Efficient cleaning system for granular materials
Through an efficient cleaning system composed of ultrasonic cleaning, pickling and rinsing devices, the removal of dust and metal wear chips in fine particulate materials is solved, and efficient, flip cleaning and continuous pickling are achieved, improving the cleaning efficiency.
Patent Information
- Application Number
- CN202421986617.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-08-16
AI Technical Summary
In the prior art, fine particulate materials tend to adhere to dust and metal wear chips during crushing, and the existing cleaning methods are inefficient and cannot fully remove these contaminants.
An efficient cleaning system consisting of ultrasonic cleaning device, pickling device, ultrasonic rinsing device and vibrating conveying device is adopted to remove metal wear chips through ultrasonic cleaning and dust removal and pickling, and subsequent ultrasonic rinsing and dehydration treatment to achieve flip cleaning of particulate materials.
It improves cleaning efficiency, can fully remove dust and metal wear chips from fine particulate materials, realizes continuous pickling and flip cleaning, prevents material stacking, and improves the cleaning effect.
Smart Images

Figure CN223056275U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of granular material cleaning, and particularly relates to a high-efficiency cleaning system for granular materials. Background Art
[0002] During the silicon rod forming process, fine granular materials are used as raw materials. The fine granular materials are obtained by refining large granular materials. The large granular materials need to be crushed in a crushing device during the refining process. During the crushing process, some dust will be mixed with the fine granular raw materials. Although subsequent screening treatment is carried out through a screening device, there will still be a small amount of dust attached to the surface of the fine granular materials. At the same time, some fine granular materials will be attached with metal wear debris on the crushing device during the crushing process. Therefore, it is necessary to remove this part of dust and metal wear debris. The operation method in the prior art is to place the fine granular materials in a tray, and then place the tray in water or in a pool containing an acidic solution for soaking for a period of time. However, the fine granular materials on the tray cannot be stacked, nor can the fine granular materials be flipped. This not only reduces work efficiency, but also cannot fully remove the metal wear debris on the fine granular materials. Content of the Utility Model
[0003] The purpose of the utility model is to overcome the deficiencies of the prior art and provide a high-efficiency cleaning system for granular materials.
[0004] The purpose of the utility model is realized by the following technical solutions:
[0005] A high-efficiency cleaning system for granular materials includes an ultrasonic cleaning device, a pickling device, an ultrasonic rinsing device, a dehydration device, and a vibrating conveying device. The ultrasonic cleaning device, the pickling device, the ultrasonic rinsing device, and the dehydration device are all arranged on the vibrating conveying device. The output port of the ultrasonic cleaning device is arranged inside the input port of the pickling device. The output port of the pickling device is arranged inside the input port of the ultrasonic rinsing device. The output port of the ultrasonic rinsing device is arranged inside the input port of the dehydration device.
[0006] Further, the pickling device includes a pickling tank, a pickling bottom plate, a pickling conveying plate, a blocking plate, and a pickling solution spray pipe. The pickling tank is fixedly arranged on the vibrating conveying device. The pickling bottom plate is horizontally and hermetically fixed on the inner wall of the pickling tank. The pickling conveying plate is obliquely and hermetically fixed on the inner wall of the pickling tank, and the lower end is hermetically and fixedly connected to the end of the pickling bottom plate. A pickling feed port is arranged between the pickling bottom plate and the top of the pickling tank. A pickling discharge port is arranged between the pickling conveying plate and the top of the pickling tank. First pickling solution outlet holes are arranged on the pickling bottom plate. The blocking plate is hermetically and fixedly arranged on the pickling bottom plate. The blocking plate is arranged between the first pickling solution outlet holes and the pickling conveying plate. Both ends of the blocking plate are hermetically and fixedly connected to the inner wall of the pickling tank. Second pickling solution outlet holes are arranged on the bottom of the pickling tank. The pickling solution spray pipe that cooperates with the upper end of the pickling conveying plate is arranged on the top of the pickling tank.
