Auxiliary installation equipment for high-low voltage power distribution cabinet
By introducing the design of the bearing seat and integrated frame in the auxiliary installation equipment, combined with the use of drive motors and rotary motors, the fixing and position adjustment problems of high and low voltage distribution cabinets of different sizes are solved, and the convenience and flexibility of installation are improved.
Patent Information
- Application Number
- CN202422528555.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-10-18
AI Technical Summary
The existing auxiliary installation equipment is inconvenient to conveniently rotate in a direction and adjust, adapt and clamp to fix high and low voltage distribution cabinets of different sizes, which affects the convenience of auxiliary installation.
The design includes a load seat and an integrated frame is adopted. The gear and movable shaft are driven by the drive motor, and the use of the rotating rod and positioning block is used to achieve convenient fixing and lifting of the high and low voltage distribution cabinet; at the same time, the installation position is adjusted using the rotating motor and worm gear structure.
It realizes convenient fixing and lifting of high and low voltage distribution cabinets of different sizes, improves the convenience of adjustment of installation positions, and enhances the flexibility and efficiency of auxiliary installation equipment.
Smart Images

Figure CN223261128U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of auxiliary installation equipment, in particular to auxiliary installation equipment for high and low voltage distribution cabinets. Background Art
[0002] Distribution cabinets are the final stage of a power distribution system, used to distribute electrical energy and control and protect the safe operation of electrical equipment. Distribution cabinets are categorized into power distribution cabinets, lighting distribution cabinets, and metering cabinets. They transmit electrical energy from the power source to various electrical equipment as needed and provide protection, monitoring, and control for these devices. Distribution cabinets are widely used in power systems, such as factories, residences, commercial centers, and data centers. They can be customized and configured to meet specific power requirements based on different needs and scenarios. However, installation of distribution cabinets requires equipment to assist with their installation. Therefore, a device for assisting the installation of high and low voltage distribution cabinets has been proposed.
[0003] For example, the auxiliary installation device for high and low voltage distribution cabinets disclosed in the authorization announcement number CN213921175U includes a U-shaped base and a U-shaped lifting seat, and the top side of the U-shaped lifting seat is equipped with a first hydraulic rod on all four sides;
[0004] When the cam is in the air, the cam is moved and the cam is in the air, so that the cam is in the air, ...
[0005] However, it does not solve the problem that the existing auxiliary installation equipment is not conducive to convenient opposite rotation adjustment to adapt to clamping and fixing high and low voltage distribution cabinets of different sizes during use, and is not conducive to lifting and auxiliary installation of high and low voltage distribution cabinets and rotating and adjusting the installation position, which affects the convenience of auxiliary installation of high and low voltage distribution cabinets. Utility Model Content
[0006] The purpose of the present utility model is to provide an auxiliary installation device for high and low voltage distribution cabinets to solve the problem in the above background technology that the auxiliary installation device is not convenient for convenient opposite rotation adjustment to adapt to clamping and fix high and low voltage distribution cabinets of different sizes, is not conducive to lifting and auxiliary installation of high and low voltage distribution cabinets and rotating adjustment of installation position, which affects the convenience of auxiliary installation of high and low voltage distribution cabinets.
[0007] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: an auxiliary installation device for high and low voltage distribution cabinets, comprising a bearing seat and an integrated frame, two groups of integrated frames are installed on the top of the bearing seat, two groups of movable shafts are movably installed inside the integrated frames, the surfaces of the movable shafts are all covered with gears, and the two groups of gears are meshed with each other, the bottom ends of the integrated frames are all installed with drive motors, and the output ends of the drive motors are connected to a group of movable shafts, the surfaces of the movable shafts on one side of the gears are all installed with rotating rods, and the interiors of the rotating rods are all slidably installed with pull-out rods, locking bolts are installed on the side walls of the rotating rods, and the locking bolts pass through the rotating rods and extend to the surface of the pull-out rods, movable columns are movably installed on the tops of the pull-out rods, and positioning blocks are installed on the tops of the movable columns, and a base frame is provided below the bearing seat.
[0008] Preferably, the top end of the base frame is symmetrically mounted with a front truss, the bottom end of each of the front trusses is mounted with a lower hinge shaft, and the front truss is movably connected to the base frame via the lower hinge shaft.
