Multifunctional integrated equipment for electrical equipment processing

By designing multifunctional integrated equipment for electrical equipment processing, the problem of dust and debris flying during electrical equipment processing is solved by using dust prevention and unloading mechanisms, achieving improvements in safety and operability.

CN120657614APending Publication Date: 2025-09-16XIAN INT UNIV
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Patent Information

Application Number
CN202510940704.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-09
Publication Date
2025-09-16

AI Technical Summary

Technical Problem

Existing electrical equipment processing equipment easily generates a large amount of flying dust and debris during the processing process, which affects the health of operators, increases the difficulty of collection, and reduces operability.

Method used

A multifunctional integrated equipment for electrical equipment processing is designed, which includes an electrical processing cabinet, a dustproof mechanism, a conveying mechanism and a unloading mechanism. The traction motor drives the transmission screw to drive the traction rod and traction wheel to move in the guide groove, thereby achieving the sealing of the transparent dust cover to prevent dust and debris from flying out, and the debris is collected into the funnel cavity through the unloading mechanism.

Benefits of technology

It effectively avoids the flying of dust and debris during the processing, improves the operational safety and collection effect, reduces the subsequent maintenance cost and improves the operability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the field of electrical equipment processing, and particularly relates to multifunctional electrical equipment processing integrated equipment which comprises an electrical processing cabinet, the electrical processing cabinet is provided with a processing chamber, the processing chamber is provided with a dustproof mechanism, the dustproof mechanism comprises a fixing plate and a traction plate, the fixing plate is assembled in the processing chamber, and the fixing plate and the traction plate are provided with guide blocks. The guide block is provided with a guide groove, the guide groove is provided with a traction rod, the traction rod is provided with a traction wheel, the fixing plate and the traction plate are provided with vertical blocks, the vertical blocks are provided with extension blocks, and the extension blocks are provided with first transparent dust covers and second transparent dust covers. According to the multifunctional integrated equipment for machining the electrical equipment, through cooperation of the first transparent dust cover and the second transparent dust cover, the problems that when existing machining equipment is used for machining the electrical equipment, a large amount of flying dust and chippings are likely to be generated, the health of operators is affected, the chippings of the electrical equipment are likely to fly out in the machining process, and the machining efficiency is affected are solved. The collection difficulty is increased; and the operability is reduced.
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Description

Technical Field

[0001] The present invention relates to the field of electrical equipment processing, in particular to a multifunctional integrated equipment for electrical equipment processing. Background Art

[0002] Electrical equipment is a general term for equipment such as generators, transformers, power lines and circuit breakers in the power system. The important role played by the power system in our lives and production cannot be ignored. It brings us great convenience and becomes an important energy source in our production and life. The most critical factor that enables the normal operation and transmission of electricity in the power system is electrical equipment. The composition of the electrical equipment system mainly includes power supply circuit, protection circuit, signal circuit, automatic and manual circuit, braking and parking circuit and self-locking and locking circuit. There are many types of electrical equipment and various classification standards. Electrical equipment can be divided into high-voltage electrical equipment and low-voltage electrical equipment according to voltage level, and can be divided into industrial electrical equipment and household electrical equipment according to use.

[0003] When processing existing electrical equipment, it is necessary to rely on conveying equipment to transport the electrical equipment, and then the mechanical claws on the robotic arm grab the corresponding electrical equipment and transfer it to the processing table. Under the support of the processing table and the clamping action of the mechanical claws, it is convenient for the processing equipment to process the electrical equipment. However, during the processing of electrical equipment by existing processing equipment: Existing processing equipment is prone to generate a large amount of flying dust and debris when processing electrical equipment, which affects the health of operators. In addition, the debris of electrical equipment is easy to fly out during processing, increasing the difficulty of collection and reducing operability. Therefore, it is very necessary to involve a multifunctional integrated equipment for electrical equipment processing in the existing electrical equipment processing field. Summary of the Invention

[0004] In order to make up for the shortcomings of the existing technology, the existing processing equipment is prone to generate a large amount of flying dust and debris when processing electrical equipment, which affects the health of operators. In addition, the debris of the electrical equipment is easy to fly out during processing, increasing the difficulty of collection and reducing operability. The present invention proposes a multifunctional integrated equipment for processing electrical equipment.

