Binder mixing and feeding and stirring device
Patent Information
- Application Number
- CN202522151512.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-11
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-10-11
AI Technical Summary
[0003]根据其公开的技术方案来看,现有技术中将刮板与搅拌叶相互连接,在搅拌物料的同时对桶内壁进行清理,该流程中刮板持续对桶内壁进行摩擦,易导致桶内壁摩擦过度,进而降低装置的使用寿命
[0014] 1. The adhesive mixing and feeding agitator uses an installed stirring mechanism to improve mixing efficiency during the mixing stage by utilizing the notch on the surface of the first ring. During the discharge stage, the rotating disc closes the notch on the first disc, which pushes the first ring downward to push the material out, thus accelerating the discharge speed and reducing the situation where the material stays in the discharge pipe for too long and then adheres to the inner wall of the discharge pipe, causing blockage.
Smart Images

Figure CN224748962U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of adhesive mixing and stirring technology, specifically an adhesive mixing and stirring device. Background Technology
[0002] Adhesive mixing technology replaces manual mixing with mechanical devices, ensuring uniform distribution of components and sufficient chemical reaction, thereby improving the stability and final performance of the adhesive. It is widely used in industries such as construction, automobiles, and electronics. According to existing technologies, such as the raw material mixing device for adhesive production described in Chinese patent document CN220990480U, the technical solution disclosed uses pressure holes and scrapers on the stirring blades. When the stirring rod is driven by a motor, the adhesive rotates in the mixing tank. When the adhesive is squeezed by the stirring blades, it passes through the pressure holes, making the adhesive more uniformly mixed. Furthermore, because the scraper is installed, when it is inconvenient for workers to touch the inside of the mixing tank, the scraper can scrape off the adhesive residue on the inner wall of the mixing tank.
[0003] According to its publicly available technical solutions, the existing technology connects the scraper and the mixing blade to each other, cleaning the inner wall of the tank while mixing the material. In this process, the scraper continuously rubs against the inner wall of the tank, which can easily lead to excessive friction on the inner wall of the tank, thereby reducing the service life of the device. Utility Model Content
[0004] To address the shortcomings of existing technologies, the purpose of this invention is to provide an adhesive mixing and feeding device to solve the problems mentioned in the background. This invention, through the installation of a wall-scraping assembly, locks the first and second rings together during the discharge stage by rotating the disc. As the first ring descends to discharge material, the second ring moves downwards simultaneously. During the downward movement of the second ring, the material adhering to the tank wall surface is scraped off, avoiding the problem of excessive wear on the tank caused by continuous scraping of the tank wall by the scraping blades in traditional equipment. It also eliminates the need for manual cleaning of the inner wall of the tank later.
[0005] To achieve the above objectives, this utility model is implemented through the following technical solution: an adhesive mixing and feeding stirring device, including a stirring device body, the stirring device body including a tank, a stirring mechanism and a wall scraping assembly, the bottom surface of the tank is connected to a discharge pipe, the surface of the tank is connected to an input pipe, the bottom surface of the tank is welded with a support leg, the top surface of the tank is provided with a T-shaped groove, and the wall scraping assembly is disposed inside the tank.
[0006] Furthermore, the agitation mechanism includes a fixed plate, a first ring, a sliding plate, and a rotating disk. A push rod is welded to the top surface of the rotating disk, and a telescopic sleeve and a connecting rod are welded to the bottom surface of the rotating disk. An electric lifting rod is inserted into the inside of the telescopic sleeve.
[0007] Furthermore, a T-shaped protrusion is installed on the bottom surface of the connecting rod, the T-shaped protrusion is embedded inside the T-shaped sliding groove, and the end of the electric lifting rod is welded to the top surface of the fixed plate.
[0008] Furthermore, the side of the fixing plate is welded to the inner wall of the first ring, the inner wall of the tank is welded with a first baffle and a second baffle, the fixing plate is provided with a sandwich layer inside, and the sliding plate is inserted into the sandwich layer.
[0009] Furthermore, a baffle is welded to the side of the sliding plate, and a sleeve is welded to the end of the baffle. The sleeve is fitted onto the surface of the electric lifting rod.
[0010] Furthermore, the wall scraping assembly includes a second ring and a long rod, one end of which is welded to the top surface of the second ring, and the other end of which is welded to a circular baffle.
