A partition continuous welding device for a distribution cabinet

By designing a continuous welding device for the partitions of the distribution cabinet and using components such as the support frame, control frame and electromagnet assembly, automatic positioning and continuous welding of the partitions are achieved, solving the problem that traditional equipment cannot adapt to the unstable position of the partitions, improving the welding accuracy and firmness, and ensuring production consistency.

CN120347438BActive Publication Date: 2025-10-03天津仁爱学院
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Patent Information

Application Number
CN202510851653.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-24
Publication Date
2025-10-03
Estimated Expiration
2045-06-24

AI Technical Summary

Technical Problem

In the existing distribution cabinet partition welding process, the welding accuracy and firmness depend on the experience of the welders. Traditional automatic welding equipment cannot adapt to the situation where the partition position is not fixed, resulting in inconsistent production results.

Method used

A continuous welding device for partitions of distribution cabinets was designed. The automatic positioning and continuous welding of partitions were achieved by using components such as a support frame, a control frame, a motor, a drive screw and an electromagnet assembly. The precise welding of partitions in the distribution cabinet was ensured through the cooperation of conveyor belt transmission, electromagnet adsorption and welding frame.

Benefits of technology

It achieves precise welding of partitions in the distribution cabinet, improves welding accuracy and firmness, reduces manual intervention, and ensures the uniformity and consistency of production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of welding technology, and specifically to a continuous welding device for partitions of a distribution cabinet, comprising a support frame, a first motor, and a distribution cabinet, wherein the surface of the support frame is fixedly connected to a support leg, the output end of the first motor is provided with a transmission wheel, and the outer surface of the transmission wheel is sleeved with a conveyor belt. The present invention completes the placement operation of the partition in the control frame through the action of a telescopic cylinder, and realizes the welding effect of the partition in the distribution cabinet through the connection of a third motor and a third driving screw, and under the connection of the third driving screw and a moving block, the connection of the moving block and the welding frame, thereby achieving the effect of automatic welding. Through the connection of a connecting rod and an electromagnet assembly, the electromagnet assembly and the partition are adsorbed, so that when the distribution cabinet changes with the position of the conveyor belt, the partition changes synchronously with the position of the distribution cabinet, and the use of the welding frame and the placement box is coordinated to achieve the continuous welding effect of the partition in the distribution cabinet.
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Description

Technical Field

[0001] The invention relates to the technical field of welding, in particular to a partition continuous welding device for a power distribution cabinet. Background Art

[0002] Welding, also known as fusion, is a manufacturing process and technology that joins metals or other thermoplastic materials such as plastics by heating, high temperature or high pressure.

[0003] During the production process of the distribution cabinet, the partitions inside it are connected to the distribution cabinet by welding. However, the existing welding operation between the distribution cabinet and the partitions is often done manually. Due to the welding experience of the welders, the welding accuracy and firmness of the partitions vary greatly, affecting the overall production effect of the distribution cabinet. Traditional automatic welding equipment can only automatically weld fixed objects. The partitions in the distribution cabinet are not fixed in position before welding. Therefore, traditional automatic welding equipment cannot be used. Summary of the Invention

[0004] The purpose of the present invention is to provide a continuous welding device for partitions of a distribution cabinet to solve the problem raised in the above background technology that the welding accuracy and firmness of the partitions vary greatly due to the welding experience of the welding personnel, which affects the overall production effect of the distribution cabinet. Traditional automatic welding equipment can only automatically weld fixed objects. The partitions in the distribution cabinet are not fixed in position before welding, so traditional automatic welding equipment cannot be used.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a continuous welding device for partitions of a distribution cabinet, comprising a support frame, a first motor and a distribution cabinet, the surface of the support frame is fixedly connected to a support leg, the output end of the first motor is provided with a transmission wheel, the outer surface of the transmission wheel is sleeved with a conveyor belt, the surface of the support frame is movably connected to a rotating column, the distribution cabinet is placed on the surface of the conveyor belt, a partition is welded inside the distribution cabinet, the surface of the support frame is fixedly connected to a control frame, the surface of the control frame is provided with a first adjusting slot and a second adjusting slot, the interior of the first adjusting slot is movably connected to a first driving screw, the interior of the second adjusting slot is movably connected to a second driving screw, the surface of the control frame is provided with a groove, and the second motor is connected to the groove by bolts, the surface of the control frame is connected to a protective cover by bolts, the outer surface of the first driving screw is sleeved with a slider, and the surface of the slider is fixedly connected to The gear train is connected with the gear shift knob, and the gear shift knob is connected with the gear shift knob on the internal surface of the gear shift knob, and the gear shift knob is connected with the gear shift knob on the internal surface of the gear shift knob.

