Grinding material recovery device and system for grinding

By designing separation and material distribution mechanisms, the problem of moisture separation in grinding material recycling was solved, achieving efficient and automated recycling of grinding materials and improving recycling quality and efficiency.

CN121670531APending Publication Date: 2026-03-17CHONGQING LINGDA MAGNETIC MATERIAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-03
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

In existing technologies, the grinding material recovery method that relies solely on water flushing is difficult to achieve sufficient and effective separation and recovery, resulting in the recovered grinding material still containing a large amount of moisture.

Method used

A grinding material recovery device including a separation mechanism and a material distribution mechanism was designed. By setting up components such as a separation tank, a water storage tank, a water pump, a stirring roller, a scraper, and a filter screen, the device can realize the separation and automated extraction of grinding material and water.

Benefits of technology

It improves the efficiency and purity of abrasive material recycling, reduces the complexity and labor intensity of manual operation, ensures that moisture can be automatically separated from the abrasive material during the recycling process, and improves the recycling quality.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 2F270E42-CC17-4765-8966-C6DC35CA75F0
    Figure 2F270E42-CC17-4765-8966-C6DC35CA75F0
  • Figure 3E05F146-14A1-41C8-80D2-29FBE5E6F241
    Figure 3E05F146-14A1-41C8-80D2-29FBE5E6F241
  • Figure 48CC39AC-96D8-493D-A884-6175F237A61E
    Figure 48CC39AC-96D8-493D-A884-6175F237A61E
Patent Text Reader

Abstract

The invention relates to the technical field of grinding, in particular to a grinding material recovery device and system for grinding, which comprises a separation mechanism, a material distribution mechanism is arranged on the front side of the separation mechanism, the separation mechanism comprises a separation tank, and a blanking table is arranged on the rear side of the separation tank. According to the grinding material recycling device, the separating mechanism and the material distributing mechanism are arranged, accurate control and efficient execution of the grinding material recycling process are achieved, and it is ensured that grinding materials can be smoothly transited to a separating state from an initial storage state through precise cooperation of the material storage barrel, the discharging inclined plate, the separating pool body and various transmission and stirring assemblies; and then recovery is completed through an automatic extraction process. In the whole process, the actions of all the components are coordinated and consistent, so that the recovery efficiency is improved, and the complexity and the labor intensity of manual operation are greatly reduced; in addition, the filter screen design and the lifting extraction mechanism are adopted, so that water can be automatically separated from the grinding materials in the extraction process.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of grinding, more particularly, the present application relates to a grinding grinding material recycling device and system. BACKGROUND

[0002] Grinding grinding material refers to the fine particle waste generated during grinding due to the relative movement and friction between the grinding tool and the workpiece. These grinding materials not only contain small debris of the workpiece material, but also mix with worn particles of the grinding tool and residues of the cooling liquid or lubricant that may be used. In traditional grinding processes, these grinding materials are often considered as waste and directly discharged, which not only wastes resources, but also may pollute the environment. Therefore, it is particularly important to develop an efficient and environmentally friendly grinding grinding material recycling device and system.

[0003] According to the patent document: CN106607436A, a kind of automobile parts grinding waste recycling system, including lifting system, lifting system middle part is equipped with lifting device, lifting device outer side is equipped with helical blade, lifting device top is equipped with driven transmission mechanism;Lifting system upper left side is fixedly provided with motor, motor upper portion is equipped with power system shaft;Lifting system upper right end is equipped with discharging system, and heating system is installed above discharging system;Discharging system below is equipped with discharging mechanism, and discharging mechanism lower portion is equipped with liquid accumulation system;The lower left end of discharging system is equipped with extrusion system;Extrusion system above is equipped with upper hydraulic system;The left part of extrusion system is equipped with lower hydraulic system.The system can effectively dry the automobile parts grinding waste, expand the use range of automobile parts grinding waste, and avoid the harm to the environment caused by the discharge of automobile parts grinding waste.

[0004] Generally, when recycling the grinding material generated during grinding, the commonly used method is to use water flow impact to flush the grinding material from the processing area to the pre-set specific collection area. However, this simple water flushing recycling method may face some limitations in actual operation. Simple water flushing often cannot achieve sufficient and effective separation and recycling of the grinding material, cannot well handle the separation of water and grinding material, and causes the recycled grinding material to still contain a large amount of water. SUMMARY

[0005] In order to overcome the above-mentioned defects of the prior art, the present application provides a grinding grinding material recycling device and system, and the technical problems to be solved by the present application are: this simple water flushing recycling method may face some limitations in actual operation. Simple water flushing often cannot achieve sufficient and effective separation and recycling of the grinding material, cannot well handle the separation of water and grinding material, and causes the recycled grinding material to still contain a large amount of water.

[0006] To solve the above technical problems, the technical scheme adopted by the present application is: A grinding grinding material recycling device, comprising a separating mechanism, the front side of the separating mechanism is provided with a material distribution mechanism; The separating mechanism comprises a separation tank, and the rear side of the separation tank is provided with a discharging table; The material distribution mechanism comprises a guide base, and the rear side of the inner side of the guide base is provided with a discharging lifting piece.

[0007] As a further scheme of the present application: the separation tank comprises a separation tank body, the top of the front side of the separation tank body is fixedly connected with a water storage tank, the left side of the water storage tank is fixedly connected with a water pump, the bottom of the middle of the front side of the separation tank body is fixedly connected with a water pump connecting plate, the top of the water pump connecting plate is fixedly connected with a water pump, the left side of the water storage tank is provided with a water pipe, one end of the water pipe away from the water storage tank is fixedly connected with the input end of the water pump, the output end of the water pump extends to the inside of the separation tank body, the front side of the left and right sides of the separation tank body is fixedly connected with a supporting side stand, and the front side of the inside of the separation tank body is fixedly connected with a partition plate.

