Electromechanical support hanger sliding groove type positioning installation connecting piece

By using the design of movable sliders and arc-shaped constraint blocks, the position of electromechanical supports and hangers can be precisely adjusted and power transmission can be integrated, which solves the problems of inconvenient adjustment and limited functionality of existing connectors, and improves construction efficiency and connection stability.

CN224301512UActive Publication Date: 2026-05-29THE FIRST CONSTR ENG COMPANY LTD OF CHINA CONSTR SECOND ENG BUREAU

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
THE FIRST CONSTR ENG COMPANY LTD OF CHINA CONSTR SECOND ENG BUREAU
Filing Date
2025-08-15
Publication Date
2026-05-29

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  • Figure CN224301512U_ABST
    Figure CN224301512U_ABST
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Abstract

The utility model discloses a kind of electromechanical support hanger sliding groove type positioning installation connecting pieces, it is related to hanger installation technical field, especially it is related to a kind of electromechanical support hanger sliding groove type positioning installation connecting pieces, including hanger cross bar and the two hanger connecting blocks of hanger cross bar one side, fixed guide rail is equipped between two hanger connecting blocks, about constraint fixed groove is opened on fixed guide rail, including the multiple movable sliding blocks of installation on fixed guide rail, movable sliding block is along fixed guide rail sliding, drive arc constraint block precision butt joint fixed sleeve, position can be adjusted without disassembly, get rid of the limitation of traditional welding or bolt fixation, reduce construction complexity, rotate tightness switch drive constraint plug-in block and constraint fixed groove occlusion, cooperate constraint spring and enhance locking force, ensure that connection is stable and resistant to vibration, overall structure is reliable, it is convenient for later maintenance and reconstruction, adapt to modern electromechanical engineering to the demand of efficient, flexible installation, reduce artificial and time cost.
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Description

Technical Field

[0001] This utility model relates to the field of hanger installation technology, and in particular to a sliding groove type positioning and installation connector for electromechanical hangers. Background Technology

[0002] In fields such as building electromechanical installation and industrial pipeline layout, supports and hangers are key structures to ensure the stable operation of cables, air ducts, water pipes, and other pipelines. As the core component of supports and hangers, connectors are responsible for fixing and positioning pipelines to the supporting structure. Their performance directly affects the accuracy, stability, and ease of maintenance of pipeline installation. With the increasing demands for integration and modularization of electromechanical systems in modern buildings, connectors not only need to have reliable load-bearing capacity, but also need to meet the requirements of flexible adjustment, rapid installation, and power transmission to adapt to construction and operation and maintenance under complex working conditions.

[0003] Currently, most of the connectors for electromechanical supports adopt a fixed structure, which mainly connects pipelines to supports through bolt fastening, welding, or clipping. This relies on manual on-site measurement and positioning, and adjusting the position requires disassembling bolts or cutting welding points, making the operation cumbersome. In addition, traditional connectors only have mechanical fixing functions, and the power transmission required by the pipeline needs to be carried out by additional cables, which are separated from the fixed structure. This can easily lead to messy wiring, insufficient protection, and increased construction complexity and safety hazards.

[0004] However, the existing electromechanical support and hanger connectors have poor adjustment flexibility. When the position is deviated, the entire assembly needs to be disassembled and reassembled or re-welded, which is not only time-consuming and labor-intensive, but may also affect the structural strength due to repeated operations. At the same time, the single function and lack of integrated design, as well as the separation of power transmission and mechanical fixing, result in low construction efficiency and chaotic on-site management. Utility Model Content

[0005] Given the poor adjustment flexibility of the above-mentioned electromechanical support and hanger connectors, which require complete disassembly and reassembly or re-welding when the position is deviated, which is not only time-consuming and labor-intensive, but may also affect the structural strength due to repeated operations. At the same time, the single function and lack of integrated design, as well as the separation of power transmission and mechanical fixing, lead to low construction efficiency and chaotic on-site management, this utility model is proposed.

