Anti-sedimentation mixing tank
By combining anti-settling baffles and stirring blades at the front end of the discharge port, the problem of discharge port blockage caused by raw material sedimentation during resin product production is solved, achieving smooth discharge and uniformity of injection molded products, thus improving product quality.
Patent Information
- Application Number
- CN202521284374.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-23
- Publication Date
- 2026-05-26
- Estimated Expiration
- 2035-06-23
Smart Images

Figure CN224275703U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of mixing tank technology, and particularly relates to an anti-sedimentation mixing tank. Background Technology
[0002] When producing resin products, resin molding machines are typically used. During the production process, resin is added to a mixing tank, and then the resin in the mixing tank enters the feeding pipe to produce the resin product. However, after the operator adds the raw materials to the mixing tank, they may not be able to solve the problem of sedimentation in the mixing tank, resulting in uneven inclusion of flakes in the injection molded product and unstable product quality. Therefore, we propose an anti-sedimentation mixing tank. Utility Model Content
[0003] This utility model provides an anti-settling mixing tank. By installing anti-settling baffles at the front end of the discharge port, it prevents raw materials from settling in the tank and causing blockage at the discharge port.
[0004] To achieve the above objectives, this utility model provides the following technical solution: an anti-sedimentation mixing tank, comprising a holding tank, a feeding port, a stirring speed-regulating motor, a discharge port, and stirring blades. The feeding port and the stirring speed-regulating motor are respectively installed on the surface of the holding tank. The output end of the stirring speed-regulating motor is connected to the stirring blades. The discharge port is fixed at the end of the holding tank. A fixing seat is attached to the end of the discharge port, and a feeding connection seat is attached to the end of the fixing seat. The feeding connection seat, the fixing seat, and the discharge port are all connected by bolt threads. A fixing block is fixed inside the fixing seat, and an anti-sedimentation baffle is inserted in the middle of the fixing block to block the front end of the discharge port.
[0005] Furthermore, a sleeve plate is attached to the surface of the anti-settling baffle, and a traction rod is fixed in the middle of the sleeve plate. The traction rod is fitted with a traction groove opened on the stirring blade. The traction groove and the traction rod are connected to each other through a positioning rod. A stirring rod is rotatably connected around the sleeve plate.
[0006] Furthermore, each of the stirring rods has a rotating groove fixed on the side near the sleeve plate, and the rotating grooves are all fixed on the sleeve plate. A first rotating shaft that passes through the stirring rod is fixed inside each of the rotating grooves.
[0007] Furthermore, all the traction rods are configured as rectangular blocks, and all the traction grooves are configured as rectangular grooves that match the traction rods.
[0008] Furthermore, the positioning rods all pass through the stirring blade and the traction rod, and the ends of the positioning rods are symmetrically provided with receiving grooves, and the middle of the receiving grooves is rotatably connected to a limiting plate, and the surface of the limiting plate is fitted with a nut threaded onto the surface of the positioning rod.
[0009] Furthermore, each of the limiting plates has a second rotating shaft fixed inside the storage groove through its end.
[0010] The beneficial effects of this utility model are:
[0011] 1. This anti-settling mixing tank is equipped with a fixed base, a fixed block, and an anti-settling baffle. When the operator moves the fixed base, the fixed base moves the fixed block to be installed at the lower end of the discharge port. Then, the anti-settling baffle is inserted into the fixed block, and the fixed block is set up at the front end of the discharge port. When the raw material in the tank settles, it prevents the raw material from blocking the front end of the discharge port, improves the smoothness of raw material discharge from the discharge port, and thus avoids the unevenness of the flakes mixed in the injection molded product.
[0012] 2. The anti-sedimentation mixing tank is equipped with a sleeve plate, a stirring rod, a traction rod, and a traction groove. The operator places the sleeve plate on the surface of the anti-sedimentation baffle. Then, the stirring blade moves the traction rod through the traction groove. The traction rod drives the sleeve plate to rotate, which in turn drives the stirring rod to rotate. The stirring rod stirs the raw material deposited around the front of the discharge port, reducing raw material deposition and improving the usability of the device. Attached Figure Description
[0013] Figure 1 is a front view of the structure of this utility model;
[0014] Figure 2 is a side view sectional structural diagram of this utility model;
[0015] Figure 3 shows the present invention. Figure 2 Enlarged structural diagram at point A;
[0016] Figure 4 is a top view sectional view of the positioning rod and limiting plate of this utility model;
[0017] Figure 5 is a side view sectional view of the storage groove and limiting plate of this utility model.