[0008] As a further scheme of the present application: the front and rear sides of the left and right sides of the top of the separation tank body are fixedly connected with columnar transverse rod sleeve blocks, the inner sides of the front and rear two groups of columnar transverse rod sleeve blocks are rotatably connected with columnar transverse rods, the left ends of the two columnar transverse rods are fixedly connected with transmission discs, the left and right sides of the outer walls of the two ends of the columnar transverse rods and located between the inner sides of the front and rear two groups of columnar transverse rod sleeve blocks are fixedly connected with gears, the outer sides of the left and right two groups of gears are meshingly sleeved with chains, the front and rear sides of the top outer walls of the two chains are fixedly connected with scrapers, the rear top of the right side of the separation tank body is fixedly connected with a motor connecting plate, the top of the motor connecting plate is fixedly connected with a motor, the output end of the motor is fixedly connected with a transmission sprocket set, and the left side of the front side of the transmission sprocket set is fixedly connected with the right end of the columnar transverse rod on the rear side.

[0009] As a further scheme of the present application: the outer walls of the two transmission discs are sleeved with caterpillar belts, the inner walls of the two caterpillar belts are sleeved with second transmission discs at the bottom, the right sides of the two second transmission discs are fixedly connected with stirring roller rotating rods, the right ends of the two stirring roller rotating rods rotatably extend to the inside of the separation tank body and are rotatably connected with the front and rear sides of the inner wall of the right side of the separation tank body respectively, the outer walls of the ends of the two stirring roller rotating rods located in the inside of the separation tank body are fixedly connected with stirring rollers, the left and right sides of the top rear side of the separation tank body are fixedly connected with L-shaped connecting side blocks, and the inner sides of the two L-shaped connecting side blocks are fixedly connected with discharging inclined plates.

[0010] As a further scheme of the present application: the blanking station comprises a blanking guide frame, the left and right sides of the rear bottom of the blanking guide frame are fixedly connected with rear support vertical rods, the left and right sides of the front bottom of the blanking guide frame are fixedly connected with side connecting plates, the bottoms of the outer sides of the two side connecting plates are fixedly connected with second support side vertical plates, the front side and the top of the blanking guide frame are designed as openings, the left and right sides of the top of the blanking guide frame are fixedly connected with guide side plates, a pushing plate is slidably connected between the inner walls of the rear sides of the two guide side plates, the left and right sides of the pushing plate are slidably connected with side pushing plates, the inner sides of the two side pushing plates are each provided with a sliding groove, the left and right ends of the pushing plate are respectively slidably connected to the inner sides of the sliding grooves provided in the two side pushing plates, the left and right sides of the rear side of the blanking guide frame are fixedly connected with rear connecting plates, the inner sides of the two rear connecting plates are fixedly connected with a material storage cylinder, the front side of the material storage cylinder and the side of the top of the pushing plate are fixedly connected with a material storage cylinder blanking block, and the rear side of the blanking inclined plate is fixedly inserted into the opening in the front side of the blanking inclined plate.

[0011] As a further scheme of the present application: the guide base comprises two guide side rods, the rear sides of the inner sides of the two guide side rods are respectively fixedly connected between the tops of the same side support side vertical plate and the same side second support side vertical plate, the left and right sides of the outer rear sides of the two guide side rods are fixedly connected with L-shaped guide blocks, the left and right sides of the front bottoms of the two guide side rods are fixedly connected with third support side vertical plates, the inner top of the two third support side vertical plates is fixedly connected with a columnar push rod guide block, the inner side of the columnar push rod guide block on the right side is fixedly connected with an electric push rod, the front end of the electric push rod is fixedly connected with a T-shaped push-pull plate, the left and right sides of the rear top of the T-shaped push-pull plate are fixedly connected with columnar push rods, the rear ends of the two columnar push rods respectively pass through the inner sides of the two columnar push rod guide blocks and extend to the outer sides of the rear sides of the two columnar push rod guide blocks, the left and right sides of the T-shaped push-pull plate are fixedly connected with L-shaped side push-pull horizontal plates, the rear bottoms of the two L-shaped side push-pull horizontal plates are respectively slidably connected to the tops of the two groups of L-shaped guide blocks, and the rear sides of the tops of the two L-shaped side push-pull horizontal plates are respectively fixedly connected to the bottoms of the two side pushing plates.

[0012] As a further scheme of the present application: the blanking lifting piece comprises a push-pull plate, the left and right sides of the opening inner wall of the push-pull plate are fixedly connected with lifting push rod connecting blocks, the rear sides of the inner sides of the two lifting push rod connecting blocks are fixedly connected with a lifting push rod, the top and bottom of the left and right sides of the push-pull plate are fixedly connected with side link rods, the inner sides of the left and right two groups of side link rods and the left and right sides at the rear side of the push-pull plate are fixedly connected with two vertical moving rods, the top of the inner sides of the left and right two groups of vertical moving rods is fixedly connected with a reverse L-shaped plate, the outer wall bottoms of the left and right two groups of vertical moving rods are respectively slidably connected with the top of the two guide side rods, and the left and right sides of the front side of the push-pull plate are respectively fixedly connected with the rear ends of the two columnar push rods.