[0006] Therefore, the purpose of this utility model is to allow the movable slider to slide along the fixed guide rail, thereby driving the arc-shaped constraint block to accurately align with the fixed housing. The position can be adjusted without disassembly, overcoming the limitations of traditional welding or bolt fixing, reducing construction complexity, and driving the constraint plug-in block to engage with the constraint fixing groove by rotating the tension switch. The constraint spring enhances the locking force, ensuring a stable and vibration-resistant connection. The overall structure is reliable in bearing capacity, facilitating later maintenance and modification, and meeting the needs of modern electromechanical engineering for efficient and flexible installation, thereby reducing labor and time costs.

[0007] To solve the above technical problems, this utility model provides the following technical solution: a sliding groove type positioning and installation connector for electromechanical support and hanger, including a hanger crossbar and two hanger connecting blocks on one side of the hanger crossbar, a fixed guide rail is provided between the two hanger connecting blocks, and a constraint fixing groove is formed on the fixed guide rail;

[0008] The movable component includes multiple movable sliders mounted on the fixed guide rail, each movable slider having a sliding connecting plate on one side, and each sliding connecting plate having a rotating connecting block on one side;

[0009] The rotating assembly includes a rotating connecting rod installed inside each of the rotating connecting blocks, each of the rotating connecting rods having two fixing threads, and each of the rotating connecting rods having a tension switch on one side.

[0010] As a preferred embodiment of the electromechanical support and hanger sliding groove positioning and installation connector of this utility model, each sliding connecting plate is provided with two arc-shaped constraint blocks on one side, each rotating connecting block is provided with two fixed connecting blocks on one side, each fixed connecting block is provided with a constraint connecting block on one side, and a constraint connecting groove is opened on the inner side of each constraint connecting block.

[0011] As a preferred embodiment of the electromechanical support and hanger sliding groove type positioning and installation connector of this utility model, wherein: a fixed connection groove is opened on the inner side of each fixed connection block, each fixed connection groove is connected to the constraint connection groove, a fixed insertion rod is provided on the inner side of each constraint connection groove, a movable connection block is provided on the inner side of each fixed connection groove, and a fixed sleeve is provided on one side of each movable connection block.

[0012] As a preferred embodiment of the electromechanical support and hanger sliding groove positioning and installation connector of this utility model, wherein: one end of each fixed plug rod is inserted into the inner side of the corresponding fixed sleeve, a constraint spring is provided on the inner side of each constraint connection groove, each constraint spring is sleeved on the corresponding fixed sleeve, and a constraint plug block is provided on one side of each movable connection block.

[0013] As a preferred embodiment of the electromechanical support and hanger sliding groove positioning and installation connector of this utility model, wherein: one end of each constraint plug-in block passes through the fixed connection block and is inserted into the inner side of the constraint fixing groove; a rotating connection groove is opened on the inner side of each rotating connection block; each rotating connection groove is connected to two corresponding fixed connection grooves; and a limiting connection groove is opened on the inner side of each rotating block.

[0014] As a preferred embodiment of the electromechanical support and hanger sliding groove positioning and installation connector of this utility model, each of the limiting connecting grooves is connected to the corresponding rotating connecting groove, each of the rotating connecting blocks is provided with a constraint sleeve, and each of the movable connecting blocks is sleeved on the corresponding rotating connecting rod and engaged with the fixed thread.

[0015] As a preferred embodiment of the electromechanical support and hanger sliding groove positioning and installation connector of this utility model, each of the rotating connecting rods is provided with a rotating constraint block, each of the rotating constraint blocks is located inside the limiting connecting groove, a constraint connecting plate is provided between two hanger connecting blocks, and a fixed sleeve is provided between the constraint connecting plate and the corresponding arc-shaped constraint block.

