An electrical cabinet processing system based on the Internet of Things

The electrical cabinet processing system, which integrates laser cutting, bending, handling and welding mechanisms, solves the high cost and low efficiency problems caused by manual handling and welding, realizes the mechanized production and efficient processing of electrical cabinets, and improves the health of workers.

CN118744336BActive Publication Date: 2025-09-05JIANGSU YUNBIAO SOFTWARE TECH CO LTD
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Patent Information

Application Number
CN202411105382.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-08-12
Publication Date
2025-09-05
Estimated Expiration
2044-08-12

AI Technical Summary

Technical Problem

The existing production of electrical cabinets requires manual handling and manual welding, resulting in high labor costs, low processing efficiency, and the production process produces toxic substances that affect workers' health.

Method used

Design an electrical cabinet processing system based on the Internet of Things, which integrates laser cutting, bending, handling and welding mechanisms, utilizes mechanized production to reduce manual participation, and manages each processing step through the Internet of Things controller.

Benefits of technology

It improves the production efficiency and quality of electrical cabinets, reduces manual participation, improves the working environment of workers, and achieves standardization and stability of processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an electrical cabinet body processing system based on the Internet of Things, which relates to the field of electrical cabinet body processing. The system includes a conveying workbench and an accessory conveying platform. The conveying workbench is equipped with a conveying point and an Internet of Things controller, and the electrical cabinet is placed on the conveying point. The accessory conveying platform is equipped with an accessory conveyor belt, and accessories are placed on the accessory conveyor belt. The present invention utilizes four components: a laser cutting mechanism, a bending mechanism, a transport mechanism, and a welding mechanism to integrate different processing steps into a single line for processing. The system utilizes mechanized production to improve the production efficiency of the device, reduce the participation of manual labor in front-line production, and achieve the purpose of improving the working environment of workers. The Internet of Things controller is used to manage each processing step, ensure standardized processing, and further improve production efficiency while improving the production quality of the electrical cabinet.
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Description

Technical Field

[0001] The present invention relates to the technical field of electrical cabinet body processing, and in particular to an electrical cabinet body processing system based on the Internet of Things. Background Art

[0002] Electrical cabinets are made of steel and are used to protect components. They are generally made of hot-rolled and cold-rolled steel. Cold-rolled steel is softer than hot-rolled steel, making it more suitable for cabinet construction. They are widely used in the chemical industry, environmental protection, power systems, metallurgy, industry, nuclear power, fire safety monitoring, transportation, and more.

[0003] In the existing technology, the production of electrical cabinets mainly requires sheet metal processing. The traditional processing method requires corresponding equipment for bending, cutting, and welding, and manual loading and unloading is required in the middle, resulting in high labor costs and low processing efficiency. Toxic substances are also produced during the production process, affecting the health of workers. Therefore, an electrical cabinet body processing system based on the Internet of Things is needed to meet people's needs. Summary of the Invention

[0004] The purpose of the present invention is to provide an electrical cabinet body processing system based on the Internet of Things to solve the problems raised in the above background technology, that is, corresponding equipment is needed for bending, cutting, and welding, and manual loading and unloading of materials are required in the middle, resulting in high labor costs and low processing efficiency. In addition, toxic substances are generated during the production process, which affects the health of workers.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an electrical cabinet processing system based on the Internet of Things, comprising a conveying workbench and an accessories conveying workbench, wherein a conveying point and an Internet of Things controller are installed on the conveying workbench, an electrical cabinet is placed on the conveying point, an accessories conveying belt is installed on the accessories conveying workbench, accessories are placed on the accessories conveying belt, a laser cutting mechanism, a bending mechanism, a handling mechanism, and a welding mechanism are fixedly installed on the conveying workbench, the laser cutting mechanism comprises a cutting mounting frame, the cutting mounting frame is fixedly mounted on the conveying workbench, a cutting movable sleeve is slidably mounted on the inner wall of the bottom side of the cutting mounting frame, a cutting telescopic arm is rotatably mounted on the bottom side of the cutting movable sleeve, the cutting telescopic arm comprises an upper telescopic block and a lower telescopic rod, the lower telescopic rod is installed on the bottom side of the upper telescopic block, a cutting angle adjustment motor is fixedly mounted on the lower telescopic rod, a laser cutting head is fixedly mounted on the output end of the cutting angle adjustment motor, a cutting level adjustment motor is fixedly mounted on the cutting mounting frame, and the cutting level adjustment motor is adapted to the cutting mounting frame;

[0006] The bending mechanism includes a bending mounting frame, which is fixedly mounted on the conveying workbench, a bending movable sleeve is slidably mounted on the inner wall of the bottom side of the bending mounting frame, a bending lifting sleeve is slidably mounted on the bottom side of the bending lifting sleeve, a base plate is fixedly mounted on the bottom side of the bending lifting sleeve, a clamping base plate is rotatably mounted on the bottom side of the base plate, two groups of first clamping plates and second clamping plates are slidably mounted on the bottom side of the clamping base plate, and a sliding bending plate is slidably mounted on both first clamping plates, a horizontal adjustment motor is fixedly mounted on the bending mounting frame, the horizontal adjustment motor is adapted to the bending movable sleeve, a clamping positioning motor is fixedly mounted on the clamping base plate, and the clamping positioning motor is adapted to the first clamping plate and the second clamping plate.

