Glass cullet cleaning and recycling equipment

By incorporating a film removal and dissolution structure into the broken glass washing and recycling equipment, and utilizing extrusion and agitation to remove the coating layer, the problem of difficult film removal in existing equipment is solved, achieving efficient coating removal and improved glass recycling quality.

CN223603087UActive Publication Date: 2025-11-28何德容
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202423106695.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-11-28
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

Existing broken glass washing and recycling equipment has difficulty removing the coating layer quickly and efficiently during the decoating process, resulting in uneven quality of recycled glass.

Method used

A broken glass cleaning and recycling device is used, which sets up a film removal structure and a film dissolution structure. It uses extrusion and stirring to quickly remove the coating layer, and combines a brush and a dissolving solution to further process the residual film.

Benefits of technology

It enables rapid and efficient removal of the coating layer, reduces the amount of coating remover used, and improves the glass breakage efficiency and recycling quality.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223603087U_ABST
    Figure CN223603087U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of glass recycling equipment, in particular to cullet cleaning and recycling equipment which comprises a conveying belt and a crushing structure, and a flushing assembly is arranged on the conveying belt. The conveying tail end of the conveying belt communicates with an inlet of the film removing structure, and an outlet of the film removing structure communicates with the film dissolving structure. The film removing structure comprises an outer cylinder, the outer wall of the outer cylinder is connected with a rotating assembly, the inner wall of the outer cylinder is coated with a liquid storage layer, a cavity is formed in the liquid storage layer, a plurality of gaps are formed in the inner surface of the liquid storage layer in a penetrating mode and communicate with the cavity and the interior of the outer cylinder, the liquid storage layer is of an elastic structure, and a plurality of brushes are arranged on the surface of the liquid storage layer. The film dissolving structure comprises a stirring barrel, a filter plate is slidably arranged in the stirring barrel, a stirring assembly is arranged on the filter plate, the filter plate is connected with a displacement assembly, the displacement assembly is arranged on the stirring barrel, and the stirring tail end of the stirring assembly is close to a feeding port and a discharging port which communicate with the two sides of the stirring barrel. The discharging port is close to an inlet of the crushing structure, a conveying belt is arranged between the discharging port and the crushing structure, and a cleaning assembly is arranged on the conveying belt. And a screening structure is arranged at an outlet of the crushing structure. According to the utility model, the technical problems of quickly removing the film from the broken glass sheet and crushing after improving the film removing quality are solved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to glass recycling equipment technical field, specifically, relate to a kind of broken glass cleaning and recycling equipment. BACKGROUND

[0002] Broken glass cleaning and recycling equipment is specially used for cleaning and recycling broken glass equipment.Working principle is to collect broken glass into specified container or collection station, break, then in cleaning area, remove surface dirt and impurities.Cleaned broken glass is screened by screening equipment (such as water screen, vibrating screen etc.), to remove unqualified particles in it.Broken glass is recycled after cleaning and screening and used for producing new glass products or building materials.

[0003] In existing broken glass, some special purpose glass surface will be coated to increase its functionality, such as reflecting solar energy, reducing glare, improving safety, etc.When recycling broken glass, the coating layer needs to be removed, and existing broken glass cleaning and recycling equipment usually does not remove the coating, so the quality of recycled broken glass is uneven.

[0004] The Chinese utility model patent with the patent name "a kind of broken glass cleaning and recycling equipment" and the announcement number CN203991630U has been disclosed, which includes raw material box, chemical solution processing box, flushing box, dry cleaning box, dust removal box, drying box and recycling box, and each box is connected in sequence by transmission structure.The utility model breaks and dry cleaning treatment to broken glass, then carries out chemical solution and water treatment, reduces the use amount of chemical solution and water, and realizes better purification effect.

[0005] Although the utility model can reduce the use amount of chemical solution, breaking first and then removing the coating will make the coating removal work more complex and difficult to quickly remove the coating and recycle. UTILITY MODEL CONTENT

[0006] The purpose of the present application is to provide a kind of broken glass cleaning and recycling equipment, solve the technical problems of broken glass piece fast coating removal and improve the coating removal quality before breaking.

