Casting blank machining device for compressor parts

By designing an automated compressor component casting billet processing device, automatic loading, precise processing and efficient cleaning of the casting billet are achieved, solving the problem of low production efficiency caused by manual participation in the existing technology and improving the processing speed and quality.

CN120734865APending Publication Date: 2025-10-03LOUDI AIHANG PRECISION HARDWARE TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202511252106.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-03
Publication Date
2025-10-03

AI Technical Summary

Technical Problem

The existing compressor parts casting processing equipment requires a lot of manual participation, resulting in low production efficiency.

Method used

A compressor component casting processing device including an electrical cabinet, an automatic loading mechanism and a cleaning mechanism was designed. Through automated loading, grinding and cleaning processes, manual intervention is reduced and integrated operation is achieved.

Benefits of technology

It improves processing speed and production efficiency, improves the processing quality of ingots and the economy of production, and reduces equipment pollution and maintenance costs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120734865A_ABST
    Figure CN120734865A_ABST
Patent Text Reader

Abstract

The invention discloses a compressor part casting blank machining device, and relates to the technical field of casting blank machining, the compressor part casting blank machining device comprises an electrical cabinet, an automatic feeding mechanism and a cleaning mechanism, the automatic feeding mechanism is arranged on the outer side of the electrical cabinet, and the cleaning mechanism is arranged on the outer side of the automatic feeding mechanism; the automatic feeding mechanism comprises a rotating disc, a sliding rail, a sealing rotating groove and a limiting groove, the rotating disc is arranged on the outer side of the sliding rail, the sealing rotating groove is formed in the bottom of the limiting groove, the sliding rail is used for supporting rotation of the rotating disc, and the sealing rotating groove is used for being horizontally sealed with the rotating disc when the rotating disc rotates to a machining station. And the positions of the pushing rods and the clamping arc blocks are synchronously adjusted, castings are pushed to the position under the machining and grinding mechanism at the bottom of the device frame, then the grinding mechanism is started to treat casting blanks, and therefore the automation degree of the equipment is improved, manual participation is reduced, the machining speed is increased, and the production efficiency is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of ports and waterways, and in particular to a compressor component casting processing device. Background Art

[0002] Compressor component ingots refer to the initial blanks used to process the core components of compressors, which are formed by injecting molten metal into a specific mold through a casting process and cooling and solidifying it. They are the basic blanks for manufacturing compressor components and need to undergo subsequent mechanical processing steps such as cutting, grinding, and heat treatment to finally be made into finished parts that meet the precision and performance requirements.

[0003] The compressor parts ingot processing device is necessary to solve the problem that the ingot cannot be used directly. It can remove defects such as pouring nozzles and burrs of the ingot, and achieve high-precision dimensional control and key functional surface treatment of parts through precise processing such as milling, boring and grinding. At the same time, it is adapted to batch production to ensure the consistency of parts in the same batch, and finally transform the ingot into qualified parts that meet the performance, precision and assembly requirements of the compressor.

[0004] However, the existing compressor parts casting process device has the following shortcomings: The compressor parts casting blank processing devices currently on the market use various clamping and calibration devices to accurately process the compressor parts casting blanks, which effectively improves the quality of the compressor parts casting blank processing. However, the current compressor parts casting blank processing devices all require manual use of grinding equipment to grind and correct the casting blanks. As a result, a large number of manual steps are involved in the processing, which slows the processing speed and leads to low production efficiency.

