Regenerated brick production equipment for concrete pole residual slurry treatment

Through the design of integrated mixing box, mixing components and scraping components, the problem of uneven mixing of residual slurry and sand material of concrete poles is solved, the resource recycling efficiency and production efficiency are improved, and green production and resource recycling are realized.

CN223265904UActive Publication Date: 2025-08-26GUI ZHOU CHANG TONG DIAN LI XIAN LU QI CAI YOU XIAN GONG SI
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Patent Information

Application Number
CN202422404638.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-08-26
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

Existing recycled brick production equipment cannot effectively mix concrete pole residual slurry and sand material, resulting in waste of resources and low production efficiency, and materials are prone to spilling out and causing environmental pollution.

Method used

An integrated structure including a mixing box, agitating assembly, scraping assembly and a collection box is designed. The mixing component is mixed with residual slurry and sand material of concrete pole, scraping the component to clean the excess material, and it is introduced into the lower mold to form, and the collection box collects residual materials to achieve resource recycling.

Benefits of technology

It realizes efficient mixing and forming of residual slurry of concrete poles, improves resource recycling efficiency, reduces material waste, ensures a clean production environment, and realizes the recycling of resources.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides regenerated brick production equipment for concrete pole residual slurry treatment, and relates to the technical field of concrete pole residual slurry production equipment, the regenerated brick production equipment comprises a workbench, a supporting frame, a mixing box and a collecting box, the mixing box is internally provided with a stirring assembly, the surface of the mixing box is provided with a feeding hopper, and the bottom of the mixing box is provided with a discharging pipe; according to the concrete pole residual slurry recycling device, the mixing box, the stirring assembly, the scraping assembly and the collecting box are adopted, residual slurry and sand are added into the mixing box through the feeding hopper, the residual slurry and the sand are fully mixed through the stirring assembly, secondary utilization of the concrete pole residual slurry is effectively promoted, and the resource recycling efficiency is improved; according to the device, redundant materials and materials possibly remaining in the previous forming and extruding process are scraped away, then the materials are collected into the collecting box through the material guiding slope, waste of the materials is avoided, the cleanliness of the production environment is guaranteed, the collected materials can be recycled, and therefore the dual purposes of resource circulation and green production are achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of equipment for producing residual slurry of concrete poles, in particular to equipment for producing recycled bricks used for processing residual slurry of concrete poles. Background Art

[0002] Currently, existing recycled brick production equipment is unable to directly mix the residual slurry from concrete poles with sand for secondary utilization, which limits the efficient recycling of resources and reduces overall production efficiency. At the same time, materials are prone to overflow during loading and molding, and are directly scattered onto the ground or work surface, which not only causes waste of raw materials, but also causes problems with environmental cleanup, and fails to achieve the recovery and reuse of leaked materials. Utility Model Content

[0003] The purpose of the utility model is to solve the shortcomings of the prior art and to propose a recycled brick production device for treating residual slurry of concrete poles.

[0004] In order to achieve the above-mentioned purpose, the utility model adopts the following technical solutions: a recycled brick production equipment for processing residual slurry of concrete poles, comprising a workbench, a support frame, a mixing box and a collecting box, a stirring assembly is provided inside the mixing box, a feed hopper is provided on the surface of the mixing box, a discharge pipe is provided at the bottom of the mixing box, a conveying assembly is provided on the surface of the workbench, a first cylinder is provided on the surface of the support frame, an upper mold is provided at the bottom of the first cylinder, a second cylinder is provided on the surface of the support frame, a lower mold is provided at the bottom of the second cylinder, a material guide slope is provided on the side of the lower mold, a connecting frame is provided on the side of the lower mold, a baffle is provided on the surface of the lower mold, a movable groove is provided on the surfaces of the connecting frame and the baffle, and a scraping assembly is provided inside the movable groove.

[0005] Preferably, the stirring assembly includes a first servo motor, a rotating rod and a stirring rod, the output end of the first servo motor is provided with a rotating rod, and the surface of the rotating rod is provided with a stirring rod.