[0007] In order to solve the above technical problems, the scheme adopted by the present application is as follows:

[0008] A kind of broken glass cleaning and recycling equipment, including conveying belt and broken structure, and the flushing assembly is arranged on the conveying belt.

[0009] Preferably, the conveying end of the conveying belt is communicated with the inlet of the coating removal structure, and the outlet of the coating removal structure is communicated with the coating dissolving structure.

[0010] Preferably, the film dissolving structure comprises an outer cylinder, the outer wall of the outer cylinder is connected with a rotating assembly, the inner wall of the outer cylinder is covered with a liquid storage layer, a cavity is arranged in the liquid storage layer, a plurality of slits are arranged on the inner surface of the liquid storage layer, the slits are communicated with the cavity and the inside of the outer cylinder, the liquid storage layer is of an elastic structure, and a plurality of brushes are arranged on the surface of the liquid storage layer.

[0011] Preferably, the film dissolving structure comprises a stirring cylinder, a filter plate is slidably arranged in the stirring cylinder, a stirring assembly is arranged on the filter plate, the filter plate is connected with a displacement assembly, the displacement assembly is arranged on the stirring cylinder, and the stirring end of the stirring assembly is close to the feeding port and the discharging port communicated between the two sides of the stirring cylinder.

[0012] Preferably, the discharging port is close to the inlet of the crushing structure, and a conveying belt is arranged between the discharging port and the crushing structure, and a cleaning assembly is arranged on the conveying belt.

[0013] Preferably, an outlet of the crushing structure is provided with a screening structure.

[0014] Preferably, the cleaning assembly comprises a mounting bracket and a water spraying assembly, the mounting bracket is arranged above the conveying belt, a plurality of water spraying assemblies are arranged on the mounting bracket, and the water spraying direction of the water spraying assembly is towards the conveying belt surface.

[0015] Preferably, the rotating assembly comprises a gear ring, the gear ring is fixedly sleeved on the outer wall of the outer cylinder, the gear ring is engagedly connected with a gear, the gear is coaxially fixed on the driving shaft of a second motor, and the second motor is fixed on the base one.

[0016] Preferably, the base one is rotationally connected with the two sides of a rotating ring, annular grooves are arranged on the outer walls of the two ends of the outer cylinder, and the rotating ring is rotationally arranged in the annular grooves.

[0017] Preferably, the stirring assembly comprises a third motor, a plurality of push plates are fixedly arranged on the driving shaft of the third motor, the plurality of push plates are arranged in a circumferential manner with the driving shaft as the center, the third motor is fixedly arranged on the bottom surface of the filter plate, and the push plates are located on the top surface of the filter plate.

[0018] Preferably, the channel direction of the feeding port is arranged to be inclined relative to the axial direction of the stirring cylinder, the inclined bottom end of the channel of the feeding port is located in the stirring cylinder, the channel direction of the discharging port is arranged to be perpendicular relative to the axial direction of the stirring cylinder, and the channel height of the discharging port is lower than the channel height of the feeding port.

[0019] Preferably, the crushing structure comprises a crushing cylinder, the outer wall of the crushing cylinder is connected with a rotating assembly, and a plurality of crushing columns are arranged on the inner wall of the crushing cylinder.

[0020] Preferably, helical guide vanes are arranged on the inner wall of the crushing cylinder.

[0021] Preferably, the screening structure comprises a material box, a first sieve plate and a second sieve plate are respectively arranged in the material box.

[0022] Preferably, the second sieve plate is located below the first sieve plate, and the sieve hole diameter of the second sieve plate is smaller than that of the first sieve plate.