[0007] Preferably: a driving groove is provided on the inner wall of the bottom side of the cutting mounting frame, a driving block is slidably installed in the driving groove, a driving screw is threadedly installed on the driving block, the driving screw is connected to the output end of the cutting level adjustment motor, and two positioning grooves are provided on the bottom side of the cutting mounting frame, and positioning sliders are slidably installed in the two positioning grooves, and the two positioning sliders are respectively fixedly installed on the cutting movable sleeve.

[0008] Preferably: a self-rotating motor is fixedly mounted on the upper telescopic block, the output end of the self-rotating motor is connected to the cutting movable sleeve, an upper telescopic sleeve is fixedly mounted on the bottom side of the upper telescopic block, a lower connecting rod is fixedly mounted on the lower telescopic rod, the lower connecting rod is slidably mounted on the upper telescopic sleeve, a telescopic motor is fixedly mounted on the lower telescopic rod, the output end of the telescopic motor is fixedly mounted on the telescopic screw rod, and a telescopic sleeve is sleeved on the self-rotating motor and the upper telescopic block.

[0009] Preferably: a height adjustment motor is installed on the top of the bending mounting frame, a height adjustment screw is fixedly installed on the output end of the height adjustment motor, the height adjustment screw is threadedly installed on the bending lifting sleeve, a bending steering motor is fixedly installed on the base plate, and the output end of the bending steering motor is fixedly installed on the clamping base plate.

[0010] Preferably: a bending connecting block is fixedly installed on the sliding bending plate, two bending transmission rods are rotatably installed on the bending connecting block, the two bending transmission rods are rotatably installed with the same bending drive plate at one end away from the bending connecting block, a bending drive motor is fixedly installed on the first splint, a bending drive screw is fixedly installed on the output end of the bending drive motor, the bending drive screw is threadedly installed on the bending drive plate, two sliding grooves are provided on the sliding bending plate, sliding blocks are slidably installed in the two sliding grooves, and the two sliding blocks are fixedly mounted on the first splint.

[0011] Preferably: the conveying mechanism includes a conveying mounting frame, the conveying mounting frame is fixedly mounted on the conveying workbench, the bottom side of the conveying mounting frame is slidably mounted with an upper conveying telescopic rod, and a conveying lower telescopic rod is slidably mounted on the upper conveying telescopic rod, and two movable splints are slidably mounted on the bottom side of the lower conveying telescopic rod, and the top of the upper conveying telescopic rod is fixedly mounted with a conveying steering motor, and the bottom side of the conveying mounting frame is slidably mounted with a conveying driving slider, the output end of the conveying steering motor is connected to the bottom side of the conveying driving slider, the conveying driving motor is fixedly mounted on the conveying mounting frame, and the output end of the conveying driving motor is threadedly mounted on the conveying driving slider, the conveying lower telescopic rod is fixedly mounted with a conveying lifting motor, the output end of the conveying lifting motor is fixedly mounted on the conveying lifting gear, the conveying upper telescopic rod is fixedly mounted with a conveying lifting rack, the conveying lifting rack is meshed with the conveying lifting gear, and the conveying upper telescopic rod and the conveying lower telescopic rod are sleeved with a protective cover.

[0012] Preferably: a clamping motor is fixedly installed in the lower telescopic rod for transporting, a clamping screw is fixedly installed on the output end of the clamping motor, a clamping driven plate is threadedly installed on the clamping screw, two clamping transmission rods are rotatably installed on the clamping driven plate, and the two clamping transmission rods are rotatably installed on the two movable clamping plates at one end away from the clamping driven plate.

[0013] Preferably: the welding mechanism includes a welding mounting frame, which is fixedly mounted on the conveying workbench, a welding horizontal mounting frame is slidably mounted on the bottom side of the welding mounting frame, a welding steering block is slidably mounted on the bottom side of the welding horizontal mounting frame, a welding horizontal drive motor is fixedly mounted on the welding mounting frame, the welding horizontal drive motor is adapted to the welding horizontal mounting frame, a welding displacement motor is fixedly mounted on the welding horizontal mounting frame, the welding displacement motor is adapted to the welding steering block, a welding telescopic rod is rotatably mounted on the bottom side of the welding steering block, a welding angle motor is fixedly mounted on the welding telescopic rod, a welding head is fixedly mounted on the output end of the welding angle motor, a welding steering motor is fixedly mounted on the welding steering block, and the output end of the welding steering motor is connected to the welding telescopic rod.

[0014] Preferably: the welding telescopic rod includes a welding upper telescopic rod and a welding lower telescopic rod, the welding upper telescopic rod is rotatably mounted on the bottom side of the welding steering block, the welding lower telescopic rod is slidably mounted on the welding upper telescopic rod, a welding telescopic motor is fixedly mounted on the welding lower telescopic rod, a welding telescopic gear is fixedly mounted on the output end of the welding telescopic motor, a welding telescopic rack is fixedly mounted on the welding upper telescopic rod, and the welding telescopic gear is meshed with the welding telescopic rack.

[0015] The beneficial effects of the present invention are:

[0016] In the present invention, four components, namely a laser cutting mechanism, a bending mechanism, a conveying mechanism and a welding mechanism, are used to integrate different processing steps into one line of processing. Mechanized production is used to improve the production efficiency of the device, reduce the participation of manual labor in the front-line production, and achieve the purpose of improving the working environment of workers. The Internet of Things controller is used to manage each processing step, ensure the standardization of processing, and further improve the production efficiency while improving the production quality of electrical cabinets.