[0006] Preferably, the conveyor belt is rotatably connected to the support frame through a first motor and a transmission wheel, the rotating columns are evenly distributed on the surface of the support frame, and the power distribution cabinet is slidably connected to the support frame through the conveyor belt.

[0007] Preferably, the first drive screw is rotatably connected to the first adjustment slot via a second motor, the second drive screw is rotatably connected to the second adjustment slot via a second motor, and the slider is slidably connected to the first drive screw and the first adjustment slot.

[0008] Preferably, an adjustment plate is sleeved on the outer surface of the second driving screw, and the adjustment plate is slidably connected to the second adjustment slot through the second motor and the second driving screw. The surface of the adjustment plate is fixedly connected to a placement box, and the partition is placed inside the placement box. The outer surface of the placement box is fixedly connected to a telescopic cylinder. A through slot is provided on the side of the placement box away from the telescopic cylinder, and the through slot passes through the surface of the adjustment plate, and the surface of the connecting part of the placement box and the through slot is connected to a clamping plate through a torsion spring.

[0009] Preferably, the placement box is slidably connected through an adjustment plate and a control frame, the placement box acts above the conveyor belt through the adjustment plate and the control frame, the card plate and the partition surface are in contact, and the through groove size on the surface of the placement box is larger than the size of the partition.

[0010] Preferably, the regulating plate is fixedly connected through a support column and a slider, and the movable groove is formed in two groups and is opened through the surface of the regulating plate. A third motor is fixedly connected to the same surface where the regulating plate and the support column are connected, and the output shaft of the third motor is fixedly connected to a third driving screw, and the third driving screw is movably connected to the inside of the movable groove, and the movable block is slidingly connected to the third driving screw through a thread.

[0011] Preferably, the third drive screws are distributed in two groups inside the movable groove, the outer surface of the third drive screw is fixedly connected with a gear, and the outer surface of the gear is sleeved with a first toothed belt, and the two groups of the third drive screws are connected in synchronous rotation through the gear and the first toothed belt.

[0012] Preferably, the outer surface of the welding frame is sleeved with a connecting sleeve, the surface of the connecting sleeve is penetrated and connected with a push rod, the opposite surface where the connecting sleeve and the push rod are in contact is fixedly connected with a fixed plate, the surface of the fixed plate is fixedly connected with a tension spring, the welding frame is in two groups and connected correspondingly to the moving block, the connecting sleeve is in two groups and connected correspondingly to the welding frame, the push rod penetrates the surface of the connecting sleeve through a thread and is in contact with the outer surface of the welding frame, and the two groups of connecting sleeves are elastically connected via a fixed plate and a tension spring.

[0013] Preferably, the driving gear and the driven gear rotate synchronously via a second toothed belt, the electromagnet assembly slides on the support frame via a connecting rod and the second toothed belt, and the electromagnet assembly is connected to the partition by magnetic adsorption.

