CN224241971U - Power distribution cabinet conveying assembly line - Google Patents
Power distribution cabinet conveying assembly lineInfo
- Publication number
- CN224241971U CN224241971U CN202520957084.1U CN202520957084U CN224241971U CN 224241971 U CN224241971 U CN 224241971U CN 202520957084 U CN202520957084 U CN 202520957084U CN 224241971 U CN224241971 U CN 224241971U
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- Prior art keywords
- clamping
- distribution cabinet
- power distribution
- movable plate
- driving
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Abstract
The utility model provides a switch board conveying assembly line, including two guide rails that the interval was laid and can follow the carrier vehicle that two guide rails removed, be provided with the protecting crust between two guide rails, be provided with the conveyer chain on the protecting crust, the conveyer chain can dismantle with the carrier vehicle and be connected, the fixed two baffles that are provided with the interval and lay in top of carrier vehicle, one side that two baffles are relative all is provided with the movable plate, be provided with the driving piece that is used for driving the horizontal activity of movable plate on the baffle, one side slip of movable plate is provided with two splint, be provided with the power component that is used for driving two splint and removes in opposite directions or dorsad on the movable plate. The problem that the power distribution cabinet is easy to topple due to the inertia acting force generated when the power distribution cabinet is frequently started and stopped in the assembly process is avoided, and the personal safety of operators and the normal operation of peripheral equipment are threatened.
Description
Technical Field
The utility model relates to the technical field of power distribution cabinet conveying, in particular to a power distribution cabinet conveying assembly line.
Background
In the process of power distribution cabinet production and processing, various parts are required to be installed on the cabinet body, so that the cabinet body is required to be transported and transferred among different installation stations, and the continuity and the accuracy of the whole production process are ensured.
For example, the publication number is "CN221025876U", and the name is "a subway station switch board transportation auxiliary device", and this patent includes slide rail assembly, slide rail assembly is embedded in equipment room ground, slide rail assembly includes the slide rail that two intervals set up, the slide rail is equipped with transport portion and installation department, be equipped with first channel-section steel in the transport portion, be equipped with the second channel-section steel in the installation department, first channel-section steel with the inside connection switch board that slides of second channel-section steel. The switch board removes along the slide rail, can accomplish the installation of switch board.
However, in an actual application scene, the power distribution cabinet needs to be circulated among different stations to finish assembly operation, so that the power distribution cabinet needs to be frequently started and stopped in the moving process, and therefore, the power distribution cabinet is easy to topple due to inertia force generated during the frequent starting and stopping, and the personal safety of operators and the normal operation of peripheral equipment are threatened.
Disclosure of utility model
The utility model aims at overcoming the defects of the prior art, and provides a power distribution cabinet conveying assembly line which is used for solving the technical problems that the power distribution cabinet in the background art is easy to topple during moving and threatens the personal safety of operators and the normal operation of peripheral equipment.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
The utility model provides a switch board conveying assembly line, including two guide rails that the interval was laid and can follow the carrier vehicle that two guide rails removed, be provided with the protecting crust between two guide rails, be provided with the conveyer chain on the protecting crust, the conveyer chain can dismantle with the carrier vehicle and be connected, the fixed two baffles that are provided with the interval and lay in top of carrier vehicle, one side that two baffles are relative all is provided with the movable plate, be provided with the driving piece that is used for driving the horizontal activity of movable plate on the baffle, one side slip of movable plate is provided with two splint, be provided with the power component that is used for driving two splint and removes in opposite directions or dorsad on the movable plate.
The working principle is that the power distribution cabinet is placed at the top of the bearing vehicle, and then the driving piece is started to drive the corresponding movable plate to be attached to the outer side of the power distribution cabinet, so that the two movable plates limit the power distribution cabinet. After the movable plate is attached to the outer side of the power distribution cabinet, the power assembly is started to drive the two clamping plates to move in opposite directions, so that the two clamping plates clamp the power distribution cabinet through the other dimension.