[0005] Therefore, we propose a compressor component casting blank processing device to solve the above-mentioned problems. Summary of the Invention

[0006] The purpose of the present invention is to provide a compressor component casting processing device. After the equipment is started, the electrical cabinet triggers the automatic loading mechanism, and the chassis motor engages with the turntable bevel gear ring to drive the turntable to rotate along the sealed turntable groove. The operator places the casting into the turntable limit groove, the baffle prevents deviation, and the turntable moves to the processing station. The electrical cabinet controls the relevant devices to push the casting under the grinding mechanism, and then starts grinding. At the same time, the cleaning mechanism runs, and the scraping comb peels off the waste residue on the rotating brush. The waste residue and cooling liquid enter the recovery tank through the slag pushing tank. The circulating pump transports the cooling liquid to the spray pipe, flushes the scraping comb residual waste residue into the temporary tank, and pushes the return block to push it back to complete the cycle, finally realizing integrated operation and improving the speed and processing efficiency of the entire work.

[0007] To achieve the above-mentioned object, the present invention provides the following technical solution: a compressor component casting processing device, comprising an electrical cabinet, an automatic feeding mechanism and a cleaning mechanism, wherein the automatic feeding mechanism is arranged outside the electrical cabinet, and the cleaning mechanism is arranged outside the automatic feeding mechanism; The automatic loading mechanism includes a turntable, a slide rail, a sealed turntable groove and a limiting groove. The turntable is arranged on the outside of the slide rail, the sealed turntable groove is arranged at the bottom of the limiting groove, the slide rail is used to support the rotation of the turntable, and the sealed turntable groove is used to seal horizontally with the turntable.

[0008] Preferably, the automatic feeding mechanism also includes a base frame, which is arranged on the outside of the electrical cabinet, and a motor device is provided on the top of the base frame. A slide rail is installed on the top of the base frame, and a turntable is rotatably connected to the outside of the top of the slide rail. A plurality of limiting grooves are opened on the inner side of the top of the turntable, and baffles are installed on both sides of the limiting grooves. A bevel gear ring is installed at the bottom of the turntable, and the bevel gear ring is engaged with the motor device. A machined casting is provided on the inner side of the limiting groove, and a second electric telescopic device is provided at the bottom of the turntable. The sealed rotating groove is rotatably connected to the turntable, and the sealed rotating groove is tightly fitted with the turntable.

[0009] Preferably, the cleaning mechanism includes a cylinder transmission device, and the cylinder transmission device is arranged inside the electrical cabinet.

[0010] Preferably, a plurality of push-pull rods are installed at the output end of the cylinder transmission device, and a plurality of push blocks are installed on the outer sides of the plurality of push-pull rods.

[0011] Preferably, a first scraping comb is installed on the top of the pushing blocks on both sides, a second scraping comb is installed on the top of the middle pushing block, a clamping arc block is installed on the outside of the middle pushing block, and a device plate is provided on the outside of the cylinder transmission device.

[0012] Preferably, a slag pushing groove is provided on the top of the device plate, and the slag pushing groove is slidably connected to the pushing block. A plurality of rotating grooves are provided on the top of the device plate, and a rotating brush is rotatably connected to the inner side of the rotating groove.

[0013] Preferably, a pulley transmission device is provided on the top of the rotating brush, a gear transmission device is provided on the outside of the pulley device, a pulley is provided inside the pulley transmission device, the pulley is installed on the outside of the top of the rotating brush, and two gears are provided inside the gear transmission mechanism.

[0014] Preferably, the two gears are respectively installed on the outer side of the top of the corresponding two rotating brushes, the two gears are located on the top of the pulley, the outer side of the rotating brush is rotatably connected to a limit plate, the limit plate is installed on the top of the electrical cabinet, and a device frame is installed on the top of the limit plate.

[0015] Preferably, a processing and polishing mechanism is installed at the bottom of the device frame, a retaining ring is installed at one end side of the device plate, a recovery groove is provided at the bottom of the retaining ring, the recovery groove is located at the top of the base frame, the inner side of the device plate is slidably connected with a support block, the bottom of the support block is provided with a first electric telescopic rod device, the bottom of the first electric telescopic rod device is installed at the top of the base frame, a support sliding hole is opened on the inner side of the device plate, and the support sliding hole is slidably connected to the support block.