[0014] Preferably, the first gear and the third gear rotate synchronously through the third toothed belt, the rotating column drives the third gear to rotate through the first gear and the third toothed belt, the fourth gear is meshed and rotatably connected with the second gear, the surface of the support frame is connected to the fixing frame by bolts, the surface of the fixing frame is connected to the correction plate, the surface of the correction plate is fixedly connected to the support spring, the correction plate is elastically connected to the fixing frame through the support spring, the fixing frames are distributed in two opposite groups on the surface of the support frame, and the two groups of fixing frames are distributed on both sides of the conveyor belt through the support frame.

[0015] Compared with the prior art, the present invention has the following beneficial effects:

[0016] 1. Through the connection between the support frame and the control frame, under the action of the first adjustment slot and the second adjustment slot, through the connection between the second motor and the first drive screw, and the connection between the second motor and the second drive screw, the control effect of the control plate and the action position of the adjustment plate is realized. Under the connection between the adjustment plate and the placement box, the placement of the partition is convenient. Through the action of the telescopic cylinder, the placement operation of the partition in the control frame is completed. Through the connection between the third motor and the third drive screw, under the connection between the third drive screw and the moving block, and the connection between the moving block and the welding frame, the welding effect of the partition in the distribution cabinet is realized, and the effect of automatic welding is achieved. Under the connection between the connecting sleeve and the fixed plate, through the connection between the fixed plate and the tension spring, the welding end of the welding frame is tightly abutted against the welding position of the partition in the distribution cabinet, thereby improving the welding performance and effect.

[0017] 2. Through the connection between the control board and the control slot, under the action of the driving gear and the driven gear, the driving gear rotates to realize the rotation effect of the second toothed belt in the control slot. When the conveyor belt rotates, the rotating column drives the first gear to rotate, and the connection between the first gear and the third toothed belt drives the rotation of the third gear and the second gear. Under the connection of the second gear and the fourth gear, the rotation driving effect of the driving gear is realized. Under the connection of the second toothed belt and the connecting rod, the electromagnet assembly is connected through the connection of the connecting rod and the electromagnet assembly. The electromagnet assembly and the partition are adsorbed, so that when the distribution cabinet changes with the position of the conveyor belt, the partition changes synchronously with the position of the distribution cabinet. With the use of the welding rack and the placement box, the continuous welding effect of the partition in the distribution cabinet is achieved. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic front perspective view of the structure of the present invention;

[0019] Figure 2 It is a schematic diagram of a rear perspective view of the structure of the present invention;

[0020] Figure 3 It is a partially cutaway perspective schematic diagram of the structure of the present invention;

[0021] Figure 4 It is a partially cutaway perspective schematic diagram of the structure of the control frame of the present invention;

[0022] Figure 5 For the present invention Figure 4 A three-dimensional schematic diagram of the structure of the middle adjustment plate;

[0023] Figure 6 For the present invention Figure 4 A partially cutaway perspective diagram of the structure of the central control panel;

[0024] Figure 7 It is a partially cutaway perspective schematic diagram of the structure of the support frame of the present invention;

[0025] Figure 8For the present invention Figure 6 Schematic diagram of the enlarged structure at A in the middle;

[0026] Figure 9 For the present invention Figure 7 A schematic diagram of the cross-section of the structure of the central control panel;

[0027] Figure 10 For the present invention Figure 9 Schematic diagram of the connection structure of the first gear and the third toothed belt from the back.

[0028] In the figure: 1. Support frame; 11. First motor; 12. Drive wheel; 13. Rotating column; 2. Support leg; 3. Conveyor belt; 4. Power distribution cabinet; 41. Partition; 5. Control frame; 51. First adjustment slot; 52. Second adjustment slot; 53. Protective cover; 54. Second motor; 55. First drive screw; 56. Second drive screw; 6. Adjustment plate; 61. Placement box; 62. Telescopic cylinder; 63. Card; 7. Control plate; 71. Moving slot; 72. Slider; 73. Third motor; 74. Welding frame; 75. Support column ;76. Third drive screw;77. Moving block;78. First toothed belt;79. Connecting sleeve;710. Push rod;711. Fixed plate;712. Tension spring;8. Control plate;81. Second toothed belt;82. Connecting rod;83. Electromagnet assembly;84. Control slot;85. Driving gear;86. Driven gear;87. Connecting column;88. First gear;89. Third toothed belt;810. Second gear;811. Third gear;812. Fourth gear;9. Fixed frame;91. Correction plate;92. Support spring. DETAILED DESCRIPTION