[0011] Furthermore, the end of the long rod passes through the top surface of the tank, and a spring is fitted onto the surface of the long rod. The two ends of the spring are respectively welded to the bottom surface of the circular baffle and the top surface of the tank.
[0012] Furthermore, both the surface of the first ring and the inner wall of the second ring are provided with threaded grooves, and the surface of the second ring contacts the inner wall of the tank.
[0013] The beneficial effects of this utility model are:
[0014] 1. The adhesive mixing and feeding agitator uses an installed stirring mechanism to improve mixing efficiency during the mixing stage by utilizing the notch on the surface of the first ring. During the discharge stage, the rotating disc closes the notch on the first disc, which pushes the first ring downward to push the material out, thus accelerating the discharge speed and reducing the situation where the material stays in the discharge pipe for too long and then adheres to the inner wall of the discharge pipe, causing blockage.
[0015] 2. The adhesive mixing and feeding agitator, through the installed wall scraping component, locks the first and second rings together when rotating the rotating disc during the discharge stage. When the first ring descends to discharge, the second ring moves down synchronously. During the descent of the second ring, the material adhering to the tank wall surface is scraped off, avoiding the problem of excessive wear of the tank caused by the continuous scraping of the tank wall by the wall scraping blades in traditional equipment. At the same time, it saves the need for manual cleaning of the inner wall of the tank later. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the external structure of the adhesive mixing and feeding device of this utility model;
[0017] Figure 2 This is a cross-sectional view of the tank body of the adhesive mixing and feeding agitator of this utility model;
[0018] Figure 3 This is a schematic diagram of the stirring mechanism of the adhesive mixing and feeding device of this utility model;
[0019] Figure 4 This is a schematic diagram of the scraping component of the adhesive mixing and feeding device of this utility model;
[0020] In the diagram: 1. Tank body; 2. Agitating mechanism; 3. Scraper assembly; 4. Support leg; 5. Discharge pipe; 6. T-shaped chute; 7. Input pipe; 8. Telescopic sleeve; 9. Long rod; 10. Spring; 11. Rotating disc; 12. Push rod; 13. Connecting rod; 14. Second ring; 15. First stop bar; 16. Second stop bar; 17. Fixed plate; 18. Sliding plate; 19. Baffle; 20. Sleeve; 21. Electric lifting rod; 22. First ring. Detailed Implementation
[0021] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0022] Please see Figures 1 to 4 This utility model provides the following technical solution: an adhesive mixing and feeding stirring device, including a stirring device body, the stirring device body including a tank 1, a stirring mechanism 2 and a wall scraping assembly 3, the bottom surface of the tank 1 is connected to a discharge pipe 5, the surface of the tank 1 is connected to an input pipe 7, the bottom surface of the tank 1 is welded with a support leg 4, the top surface of the tank 1 is provided with a T-shaped groove 6, the wall scraping assembly 3 is set inside the tank 1, the electric lifting rod 21 is linked to the first ring 22 to move up and down to stir the material, during the discharge stage the rotating disk 11 is rotated, thereby closing the notch on the surface of the first ring 22, and simultaneously locking the first ring 22 with the second ring 14, accelerating the discharge while scraping off the material on the tank wall.
[0023] In this embodiment, the stirring mechanism 2 includes a fixed plate 17, a first ring 22, a sliding plate 18, and a rotating disk 11. A push rod 12 is welded to the top surface of the rotating disk 11, and a telescopic sleeve 8 and a connecting rod 13 are welded to the bottom surface of the rotating disk 11. An electric lifting rod 21 is inserted into the telescopic sleeve 8. A T-shaped protrusion is installed on the bottom surface of the connecting rod 13, and the T-shaped protrusion is embedded in the interior of a T-shaped groove 6. The end of the electric lifting rod 21 is welded to the top surface of the fixed plate 17, and the side of the fixed plate 17 is welded to the inner wall of the first ring 22. The inner wall of the tank 1 is welded with… The first baffle 15 and the second baffle 16 are connected. The fixed plate 17 has an internal interlayer. The sliding plate 18 is inserted into the interlayer. The side of the sliding plate 18 is welded with a baffle 19. The end of the baffle 19 is welded with a sleeve 20. The sleeve 20 is fitted onto the surface of the electric lifting rod 21. During the stirring stage, the sliding plate 18 is inside the interlayer of the fixed plate 17. There is a gap on the surface of the first ring 22. When the material discharge stage is entered, the push rod 12 is pushed to make the rotating disk 11 rotate. The sliding plate 18 extends out from the interlayer of the fixed plate 17, thereby closing the gap on the surface of the first ring 22.