[0017] In the present invention, the conveying workbench and the accessories conveying platform are designed in parallel, and the movable splint on the handling mechanism is used to transfer the accessories and place them on the electrical cabinet. The welding head on the welding mechanism is used to realize the combined welding between the electrical cabinet components, thereby realizing the mechanized production of the electrical cabinet. Compared with manual welding, mechanical welding can ensure stable welding quality. At the same time, the welding steering block adjusts the direction through the welding steering motor to realize welding processing at different positions of the electrical cabinet.

[0018] In the present invention, the electrical cabinet is cut by the laser cutting head on the laser cutting mechanism, so that efficient processing of the electrical cabinet can be achieved. After the electrical cabinet is clamped by the first clamping plate and the second clamping plate on the bending mechanism, the protruding part of the electrical cabinet can be bent using the sliding bending plate to achieve sheet metal processing of the electrical cabinet. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the three-dimensional structure of an electrical cabinet body processing system based on the Internet of Things proposed by the present invention;

[0020] Figure 2 This is a schematic diagram of the top view of an electrical cabinet body processing system based on the Internet of Things proposed by the present invention;

[0021] Figure 3 This is a structural schematic diagram of the bending mechanism of an electrical cabinet body processing system based on the Internet of Things proposed by the present invention;

[0022] Figure 4 The present invention proposes an electrical cabinet cabinet processing system based on the Internet of Things Figure 3 Schematic diagram of the structure of part A;

[0023] Figure 5 This is a structural schematic diagram of the laser cutting mechanism of an electrical cabinet body processing system based on the Internet of Things proposed by the present invention;

[0024] Figure 6 This is a structural schematic diagram of the laser cutting mechanism of an electrical cabinet body processing system based on the Internet of Things proposed by the present invention;

[0025] Figure 7This is a structural schematic diagram of the bending mechanism of an electrical cabinet body processing system based on the Internet of Things proposed by the present invention;

[0026] Figure 8 This is a structural schematic diagram of the transport mechanism of an electrical cabinet body processing system based on the Internet of Things proposed by the present invention;

[0027] Figure 9 The present invention proposes an electrical cabinet cabinet processing system based on the Internet of Things Figure 8 Schematic diagram of the structure of part B;

[0028] Figure 10 This is a structural schematic diagram of the welding mechanism part of an electrical cabinet body processing system based on the Internet of Things proposed by the present invention.

[0029] In the figure: 100, conveying workbench; 101, conveying point; 102, electrical cabinet; 103, Internet of Things controller; 200, accessories conveying platform; 201, accessories conveyor belt; 202, accessories; 300, laser cutting mechanism; 301, cutting mounting frame; 302, cutting movable sleeve; 303, cutting telescopic arm; 304, laser cutting head; 305, cutting angle adjustment motor; 306, driving slot; 307, driving block; 308, driving screw; 309, positioning slide; 310, positioning slide; 311, cutting level adjustment motor; 312, rotation motor; 313, upper telescopic block; 314, lower telescopic rod; 315, telescopic motor; 316, telescopic screw; 317, upper telescopic sleeve; 318, lower connecting rod; 319, telescopic sleeve; 400, bending mechanism; 401, bending mounting frame; 402, bending movable sleeve; 403, bending lifting sleeve; 404, leveling motor; 405, bottom plate; 406, clamping bottom plate; 407, first clamping plate; 408, second clamping plate; 409, sliding bending plate; 410, sliding groove; 411, sliding block; 412, height adjustment motor; 413, height adjustment screw; 41 4. Bending and steering motor; 415. Clamping and positioning motor; 500. Transport mechanism; 501. Transport mounting frame; 502. Transport upper telescopic rod; 503. Transport lower telescopic rod; 504. Protective cover; 505. Transport lifting motor; 506. Transport lifting gear; 507. Transport lifting rack; 508. Transport steering motor; 509. Transport drive slider; 510. Movable splint; 511. Transport drive motor; 512. Clamping motor; 513. Clamping screw rod; 514. Clamping driven plate; 515. Clamping transmission rod; 600. Welding mechanism; 601. Welding Mounting frame; 602, welding horizontal mounting frame; 603, welding horizontal drive motor; 604, welding steering block; 605, welding telescopic rod; 606, welding angle motor; 607, welding head; 608, welding displacement motor; 609, welding steering motor; 700, bending connecting block; 701, bending transmission rod; 702, bending drive plate; 703, bending drive screw; 704, bending drive motor; 800, welding upper telescopic rod; 801, welding lower telescopic rod; 802, welding telescopic rack; 803, welding telescopic motor; 804, welding telescopic gear. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0031] Reference Figure 1-10, an electrical cabinet body processing system based on the Internet of Things, including a conveying workbench 100 and an accessory conveying platform 200, the conveying workbench 100 is equipped with a conveying point 101 and an Internet of Things controller 103, an electrical cabinet 102 is placed on the conveying point 101, the accessory conveying platform 200 is equipped with an accessory conveyor belt 201, and accessories 202 are placed on the accessory conveyor belt 201, the conveying workbench 100 is fixedly equipped with a laser cutting mechanism 300, a bending mechanism 400, a transport mechanism 500, and a welding mechanism 600, the laser cutting mechanism 300 includes a cutting mounting frame 301, the cutting mounting frame 301 is fixedly mounted on the conveying workbench 100, a cutting movable sleeve 302 is slidably mounted on the inner wall of the bottom side of the cutting mounting frame 301, and a cutting telescopic arm 303 is rotatably mounted on the bottom side of the cutting movable sleeve 302, and the cutting telescopic arm 303 includes an upper telescopic block 313 and a lower telescopic rod 314, a lower telescopic rod 314 is installed on the bottom side of the upper telescopic block 313, a cutting angle adjustment motor 305 is fixedly installed on the lower telescopic rod 314, and a laser cutting head 304 is fixedly installed on the output end of the cutting angle adjustment motor 305, and a cutting level adjustment motor 311 is fixedly installed on the cutting mounting frame 301, and the cutting level adjustment motor 311 is adapted to the cutting mounting frame 301. The four components of the laser cutting mechanism, the bending mechanism, the transport mechanism, and the welding mechanism are used to integrate different processing steps into one line for processing, and mechanized production is used to improve the production efficiency of the device, reduce the participation of manual labor in the first-line production, and achieve the purpose of improving the working environment of the workers. The Internet of Things controller is used to realize the management of each processing step, ensure the standardization of processing, and further improve the production efficiency while improving the production quality of the electrical cabinet;