[0029] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0030] See also Figure 1-10 , an embodiment provided by the present invention:

[0031] A continuous welding device for partitions of a power distribution cabinet comprises a support frame 1, a first motor 11 and a power distribution cabinet 4. The surface of the support frame 1 is fixedly connected to a support leg 2. The output end of the first motor 11 is provided with a transmission wheel 12. The outer surface of the transmission wheel 12 is sleeved with a conveyor belt 3. The surface of the support frame 1 is movably connected to a rotating column 13. The power distribution cabinet 4 is placed on the surface of the conveyor belt 3. The conveyor belt 3 and the first motor 11 are driven by a position sensor to control the rotation position of the conveyor belt 3. A partition 41 is welded inside the power distribution cabinet 4. The surface of the support frame 1 is fixedly connected to a control frame 5. The surface of the control frame 5 is provided with a first adjustment slot 51 and a second adjustment slot 52. The first adjustment slot 51 is movably connected to a first drive screw 55. The second adjustment slot 5 2 is movably connected to the second drive screw 56, the surface of the control frame 5 is provided with a groove, and the second motor 54 is connected to the groove by bolts, the surface of the control frame 5 is connected to the protective cover 53 by bolts, the outer surface of the first drive screw 55 is sleeved with a slider 72, the surface of the slider 72 is fixedly connected to the support column 75, the surface of the support column 75 is fixedly connected to the regulating plate 7, the surface of the regulating plate 7 is provided with a moving groove 71, the interior of the moving groove 71 is slidably connected to a moving block 77, the surface of the moving block 77 is fixedly connected to a welding frame 74, the surface of the support frame 1 is fixedly connected to the control plate 8, the surface of the control plate 8 is provided with a control groove 84, the interior of the control groove 84 is movably connected to a driven gear 86 and a driving gear 85, the driven gear 86 The outer surface of the driving gear 85 is sleeved with a second toothed belt 81, the surface of the rotating column 13 is fixedly connected to a connecting column 87, the surface of the connecting column 87 is fixedly connected to a first gear 88, the outer surface of the first gear 88 is sleeved with a third toothed belt 89, the interior of the control slot 84 is movably connected to a second gear 810, the surface of the second gear 810 is fixedly connected to a third gear 811, the surface of the driving gear 85 is fixedly connected to a fourth gear 812, the inner surface of the second toothed belt 81 is fixedly connected to a connecting rod 82, and the end of the connecting rod 82 away from the second toothed belt 81 is fixedly connected to an electromagnet assembly 83, through the connection between the support frame 1 and the support leg 2, under the action of the support leg 2, the support effect of the support frame 1 is achieved, through the control frame 5 and The connection of the first adjustment slot 51, the connection of the control frame 5 and the second adjustment slot 52, under the action of the second motor 54, achieves the effect of regulating the working position of the control plate 7 and the adjustment plate 6. The second motor 54, the first motor 11, the telescopic cylinder 62, the third motor 73 and the electromagnet assembly 83 are all existing products, and their principles are all existing technologies, so no further explanation is given here. The second motor 54, the first motor 11, the telescopic cylinder 62, the third motor 73 and the electromagnet assembly 83 are electrically connected through the controller to achieve the effect of precise control. The controller is an existing product, so no further explanation is given here. Under the connection of the first drive screw 55 and the slider 72, the effect of regulating the working position of the control plate 7 above the conveyor belt 3 is achieved.