[0016] Preferably, the outside of the recovery tank is connected to a circulation pump, the output end of the circulation pump is connected to a first circulation pipe, a second circulation pipe is provided on the outside of the first circulation pipe, the second circulation pipe is connected to the circulation pump, a spraying pipe is provided at the other end of the first circulation pipe, a temporary waste residue tank is provided on the outside of the spraying pipe, the temporary waste residue tank is installed at the other end of the device plate, a slot is provided on the inside of the temporary waste residue tank, and the slot is slidably connected to the second scraping comb and the push block.

[0017] Compared with the prior art, the present invention has the following beneficial effects: 1. After the equipment of the present invention is started, the electrical cabinet triggers the automatic feeding mechanism to operate, and the motor device on the top of the base frame starts, and by engaging with the bevel gear ring at the bottom of the turntable, it drives the turntable on the slide rail to rotate smoothly along the sealed rotation groove. The operator places the processed casting into the limiting groove on the top of the turntable. The retaining bars on both sides of the groove prevent the casting from shifting. When the turntable rotates to the processing station, the electrical cabinet controls the second electric telescopic device and the cylinder transmission device to start. The two adjust their positions synchronously through the push rod and the clamping arc block, and push the casting to the bottom of the device frame just below the processing and polishing mechanism. Then the polishing mechanism starts to process the ingot, thereby improving the degree of automation of the equipment, reducing manual participation, and increasing the processing speed and production efficiency.

[0018] 2. The electrical cabinet of the equipment of the present invention drives the internal cylinder transmission device, which drives the push-pull rod and the pushing block to slide along the slag pushing groove of the device plate. The first scraping comb on the top of the pushing blocks on both sides and the second scraping comb in the middle move with them, combing the rotating brush driven by the pulley and gear transmission device in the rotating groove, peeling off the surface grinding waste slag, and the waste slag and cooling liquid fall into the slag pushing groove, are pushed to the retaining ring and then fall into the recovery groove, and the circulating pump sends the cooling liquid to the spraying pipe through the first circulation pipe, sprays and washes the residual waste slag of the scraping comb to the temporary waste slag groove, and pushes the mixture in the groove back to the slag pushing groove through the slot when the pushing block returns to complete the cycle. The limit plate, the clamping arc block, and the sealing rotary groove respectively ensure the stability of the brush, the stability of the pushing block and the sealing level of the turntable, thereby realizing the improvement of the ability and speed of collecting waste slag of the compressor parts casting blank processing device, preventing the waste slag from further flowing into the production process, causing damage to the processed workpiece, and improving the production quality of the workpiece. At the same time, through automatic cleaning and collection of waste slag, manual intervention cleaning and shutdown maintenance are avoided, thereby further improving the speed and efficiency of production. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a main structural perspective diagram of a compressor component casting processing device of the present invention; Figure 2 This is a structural exploded perspective view of a compressor component casting processing device according to the present invention; Figure 3 This is an exploded perspective view of a cleaning mechanism in a compressor component casting processing device according to the present invention; Figure 4 for Figure 3 A magnified view of point A in the figure; Figure 5 This is an exploded perspective view of an automatic loading mechanism in a compressor component casting processing device of the present invention; Figure 6 for Figure 5 Enlarged view of point B in FIG. Figure 7 This is a diagram showing the positions of various mechanisms in a compressor component casting processing device of the present invention.