[0013] As a further scheme of the present application: the top of the reverse L-shaped plate is designed as an opening through design, the left and right sides of the top of the rear side of the reverse L-shaped plate are fixedly connected with lifting vertical rod guide blocks, the inner sides of the two lifting vertical rod guide blocks are slidably connected with lifting vertical rods, the outer side tops of the two lifting vertical rods are fixedly connected with lifting side push plates, the front sides of the inner sides of the two lifting side push plates are fixedly connected with lifting vertical push plates, the bottoms of the two lifting vertical push plates pass through the opening of the reverse L-shaped plate and respectively extend to the left and right sides of the outer side of the bottom of the reverse L-shaped plate, the inner side bottoms of the two lifting vertical push plates are fixedly connected with a lifting horizontal push plate, and the bottom of the lifting horizontal push plate is fixedly connected with the top end of the lifting push rod.

[0014] As a further scheme of the present application: the bottoms of the two lifting vertical rods extend to the inside of the separation tank main body and are located at one side of the front side of the partition plate, the inner side bottoms of the two lifting vertical rods located in the inside of the separation tank main body are fixedly connected with a blanking frame, and the bottom of the blanking frame is designed as a filter screen.

[0015] In addition, the present application also relates to a grinding grinding material recycling system, comprising the following steps: Step one: the grinding material to be recycled is introduced into the storage cylinder by flushing or the like for preliminary storage, at this time, the storage cylinder plays a role in collecting the grinding material, avoiding the scattering of the grinding material; Step two: the grinding material in the storage cylinder is discharged to the top of the blanking inclined plate through the storage cylinder blanking block, the blanking inclined plate guides the grinding material to smoothly slide to the inside of the separation tank main body by virtue of the specific inclination angle, and prepares for the subsequent separation treatment; Step three: the motor is started, the motor output end drives the transmission sprocket set to rotate, the transmission sprocket set drives the rear columnar horizontal rotating rod to rotate, the rear columnar horizontal rotating rod drives the second transmission disc to rotate through the transmission disc and the track belt, the second transmission disc drives the stirring roller rotating rod to rotate, and then the stirring roller stirs the grinding material and water in the separation tank main body, the grinding material is made to float on the water surface through stirring, and the preliminary separation of the grinding material and water is realized; Step four: the rear cylindrical transverse rod drives the front cylindrical transverse rod to rotate through gears and chains, and the two cylindrical transverse rods drive the scrapers on the chain to scrape the ground material floating on the surface of the separation tank main body, and the ground material is scraped into the discharge frame in front of the partition plate, and the concentration collection of the ground material is completed; Step five: when the ground material in the discharge frame accumulates to a certain extent, the lifting push rod is started, the lifting push rod pushes the lifting transverse plate upward, and a series of linkage structures drive the lifting vertical rod to slide upward in the lifting vertical rod guide block, so that the discharge frame is lifted out of the separation tank main body; since the bottom of the discharge frame is designed as a filter screen, water leaks out of the filter screen during the lifting process, and only the ground material is left; Step six: when the discharge frame is lifted to a suitable height, the electric push rod is started, the front end of the electric push rod pulls the T-shaped push-pull plate to move forward, and the related linkage structures drive the push plate to further push the ground material that may be left on the storage cylinder downward block forward, so as to ensure that the ground material enters the discharge inclined plate and falls into the separation tank main body, and at the same time, the rear end of the cylindrical push rod pushes the push-pull plate, so that the discharge frame moves to a suitable position in front of the separation tank main body, facilitating the removal of the ground material in the discharge frame which has been filtered to remove water for subsequent processing.

[0016] The beneficial effects of the present application are: The present application realizes precise control and efficient execution of the ground material recycling process by setting the separation mechanism and the material distribution mechanism, and through the precise cooperation of the storage cylinder, the discharge inclined plate, the separation tank main body and various transmission and stirring components, it ensures that the ground material can smoothly transition from the initial storage state to the separation state, and then complete recycling through the automatic extraction process; during the whole process, the actions of the components are coordinated, which not only improves the recycling efficiency, but also greatly reduces the complexity and labor intensity of manual operation; in addition, the filter screen design and the lifting extraction mechanism used in the present application enable the ground material to automatically separate water during the extraction process, further improving the purity and quality of the recycling. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a schematic diagram of the main body of the present application; Figure 2 It is a schematic diagram of the main body of the present application; Figure 3 It is a schematic diagram of the main body of the present application; Figure 4 It is a schematic diagram of the main body of the present application; Figure 5 It is a schematic diagram of the main body of the present application; Figure 6 It is a schematic diagram of the main body of the present application; Figure 7This is a schematic diagram of the three-dimensional separation structure of the material distribution mechanism of the present invention; Figure 8 This is a three-dimensional structural diagram of the guide base of the present invention; Figure 9 This is a three-dimensional structural diagram of the material feeding and lifting component of the present invention; Figure 10 This is a schematic diagram of the three-dimensional separation structure of the material feeding and lifting component of the present invention.