[0016] The beneficial effects of this utility model are:

[0017] The movable slider slides along the fixed guide rail, causing the arc-shaped constraint block to precisely align with the fixed housing. The position can be adjusted without disassembly, eliminating the limitations of traditional welding or bolt fixing and reducing construction complexity. Rotating the tension switch drives the constraint plug block to engage with the constraint fixing groove, and the constraint spring enhances the locking force, ensuring a stable and vibration-resistant connection. The overall structure has reliable load-bearing capacity, facilitates later maintenance and modification, and meets the needs of modern electromechanical engineering for efficient and flexible installation, reducing labor and time costs. Attached Figure Description

[0018] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort. Among them:

[0019] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0020] Figure 2 This is a side view of the structure of this utility model.

[0021] Figure 3 This is a schematic diagram of the crossbar structure of the hanger of this utility model.

[0022] Figure 4 This is a schematic diagram of the arc-shaped constraint block structure of this utility model.

[0023] Figure 5 This is a partial structural diagram of the present utility model.

[0024] Figure 6 This is a schematic diagram of the inner structure of the rotating connecting block of this utility model.

[0025] Explanation of reference numerals in the attached figures:

[0026] 1. Hanger crossbar; 2. Fixed guide rail; 3. Constraint fixing groove; 4. Movable slider; 5. Sliding connecting plate; 6. Arc-shaped constraint block; 7. Rotating connecting block; 8. Fixed connecting block; 9. Constraint connecting block; 10. Constraint connecting groove; 11. Fixed connecting groove; 12. Fixed plug-in rod; 13. Fixed sleeve; 14. Constraint spring; 15. Rotating connecting groove; 16. Limiting connecting groove; 17. Rotating connecting rod; 18. Rotating constraint block; 19. Fixed thread; 20. Movable connecting block; 21. Constraint plug-in block; 22. Constraint sleeve; 23. Tightening switch; 24. Hanger connecting block; 25. Fixed sleeve; 26. Constraint connecting plate. Detailed Implementation

[0027] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings.

[0028] Example 1

[0029] Reference Figure 1-4 This is the first embodiment of the present invention, which provides an electromechanical support bracket sliding groove type positioning and installation connector, including a bracket crossbar 1 and two bracket connecting blocks 24 on one side of the bracket crossbar 1. A fixed guide rail 2 is provided between the two bracket connecting blocks 24. A constraint fixing groove 3 is opened on the fixed guide rail 2. It includes multiple movable sliders 4 installed on the fixed guide rail 2. Each movable slider 4 has a sliding connecting plate 5 on one side. Each sliding connecting plate 5 has a rotating connecting block 7 on one side. Each sliding connecting plate 5 has two arc-shaped constraint blocks 6 on one side. Each rotating connecting block 7 has two fixed connecting blocks 8 on one side. Each fixed connecting block 8 has a constraint connecting block 9 on one side. A constraint connecting groove 10 is opened on the inner side of each constraint connecting block 9.

[0030] Each fixed connecting block 8 has a fixed connecting groove 11 on its inner side, and each fixed connecting groove 11 is connected to the constraint connecting groove 10. Each constraint connecting groove 10 has a fixed insertion rod 12 on its inner side, each fixed connecting groove 11 has a movable connecting block 20 on its inner side, each movable connecting block 20 has a fixed sleeve 13 on one side, one end of each fixed insertion rod 12 is inserted into the inner side of the corresponding fixed sleeve 13, each constraint connecting groove 10 has a constraint spring 14 on its inner side, each constraint spring 14 is sleeved on the corresponding fixed sleeve 13, and each movable connecting block 20 has a constraint insertion block 21 on one side.

[0031] Example 2

[0032] Reference Figure 3-6This is the second embodiment of the present invention. The difference between this embodiment and the first embodiment is that it includes a rotating connecting rod 17 installed inside each rotating connecting block 7. Each rotating connecting rod 17 has two fixing threads 19. Each rotating connecting rod 17 has a tension switch 23 on one side. One end of each constraint plug 21 passes through the fixing connecting block 8 and is inserted into the inner side of the constraint fixing groove 3. Each rotating connecting block 7 has a rotating connecting groove 15 inside. Each rotating connecting groove 15 is connected to two corresponding fixing connecting grooves 11. Each rotating connecting block 7 has a limiting connecting groove 16 inside.

