Intelligent scrap disposal device for dismantled electric energy meters

By designing an intelligent scrapping and disposal device for dismantled electricity meters and using intelligent scanning, photography and drilling technologies, the problems of low efficiency and poor safety in the scrapping of electricity meters have been solved, and full process traceability and effective record keeping have been achieved.

CN223353208UActive Publication Date: 2025-09-19元启工业技术有限公司
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Patent Information

Application Number
CN202422786707.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-09-19
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

Traditional electricity meter scrapping has low efficiency, poor safety, inaccurate positioning, and cannot achieve full process traceability, which cannot meet the full life cycle management needs of the power supply department.

Method used

An intelligent scrap disposal device for dismantled electricity meters is designed, which uses components such as intelligent barcode scanning, visual camera photography, laser engraving and drilling devices to achieve full-process traceability management of electricity meters.

Benefits of technology

Through intelligent processing, the traceability of the entire process of the electricity meter is ensured, the processing efficiency and safety are improved, and the effective destruction record and archiving of the electricity meter is achieved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a dismantled electric energy meter intelligent scrap disposal device which comprises a bottom frame and a deck plate arranged on the bottom frame, a conveying line body is arranged on the deck plate through a line body support, a side pushing assembly is arranged at the front end of the conveying line body, and a code scanning assembly, a front photographing assembly, a side blocking assembly and a laser protection assembly are arranged on the side pushing assembly. A laser marking assembly is arranged on the inner side of the laser protection assembly, a limiting side pushing assembly is arranged on the front side of the laser marking assembly, and the laser marking device further comprises a punching device, a blocking jacking assembly and a rear photographing assembly. The system has the advantages that the intelligent bar code gun is used for scanning codes of the disassembled electric energy meters to upload data, the visual camera is used for photographing, uploading and binding the disassembled electric energy meters, the laser marking press is used for damaging screens and bar codes, the drilling device is used for damaging PCBA (printed circuit board assembly) boards, and the damaged disassembled electric energy meters are photographed and uploaded after the operation is completed. And binding and comparing with the picture before damage to ensure the traceability of the whole process of the dismantled table.
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Description

Technical Field

[0001] The utility model relates to the field of electric energy meter production equipment, in particular to an intelligent scrap disposal device for dismantled electric energy meters. Background Art

[0002] Recycling is a key part of the entire life cycle management of electricity meters. Before being delivered to recyclers, the meters need to be destroyed by destroying the barcode, PCBA board, LCD screen and electronic label, etc., to ensure that the scrapped electricity meters and their core components cannot be reused. More importantly, the algorithms and data stored in the chip will not be illegally obtained and used.

[0003] The traditional method of destroying scrapped electricity meters is to manually drill holes in the meters with a handheld electric drill. This method is inefficient and unsafe, and the location of the destruction point is completely dependent on the implementation personnel, which makes the positioning accuracy uncertain. In addition, there is no record of the destroyed electricity meters, which makes it impossible to archive and trace them, and cannot effectively meet the current power supply department's needs for full life cycle management of electricity meters. Utility Model Content

[0004] The purpose of the utility model is to overcome the shortcomings and deficiencies of the prior art and to provide an intelligent scrapping disposal device for dismantled electric energy meters to ensure the traceability of the entire process of dismantling the meters.

[0005] The technical solution adopted by the utility model to solve the technical problem is: an intelligent scrapping disposal device for dismantled electric energy meters, comprising a bottom frame and a table panel arranged on the bottom frame, a conveying line body is provided on the table panel through a line body bracket, a side pushing assembly is provided at the front end of the conveying line body, a code scanning assembly is provided above the side pushing assembly, a front camera assembly is provided at the rear side of the code scanning assembly, a side block assembly is provided at the rear side of the front camera assembly, a laser protection assembly is provided above the side block assembly, a laser engraving assembly is provided inside the laser protection assembly, and a position limiting side pushing assembly is provided at the front side of the laser engraving assembly.

[0006] A punching device is also provided above the conveying line body, a blocking and lifting component is provided at the rear side of the punching device, and a post-photographing component is provided at the front side of the blocking and lifting component.