The power assembly has the beneficial effects that as the driving piece for driving the movable plate to move horizontally is arranged on the baffle, and the two clamping plates are arranged on one side of the movable plate in a sliding manner, when the power assembly is used, the power assembly for driving the two clamping plates to move oppositely or reversely is arranged on the movable plate, the power assembly is placed on the top of the bearing vehicle, then the driving piece is started to drive the corresponding movable plate to be attached to the outer side of the power assembly, so that the power assembly is limited by the two movable plates to prevent the power assembly from toppling over, and when the movable plate is attached to the outer side of the power assembly, the power assembly is started to drive the two clamping plates to move oppositely, so that the two clamping plates clamp the power assembly through the other dimension, and the power assembly is further prevented from toppling over in the moving process. The problem that the power distribution cabinet is easy to topple due to the inertia acting force generated when the power distribution cabinet is frequently started and stopped in the assembly process is avoided, and the personal safety of operators and the normal operation of peripheral equipment are threatened.
Further, fixedly provided with a plurality of fixed plates on the conveying chain, a plurality of fixed plates are arranged along the extending direction equidistance of the conveying chain, the fixed plates are provided with sliding rods in a sliding mode, the tops of the sliding rods are fixedly provided with connecting plates, springs are fixedly arranged between the connecting plates and the corresponding fixed plates, clamping rods are fixedly arranged on the bearing vehicle, two clamping blocks which are symmetrically distributed are fixedly arranged on the connecting plates, the two clamping blocks form clamping spaces for the clamping rods, one sides, away from each other, of the clamping blocks are inclined planes, and the inclined planes of the clamping blocks are in sliding fit with the clamping rods when in contact.
Further, the bottom of slide bar is fixed and is provided with the actuating lever, and the fixed driving piece that is provided with on the protecting crust, one side of driving piece is equipped with the inclined plane, sliding fit when the inclined plane of driving piece and actuating lever contact.
Further, the driving piece is an electric push rod, the electric push rod is fixedly arranged on the baffle, and the output end of the electric push rod is fixedly connected with the corresponding movable plate.
Further, power component includes motor and threaded rod, and the spout has been seted up to one side of movable plate, and the threaded rod rotates to set up in the spout, and threaded connection has two sliders on the threaded rod, and two sliders all with spout sliding connection, and two sliders respectively with the splint fixed connection that corresponds, the motor is fixed to be set up in the one end of movable plate, the output and the threaded rod fixed connection of motor.
Further, the splint is close to the fixed rubber pad that is provided with in one side of switch board.
Drawings
FIG. 1 is a perspective view of the present utility model;
FIG. 2 is an enlarged view of the utility model at A of FIG. 1;
FIG. 3 is a perspective view of the snap-fit block and the connection plate of the present utility model;
Fig. 4 is a perspective view of the hidden power distribution cabinet of the present utility model.
The reference numerals are 1, a guide rail, 2, a protective shell, 3, a conveying chain, 301, a driving motor, 302, a chain wheel, 303, a chain, 4, a sloping plate, 5, a bearing vehicle, 6, a power distribution cabinet, 7, a clamping rod, 8, a fixed plate, 9, a sliding rod, 10, a spring, 11, a connecting plate, 12, a clamping block, 13, a driving rod, 14, a driving block, 15, a baffle plate, 16, a moving plate, 17, an electric push rod, 18, a chute, 19, a threaded rod, 20, a sliding block, 21, a motor, 22 and a clamping plate.
Detailed Description
The technical scheme of the utility model is further described below with reference to the accompanying drawings and examples.
As shown in fig. 1-4, a power distribution cabinet conveying assembly line comprises two guide rails 1 which are arranged at intervals and a carrier vehicle 5 which can move along the two guide rails 1, wherein the top of the carrier vehicle 5 is used for placing a power distribution cabinet 6. The carrier 5 is including placing the board, and four equal fixed mounting in bottom of placing the board have the support column, and the gyro wheel is all installed in the bottom of support column rotation, and the gyro wheel can follow corresponding guide rail 1 and remove. The left ends of the two guide rails 1 are fixedly provided with inclined plates 4, so that rollers of the carrier 5 conveniently enter the corresponding guide rails 1 along the inclined plates 4. A protective shell 2 is arranged between the two guide rails 1, the protective shell 2 is distributed along the length direction of the guide rails 1, and the two guide rails 1 are symmetrically distributed about the central line of the protective shell 2. One side of the guide rail 1 is provided with a plurality of mounting stations (not shown in the figure) in sequence along the length direction thereof, and each mounting station is provided with spare parts for assembling the power distribution cabinet 6. A conveying chain 3 is arranged in the protective shell 2 along the length direction of the protective shell, the conveying chain 3 comprises a chain 303 and a driving motor 301, chain wheels 302 are respectively rotatably arranged at two ends in the protective shell 2, and the chain 303 is sleeved on the periphery of the chain wheels 302 and meshed with the chain wheels 302. The driving motor 301 is fixedly installed at one side of the protective housing 2, and the output end of the driving motor 301 is coaxially and fixedly connected with the corresponding sprocket 302. The chain 303 of the conveyor chain 3 is detachably connected to the carriage 5. When the carrier 5 carrying the power distribution cabinet 6 is connected with the chain 303, the driving motor 301 is started, the driving motor 301 drives the corresponding chain wheel 302 to rotate, the chain wheel 302 drives the chain 303 to move, and the chain 303 drives the carrier 5 to move to different mounting stations until the required parts of the power distribution cabinet 6 are mounted.