[0020] In the figure: 1. Electrical cabinet; 2. Cleaning mechanism; 201. Cylinder transmission device; 202. Push-pull rod; 203. Push block; 204. First scraping comb; 205. Second scraping comb; 206. Clamping arc block; 207. Device plate; 208. Slag pushing trough; 209. Rotating trough; 210. Rotating brush; 211. Pulley transmission device; 212. Gear transmission device; 213. Limiting plate; 214. Device frame; 215. Retaining ring; 216. Recovery trough; 217. Circulation pump; 218 , first circulation pipe; 219, second circulation pipe; 220, spraying pipe; 221, temporary waste slag trough; 222, slotting; 223, first electric telescopic device; 224, support block; 3, automatic loading mechanism; 301, base frame; 302, motor device; 303, turntable; 304, limit groove; 305, baffle; 306, processing casting; 307, second electric telescopic rod device; 308, sealing rotating groove; 309, support slide hole; 310, slide rail; 4, processing and polishing mechanism. DETAILED DESCRIPTION

[0021] 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 implementation regulations described are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0022] Example 1, according to Figure 1 - Figure 7As shown, in order to achieve the above-mentioned purpose, the present invention provides the following technical solutions: a compressor component casting processing device, comprising an electrical cabinet 1, an automatic feeding mechanism 3 and a cleaning mechanism 2, wherein the automatic feeding mechanism 3 is arranged on the outside of the electrical cabinet 1, and the cleaning mechanism 2 is arranged on the outside of the automatic feeding mechanism 3, the automatic feeding mechanism 3 comprises a turntable 303, a slide rail 310, a sealing rotation groove 308 and a limiting groove 304, the turntable 303 is arranged on the outside of the slide rail 310, the sealing rotation groove 308 is arranged at the bottom of the limiting groove 304, the slide rail 310 is used to support the rotation of the turntable 303, the sealing rotation groove 308 is used to horizontally seal with the turntable 303, the automatic feeding mechanism 3 also includes a base frame 301, the The base frame 301 is arranged on the outside of the electrical cabinet 1, and a motor device 302 is provided on the top of the base frame 301. A slide rail 310 is installed on the top of the base frame 301, and a turntable 303 is rotatably connected to the outside of the top of the slide rail 310. A plurality of limiting grooves 304 are opened on the inner side of the top of the turntable 303, and baffles 305 are installed on both sides of the limiting grooves 304. A bevel gear ring is installed at the bottom of the turntable 303, and the bevel gear ring is engaged with the motor device 302. A machined casting 306 is provided on the inner side of the limiting groove 304. A second electric telescopic device 307 is provided at the bottom of the turntable 303, and the sealed rotating groove 308 is rotatably connected to the turntable 303, and the sealed rotating groove 308 is tightly fitted with the turntable 303.

[0023] The effect achieved by the entire embodiment 1 is as follows: after the equipment is started, the electrical cabinet 1 serves as the core control unit to trigger the automatic feeding mechanism 3 to operate, and the motor device 302 on the top of the base frame 301 is started accordingly. Through the meshing transmission with the bevel gear ring at the bottom of the turntable 303, the turntable 303 on the top of the slide rail 310 is driven to rotate smoothly along the sealed rotating groove 308. Here, the close fit and horizontal sealing characteristics of the sealed rotating groove 308 and the turntable 303 prevent grinding waste and cooling liquid from penetrating into the transmission structure at the bottom of the turntable 303, while avoiding lubricating oil pollution and wear caused by the transmission component limit. The turntable 303 always remains horizontal during the rotation process, avoiding the position displacement of the limiting groove 304 caused by the tilt of the turntable 303. When the operator places the processed casting 306 into the multiple limiting grooves 304 on the top of the turntable 303, the blocking bars 305 on both sides of the groove can directly prevent the casting from lateral displacement during the rotation of the turntable 303, while preventing the waste slag pushed by the pushing block and the cooling liquid from flowing out of the slag pushing groove 208.