[0032] In an optional embodiment: the bending mechanism 400 includes a bending mounting frame 401, the bending mounting frame 401 is fixedly mounted on the conveying workbench 100, a bending movable sleeve 402 is slidably mounted on the inner wall of the bottom side of the bending mounting frame 401, a bending lifting sleeve 403 is slidably mounted on the bending movable sleeve 402, a bottom plate 405 is fixedly mounted on the bottom side of the bending lifting sleeve 403, a clamping bottom plate 406 is rotatably mounted on the bottom side of the bottom plate 405, two groups of first clamping plates 407 and second clamping plates 408 are slidably mounted on the bottom side of the clamping bottom plate 406, and a sliding bending plate 409 is slidably mounted on the two first clamping plates 407. A horizontal adjustment motor 404 is fixedly installed on the top, and the horizontal adjustment motor 404 is adapted to the bending movable sleeve 402. A clamping positioning motor 415 is fixedly installed on the clamping base plate 406, and the clamping positioning motor 415 is adapted to the first clamping plate 407 and the second clamping plate 408. A height adjustment motor 412 is installed on the top of the bending mounting frame 401, and a height adjustment screw rod 413 is fixedly installed on the output end of the height adjustment motor 412. The height adjustment screw rod 413 is threadedly installed on the bending lifting sleeve 403. A bending steering motor 414 is fixedly installed on the base plate 405, and the output end of the bending steering motor 414 is fixedly installed on the clamping base plate 406.

[0033] It should be noted that, in the bending mechanism 400, a height adjustment motor 412 is used to drive the height adjustment screw 413 to rotate on the bending lifting sleeve 403, so as to adjust the height of the bending lifting sleeve 403. The horizontal adjustment motor 404 can drive the bending movable sleeve 402 to move to a movable position. The horizontal adjustment motor 404 is used to drive the clamping base plate 406 to rotate on the bottom side of the base plate 405, so as to realize the processing of different positions of the electrical cabinet 102 by the device. The clamping positioning motor 415 is used to drive the first clamping plate 407 and the second clamping plate 408 to clamp the electrical cabinet 102.

[0034] In an optional embodiment: a driving groove 306 is provided on the inner wall of the bottom side of the cutting mounting frame 301, a driving block 307 is slidably installed in the driving groove 306, a driving screw 308 is threadedly installed on the driving block 307, and the driving screw 308 is connected to the output end of the cutting level adjustment motor 311, and two positioning slots 309 are provided on the bottom side of the cutting mounting frame 301, and positioning sliders 310 are slidably installed in the two positioning slots 309. The two positioning sliders 310 are respectively fixedly mounted on the cutting movable sleeve 302, and the upper telescopic A rotating motor 312 is fixedly mounted on the block 313, and the output end of the rotating motor 312 is connected to the cutting movable sleeve 302. An upper telescopic sleeve 317 is fixedly mounted on the bottom side of the upper telescopic block 313, a lower connecting rod 318 is fixedly mounted on the lower telescopic rod 314, and the lower connecting rod 318 is slidably mounted on the upper telescopic sleeve 317, a telescopic motor 315 is fixedly mounted on the lower telescopic rod 314, and the output end of the telescopic motor 315 is fixedly mounted on the telescopic screw rod 316. A telescopic sleeve 319 is sleeved on the rotating motor 312 and the upper telescopic block 313.

[0035] It should be noted that, in the laser cutting mechanism 300, the cutting level adjustment motor 311 is started, the cutting level adjustment motor 311 drives the driving screw 308 to rotate, and the rotating driving screw 308 drives the driving block 307 to slide in the driving slot 306. While the driving block 307 slides, it drives the cutting movable sleeve 302 to move on the cutting mounting frame 301. The movable cutting movable sleeve 302 drives the upper telescopic block 313 and the lower telescopic rod 314 to move to the processing position of the electrical cabinet 102, and the laser cutting head 304 is used to cut the electrical cabinet 102. At the same time, the cutting angle adjustment motor 305 can adjust The angle of the laser cutting head 304 is adjusted to facilitate processing. The rotation motor 312 is used to drive the upper telescopic block 313 to rotate on the cutting movable sleeve 302, so that the device can process the other end of the electrical cabinet 102. The overall length adjustment of the upper telescopic block 313 and the lower telescopic rod 314 can be controlled by the telescopic motor 315. The telescopic motor 315 drives the telescopic screw rod 316 to rotate on the upper telescopic sleeve 317, so that the upper telescopic sleeve 317 and the lower connecting rod 318 are separated from each other to achieve a telescopic effect. At the same time, a telescopic jacket 319 is used to protect the upper telescopic block 313 and the lower telescopic rod 314.