[0032] Furthermore, the conveyor belt 3 is rotatably connected to the support frame 1 through the first motor 11 and the transmission wheel 12, the rotating columns 13 are evenly distributed on the surface of the support frame 1, and the distribution cabinet 4 is slidingly connected to the support frame 1 through the conveyor belt 3. Through the connection between the first motor 11 and the transmission wheel 12, under the action of the first motor 11, the rotation control effect of the conveyor belt 3 is realized, and through the action of the conveyor belt 3, the welding transportation effect of the distribution cabinet 4 is achieved.

[0033] Furthermore, the first drive screw 55 is rotationally connected to the first adjusting slot 51 through the second motor 54, the second drive screw 56 is rotationally connected to the second motor 54 and the second adjusting slot 52, and the slider 72 is slidingly connected to the first drive screw 55 and the first adjusting slot 51. Through the connection between the control frame 5 and the first adjusting slot 51, the connection between the control frame 5 and the second adjusting slot 52, under the connection between the second motor 54 and the first drive screw 55, and the connection between the second motor 54 and the second drive screw 56, the control effect of the control plate 7 and the control plate 6 on the action position above the conveyor belt 3 is achieved. Through the connection between the slider 72 and the first drive screw 55, under the rotation of the first drive screw 55, the control effect of the action position of the slider 72 in the first adjusting slot 51 is achieved.

[0034] Furthermore, the outer surface of the second driving screw 56 is sleeved with an adjusting plate 6, and the adjusting plate 6 is slidingly connected to the second adjusting slot 52 through the second motor 54 and the second driving screw 56. The surface of the adjusting plate 6 is fixedly connected to a placement box 61, and the partition 41 is placed inside the placement box 61. The outer surface of the placement box 61 is fixedly connected to a telescopic cylinder 62. A through groove is provided on the side of the placement box 61 away from the telescopic cylinder 62, and the through groove passes through the surface of the adjusting plate 6. The surface of the connection part of the placement box 61 and the through groove is connected with a clamping plate 63 through a torsion spring. Through the connection of the second driving screw 56 and the adjusting plate 6, under the rotation of the second driving screw 56, the effect of regulating the action position of the adjusting plate 6 on the control frame 5 is realized. Under the connection of the placement box 61 and the telescopic cylinder 62, under the action of the telescopic cylinder 62, the regulation operation of the action position of the partition 41 in the placement box 61 is facilitated.

[0035] Furthermore, the placement box 61 is slidably connected to the control frame 5 through the adjustment plate 6 and the control frame 5. The placement box 61 acts on the top of the conveyor belt 3 through the adjustment plate 6 and the control frame 5. The card plate 63 and the surface of the partition 41 are in contact with each other. The size of the through groove on the surface of the placement box 61 is larger than the size of the partition 41. Through the connection between the placement box 61 and the card plate 63, under the action of the card plate 63, the partition 41 in the placement box 61 is blocked. Under the action of the telescopic cylinder 62, the partition 41 can be discharged through the through groove in the placement box 61 through the position of the partition 41 in the placement box 61, so that the partition 41 is placed in the distribution cabinet 4 at the corresponding position.

[0036] Furthermore, the regulating plate 7 is fixedly connected by the support column 75 and the slider 72, and the movable groove 71 is formed in two groups and penetrates through the surface of the regulating plate 7. The third motor 73 is fixedly connected to the same surface where the regulating plate 7 and the support column 75 are connected. The output shaft of the third motor 73 is fixedly connected to the third driving screw 76. The third driving screw 76 is movably connected to the inside of the movable groove 71. The movable block 77 is slidingly connected to the third driving screw 76 through a thread. Through the connection between the regulating plate 7 and the movable groove 71, under the connection between the third motor 73 and the third driving screw 76, the third driving screw 76 and the movable block 77 are connected to achieve the regulating effect of the action position of the welding frame 74 on the regulating plate 7.