[0023] The technical scheme of the present application has at least the following advantages and beneficial effects:

[0024] In the utility model, through setting up the film removing structure, the film removing agent is separated out by extrusion and immersed in the brush, and the film is removed by brushing, so that the use amount of the film removing agent can be greatly reduced, and the dense bristles can be used to quickly remove the film layer;

[0025] In the utility model, the residual film piece is soaked in the dissolving solution and removed, and is stirred and quickly dissolved, so that the contact time of the glass piece and the dissolving solution is reduced.

[0026] In the utility model, the film removing structure and the film dissolving structure are placed in front of the crushing structure, so that the film is removed first and then crushed, thereby reducing the film removing difficulty and improving the glass piece crushing efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 It is a structural schematic view of the utility model.

[0028] Figure 2 It is a sectional view structural schematic view of the utility model.

[0029] Figure 3 It is a structural schematic view of the film removing structure in the utility model.

[0030] Figure 4 It is a sectional view structural schematic view of the film dissolving structure in the utility model.

[0031] Figure 5 It is a sectional view structural schematic view of the film dissolving structure in the utility model.

[0032] In the drawing: 1-conveying belt, 101-fixed plate, 102-first motor, 103-belt, 104-guiding groove plate, 2-flushing assembly, 201-mounting support, 202-water spraying assembly, 3-film removing structure, 301-outer cylinder, 302-liquid storage layer, 303-brush, 304-rotating ring, 305-base one, 306-second motor, 307-gear, 308-tooth ring, 4-film dissolving structure, 401-feeding port, 402-stirring cylinder, 403-filter plate, 404-displacement assembly, 405-third motor, 406-pushing plate, 407-discharging port, 5-crushing structure, 501-crushing cylinder, 502-crushing column, 503-spiral guide piece, 504-base two, 6-screening structure, 601-material box, 602-first sieve plate, 603-second sieve plate. DETAILED DESCRIPTION

[0033] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0034] It should be noted that: similar reference numerals and letters represent similar items in the following drawings, therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings. If the terms "center", "upper", "lower", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the product of the application is usually placed, which is only for the convenience of describing the application and simplifying the description, and does not indicate or imply that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, therefore, it cannot be understood as a limitation on the application. It should be noted that, unless otherwise specified and limited, if the terms "set", "install", "connect" appear, they should be understood broadly, for example, they can be fixedly connected, or detachably connected, or integrally connected; they can be mechanically connected, or electrically connected; they can be directly connected, or indirectly connected through an intermediate medium, or the communication between two elements inside. For those skilled in the art, the specific meaning of the above terms in the application can be understood according to the specific circumstances.

[0035] Embodiments

[0036] Please refer to Figures 1-5 The utility model provides a kind of broken glass cleaning and recycling equipment, including conveyor belt 1, flushing component 2, film removing structure 3, dissolving film structure 4, broken structure 5, screening structure 6.

[0037] Further, the broken glass transported from outside is sent into conveyor belt 1, and the dirt on the broken glass pieces is washed off by the plurality of flushing components 2 provided on the conveyor belt 1.

[0038] The broken glass pieces after washing enter the film removing structure 3 from the conveying end of the conveyor belt 1, and the plated film layer on the surface of the broken glass is broken, facilitating the recycling of subsequent glass.

[0039] Please refer to Figures 1-3 In the embodiment, the film removing structure 3 includes an outer cylinder 301, a liquid storage layer 302, a brush 303, a rotating ring 304, a base 305, and a rotating assembly.

[0040] Specifically, the outer cylinder 301 is provided with an inlet and an outlet at both ends, the inlet is located at the conveying end of the conveying belt 1, facilitating the feeding of the crushed glass, and annular grooves are arranged on the outer walls of the inlet and outlet of the outer cylinder 301, a rotating ring 304 is rotatably arranged in the annular grooves, and the rotating ring 304 is rotatably connected to the top of a base one 305 at both sides, the bottom of the base one 305 is placed on the ground, a rotating assembly is arranged on the base one 305, and the rotating end is connected to the outer cylinder 301, so as to drive the outer cylinder 301 to rotate.