[0018] In the diagram: 1. Separation mechanism; 11. Separation tank; 111. Separation tank body; 112. Water storage tank; 113. Water pump; 114. Water pipe; 115. Water pump connection plate; 116. Support side plate; 117. Partition plate; 118. Columnar transverse rotating rod sleeve block; 119. Columnar transverse rotating rod; 1110. Gear; 1111. Chain; 1112. Scraper; 1113. Transmission disc; 1114. Track; 115. Second transmission disc; 1116. Stirring roller rotor; 1117. Stirring roller; 1118. Motor connecting plate; 1119. Motor; 11120. Transmission sprocket assembly; 11121. L-shaped connecting side block; 11122. Discharge inclined plate; 12. Discharge platform; 121. Discharge guide frame; 122. Rear support upright; 123. Side connecting plate; 124. Second support side upright plate; 125. Guide side 126. Push plate; 127. Side push plate; 128. Slide groove; 129. Rear connecting plate; 1210. Storage cylinder; 1211. Storage cylinder unloading block; 2. Material distribution mechanism; 21. Guide base; 211. Guide side rod; 212. L-shaped guide block; 213. Third support side upright plate; 214. Columnar push rod guide block; 215. Columnar push rod; 216. T-shaped push-pull plate; 217. Electric push rod ; 218. L-shaped side push-pull horizontal plate; 22. Material lifting component; 221. Push-pull plate; 222. Lifting push rod connecting block; 223. Lifting push rod; 224. Side connecting rod; 225. Vertical moving rod; 226. Inverted L-shaped plate; 227. Lifting upright guide block; 228. Lifting vertical push plate; 229. Lifting horizontal push plate; 2210. Lifting side push plate; 2211. Lifting upright; 2212. Material unloading frame. Detailed Implementation

[0019] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0020] like Figures 1-2 As shown, the present invention provides a grinding material recycling device, including a separation mechanism 1, and a material distribution mechanism 2 is provided on the front side of the separation mechanism 1.

[0021] like Figures 3-4 As shown, the separation mechanism 1 includes a separation tank 11, a discharge platform 12 is provided on the rear side of the separation tank 11, the separation tank 11 includes a separation tank body 111, a water storage tank 112 is fixedly connected to the top of the front side of the separation tank body 111, a water pump 113 is provided on the left side of the water storage tank 112, a water pump connecting plate 115 is fixedly connected to the bottom of the middle of the front side of the separation tank body 111, a water pump 113 is fixedly connected to the top of the water pump connecting plate 115, a water pipe 114 is fixedly connected to the left side of the water storage tank 112, one end of the water pipe 114 away from the water storage tank 112 is fixedly connected to the input end of the water pump 113, the output end of the water pump 113 extends into the interior of the separation tank body 111, support side plates 116 are fixedly connected to the front sides of both the left and right sides of the separation tank body 111, and a partition plate 117 is fixedly connected to the front side inside the separation tank body 111.

[0022] The top left and right sides and the front and rear sides of the separation tank body 111 are all fixedly connected to columnar horizontal rotating rod sleeves 118. A columnar horizontal rotating rod 119 is rotatably connected between the inner sides of the two sets of columnar horizontal rotating rod sleeves 118. A transmission disc 1113 is fixedly connected to the left end of each of the two columnar horizontal rotating rods 119. Gears 1110 are fixedly connected to the outer walls of both ends of the two columnar horizontal rotating rods 119, located on the left and right sides between the inner sides of the two sets of columnar horizontal rotating rod sleeves 118. The two sets of gears 1110... Chains 1111 are meshed between the outer sides of the two chains 1111. Scrapers 1112 are fixedly connected to the front and rear sides of the top outer wall of the two chains 1111. A motor connecting plate 1118 is fixedly connected to the top of the rear side of the right side of the separation tank body 111. A motor 1119 is fixedly connected to the top of the motor connecting plate 1118. A transmission sprocket set 11120 is fixedly connected to the output end of the motor 1119. The front side of the left side of the transmission sprocket set 11120 is fixedly connected to the right end of the columnar horizontal rotating rod 119 on the rear side.

[0023] Both transmission discs 1113 have tracks 1114 fitted on their outer walls. The bottom of the inner sidewalls of both tracks 1114 are fitted with second transmission discs 1115. Both second transmission discs 1115 are fixedly connected to the right side of both second transmission discs 1115. The right ends of the two agitator rollers 1116 extend rotatably into the interior of the separation tank body 111 and are rotatably connected to the front and rear sides of the right inner wall of the separation tank body 111. The outer walls of the ends of the two agitator rollers 1116 located inside the separation tank body 111 are fixedly connected to agitator rollers 1117. Both the left and right sides of the rear top of the separation tank body 111 are fixedly connected to L-shaped connecting side blocks 11121. The inner sides of the two L-shaped connecting side blocks 11121 are fixedly connected to a discharge inclined plate 11122.

[0024] like Figure 5As shown, the unloading platform 12 includes an unloading guide frame 121. Rear support poles 122 are fixedly connected to the left and right sides of the bottom rear side of the unloading guide frame 121. Side connecting plates 123 are fixedly connected to the left and right sides of the bottom front side of the unloading guide frame 121. Second support side plates 124 are fixedly connected to the bottom of the outer sides of the two side connecting plates 123. The front and top of the unloading guide frame 121 are open. Guide side plates 125 are fixedly connected to the left and right sides of the top of the unloading guide frame 121. A pusher plate 126 is slidably connected between the rear inner walls of the two guide side plates 125. The pusher plate 126 has two... Side push plates 127 are slidably connected to both sides. The inner surfaces of both side push plates 127 are provided with grooves 128. The left and right ends of the push plate 126 are slidably connected to the inner sides of the grooves 128 provided by the two side push plates 127. The left and right sides of the rear side of the unloading guide frame 121 are fixedly connected to the rear connecting plates 129. The inner sides of the two rear connecting plates 129 are fixedly connected to the storage cylinder 1210. The front side of the storage cylinder 1210, located at the top of the push plate 126, is fixedly connected to the storage cylinder unloading block 1211. The rear side of the unloading inclined plate 11122 is fixedly inserted into the front opening of the unloading inclined plate 11122.