[0007] Further, the ultrasonic cleaning device and the ultrasonic rinsing device include an ultrasonic cleaning tank, an ultrasonic cleaning plate, a wave cleaning conveying plate, an ultrasonic transducer, and a cleaning solution pipe. The ultrasonic cleaning tank is fixedly arranged on the vibrating conveying device. The ultrasonic cleaning plate is horizontally and hermetically fixed in the ultrasonic cleaning tank. The wave cleaning conveying plate is obliquely and hermetically fixed in the ultrasonic cleaning tank, and the lower end is hermetically and fixedly connected to one end of the ultrasonic cleaning plate. The cleaning solution pipe that cooperates with the wave cleaning conveying plate is fixedly arranged on the top of the ultrasonic cleaning tank. A material blocking plate is hermetically and fixedly arranged at the other end of the ultrasonic cleaning plate. A first cleaning solution outlet hole is arranged between the material blocking plate and the inner wall of the ultrasonic cleaning tank. Second cleaning solution outlet holes are arranged on the bottom of the ultrasonic cleaning tank. A cleaning feed port that cooperates with the material blocking plate is arranged at one end of the ultrasonic cleaning tank. A cleaning discharge port is arranged at the other end of the ultrasonic cleaning tank. The ultrasonic transducer is fixedly arranged on the lower surface of the ultrasonic cleaning plate.
[0008] Further, the dehydration device includes a dehydration tank, a dehydration plate, and a dehydration conveying plate. The dehydration plate is horizontally and hermetically fixed in the dehydration tank and cooperates with the dehydration feed port on the dehydration tank. The dehydration conveying plate is obliquely and hermetically fixed on the dehydration tank and cooperates with the dehydration discharge port. The lower end of the dehydration conveying plate is hermetically and fixedly connected to one end of the dehydration plate. Dehydration holes are arranged on the dehydration plate. Drainage holes are arranged on the bottom of the dehydration tank.
[0009] Furthermore, the vibrating conveying device includes a vibrating conveying motor, a fixed bracket, fixed support lugs, a buffer seat and a limit bolt. The vibrating conveying motors are fixedly arranged obliquely on the pickling tank, the ultrasonic cleaning tank and the dehydration tank. Fixed support lugs are fixedly arranged on the pickling tank, the ultrasonic cleaning tank and the dehydration tank. The fixed support lugs are connected to the fixed bracket through the limit bolt, and the buffer seat is sleeved on the limit bolt.
[0010] Furthermore, the buffer seat is arranged on the fixed bracket through a height adjusting component, and the lower end of the limit bolt is arranged on the height adjusting component.
[0011] Furthermore, the height adjusting component includes an upper adjusting disc, a lower adjusting disc and an adjusting bolt. The lower adjusting disc is fixedly arranged on the fixed bracket, the upper adjusting disc is fixed on the lower adjusting disc through the adjusting bolt, and the limit bolt is arranged on the upper adjusting disc.
[0012] Furthermore, a first dividing strip is hermetically arranged on the pickling bottom plate, a second dividing strip hermetically fixed and connected to the first dividing strip is hermetically arranged on the pickling conveying plate, and the first dividing strip is hermetically fixed and connected to the blocking plate.
[0013] Furthermore, two necking plates are hermetically and fixedly arranged on both sides of the upper end of the pickling conveying plate. The two necking plates are symmetrically arranged and hermetically and fixedly connected to the inner wall of the pickling tank.
[0014] Furthermore, a discharge pipe is hermetically and fixedly arranged on the second pickling solution outlet hole.
[0015] The beneficial effects of the present utility model are as follows:
[0016] 1) In the present technology, the particulate material is dedusted by the ultrasonic cleaning device, then enters the pickling device to remove the metal wear debris, then enters the ultrasonic rinsing device to remove the pickling solution, and finally is fully dehydrated by the dehydration device. The whole process not only improves the cleaning efficiency, but also realizes the flipping cleaning of the particulate material.
[0017] 2) In the present technology, during the pickling process of the fine particulate material in the pickling tank, it can not only be flipped, but also be continuously and fully pickled, which not only improves the pickling efficiency, but also can fully remove the metal wear debris on the fine particulate material.