[0007] Preferably, the punching device includes a welding column, a lower guide rail slider is connected above the welding column through a support rod, and limit blocks are provided at the front and rear ends of the lower guide rail slider, and a buffer pad is provided on the inner side of the limit block;

[0008] An adapter plate is clamped on the lower guide rail slider, a welding beam is connected above the adapter plate, a transmission assembly is connected below the adapter plate, an upper guide rail slider is connected above the welding beam through a support rod, an upper mounting plate is clamped on the upper guide rail slider, a punching and chip collection assembly is provided on the front side of the upper mounting plate, and an upper transmission assembly is provided on the rear side.

[0009] Preferably, the transmission assembly includes a servo motor and a motor support, wherein the motor support is connected to the support rod above the welding column, and the servo motor is arranged on the left side of the motor support, and its output shaft passes through the motor support and extends to the right.

[0010] A ball screw is connected to the end of the output shaft of the motor support through a coupling. The fixed side bearing support is sleeved on the end of the ball screw close to the coupling, and the driven end bearing support is sleeved on the end away from the coupling. A connecting seat is also provided in the middle of the ball screw, and the connecting seat is connected to the adapter plate.

[0011] Preferably, the punching and chip collecting assembly includes a locking seat, a servo power head is connected above the locking seat, a drill bit is connected below via a drill clamp, a plurality of guide shafts are provided on the periphery of the drill bit, a spring is sleeved on the guide shaft, the upper end of the spring is connected to a linear bearing, and the lower end is connected to a connecting plate, an upper mounting plate is connected above the linear bearing via a retaining spring, a front clamping plate and a rear clamping plate are buckled above the upper mounting plate and on the front and rear sides of the drill clamp, and a lower mounting plate is further provided below the connecting plate;

[0012] A front protective plate and a rear protective plate are provided on the outer sides of the upper mounting plate and the lower mounting plate. The front protective plate and the rear protective plate are buckled together to form a protective shell. A chip collection port is also provided on the outer side of the rear protective plate.

[0013] Preferably, the code scanning component includes a mounting base connected to the table panel, the mounting base is connected to an anti-rotation shaft, the anti-rotation shaft is connected to a vertical shaft through a lower clamping block, the upper end of the vertical shaft is connected to a horizontal shaft through an upper clamping block, the end of the horizontal shaft is connected to a code scanning support through a horizontal clamping block, and a code scanning gun is installed under the code scanning support.

[0014] Preferably, the side push assembly includes a mounting support and a support plate arranged on both sides of the conveyor line body, an electric cylinder is provided above the mounting support, the end of the piston rod of the electric cylinder is connected to a push plate, and a buffer pad is provided at the end of the push plate.

[0015] Preferably, the front camera assembly includes an aluminum profile frame, a guide shaft is connected to the aluminum profile frame via a fixed clamping seat, the guide shaft is connected to a camera mounting plate via a movable clamping seat, a camera is installed on the front side of the camera mounting plate, a light source mounting plate is installed on the rear side, and a light source is installed on the light source mounting plate.

[0016] Preferably, the blocking lifting assembly includes a base plate connected to the table panel, an electric cylinder is provided in the middle of the base plate, an output shaft of the electric cylinder extends upwardly out of the base plate, a lifting floating assembly is provided at the end of the output shaft of the electric cylinder, the upper end of the lifting floating assembly is connected to a top plate, and a buffer plate is provided on the top plate;

[0017] Between the base plate and the top plate, and on the front and rear sides of the lifting and floating assembly, there are provided mutually symmetrical square flange linear bearings, wherein a coarse optical shaft is sleeved inside the square flange linear bearing, wherein the upper end of the coarse optical shaft is connected to the top plate, and the lower end passes through the base plate and extends downward;

[0018] A push rod motor is also provided at the front of the base plate, the output shaft of the push rod motor extends out of the base plate and extends upward, a blocking floating assembly is provided at the end of the output shaft of the push rod motor, the upper end of the blocking floating assembly is connected to a blocking upper plate, and a blocking block is provided on the blocking upper plate;

[0019] Between the base plate and the blocking upper plate, and on the left and right sides of the blocking floating assembly, there are provided symmetrical bilateral flange bearings, a thin optical shaft is sleeved in the bilateral flange bearings, the upper end of the thin optical shaft is connected to the blocking upper plate, and the lower end passes through the base plate and extends downward;

[0020] A bracket is also provided at the front end of the base plate, a proximity switch is provided on the bracket, and a sensor sheet is provided at the front end of the blocking upper plate. The proximity switch cooperates with the sensor sheet to sense the arrival signal of the scrapped meter circulating on the conveyor line.