[0006] Preferably, the conveying assembly includes an electric slide rail, an electric slider and a placement plate, the surface of the electric slide rail is provided with an electric slider, and the surface of the electric slider is provided with a placement plate.

[0007] Preferably, the scraping assembly includes a second servo motor, a screw, a movable seat, a scraper and a guide rod, the output end of the second servo motor is provided with a screw, the surface of the screw is provided with a movable seat, the surface of the movable seat is provided with a scraper, and a guide rod is provided inside the movable seat away from the second servo motor.

[0008] Preferably, a guide rail is provided on the surface of the support frame, guide blocks are provided at the four corners of the upper mold, and a guide groove is provided on the surface of the lower mold.

[0009] Preferably, the surface of the conveying component is provided with recycled bricks, and the position of the material guide slope corresponds to the collection box.

[0010] Preferably, a bracket is provided at the bottom of the mixing box, and the position of the discharge pipe corresponds to the connection frame.

[0011] Preferably, the number of the feed hoppers is two, and the position of the baffle is adapted to the second cylinder and the lower mold.

[0012] Beneficial effects

[0013] In the utility model, a mixing box, a stirring assembly, a scraping assembly and a collecting box are adopted to construct a structural design which integrates mixing and extrusion molding. The residual slurry and sand material are respectively added into the mixing box through the feed hopper, and are fully mixed by the stirring assembly to ensure that the two are fully and evenly mixed in the box. The mixed material is transmitted to the connecting frame through the discharge pipe, which effectively promotes the secondary utilization of the residual slurry of the concrete pole, improves the resource recovery efficiency, and improves the overall production efficiency. The second servo motor is turned on to drive the screw to rotate, and the scraper is driven to move on the surface of the lower mold, thereby introducing the material into the lower mold to prepare for extrusion molding. At the same time, the excess material and the material that may remain in the previous molding and extrusion process are scraped off, and then the material is collected into the collection box through the material guide slope, so as to avoid waste of material and ensure the cleanliness of the production environment. The collected material can be recycled and reused, thereby achieving the dual goals of resource circulation and green production. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is an axonometric view of the present utility model;

[0015] Figure 2 It is a three-dimensional diagram of the utility model;

[0016] Figure 3 It is a structural diagram of the utility model;

[0017] Figure 4 This is a diagram of the internal structure of the mixing box of the present utility model;

[0018] Figure 5 This is a structural diagram of the upper mold and lower mold of the utility model;

[0019] Figure 6 This is a structural diagram of the scraping component of the present invention.

[0020] Legend:

[0021] 1. Workbench; 2. Support frame; 3. Mixing box; 4. Stirring assembly; 401. First servo motor; 402. Rotating rod; 403. Stirring rod; 5. Conveying assembly; 501. Electric slide rail; 502. Electric slider; 503. Placement plate; 6. First cylinder; 7. Second cylinder; 8. Guide rail; 9. Baffle; 10. Material guide slope; 11. Collecting box; 12. Feed hopper; 13. Upper mold; 14. Lower mold; 15. Connecting frame; 16. Discharge pipe; 17. Moving groove; 18. Guide block; 19. Scraping assembly; 1901. Second servo motor; 1902. Screw; 1903. Moving seat; 1904. Scraper; 1905. Guide rod; 20. Guide groove; 21. Recycled brick; 22. Bracket. DETAILED DESCRIPTION

[0022] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific embodiments and drawings. However, the following embodiments are only preferred embodiments of the present invention and are not exhaustive. Based on the embodiments in the implementation manner, other embodiments obtained by those skilled in the art without creative work are all within the scope of protection of the present invention.

