A type of installation positioning bracket for building electromechanical engineering
By designing a building electromechanical engineering installation bracket with an angle adjustment disc and a horizontal adjustment slide rail, the problem of traditional brackets being difficult to adjust was solved, enabling flexible positioning and efficient installation of equipment, and improving construction efficiency and precision.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHINA RAILWAY SIXTH GROUP CO LTD
- Filing Date
- 2025-08-06
- Publication Date
- 2026-07-31
AI Technical Summary
Traditional building electromechanical engineering installation brackets are difficult to adjust flexibly after positioning, resulting in low construction efficiency and insufficient precision, which cannot meet the requirements of refined construction.
A bracket structure was designed, including a positioning mounting component, a base plate, an angle adjustment disc, a horizontal adjustment slide rail, and an equipment mounting plate. The angle adjustment disc enables the rotation adjustment of the equipment, the horizontal adjustment slide rail enables four-way translation, and the design of the threaded rod and the limiting plate enables the precise positioning and stable fixation of the equipment.
It enables flexible adjustment of electromechanical equipment, reduces the probability of rework, improves construction efficiency and precision, and meets the needs of refined construction.
Smart Images

Figure CN224580064U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electromechanical engineering, specifically to a positioning bracket for building electromechanical engineering installation. Background Technology
[0002] In building electromechanical engineering construction, the accuracy of equipment installation and positioning is crucial. Traditional mounting brackets have relatively fixed structures. After bracket installation, if deviations in the equipment's position are found, the brackets are difficult to adjust, often requiring dismantling and reinstallation. This not only consumes significant manpower and time but may also cause additional impacts on the building structure and surrounding construction. While existing building electromechanical engineering installation and positioning brackets can achieve basic equipment support and initial positioning, they lack a flexible adjustment mechanism after installation, making it difficult to fine-tune the equipment's front-to-back, left-to-right, and rotation angles. When measurement errors or changes in equipment docking requirements occur during construction, rapid adaptation is difficult, affecting construction efficiency and installation accuracy. This fails to meet the increasingly sophisticated requirements of building electromechanical installation, necessitating a building electromechanical engineering installation and positioning bracket that can meet these needs. Summary of the Invention
[0003] To address the aforementioned problems, this utility model provides a positioning bracket for building electromechanical engineering installation, comprising a positioning mounting component, a base plate, an angle adjustment disc, an intermediate isolation plate, a horizontal adjustment slide rail, and an equipment mounting plate. The positioning mounting component is located at the bottom of the entire installation positioning bracket, and the base plate is placed on the positioning mounting component. The angle adjustment disc includes a turntable bearing, an external gear ring, and a positioning fixing rod. The turntable bearing is located at the center of the base plate, and the external gear ring is fitted onto the outside of the turntable bearing. The positioning fixing rod is mounted on the base plate and includes a fixing block, a mounting block, a threaded rod, and a guide rod. The mounting block is used to fix the positioning fixing rod to the base plate, and the threaded rod... The rod is connected to the mounting block via a threaded hole. One end of the threaded rod is fitted with a fixing block corresponding to the external gear ring, and can be adjusted to be close to or away from the external gear ring by the positioning and fixing rod. One end of the guide rod is connected to the fixing block, and the other end passes through a through hole in the mounting block and is connected to it. A middle isolation plate is connected to the turntable bearing, and a horizontal adjustment slide rail is installed on the middle isolation plate. The horizontal adjustment slide rail is arranged in two layers, with the upper and lower layers arranged in a cross pattern. It is connected by two connected sliders, which can achieve adjustment in all directions. The slider on the upper horizontal adjustment slide rail is connected to the equipment mounting plate.
[0004] As described above, the angle adjustment disc can rotate the entire intermediate isolation plate, ultimately causing the electromechanical equipment on the equipment mounting plate to rotate, thus completing the angle adjustment. The double-layer design of the horizontal adjustment slide rail allows the equipment mounting plate, along with the electromechanical equipment mounted on it, to move in four directions, ultimately achieving rotation, forward / backward / left / right adjustment of the electromechanical equipment to meet on-site installation requirements. Of course, the connection method between the threaded rod and the fixed block can be varied, such as pre-installing bearings in holes on the fixed block or leaving a "T" shaped opening on the upper surface of the fixed block, as long as the end of the bolt can be stably connected and its stability is not affected during rotational adjustment. Since these details are common practices in this field, they will not be elaborated upon here.
[0005] Furthermore, the two-layer horizontal adjustment slide rails are configured with two slide rails on each layer. Fewer than two slide rails will result in equipment instability, while more than two will lead to time-consuming adjustments and increased costs.