[0005] The technical solution adopted by the present invention to solve the technical problem is: a multifunctional integrated device for processing electrical equipment, comprising: An electrical processing cabinet, wherein a processing chamber is provided on the electrical processing cabinet, and a mounting opening is provided on the bottom surface of the processing chamber; A dust-proof mechanism, comprising a fixed plate and a traction plate, wherein the fixed plate is fixedly mounted on the top surface of the processing chamber, and guide blocks are symmetrically fixedly mounted on the fixed plate and the traction plate, and guide grooves are provided on the guide blocks, and traction rods are movably mounted on the two guide grooves, and traction wheels are symmetrically mounted on the traction rods, and vertical blocks are symmetrically fixedly mounted on the bottom of the fixed plate and the traction plate, and extension blocks are fixedly mounted on the bottom of the vertical blocks, wherein one end of the two extension blocks is fixedly mounted with a first transparent dust cover, and one end of the other two extension blocks is fixedly mounted with a second transparent dust cover, and the bottoms of the first transparent dust cover and the second transparent dust cover are both in contact with the bottom surface of the processing chamber; The conveying mechanism includes a conveying frame, which is fixedly assembled with the mounting port. The conveying frame is equipped with multiple transmission rollers. Two power rollers are symmetrically equipped on the conveying frame. The power rollers are located on both sides of the transmission rollers. The unloading mechanism includes a processing table, which is fixedly assembled with the bottom surface of the processing chamber.

[0006] Preferably, the traction wheel is fitted with a guide groove on the guide block, a first adjusting rod is symmetrically fixedly assembled on one of the traction rods, a second adjusting rod is symmetrically fixedly assembled on the other traction rod, a plurality of fixed rods are fixedly assembled between the two first adjusting rods and the two second adjusting rods, fixed blocks are symmetrically fixedly assembled on the fixed plate and the traction plate, the fixed block is located on one side of the guide block, a connecting rod is fixedly assembled on the two fixed blocks, the two first adjusting rods and the two second adjusting rods are movably assembled with the connecting rod, and the first adjusting rod and the second adjusting rod are cross-shaped, and a movable rod is movably assembled at the intersection of the two first adjusting rods and the two second adjusting rods.

[0007] Preferably, the fixed plate is symmetrically fixed with assembly blocks, the two assembly blocks are located between the two guide blocks, and the two assembly blocks are located on both sides of the traction rod, a guide rod is symmetrically fixed between the two assembly blocks, the guide rod is movably assembled with the two traction rods, a traction motor is fixedly assembled on the assembly block, a transmission screw is fixedly assembled on the output end of the traction motor, the transmission screw movably passes through the two assembly blocks, and the transmission screw is threadedly assembled with the traction rod.

[0008] Preferably, the bottom surface of the processing chamber is equipped with a rotating table, which is located between the first transparent dust cover and the second transparent dust cover. A robotic arm is fixedly installed on the rotating table, and a robotic claw is installed on the robotic arm. The mounting port is located on one side of the rotating table, the first transparent dust cover and the second transparent dust cover.

[0009] Preferably, a transmission belt is wound around the drive roller and the power roller, one end of the power roller is movable through the conveying frame, and one end of the power roller is fixedly equipped with a first sprocket, a first chain is wound around the two first sprockets, a support frame is fixedly equipped on the conveying frame, an operating motor is fixedly equipped on the support frame, the output end of the operating motor is movable through the support frame, and the output end of the operating motor is fixedly equipped with one of the first sprockets.

[0010] Preferably, a feed port is provided on the bottom surface of the processing chamber, which is located between the rotating table and the second transparent dust cover. A funnel cavity is provided inside the electrical processing cabinet, which is connected to the feed port. A feeding chamber is provided on the bottom surface of the funnel cavity. A traction chamber is provided at an inclined side of the electrical processing cabinet, which is connected to the feeding chamber. A moving port is symmetrically provided on the bottom surface of the processing chamber, which is connected to the funnel cavity, and the moving port is located on the outside of the second transparent dust cover.

[0011] Preferably, the processing table is provided with a feed port, which is connected to the feed inlet, and the processing table is symmetrically fixed with connecting blocks, the bottoms of the connecting blocks are fixedly assembled with the bottom surface of the processing chamber, and the interiors of the connecting blocks are connected with the funnel cavity, and the interiors of the two connecting blocks are movably equipped with operating rods, which movably pass through the feed port of the processing table, and a carrying plate is fixedly assembled on the operating rod, and the carrying plate is movably assembled with the feed port.