[0024] Example 2, according to Figure 2 - Figure 4As shown, the cleaning mechanism 2 includes a cylinder transmission device 201, which is arranged inside the electrical cabinet 1. A plurality of push-pull rods 202 are installed at the output end of the cylinder transmission device 201. A plurality of push-pull rods 202 are installed on the outside of the plurality of push-pull rods 202. A first scraping comb 204 is installed on the top of the push blocks 203 on both sides, a second scraping comb 205 is installed on the top of the middle push block 203, a clamping arc block 206 is installed on the outside of the middle push block 203, and a device plate 207 is installed on the outside of the cylinder transmission device 201. A slag pushing groove 208 is provided on the top of the device plate 207, and the slag pushing groove 208 is slidingly connected to the pushing block 203. A plurality of rotating grooves 209 are provided on the top of the device plate 207, and a rotating brush 210 is rotatably connected to the inner side of the rotating groove 209. A pulley transmission device 211 is provided on the top of the rotating brush 210, and a gear transmission device 212 is provided on the outside of the pulley device. A pulley is provided in the pulley transmission device 211, and the pulley is installed on the outside of the top of the rotating brush 210. Two gears are provided in the gear transmission mechanism.

[0025] The effect achieved by the entire embodiment 2 is as follows: when the turntable 303 rotates to the processing station, the electrical cabinet 1 synchronously controls the second electric telescopic device 307 and the cylinder transmission device 201 to start, and the push rod of the second electric telescopic device 307 and the clamping arc block 206 of the cylinder transmission device 201 cooperate to clamp, and the push rod pushes the ingot to move toward the processing center, and the clamping arc block 206 assists in positioning from both sides, and the precise centering of the ingot is achieved by adjusting the positions of the two, and it is pushed smoothly to the bottom of the device frame 214 directly below the processing and polishing mechanism 4. In this process, the clamping arc block 206 enhances the structural stability of the push block 203 during operation, and fits with the surface of the ingot through the arc-shaped contact surface, avoiding the pressure damage to the ingot caused by rigid clamping, thereby ensuring the shape accuracy of the casting. Subsequently, the processing and grinding mechanism 4 starts to grind the ingot. The vibration during the grinding process is transmitted to the limit plate 213 through the device frame 214. The limit plate 213 provides a stable support structure for the rotating brush 210, which can indirectly disperse the vibration load and prevent the rotating brush 210 from axial displacement or radial runout due to vibration, thereby ensuring that the cleaning mechanism 2 and the processing mechanism operate synchronously.

[0026] Example 3, according to Figure 2 - Figure 7As shown, the two gears are respectively arranged on the outer sides of the tops of the corresponding two rotating brushes 210, and the two gears are located on the top of the pulley. The outer sides of the rotating brushes 210 are rotatably connected to the limit plate 213, and the limit plate 213 is arranged on the top of the electrical cabinet 1. A device frame 214 is arranged on the top of the device frame 214, and a processing and polishing mechanism 4 is arranged on the bottom of the device frame 214. A retaining ring 215 is arranged on one end side of the device plate 207, and a recovery groove 216 is arranged at the bottom of the retaining ring 215. The recovery groove 216 is located at the top of the base frame 301. The inner side of the device plate 207 is slidably connected to the support block 224, and the bottom of the support block 224 is provided with a first electric telescopic rod device 223. The bottom of the first electric telescopic rod device 223 is arranged at At the top of the base frame 301, a support sliding hole 309 is opened on the inner side of the device plate 207, and the support sliding hole 309 is slidably connected to the support block 224. The outer side of the recovery tank 216 is connected to the circulation pump 217, and the output end of the circulation pump 217 is connected to the first circulation pipe 218. A second circulation pipe 219 is provided on the outer side of the first circulation pipe 218, and the second circulation pipe 219 is connected to the circulation pump 217. A spraying pipe 220 is installed at the other end of the first circulation pipe 218, and a temporary waste residue tank 221 is provided on the outer side of the spraying pipe 220. The temporary waste residue tank 221 is installed at the other end of the device plate 207, and a slot 222 is opened on the inner side of the temporary waste residue tank 221, which is slidably connected to the second scraping comb 205 and the push block 203.