[0021] Preferably, the limiting side thrust assembly includes a left vertical plate and a right vertical plate, the lower ends of the left vertical plate and the right vertical plate are connected to the table panel, and the upper ends are connected to the upper plate; an opening window is provided on the left side panel, and a sliding electric cylinder is installed on the outside of the opening window through an electric cylinder mounting plate and a rib plate, the sliding electric cylinder extends into the opening window, and is connected to a clamping plate on the inside of the opening window, a left guide plate is provided on the clamping plate, and a right guide plate is provided on the inner side of the right vertical plate, flush with the left guide plate.

[0022] The beneficial effects of the present invention are: a smart barcode gun is used to scan the disassembled electric energy meter and upload data, a visual camera is used to take a photo of the disassembled electric energy meter and upload and bind it, a laser engraving machine is used to destroy the screen and barcode, and a drilling device is used to destroy the PCBA board. After completion, a photo of the damaged disassembled meter is taken and uploaded, and it is bound to the photo before destruction and compared to ensure the traceability of the entire process of the disassembled meter. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 This is a schematic diagram of the three-dimensional structure of an embodiment of the utility model;

[0024] Figure 2 This is a schematic diagram of the top view of the structure of an embodiment of the utility model;

[0025] Figure 3 This is a schematic diagram of the three-dimensional structure of the punching device of the utility model;

[0026] Figure 4 This is a schematic diagram of the three-dimensional structure of the transmission component in the punching device of the present utility model;

[0027] Figure 5 This is a schematic diagram of the three-dimensional structure of the punching and chip collecting component in the punching device of the utility model;

[0028] Figure 6 This is a schematic diagram of the three-dimensional structure of the code scanning component of the utility model;

[0029] Figure 7 This is a schematic diagram of the three-dimensional structure of the front camera assembly of the utility model;

[0030] Figure 8 This is a schematic diagram of the three-dimensional structure of the side thrust assembly of the utility model;

[0031] Figure 9 This is a schematic diagram of the three-dimensional structure of the side guard assembly of the utility model;

[0032] Figure 10 This is a schematic diagram of the structure of the position limiting side thrust assembly of the utility model;

[0033] Figure 11 This is a system flow chart of the utility model.

[0034] The following are marked in the figure:

[0035] Welding bottom frame 1, table panel 2, conveyor line 3, code scanning assembly 4, side push assembly 5, punching device 6, front camera assembly 7, blocking jacking assembly 8, side block assembly 9, laser protection assembly 10, laser marking assembly 11, position limiting side push assembly 12, rear camera assembly 13, line support 14;

[0036] Welding column 61, transmission assembly 62, adapter plate 63, welding crossbeam 64, lower guide rail slider 65, punching and chip collection assembly 66, limit block 67, buffer pad 68, upper transmission assembly 69, upper mounting plate 610, upper guide rail slider 611;

[0037] Servo motor 621, motor support 622, coupling 623, fixed-side bearing support 624, connecting seat 625, ball screw 626, driven-end bearing support 627; locking seat 661, rear clamping plate 662, front clamping plate 663, rear protective plate 664, chip collection port 665, linear bearing 666, guide shaft 667, spring 668, connecting plate 669, lower mounting plate 6610, drill bit 6611, drill clamp 6612, upper mounting plate 6613, front protective plate 6614, servo power head 6615;

[0038] Mounting base 41, anti-rotation shaft 42, lower clamping block 43, vertical shaft 44, upper clamping block 45, horizontal shaft 46, horizontal clamping block 47, code scanning support 48, code scanning gun 49;

[0039] Electric cylinder 51, push plate 52, buffer pad 53, mounting bracket 54, support plate 55;