[0012] Preferably, both ends of the operating rod are fixedly equipped with a second sprocket, the second sprocket is located inside the connecting block, and the top surface of the funnel cavity is fixedly equipped with two groups of operating plates, each group of operating plates has two, and a rotating rod is movably installed between the two operating plates in each group, and a third sprocket is fixedly installed on the rotating rod, and a second chain is wrapped around the third sprocket and the second sprocket, and a traction gear is fixedly installed on the rotating rod.

[0013] Preferably, the top surface of the funnel chamber is fixedly assembled with four groups of mounting blocks, each group of mounting blocks having two mounting blocks. A guide rod is fixedly assembled between the two mounting blocks in each group. Sliders are movably assembled on the guide rods of the two groups of mounting blocks. An operating block is fixedly assembled between the two slides. A traction rack is fixedly assembled on the operating block, and the traction rack is movably assembled with the traction gear. A bearing block is fixedly assembled on the back of the second transparent dust cover. A guide block is fixedly assembled on one end of the bearing block. The guide block is movably assembled with the movable port, and the bottom of the guide block is fixedly assembled with the operating block.

[0014] Preferably, the end faces of the first transparent dust cover and the second transparent dust cover are fitted together, and the surface of the carrier plate and the surface of the processing table are at the same level. The present invention is beneficial in that: The traction motor is started to rotate the transmission screw on the traction rod, so that the traction rod moves on the two guide rods, so that the traction rod drives the two traction wheels to move in the guide grooves on the guide blocks. Under the action of the movable rod, the angle between the first adjusting rod and the second adjusting rod is changed. The traction rod on the traction plate moves through the guide grooves on the guide blocks of the traction wheels, and the second adjusting rod is deflected on the connecting rod, so that the distance between the traction plate and the fixed plate changes, and the traction plate moves toward the fixed plate. The traction plate drives the second transparent dust cover to move toward the first transparent dust cover through the extension block on the vertical block, so that the second transparent dust cover and the first transparent dust cover are in a closed environment, so that dust and debris are prevented from flying out during processing, thereby improving operation safety and collection effect.

[0015] 2. The present invention moves through the second transparent dust cover, so that the carrying block drives the guide block to move on the moving port, and the guide block drives the slider on the operating block to move respectively on the guide rod, and the operating block drives the traction rack to move, and the traction rack drives the rotating rod on the traction gear to rotate on the operating plate during movement, and the rotating rod drives the third sprocket to rotate, and the third sprocket drives the second sprocket to rotate through the second chain, and the second sprocket drives the carrying plate on the operating rod to rotate, so as to facilitate the deflection of the carrying plate, so that the debris on the carrying plate falls into the feed port, and then falls into the funnel cavity from the feed port, and falls into the traction chamber from the feeding chamber, so as to avoid electrical equipment being placed on the carrying plate, and the debris on the carrying plate affecting the placement of the electrical equipment, thereby improving the operating effect, avoiding manual cleaning of the processing table, and improving the operating effect.

[0016] 3. The traction of the traction rack of the present invention causes the carrier plate to deflect, thereby causing dust and debris to fall out. During operation, the driving mechanism is not used alone for operation, and it is only operated by the traction motor of the dustproof mechanism, which reduces the subsequent maintenance and use costs and improves operability. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0018] Figure 1 This is a schematic diagram of the assembly structure of the multifunctional electrical equipment processing integrated device, the dust prevention mechanism, and the conveying mechanism of the present invention; Figure 2This is a schematic diagram of the assembly structure of the multifunctional electrical equipment processing integrated device, the dust prevention mechanism, the conveying mechanism, and the unloading mechanism of the present invention; Figure 3 This is a schematic cross-sectional view of the integrated device for processing multifunctional electrical equipment according to the present invention; Figure 4 This is a schematic cross-sectional view of the integrated device for processing multifunctional electrical equipment according to the present invention; Figure 5 Schematic diagram of the dustproof mechanism structure of the present invention; Figure 6 Schematic diagram of the dustproof mechanism structure of the present invention; Figure 7 It is a schematic diagram of the structure of the dustproof mechanism of the present invention; Figure 8 It is a structural schematic diagram of the unloading mechanism of the present invention.