[0009] Preferably, a top plate is provided above the base frame, and an upper sliding block is movably mounted on the top end of each front truss, and the upper sliding block is slidably connected to the top plate, and a rotating seat is mounted on the top end of the top plate.
[0010] Preferably, the bottom end of the top plate is symmetrically installed with a rear truss, the top end of the rear truss is installed with an upper hinge shaft, and the rear truss is movably connected to the top plate through the upper hinge shaft, and the bottom end of the rear truss is movably installed with a lower sliding block, and the lower sliding block is slidably connected to the base frame.
[0011] Preferably, a central axis is installed at the center position of the front truss, and the front truss is movably connected to the rear truss through the central axis.
[0012] Preferably, electric push rods are movably mounted on the side walls of the rear truss, and push arms are mounted on the output ends of the electric push rods.
[0013] Preferably, a linkage block is movably mounted on the top end of each push arm, and the linkage block is connected to the front truss.
[0014] Preferably, a rotating motor is installed on the inner wall of the rotating seat, and a worm is installed at the output end of the rotating motor.
[0015] Preferably, a rotating shaft is movably installed inside the rotating seat on one side of the worm, and the rotating shaft is connected to the bearing seat.
[0016] Preferably, a worm gear is mounted on the surface of the rotating shaft, and the worm and the worm gear are meshed with each other.
[0017] Compared with the prior art, the beneficial effects of the present invention are: the auxiliary installation device not only realizes convenient counter-rotation adjustment, adapts to clamping and fixing high and low voltage distribution cabinets of different sizes, facilitates the lifting and auxiliary installation of high and low voltage distribution cabinets and rotation adjustment of the installation position, but also improves the convenience of auxiliary installation of high and low voltage distribution cabinets;
[0018] (1) The driving motor drives a group of gears to rotate through a group of movable shafts, and a group of gears drives another group of gears to rotate, and another group of gears drives the movable shafts to rotate, and the two groups of movable shafts drive the two groups of rotating rods to rotate in opposite directions, and the rotating rods drive the positioning blocks to rotate, so that the positioning blocks move away from each other, and the movable column is rotated, and the movable column drives the positioning blocks to rotate, so that the four groups of positioning blocks are aligned with each other, and then the high and low voltage distribution cabinet is placed on the top of the integrated frame, and the locking bolts are loosened to separate the pull rod and the rotating rod, and the pull rod is pulled inward, and the pull rod drives the positioning blocks to move, so that the four groups of positioning blocks are close to the four bottom feet of the high and low voltage distribution cabinet, and then the locking bolts are tightened to re-fix the pull rod and the rotating rod, and the high and low voltage distribution cabinet can be fixed on the top of the integrated frame. At the end, high and low voltage distribution cabinets of different sizes can be adapted by adjusting the distance between the four groups of rotating rods, the push arm is driven to move by the electric push rod, and the push arm drives the front truss to rotate with the hinge axis below as the axis through the linkage block, and the front truss drives the upper sliding block to slide on the inner wall of the top plate, and the front truss drives the rear truss to rotate with the hinge axis above as the axis through the center axis, and the rear truss drives the lower sliding block to slide on the inner wall of the bottom frame, and the top plate is driven to move upward by the joint action of the front truss and the rear truss, and the top plate is driven to move upward by the top plate, and the positioning block and the high and low voltage distribution cabinet are moved upward. After moving to the specified position, the installation is completed manually, which realizes convenient counter-rotation adjustment to adapt to the clamping and fixing of high and low voltage distribution cabinets of different sizes, and facilitates the lifting and auxiliary installation of high and low voltage distribution cabinets.
[0019] (2) The rotating motor drives the worm to rotate, the worm drives the worm wheel to rotate, the worm wheel drives the bearing seat to rotate through the rotating shaft, and the bearing seat drives the integrated frame, the positioning block and the high and low voltage distribution cabinet to rotate in a circular manner to adjust the installation position of the high and low voltage distribution cabinet, thereby improving the convenience of auxiliary installation. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 This is a schematic diagram of the three-dimensional structure of the utility model;
[0021] Figure 2 This is a schematic diagram of the three-dimensional structure of the rotating rod of the present invention;
[0022] Figure 3 This is a schematic diagram of the three-dimensional structure of the support seat of the utility model;
[0023] Figure 4 This is a schematic side cross-sectional structural diagram of the chassis of the present invention;
[0024] Figure 5 It is a schematic diagram of the front cross-sectional structure of the rotating seat of the present invention.