[0036] In an optional embodiment: a bending connection block 700 is fixedly installed on the sliding bending plate 409, two bending transmission rods 701 are rotatably installed on the bending connection block 700, and the two bending transmission rods 701 are rotatably installed with the same bending drive plate 702 at one end away from the bending connection block 700, a bending drive motor 704 is fixedly installed on the first clamping plate 407, a bending drive screw 703 is fixedly installed on the output end of the bending drive motor 704, and the bending drive screw 703 is threadedly installed on the bending drive plate 702, and two sliding grooves 410 are provided on the sliding bending plate 409, and sliding blocks 411 are slidably installed in the two sliding grooves 410, and the two sliding blocks 411 are fixedly installed on the first clamping plate 407.

[0037] It should be noted that, when the bending drive motor 704 is started, the output end of the bending drive motor 704 drives the bending drive screw 703 to rotate, and the rotating bending drive screw 703 drives the bending drive plate 702 to move to a movable position. The movable bending drive plate 702 drives the bending connecting block 700 and the sliding bending plate 409 to slide on the first clamping plate 407 through the bending transmission rod 701. The sliding bending plate 409 is restricted by the sliding groove 410 and the sliding block 411 and can only move within a fixed range. The protruding part of the electrical cabinet 102 is bent by utilizing the movement of the sliding bending plate 409.

[0038] In an optional embodiment: the transport mechanism 500 includes a transport mounting frame 501, which is fixedly mounted on the conveying workbench 100, and a transport upper telescopic rod 502 is slidably mounted on the bottom side of the transport mounting frame 501, and a transport lower telescopic rod 503 is slidably mounted on the upper telescopic rod 502, and two movable splints 510 are slidably mounted on the bottom side of the lower telescopic rod 503, and a transport steering motor 508 is fixedly mounted on the top of the upper telescopic rod 502, and a transport driving slider 509 is slidably mounted on the bottom side of the transport mounting frame 501, and the output end of the transport steering motor 508 is connected to the bottom side of the transport driving slider 509, and a transport driving motor 511 is fixedly mounted on the transport mounting frame 501, and the output end of the transport driving motor 511 is threadedly mounted on the transport driving slider 509 The lower telescopic rod 503 for transport is fixedly installed with a transport lifting motor 505, and the output end of the transport lifting motor 505 is fixedly installed with a transport lifting gear 506, and the upper telescopic rod 502 for transport is fixedly installed with a transport lifting rack 507, and the transport lifting rack 507 is meshed with the transport lifting gear 506, and the upper telescopic rod 502 for transport and the lower telescopic rod 503 for transport are sleeved with a protective cover 504, and the lower telescopic rod 503 for transport is fixedly installed with a clamping motor 512, and the output end of the clamping motor 512 is fixedly installed with a clamping screw rod 513, and a clamping driven plate 514 is threadedly installed on the clamping screw rod 513, and two clamping transmission rods 515 are rotatably installed on the clamping driven plate 514, and the two clamping transmission rods 515 are rotatably installed on the two movable clamping plates 510 at one end away from the clamping driven plate 514.

[0039] It should be noted that the transport mechanism 500 is used to transfer the accessories 202 on the accessory conveying platform 200 to the electrical cabinet 102, and the transport drive motor 511 is used to drive the transport drive slider 509 to move, and drive the upper telescopic rod 502 and the lower telescopic rod 503 to move, so as to achieve the purpose of transporting the electrical cabinet 102. The degree of transporting the upper telescopic rod 502 and the lower telescopic rod 503 can be adjusted, and the transport lifting motor 505 is used to drive the transport lifting gear 506 to rotate on the transport lifting rack 507, so as to achieve the purpose of transporting the electrical cabinet 102. The distance between the upper telescopic rod 502 and the lower telescopic rod 503 is adjusted, and the clamping motor 512 is started. The output end of the clamping motor 512 drives the clamping screw 513 to rotate, and the rotating clamping screw 513 drives the clamping driven plate 514 to slide. The sliding clamping driven plate 514 drives the two movable clamps 510 to approach each other through the clamping transmission rod 515, thereby clamping the accessory 202. After transferring the accessory 202, the conveying mechanism 500 can fix the position of the accessory 202, thereby assisting the welding mechanism 600 in welding.

[0040] In an optional embodiment: the welding mechanism 600 includes a welding mounting frame 601, which is fixedly mounted on the conveying workbench 100, and a welding horizontal mounting frame 602 is slidably mounted on the bottom side of the welding mounting frame 601, and a welding steering block 604 is slidably mounted on the bottom side of the welding horizontal mounting frame 602, and a welding horizontal drive motor 603 is fixedly mounted on the welding mounting frame 601, and the welding horizontal drive motor 603 is adapted to the welding horizontal mounting frame 602, and a welding displacement motor 608 is fixedly mounted on the welding horizontal mounting frame 602, and the welding displacement motor 608 is adapted to the welding steering block 604, and a welding telescopic rod 605 is rotatably mounted on the bottom side of the welding steering block 604, and a welding angle motor 606 is fixedly mounted on the welding telescopic rod 605, and a welding head 607 is fixedly mounted on the output end of the welding angle motor 606, and a welding steering motor 609 is fixedly mounted on the welding steering block 604, and the output end of the welding steering motor 609 is connected to the welding telescopic rod 605.