A plurality of fixing plates 8 are fixedly mounted on two sides of the chain 303 respectively, the fixing plates 8 are equidistantly arranged along the extending direction of the chain 303, and the fixing plates 8 are mounted on corresponding links of the chain 303 respectively. The through hole is formed in the fixed plate 8, the sliding rod 9 is vertically and slidably arranged in the through hole, the connecting plate 11 is fixedly arranged at the top of the sliding rod 9, the spring 10 is fixedly arranged between the connecting plate 11 and the corresponding fixed plate 8, the spring 10 is sleeved on the periphery of the sliding rod 9, one end of the spring 10 is fixedly connected with the connecting plate 11, and the other end of the spring 10 is fixedly connected with the fixed plate 8. The bearing vehicle 5 is fixedly provided with a clamping rod 7, and the clamping rod 7 is of a cylindrical structure. A cross rod is fixedly arranged between the two support columns on two sides of the bearing vehicle 5, and two ends of the clamping connection rod 7 are fixedly connected with the corresponding cross rods respectively. Two clamping blocks 12 which are symmetrically distributed are fixedly arranged at the top of the connecting plate 11, the two clamping blocks 12 form a clamping space for the clamping rod 7, one sides, away from each other, of the clamping blocks 12 are inclined planes, and the top of the clamping blocks 12 is provided with arc transition. In the moving process of the carrier 5, when the clamping rod 7 is in contact with the clamping blocks 12, the periphery of the clamping rod 7 is in sliding fit with the inclined surfaces of the clamping blocks 12, so that the clamping rod 7 drives the sliding rod 9 to move downwards through the clamping blocks 12 and compresses the springs 10, when the clamping rod 7 moves to the position right above a clamping space formed by the two clamping blocks 12, the two clamping blocks 12 are driven to move upwards through the connecting plates 11 under the action of the restoring force of the springs 10, and the clamping rod 7 is positioned between the two clamping blocks 12, so that the chain 303 is convenient to drive the carrier 5 to move.
The bottom of the sliding rod 9 is horizontally and fixedly provided with a driving rod 13, the right end of the inner side of the protective shell 2 is fixedly provided with two symmetrically arranged driving blocks 14, one side of each driving block 14 is provided with an inclined plane, and the inclined planes of the driving blocks 14 are in sliding fit when contacting with the corresponding driving rod 13. When the carrier 5 moves to the right end of the protective shell 2, the driving rod 13 is in sliding fit with the inclined plane of the corresponding driving block 14 and drives the driving rod 13 to move downwards, the driving rod 13 drives the sliding rod 9 to move downwards, the sliding rod 9 moves downwards to drive the two clamping blocks 12 to move downwards, the clamping state of the clamping blocks 12 and the clamping rods 7 is released, then the carrier 5 is pushed to be separated from the chain 303, and then the carrier 5 carrying the power distribution cabinet 6 is transported to a subsequent process.