[0019] In the picture: 10. Electrical processing cabinet; 11. Processing room; 12. Robotic arm; 13. Robotic claw; 20. Rotating table; 21. Mounting port; 22. Conveying mechanism; 2200. Conveying frame; 2201. Driving roller; 2202. Power roller; 2203. Transmission belt; 2204. First sprocket; 2205. First chain; 2206. Support frame; 2207. Operating motor; 23. Dust-proof mechanism; 2300. Fixed plate; 2301. Traction plate; 2302. Guide block; 2303. Guide groove; 2304. Traction rod; 2305. Traction wheel; 2306. First adjustment rod; 2307. Fixed block; 2308. Connecting rod; 2309. Second adjustment rod; 2310. Fixed rod; 2311. Movable rod; 2312. Assembly block; 2313. Guide rod; 2314. Traction motor; 2315. Transmission screw; 2316. Vertical block; 2317. Extension block; 2318. First transparent dust cover; 2319. Second transparent dust cover; 2320. Mounting block; 2321. Guide rod; 2322. Slider; 2323. Operating block; 2324. Traction rack; 2325. Carrying block; 2326. Guide block; 30. Unloading mechanism; 3000. Processing table; 3001. Feeding port; 3002. Connecting block; 3003. Operating lever; 3004. Carrying plate; 3005. Second sprocket; 3006. Operating plate; 3007. Rotating lever; 3008. Third sprocket; 3009. Second chain; 3010. Traction gear; 31. Funnel cavity; 32. Feeding port; 33. Feeding chamber; 40. Traction room; 41. Mobile port. DETAILED DESCRIPTION

[0020] 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. Example

[0021] like Figures 1 to 6 As shown, it is a schematic diagram of the structure of a multifunctional electrical equipment processing integrated device according to a preferred embodiment of the present invention, referring to Figure 1 and Figure 5 as well as Figure 6A multifunctional integrated device for processing electrical equipment includes an electrical processing cabinet 10, wherein the electrical processing cabinet 10 is provided with a processing chamber 11, and the processing chamber 11 is equipped with a dustproof mechanism 23, and the dustproof mechanism 23 includes a fixed plate 2300 and a traction plate 2301. The fixed plate 2300 is fixedly mounted on the top surface of the processing chamber 11, and guide blocks 2302 are symmetrically fixedly mounted on the fixed plate 2300 and the traction plate 2301. The guide blocks 2302 are both provided with guide grooves 2303. The two guide grooves 2303 are both movably equipped with traction rods 2304. The traction rods 2304 are both symmetrically equipped with traction wheels 2305. The traction wheels 2305 are symmetrically mounted on the guide blocks 2302. The guide groove 2303 is fitted, one of the traction rods 2304 is symmetrically fixed with a first adjustment rod 2306, and the other traction rod 2304 is symmetrically fixed with a second adjustment rod 2309. A plurality of fixing rods 2310 are fixedly assembled between the two first adjustment rods 2306 and the two second adjustment rods 2309. The fixing plate 2300 and the traction plate 2301 are symmetrically fixed with fixing blocks 2307. The fixing blocks 2307 are located on one side of the guide block 2302. The two fixing blocks 2307 are fixed with connecting rods 2308. The two first adjustment rods 2306 and the two second adjustment rods 2309 are fixed with the connecting rods 2308. The first adjusting rod 2306 and the second adjusting rod 2309 are movably assembled, and the intersection of the two first adjusting rods 2306 and the two second adjusting rods 2309 is movably assembled with a movable rod 2311. The bottoms of the fixed plate 2300 and the traction plate 2301 are symmetrically fixed with vertical blocks 2316, and the bottoms of the vertical blocks 2316 are fixedly assembled with extension blocks 2317, wherein one end of the two extension blocks 2317 is fixedly assembled with a first transparent dust cover 2318, and one end of the other two extension blocks 2317 is fixedly assembled with a second transparent dust cover 2319, and the bottoms of the first transparent dust cover 2318 and the second transparent dust cover 2319 are both fixed with the bottom of the processing chamber 11. The bottom surface is fitted, and assembly blocks 2312 are symmetrically fixedly assembled on the fixed plate 2300. The two assembly blocks 2312 are located between the two guide blocks 2302, and the two assembly blocks 2312 are located on both sides of the traction rod 2304. A guide rod 2313 is symmetrically fixedly assembled between the two assembly blocks 2312, and the guide rod 2313 is movably assembled with the two traction rods 2304. A traction motor 2314 is fixedly assembled on the assembly block 2312, and a transmission screw 2315 is fixedly assembled on the output end of the traction motor 2314. The transmission screw 2315 movably passes through the two assembly blocks 2312, and the transmission screw 2315 is threadedly assembled with the traction rod 2304.