[0024] In this embodiment, the scraping assembly 3 includes a second ring 14 and a long rod 9. One end of the long rod 9 is welded to the top surface of the second ring 14, and the other end of the long rod 9 is welded to a circular baffle. The end of the long rod 9 passes through the top surface of the tank body 1. A spring 10 is fitted on the surface of the long rod 9. The two ends of the spring 10 are respectively welded to the bottom surface of the circular baffle and the top surface of the tank body 1. Threaded grooves are opened on the surface of the first ring 22 and the inner wall of the second ring 14. The surface of the second ring 14 contacts the inner wall of the tank body 1. During the discharge stage, the threaded groove on the surface of the first ring 22 interlocks with the threaded groove on the inner wall of the second ring 14 during the rotation of the first ring 22, locking the first ring 22 and the second ring 14. During the downward movement of the second ring 14, the material adhering to the tank wall is scraped off.
[0025] Working principle: In the initial state, the sliding plate 18 is located inside the interlayer of the fixed plate 17. At this time, there is a notch on the surface of the first ring 22. The main agent and curing agent are injected into the tank 1 through the input pipe 7. The electric lifting rod 21 is turned on, and the electric lifting rod 21 moves up and down, causing the fixed plate 17 to move up and down. The up and down movement of the fixed plate 17 causes the first ring 22 and the sliding plate 18 to move synchronously. During the up and down movement of the fixed plate 17 and the first ring 22, the fixed plate 17 stirs the solution inside the tank 1. At the same time, the solution flows from the notch on the surface of the first ring 22, which improves the stirring efficiency. When the stirring is completed, the electric lifting rod 21 is raised until the top surface of the baffle 19 contacts the inner wall of the tank 1 and stops moving. At this time, the top surface of the first ring 22 is... When the bottom surface of the second ring 14 is in contact, the push rod 12 on the surface of the rotating disk 11 is pushed, causing the rotating disk 11 to rotate. The rotation of the rotating disk 11 drives the connecting rod 13 to slide along the T-shaped slide groove 6. The rotation of the rotating disk 11 also drives the telescopic sleeve 8 to rotate. The rotation of the telescopic sleeve 8 drives the electric lifting rod 21 to rotate. The rotation of the electric lifting rod 21 drives the fixed plate 17, the first ring 22 and the sliding plate 18 to rotate synchronously. During the rotation of the sliding plate 18, the baffle 19 on the side of the sliding plate 18 is restricted from rotating by the first baffle 15 on the inner wall of the tank body 1, thus preventing the sliding plate 18 from moving synchronously. At this time, the fixed plate 17 continues to move, causing the sliding plate 18 to slide out from the interlayer of the fixed plate 17. During the sliding process of the sliding plate 18... The sleeve 20 rotates around the electric lifting rod 21. During the rotation of the first ring 22, the threaded groove on its surface interlocks with the threaded groove on the inner wall of the second ring 14, locking the first ring 22 and the second ring 14. When the connecting rod 13 slides along the T-shaped slide groove 6 to the end of the T-shaped slide groove 6, the baffle 19 on the side of the sliding plate 18 contacts the side of the fixed plate 17. At this time, the sliding plate 18 closes the notch on the surface of the first ring 22, causing the electric lifting rod 21 to descend and open the discharge pipe 5 on the bottom of the tank 1. The electric lifting rod 21 drives the fixed plate 17, the sliding plate 18, the first ring 22, and the second ring 14 to move downward synchronously. When the displacement reaches the point where the baffle 19 contacts the inner wall of the tank 1, the displacement stops. The second ring 14 moves downward, causing the long rod 9 to move downward synchronously. When the spring 10 on the surface of rod 9 enters a compressed state, the downward movement of the fixed plate 17 and the sliding plate 18 accelerates the discharge of the solution, preventing the solution from solidifying due to prolonged residence in the discharge pipe 5 and causing blockage. During the downward movement of the second ring 14, the solution on the inner wall of the tank 1 is scraped off. When the solution in the tank 1 is emptied, the push rod 12 drives the rotating disk 11 to rotate in the opposite direction, causing the