[0040] Aluminum profile frame 71, fixed clamping seat 72, guide shaft 73, movable clamping seat 74, camera mounting plate 75, light source mounting plate 76, camera 77, light source 78;

[0041] Base plate 81, top plate 82, buffer plate 83, blocking block 84, blocking upper plate 85, induction plate 86, proximity switch 87, bracket 88, blocking floating assembly 89, push rod motor 810, double flange bearing 811, fine optical axis 812, clamping seat 813, square flange linear bearing 814, electric cylinder 815, lifting floating assembly 816, coarse optical axis 817;

[0042] Left vertical plate 121, slide electric cylinder 122, electric cylinder mounting plate 123, rib plate 124, pressing plate 125, left guide plate 126, upper plate 127, right guide plate 128, right vertical plate 129. DETAILED DESCRIPTION

[0043] The present invention will be further described below with reference to the accompanying drawings. Example

[0044] like Figure 1-11As shown: A smart scrapping disposal device for dismantled electric energy meters, comprising a bottom frame 1 and a table panel 2 arranged on the bottom frame 1, a conveying line 3 is provided on the table panel 2 through a line bracket 14, a side pushing assembly 5 is provided at the front end of the conveying line 3, a code scanning assembly 4 is provided above the side pushing assembly 5, a front photographing assembly 7 is provided on the rear side of the code scanning assembly 4, a side block assembly 9 is provided on the rear side of the front photographing assembly 7, a laser protection assembly 10 is provided above the side block assembly 9, a laser engraving assembly 11 is provided on the inner side of the laser protection assembly 10, a limiting side pushing assembly 12 is provided on the front side of the laser engraving assembly 11, a punching device 6 is also provided above the conveying line 3, a blocking jacking assembly 8 is provided on the rear side of the punching device 6, and a rear photographing assembly 13 is provided on the front side of the blocking jacking assembly 8.

[0045] The punching device 6 includes a welding column 61, and a lower guide rail slider 65 is connected to the welding column 61 through a support rod. The front and rear ends of the lower guide rail slider 65 are provided with a limit block 67, and a buffer pad 68 is provided inside the limit block 67;

[0046] An adapter plate 63 is clamped on the lower guide rail slider 65, a welding beam 64 is connected above the adapter plate 63, a transmission assembly 62 is connected below the adapter plate, an upper guide rail slider 611 is connected above the welding beam 64 through a support rod, an upper mounting plate 610 is clamped on the upper guide rail slider 611, a punching and chip collection assembly 66 is provided on the front side of the upper mounting plate 610, and an upper transmission assembly 69 is provided on the rear side.

[0047] The transmission assembly 62 includes a servo motor 621 and a motor support 622. The motor support 622 is connected to the support rod above the welding column 61. The servo motor 621 is arranged on the left side of the motor support 622, and its output shaft extends to the right through the motor support 622.

[0048] At the end of the output shaft of the motor support 622, a ball screw 626 is connected through a coupling 623. The ball screw 626 is sleeved with a fixed side bearing support 624 at one end close to the coupling, and is sleeved with a driven end bearing support 627 at the end away from the coupling. A connecting seat 625 is also provided in the middle of the ball screw 626, and the connecting seat 625 is connected to the adapter plate 63.

[0049] The punching and chip collecting assembly 66 includes a locking seat 661, a servo power head 6615 is connected above the locking seat 661, and a drill bit 6611 is connected below via a drill clamp 6612. Several groups of guide shafts 667 are provided on the periphery of the drill bit 6611, and a spring 668 is sleeved on the guide shaft 667. The upper end of the spring 668 is connected to a linear bearing 666, and the lower end is connected to a connecting plate 669. An upper mounting plate 6613 is connected above the linear bearing 666 via a retaining spring. A front clamping plate 663 and a rear clamping plate 662 are buckled above the upper mounting plate 6613 and on the front and rear sides of the drill clamp 6612. A lower mounting plate 6610 is also provided below the connecting plate 669.