[0027] The effect achieved by the entire embodiment 3 is that, while processing and polishing, the cleaning mechanism 2 is started synchronously, the electrical cabinet 1 drives the internal cylinder transmission device 201, and drives multiple push-pull rods 202 and the connected pushing blocks 203 to slide along the slag pushing groove 208 on the top of the device plate 207, and the first scraping comb 204 on the top of the pushing blocks 203 on both sides and the second scraping comb 205 on the top of the middle pushing block 203 move with the pushing block 203 to comb the rotating brush 210 in the rotating groove 209. The rotating brush 210 is driven to rotate by the pulley transmission device 211 and the gear transmission device 212. The combined transmission of the pulley and the gear ensures the consistency of the rotation speed of multiple groups of brushes, and through the reverse rotation of the gear meshing, the adjacent brushes form a counter-combing action, thereby enhancing the waste slag stripping. The grinding waste residue and the grinding cooling liquid peeled off by the scraping comb fall into the slag pushing groove 208 together, and the pushing block 203 pushes them to the retaining ring 215 at one end of the device plate 207, and finally falls into the recovery groove 216 on the top of the base frame 301. The retaining structure of the retaining ring 215 can prevent the waste residue and the cooling liquid from overflowing from the slag pushing groove 208 during the pushing process, thereby reducing the pollution of the workshop environment and equipment. After the circulation pump 217 outside the recovery groove 216 is started, the grinding cooling liquid collected in the groove is transported to the spray pipe 220 through the first circulation pipe 218. The spray pipe 220 sprays in the direction of the temporary waste residue groove 221, and the spraying liquid rinses the first The waste residue remaining on the first scraping comb 204 and the second scraping comb 205 is prevented from being clogged in the comb teeth and affecting the subsequent cleaning effect. At the same time, the recycled cooling liquid realizes the reuse of water resources and reduces the cost of water for production. The reverse first scraping comb 204 and the second scraping comb 205 can make full use of their kinetic energy in the back and forth movement of the pushing block 203. When the pushing block 203 is retracted, the waste residue and the cooling liquid are brought into the temporary waste residue tank 221. The inner bottom of the temporary waste residue tank 221 is level with the inner bottom of the pushing slag tank 208, so that the rear pushing block 203 among the multiple pushing blocks 203 carries and pushes the waste residue and the cooling liquid, and the waste residue and the cooling liquid are located between the front pushing block 203, thereby ensuring the cleaning ability of the front pushing block 203 when it moves forward, and spraying at the same time. The waste residue and the flushing liquid after the waste residue enter the temporary waste residue tank 221. When the pushing block 203 moves back, the mixture in the tank is pushed into the slag pushing tank 208 through the slot 222 of the temporary waste residue tank 221, and then pushed to the recovery tank 216 to complete the closed-loop cleaning process of collection, filtration and recycling. In this process, the slot 222 of the temporary waste residue tank 221 is tightly fitted with the return path of the pushing block 203, and the secondary collection of waste residue can be achieved without additional power, which simplifies the transmission structure of the cleaning mechanism 2 and reduces the energy consumption and maintenance cost of the equipment. During the whole process, the horizontal sealing characteristics of the sealing rotating groove 308 ensure the high consistency of the rotation of the turntable 303, reduces the processing error caused by the shaking of the turntable 303, and improves the grinding accuracy of the compressor component casting.The stable support provided by the slide rail 310 for the turntable 303, combined with the meshing transmission of the bevel gear ring, reduces load fluctuations on the motor assembly 302 and extends the motor's service life. The integrated design of the slag trough 208 and the rotating trough 209 on the assembly plate 207 reduces the equipment's assembly clearance, improves the overall structural compactness, and saves workshop installation space. Ultimately, through the functional complementarity and coordinated optimization of various components, an integrated operation is achieved for automatic billet loading, precise processing, efficient cleaning, and resource recycling, improving the processing efficiency, product quality, and production economy of compressor component billets.