[0022] In the present application, the traction motor 2314 is started, so that the transmission screw 2315 rotates on the traction rod 2304, and the traction rod 2304 moves on the two guide rods 2313, so that the traction rod 2304 drives the two traction wheels 2305 to move in the guide groove 2303 on the guide block 2302. Under the action of the movable rod 2311, the angle between the first adjustment rod 2306 and the second adjustment rod 2309 is changed, and the traction rod 2304 on the traction plate 2301 is moved in the guide groove 2303 on the guide block 2302 by the traction wheel 2305. The second adjusting rod 2309 is deflected on the connecting rod 2308, so that the distance between the traction plate 2301 and the fixed plate 2300 changes, and the traction plate 2301 moves toward the fixed plate 2300. The traction plate 2301 drives the second transparent dust cover 2319 to move toward the first transparent dust cover 2318 through the extension block 2317 on the vertical block 2316, so that the second transparent dust cover 2319 and the first transparent dust cover 2318 are in a closed environment, which prevents dust and debris from flying out during processing, thereby improving operational safety and collection effect.

[0023] Reference Figure 1-Figure 4 The bottom surface of the processing chamber 11 is equipped with a rotating table 20, which is located between the first transparent dust cover 2318 and the second transparent dust cover 2319. The rotating table 20 is fixedly equipped with a robotic arm 12, and the robotic arm 12 is equipped with a mechanical claw 13. The bottom surface of the processing chamber 11 is provided with a mounting port 21, which is located on one side of the rotating table 20 and the first transparent dust cover 2318 and the second transparent dust cover 2319. The mounting port 21 is equipped with a conveying mechanism 22, which includes a conveying frame 2200, which is fixedly assembled with the mounting port 21, and a plurality of transmission rollers 2201 are equipped on the conveying frame 2200. Two symmetrical rollers are equipped on the conveying frame 2200. There are power rollers 2202, which are located on both sides of the transmission roller 2201. Transmission belts 2203 are wrapped around the transmission rollers 2201 and the power rollers 2202. One end of the power rollers 2202 can move through the conveying frame 2200, and one end of the power rollers 2202 is fixedly equipped with a first sprocket 2204. The two first sprockets 2204 are wrapped with a first chain 2205. The conveying frame 2200 is fixedly equipped with a support frame 2206, and the support frame 2206 is fixedly equipped with an operating motor 2207. The output end of the operating motor 2207 can move through the support frame 2206, and the output end of the operating motor 2207 is fixedly equipped with one of the first sprockets 2204.

[0024] In this application, the electrical equipment to be produced is placed on the transmission belt 2203, and the operating motor 2207 is started to rotate the first sprocket 2204. Under the transmission of the first chain 2205, the two first sprockets 2204 rotate in the same direction, and the first sprocket 2204 drives the power roller 2202 to rotate. Under the action of the power roller 2202 and the transmission roller 2201, the transmission belt 2203 drives the electrical equipment to move. When the electrical equipment to be processed is moved to one side of the rotating table 20, the electrical equipment is transferred to the processing position by adjusting the robotic arm 12 and grabbing the robotic claw 13.

[0025] Working principle: The processing equipment is fixedly installed on the inner top surface of the second transparent dust cover 2319, and the produced electrical equipment is placed on the transmission belt 2203. The operating motor 2207 is started to make the first sprocket 2204 rotate. Under the transmission of the first chain 2205, the two first sprockets 2204 rotate in the same direction. The first sprocket 2204 drives the power roller 2202 to rotate. Under the action of the power roller 2202 and the transmission roller 2201, the transmission belt 2203 drives the electrical equipment to move. When the electrical equipment to be processed moves to one side of the rotary table 20, the electrical equipment is transferred to the processed position by adjusting the mechanical arm 12 and grabbing the mechanical claw 13, so that the electrical equipment is located below the processing equipment. The traction motor 2314 is started to make the transmission screw 2315 rotate on the traction rod 2304, so that the traction rod 2304 moves on the two guide rods 2313, which facilitates the traction rod 2304 to drive the two traction rods. The guide wheel 2305 moves in the guide groove 2303 on the guide block 2302. Under the action of the movable rod 2311, the angle between the first adjustment rod 2306 and the second adjustment rod 2309 changes. The traction rod 2304 on the traction plate 2301 moves in the guide groove 2303 on the guide block 2302 through the traction wheel 2305. The second adjustment rod 2309 is deflected on the connecting rod 2308, so that the distance between the traction plate 2301 and the fixed plate 2300 changes. The traction plate 2301 moves toward the fixed plate 2300. The traction plate 2301 drives the second transparent dust cover 2319 to move toward the first transparent dust cover 2318 through the extension block 2317 on the vertical block 2316, so that the second transparent dust cover 2319 and the first transparent dust cover 2318 are in a closed environment. The processing equipment can perform processing operations on electrical equipment, prevent dust and debris from flying out during processing, and improve operational safety and collection effect. Example