connecting rod 13 to move along the T-shaped groove 6 to its initial position. The rotation of the rotating disk 11 synchronizes the rotation of the fixed plate 17, the sliding plate 18, and the first ring 22. During the rotation of the sliding plate 18, the baffle 19 is restricted by the second baffle 16 on the inner wall of the tank 1 and cannot move, thus preventing the sliding plate 18 from moving synchronously.At this time, the fixed plate 17 continues to move, causing the sliding plate 18 to re-insert into the fixed plate 17. During the reverse rotation of the first ring 22, the threaded groove on its surface disengages from the threaded groove on the inner wall of the second ring 14, thus releasing the locking state between the first ring 22 and the second ring 14. At this time, the long rod 9 moves upward under the elastic force of the spring 10. The upward movement of the long rod 9 drives the second ring 14 to move synchronously, restoring the second ring 14 to its initial position. The electric lifting rod 21 drives the first ring 22, the fixed plate 17, and the sliding plate 18 to rise to the middle of the tank body 1 and stops moving. The above process is repeated.
[0026] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. It is obvious to those skilled in the art that this utility model is not limited to the details of the above exemplary embodiments, and that it can be implemented in other specific forms without departing from the spirit or basic characteristics of this utility model.
[0027] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. An adhesive mixing and feeding agitator, comprising a mixing device body, characterized in that: The stirring device body includes a tank (1), a stirring mechanism (2) and a wall scraping assembly (3). The bottom surface of the tank (1) is connected to a discharge pipe (5), the surface of the tank (1) is connected to an input pipe (7), the bottom surface of the tank (1) is welded with a support leg (4), the top surface of the tank (1) is provided with a T-shaped groove (6), and the wall scraping assembly (3) is located inside the tank (1).
2. The adhesive mixing and stirring device according to claim 1, characterized in that: The stirring mechanism (2) includes a fixed plate (17), a first ring (22), a sliding plate (18) and a rotating disk (11). A push rod (12) is welded to the top surface of the rotating disk (11), and a telescopic sleeve (8) and a connecting rod (13) are welded to the bottom surface of the rotating disk (11). An electric lifting rod (21) is inserted inside the telescopic sleeve (8).
3. The adhesive mixing and stirring device according to claim 2, characterized in that: The bottom surface of the connecting rod (13) is equipped with a T-shaped protrusion, which is embedded in the interior of the T-shaped groove (6). The end of the electric lifting rod (21) is welded to the top surface of the fixing plate (17).
4. The adhesive mixing and stirring device according to claim 3, characterized in that: The side of the fixing plate (17) is welded to the inner wall of the first ring (22), and the inner wall of the tank (1) is welded with a first baffle (15) and a second baffle (16). The fixing plate (17) has an internal interlayer, and the sliding plate (18) is inserted into the interlayer.
5. The adhesive mixing and stirring device according to claim 4, characterized in that: A baffle (19) is welded to the side of the sliding plate (18), and a sleeve (20) is welded to the end of the baffle (19). The sleeve (20) is fitted onto the surface of the electric lifting rod (21).
6. The adhesive mixing and stirring device according to claim 2, characterized in that: The scraping assembly (3) includes a second ring (14) and a long rod (9). One end of the long rod (9) is welded to the top surface of the second ring (14), and the other end of the long rod (9) is welded to a circular baffle.
7. The adhesive mixing and stirring device according to claim 6, characterized in that: The end of the long rod (9) passes through the top surface of the tank (1), and a spring (10) is fitted on the surface of the long rod (9). The two ends of the spring (10) are respectively welded to the bottom surface of the circular baffle and the top surface of the tank (1).
8. The adhesive mixing and stirring device according to claim 7, characterized in that: The surface of the first ring (22) and the inner wall of the second ring (14) are both provided with threaded grooves, and the surface of the second ring (14) contacts the inner wall of the tank (1).
Citation Information
Patent Citations
A raw material mixing device for adhesive production
CN220990480U