[0018] Figure 6 is a side sectional view of the positioning rod and the storage groove of this utility model.
[0019] Figure 7 is a three-dimensional structural diagram of the anti-settling baffle and fixing base of this utility model;
[0020] Figure 8 is a bottom-view three-dimensional structural diagram of the anti-settling baffle and fixing base of this utility model.
[0021] In the picture:
[0022] 1. Material container; 2. Feeding port; 3. Stirring speed control motor; 4. Discharge port; 5. Fixed base; 6. Feeding connection base; 7. Stirring blade; 8. Traction groove; 9. Positioning rod; 10. Nut; 11. Sleeve plate; 12. First rotating shaft; 13. Stirring rod; 14. Fixed block; 15. Anti-sedimentation baffle; 16. Traction rod; 17. Collection groove; 18. Second rotating shaft; 19. Limiting plate; 20. Rotary groove. Detailed Implementation
[0023] To further understand the utility model's content, features, and effects, the following embodiments are provided, along with detailed descriptions in conjunction with the accompanying drawings.
[0024] Example:
[0025] Please refer to Figures 1-8. The anti-sedimentation mixing tank includes a container 1, a feeding port 2, a stirring speed-regulating motor 3, a discharge port 4, and stirring blades 7. The feeding port 2 and the stirring speed-regulating motor 3 are respectively installed on the surface of the container 1. The output end of the stirring speed-regulating motor 3 is connected to the stirring blades 7. The discharge port 4 is welded to the end of the container 1. A fixed seat 5 is attached to the end of the discharge port 4, and a feed connection seat 6 is attached to the end of the fixed seat 5. The feed connection seat 6, the fixed seat 5, and the discharge port 4 are all connected by bolt threads. A fixing block 14 is welded inside the fixed seat 5, and an anti-sedimentation baffle 15 is inserted in the middle of the fixing block 14 to block the front end of the discharge port 4. When the operator moves the fixed seat 5, the fixed seat 5 moves the fixing block 14 to move the fixed seat 5 to the opening of the discharge port 4. Then the operator moves the feed connection seat 6 to connect the feed connection seat 6 with the fixed seat 5. The parts are fitted together. Then, the operator passes the bolts through the feed connector 6 and the fixing seat 5 in sequence, and threaded the ends of the bolts into the threaded mounting holes around the discharge port 4, so that the discharge port 4, the fixing seat 5 and the feed connector 6 are threaded together. Then, the operator moves the anti-settling baffle 15 and places it in the material container 1, and pushes the anti-settling baffle 15 to align it with the fixing block 14. Then, the operator pushes the anti-settling baffle 15 into the through hole in the middle of the fixing block 14, and sets the anti-settling baffle 15 at the front end of the discharge port 4. When the raw material in the material container 1 settles, it prevents the raw material from blocking the front end of the discharge port 4, improves the smoothness of raw material discharge from the discharge port 4, and thus avoids the unevenness of the glitter mixed in the injection molded product.
[0026] In other embodiments, a sleeve plate 11 is attached to the surface of the anti-settling baffle 15, and a traction rod 16 is welded to the middle of the sleeve plate 11. A traction groove 8 formed on the stirring blade 7 is sleeved on the surface of the traction rod 16. The traction groove 8 and the traction rod 16 are connected to each other by a positioning rod 9. A stirring rod 13 is rotatably connected around the sleeve plate 11. When stirring...
[0027] After the blade 7 rotates, the stirring blade 7 drives the traction rod 16 to rotate through the traction groove 8. The traction rod 16 drives the sleeve plate 11 to rotate, and when the sleeve plate 11 rotates, it drives the stirring rod 13 to rotate, so that the stirring rod 13 moves with the sleeve plate 11. When the stirring rod 13 moves, it stirs the raw material deposited around the anti-sedimentation baffle 15, preventing the raw material from depositing around the anti-sedimentation baffle 15.
[0028] In other embodiments, a rotating groove 20 is welded to the side of the stirring rod 13 near the sleeve plate 11, and the rotating groove 20 is welded to the sleeve plate 11. A first rotating shaft 12 that passes through the stirring rod 13 is welded inside the rotating groove 20. When the sleeve plate 11 rotates, the sleeve plate 11 drives the first rotating shaft 12 to move through the rotating groove 20. The first rotating shaft 12 drives the stirring rod 13 to move, so that the stirring rod 13 rotates with the sleeve plate 11. When the stirring rod 13 rotates with the sleeve plate 11, the circular through hole at the end of the stirring rod 13 rotates on the surface of the first rotating shaft 12, so that the stirring rod 13 rotates within the rotating groove 20, which facilitates the adjustment of the rotation range of the stirring rod 13 according to the rotation speed of the stirring blade 7.