[0006] Furthermore, the horizontal adjustment slide rail is provided with limit plates at both ends, and the limit plates are provided with holes containing internal threads. Bolts with corresponding external threads are installed in the holes, and one end of the bolts presses against the slider.
[0007] The horizontal adjustment slide rail is designed to allow for the forward, backward, left, and right movement and adjustment of the electromechanical equipment mounted on the equipment mounting plate. The design of the limit plate and bolts allows for flexible operation while maintaining the adjusted state.
[0008] Furthermore, the equipment mounting plate is equipped with multiple mounting holes. Based on commonly used electromechanical equipment installation dimensions, multiple mounting holes are pre-designed to accommodate the fixing of different electromechanical equipment, saving time and increasing efficiency.
[0009] Furthermore, the positioning and fixing rod has at least two guide rods. The design of two guide rods makes the fixing rod more stable as a whole and keeps the fit between the fixing block and the external gear ring stable.
[0010] Furthermore, the mounting component is provided with fixing mounting holes. The addition of fixing mounting holes allows for pre-construction preparation according to their dimensions during construction, making it easier to install and secure the entire device.
[0011] The advantages of this utility model are: it eliminates the need for rework during the installation of electromechanical equipment due to incomplete fit, and the adjustment is convenient and the state is stable after adjustment, effectively reducing the construction difficulty and improving the construction efficiency. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the structure of the present invention.
[0013] Figure 2 This is a schematic diagram of the separation mechanism of this utility model.
[0014] Figure 3 A structural diagram of the base plate and angle adjustment disc.
[0015] Figure 4 This is a schematic diagram of the horizontal adjustment slide rail structure.
[0016] Figure label:
[0017] 1. Positioning and mounting components; 1-1. Fixed mounting holes; 2. Base plate; 3. Angle adjustment disc; 3-1. Turntable bearing; 3-2. External gear ring; 3-3. Positioning and fixing rod; 3-4. Fixing block; 3-5. Mounting block; 3-6. Threaded rod; 3-7. Guide rod; 4. Intermediate isolation plate; 5. Horizontal adjustment slide rail; 5-1. Slider; 5-2. Limiting plate; 5-3. Bolt; 6. Equipment mounting plate; 6-1. Equipment mounting holes. Detailed Implementation
[0018] The technical solution of this utility model will be described in detail below with reference to the accompanying drawings.
[0019] like Figure 1-4 As shown, a building electromechanical engineering installation positioning bracket includes a positioning mounting component 1, a base plate 2, an angle adjustment disc 3, an intermediate isolation plate 4, a horizontal adjustment slide rail 5, and an equipment mounting plate 6. The positioning mounting component 1 is located at the bottom of the entire installation positioning bracket, and the base plate 2 is placed on the positioning mounting component 1. The angle adjustment disc 3 includes a turntable bearing 3-1, an external gear ring 3-2, and a positioning fixing rod 3-3. The turntable bearing 3-1 is located at the center position on the base plate 2, and the external gear ring 3-2 is fitted onto the outside of the turntable bearing 3-1. The positioning fixing rod 3-3 is installed on the base plate 2 and includes a fixing block 3-31, a mounting block 3-32, a threaded rod 3-33, and a guide rod 3-34. The mounting block 3-32 is used to fix the positioning fixing rod 3-3 to the base plate 2, and the threaded rod... 3-33 is connected to the mounting block 3-32 through a threaded hole. One end of the threaded rod 3-33 is fitted with a fixing block 3-31 corresponding to the external gear ring 3-2, and can be close to or away from the external gear ring 3-2 under the adjustment of the positioning fixing rod 3-3. One end of the guide rod 3-34 is connected to the fixing block 3-31, and the other end passes through the through hole in the mounting block 3-32 and is connected to it. The turntable bearing 3-1 is connected to the intermediate isolation plate 4, and the intermediate isolation plate 4 is fitted with a horizontal adjustment slide rail 5. The horizontal adjustment slide rail is set in two layers, and the upper and lower layers of horizontal adjustment slide rails are arranged in a cross shape. They are connected by two connected sliders 5-1, which can realize the adjustment in the front, back, left and right. The slider on the upper layer of horizontal adjustment slide rail is connected to the equipment mounting plate 6.
[0020] To increase the stability of the intermediate isolation plate and the other components it supports, two horizontal adjustment slides are provided on each of the two layers.
[0021] The horizontal adjustment slide rail 5 is provided with limit plates 5-2 at both ends. The limit plates are provided with holes containing internal threads, and bolts 5-3 with corresponding external threads are installed in the holes. One end of the bolt abuts against the slider 5-1.
[0022] The equipment mounting plate 6 is provided with multiple equipment mounting holes 6-1.
[0023] There are no fewer than two guide rods 3-34 on the positioning and fixing rod 3-3.
