in detail below with reference to the accompanying drawings or specific implementation examples. It should be noted that some (but not all) of the disclosed examples are shown in the drawings. In fact, many different examples can be described, and these examples should not be construed as limited to the examples set forth herein. Rather, these examples are described to better demonstrate the positive effects of this utility model, and all aspects not detailed herein are considered to be well-known or conventional techniques in the art.
[0022] This utility model provides a multi-device integrated mounting bracket structure, which aims to not only realize the installation and fixation of multiple devices in a limited and compact space, saving installation space, but also to achieve structural lightweighting and facilitate connection and maintenance by opening light-reducing grooves on the mounting bracket; and to reduce processing and manufacturing costs while ensuring the installation accuracy of the devices, it also ensures the continuity of the mounting bracket structure, making the force transmission process more direct and reliable, and effectively improving strength and rigidity.
[0023] For details on the specific design structure, please refer to the appendix. Figure 1An integrated mounting bracket structure for multiple devices is disclosed, comprising a web 1, reinforcing ribs 2, weight-reducing grooves I3-9, and mounting bosses I10-14. The key feature is that devices I31-35 can achieve a safe and reliable connection with the mounting bracket via mounting bosses I10-14. To meet lightweight requirements, weight-reducing grooves I3-9 are provided on the web 1, and the position of these grooves ensures convenient installation and disassembly of the devices while also facilitating the connection and maintenance of the devices' cables. To improve the rigidity of the mounting bracket, continuous reinforcing ribs 2 with three horizontal and five vertical ribs are designed at the bottom of the mounting bracket to ensure stress... Under the premise of direct and continuous transmission, it can also serve as a mounting boss to connect the equipment to the bracket and reduce the difficulty of processing and manufacturing. Equipment I 31 is fastened to the mounting boss I 10 of the bracket from bottom to top through the light-reducing groove VII 9. Equipment II 32 and Equipment III 33 are respectively inverted and mounted on the mounting boss II 11 and mounting boss III 12 below the bracket. Equipment IV 34 is mounted upright on the mounting boss IV 13 of the bracket, effectively utilizing the installation space on the upper and lower sides of the bracket. Equipment V 35 is mounted upright on the mounting boss V 14 above the bracket, and the connection and maintenance of the equipment are realized through the light-reducing grooves I 3 and 6.
[0024] like Figure 3 , 4 As shown, features such as reinforcing ribs 2, light-reducing grooves I3-9, and mounting bosses I10-14 are machined onto the mounting plate by means of mechanical processing;
[0025] like Figure 1 , 2 As shown, device V35 is mounted upright on mounting boss V14 above the bracket, and is connected and maintained via lightening slots I3 and 6;
[0026] like Figure 1 , 2 As shown, the device I31 is fastened to the bracket mounting boss I10 from bottom to top through the light-reducing groove VII9;
[0027] like Figure 1 , 2 As shown, device Ⅲ33 is mounted upside down on the mounting boss Ⅲ12 located below device Ⅴ35;
[0028] like Figure 1 , 2 As shown, mount device Ⅳ34 onto the mounting boss Ⅳ13 on the bracket, and tighten the connecting screws from bottom to top;
[0029] like Figure 1 , 2 As shown, install device II32 upside down on the mounting boss II11 below device IV34, and tighten the connecting screws from bottom to top;
[0030] The above installation procedures can be adjusted according to specific needs.
[0031] The above specific embodiments or examples are only used to explain the technical solutions of this utility model and are not intended to limit this application. Parts not described in detail are considered to be conventional technical means or common knowledge in the field. It can be understood by those skilled in the art that, based on the design concept of this application, adaptive modifications can be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features. These modifications, equivalent substitutions, and adaptive improvements do not depart from the technical essence of this utility model and should all be covered within the protection scope of this application.
Claims
1. A multi-device integrated mounting bracket structure, characterized in that, It consists of a web and mounting bosses. The web is provided with multiple mounting bosses, each of which is used to install equipment. Each mounting boss is also provided with a corresponding lightening groove, which serves as both an installation and disassembly window and a connection and maintenance window for the equipment's connecting cables.
2. The multi-device integrated mounting bracket structure as described in claim 1, characterized in that, The web is also provided with reinforcing ribs to improve the strength and rigidity of the mounting bracket.
3. The multi-device integrated mounting bracket structure as described in claim 2, characterized in that, The reinforcing ribs are arranged in a three-horizontal-five-vertical configuration.
4. The multi-device integrated mounting bracket structure as described in claim 1, characterized in that, The mounting bosses include a first mounting boss, a second mounting boss, a third mounting boss, a fourth mounting boss, and a fifth mounting boss. The first mounting boss includes four mounting points, and the mounting area formed by the four mounting points covers two light-reducing grooves. The second mounting boss includes four mounting points, and the mounting area formed by the four mounting points covers one light-reducing groove. The third mounting boss includes two mounting points located between two adjacent light-reducing grooves. The fourth mounting boss includes four mounting points, and the mounting area formed by the four mounting points covers two light-reducing grooves. The fifth mounting boss includes four mounting points, and the mounting area formed by the four mounting points covers four light-reducing grooves.
5. The multi-device integrated mounting bracket structure as described in claim 4, characterized in that, The first mounting boss and the fourth mounting boss are located on the upper and lower planes of the same area of the web.
6. The multi-device integrated mounting bracket structure as described in claim 4, characterized in that, The third and fifth mounting bosses are located on the upper and lower planes of the same area of the web, respectively. The mounting area corresponding to the fifth mounting boss completely covers the four adjacent light-reducing grooves around the third mounting boss.