[0025] In the figure: 1. Base frame; 2. Rotating axis; 3. Top plate; 4. Rotating seat; 5. Bearing seat; 6. Integrated frame; 7. Positioning block; 8. Pull-out rod; 9. Locking bolt; 10. Rotating rod; 11. Push arm; 12. Movable column; 13. Movable axis; 14. Gear; 15. Driving motor; 16. Upper sliding block; 17. Front truss; 18. Lower articulated axis; 19. Rear truss; 20. Lower sliding block; 21. Electric push rod; 22. Center axis; 23. Upper articulated axis; 24. Linkage block; 25. Rotating motor; 26. Worm; 27. Worm gear. DETAILED DESCRIPTION
[0026] In order to further illustrate the technical means and effects adopted by the present invention to achieve the predetermined purpose of the utility model, the following is a detailed description of the specific implementation method, structure, characteristics and effects of the present invention in combination with the accompanying drawings and preferred embodiments.
[0027] See also Figure 1-5 , the utility model provides an embodiment: an auxiliary installation device for a high and low voltage distribution cabinet, including a bearing seat 5 and an integrated frame 6, two sets of integrated frames 6 are installed on the top of the bearing seat 5, and two sets of movable shafts 13 are movably installed inside the integrated frame 6. The surfaces of the movable shafts 13 are all covered with gears 14, and the two sets of gears 14 are meshed with each other, and the bottom ends of the integrated frames 6 are all installed with drive motors 15, which play the role of power driving, and the output ends of the drive motors 15 are connected to a set of movable shafts 13, and the surfaces of the movable shafts 13 on one side of the gears 14 are all installed with rotating rods 10, and the interiors of the rotating rods 10 are all slidably installed with pull rods 8, and locking bolts 9 are installed on the side walls of the rotating rods 10, and the locking bolts 9 penetrate the rotating rods 10 and extend to the surface of the pull rods 8, and the tops of the pull rods 8 are movably installed with movable columns 12, and the tops of the movable columns 12 are all installed with positioning blocks 7, and a base frame 1 is provided below the bearing seat 5;
[0028] Turn on the drive motor 15, and the drive motor 15 drives a group of gears 14 to rotate through a group of movable shafts 13. Under the mutual engagement of the two groups of gears 14, one group of gears 14 drives another group of gears 14 to rotate, and the other group of gears 14 drives the movable shaft 13 to rotate. The two groups of movable shafts 13 drive the two groups of rotating rods 10 to rotate in opposite directions, and the rotating rods 10 drive the positioning blocks 7 to rotate, so that the positioning blocks 7 move away from each other, rotate the movable column 12, and the movable column 12 drives the positioning blocks 7 to rotate, so that the four groups of positioning blocks 7 are aligned with each other, and then the high and low voltage distribution cabinet is placed on the top of the integrated frame 6, loosen the locking bolts 9, separate the pull rod 8 from the rotating rod 10, pull the pull rod 8 inward, and the pull rod 8 drives the positioning blocks 7 to move, so that the four groups of positioning blocks 7 are close to the four feet of the high and low voltage distribution cabinet, and then tighten the locking bolts 9 to re-fix the pull rod 8 and the rotating rod 10, and the high and low voltage distribution cabinet can be fixed on the integrated frame 6. The top of the top plate 3 is driven by the electric push rod 21, and the distance between the four groups of rotating rods 10 can be adjusted to adapt to high and low voltage distribution cabinets of different sizes. Then, the electric push rod 21 is opened, and the electric push rod 21 drives the push arm 11 to move. Under the support of the base frame 1, the push arm 11 drives the front truss 17 to rotate with the lower hinge shaft 18 as the axis through the linkage block 24, and the front truss 17 drives the upper sliding block 16 to slide on the inner wall of the top plate 3, and the front truss 17 drives the rear truss 19 to rotate with the upper hinge shaft 23 as the axis through the central axis 22, and the rear truss 19 drives the lower sliding block 20 to slide on the inner wall of the base frame 1, and the top plate 3 is driven to move upward by the joint action of the front truss 17 and the rear truss 19, and the top plate 3 is driven by the top plate 3 to move upward. The positioning block 7 and the high and low voltage distribution cabinet are driven upward by the top plate 3. After moving to the specified position, the installation is completed manually, which realizes convenient counter-rotation adjustment to adapt to clamping and fixing high and low voltage distribution cabinets of different sizes, and facilitates the lifting and auxiliary installation of the high and low voltage distribution cabinets.