[0024] The positioning mounting component 1 is provided with a fixing mounting hole 1-1.
[0025] The installation and adjustment method of this utility model is as follows: Determine the specific installation position of the positioning mounting bracket, and according to the hole spacing and diameter of the fixing mounting holes of the positioning mounting component, reserve the corresponding anchor bolts at the determined position. Then, fix the fixing mounting holes of the positioning mounting component with the anchor bolts. Of course, there may be situations where the installation surface is on the side wall or the top of the building. In this case, simply prepare the mounting frame in advance, and then install this device on the mounting frame. After fixing the building electromechanical engineering installation positioning bracket of this utility model, fix the required electromechanical equipment through the equipment mounting holes on the equipment mounting plate to complete the installation work.
[0026] When the electromechanical equipment needs adjustment only due to angle issues, simply rotate the threaded rod 3-33 mentioned above to disengage the fixing block 3-31 from the external gear ring 3-2, rotate the intermediate isolation plate 4 to adjust the electromechanical equipment to the appropriate angle, and then rotate the threaded rod 3-33 to make the fixing block 3-31 and the external gear ring 3-2 fit together again to fix the angle.
[0027] When the mechanical equipment needs adjustment due to its horizontal position, since the upper and lower horizontal adjustment slide rails 5 are arranged in a cross pattern, adjustments can be made in all directions. Simply loosen the bolts 5-3 on the limiting plates 5-2 at both ends of the horizontal adjustment slide rail 5. Because the mechanical equipment is fixedly connected to the equipment mounting plate 6, and the equipment mounting plate 6 is connected to the horizontal adjustment slide rail, simply adjusting the mechanical equipment in all directions will move the sliders 5-1 on the horizontal adjustment slide rail. After adjusting to the appropriate position, tighten the bolts at both ends of the corresponding sliders to complete the adjustment. Of course, if adjustments are needed in all directions, both layers of horizontal slide rails need to be adjusted separately.
[0028] When both the angle and horizontal position need to be adjusted, simply adjust them according to the above methods based on the site conditions.
[0029] It should be clarified that the embodiments listed in this utility model are only a part. Those skilled in the art may modify, substitute, or replace some components with conventional means according to the needs of the site. As long as they conform to the innovative idea of this utility model and the implementation methods are obtained without creative labor, they are all within the protection scope of this utility model.
Claims
1. A positioning bracket for building electromechanical engineering installation, comprising a positioning mounting component, a base plate, an angle adjustment disc, an intermediate isolation plate, a horizontal adjustment slide rail, and an equipment mounting plate, characterized in that, The positioning mounting component is located at the bottom of the entire mounting bracket, and the base plate is placed on the positioning mounting component. The angle adjustment disc includes a turntable bearing, an external gear ring, and a positioning fixing rod. The turntable bearing is located at the center of the base plate, and the external gear ring is fitted onto the outside of the turntable bearing. The positioning fixing rod is installed on the base plate and includes a fixing block, a mounting block, a threaded rod, and a guide rod. The mounting block is used to fix the positioning fixing rod on the base plate. The threaded rod is connected to the mounting block through a threaded hole. One end of the threaded rod is fitted with a fixing block corresponding to the external gear ring, and can be close to or away from the external gear ring under the adjustment of the positioning fixing rod. One end of the guide rod is connected to the fixing block, and the other end passes through a through hole in the mounting block and is connected to it. An intermediate isolation plate is connected to the turntable bearing, and a horizontal adjustment slide rail is installed on the intermediate isolation plate. The horizontal adjustment slide rail is arranged in two layers, with the upper and lower layers arranged in a cross pattern. It is connected by two connected sliders, which can achieve forward, backward, left, and right adjustments. The slider on the upper horizontal adjustment slide rail is connected to the equipment mounting plate.
2. The installation positioning bracket for building electromechanical engineering as described in claim 1, characterized in that, The two layers are equipped with horizontal adjustment rails, with two horizontal adjustment rails on each layer.
3. The installation positioning bracket for building electromechanical engineering as described in claim 2, characterized in that, The horizontal adjustment slide rail is provided with limit plates at both ends. The limit plates are provided with holes containing internal threads, and bolts with corresponding external threads are installed in the holes. One end of the bolt presses against the slider.
4. The installation positioning bracket for building electromechanical engineering as described in claim 3, characterized in that, The equipment mounting plate has multiple equipment mounting holes.
5. A building electromechanical engineering installation positioning bracket as described in any one of claims 1-4, characterized in that, The positioning and fixing rod has no fewer than two guide rods.
6. The installation positioning bracket for building electromechanical engineering as described in claim 5, characterized in that, The mounting component is provided with fixing mounting holes.