[0018] 3) In the present technology, the first dividing strip and the second dividing strip are arranged to facilitate the separation of the particulate material, so that the material can be better cleaned and conveyed, and the situation that the material is concentrated and stacked and the cleaning effect cannot be achieved is prevented. Description of the Drawings
[0019] Figure 1 is the three-dimensional connection structure diagram of this cleaning system;
[0020] Figure 2 is the internal connection structure diagram of this cleaning system;
[0021] Figure 3 is the three-dimensional connection structure diagram of the pickling device;
[0022] Figure 4 is the connection structure diagram between the pickling bottom plate and the pickling conveying plate;
[0023] Figure 5 is the internal connection structure diagram of the pickling device;
[0024] Figure 6 is the three-dimensional connection structure diagram of the height adjustment component;
[0025] In the figure, 1 - pickling tank, 2 - pickling bottom plate, 3 - pickling conveying plate, 4 - blocking plate, 5 - pickling solution spray pipe, 6 - feed inlet, 7 - discharge outlet, 8 - first pickling solution outlet hole, 9 - second pickling solution outlet hole, 10 - first dividing strip, 11 - second dividing strip, 12 - necking plate, 13 - discharge pipe, 14 - vibration conveying motor, 15 - fixed bracket, 16 - fixed support ear, 17 - buffer seat, 18 - limit bolt, 19 - upper adjustment disc, 20 - lower adjustment disc, 21 - adjustment bolt, 22 - ultrasonic cleaning tank, 23 - ultrasonic cleaning plate, 24 - wave cleaning conveying plate, 25 - ultrasonic transducer, 26 - cleaning liquid pipe, 27 - material blocking plate, 28 - first cleaning liquid outlet hole, 29 - second cleaning liquid outlet hole, 30 - cleaning feed inlet, 31 - cleaning discharge outlet, 32 - dehydration tank, 33 - dehydration plate, 34 - dehydration conveying plate, 35 - dehydration feed inlet, 36 - dehydration discharge outlet, 37 - dehydration hole, 38 - drain hole. Specific embodiments
[0026] Next, the technical solutions of the present invention will be clearly and completely described in conjunction with the embodiments. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative efforts belong to the scope of protection of the present invention.
[0027] Refer to Figures 1-6 , the present invention provides a technical solution:
[0028] An efficient cleaning system for granular materials includes an ultrasonic cleaning device, a pickling device, an ultrasonic rinsing device, a dehydration device, and a vibrating conveying device. The ultrasonic cleaning device, the pickling device, the ultrasonic rinsing device, and the dehydration device are all arranged on the vibrating conveying device. The output port of the ultrasonic cleaning device is arranged inside the input port of the pickling device. The output port of the pickling device is arranged inside the input port of the ultrasonic rinsing device. The output port of the ultrasonic rinsing device is arranged inside the input port of the dehydration device. Among them, the ultrasonic cleaning device uses ultrasonic waves to clean the granular materials, and then enters the pickling device to pickle the metal chips on the granular materials. Then it enters the ultrasonic rinsing device to rinse the pickling solution on the granular materials. Finally, it enters the dehydration device to dehydrate the granular materials. The solution used for pickling is a pickling solution in the prior art.
[0029] In some embodiments, the pickling device includes a pickling tank 1, a pickling bottom plate 2, a pickling conveying plate 3, a blocking plate 4, and a pickling solution spray pipe 5. The pickling tank 1 is fixedly arranged on the vibrating conveying device. The pickling bottom plate 2 is horizontally and hermetically fixed on the inner wall of the pickling tank 1. The pickling conveying plate 3 is obliquely and hermetically fixed on the inner wall of the pickling tank 1 and its lower end is hermetically and fixedly connected to the end of the pickling bottom plate 2. A pickling feed port 6 is arranged between the pickling bottom plate 2 and the top of the pickling tank 1. A pickling discharge port 7 is arranged between the pickling conveying plate 3 and the top of the pickling tank 1. A first pickling solution outlet hole 8 is arranged on the pickling bottom plate 2. A blocking plate 4 is hermetically and fixedly arranged on the pickling bottom plate 2. The blocking plate 4 is arranged between the first pickling solution outlet hole 8 and the pickling conveying plate 3. Both ends of the blocking plate 4 are hermetically and fixedly connected to the inner wall of the pickling tank 1. A second pickling solution outlet hole 9 is arranged on the bottom of the pickling tank 1. A pickling solution spray pipe 5 cooperating with the upper end of the pickling conveying plate 3 is arranged on the top of the pickling tank 1. A discharge pipe 13 is hermetically and fixedly arranged on the second pickling solution outlet hole 9. Among them, inside the pickling tank 1, a cleaning pool is jointly formed under the action of the pickling bottom plate 2, the pickling conveying plate 3, and the blocking plate 4. The granular materials directly enter the cleaning pool for pickling. The pickled materials are conveyed to the next device through the pickling conveying plate 3. The pickling solution spray pipe 5 is a prior art, and its function is to transport and spray the pickling solution. The used pickling solution overflows the blocking plate 4 and then enters the bottom of the pickling tank 1 through the first pickling solution outlet hole 8, and then is recycled through the second pickling solution outlet hole 9 and the discharge pipe 13. The vibrating conveying frame is used to support the pickling tank 1, and also makes the pickling tank 1 vibrate and convey materials through the pickling conveying plate 3.