[0029] The top of the base frame 1 is symmetrically mounted with front trusses 17, and the bottom ends of the front trusses 17 are all mounted with lower hinge shafts 18, and the front trusses 17 are movably connected to the base frame 1 via the lower hinge shafts 18. A top plate 3 is provided above the base frame 1, and the top ends of the front trusses 17 are all movably mounted with upper sliding blocks 16, and the upper sliding blocks 16 are slidably connected to the top plate 3, and a rotating seat 4 is mounted on the top end of the top plate 3;
[0030] The bottom end of the top plate 3 is symmetrically mounted with rear trusses 19, and the top ends of the rear trusses 19 are all mounted with upper hinge shafts 23, and the rear trusses 19 are movably connected to the top plate 3 via the upper hinge shafts 23. The bottom ends of the rear trusses 19 are all movably mounted with lower sliding blocks 20, and the lower sliding blocks 20 are slidably connected to the bottom frame 1;
[0031] A central shaft 22 is installed at the center of the front truss 17, and the front truss 17 is movably connected to the rear truss 19 through the central shaft 22. Electric push rods 21 are movably installed on the side walls of the rear truss 19. The electric push rods 21 play a role of power drive. The output ends of the electric push rods 21 are installed with push arms 11. The top ends of the push arms 11 are movably installed with linkage blocks 24, and the linkage blocks 24 are connected to the front truss 17.
[0032] A rotating motor 25 is mounted on the inner wall of the rotating base 4. The rotating motor 25 plays a role of power drive. A worm 26 is mounted on the output end of the rotating motor 25. A rotating shaft 2 is movably mounted inside the rotating base 4 on one side of the worm 26. The rotating shaft 2 is connected to the bearing base 5. A worm gear 27 is mounted on the surface of the rotating shaft 2, and the worm 26 and the worm gear 27 are meshed with each other.
[0033] Turn on the rotating motor 25, and the rotating motor 25 drives the worm 26 to rotate. Under the mutual engagement of the worm 26 and the worm wheel 27, the worm 26 drives the worm wheel 27 to rotate, and the worm wheel 27 drives the supporting base 5 to rotate through the rotating shaft 2. The supporting base 5 drives the integrated frame 6, the positioning block 7 and the high and low voltage distribution cabinet to rotate, so as to adjust the installation position of the high and low voltage distribution cabinet by circular rotation, thereby improving the convenience of auxiliary installation.
[0034] Working principle: The driving motor 15 drives a group of gears 14 to rotate through a group of movable shafts 13, and a group of gears 14 drives another group of gears 14 to rotate, and another group of gears 14 drives the movable shaft 13 to rotate, and the two groups of movable shafts 13 drive the two groups of rotating rods 10 to rotate in opposite directions, and the rotating rods 10 drive the positioning blocks 7 to rotate, so that the positioning blocks 7 are separated from each other, and the movable column 12 is rotated, and the movable column 12 drives the positioning blocks 7 to rotate, so that the four groups of positioning blocks 7 are aligned with each other, and then the high and low voltage distribution cabinets are connected. Place it on top of the integrated frame 6, loosen the locking bolts 9 to separate the pull-out rod 8 from the rotating rod 10, pull the pull-out rod 8 inward, and the pull-out rod 8 drives the positioning block 7 to move, so that the four groups of positioning blocks 7 are close to the four bottom feet of the high and low voltage distribution cabinet, and then tighten the locking bolts 9 to re-fix the pull-out rod 8 and the rotating rod 10 to fix the high and low voltage distribution cabinet on the top of the integrated frame 6. By adjusting the distance between the four groups of rotating rods 10, high and low voltage distribution cabinets of different sizes can be adapted. The electric push rod 21 drives the push arm 11 to move, and the push arm 11 drives the front truss 17 to rotate around the lower hinge shaft 18 through the linkage block 24. The front truss 17 drives the upper sliding block 16 to slide on the inner wall of the top plate 3. The front truss 17 drives the rear truss 19 to rotate around the upper hinge shaft 23 through the center axis 22. The rear truss 19 drives the lower sliding block 20 to slide on the inner wall of the bottom frame 1. Under the joint action of the front truss 17 and the rear truss 19, the top plate 3 is driven to move upward. Drive the positioning block 7 and the high and low voltage distribution cabinets to move upward. After moving to the designated position, the installation is completed manually. The rotating motor 25 drives the worm 26 to rotate, and the worm 26 drives the worm wheel 27 to rotate. The worm wheel 27 drives the supporting base 5 to rotate through the rotating shaft 2. The supporting base 5 drives the integrated frame 6, the positioning block 7 and the high and low voltage distribution cabinets to rotate in a circular manner to adjust the installation position of the high and low voltage distribution cabinets, so as to better assist workers in installing the high and low voltage distribution cabinets, thereby improving the convenience of auxiliary installation.