[0028] The entire equipment operates as follows: After startup, the electrical cabinet 1 triggers the automatic loading mechanism 3, activating the motor 302 atop the base frame 301. This engages the bevel gear ring at the bottom of the turntable 303, driving the turntable 303 atop the slide rail 310 to rotate smoothly along the sealed groove 308. An operator places the workpiece 306 into the multiple retaining grooves 304 atop the turntable 303. Bars 305 on either side of the grooves prevent the workpiece from shifting. When the turntable 303 rotates to the processing station, the electrical cabinet 1 activates the second electric telescopic mechanism 307 in conjunction with the cylinder transmission mechanism 201. The push rod on the second electric telescopic mechanism 307 and the clamping block 206 on the cylinder transmission mechanism 201 synchronize and adjust their positions, pushing the workpiece in the retaining grooves 304 to directly below the processing and polishing mechanism 4 at the bottom of the device frame 214. The processing and polishing mechanism 4 then activates and polishes the workpiece. At the same time, the cleaning mechanism 2 runs synchronously, and the electrical cabinet 1 drives the internal cylinder transmission device 201, driving multiple push-pull rods 202 and the connected pushing blocks 203 to slide along the slag pushing groove 208 on the top of the device plate 207. The first scraping comb 204 on the top of the pushing blocks 203 on both sides and the second scraping comb 205 on the top of the middle pushing block 203 comb the rotating brush 210 in the rotating groove 209 as the pushing block 203 moves. The rotating brush 210 is driven to rotate by the pulley transmission device 211 and the gear transmission device 212, and the grinding waste attached to its surface is stripped off by the scraping comb. The stripped waste residue and grinding cooling liquid fall into the slag pushing groove 208, and are pushed to the retaining ring 215 at one end of the device plate 207 by the pushing block 203, and finally fall into the recovery groove 216 on the top of the base frame 301. The outside of the recovery groove 216 The circulation pump 217 is started, and the polishing cooling liquid collected in the tank is transported to the spraying pipe 220 through the first circulation pipe 218. The spraying pipe 220 sprays in the direction of the temporary waste slag tank 221 to flush the waste slag remaining on the first scraping comb 204 and the second scraping comb 205 into the temporary waste slag tank 221. When the pushing block 203 moves back, it will pass through the slot 222 of the temporary waste slag tank 221 to push the waste slag and flushing liquid in the tank into the slag pushing tank 208, and then push them to the recovery tank 216 to complete the cycle. During the whole process, the limit plate 213 plays a stabilizing supporting role for the rotating brush 210, the clamping arc block 206 enhances the operating stability of the pushing block 203, and the sealed rotating groove 308 ensures the sealing of the turntable 303 during rotation and the consistent horizontal height, finally realizing the integrated operation of automatic loading, processing and cleaning of the casting.

[0029] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A compressor component casting processing device, comprising an electrical cabinet (1), an automatic feeding mechanism (3) and a cleaning mechanism (2), characterized in that: The automatic feeding mechanism (3) is arranged outside the electrical cabinet (1), and the cleaning mechanism (2) is arranged outside the automatic feeding mechanism (3); The automatic feeding mechanism (3) comprises a turntable (303), a slide rail (310), a sealing groove (308) and a limiting groove (304); the turntable (303) is arranged on the outside of the slide rail (310); the sealing groove (308) is arranged at the bottom of the limiting groove (304); the slide rail (310) is used to support the rotation of the turntable (303); and the sealing groove (308) is used to horizontally seal with the turntable (303).