[0030] In some embodiments, the ultrasonic cleaning device and the ultrasonic rinsing device include an ultrasonic cleaning tank 22, an ultrasonic cleaning plate 23, a wave cleaning conveyor plate 24, an ultrasonic transducer 25, and a cleaning liquid pipe 26. The ultrasonic cleaning tank 22 is fixedly arranged on the vibrating conveyor device. The ultrasonic cleaning plate 23 is horizontally and sealingly fixedly arranged inside the ultrasonic cleaning tank 22. The wave cleaning conveyor plate 24 is obliquely and sealingly fixedly arranged inside the ultrasonic cleaning tank 22, and the lower end thereof is sealingly fixedly connected to one end of the ultrasonic cleaning plate 23. A cleaning liquid pipe 26 cooperating with the wave cleaning conveyor plate 24 is fixedly arranged on the top of the ultrasonic cleaning tank 22. A material blocking plate 27 is sealingly fixedly arranged at the other end of the ultrasonic cleaning plate 23. A first cleaning liquid outlet hole 28 is arranged between the material blocking plate 27 and the inner wall of the ultrasonic cleaning tank 22. A second cleaning liquid outlet hole 29 is arranged at the bottom of the ultrasonic cleaning tank 22. A cleaning feed inlet 30 cooperating with the material blocking plate 27 is arranged at one end of the ultrasonic cleaning tank 22. A cleaning discharge outlet 31 is arranged at the other end of the ultrasonic cleaning tank 22. The ultrasonic transducer 25 is fixedly arranged on the lower surface of the ultrasonic cleaning plate 23. Among them, the ultrasonic cleaning device and the ultrasonic rinsing device have the same structure. The ultrasonic cleaning plate 23 is used to install the ultrasonic transducer 25 in the prior art. The ultrasonic transducer 25 cleans the granular material. The wave cleaning conveyor plate 24 is used to convey the granular material. The cleaning liquid pipe 26 sprays the cleaning solution, and the cleaning solution generally uses pure water to prevent the granular material from being contaminated. The cleaning discharge outlet 31 of the ultrasonic cleaning device is arranged inside the pickling feed inlet 6 of the pickling tank 1. The pickling discharge outlet 7 of the pickling tank 1 is arranged inside the cleaning feed inlet 30 of the ultrasonic rinsing device. The arrangement of the blocking plate 4 and the material blocking plate 27 further ensures that the granular material does not slide onto the ground or into the pickling tank 1 and the ultrasonic cleaning tank 22 during the cleaning process.
[0031] In some embodiments, the dehydration device includes a dehydration tank 32, a dehydration plate 33, and a dehydration conveyor plate 34. The dehydration plate 33 is horizontally and sealingly fixedly arranged inside the dehydration tank 32 and cooperates with the dehydration feed inlet 35 on the dehydration tank 32. The dehydration conveyor plate 34 is obliquely and sealingly fixedly arranged on the dehydration tank 32 and cooperates with the dehydration discharge outlet 36. The lower end of the dehydration conveyor plate 34 is sealingly fixedly connected to one end of the dehydration plate 33. Dehydration holes 37 are arranged on the dehydration plate 33. A drain hole 38 is arranged at the bottom of the dehydration tank 32. Among them, the cleaning feed inlet 30 in the ultrasonic rinsing device is arranged inside the dehydration feed inlet 35 of the dehydration tank 32 to prevent the granular material from scattering onto the ground. The dehydration tank 32 is used to install the dehydration plate 33 and the dehydration conveyor plate 34. A plurality of dehydration holes 37 are arranged on the dehydration plate 33, and the diameter of the dehydration holes 37 is smaller than the diameter of the granular material. The drain hole 38 is used to drain the water separated from the granular material to the outside.