[0026] like Figure 3 and Figure 4 and Figure 5 as well as Figure 8As shown, it is a schematic diagram of the structure of an integrated device for processing multifunctional electrical equipment in another preferred embodiment of the present invention. The processing equipment processes the electrical equipment so that debris remains on the processing surface. When the electrical equipment is placed, the processing effect is affected, and the debris cleaning is cumbersome. Therefore, on the basis of Example 1, the device is improved, and the bottom surface of the processing chamber 11 is provided with a feed port 32, and the feed port 32 is located between the rotating table 20 and the second transparent dust cover 2319. The interior of the electrical processing cabinet 10 is provided with a funnel cavity 31, and the funnel cavity 31 is connected to the feed port 32. The bottom surface of the funnel cavity 31 is provided with a feeding chamber 33, and the side of the electrical processing cabinet 10 is inclined to provide a traction chamber 40, and the traction chamber 40 is connected to the feeding chamber 33. The bottom surface of the processing chamber 11 is symmetrically provided with a movable port 41, which is connected to the funnel cavity 31, and the movable port 41 is located on the outside of the second transparent dust cover 2319. The bottom surface of the processing chamber 11 is equipped with a discharge mechanism 30, and the discharge mechanism 30 includes a processing table 3000, which is fixedly assembled with the bottom surface of the processing chamber 11, and a feed port 3001 is provided on the processing table 3000, and the feed port 3001 is connected to the feed port 32. The processing table 3000 is symmetrically fixed with connecting blocks 3002, and the bottoms of the connecting blocks 3002 are fixedly assembled with the bottom surface of the processing chamber 11, and the interiors of the connecting blocks 3002 are connected to the funnel cavity 31. The interiors of the two connecting blocks 3002 are movably equipped with operating rods 3 003, the operating rod 3003 movably passes through the feed port 3001 of the processing table 3000, and the operating rod 3003 is fixedly equipped with a carrier plate 3004, and the carrier plate 3004 is movably assembled with the feed port 3001. Both ends of the operating rod 3003 are fixedly equipped with a second sprocket 3005, and the second sprocket 3005 is located inside the connecting block 3002. The top surface of the funnel cavity 31 is fixedly equipped with two groups of operating plates 3006, and each group of operating plates 3006 has two. A rotating rod 3007 is movably assembled between the two operating plates 3006 of each group, and the rotating rod 3007 is fixedly equipped with a third sprocket 3008. The third sprocket 3008 and the second sprocket 3005 are both wound with a second chain 3009. The rotating rod 3007 is fixedly equipped with a traction gear 3010. The top surface of the funnel chamber 31 is fixedly equipped with four groups of mounting blocks 2320. Each group of mounting blocks 2320 has two mounting blocks. A guide rod 2321 is fixedly equipped between the two mounting blocks 2320 in each group. A slider 2322 is movably equipped on the guide rods 2321 of the two groups of mounting blocks 2320. An operating block 2323 is fixedly equipped between the two sliders 2322. A traction rack 2324 is fixedly equipped on the operating block 2323. The traction rack 2324 is movably assembled with the traction gear 3010. The back of the second transparent dust cover 2319 is fixedly equipped with a bearing block 2325. One end of the bearing block 2325 is fixedly equipped with a guide block 2326.The guide block 2326 is movably assembled with the movable opening 41, and the bottom of the guide block 2326 is fixedly assembled with the operating block 2323.