[0050] A front protective plate 6614 and a rear protective plate 664 are provided on the outside of the upper mounting plate 6613 and the lower mounting plate 6610 . The front protective plate 6614 and the rear protective plate 664 are buckled together to form a protective shell. A chip collection port 665 is also provided on the outside of the rear protective plate 664 .

[0051] The code scanning component 4 includes a mounting base 41 connected to the table panel 2, and an anti-rotation shaft 42 is connected to the mounting base 41. The anti-rotation shaft 42 is connected to a vertical shaft 44 through a lower clamping block 43. The upper end of the vertical shaft 44 is connected to a horizontal shaft 46 through an upper clamping block 45. The end of the horizontal shaft 46 is connected to a code scanning support 48 through a horizontal clamping block 47. A code scanning gun 49 is installed below the code scanning support 48.

[0052] The side push assembly 5 includes a mounting support 54 and a support plate 55 arranged on both sides of the conveyor line body 3. An electric cylinder 51 is provided above the mounting support 54. The end of the piston rod of the electric cylinder 51 is connected to a push plate 52. A buffer pad 53 is provided at the end of the push plate 52.

[0053] The front camera assembly 7 includes an aluminum profile frame 71, on which a guide shaft 73 is connected via a fixed clamping seat 72, and the guide shaft 73 is connected to a camera mounting plate 75 via a movable clamping seat 74, a camera 77 is mounted on the front side of the camera mounting plate 75, and a light source mounting plate 76 is mounted on the rear side, and a light source 78 is mounted on the light source mounting plate 76.

[0054] The blocking lifting assembly 8 includes a base plate 81 connected to the table panel 2, an electric cylinder 815 is provided in the middle of the base plate 81, the output shaft of the electric cylinder 815 extends upward from the base plate 81, and a lifting floating assembly 816 is provided at the end of the output shaft of the electric cylinder 815. The upper end of the lifting floating assembly 816 is connected to a top plate 82, and a buffer plate 83 is provided on the top plate 82;

[0055] Between the base plate 81 and the top plate 82, and on the front and rear sides of the lifting and floating assembly 816, there are symmetrical square flange linear bearings 814. A coarse optical shaft 817 is sleeved inside the square flange linear bearing 814. The upper end of the coarse optical shaft 817 is connected to the top plate 82, and the lower end passes through the base plate 81 and extends downward.

[0056] A push rod motor 810 is further provided at the front of the base plate 81. The output shaft of the push rod motor 810 extends upward from the base plate 81. A blocking floating assembly 89 is provided at the end of the output shaft of the push rod motor 810. The upper end of the blocking floating assembly 89 is connected to a blocking upper plate 85. A blocking block 84 is provided on the blocking upper plate 85.

[0057] Between the base plate 81 and the blocking upper plate 85, and on the left and right sides of the blocking floating assembly 89, there are symmetrical bilateral flange bearings 811. A thin optical shaft 812 is sleeved within the bilateral flange bearings 811. The upper end of the thin optical shaft 812 is connected to the blocking upper plate 85, and the lower end passes through the base plate 81 and extends downward.

[0058] A bracket 88 is further provided at the front end of the base plate 81, and a proximity switch 87 is provided on the bracket 88. A sensor sheet 86 is provided at the front end of the blocking upper plate 85. The proximity switch 87 cooperates with the sensor sheet 86 to sense the arrival signal of the scrapped meter flowing on the conveyor line 3.

[0059] The limiting side thrust assembly 12 includes a left vertical plate 121 and a right vertical plate 129, the lower ends of the left vertical plate 121 and the right vertical plate 129 are connected to the table panel 2, and the upper ends are connected to the upper plate 127; an opening window is provided on the left side plate 121, and a sliding table electric cylinder 122 is installed on the outside of the opening window through an electric cylinder mounting plate 123 and a rib plate 124, and the sliding table electric cylinder 122 extends into the opening window and is connected to a clamping plate 125 on the inside of the opening window, and a left guide plate 126 is provided on the clamping plate 125, and a right guide plate 128 is provided on the inner side of the right vertical plate 129 and flush with the left guide plate 126.