[0032] In some embodiments, the vibrating conveying device includes a vibrating conveying motor 14, a fixed bracket 15, fixed support lugs 16, a buffer seat 17 and a limit bolt 18. The vibrating conveying motor 14 is fixedly arranged obliquely on each of the pickling tank 1, the ultrasonic cleaning tank 22 and the dehydration tank 32. Fixed support lugs 16 are fixedly arranged on each of the pickling tank 1, the ultrasonic cleaning tank 22 and the dehydration tank 32. The fixed support lugs 16 are connected to the fixed bracket 15 through the limit bolt 18, and the buffer seat 17 is sleeved on the limit bolt 18. Among them, the vibrating conveying motor 14 is a motor in the prior art. Under the action of the vibrating conveying motor 14, the materials in the ultrasonic cleaning device are conveyed from the cleaning inlet 30 to the cleaning outlet 31, then enter the pickling device, and then are conveyed from the pickling inlet 6 on the pickling tank 1 to the pickling outlet 7. Next, they enter the ultrasonic rinsing device, and then the materials are conveyed from the cleaning inlet 30 in the ultrasonic rinsing device to the cleaning outlet 31, and finally enter the dehydration device. Then, they are conveyed from the dehydration inlet 35 on the dehydration tank 32 to the dehydration outlet 36. The fixed bracket 15 is used to install the pickling tank 1, the ultrasonic cleaning tank 22 and the dehydration tank 32 through the fixed support lugs 16, the buffer seat 17 and the limit bolt 18 respectively. During the operation of the vibrating conveying motor 14, the buffer seat 17 plays a buffering role to prevent direct collision between the fixed support lug 16 and the fixed bracket 15. The function of the limit bolt 18 is to limit the moving distance between the fixed support lug 16 and the fixed bracket 15, and it is also used to install the buffer seat 17 to prevent the buffer seat 17 from falling off. Under the action of the vibrating conveying motor 14, the granular materials also achieve flipping during the moving process.
[0033] In some embodiments, the buffer seat 17 is arranged on the fixed bracket 15 through a height adjusting component, and the lower end of the limit bolt 18 is arranged on the height adjusting component. The height adjusting component includes an upper adjusting disc 19, a lower adjusting disc 20 and an adjusting bolt 21. The lower adjusting disc 20 is fixedly arranged on the fixed bracket 15, the upper adjusting disc 19 is fixed on the lower adjusting disc 20 through the adjusting bolt 21, and the limit bolt 18 is arranged on the upper adjusting disc 19. Among them, the lower adjusting disc 20 is fixed on the upper end of the fixed bracket 15. Four adjusting bolts 21 are arranged between the upper adjusting disc 19 and the lower adjusting disc 20. Under the action of the adjusting bolts 21, the distance between the upper adjusting disc 19 and the lower adjusting disc 20 can be adjusted. Four height adjusting components are respectively arranged between the pickling tank 1, the ultrasonic cleaning tank 22 and the dehydration tank 32 and the fixed bracket 15, so that the heights of the pickling tank 1, the ultrasonic cleaning tank 22 and the dehydration tank 32 can be adjusted respectively. The lower end of the buffer seat 17 is directly placed on the upper adjusting disc 19. Through holes are arranged on both the fixed support lug 16 and the adjusting disc 19, and the limit bolt 18 can slide in the through holes on the fixed support lug 16 and the adjusting disc 19, and the limit bolt 18 will not break away on the fixed support lug 16 and the adjusting disc 19.