[0035] The above description is merely a preferred embodiment of the present invention and does not constitute any form of limitation to the present invention. Although the present invention has been disclosed as a preferred embodiment as above, it is not intended to limit the present invention. Any person skilled in the art can make some changes or modifications to equivalent embodiments using the technical contents disclosed above without departing from the scope of the technical solution of the present invention. However, any brief modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present invention without departing from the content of the technical solution of the present invention are still within the scope of the technical solution of the present invention.
Claims
1. An auxiliary installation device for high and low voltage distribution cabinets, comprising a bearing seat and an integrated frame, characterized in that: Two sets of integrated frames are installed on the top of the supporting seat, and two sets of movable shafts are movably installed inside the integrated frames. The surfaces of the movable shafts are all covered with gears, and the two sets of gears are meshed with each other. A driving motor is installed at the bottom of the integrated frame, and the output end of the driving motor is connected to a set of movable shafts. A rotating rod is installed on the surface of the movable shaft on one side of the gear, and a pull-out rod is slidably installed inside the rotating rod. Locking bolts are installed on the side walls of the rotating rods, and the locking bolts pass through the rotating rods and extend to the surface of the pull-out rods. A movable column is movably installed on the top of the movable column, and a positioning block is installed on the top of the movable column. A base frame is provided below the supporting seat.
2. The auxiliary installation device for high and low voltage distribution cabinets according to claim 1, characterized in that: The top of the base frame is symmetrically mounted with front trusses, the bottom ends of the front trusses are all mounted with lower hinge shafts, and the front trusses are movably connected to the base frame via the lower hinge shafts.
3. The auxiliary installation device for high and low voltage distribution cabinets according to claim 1, characterized in that: A top plate is provided above the base frame, and an upper sliding block is movably installed on the top end of each front truss, and the upper sliding block is slidably connected to the top plate, and a rotating seat is installed on the top end of the top plate.
4. The auxiliary installation device for high and low voltage distribution cabinets according to claim 3, characterized in that: The bottom end of the top plate is symmetrically installed with a rear truss, the top end of the rear truss is installed with an upper hinge shaft, and the rear truss is movably connected to the top plate through the upper hinge shaft, and the bottom end of the rear truss is movably installed with a lower sliding block, and the lower sliding block is slidably connected to the base frame.
5. The auxiliary installation device for high and low voltage distribution cabinets according to claim 2, characterized in that: A central shaft is installed at the center position of the front truss, and the front truss is movably connected to the rear truss through the central shaft.
6. The auxiliary installation device for high and low voltage distribution cabinets according to claim 4, characterized in that: Electric push rods are movably installed on the side walls of the rear truss, and push arms are installed on the output ends of the electric push rods.
7. The auxiliary installation device for high and low voltage distribution cabinets according to claim 6, characterized in that: The top ends of the push arms are all movably equipped with linkage blocks, and the linkage blocks are connected to the front trusses.
8. The auxiliary installation device for high and low voltage distribution cabinets according to claim 3, characterized in that: A rotating motor is installed on the inner wall of the rotating seat, and a worm is installed on the output end of the rotating motor.
9. The auxiliary installation device for high and low voltage distribution cabinets according to claim 8, characterized in that: A rotating shaft is movably installed inside the rotating seat on one side of the worm, and the rotating shaft is connected to the bearing seat.
10. The auxiliary installation device for high and low voltage distribution cabinets according to claim 9, characterized in that: A worm wheel is mounted on the surface of the rotating shaft, and the worm and the worm wheel are meshed with each other.
Citation Information
Patent Citations
Auxiliary installation equipment for high-low voltage power distribution cabinet
CN213921175U