[0037] Furthermore, the third drive screws 76 are distributed in two groups corresponding to each other inside the movable groove 71. The outer surface of the third drive screw 76 is fixedly connected to a gear, and the outer surface of the gear is sleeved with a first toothed belt 78. The two groups of third drive screws 76 are connected to rotate synchronously through the gear and the first toothed belt 78. Through the connection between the third drive screw 76 and the gear, under the connection between the gear and the first toothed belt 78, the synchronous rotation between the third drive screws 76 is achieved, so that the position of the welding frame 74 on the control plate 7 is synchronously adjusted, thereby achieving the effect of welding the partition 41 in the distribution cabinet 4.

[0038] When the locking cam 711 is unlocked, the locking cam 712 is unlocked, and the winch 70 is unlocked, so that the winch 70 can be unlocked.

[0039] Furthermore, the driving gear 85 and the driven gear 86 rotate synchronously through the second toothed belt 81, and the electromagnet assembly 83 slides on the support frame 1 through the connecting rod 82 and the second toothed belt 81. The electromagnet assembly 83 is magnetically adsorbed and connected to the partition 41. The electromagnet assembly 83 consists of two core components: a conductive coil and an iron core. When the coil is energized, a magnetic field is generated. After the iron core is magnetized, the overall magnetism is enhanced. Through the connection between the rotating column 13 and the connecting column 87, when the conveyor belt 3 rotates, the rotating column 13 drives the first gear 88 to rotate. Under the connection between the first gear 88 and the third toothed belt 89, the third toothed belt 89 and the third The connection of gear 811 drives the second gear 810 to rotate. Under the connection of the second gear 810 and the fourth gear 812, the driving gear 85 is rotated. Under the action of the driving gear 85, the second toothed belt 81 is rotated. Through the connection between the second toothed belt 81 and the connecting rod 82, and the connection between the connecting rod 82 and the electromagnet assembly 83, under the magnetic attraction of the electromagnet assembly 83 and the partition 41, the partition 41 is supported at an angle in the distribution cabinet 4, and the partition 41 is ensured to move as the position of the distribution cabinet 4 moves, thereby achieving a continuous welding effect, reducing manual intervention, and ensuring the uniformity of welding accuracy.

[0040] Furthermore, the first gear 88 and the third gear 811 rotate synchronously through the third toothed belt 89, the rotating column 13 drives the third gear 811 to rotate through the first gear 88 and the third toothed belt 89, the fourth gear 812 and the second gear 810 are meshed and rotated, the surface of the support frame 1 is connected to the fixing frame 9 by bolts, the surface of the fixing frame 9 is connected to the correction plate 91, the surface of the correction plate 91 is fixedly connected to the support spring 92, the correction plate 91 is elastically connected to the fixing frame 9 through the support spring 92, the fixing frames 9 are distributed in two opposite groups on the surface of the support frame 1, the two groups of fixing frames 9 are distributed on both sides of the conveyor belt 3 through the support frame 1, through the connection of the fixing frame 9 and the correction plate 91, under the connection of the correction plate 91 and the support spring 92, the correction effect of the transportation position of the distribution cabinet 4 on the conveyor belt 3 is achieved.

[0041] Working principle: When welding the partition 41, multiple groups of partitions 41 are placed in the placement box 61. During welding, the controller controls the start-up of the second motor 54 and the first motor 11 to drive the first drive screw 55 and the transmission wheel 12 to rotate. At this time, the position of the regulating plate 7 on the control frame 5 changes, the conveyor belt 3 rotates, and the working position of the distribution cabinet 4 is changed. When the distribution cabinet 4 acts under the adjustment plate 6, the second motor 54 controls the second drive screw 56 to rotate, and changes the position of the adjustment plate 6 on the control frame 5. Under the connection between the placement box 61 and the telescopic cylinder 62, the telescopic cylinder 62 is controlled to discharge the partition 41 from the placement box 61 and enter the distribution cabinet 4. At this time, the partition 41 is magnetically attracted by the electromagnet assembly 83 to ensure the working position and angle of the partition 41 in the distribution cabinet 4. Then the conveyor belt 3 is rotated again to rotate. Column 13 drives the first gear 88 to rotate, and under the action of the third toothed belt 89, drives the third gear 811 and the second gear 810 to rotate. Under the connection between the second gear 810 and the fourth gear 812, drives the active gear 85, and then drives the second toothed belt 81 to rotate. Under the connection between the second toothed belt 81 and the connecting rod 82, and the connection between the connecting rod 82 and the electromagnet assembly 83, under the action of the electromagnet assembly 83, the partition 41 moves with the distribution cabinet 4. When the distribution cabinet 4 and the partition 41 act on the corresponding positions, under the action of the second motor 54 and the third motor 73, the action position of the welding frame 74 is changed, so that it welds the partition 41 inside the distribution cabinet 4. Under the action of the fixed plate 711 and the tension spring 712, it is ensured that the welding end of the welding frame 74 is tightly in contact with the partition 41, thereby improving the effect of the welding operation.