[0034] In some embodiments, a first dividing strip 10 is hermetically arranged on the pickling bottom plate 2, and a second dividing strip 11 hermetically fixed to the first dividing strip 10 is hermetically arranged on the pickling conveying plate 3. The first dividing strip 10 is hermetically and fixedly connected to the blocking plate 4. Among them, the arrangement of the first dividing strip 10 and the second dividing strip 11 facilitates better cleaning and conveying of the materials, preventing the materials from being concentrated and stacked and failing to achieve the cleaning effect. Under the action of the first dividing strip 10 and the second dividing strip 11, the materials are dispersed between two adjacent first dividing strips 10 or are fully cleaned between the first dividing strip 10 and the inner wall of the pickling tank 1.
[0035] In some embodiments, two necking plates 12 are hermetically and fixedly arranged on both sides of the upper end of the pickling conveying plate 3. The two necking plates 12 are symmetrically arranged and are hermetically and fixedly connected to the inner wall of the pickling tank 1. Among them, the arrangement of the necking plates 12 makes the material outlet smaller, so that the material outlet can extend into the next device, reducing the intermediate transportation link.
[0036] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "bottom", "one end", "top", "middle", "the other end", "coaxial", "one side", "inner", "front part", "center", "both ends", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.
[0037] In the present invention, unless otherwise clearly specified and limited, the terms "arranged", "installed", "connected", "fixed", "hinged", etc. should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection, an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium. It can be the internal communication of two elements or the interaction relationship between two elements. Unless otherwise clearly limited, for those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.
[0038] The above is only the preferred embodiment of the present invention. It should be understood that the present invention is not limited to the form disclosed herein, and should not be regarded as excluding other embodiments, but can be used in various other combinations, modifications and environments, and can be changed within the scope of the concept described herein through the above teachings or the technology or knowledge in related fields. And the changes and alterations made by those skilled in the art that do not depart from the spirit and scope of the present invention should all be within the protection scope of the appended claims of the present invention.
Claims
1. An efficient cleaning system for granular materials, characterized in that: It includes an ultrasonic cleaning device, a pickling device, an ultrasonic rinsing device, a dehydration device and a vibrating conveyor device. The ultrasonic cleaning device, the pickling device, the ultrasonic rinsing device and the dehydration device are all arranged on the vibrating conveyor device. The output port of the ultrasonic cleaning device is arranged inside the input port of the pickling device. The output port of the pickling device is arranged inside the input port of the ultrasonic rinsing device. The output port of the ultrasonic rinsing device is arranged inside the input port of the dehydration device.
2. The high-efficiency cleaning system for granular materials according to claim 1, wherein: The pickling device includes a pickling tank (1), a pickling bottom plate (2), a pickling conveyor plate (3), a blocking plate (4) and a pickling solution spray pipe (5). The pickling tank (1) is fixedly arranged on the vibrating conveyor device. The pickling bottom plate (2) is horizontally and hermetically fixed on the inner wall of the pickling tank (1). The pickling conveyor plate (3) is obliquely and hermetically fixed on the inner wall of the pickling tank (1) and the lower end is hermetically and fixedly connected to the end of the pickling bottom plate (2). A pickling feed port (6) is arranged between the pickling bottom plate (2) and the top of the pickling tank (1). A pickling discharge port (7) is arranged between the pickling conveyor plate (3) and the top of the pickling tank (1). A first pickling solution outlet hole (8) is arranged on the pickling bottom plate (2). The blocking plate (4) is hermetically and fixedly arranged on the pickling bottom plate (2). The blocking plate (4) is arranged between the first pickling solution outlet hole (8) and the pickling conveyor plate (3). Both ends of the blocking plate (4) are hermetically and fixedly connected to the inner wall of the pickling tank (1). A second pickling solution outlet hole (9) is arranged on the bottom of the pickling tank (1). The pickling solution spray pipe (5) which cooperates with the upper end of the pickling conveyor plate (3) is arranged on the top of the pickling tank (1).