[0023] The specific embodiments of the present utility model are described below with reference to the accompanying drawings. Specific embodiment one:

[0025] Reference Figure 1-6 A recycled brick production device for processing residual slurry of concrete poles includes a workbench 1, a support frame 2, a mixing box 3 and a collecting box 11. A stirring assembly 4 is provided inside the mixing box 3. The stirring assembly 4 includes a first servo motor 401, a rotating rod 402 and a stirring rod 403. The output end of the first servo motor 401 is provided with a rotating rod 402, and the surface of the rotating rod 402 is provided with a stirring rod 403. The first servo motor 401 provides power to drive the rotating rod 402 to rotate. The rotating rod 402 rotates driven by the rotating rod 402 to stir the material in the mixing box 3 to achieve uniform mixing. The surface of the mixing box 3 is provided with a feed hopper 12, and the number of the feed hoppers 12 is two. The two feed hoppers 12 are used to put in raw materials such as concrete pole slurry and sand, which is convenient for operation and reduces cross contamination. A discharge pipe 16 is provided at the bottom of the mixing box 3, and a bracket 22 is provided at the bottom of the mixing box 3. The position of the discharge pipe 16 corresponds to the connecting frame 15. The discharge pipe 16 is arranged just above the connecting frame 15, and the height between the discharge pipe 16 and the connecting frame 15 is set so as not to affect the movement of the lower mold 14. The evenly mixed material is transported to the connecting frame 15 through the discharge pipe 16.

[0026] The surface of the workbench 1 is provided with a conveying assembly 5, which includes an electric slide rail 501, an electric slider 502 and a placement plate 503. The surface of the electric slide rail 501 is provided with an electric slider 502, and the surface of the electric slider 502 is provided with a placement plate 503. The electric slider 502 slides on the electric slide rail 501, driving the placement plate 503 and the regenerated brick 21 to move. The surface of the conveying assembly 5 is provided with regenerated bricks 21. The surface of the support frame 2 is provided with a first cylinder 6. The bottom of the first cylinder 6 is provided with an upper mold 13. The first cylinder 6 drives the upper mold 13 to rise and fall, and cooperates with the lower mold 14 to complete the molding process of the material. The surface of the support frame 2 is provided with a second cylinder 7. The bottom of the second cylinder 7 is provided with a lower mold 14. The second cylinder 7 drives the lower mold 14 to rise and fall, and cooperates with the upper mold 13. At the same time, it can also be placed on the upper mold after molding. Lifting is to facilitate the removal of finished products. A guide rail 8 is provided on the surface of the support frame 2. The guide rail 8 provides guidance for the lifting and lowering of the upper mold 13 and the lower mold 14 to ensure that the lifting process is smooth and without offset. Guide blocks 18 are provided at the four corners of the upper mold 13. The guide blocks 18 slide on the guide rail 8 to provide guidance for the lifting of the upper mold 13 to ensure that the lifting process is smooth and without offset. A guide groove 20 is provided on the surface of the lower mold 14. The guide groove 20 enables the lower mold 14 to slide on the guide rail 8 to provide guidance for the lifting of the lower mold 14 to ensure that the lifting process is smooth and without offset. A material guide slope 10 is provided on the side of the lower mold 14 to guide the excess material scraped by the scraping component 19 to the collection box 11 to reduce material waste. The position of the material guide slope 10 corresponds to the collection box 11. The excess material is collected by the collection box 11 to facilitate subsequent recycling and reuse.