[0029] In other embodiments, the traction rod 16 is always configured as a rectangular block, and the traction groove 8 is always configured as a rectangular groove that matches the traction rod 16. By matching the rectangular block configured on the traction rod 16 with the rectangular groove configured on the traction groove 8, the inside of the traction groove 8 is in close contact with the surface of the traction rod 16, thereby increasing the stability of the stirring blade 7 driving the traction rod 16 to rotate through the traction groove 8.
[0030] In other embodiments, the positioning rods 9 all penetrate the stirring blade 7 and the traction rod 16. A receiving groove 17 is symmetrically provided at the end of each positioning rod 9, and a limiting plate 19 is rotatably connected to the middle of the receiving groove 17. A second rotating shaft 18, welded to the inside of the receiving groove 17, passes through the end of each limiting plate 19. A nut 10 threaded onto the surface of the positioning rod 9 is fitted onto the surface of the limiting plate 19. When the operator installs the stirring blade 7 and the traction rod 16 together using the positioning rods 9, the operator first pushes the limiting plate 19. After the limiting plate 19 rotates via the second rotating shaft 18, it moves into the receiving groove 17, allowing it to receive the receiving groove 17. Then, the operator moves the positioning rod 9 through the through holes in the stirring blade 7 and the traction rod 16. Finally, the operator pulls the limiting plate 19, and the circular through hole at the end of the limiting plate 19 is in the receiving groove 17. The device rotates inside, causing the limiting plate 19 to move out of the receiving slot 17. The operator then moves the nut 10, whose internal threads engage with the threads on the surface of the positioning rod 9, moving the nut 10 to the limiting plate 19.
[0031] At the front end, the limiting plate 19 is attached to the surface of the stirring blade 7, so that the limiting plate 19 increases the area of the nut 10 covering the waist-shaped hole opened on one side of the positioning rod 9 passing through the stirring blade 7, which makes it easier to fix the positioning rod 9 to the traction rod 16 and the traction groove 8.
[0032] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An anti-sedimentation mixing tank, comprising a holding tank (1), a feeding port (2), a stirring speed-regulating motor (3), a discharge port (4), and stirring blades (7), wherein the feeding port (2) and the stirring speed-regulating motor (3) are respectively installed on the surface of the holding tank (1), the output end of the stirring speed-regulating motor (3) is connected to the stirring blades (7), and the discharge port (4) is fixed at the end of the holding tank (1), characterized in that: The end of the discharge port (4) is fitted with a fixed seat (5), and the end of the fixed seat (5) is fitted with a feed connection seat (6). The feed connection seat (6), the fixed seat (5) and the discharge port (4) are all connected by bolt threads. The fixed seat (5) has a fixed block (14) inside, and a sedimentation baffle (15) is inserted in the middle of the fixed block (14) to block the front end of the discharge port (4). The anti-settling baffle (15) is fitted with a sleeve plate (11), and a traction rod (16) is fixed in the middle of the sleeve plate (11). The traction rod (16) is fitted with a traction groove (8) opened on the stirring blade (7). The traction groove (8) and the traction rod (16) are connected to each other through a positioning rod (9). A stirring rod (13) is rotatably connected around the sleeve plate (11).
2. The anti-sedimentation stirring tank according to claim 1, characterized in that: Each stirring rod (13) has a rotating groove (20) fixed on the side near the sleeve plate (11), and the rotating groove (20) is fixed on the sleeve plate (11). Each rotating groove (20) has a first rotating shaft (12) that passes through the stirring rod (13).
3. The anti-sedimentation stirring tank according to claim 2, characterized in that: The traction rods (16) are all set as rectangular blocks, and the traction grooves (8) are all set as rectangular grooves that match the traction rods (16).
4. The anti-sedimentation stirring tank according to claim 2, characterized in that: The positioning rods (9) all pass through the stirring blade (7) and the traction rod (16). The end of the positioning rod (9) is symmetrically provided with a storage groove (17), and the middle of the storage groove (17) is rotatably connected to a limiting plate (19). The surface of the limiting plate (19) is fitted with a nut (10) threaded on the surface of the positioning rod (9).
5. The anti-sedimentation stirring tank according to claim 4, characterized in that: The ends of the limiting plates (19) are all connected by a second rotating shaft (18) fixed inside the storage groove (17).