3. The high-efficiency cleaning system for granular materials according to claim 2, wherein: The ultrasonic cleaning device and the ultrasonic rinsing device include an ultrasonic cleaning tank (22), an ultrasonic cleaning plate (23), a wave cleaning conveying plate (24), an ultrasonic transducer (25), and a cleaning liquid pipe (26). The ultrasonic cleaning tank (22) is fixedly arranged on the vibrating conveying device. The ultrasonic cleaning plate (23) is horizontally and hermetically fixedly arranged in the ultrasonic cleaning tank (22). The wave cleaning conveying plate (24) is obliquely and hermetically fixedly arranged in the ultrasonic cleaning tank (22) and the lower end thereof is hermetically and fixedly connected to one end of the ultrasonic cleaning plate (23). The cleaning liquid pipe (26) which cooperates with the wave cleaning conveying plate (24) is fixedly arranged on the top of the ultrasonic cleaning tank (22). A material blocking plate (27) is hermetically and fixedly arranged at the other end of the ultrasonic cleaning plate (23). A first cleaning liquid outlet hole (28) is arranged between the material blocking plate (27) and the inner wall of the ultrasonic cleaning tank (22). A second cleaning liquid outlet hole (29) is arranged at the bottom of the ultrasonic cleaning tank (22). A cleaning feed inlet (30) which cooperates with the material blocking plate (27) is arranged at one end of the ultrasonic cleaning tank (22). A cleaning discharge outlet (31) is arranged at the other end of the ultrasonic cleaning tank (22). The ultrasonic transducer (25) is fixedly arranged on the lower surface of the ultrasonic cleaning plate (23).
4. The high-efficiency cleaning system for granular materials according to claim 3, wherein: The dehydration device includes a dehydration tank (32), a dehydration plate (33), and a dehydration conveying plate (34). The dehydration plate (33) is horizontally and hermetically fixedly arranged in the dehydration tank (32) and cooperates with a dehydration feed inlet (35) on the dehydration tank (32). The dehydration conveying plate (34) is obliquely and hermetically fixedly arranged on the dehydration tank (32) and cooperates with a dehydration discharge outlet (36). The lower end of the dehydration conveying plate (34) is hermetically and fixedly connected to one end of the dehydration plate (33). Dehydration holes (37) are arranged on the dehydration plate (33). A drain hole (38) is arranged at the bottom of the dehydration tank (32).
5. The high-efficiency cleaning system for granular materials according to claim 4, wherein: The vibrating conveying device includes a vibrating conveying motor (14), a fixed support (15), fixed support ears (16), a buffer seat (17), and a limit bolt (18). The vibrating conveying motor (14) is obliquely fixedly arranged on the pickling tank (1), the ultrasonic cleaning tank (22), and the dehydration tank (32). Fixed support ears (16) are fixedly arranged on the pickling tank (1), the ultrasonic cleaning tank (22), and the dehydration tank (32). The fixed support ears (16) are connected to the fixed support (15) through the limit bolt (18). The buffer seat (17) is sleeved on the limit bolt (18).
6. The high-efficiency cleaning system for granular materials according to claim 5, characterized in that: The buffer seat (17) is arranged on the fixed support (15) through a height adjusting component. The lower end of the limit bolt (18) is arranged on the height adjusting component.
7. An efficient cleaning system for granular materials according to claim 6, characterized in that: The height adjustment component includes an upper adjustment disc (19), a lower adjustment disc (20) and an adjustment bolt (21). The lower adjustment disc (20) is fixedly arranged on the fixed bracket (15), the upper adjustment disc (19) is fixed on the lower adjustment disc (20) through the adjustment bolt (21), and the limit bolt (18) is arranged on the upper adjustment disc (19).
8. An efficient cleaning system for granular materials according to any one of claims 2-7, characterized in that: A first dividing strip (10) is hermetically arranged on the pickling bottom plate (2), a second dividing strip (11) which is hermetically and fixedly connected with the first dividing strip (10) is hermetically arranged on the pickling conveying plate (3), and the first dividing strip (10) is hermetically and fixedly connected with the blocking plate (4).
9. An efficient cleaning system for granular materials according to any one of claims 2-7, characterized in that: Two necking plates (12) are hermetically and fixedly arranged on both sides of the upper end of the pickling conveying plate (3). The two necking plates (12) are symmetrically arranged and hermetically and fixedly connected with the inner wall of the pickling tank (1).
10. An efficient cleaning system for granular materials according to any one of claims 2-7, characterized in that: A discharge pipe (13) is hermetically and fixedly arranged on the second pickling solution outlet hole (9).