[0025] like Figures 6-8 As shown, the material distribution mechanism 2 includes a guide base 21. A material feeding lifting component 22 is provided on the rear inner side of the guide base 21. The guide base 21 includes two guide side rods 211. The rear inner sides of the two guide side rods 211 are respectively fixedly connected between the top of the same side support side plate 116 and the same side second support side plate 124. L-shaped guide blocks 212 are fixedly connected to the left and right sides of the rear outer sides of the two guide side rods 211. Third support side plates 213 are fixedly connected to the left and right sides of the front bottom of the two guide side rods 211. Columnar push rod guide blocks 214 are fixedly connected to the top inner sides of the two third support side plates 213. The inner side of the columnar push rod guide block 214 on the right side... An electric push rod 217 is fixedly connected. A T-shaped push-pull plate 216 is fixedly connected to the front end of the electric push rod 217. Columnar push rods 215 are fixedly connected to the left and right sides of the top rear side of the T-shaped push-pull plate 216. The rear ends of the two columnar push rods 215 pass through the inner side of the two columnar push rod guide blocks 214 and extend to the outer rear side of the two columnar push rod guide blocks 214. L-shaped side push-pull horizontal plates 218 are fixedly connected to the left and right sides of the T-shaped push-pull plate 216. The rear bottom sides of the two L-shaped side push-pull horizontal plates 218 are slidably connected to the top of the two sets of L-shaped guide blocks 212. The rear top sides of the two L-shaped side push-pull horizontal plates 218 are fixedly connected to the bottom of the two side push plates 127.

[0026] like Figures 9-10As shown, the unloading lifting component 22 includes a push-pull plate 221. Lifting push rod connecting blocks 222 are fixedly connected to the left and right sides of the inner wall of the opening of the push-pull plate 221. Lifting push rods 223 are fixedly connected between the rear sides of the inner sides of the two lifting push rod connecting blocks 222. Side connecting rods 224 are fixedly connected to the top and bottom of the left and right sides of the left and right sides of the left and right sides of the two sets of side connecting rods 224. Two vertical moving rods 225 are fixedly connected between the inner sides of the two sets of vertical moving rods 225 and on the left and right sides of the rear side of the push-pull plate 221. An inverted L-shaped plate 226 is fixedly connected between the top of the inner sides of the two sets of vertical moving rods 225. The bottom of the outer walls of the two sets of vertical moving rods 225 are slidably connected to the top of the two guide side rods 211 respectively. The left and right sides of the front side of the push-pull plate 221 are fixedly connected to the rear ends of the two columnar push rods 215 respectively.

[0027] The top of the inverted L-shaped plate 226 is designed with an open through-hole. Lifting pole guide blocks 227 are fixedly connected to the left and right sides of the top rear side of the inverted L-shaped plate 226. Lifting poles 2211 are slidably connected to the inner sides of the two lifting pole guide blocks 227. Lifting side push plates 2210 are fixedly connected between the top outer sides of the two lifting poles 2211. Lifting push plates 228 are fixedly connected to the front sides of the inner sides of the two lifting side push plates 2210. The bottom of the two lifting push plates 228 passes through the opening of the inverted L-shaped plate 226 and extends to the left and right sides of the bottom outer side of the inverted L-shaped plate 226 respectively. Lifting horizontal push plates 229 are fixedly connected to the bottom inner sides of the two lifting push plates 228. The bottom of the lifting horizontal push plates 229 are fixedly connected to the top of the lifting push rod 223. The bottom of the two lifting poles 2211 extends into the interior of the separation tank body 111 and is located on one side in front of the partition 117. A feeding frame 2212 is fixedly connected between the bottom inner sides of the two lifting poles 2211 inside the separation tank body 111. The bottom of the feeding frame 2212 is designed with a filter screen.