[0041] It should be noted that in the welding mechanism 600, the welding horizontal drive motor 603 is started to drive the welding horizontal mounting frame 602 to slide on the welding mounting frame 601, and the welding displacement motor 608 is started to drive the welding steering block 604 to slide on the welding horizontal mounting frame 602. The welding steering motor 609 is used in the welding steering block 604 to drive the welding telescopic rod 605 to rotate, thereby adjusting the direction of the welding head 607 to facilitate the processing of different positions of the electrical cabinet 102. The welding angle motor 606 is used to adjust the angle of the welding head 607 to achieve processing in different directions. The welding telescopic rod 605 can adjust the distance.

[0042] In an optional embodiment: the welding telescopic rod 605 includes a welding upper telescopic rod 800 and a welding lower telescopic rod 801, the welding upper telescopic rod 800 is rotatably installed on the bottom side of the welding steering block 604, the welding lower telescopic rod 801 is slidably installed on the welding upper telescopic rod 800, and a welding telescopic motor 803 is fixedly installed on the welding lower telescopic rod 801, and a welding telescopic gear 804 is fixedly installed on the output end of the welding telescopic motor 803, and a welding telescopic rack 802 is fixedly installed on the welding upper telescopic rod 800, and the welding telescopic gear 804 is meshed with the welding telescopic rack 802.

[0043] It should be noted that starting the welding telescopic motor 803 drives the welding telescopic gear 804 to rotate on the welding telescopic rack 802, so as to realize the mutual distance or proximity between the welding upper telescopic rod 800 and the welding lower telescopic rod 801, and the adjustment of the length of the welding telescopic rod 605, so that the welding head 607 can fully weld the electrical cabinet 102 and the accessories 202 together, thereby realizing the processing of the electrical cabinet.

[0044] Working principle of the present invention:

[0045] When using the device, the Internet of Things controller 103 is used to control the operation of each part on the conveying workbench 100. First, it is necessary to start the conveying point 101 on the conveying workbench 100 and convey the electrical cabinet 102 to the laser cutting mechanism 300 part. In the laser cutting mechanism 300 part, start the cutting level adjustment motor 311, and the cutting level adjustment motor 311 drives the driving screw 308 to rotate. The rotating driving screw 308 drives the driving block 307 to slide in the driving groove 306. While the driving block 307 slides, it drives the cutting movable sleeve 302 to move on the cutting mounting frame 301. The movable cutting movable sleeve 302 drives the upper telescopic block The upper telescopic block 313 and the lower telescopic rod 314 are moved to the processing position of the electrical cabinet 102, and the laser cutting head 304 is used to cut the electrical cabinet 102. At the same time, the cutting angle adjustment motor 305 can adjust the angle of the laser cutting head 304, thereby facilitating processing. The upper telescopic block 313 is driven by the rotation motor 312 to rotate on the cutting movable sleeve 302, so that the device can process the other end of the electrical cabinet 102. The overall length adjustment of the upper telescopic block 313 and the lower telescopic rod 314 can be controlled by the telescopic motor 315. The telescopic motor 315 drives the telescopic screw rod 316 to rotate on the upper telescopic sleeve 317, so that the upper telescopic sleeve 317 is 7 and the lower connecting rod 318 are away from each other to achieve a telescopic effect. At the same time, a telescopic cover 319 is used to protect the upper telescopic block 313 and the lower telescopic rod 314. In the bending mechanism 400, a height adjustment motor 412 is used to drive the height adjustment screw rod 413 to rotate on the bending lifting sleeve 403 to adjust the height of the bending lifting sleeve 403. The horizontal adjustment motor 404 can be used to drive the bending movable sleeve 402 to move. The horizontal adjustment motor 404 is used to drive the clamping base plate 406 to rotate on the bottom side of the base plate 405 to realize the processing of different positions of the electrical cabinet 102 by the device. The clamping positioning motor 415 is used to drive the first The clamping plate 407 and the second clamping plate 408 clamp the electrical cabinet 102, and then the bending drive motor 704 is started. The output end of the bending drive motor 704 drives the bending drive screw 703 to rotate. The rotating bending drive screw 703 drives the bending drive plate 702 to move to a movable position. The movable bending drive plate 702 drives the bending connecting block 700 and the sliding bending plate 409 to slide on the first clamping plate 407 through the bending transmission rod 701. The sliding bending plate 409 is restricted by the sliding groove 410 and the sliding block 411 and can only move within a fixed range. The movement of the sliding bending plate 409 is used to bend the protruding part of the electrical cabinet 102.