As shown in fig. 4, two baffles 15 are fixedly installed at the top of a placing plate of the carrier 5, two moving plates 16 are transversely arranged on opposite sides of the two baffles 15, driving members for driving the moving plates 16 to horizontally move are installed on the baffles 15, the driving members are electric push rods 17, the electric push rods 17 are fixedly installed on one sides, far away from the power distribution cabinet 6, of the baffles 15, and output ends of the electric push rods 17 penetrate through the corresponding baffles 15 and are fixedly connected with the corresponding moving plates 16. When switch board 6 is placed at the top of bearing car 5, start electric putter 17, electric putter 17 drive the outside laminating of corresponding movable plate 16 and switch board 6 to restrict switch board 6, prevent that switch board 6 from taking place to rock at the in-process of removal, lead to switch board 6 to empty.
As shown in fig. 4, two clamping plates 22 are slidably mounted on one side of the moving plate 16, and a power assembly for driving the two clamping plates 22 to move toward or away from each other is mounted on the moving plate 16. The power assembly comprises a motor 21 and a threaded rod 19, a sliding groove 18 is formed in one side, facing the power distribution cabinet 6, of the moving plate 16 along the length direction of the moving plate, the threaded rod 19 is rotatably mounted in the sliding groove 18 along the length direction of the sliding groove 18, two ends of the threaded rod 19 are polished rod sections, and two ends of the threaded rod 19 are inserted into the moving plate 16 and are mounted in a rotating fit with the moving plate 16. The periphery threaded connection of threaded rod 19 has two sliders 20, and two sliders 20 all are connected with spout 18 sliding, and two sliders 20 respectively with corresponding splint 22 fixed connection, motor 21 fixed mounting is in the one end of movable plate 16, and the output of motor 21 passes movable plate 16 and with threaded rod 19 fixed connection. After the outside laminating of movable plate 16 and switch board 6, start motor 21, motor 21 drive threaded rod 19 rotates, and threaded rod 19 drives two slider 20 and removes in opposite directions, and two slider 20 drive two splint 22 and remove in opposite directions to make two splint 22 carry out the centre gripping to switch board 6 through another dimension, further prevent that switch board 6 from taking place to empty. Avoid switch board 6 to empty and bring the potential safety hazard for operating personnel and equipment.
A rubber pad (not shown in the figure) is fixedly arranged on one side of the clamping plate 22, which is close to the power distribution cabinet 6, and when the clamping plate 22 clamps the power distribution cabinet 6, the rubber pad plays a role in buffering so as to protect the power distribution cabinet 6.
Working principle:
During the use, place switch board 6 at the top of bearing car 5, then start electric putter 17, electric putter 17 drive the outside laminating of corresponding movable plate 16 and switch board 6 to two movable plates 16 restrict switch board 6, prevent switch board 6 from empting. After the outside laminating of movable plate 16 and switch board 6, start motor 21, motor 21 drive threaded rod 19 rotates, and threaded rod 19 drives two slider 20 and removes in opposite directions, and two slider 20 drive two splint 22 and remove in opposite directions to make two splint 22 carry out the centre gripping to switch board 6 through another dimension, further prevent that switch board 6 from taking place to empty at the in-process of removal.
After the power distribution cabinet 6 is firmly clamped, the carrier 5 is pushed to move onto the guide rail 1 through the inclined plate 4, and the carrier 5 is pushed to move along the guide rail 1, in the process of moving, the carrier 5 drives the clamping rod 7 to move, when the clamping rod 7 contacts with the corresponding clamping block 12, the periphery of the clamping rod 7 is in sliding fit with the inclined surface of the clamping block 12, so that the clamping rod 7 drives the sliding rod 9 to move downwards through the clamping block 12 and compresses the spring 10, when the clamping rod 7 moves to the position right above a clamping space formed by the two clamping blocks 12, the two clamping blocks 12 are driven to move upwards through the connecting plate 11 under the action of the restoring force of the spring 10, and the clamping rod 7 is positioned between the two clamping blocks 12.
Then, the driving motor 301 is started, the driving motor 301 drives the corresponding chain wheel 302 to rotate, the chain wheel 302 drives the chain 303 to move, and the chain 303 drives the carrier 5 to move to different mounting stations. After the installation of the spare and accessory parts required by the power distribution cabinet 6 is completed, the carrier 5 is in sliding fit with the inclined plane of the corresponding driving block 14 and drives the driving rod 13 to move downwards in the process of moving to the right end of the protective shell 2, the driving rod 13 drives the sliding rod 9 to move downwards, and the sliding rod 9 moves downwards to drive the two clamping blocks 12 to move downwards, so that the clamping state of the clamping blocks 12 and the clamping rods 7 is relieved, and meanwhile, the carrier 5 is pushed to be separated from the chain 303, and then the carrier 5 carrying the power distribution cabinet 6 is transported to a subsequent process.