[0028] The working principle of this invention is as follows: When it is necessary to recycle the grinding material, the washed-down grinding material is first properly stored inside a specially designed storage cylinder 1210. The bottom of the storage cylinder 1210 is provided with a storage cylinder discharge block 1211. The grinding material flows out smoothly through the storage cylinder discharge block 1211 and slides down along the top of the discharge inclined plate 11122. Subsequently, the grinding material continues to slide down along the inclined surface of the discharge inclined plate 11122 and finally falls into the internal area of ​​the separation tank body 111. Next, the motor 1119 is started. The output end of the motor 1119 is connected to the transmission sprocket set 11120. Through power transmission, the transmission sprocket set 11120 is driven to start rotating. The rotation of the transmission sprocket set 11120 is further transmitted to the rear columnar horizontal rotating rod 119, causing it to rotate as well. The rear columnar horizontal rotating rod 119 drives the second transmission disc 1115 to rotate synchronously through the linkage mechanism of the transmission disc 1113 and the track 1114. The rotation of the second transmission disc 1115 is then transmitted to the stirring roller rotating rod 1116. The stirring roller rotating rod 1116 then drives the stirring roller 1117 to perform efficient stirring inside the separation tank body 111, so that the grinding material and water are fully mixed and the grinding material floats to the water surface. Meanwhile, the rear columnar horizontal rotating rod 119 also drives the front columnar horizontal rotating rod 119 to rotate in tandem through the transmission of gear 1110 and chain 1111. The synchronous rotation of the two columnar horizontal rotating rods 119 drives the scraper 1112 on the chain 1111 to move in an orderly manner, gradually scraping the abrasive material floating on the water surface of the separation tank body 111 into the discharge frame 2212 in front of the partition 117. As the abrasive material accumulates, when the abrasive material in the discharge frame 2212 reaches a certain amount, the lifting push rod 223 is activated. The lifting push rod 223 pushes the lifting horizontal push plate 229 upward, which in turn drives the lifting vertical push plates 228 on both sides to rise synchronously. The rising action of the lifting vertical push plate 228 drives the lifting side push plate 2210 and the lifting vertical rod 2211 to slide upward in the lifting vertical rod guide block 227, thereby smoothly lifting the discharge frame 2212 out of the separation tank body 111. Because the bottom of the feeding frame 2212 is designed with a filter screen structure, moisture will naturally leak out from the filter screen during the lifting process, leaving only dry grinding material. After the feeding frame 2212 is lifted to a suitable height, the electric push rod 217 is activated. The electric push rod 217 starts to work, and its front end pushes the T-shaped push-pull plate 216 forward. The movement of the T-shaped push-pull plate 216 drives the columnar push rods 215 on both sides to slide forward in the columnar push rod guide block 214. At the same time, the L-shaped side push-pull horizontal plates 218 on both sides of the T-shaped push-pull plate 216 also slide forward on the L-shaped guide block 212. The sliding of the L-shaped side push-pull horizontal plates 218 drives the side push plate 127 and the pusher plate 126 to move forward in the feeding guide frame 121. The pusher plate 126 further pushes the grinding material that may remain on the feeding block 1211 of the storage cylinder to the feeding inclined plate 11122, ensuring that all grinding material falls smoothly into the separation tank body 111. At the same time, the rear end of the columnar push rod 215 pulls the push-pull plate 221. The push-pull plate 221 drives the lifting push rod 223 and the entire unloading lifting component 22 to move forward through the lifting push rod connecting block 222, so that the unloading frame 2212 moves to a suitable position in front of the separation tank body 111. At this time, the grinding material that has been filtered of water in the unloading frame 2212 can be easily taken out for subsequent processing and utilization.

[0029] The entire recycling device described above, through this series of collaborative mechanical structures, achieves a highly efficient and automated process from storage, mixing and separation to extraction and recycling of abrasive materials, greatly improving work efficiency and recycling results.

[0030] In addition, the present invention also relates to a grinding material recovery system for grinding operations using the above-mentioned device, comprising the following steps: Step 1: The grinding material to be recycled is introduced into the storage cylinder 1210 for initial storage by means of flushing or other methods. At this time, the storage cylinder 1210 plays the role of collecting the grinding material in a centralized manner to prevent the grinding material from scattering everywhere. Step 2: The grinding material in the storage cylinder 1210 is discharged through the storage cylinder discharge block 1211 to the top of the discharge inclined plate 11122. The discharge inclined plate 11122 guides the grinding material to slide smoothly into the separation tank body 111 by its specific inclination angle, preparing for subsequent separation processing. Step 3: Start the motor 1119. The output end of the motor 1119 drives the transmission sprocket set 11120 to rotate. The transmission sprocket set 11120 drives the rear columnar horizontal rotating rod 119 to rotate. The rear columnar horizontal rotating rod 119 drives the second transmission disc 1115 to rotate through the transmission disc 1113 and the track 1114. The second transmission disc 1115 drives the stirring roller rotating rod 1116 to rotate, thereby causing the stirring roller 1117 to stir the grinding material and water in the separation tank body 111. Through stirring, the grinding material floats on the water surface, realizing the initial separation of the grinding material and water. Step 4: At the same time, the rear columnar horizontal rotating rod 119 drives the front columnar horizontal rotating rod 119 to rotate through the gear 1110 and chain 1111. The two columnar horizontal rotating rods 119 drive the scraper 1112 on the chain 1111 to scrape the abrasive material floating on the water surface of the separation tank body 111, and scrape the abrasive material into the feed frame 2212 in front of the partition 117, thus completing the centralized collection of the abrasive material. Step 5: When the abrasive material in the feeding frame 2212 accumulates to a certain level, the lifting push rod 223 is activated. The lifting push rod 223 pushes the lifting horizontal push plate 229 upward. Through a series of linkage structures, the lifting upright rod 2211 slides upward in the lifting upright guide block 227, thereby lifting the feeding frame 2212 out of the separation tank body 111. Since the bottom of the feeding frame 2212 is designed with a filter screen, water leaks out from the filter screen during the lifting process, leaving only the abrasive material. Step Six: After the material frame 2212 is raised to a suitable height, start the electric push rod 217. The front end of the electric push rod 217 pushes the T-shaped push-pull plate 216 forward. Through the related linkage structure, the pusher plate 126 pushes the grinding material that may remain on the material block 1211 of the storage cylinder further forward, ensuring that all the grinding material enters the feeding inclined plate 11122 and falls into the separation tank body 111. At the same time, the rear end of the columnar push rod 215 pushes the push-pull plate 221, so that the material frame 2212 moves to a suitable position in front of the separation tank body 111, making it convenient to take out the grinding material that has been filtered out of water in the material frame 2212 for subsequent processing.

[0031] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of this invention is defined by the appended claims and their equivalents.

Claims

1. A grinding stock recycling device comprising a separation mechanism (1), characterized in that: The front side of the separation mechanism (1) is provided with a distribution mechanism (2); The separation mechanism (1) comprises a separation tank (11), and the rear side of the separation tank (11) is provided with a discharging table (12); The distribution mechanism (2) comprises a guide base (21), and the rear side of the inner side of the guide base (21) is provided with a discharging lifting piece (22).