[0060] The working principle and working process of this utility model are as follows:

[0061] The scrapped table flows from the conveyor line 3 to the barcode scanning component 4 station, where the barcode is scanned by the barcode scanning gun 49, and the data is transmitted to the host computer for storage; the side push component 5 drives the push plate 52 through the electric cylinder 51 to clamp the scrapped table to ensure that a single table enters the next process, and the two sets of side push components 5 clamp the single-phase table and the three-phase table respectively; the scrapped table flows to the front photo component 7, which takes a photo of the scrapped table before destruction and binds it; after completion, the scrapped table flows to the laser destruction process, where the laser engraving component 11 ablates the LCD screen and the barcode; the scrapped table flows to the punching process, and the transmission component 62 adjusts the position of the punching chip collection component 66 according to different table types; the scrapped table flows into place and is limited by the blocking block 84, and the electric cylinder 815 starts to rise, lifting the buffer plate 83, and the scrapped table enters The height direction is limited; the slide electric cylinder 122 extends to limit the scrapped meter in the left and right directions; the servo power head 6615 is started, the drill bit 6612 rotates and descends, the chip collection port 665 first contacts the upper surface of the scrapped meter, and the dust collection device is started to form a negative pressure; the servo power head 6615 continues to descend, the spring 668 is compressed, and the chip collection port 665 and the lower mounting plate 6610 always keep in contact with the upper surface of the scrapped meter, greatly reducing the splash of debris during the drilling process of the scrapped meter by the drill bit 6612; after the drilling is completed, the slide electric cylinder 122 retracts, the electric cylinder 815 descends, the push rod motor 810 descends, and the scrapped meter flows to the next process along the conveyor line; the post-photographing component 13 takes photos of the destroyed electricity meters and uploads them, and compares them with the photos before demolition to ensure that each meter is completely destroyed.

Claims

1. An intelligent scrapping and disposal device for dismantled electric energy meters, comprising a bottom frame and a table panel disposed on the bottom frame, wherein a conveying line is provided on the table panel via a line support, and characterized in that: A side push assembly is provided at the front end of the conveyor line body, a code scanning assembly is provided above the side push assembly, a front camera assembly is provided at the rear side of the code scanning assembly, a side block assembly is provided at the rear side of the front camera assembly, a laser protection assembly is provided above the side block assembly, a laser engraving assembly is provided inside the laser protection assembly, and a position limiting side push assembly is provided at the front side of the laser engraving assembly. A punching device is also provided above the conveying line body, a blocking and lifting component is provided at the rear side of the punching device, and a post-photographing component is provided at the front side of the blocking and lifting component.

2. The intelligent scrapping and disposal device for dismantled electric energy meters according to claim 1 is characterized in that: The punching device includes a welding column, a lower guide rail slider is connected to the welding column through a support rod, and a limit block is provided at the front and rear ends of the lower guide rail slider, and a buffer pad is provided on the inner side of the limit block; An adapter plate is clamped on the lower guide rail slider, a welding beam is connected above the adapter plate, a transmission assembly is connected below the adapter plate, an upper guide rail slider is connected above the welding beam through a support rod, an upper mounting plate is clamped on the upper guide rail slider, a punching and chip collection assembly is provided on the front side of the upper mounting plate, and an upper transmission assembly is provided on the rear side.

3. The intelligent scrapping and disposal device for dismantled electric energy meters according to claim 2 is characterized in that: The transmission assembly includes a servo motor and a motor support. The motor support is connected to the support rod above the welding column. The servo motor is arranged on the left side of the motor support, and its output shaft passes through the motor support and extends to the right. A ball screw is connected to the end of the output shaft of the motor support through a coupling. The fixed side bearing support is sleeved on the end of the ball screw close to the coupling, and the driven end bearing support is sleeved on the end away from the coupling. A connecting seat is also provided in the middle of the ball screw, and the connecting seat is connected to the adapter plate.