[0042] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the invention can be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be included therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

Claims

1. A continuous welding device for partitions of a power distribution cabinet, comprising a support frame (1), a first motor (11) and a power distribution cabinet (4), characterized in that: The surface of the support frame (1) is fixedly connected to a support leg (2), the output end of the first motor (11) is provided with a transmission wheel (12), the outer surface of the transmission wheel (12) is sleeved with a conveyor belt (3), the surface of the support frame (1) is movably connected to a rotating column (13), the distribution cabinet (4) is placed on the surface of the conveyor belt (3), the conveyor belt (3) is rotatably connected to the support frame (1) through the first motor (11) and the transmission wheel (12), the rotating columns (13) are evenly distributed on the surface of the support frame (1), the distribution cabinet (4) is slidably connected to the support frame (1) through the conveyor belt (3), the interior of the distribution cabinet (4) is welded with a partition (41), the surface of the support frame (1) is fixedly connected to a control frame (5 ), the surface of the control frame (5) is provided with a first adjustment groove (51) and a second adjustment groove (52), the first adjustment groove (51) is internally movably connected to a first drive screw (55), the second adjustment groove (52) is internally movably connected to a second drive screw (56), the surface of the control frame (5) is provided with a groove, and a second motor (54) is connected to the groove by bolts, the surface of the control frame (5) is connected to a protective cover (53) by bolts, the outer surface of the first drive screw (55) is sleeved with a slider (72), the surface of the slider (72) is fixedly connected to a support column (75), the surface of the support column (75) is fixedly connected to a control plate (7), and the surface of the control plate (7) is provided with a movable A movable groove (71), the interior of the movable groove (71) is slidably connected to a movable block (77), the surface of the movable block (77) is fixedly connected to a welding frame (74), the surface of the support frame (1) is fixedly connected to a control plate (8), the surface of the control plate (8) is provided with a control groove (84), the interior of the control groove (84) is movably connected to a driven gear (86) and a driving gear (85), the outer surfaces of the driven gear (86) and the driving gear (85) are sleeved with a second toothed belt (81), the surface of the rotating column (13) is fixedly connected to a connecting column (87), the surface of the connecting column (87) is fixedly connected to a first gear (88), the outer surface of the first gear (88) is sleeved with a third toothed belt (81), and the rotating column (13) is fixedly connected to a connecting column (87). 9), the control slot (84) is internally movably connected to a second gear (810), the surface of the second gear (810) is fixedly connected to a third gear (811), the surface of the driving gear (85) is fixedly connected to a fourth gear (812), the inner surface of the second toothed belt (81) is fixedly connected to a connecting rod (82), the end of the connecting rod (82) away from the second toothed belt (81) is fixedly connected to an electromagnet assembly (83), the outer surface of the second driving screw (56) is sleeved with an adjustment plate (6), the adjustment plate (6) is slidably connected to the second adjustment slot (52) through the second motor (54) and the second driving screw (56), and the surface of the adjustment plate (6) is fixedly connected to a placement box (61),The partition (41) is placed inside the placement box (61), and the outer surface of the placement box (61) is fixedly connected to a telescopic cylinder (62). A through groove is provided on a side of the placement box (61) away from the telescopic cylinder (62), and the through groove passes through the surface of the adjustment plate (6). The surface of the connection part of the placement box (61) and the through groove is connected to a clamping plate (63) through a torsion spring. The placement box (61) is slidably connected to the control frame (5) through the adjustment plate (6) and the control frame (5). The placement box (61) acts on the upper part of the conveyor belt (3) through the adjustment plate (6) and the control frame (5). The surface of the clamping plate (63) and the partition (41) are in contact with each other, and the surface of the placement box (61) The through-slot size is larger than the size of the partition (41), the driving gear (85) and the driven gear (86) rotate synchronously through the second toothed belt (81), the electromagnet assembly (83) slides on the support frame (1) through the connecting rod (82) and the second toothed belt (81), the electromagnet assembly (83) and the partition (41) are magnetically adsorbed and connected, the first gear (88) and the third gear (811) rotate synchronously through the third toothed belt (89), the rotating column (13) drives the rotation of the third gear (811) through the first gear (88) and the third toothed belt (89), and the fourth gear (812) and the second gear (810) are meshed and rotated.