2. A grinding stock recycling device according to claim 1, characterized in that: The separation tank (11) comprises a separation tank body (111), the top of the front side of the separation tank body (111) is fixedly connected with a water storage tank (112), the left side of the water storage tank (112) is provided with a water pump (113), the bottom of the middle of the front side of the separation tank body (111) is fixedly connected with a water pump connecting plate (115), the top of the water pump connecting plate (115) is fixedly connected with the water pump (113), the left side of the water storage tank (112) is fixedly connected with a water pipe (114), one end of the water pipe (114) away from the water storage tank (112) is fixedly connected to the input end of the water pump (113), the output end of the water pump (113) extends to the inside of the separation tank body (111), the front side of the left and right sides of the separation tank body (111) is fixedly connected with a supporting side stand plate (116), and the front side of the inside of the separation tank body (111) is fixedly connected with a partition plate (117).

3. A grinding stock recycling device according to claim 2, characterized in that: The front and rear sides of the left and right sides of the top of the separation tank body (111) are fixedly connected with columnar transverse rod sleeve blocks (118), the inner sides of the front and rear groups of columnar transverse rod sleeve blocks (118) are rotatably connected with columnar transverse rods (119), the left ends of the two columnar transverse rods (119) are fixedly connected with transmission discs (1113), the left and right sides of the outer walls of the two ends of the columnar transverse rods (119) and located between the inner sides of the front and rear groups of columnar transverse rod sleeve blocks (118) are fixedly connected with gears (1110), the outer sides of the left and right groups of gears (1110) are meshingly sleeved with chains (1111), the front and rear sides of the top outer walls of the two chains (1111) are fixedly connected with scrapers (1112), the rear top of the right side of the separation tank body (111) is fixedly connected with a motor connecting plate (1118), the top of the motor connecting plate (1118) is fixedly connected with a motor (1119), the output end of the motor (1119) is fixedly connected with a transmission sprocket set (11120), and the front side of the left side of the transmission sprocket set (11120) is fixedly connected to the right end of the columnar transverse rod (119) on the rear side.

4. A grinding stock recycling device according to claim 3, characterized in that: The outer wall of two transmission discs (1113) is sleeved with a track (1114), the bottom of the inner side wall of two track (1114) is sleeved with a second transmission disc (1115), the right side of two second transmission discs (1115) is fixedly connected with a stirring roller rotating rod (1116), the right end of two stirring roller rotating rods (1116) rotates and extends to the inside of the separation tank main body (111) and is rotatably connected to the front and back of the right side inner wall of the separation tank main body (111), respectively, the end portion outer wall of two stirring roller rotating rods (1116) in the separation tank main body (111) is fixedly connected with a stirring roller (1117), the left and right sides of the top rear side of the separation tank main body (111) are fixedly connected with an L-shaped connecting side block (11121), and the inner side surface of two L-shaped connecting side blocks (11121) is fixedly connected with a discharging inclined plate (11122).

5. The apparatus of claim 1, wherein: The discharging table (12) comprises a discharging guide frame (121), the left and right sides of the rear side of the bottom of the discharging guide frame (121) are fixedly connected with rear support vertical rods (122), the left and right sides of the front side of the bottom of the discharging guide frame (121) are fixedly connected with side connecting plates (123), the bottom of the outer side surface of two side connecting plates (123) is fixedly connected with second support side vertical plates (124), the front side and the top of the discharging guide frame (121) are designed as openings, the left and right sides of the top of the discharging guide frame (121) are fixedly connected with guide side plates (125), the rear side inner wall between two guide side plates (125) is slidably connected with a pushing plate (126), the left and right sides of the pushing plate (126) are slidably connected with side pushing plates (127), the inner side surface of two side pushing plates (127) is provided with a sliding groove (128), the left and right ends of the pushing plate (126) are slidably connected in the inner side of the sliding groove (128) provided in two side pushing plates (127), the left and right sides of the rear side of the discharging guide frame (121) are fixedly connected with rear connecting plates (129), the inner side between two rear connecting plates (129) is fixedly connected with a storage cylinder (1210), the front side of the storage cylinder (1210) and one side located at the top of the pushing plate (126) is fixedly connected with a storage cylinder discharging block (1211), and the rear side of the discharging inclined plate (11122) is fixedly inserted into the front side opening of the discharging inclined plate (11122).

6. The apparatus of claim 1, wherein: The guide base (21) comprises two guide side rods (211), the inner sides of the two guide side rods (211) are fixedly connected between the top of the same side support side stand (116) and the same side second support side stand (124) respectively, the left and right sides of the rear sides of the outer sides of the two guide side rods (211) are fixedly connected with L-shaped guide blocks (212), the left and right sides of the front sides of the bottom of the two guide side rods (211) are fixedly connected with third support side stands (213), the inner top of the two third support side stands (213) are fixedly connected with columnar push rod guide blocks (214), the inner side of the columnar push rod guide block (214) on the right side is fixedly connected with an electric push rod (217), the front end of the electric push rod (217) is fixedly connected with a T-shaped push-pull plate (216), the left and right sides of the top of the rear side of the T-shaped push-pull plate (216) are fixedly connected with columnar push rods (215), the rear ends of the two columnar push rods (215) pass through the inner sides of the two columnar push rod guide blocks (214) and extend to the rear outer sides of the two columnar push rod guide blocks (214) respectively, the left and right sides of the T-shaped push-pull plate (216) are fixedly connected with L-shaped side push-pull horizontal plates (218), the bottom rear sides of the two L-shaped side push-pull horizontal plates (218) are slidingly connected with the top of the left and right two groups of L-shaped guide blocks (212) respectively, the rear sides of the top of the two L-shaped side push-pull horizontal plates (218) are fixedly connected with the bottom of the two side push plates (127) respectively.