4. The intelligent scrapping and disposal device for dismantled electric energy meters according to claim 2 is characterized in that: The punching and chip collecting assembly includes a locking seat, a servo power head is connected above the locking seat, a drill bit is connected to the bottom through a drill clamp, a plurality of guide shafts are provided on the periphery of the drill bit, a spring is sleeved on the guide shaft, the upper end of the spring is connected to a linear bearing, and the lower end is connected to a connecting plate, an upper mounting plate is connected to the upper end of the linear bearing through a retaining spring, a front clamping plate and a rear clamping plate are buckled above the upper mounting plate and on the front and rear sides of the drill clamp, and a lower mounting plate is further provided below the connecting plate; A front protective plate and a rear protective plate are provided on the outer sides of the upper mounting plate and the lower mounting plate. The front protective plate and the rear protective plate are buckled together to form a protective shell. A chip collection port is also provided on the outer side of the rear protective plate.

5. The intelligent scrapping and disposal device for dismantled electric energy meters according to claim 1 is characterized in that: The code scanning assembly includes a mounting base connected to the table panel, an anti-rotation shaft is connected to the mounting base, the anti-rotation shaft is connected to the vertical shaft through a lower clamping block, the upper end of the vertical shaft is connected to the horizontal shaft through an upper clamping block, the end of the horizontal shaft is connected to the code scanning support through a horizontal clamping block, and a code scanning gun is installed under the code scanning support.

6. The intelligent scrapping and disposal device for dismantled electric energy meters according to claim 1 is characterized in that: The side push assembly includes a mounting support and a support plate arranged on both sides of the conveyor line body. An electric cylinder is provided above the mounting support. The end of the piston rod of the electric cylinder is connected to a push plate, and a buffer pad is provided at the end of the push plate.

7. The intelligent scrapping and disposal device for dismantled electric energy meters according to claim 1 is characterized in that: The front camera assembly includes an aluminum profile frame, a guide shaft is connected to the aluminum profile frame via a fixed clamping seat, the guide shaft is connected to a camera mounting plate via a movable clamping seat, a camera is installed on the front side of the camera mounting plate, a light source mounting plate is installed on the rear side, and a light source is installed on the light source mounting plate.

8. The intelligent scrapping and disposal device for dismantled electric energy meters according to claim 1 is characterized in that: The blocking jacking assembly includes a base plate connected to the table panel, an electric cylinder is provided in the middle of the base plate, the output shaft of the electric cylinder extends out of the base plate and upward, a jacking floating assembly is provided at the end of the output shaft of the electric cylinder, the upper end of the jacking floating assembly is connected to a top plate, and a buffer plate is provided on the top plate; Between the base plate and the top plate, and on the front and rear sides of the lifting and floating assembly, there are provided mutually symmetrical square flange linear bearings, wherein a coarse optical shaft is sleeved inside the square flange linear bearing, wherein the upper end of the coarse optical shaft is connected to the top plate, and the lower end passes through the base plate and extends downward; A push rod motor is also provided at the front of the base plate, the output shaft of the push rod motor extends out of the base plate and extends upward, a blocking floating assembly is provided at the end of the output shaft of the push rod motor, the upper end of the blocking floating assembly is connected to a blocking upper plate, and a blocking block is provided on the blocking upper plate; Between the base plate and the blocking upper plate, and on the left and right sides of the blocking floating assembly, there are provided symmetrical bilateral flange bearings, a thin optical shaft is sleeved in the bilateral flange bearings, the upper end of the thin optical shaft is connected to the blocking upper plate, and the lower end passes through the base plate and extends downward; A bracket is also provided at the front end of the base plate, a proximity switch is provided on the bracket, and a sensor sheet is provided at the front end of the blocking upper plate. The proximity switch cooperates with the sensor sheet to sense the arrival signal of the scrapped meter circulating on the conveyor line.

9. The intelligent scrapping and disposal device for dismantled electric energy meters according to claim 1 is characterized in that: The limiting side thrust assembly includes a left vertical plate and a right vertical plate, the lower ends of the left vertical plate and the right vertical plate are connected to the table panel, and the upper ends are connected to the upper plate; an opening window is provided on the left vertical plate, and a sliding table electric cylinder is installed on the outside of the opening window through an electric cylinder mounting plate and a rib plate, the sliding table electric cylinder extends into the opening window, and is connected to a clamping plate on the inside of the opening window, a left guide plate is provided on the clamping plate, and a right guide plate is provided on the inside of the right vertical plate, flush with the left guide plate.