[0033] Each limiting connection groove 16 is connected to the corresponding rotating connection groove 15. Each rotating connection block 7 is provided with a constraint sleeve 22. Each movable connection block 20 is sleeved on the corresponding rotating connection rod 17 and meshes with the fixed thread 19. Each rotating connection rod 17 is provided with a rotating constraint block 18. Each rotating constraint block 18 is located inside the limiting connection groove 16. A constraint connection plate 26 is provided between the two hanger connection blocks 24. A fixed sleeve 25 is provided between the constraint connection plate 26 and the corresponding arc-shaped constraint block 6.

[0034] In use, this device is based on the hanger crossbar 1, with two hanger connecting blocks 24 on one side fixing the fixed guide rail 2 to form a sliding support base. The constraint fixing groove 3 on the fixed guide rail 2 provides multiple positions for positioning. The movable slider 4 of the movable component can slide freely along the fixed guide rail 2, driving the sliding connecting plate 5 and the arc-shaped constraint block 6 on one side to move synchronously. The rotating connecting rod 17 of the rotating component passes through the rotating connecting block 7 and engages with the movable connecting block 20 through the fixing thread 19. The tension switch 23 controls the rotation of the rotating connecting rod 17.

[0035] In the initial state, the movable slider 4 is in a relaxed position, the arc-shaped constraint block 6 is not in contact with the fixed sleeve 25, the constraint plug 21 is not inserted into the constraint fixing slot 3, and the fixed sleeve 25 (with built-in power transmission structure) maintains a preset distance from the constraint connecting plate 26. According to the pipeline installation requirements, the sliding connecting plate 5 is pushed, which drives the movable slider 4 to slide along the fixed guide rail 2, so that the arc-shaped constraint block 6 on one side of the sliding connecting plate 5 moves closer to the fixed sleeve 25. Due to the high matching precision between the movable slider 4 and the fixed guide rail 2, the sliding process is smooth and without jamming, and the position of the arc-shaped constraint block 6 can be precisely adjusted.

[0036] Continue sliding until the arc-shaped constraint block 6 is completely in contact with the outer surface of the fixed sleeve 25. Utilize the adaptability of the arc structure to ensure close contact between the two. At this time, the power transmission structure inside the fixed sleeve 25 forms a preliminary docking with the arc-shaped constraint block 6, preparing for subsequent power conduction and realizing the initial combination of mechanical fixation and functional integration. Rotate the tension switch 23 to drive the rotating connecting rod 17 to rotate in the rotating connecting groove 15 of the rotating connecting block 7. Since the movable connecting block 20 is engaged with the rotating connecting rod 17 through the fixed thread 19, the rotational force is converted into axial thrust, pushing the two movable connecting blocks 20 to move in opposite directions along the rotating connecting groove 15.

[0037] When the movable connecting block 20 moves, the constraint plug-in block 21 on one side moves along with it, eventually passing through the fixed connecting block 8 and inserting into the constraint fixing groove 3 of the fixed guide rail 2. The movable slider 4 and the fixed guide rail 2 are rigidly fixed through mechanical engagement to prevent sliding and displacement. During the movement of the movable connecting block 20, the constraint spring 14 in the constraint connecting groove 10 is compressed by the fixed sleeve 13, generating a reverse elastic force that acts on the movable connecting block 20, enhancing the meshing tightness between the constraint plug-in block 21 and the constraint fixing groove 3, and preventing loosening caused by vibration.

[0038] After the arc-shaped constraint block 6 is fitted with the fixed sleeve 25, the power transmission structure inside the fixed sleeve 25 realizes power transmission through contact conduction, eliminating the need for additional cable laying and solving the problem of separation of power and fixed structure in traditional supports and hangers. The rotating constraint block 18 restricts the axial displacement of the rotating connecting rod 17 in the limiting connection groove 16, and the constraint sleeve 22 ensures the rotational stability of the rotating connecting rod 17. The fixed plug rod 12 is inserted into the fixed sleeve 13, enhancing the integrity of the fixed connecting block 8 and the constraint connecting block 9 and improving the overall load-bearing capacity.