[0041] The rotating assembly comprises a second motor 306, a gear 307 and a gear ring 308.

[0042] Specifically, the gear ring 308 is fixedly sleeved on the outer wall of the outer cylinder 301, the gear ring 308 is in meshing connection with the gear 307, the gear 307 is coaxially fixed on the driving shaft of the second motor 306, the second motor 306 is fixed on the base one 305, and when the second motor 306 works, the outer cylinder 301 will rotate in the rotating ring 304, and the rotating ring 304 and the base one 305 provide support for the outer cylinder 301.

[0043] The inner wall of the outer cylinder 301 is covered with a liquid storage layer 302, the liquid storage layer 302 is internally provided with a cavity, the cavity is filled with a film removing agent, the film removing agent is in contact with the crushed glass pieces to separate the film from the crushed glass pieces, and a plurality of slits are formed in the inner surface of the liquid storage layer 302, and the liquid storage layer 302 is made of elastic rubber material and has an elastic structure.

[0044] Due to the stretching and contracting capability of the elastic rubber, the slits are closed in a normal rotating state, and the slits are opened when the rubber is pressed.

[0045] The slits are connected to the cavity and the inside of the outer cylinder 301, when the surface of the liquid storage layer 302 is pressed, the cavity shrinks, the film removing agent in the cavity flows out from the slits, a plurality of brushes 303 are arranged on the inner surface of the liquid storage layer 302, and the flowing film removing agent cooperates with the brushes 303 to clean the film layer on the glass surface.

[0046] The cavity in the liquid storage layer 302 is connected to an external infusion tube through a pipeline, and is responsible for inputting the external film removing agent into the cavity for replenishment.

[0047] Preferably, the film layer on the crushed glass pieces will still be attached to the glass pieces after subsequent crushing, affecting the subsequent recycling and processing of the glass, so it is necessary to remove the film before crushing. When the cleaned crushed glass pieces enter the film removing structure 3, the outer cylinder 301 rotates, the crushed glass pieces move on the brushes 303 in the outer cylinder 301, and when the brushes 303 scratch the surface of the crushed glass pieces, the film removing agent on the brushes 303 is also coated on the crushed glass pieces, so that the film layer is separated and brushed off by the brushes 303.

[0048] In the film removal process, the glass pieces follow the outer cylinder 301 and are squeezed by the elastic rubber layer, thereby precipitating the film removal agent. The amount of film removal agent precipitated varies with the rotation time of the glass pieces, and the film removal agent is not precipitated in excess, thereby reducing waste of the film removal agent. The elastic rubber layer also provides elastic shock absorption, reducing excessive fragmentation of the glass pieces during the film removal process, so that the residues adhere to the brush 303, affecting subsequent film removal work.

[0049] Further, the outlet of the film removal structure 3 is connected to the film dissolution structure 4, and a valve is arranged at the connection between the film removal structure 3 and the film dissolution structure 4, so that the glass pieces in the film removal structure 3 can be fully brushed to remove the film, and then input into the film dissolution structure 4, and the film dissolution structure 4 is responsible for soaking and stirring the glass pieces after preliminary film removal in the dissolving solution to quickly remove the residual film pieces still attached to the glass pieces.

[0050] Please refer to Figures 4-5 In this embodiment, the film dissolution structure 4 includes a feed inlet 401, a stirring cylinder 402, a filter plate 403, a displacement assembly 404, a stirring assembly, and a discharge outlet 407.

[0051] Specifically, the feed inlet 401 is arranged on one side of the stirring barrel, and the feed inlet 401 is connected to the outlet of the film removal structure 3 in the film removal structure 3. The channel direction of the feed inlet 401 is arranged obliquely relative to the axial direction of the stirring cylinder 402, and the oblique bottom end of the channel of the feed inlet 401 is located in the stirring cylinder 402, so that the glass pieces after preliminary film removal are guided into the stirring cylinder 402 by the inclined channel.