Finally, it is noted that the above embodiments are only for illustrating the technical solution of the present utility model and not for limiting the same, and although the present utility model has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that modifications and equivalents may be made thereto without departing from the spirit and scope of the technical solution of the present utility model, which is intended to be covered by the scope of the claims of the present utility model.
Claims (6)
1. The utility model provides a switch board conveying line, includes two guide rails (1) that the interval was laid and can follow the carrier vehicle (5) that two guide rails (1) removed, a serial communication port, be provided with between two guide rails (1) protecting crust (2), be provided with conveyer chain (3) on protecting crust (2), conveyer chain (3) can dismantle with carrier vehicle (5) and be connected, the fixed two baffles (15) that are provided with the interval and lay in top of carrier vehicle (5), one side that two baffles (15) are relative all is provided with movable plate (16), be provided with the driving piece that is used for driving movable plate (16) horizontal movement on baffle (15), one side slip of movable plate (16) is provided with two splint (22), be provided with the power pack that is used for driving two splint (22) in opposite directions or moves in opposite directions on movable plate (16).
2. The power distribution cabinet conveying assembly line according to claim 1, wherein a plurality of fixing plates (8) are fixedly arranged on the conveying chain (3), the fixing plates (8) are equidistantly arranged along the extending direction of the conveying chain (3), sliding rods (9) are slidably arranged on the fixing plates (8), connecting plates (11) are fixedly arranged at the tops of the sliding rods (9), springs (10) are fixedly arranged between the connecting plates (11) and the corresponding fixing plates (8), clamping rods (7) are fixedly arranged on the carrying vehicle (5), two clamping blocks (12) symmetrically arranged are fixedly arranged on the connecting plates (11), clamping spaces for the clamping rods (7) are formed by the two clamping blocks (12), one sides, away from each other, of the clamping blocks (12) are inclined surfaces, and the inclined surfaces of the clamping blocks (12) are in sliding fit when in contact with the clamping rods (7).
3. The power distribution cabinet conveying assembly line according to claim 2, wherein a driving rod (13) is fixedly arranged at the bottom of the sliding rod (9), a driving block (14) is fixedly arranged on the protective shell (2), an inclined surface is arranged on one side of the driving block (14), and the inclined surface of the driving block (14) is in sliding fit with the driving rod (13) when in contact.
4. The power distribution cabinet conveying assembly line according to claim 1, wherein the driving piece is an electric push rod (17), the electric push rod (17) is fixedly arranged on the baffle plate (15), and the output end of the electric push rod (17) is fixedly connected with the corresponding movable plate (16).
5. The power distribution cabinet conveying assembly line according to claim 1, wherein the power assembly comprises a motor (21) and a threaded rod (19), a sliding groove (18) is formed in one side of the movable plate (16), the threaded rod (19) is rotatably arranged in the sliding groove (18), two sliding blocks (20) are connected to the threaded rod (19) in a threaded mode, the two sliding blocks (20) are all in sliding connection with the sliding groove (18), the two sliding blocks (20) are respectively fixedly connected with corresponding clamping plates (22), the motor (21) is fixedly arranged at one end of the movable plate (16), and the output end of the motor (21) is fixedly connected with the threaded rod (19).
6. The power distribution cabinet conveying assembly line according to claim 1, wherein a rubber pad is fixedly arranged on one side of the clamping plate (22) close to the power distribution cabinet (6).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202520957084.1U CN224241971U (en) | 2025-05-15 | 2025-05-15 | Power distribution cabinet conveying assembly line |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202520957084.1U CN224241971U (en) | 2025-05-15 | 2025-05-15 | Power distribution cabinet conveying assembly line |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN224241971U true CN224241971U (en) | 2026-05-15 |
Family
ID=99746669
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202520957084.1U Active CN224241971U (en) | 2025-05-15 | 2025-05-15 | Power distribution cabinet conveying assembly line |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN224241971U (en) |
-
2025
- 2025-05-15 CN CN202520957084.1U patent/CN224241971U/en active Active
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Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| GR01 | Patent grant |