[0039] The remaining structure is the same as that in Example 1.

[0040] It should be noted that the above embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solution of this utility model without departing from the spirit and scope of the technical solution of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.

Claims

1. A sliding groove type positioning and installation connector for electromechanical support hangers, characterized in that: It includes a hanger crossbar (1) and two hanger connecting blocks (24) on one side of the hanger crossbar (1). A fixed guide rail (2) is provided between the two hanger connecting blocks (24), and a constraint fixing groove (3) is provided on the fixed guide rail (2). The movable component includes a plurality of movable sliders (4) mounted on the fixed guide rail (2), each movable slider (4) having a sliding connecting plate (5) on one side, and each sliding connecting plate (5) having a rotating connecting block (7) on one side. The rotating assembly includes a rotating connecting rod (17) installed inside each of the rotating connecting blocks (7), each of the rotating connecting rods (17) having two fixing threads (19), and each of the rotating connecting rods (17) having a tension switch (23) on one side.

2. The electromechanical support and hanger sliding groove type positioning and installation connector according to claim 1, characterized in that: Each sliding connecting plate (5) has two arc-shaped constraint blocks (6) on one side, each rotating connecting block (7) has two fixed connecting blocks (8) on one side, each fixed connecting block (8) has a constraint connecting block (9) on one side, and each constraint connecting block (9) has a constraint connecting groove (10) on its inner side.

3. The electromechanical support and hanger sliding groove type positioning and installation connector according to claim 2, characterized in that: Each of the fixed connecting blocks (8) has a fixed connecting groove (11) on its inner side. Each of the fixed connecting grooves (11) is connected to the constraint connecting groove (10). Each of the constraint connecting grooves (10) has a fixed plug rod (12) on its inner side. Each of the fixed connecting grooves (11) has a movable connecting block (20) on its inner side. Each of the movable connecting blocks (20) has a fixed sleeve (13) on one side.

4. The electromechanical support and hanger sliding groove type positioning and installation connector according to claim 3, characterized in that: One end of each of the fixed plug rods (12) is inserted into the inner side of the corresponding fixed sleeve (13), and a constraint spring (14) is provided inside the constraint connection groove (10). Each constraint spring (14) is sleeved on the corresponding fixed sleeve (13), and a constraint plug block (21) is provided on one side of each movable connection block (20).

5. The electromechanical support and hanger sliding groove type positioning and installation connector according to claim 4, characterized in that: Each of the constraint plug-in blocks (21) has one end inserted through the fixed connecting block (8) and then inserted into the inner side of the constraint fixing groove (3). Each of the rotating connecting blocks (7) has a rotating connecting groove (15) on its inner side. Each of the rotating connecting grooves (15) is connected to two corresponding fixed connecting grooves (11). Each of the rotating connecting blocks (7) has a limiting connecting groove (16) on its inner side.

6. The electromechanical support and hanger sliding groove type positioning and installation connector according to claim 5, characterized in that: Each of the limiting connecting grooves (16) is connected to the corresponding rotating connecting groove (15), each of the rotating connecting blocks (7) is provided with a constraint sleeve (22), and each of the movable connecting blocks (20) is sleeved on the corresponding rotating connecting rod (17) and meshes with the fixed thread (19).

7. The electromechanical support and hanger sliding groove type positioning and installation connector according to claim 6, characterized in that: Each of the rotating connecting rods (17) is provided with a rotating constraint block (18), each of the rotating constraint blocks (18) is located inside the limiting connecting groove (16), and a constraint connecting plate (26) is provided between the two hanger connecting blocks (24), and a fixed sleeve (25) is provided between the constraint connecting plate (26) and the corresponding arc-shaped constraint block (6).