[0052] The filter plate 403 is slidably arranged in the stirring cylinder 402 and is used to separate the glass pieces from the dissolving solution. The stirring assembly is arranged on the filter plate 403 and is responsible for stirring the glass pieces to accelerate the dissolution of the residual film pieces. The filter plate 403 is fixedly connected to the displacement end of the displacement assembly 404, so that the filter plate 403 can move vertically. The dissolving solution is arranged at the bottom of the stirring cylinder 402. When the filter plate 403 moves vertically, the glass pieces on the filter plate 403 will be in contact with or separated from the dissolving solution in the cylinder.

[0053] The discharge outlet 407 is also arranged on the other side of the stirring cylinder 402 away from the feed inlet 401. The channel direction of the discharge outlet 407 is arranged perpendicularly relative to the axial direction of the stirring cylinder 402, and the channel height of the discharge outlet 407 is lower than the channel height of the feed inlet 401. The stirring end of the stirring assembly is close to the feed inlet 401 and the discharge outlet 407 connected to both sides of the stirring cylinder 402.

[0054] Preferably, after the glass fragments after the initial film removal enter the filter plate 403 in the stirring cylinder 402 through the feed port 401, the displacement assembly 404 drives the filter plate 403 to move downward, so that the glass fragments are immersed in the dissolving solution, the residual film on the glass fragments is dissolved, then the stirring end of the stirring assembly starts to rotate and stir, the dissolving is added, the contact time of the glass fragments with the dissolving solution is reduced, after the dissolving is completed, the displacement assembly 404 drives the filter plate 403 to move upward, and the stirring assembly continues to rotate, the glass fragments on the filter plate 403 are pushed from the feed port 401 to the discharge port 407 and sent out, because the channel height of the feed port 401 is higher than that of the discharge port 407, the glass fragments are difficult to push back to the feed port 401, and the smooth conveying is ensured.

[0055] In this embodiment, the displacement assembly 404 is provided as a telescopic air cylinder.

[0056] The stirring assembly includes a third motor 405 and a push plate 406.

[0057] The third motor 405 is fixedly arranged on the bottom surface of the filter plate 403, a plurality of push plates 406 are fixedly connected to the driving shaft of the third motor 405, the push plates 406 are arranged in a circle around the driving shaft, and the push plates 406 rotate relative to the filter plate 403 to rotate and push the glass fragments on the filter plate 403.

[0058] Further, the discharge port 407 is close to the inlet of the crushing structure 5, a conveying belt 1 is arranged between the discharge port 407 and the crushing structure 5, and a cleaning assembly is arranged on the conveying belt 1. The conveying belt 1 is responsible for conveying the glass fragments after the residual film is dissolved to the crushing structure 5 for glass crushing, and the cleaning assembly rinses the residual dissolving solution on the glass fragments to avoid adhering to the glass fragments to be crushed.

[0059] Please refer to Figure 2 In this embodiment, the crushing structure 5 includes a crushing cylinder 501, a crushing column 502, a spiral guide piece 503, and a base two 504.

[0060] Specifically, the crushing cylinder 501 is provided with an inlet and an outlet at both ends for feeding and discharging glass fragments, both ends of the crushing cylinder 501 are rotatably arranged on the base two 504, the outer wall of the crushing cylinder 501 is connected to the rotating end of a rotating assembly, and the rotating assembly is fixedly arranged on the base two 504 and used to drive the crushing cylinder 501 to rotate.

[0061] The inner wall of the crushing cylinder 501 is provided with a plurality of crushing columns 502, which can collide and crush the glass fragments during rotation.

[0062] The inner wall of the crushing cylinder 501 is also provided with a spiral guide piece 503, which extends from the inlet to the outlet of the crushing cylinder 501, and is used to convey the crushed glass residues to the outlet of the crushing cylinder 501.

[0063] Further, a screening structure 6 is arranged at the outlet of the crushing structure 5, and a screening starting end of the screening structure 6 is arranged below the outlet of the crushing structure 5, so as to screen and separate the glass residues of different particle sizes after crushing.