[0027] A connecting frame 15 is provided on the side of the lower mold 14, and the material is discharged to the connecting frame 15 through the discharge pipe 16. The connecting frame 15 serves as a transition area for material transmission. A baffle 9 is provided on the surface of the lower mold 14. The baffle 9 prevents the material from overflowing during the transmission process, keeps the working area clean, and provides support for the scraping component 19. The position of the baffle 9 is adapted to the second cylinder 7 and the lower mold 14. The baffle 9 is arranged between the second cylinder 7 and the mold opening of the lower mold 14 to prevent the material from being affected by the introduction into the mold opening. At the same time, the height of the baffle 9 is adapted to the movable height of the upper mold 13 and the lower mold 14 to avoid affecting the moving rods of the upper mold 13 and the lower mold 14. A moving groove 17 is provided on the surface of the connecting frame 15 and the baffle 9, and the interior of the moving groove 17 is provided with a The scraping assembly 19 includes a second servo motor 1901, a screw 1902, a movable seat 1903, a scraper 1904 and a guide rod 1905. The output end of the second servo motor 1901 is provided with a screw 1902, the surface of the screw 1902 is provided with a movable seat 1903, the surface of the movable seat 1903 is provided with a scraper 1904, and the interior of the movable seat 1903 away from the second servo motor 1901 is provided with a guide rod 1905. The second servo motor 1901 provides power to drive the screw 1902 to rotate. The screw 1902 converts the rotational motion of the motor into linear motion of the movable seat 1903. The movable seat 1903 moves along the guide rod 1905 under the drive of the screw 1902, driving the scraper 1904 to scrape off excess material.

[0028] The concrete pole slurry and sand and other raw materials are respectively put into the mixing box 3 through the two feeding hoppers 12, and the first servo motor 401 is started to drive the rotating rod 402 to rotate, thereby driving the stirring rod 403 to fully stir the materials in the mixing box 3 until the materials are evenly mixed. The second cylinder 7 is controlled to drive the lower mold 14 to descend to the placement plate 503 to prepare to receive the materials. The first servo motor 401 is turned off, and the valve of the discharge pipe 16 at the bottom of the mixing box 3 is opened to discharge the evenly mixed materials into the connecting frame 15 in multiple times. The second servo motor 1901 is started to drive the screw rod 1902 to rotate, thereby driving the moving seat 1903 to move along the guide rod 1905, and the moving seat 1903 drives the scraper 19 04 moves on the surface of the lower mold 14, and the scraper 1904 scrapes the material multiple times to fully introduce the material into the lower mold 14. At the same time, during the scraping process of the scraper 1904, the material that may remain in the previous molding and extrusion process will also be scraped off. The scraped material slides into the collection box 11 through the material guide slope 10 for subsequent recycling and reuse. The first cylinder 6 is started to drive the upper mold 13 to descend and close the mold with the lower mold 14 to extrude the material. After molding is completed, the second cylinder 7 is then controlled to drive the lower mold 14 to rise, so as to facilitate the removal of the molded recycled brick 21. The electric slider 502 on the electric slide rail 501 is started to drive the placement plate 503 and the formed recycled brick 21 to move on the workbench 1. Specific embodiment two:

[0030] On the premise of satisfying the above structure, in order to further optimize material collection and prevent the connection frame 15 from being blocked, a material guide trough can be opened on the side of the connection frame 15, and a material guide slope 10 can be set on the surface of the material guide trough, and finally the material flow is guided to the collection box 11 under the material guide slope 10. Since the scraper 1904 pushes backward, there will be slight residue of material, and the material may be brought up during the reverse movement, which will accumulate in the connection frame 15 and cause blockage. The opened material guide trough can effectively guide the material to the material guide slope 10 and then to the collection box 11, ensuring that every recyclable resource can be fully utilized and avoiding accumulation in the connection frame 15 to cause blockage.

[0031] In summary:

[0032] By adopting the mixing box 3, stirring component 4, scraping component 19 and collecting box 11, a structural design integrating mixing and extrusion molding is realized. The residual slurry and sand material are respectively added into the mixing box 3 through the feed hopper 12, and are fully mixed by the stirring component 4 to ensure that the two are fully and evenly mixed in the box. The mixed material is transmitted to the connecting frame 15 through the discharge pipe 16, which effectively promotes the secondary utilization of the residual slurry of the concrete pole, improves the resource recovery efficiency, and improves the overall production efficiency. Turn on the second servo motor 1901, drive the screw 1902 to rotate, and drive the scraper 1904 to move on the surface of the lower mold 14, thereby introducing the material into the lower mold 14 to prepare for extrusion molding. At the same time, the excess material and the material that may remain in the previous molding and extrusion process are scraped off, and then the material is collected into the collecting box 11 through the material guide slope 10, avoiding waste of material, ensuring the cleanliness of the production environment, and the collected material can be recycled and reused, thereby achieving the dual goals of resource recycling and green production.