[0027] Working principle: The second transparent dust cover 2319 moves, so that the bearing block 2325 drives the guide block 2326 to move on the moving port 41, and the guide block 2326 drives the slider 2322 on the operating block 2323 to move on the guide rod 2321 respectively, and the operating block 2323 drives the traction rack 2324 to move. During the movement, the traction rack 2324 drives the rotating rod 3007 on the traction gear 3010 to rotate on the operating plate 3006, and the rotating rod 3007 drives the third sprocket 3008 to rotate. The third sprocket 3008 drives the second sprocket 3005 to rotate through the second chain 3009, and the second sprocket 3005 drives the bearing plate 3004 on the operating rod 3003 to rotate, which is convenient The carrier plate 3004 is deflected so that the debris on the carrier plate 3004 falls into the feed port 3001, and then falls into the funnel cavity 31 from the feed port 32, and falls into the traction chamber 40 from the feeding chamber 33, so as to prevent the electrical equipment from being placed on the carrier plate 3004, and the debris on the carrier plate 3004 from affecting the placement of the electrical equipment, thereby improving the operating effect, avoiding manual cleaning of the processing table 3000, and improving the operating effect. At the same time, when the end faces of the first transparent dust cover 2318 and the second transparent dust cover 2319 are fitted together, the surface of the carrier plate 3004 and the surface of the processing table 3000 are on the same horizontal plane, which facilitates the placement of the electrical equipment on the processing table 3000 and the processing equipment to perform processing operations on the electrical equipment on the carrier plate 3004.

[0028] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention, and such changes and modifications fall within the scope of the invention as claimed.

Claims

1. A multifunctional integrated device for processing electrical equipment, characterized by: include: An electrical processing cabinet (10), wherein a processing chamber (11) is provided on the electrical processing cabinet (10), and a mounting opening (21) is provided on the bottom surface of the processing chamber (11); A dustproof mechanism (23) comprising a fixed plate (2300) and a traction plate (2301), wherein the fixed plate (2300) is fixedly mounted on the top surface of the processing chamber (11), guide blocks (2302) are symmetrically fixedly mounted on the fixed plate (2300) and the traction plate (2301), guide grooves (2303) are provided on the guide blocks (2302), traction rods (2304) are movably mounted on the two guide grooves (2303), and traction wheels (2305) are symmetrically mounted on the traction rods (2304). The bottoms of the fixed plate (2300) and the pulling plate (2301) are symmetrically fixedly equipped with vertical blocks (2316), and the bottoms of the vertical blocks (2316) are fixedly equipped with extension blocks (2317), wherein one end of two extension blocks (2317) is fixedly equipped with a first transparent dust cover (2318), and one end of the other two extension blocks (2317) is fixedly equipped with a second transparent dust cover (2319), and the bottoms of the first transparent dust cover (2318) and the second transparent dust cover (2319) are both fitted with the bottom surface of the processing chamber (11); The conveying mechanism (22) comprises a conveying frame (2200), the conveying frame (2200) is fixedly assembled with the mounting opening (21), a plurality of transmission rollers (2201) are assembled on the conveying frame (2200), and two power rollers (2202) are symmetrically assembled on the conveying frame (2200), and the power rollers (2202) are located on both sides of the transmission rollers (2201); A discharge mechanism (30) comprises a processing table (3000), and the processing table (3000) is fixedly assembled with the bottom surface of the processing chamber (11).

2. The multifunctional integrated device for processing electrical equipment according to claim 1, characterized in that: The traction wheel (2305) is fitted with the guide groove (2303) on the guide block (2302); a first adjustment rod (2306) is symmetrically fixedly assembled on one traction rod (2304); a second adjustment rod (2309) is symmetrically fixedly assembled on the other traction rod (2304); a plurality of fixing rods (2310) are fixedly assembled between the two first adjustment rods (2306) and the two second adjustment rods (2309); and fixing blocks are symmetrically fixedly assembled on the fixing plate (2300) and the traction plate (2301). (2307), the fixed block (2307) is located on one side of the guide block (2302), and the two fixed blocks (2307) are fixedly assembled with a connecting rod (2308), the two first adjustment rods (2306) and the two second adjustment rods (2309) are movably assembled with the connecting rod (2308), and the first adjustment rod (2306) and the second adjustment rod (2309) are in a cross shape, and a movable rod (2311) is movably assembled at the intersection of the two first adjustment rods (2306) and the two second adjustment rods (2309).

3. The multifunctional integrated device for processing electrical equipment according to claim 2, characterized in that: The fixed plate (2300) is symmetrically fixedly assembled with assembly blocks (2312), the two assembly blocks (2312) are located between the two guide blocks (2302), and the two assembly blocks (2312) are located on both sides of the traction rod (2304), a guide rod (2313) is symmetrically fixedly assembled between the two assembly blocks (2312), and the guide rod (2313) is movably assembled with the two traction rods (2304), a traction motor (2314) is fixedly assembled on the assembly block (2312), and a transmission screw (2315) is fixedly assembled at the output end of the traction motor (2314), the transmission screw (2315) movably passes through the two assembly blocks (2312), and the transmission screw (2315) is threadedly assembled with the traction rod (2304).