7. The apparatus of claim 1, wherein: The blanking lifting piece (22) comprises a push-pull plate (221), the left and right sides of the opening inner wall of the push-pull plate (221) are fixedly connected with lifting push rod connecting blocks (222), the rear sides of the inner sides of the two lifting push rod connecting blocks (222) are fixedly connected with a lifting push rod (223), the top and the bottom of the left and right sides of the push-pull plate (221) are fixedly connected with side link rods (224), two vertical moving rods (225) are fixedly connected between the inner side surfaces of the left and right groups of side link rods (224) and located at the left and right sides of the rear side of the push-pull plate (221), a inverted L-shaped plate (226) is fixedly connected between the top of the inner sides of the left and right groups of vertical moving rods (225), the outer wall bottoms of the left and right groups of vertical moving rods (225) are slidingly connected with the top of the two guide side rods (211) respectively, the left and right sides of the front side of the push-pull plate (221) are fixedly connected with the rear ends of the two columnar push rods (215) respectively.

8. A grinding stock recycling device according to claim 7, characterized in that: The top of the inverted L-shaped plate (226) is an open through design, the left and right sides of the top of the back side of the inverted L-shaped plate (226) are fixedly connected with lifting vertical rod guide blocks (227), the inner sides of the two lifting vertical rod guide blocks (227) are both slidably connected with lifting vertical rods (2211), the outer top sides of the two lifting vertical rods (2211) are fixedly connected with lifting side push plates (2210), the front sides of the inner sides of the two lifting side push plates (2210) are both fixedly connected with lifting vertical push plates (228), the bottoms of the two lifting vertical push plates (228) penetrate through the opening of the inverted L-shaped plate (226) and respectively extend to the left and right sides outside the bottom of the inverted L-shaped plate (226), the inner bottom sides of the two lifting vertical push plates (228) are fixedly connected with a lifting horizontal push plate (229), and the bottom of the lifting horizontal push plate (229) is fixedly connected with the top end of the lifting push rod (223).

9. A grinding stock recycling device according to claim 8, characterized in that: The bottoms of the two lifting vertical rods (2211) extend to the inside of the separation tank main body (111) and are located on one side of the front side of the partition plate (117), and the bottoms of the two lifting vertical rods (2211) are fixedly connected with a discharging frame (2212) between the inner bottom sides of the two lifting vertical rods (2211) located in the inside of the separation tank main body (111). The bottom of the discharging frame (2212) is a filter screen design.

10. A grinding stock recycling system according to any one of claims 1 to 9, characterized in that: The method comprises the following steps: Step one: the grinding material to be recycled is introduced into the storage cylinder (1210) by flushing or the like for preliminary storage, at this time, the storage cylinder (1210) plays a role in concentrating the collection of the grinding material, avoiding the scattering of the grinding material everywhere; Step two: the grinding material in the storage cylinder (1210) is discharged to the top of the discharging inclined plate (11122) through the storage cylinder discharging block (1211), the discharging inclined plate (11122) guides the grinding material to smoothly slide to the inside of the separation tank main body (111) by virtue of its specific inclination angle, and prepares for the subsequent separation treatment; Step three: the motor (1119) is started, the output end of the motor (1119) drives the transmission sprocket set (11120) to rotate, the transmission sprocket set (11120) drives the rear columnar horizontal rotating rod (119) to rotate, the rear columnar horizontal rotating rod (119) drives the second transmission disc (1115) to rotate through the transmission disc (1113) and the track (1114), the second transmission disc (1115) drives the stirring roller rotating rod (1116) to rotate, and then the stirring roller (1117) stirs the grinding material and water in the separation tank main body (111), the grinding material is made to float on the water surface through stirring, and the preliminary separation of the grinding material and water is realized; Step four: the rear columnar horizontal rotating rod (119) drives the front columnar horizontal rotating rod (119) to rotate through the gear (1110) and the chain (1111), the two columnar horizontal rotating rods (119) drive the scrapers (1112) on the chain (1111) to scrape the grinding material floating on the water surface of the separation tank main body (111), and the grinding material is scraped into the discharging frame (2212) on the front side of the partition plate (117), and the concentrated collection of the grinding material is completed; Step five: when the grinding material in the blanking frame (2212) accumulates to a certain extent, start the lifting push rod (223), which pushes the lifting horizontal push plate (229) upwards, and through a series of linkage structures drives the lifting vertical rod (2211) to slide upwards in the lifting vertical rod guide block (227), thereby taking out the blanking frame (2212) from the separation tank main body (111). Since the bottom of the blanking frame (2212) is designed as a filter screen, water leaks out during the process, leaving only the grinding material; Step six: when the blanking frame (2212) is taken out to the appropriate height, start the electric push rod (217), which pushes the T-shaped push-pull plate (216) at the front end to move forward, and through the relevant linkage structure drives the push plate (126) to further push the grinding material that may be left on the storage cylinder blanking block (1211) forward, ensuring that the grinding material enters the blanking inclined plate (11122) and falls into the separation tank main body (111). At the same time, the rear end of the cylindrical push rod (215) pulls the push-pull plate (221), which moves the blanking frame (2212) to the appropriate position on the front side of the separation tank main body (111), facilitating the removal of the grinding material in the blanking frame (2212) that has been filtered of water for subsequent processing.

Citation Information

Patent Citations

  • Automobile part grinding waste recovery system

    CN106607436A