[0033] In the present invention, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or may include the first and second features being in contact not directly but through another feature between them. Moreover, a first feature being "above," "above," and "above" a second feature may include the first feature being directly above or obliquely above the second feature, or may simply mean that the first feature is higher in level than the second feature. A first feature being "below," "below," and "below" a second feature may include the first feature being directly below or obliquely below the second feature, or may simply mean that the first feature is lower in level than the second feature.

[0034] The above shows and describes 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 above embodiments and descriptions are merely preferred examples of the present invention and are not intended to limit the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention, and such changes and improvements fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.

Claims

1. A recycled brick production device for treating residual slurry of concrete poles, comprising a workbench (1), a support frame (2), a mixing box (3) and a collecting box (11), characterized in that: A stirring assembly (4) is provided inside the mixing box (3), a feed hopper (12) is provided on the surface of the mixing box (3), a discharge pipe (16) is provided at the bottom of the mixing box (3), a conveying assembly (5) is provided on the surface of the workbench (1), a first cylinder (6) is provided on the surface of the support frame (2), an upper mold (13) is provided at the bottom of the first cylinder (6), a second cylinder (7) is provided on the surface of the support frame (2), a lower mold (14) is provided at the bottom of the second cylinder (7), a material guide slope (10) is provided on the side of the lower mold (14), a connecting frame (15) is provided on the side of the lower mold (14), a baffle (9) is provided on the surface of the lower mold (14), a movable groove (17) is provided on the surface of the connecting frame (15) and the baffle (9), and a scraping assembly (19) is provided inside the movable groove (17).

2. The recycled brick production equipment for treating residual slurry of concrete poles according to claim 1 is characterized in that: The stirring assembly (4) comprises a first servo motor (401), a rotating rod (402) and a stirring rod (403); the output end of the first servo motor (401) is provided with the rotating rod (402); and the surface of the rotating rod (402) is provided with the stirring rod (403).

3. The recycled brick production equipment for treating residual slurry of concrete poles according to claim 1 is characterized in that: The transmission assembly (5) comprises an electric slide rail (501), an electric slider (502) and a placement plate (503); the surface of the electric slide rail (501) is provided with the electric slider (502), and the surface of the electric slider (502) is provided with the placement plate (503).

4. The recycled brick production equipment for treating residual slurry of concrete poles according to claim 1 is characterized in that: The scraping assembly (19) comprises a second servo motor (1901), a screw rod (1902), a movable seat (1903), a scraper (1904) and a guide rod (1905); the output end of the second servo motor (1901) is provided with a screw rod (1902); the surface of the screw rod (1902) is provided with a movable seat (1903); the surface of the movable seat (1903) is provided with a scraper (1904); and the interior of the movable seat (1903) away from the second servo motor (1901) is provided with a guide rod (1905).

5. The recycled brick production equipment for treating residual slurry of concrete poles according to claim 1 is characterized in that: The surface of the support frame (2) is provided with a guide rail (8), the four corners of the upper mold (13) are provided with guide blocks (18), and the surface of the lower mold (14) is provided with a guide groove (20).

6. The recycled brick production equipment for treating residual slurry of concrete poles according to claim 1 is characterized in that: The surface of the conveying component (5) is provided with regenerated bricks (21), and the position of the material guide slope (10) corresponds to the collection box (11).

7. The recycled brick production equipment for treating residual slurry of concrete poles according to claim 1 is characterized by: A bracket (22) is provided at the bottom of the mixing box (3), and the position of the discharge pipe (16) corresponds to the connection frame (15).

8. The recycled brick production equipment for treating residual slurry of concrete poles according to claim 1 is characterized by: There are two feed hoppers (12), and the position of the baffle (9) is adapted to the second cylinder (7) and the lower mold (14).

Citation Information

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