[0046] In the transport mechanism 500 and the welding mechanism 600, the transport mechanism 500 is used to transfer the accessory 202 on the accessory conveying platform 200 to the electrical cabinet 102, and the transport drive motor 511 is used to drive the transport drive slider 509 to move, and drive the upper telescopic rod 502 and the lower telescopic rod 503 to move, so as to achieve the purpose of transporting the electrical cabinet 102. The degree of transporting the upper telescopic rod 502 and the lower telescopic rod 503 can be adjusted, and the transport lifting motor 505 is used to drive the transport lifting gear 50 6 The distance between the upper telescopic rod 502 and the lower telescopic rod 503 can be adjusted by rotating the transport lifting rack 507. The clamping motor 512 is started. The output end of the clamping motor 512 drives the clamping screw 513 to rotate. The rotating clamping screw 513 drives the clamping driven plate 514 to slide. The sliding clamping driven plate 514 drives the two movable clamping plates 510 to move closer to each other through the clamping transmission rod 515, thereby clamping the accessory 202. After transferring the accessory 202, the transport mechanism 500 can fix the accessory 202. 02 position, thereby assisting the welding mechanism 600 to weld, in the welding mechanism 600 part, start the welding horizontal drive motor 603 to drive the welding horizontal mounting frame 602 to slide on the welding mounting frame 601, start the welding displacement motor 608 to drive the welding steering block 604 to slide on the welding horizontal mounting frame 602, and use the welding steering motor 609 in the welding steering block 604 to drive the welding telescopic rod 605 to rotate, thereby adjusting the direction of the welding head 607, which is convenient for processing different positions of the electrical cabinet 102, and using the welding angle motor 606 to adjust the angle of the welding head 607 to achieve processing in different directions. The welding telescopic rod 605 can adjust the distance, start the welding telescopic motor 803 to drive the welding telescopic gear 804 to rotate on the welding telescopic rack 802, so that the welding telescopic rod 800 and the welding lower telescopic rod 801 can move away from or close to each other, and the length of the welding telescopic rod 605 can be adjusted, so that the welding head 607 can fully weld the electrical cabinet 102 and the accessories 202 together, thereby achieving the processing of the electrical cabinet.

[0047] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.

Claims

1. An electrical cabinet body processing system based on the Internet of Things, comprising a conveying workbench (100) and an accessory conveying table (200), characterized in that: The conveying workbench (100) is equipped with a conveying point (101) and an Internet of Things controller (103), an electrical cabinet (102) is placed on the conveying point (101), an accessory conveyor belt (201) is installed on the accessory conveyor (200), and accessories (202) are placed on the accessory conveyor belt (201), and a laser cutting mechanism (300), a bending mechanism (400), a transport mechanism (500), and a welding mechanism (600) are fixedly installed on the conveying workbench (100), the laser cutting mechanism (300) includes a cutting mounting frame (301), the cutting mounting frame (301) is fixedly installed on the conveying workbench (100), and the cutting mounting frame (301) is fixedly installed on the conveying workbench (100). ) is slidably mounted on the inner wall of the bottom side of the cutting movable sleeve (302), a cutting telescopic arm (303) is rotatably mounted on the bottom side of the cutting movable sleeve (302), the cutting telescopic arm (303) comprises an upper telescopic block (313) and a lower telescopic rod (314), the lower telescopic rod (314) is mounted on the bottom side of the upper telescopic block (313), a cutting angle adjustment motor (305) is fixedly mounted on the lower telescopic rod (314), a laser cutting head (304) is fixedly mounted on the output end of the cutting angle adjustment motor (305), a cutting level adjustment motor (311) is fixedly mounted on the cutting mounting frame (301), and the cutting level adjustment motor (311) is adapted to the cutting mounting frame (301); The bending mechanism (400) includes a bending mounting frame (401), the bending mounting frame (401) is fixedly mounted on the conveying workbench (100), a bending movable sleeve (402) is slidably mounted on the inner wall of the bottom side of the bending mounting frame (401), a bending lifting sleeve (403) is slidably mounted on the bending movable sleeve (402), a bottom plate (405) is fixedly mounted on the bottom side of the bending lifting sleeve (403), a clamping bottom plate (406) is rotatably mounted on the bottom side of the bottom plate (405), and the bottom of the clamping bottom plate (406) is fixedly mounted on the bottom side of the bottom plate (405). Two groups of first clamping plates (407) and second clamping plates (408) are installed in a side sliding manner, and a sliding bending plate (409) is slidably installed on each of the two first clamping plates (407). A horizontal adjustment motor (404) is fixedly installed on the bending mounting frame (401), and the horizontal adjustment motor (404) is adapted to the bending movable sleeve (402). A clamping positioning motor (415) is fixedly installed on the clamping base plate (406), and the clamping positioning motor (415) is adapted to the first clamping plate (407) and the second clamping plate (408).

2. The electrical cabinet body processing system based on the Internet of Things according to claim 1 is characterized in that: A driving groove (306) is provided on the inner wall of the bottom side of the cutting mounting frame (301), a driving block (307) is slidably installed in the driving groove (306), a driving screw (308) is threadedly installed on the driving block (307), and the driving screw (308) is connected to the output end of the cutting level adjustment motor (311), and two positioning slides (309) are provided on the bottom side of the cutting mounting frame (301), and positioning sliders (310) are slidably installed in the two positioning slides (309), and the two positioning sliders (310) are respectively fixedly installed on the cutting movable sleeve (302).

3. The electrical cabinet body processing system based on the Internet of Things according to claim 1 is characterized in that: A self-rotating motor (312) is fixedly mounted on the upper telescopic block (313), and an output end of the self-rotating motor (312) is connected to the cutting movable sleeve (302). An upper telescopic sleeve (317) is fixedly mounted on the bottom side of the upper telescopic block (313). A lower connecting rod (318) is fixedly mounted on the lower telescopic rod (314), and the lower connecting rod (318) is slidably mounted on the upper telescopic sleeve (317). A telescopic motor (315) is fixedly mounted on the lower telescopic rod (314), and an output end of the telescopic motor (315) is fixedly mounted on the telescopic screw rod (316). A telescopic outer sleeve (319) is sleeved on the self-rotating motor (312) and the upper telescopic block (313).