4. The multifunctional integrated device for processing electrical equipment according to claim 1, characterized in that: The bottom surface of the processing chamber (11) is equipped with a rotating table (20), the rotating table (20) is located between the first transparent dust cover (2318) and the second transparent dust cover (2319), a mechanical arm (12) is fixedly mounted on the rotating table (20), and a mechanical claw (13) is mounted on the mechanical arm (12), and the mounting port (21) is located on one side of the rotating table (20) and the first transparent dust cover (2318) and the second transparent dust cover (2319).

5. The multifunctional integrated device for processing electrical equipment according to claim 4, characterized in that: A transmission belt (2203) is wound around the transmission roller (2201) and the power roller (2202); one end of each power roller (2202) is movably passed through the conveying frame (2200); and one end of each power roller (2202) is fixedly mounted with a first sprocket (2204); a first chain (2205) is wound around the two first sprockets (2204); a support frame (2206) is fixedly mounted on the conveying frame (2200); an operating motor (2207) is fixedly mounted on the support frame (2206); an output end of the operating motor (2207) is movably passed through the support frame (2206), and the output end of the operating motor (2207) is fixedly mounted on one of the first sprockets (2204).

6. The multifunctional integrated device for processing electrical equipment according to claim 4, characterized in that: The bottom surface of the processing chamber (11) is provided with a feed port (32), and the feed port (32) is located between the rotating table (20) and the second transparent dust cover (2319). A funnel cavity (31) is provided inside the electrical processing cabinet (10), and the funnel cavity (31) is in communication with the feed port (32). A feeding chamber (33) is provided on the bottom surface of the funnel cavity (31). A traction chamber (40) is provided at an angle on the side of the electrical processing cabinet (10), and the traction chamber (40) is in communication with the feeding chamber (33). A moving port (41) is symmetrically provided on the bottom surface of the processing chamber (11), and the moving port (41) is in communication with the funnel cavity (31). The moving port (41) is located outside the second transparent dust cover (2319).

7. The multifunctional integrated device for processing electrical equipment according to claim 6, characterized in that: The processing table (3000) is provided with a feed port (3001), which is in communication with the feed port (32). The processing table (3000) is symmetrically fixedly equipped with connecting blocks (3002), the bottoms of the connecting blocks (3002) are fixedly assembled with the bottom surface of the processing chamber (11), and the interiors of the connecting blocks (3002) are in communication with the funnel cavity (31). The interiors of the two connecting blocks (3002) are movably equipped with operating rods (3003), the operating rods (3003) movably pass through the feed port (3001) of the processing table (3000), and a carrying plate (3004) is fixedly assembled on the operating rods (3003), and the carrying plate (3004) is movably assembled with the feed port (3001).

8. The multifunctional integrated device for processing electrical equipment according to claim 7, characterized in that: Both ends of the operating rod (3003) are fixedly equipped with second sprockets (3005), and the second sprocket (3005) is located inside the connecting block (3002). Two groups of operating plates (3006) are fixedly equipped on the top surface of the funnel cavity (31), and each group of operating plates (3006) has two. A rotating rod (3007) is movably equipped between the two operating plates (3006) in each group. A third sprocket (3008) is fixedly equipped on the rotating rod (3007). A second chain (3009) is wound around the third sprocket (3008) and the second sprocket (3005). A traction gear (3010) is fixedly equipped on the rotating rod (3007).

9. The multifunctional integrated device for processing electrical equipment according to claim 8, characterized in that: Four groups of mounting blocks (2320) are fixedly assembled on the top surface of the funnel cavity (31), each group of mounting blocks (2320) having two members. A guide rod (2321) is fixedly assembled between the two mounting blocks (2320) in each group. Slide blocks (2322) are movably assembled on the guide rods (2321) on the two groups of mounting blocks (2320). An operating block (2323) is fixedly assembled between the two slide blocks (2322). A traction rack (2324) is fixedly assembled on the operating block (2323). The traction rack (2324) is movably assembled with the traction gear (3010).

10. The multifunctional integrated device for processing electrical equipment according to claim 9, characterized in that: The end faces of the first transparent dust cover (2318) and the second transparent dust cover (2319) are fitted together, and the surface of the carrier plate (3004) and the surface of the processing table (3000) are on the same horizontal plane.