[0064] Please refer to Figure 2 In the embodiment, the screening structure 6 comprises a bin 601, a screen plate one 602, a screen plate two 603, and a vibrating member.

[0065] Specifically, the bin 601 is arranged below the crushing cylinder 501, the bin 601 is provided with the vibrating member, the vibrating member is fixedly connected with the screen plate one 602 and the screen plate two 603, the two screen plates are driven to vibrate by the vibrating member, the screen plate one 602 and the screen plate two 603 are respectively arranged in the bin 601 in an inclined manner, the screen plate two 603 is arranged below the screen plate one 602, and the screen hole diameter of the screen plate two 603 is smaller than that of the screen plate one 602.

[0066] The screen plate one 602 screens the uncrushed glass pieces of a larger size and stores them in the space of the bin 601 separated by the screen plate one 602, so as to facilitate personnel to continue conveying the screened glass pieces to the equipment for cleaning and recycling, and the glass particles and glass powder residues passing through the screen plate one 602 fall into the screen plate two 603 for further screening.

[0067] The screen plate two 603 screens the glass particles and stores them in the space of the bin 601 separated by the screen plate two 603, the screened glass particles are glass recycling raw materials meeting the recycling requirements, and the glass powder residues passing through the screen plate two 603 fall into the space of the bin 601 separated by the bottom of the screen plate two 603 for collection and storage, and are used as glass recycling raw materials.

[0068] Please refer to Figure 2 In the embodiment, the conveying belt 1 comprises a fixed plate 101, a first motor 102, a belt 103, and a guide groove plate 104.

[0069] Specifically, the two ends of the fixed plate 101 are respectively fixedly provided with the first motor 102, the driving shafts of the two first motors 102 are sleeved with the two ends of the belt 103, the first motor 102 drives the belt 103 to rotate, for conveying materials, and the conveying end of the belt 103 is provided with the guide groove plate 104, the guide groove plate 104 is fixedly installed on the fixed plate 101, the groove of the guide groove plate 104 faces the inlet of the film removing structure 3, and the guide groove plate 104 facilitates entering the film removing structure 3.

[0070] Specifically, the two ends of the fixed plate 101 are respectively fixedly provided with the first motor 102, the driving shafts of the two first motors 102 are sleeved with the two ends of the belt 103, the first motor 102 drives the belt 103 to rotate, for conveying materials, and the conveying end of the belt 103 is provided with the guide groove plate 104, the guide groove plate 104 is fixedly installed on the fixed plate 101, the groove of the guide groove plate 104 faces the inlet of the film removing structure 3, and the guide groove plate 104 facilitates entering the film removing structure 3.

[0071] Please refer to Figure 2 In the embodiment, the flushing assembly 2 comprises a mounting bracket 201 and a water spraying assembly 202.

[0072] Specifically, the mounting bracket 201 is arranged above the conveying belt 1, a plurality of water spraying assemblies 202 are arranged on the mounting bracket 201, and the water spraying direction of the water spraying assemblies 202 is towards the belt surface of the conveying belt 1 to flush the surface of the crushed glass on the belt surface.

[0073] The water spraying assembly 202 comprises a water spraying head, a water pipe and a water pump, and the water pump pumps water into the water spraying head through the water pipe to spray water.

[0074] So far, the embodiments of the utility model have been described in detail. In order to avoid shielding the concept of the utility model, some details known in the art are not described. Those skilled in the art can fully understand how to implement the technical solutions of the utility model herein according to the above description, and the scope of the utility model is defined by the appended claims.