2. The compressor component casting processing device according to claim 1, characterized in that: The automatic feeding mechanism (3) further comprises a base frame (301), the base frame (301) being arranged outside the electrical cabinet (1), a motor device (302) being arranged on the top of the base frame (301), a slide rail (310) being arranged on the top of the base frame (301), a turntable (303) being rotatably connected to the outer side of the top of the slide rail (310), a plurality of limiting grooves (304) being provided on the inner side of the top of the turntable (303), and the limiting grooves (304) being arranged on the inner side of the top of the turntable (303). ) are provided with baffles (305) on both sides, a bevel gear ring is provided at the bottom of the turntable (303), the bevel gear ring is engaged with the motor device (302), a machined casting (306) is provided on the inner side of the limiting groove (304), a second electric telescopic device (307) is provided at the bottom of the turntable (303), the sealed rotating groove (308) is rotatably connected to the turntable (303), and the sealed rotating groove (308) is tightly fitted with the turntable (303).

3. The compressor component casting processing device according to claim 1, characterized in that: The cleaning mechanism (2) comprises a cylinder transmission device (201), and the cylinder transmission device (201) is arranged inside the electrical cabinet (1).

4. The compressor component casting processing device according to claim 3, characterized in that: A plurality of push-pull rods (202) are installed at the output end of the cylinder transmission device (201), and a plurality of push blocks (203) are installed on the outer sides of the plurality of push-pull rods (202).

5. The compressor component casting processing device according to claim 4, characterized in that: A first scraping comb (204) is installed on the top of the pushing blocks (203) on both sides, a second scraping comb (205) is installed on the top of the middle pushing block (203), a clamping arc block (206) is installed on the outer side of the middle pushing block (203), and a device plate (207) is provided on the outer side of the cylinder transmission device (201).

6. The compressor component casting processing device according to claim 5, characterized in that: A slag pushing groove (208) is provided on the top of the device plate (207), and the slag pushing groove (208) is slidably connected to the pushing block (203). A plurality of rotating grooves (209) are provided on the top of the device plate (207), and a rotating brush (210) is rotatably connected to the inner side of the rotating groove (209).

7. The compressor component casting processing device according to claim 6, characterized in that: A pulley transmission device (211) is provided on the top of the rotating brush (210), a gear transmission device (212) is provided on the outside of the pulley device, a pulley is provided inside the pulley transmission device (211), the pulley is installed on the outside of the top of the rotating brush (210), and two gears are provided inside the gear transmission mechanism.

8. The compressor component casting processing device according to claim 7, characterized in that: The two gears are respectively mounted on the outer sides of the tops of the two corresponding rotating brushes (210), the two gears are located on the top of the pulley, the outer sides of the rotating brushes (210) are rotatably connected to a limiting plate (213), the limiting plate (213) is mounted on the top of the electrical cabinet (1), and a device frame (214) is mounted on the top of the limiting plate (213).

9. The compressor component casting processing device according to claim 8, characterized in that: A processing and polishing mechanism (4) is installed at the bottom of the device frame (214), a retaining ring (215) is installed on one end side of the device plate (207), a recovery groove (216) is provided at the bottom of the retaining ring (215), and the recovery groove (216) is located at the top of the base frame (301), the inner side of the device plate (207) is slidably connected to a support block (224), the bottom of the support block (224) is installed with a first electric telescopic rod device (223), the bottom of the first electric telescopic rod device (223) is installed at the top of the base frame (301), and a support sliding hole (309) is opened on the inner side of the device plate (207), and the support sliding hole (309) is slidably connected to the support block (224).

10. The compressor component casting processing device according to claim 9, characterized in that: The outside of the recovery tank (216) is connected to a circulation pump (217), the output end of the circulation pump (217) is connected to a first circulation pipe (218), a second circulation pipe (219) is provided on the outside of the first circulation pipe (218), the second circulation pipe (219) is connected to the circulation pump (217), a spraying pipe (220) is provided on the other end of the first circulation pipe (218), a temporary waste residue tank (221) is provided on the outside of the spraying pipe (220), the temporary waste residue tank (221) is installed at the other end of the device plate (207), a slot (222) is provided on the inside of the temporary waste residue tank (221), and the slot (222) is slidably connected to the second scraping comb (205) and the push block (203).