2. The partition continuous welding device of a power distribution cabinet according to claim 1, characterized in that: The first driving screw (55) is rotatably connected to the first adjusting slot (51) via the second motor (54), the second driving screw (56) is rotatably connected to the second adjusting slot (52) via the second motor (54), and the slider (72) is slidably connected to the first driving screw (55) and the first adjusting slot (51).

3. The partition continuous welding device of a power distribution cabinet according to claim 1, characterized in that: The regulating plate (7) is fixedly connected via a support column (75) and a slider (72); the movable groove (71) is formed into two groups and is opened through the surface of the regulating plate (7); a third motor (73) is fixedly connected to the same surface where the regulating plate (7) and the support column (75) are connected; an output shaft of the third motor (73) is fixedly connected to a third driving screw (76); the third driving screw (76) is movably connected to the inside of the movable groove (71); and the movable block (77) is slidably connected to the third driving screw (76) via a thread.

4. The partition continuous welding device for a power distribution cabinet according to claim 3, characterized in that: The third drive screws (76) are distributed in two groups corresponding to each other inside the movable groove (71), the outer surface of the third drive screws (76) is fixedly connected to a gear, and the outer surface of the gear is sleeved with a first toothed belt (78), and the two groups of the third drive screws (76) are connected in synchronous rotation through the gear and the first toothed belt (78).

5. The partition continuous welding device for a power distribution cabinet according to claim 1, characterized in that: The outer surface of the welding frame (74) is sleeved with a connecting sleeve (79), and the surface of the connecting sleeve (79) is penetrated and connected with a push rod (710), and the opposite surface where the connecting sleeve (79) and the push rod (710) contact is fixedly connected with a fixed plate (711), and the surface of the fixed plate (711) is fixedly connected with a tension spring (712), and the welding frame (74) is divided into two groups and connected to the moving block (77), and the connecting sleeve (79) is divided into two groups and connected to the welding frame (74), and the push rod (710) penetrates the surface of the connecting sleeve (79) through a thread and contacts the outer surface of the welding frame (74), and the two groups of the connecting sleeves (79) are elastically connected by the fixed plate (711) and the tension spring (712).

6. The device for continuous welding partitions of a power distribution cabinet according to claim 1, characterized in that: The surface of the support frame (1) is connected to a fixing frame (9) via bolts, the surface of the fixing frame (9) is connected to a correction plate (91), the surface of the correction plate (91) is fixedly connected to a support spring (92), the correction plate (91) is elastically connected to the fixing frame (9) via the support spring (92), the fixing frames (9) are distributed in two opposite groups on the surface of the support frame (1), and the two groups of fixing frames (9) are distributed on both sides of the conveyor belt (3) through the support frame (1).

Citation Information

Patent Citations

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