Claims

1. A crushed glass cleaning and recycling plant comprising a conveyor belt (1) provided with a washing assembly (2) and a crushing structure (5), characterized in that ; The conveying end of the conveying belt (1) is communicated with the inlet of the film removing structure (3), and the outlet of the film removing structure (3) is communicated with the film dissolving structure (4); The film removing structure (3) comprises an outer cylinder (301), the outer wall of the outer cylinder (301) is connected with a rotating assembly, the inner wall of the outer cylinder (301) is covered with a liquid storage layer (302), the liquid storage layer (302) is internally provided with a cavity, the inner surface of the liquid storage layer (302) is penetrated through with a plurality of slits, the slits are communicated with the cavity and the inside of the outer cylinder (301), the liquid storage layer (302) is of an elastic structure, and the surface of the liquid storage layer (302) is provided with a plurality of brushes (303); The film dissolving structure (4) comprises a stirring cylinder (402), the stirring cylinder (402) is internally slidably provided with a filter plate (403), the filter plate (403) is provided with a stirring assembly, the filter plate (403) is connected with a displacement assembly (404), the displacement assembly (404) is arranged on the stirring cylinder (402), and the stirring end of the stirring assembly is close to the feeding port (401) and the discharging port (407) communicated with both sides of the stirring cylinder (402). The discharging port (407) is close to the inlet of the crushing structure (5), and the conveying belt (1) is arranged between the discharging port (407) and the crushing structure (5), and the conveying belt (1) is provided with a cleaning assembly; The outlet of the crushing structure (5) is provided with a screening structure (6).

2. The glass cullet cleaning and recycling apparatus as claimed in claim 1, wherein The flushing assembly (2) comprises a mounting bracket (201) and a water spraying assembly (202), the mounting bracket (201) is arranged above the conveying belt (1), a plurality of water spraying assemblies (202) are arranged on the mounting bracket (201), and the water spraying direction of the water spraying assembly (202) is towards the belt surface of the conveying belt (1).

3. The glass cullet cleaning and recycling apparatus as claimed in claim 1, wherein The rotating assembly comprises a gear ring (308), the gear ring (308) is fixedly sleeved on the outer wall of the outer cylinder (301), the gear ring (308) is engagedly connected with a gear (307), the gear (307) is coaxially fixed on the driving shaft of a second motor (306), and the second motor (306) is fixed on a base one (305). The base one (305) is rotatably connected with both sides of a rotating ring (304), the outer wall of both ends of the outer cylinder (301) is provided with an annular notch, and the rotating ring (304) is rotatably arranged in the annular notch.

4. The glass cullet cleaning and recycling apparatus as claimed in claim 1, wherein The stirring assembly comprises a third motor (405), a driving shaft of the third motor (405) is fixedly provided with a push plate (406), a plurality of push plates (406) are circumferentially arranged around the driving shaft, the third motor (405) is fixedly arranged on the bottom surface of the filter plate (403), and the push plate (406) is located on the top surface of the filter plate.

5. The glass cullet cleaning and recycling apparatus as claimed in claim 1, wherein The channel direction of the feeding port (401) is obliquely arranged relative to the axial direction of the stirring cylinder (402), the oblique bottom end of the channel of the feeding port (401) is located in the stirring cylinder (402), and the channel direction of the discharging port (407) is vertically arranged relative to the axial direction of the stirring cylinder (402), and the channel height of the discharging port (407) is lower than the channel height of the feeding port (401).

6. The glass cullet cleaning and recycling apparatus as claimed in claim 1, wherein The crushing structure (5) comprises a crushing cylinder (501), and the outer wall of the crushing cylinder (501) is connected with a rotating assembly; and the inner wall of the crushing cylinder (501) is provided with a plurality of crushing columns (502). The inner wall of the crushing cylinder (501) is provided with spiral guide vanes (503).

7. The glass cullet cleaning and recycling apparatus as claimed in claim 1, wherein The screening structure (6) comprises a hopper (601), and a first screen plate (602) and a second screen plate (603) are respectively arranged in the hopper (601) in a tilted manner. The second screen plate (603) is located below the first screen plate (602), and the screen hole diameter of the second screen plate (603) is smaller than that of the first screen plate (602).

Citation Information

Patent Citations

  • Cullet cleaning and recycling device

    CN203991630U