4. The electrical cabinet body processing system based on the Internet of Things according to claim 1, characterized in that: A height adjustment motor (412) is installed at the top of the bending mounting frame (401), a height adjustment screw rod (413) is fixedly installed at the output end of the height adjustment motor (412), the height adjustment screw rod (413) is threadedly installed on the bending lifting sleeve (403), a bending steering motor (414) is fixedly installed on the bottom plate (405), and the output end of the bending steering motor (414) is fixedly installed on the clamping bottom plate (406).

5. The electrical cabinet body processing system based on the Internet of Things according to claim 1, characterized in that: A bending connection block (700) is fixedly mounted on the sliding bending plate (409), two bending transmission rods (701) are rotatably mounted on the bending connection block (700), and one end of the two bending transmission rods (701) away from the bending connection block (700) is rotatably mounted with the same bending drive plate (702), a bending drive motor (704) is fixedly mounted on the first clamping plate (407), a bending drive screw (703) is fixedly mounted on the output end of the bending drive motor (704), and the bending drive screw (703) is threadedly mounted on the bending drive plate (702), and two sliding grooves (410) are provided on the sliding bending plate (409), and sliding blocks (411) are slidably mounted in the two sliding grooves (410), and the two sliding blocks (411) are fixedly mounted on the first clamping plate (407).

6. The electrical cabinet body processing system based on the Internet of Things according to claim 1, characterized in that: The transport mechanism (500) comprises a transport mounting frame (501), the transport mounting frame (501) is fixedly mounted on the conveying workbench (100), an upper transport telescopic rod (502) is slidably mounted on the bottom side of the transport mounting frame (501), a lower transport telescopic rod (503) is slidably mounted on the upper transport telescopic rod (502), two movable splints (510) are slidably mounted on the bottom side of the lower transport telescopic rod (503), a transport steering motor (508) is fixedly mounted on the top end of the upper transport telescopic rod (502), a transport driving slider (509) is slidably mounted on the bottom side of the transport mounting frame (501), and the output end of the transport steering motor (508) is connected to the transport driving slider. A transport drive motor (511) is fixedly mounted on the bottom side of the slider (509) and the transport mounting frame (501). The output end of the transport drive motor (511) is threadedly mounted on the transport drive slider (509). A transport lifting motor (505) is fixedly mounted on the transport lower telescopic rod (503). A transport lifting gear (506) is fixedly mounted on the output end of the transport lifting motor (505). A transport lifting rack (507) is fixedly mounted on the transport upper telescopic rod (502). The transport lifting rack (507) and the transport lifting gear (506) are meshed. A protective cover (504) is sleeved on the transport upper telescopic rod (502) and the transport lower telescopic rod (503).

7. The electrical cabinet body processing system based on the Internet of Things according to claim 6, characterized in that: A clamping motor (512) is fixedly installed in the lower telescopic rod (503) for transporting, a clamping screw (513) is fixedly installed on the output end of the clamping motor (512), a clamping driven plate (514) is threadedly installed on the clamping screw (513), two clamping transmission rods (515) are rotatably installed on the clamping driven plate (514), and the ends of the two clamping transmission rods (515) away from the clamping driven plate (514) are rotatably installed on the two movable clamping plates (510).

8. The electrical cabinet body processing system based on the Internet of Things according to claim 1, characterized in that: The welding mechanism (600) comprises a welding mounting frame (601), the welding mounting frame (601) is fixedly mounted on the conveying workbench (100), a welding horizontal mounting frame (602) is slidably mounted on the bottom side of the welding mounting frame (601), a welding steering block (604) is slidably mounted on the bottom side of the welding horizontal mounting frame (602), a welding horizontal drive motor (603) is fixedly mounted on the welding mounting frame (601), the welding horizontal drive motor (603) is adapted to the welding horizontal mounting frame (602), and the welding horizontal mounting frame (602) is mounted on the welding horizontal mounting frame (602). A welding displacement motor (608) is fixedly installed, and the welding displacement motor (608) is adapted to the welding steering block (604). A welding telescopic rod (605) is rotatably installed on the bottom side of the welding steering block (604). A welding angle motor (606) is fixedly installed on the welding telescopic rod (605). A welding head (607) is fixedly installed on the output end of the welding angle motor (606). A welding steering motor (609) is fixedly installed on the welding steering block (604), and the output end of the welding steering motor (609) is connected to the welding telescopic rod (605).

9. The electrical cabinet body processing system based on the Internet of Things according to claim 8, characterized in that: The welding telescopic rod (605) comprises a welding upper telescopic rod (800) and a welding lower telescopic rod (801). The welding upper telescopic rod (800) is rotatably mounted on the bottom side of the welding steering block (604). The welding lower telescopic rod (801) is slidably mounted on the welding upper telescopic rod (800). A welding telescopic motor (803) is fixedly mounted on the welding lower telescopic rod (801). A welding telescopic gear (804) is fixedly mounted on the output end of the welding telescopic motor (803). A welding telescopic rack (802) is fixedly mounted on the welding upper telescopic rod (800). The welding telescopic gear (804) is meshed with the welding telescopic rack (802).

Citation Information

Patent Citations

  • Special-shaped metal plate bending processing device

    CN116099907A

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    CN212977657U