Layered screening device for hotpot condiment processing
By designing a layered screening device for hot pot base processing, using a servo motor to drive the follower block to move the cutting board for secondary screening, and removing stuck raw materials by tapping the component, the problem of inability to effectively remove impurities in the prior art is solved, and production efficiency and food quality are improved.
Patent Information
- Application Number
- CN202421860739.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-02
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-02
AI Technical Summary
The existing hot pot base processing device cannot realize the layered screening of hot pot raw materials, resulting in difficulty in effectively removing impurities, affecting food quality and production efficiency.
A layered screening device for processing hot pot base materials is designed, including base plate, screening box, tapping component and driving component. The connecting shaft is driven by a dual-axis servo motor to drive the follower block to move the cutting board, realize the secondary screening of raw materials, and tap the screen through the tapping component to remove the stuck raw materials.
It realizes rapid layered screening of hot pot raw materials, improves production efficiency, reduces manual operations, reduces labor intensity, and effectively prevents screening materials.
Smart Images

Figure CN223011172U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of food processing, in particular to a layered screening device for hot pot base material processing. Background Technique
[0002] The hot pot base material is one of the basic materials for hot pot cooking. It is refined from various spices, seasonings and ingredients. The raw materials of the hot pot base material are various, usually including meat, seafood, beans, vegetables, spices, seasonings, etc. During the processing of the hot pot base material raw materials, impurities often mix in the raw materials, such as leaves, roots, and string powder. If not passed through a screening device, these impurities will enter the hot pot base material, affecting the quality and taste of the food. Therefore, a screening device for hot pot base material raw materials is needed. When screening the hot pot raw materials at present, most are screened by manually holding a sieve. The screening quality is low, and the sieve is easy to get stuck with materials, and the screening efficiency is low.
[0003] Chinese Patent with Publication No. CN221046250U discloses a layered screening device for hot pot base material processing, including a housing. An inlet is fixedly connected above the housing. A crushing structure is fixedly connected below the inlet. A transition hopper is fixedly connected below the crushing structure. A filtering structure is fixedly connected below the transition hopper. An inclined plate is fixedly connected below the filtering structure. An outlet is fixedly connected to the left side of the inclined plate. A recovery box is fixedly connected to the right side of the housing. By setting a first crushing shaft, a first rotating motor, a first gear, a second gear, a second crushing shaft and crushing knives, the raw materials can be crushed more fully. By setting a filtering structure and a pushing structure in the recovery box, a small part of the raw materials that are not completely crushed can be automatically put above the crushing structure for secondary crushing. This device is simple to operate, convenient for staff to use, has strong practicability and wide application range when in use. However, when this technology is used, it cannot perform layered screening on hot pot raw materials.
[0004] Therefore, it is necessary to further improve the layered screening device for hot pot base material processing. Content of the Utility Model
[0005] The technical problem to be solved by the utility model is to overcome the existing defects and provide a layered screening device for hot pot base material processing, which can filter the hot pot raw materials twice, realizes the rapid layered screening of the raw materials, improves the production efficiency, the automatic control reduces the manual operation, reduces the labor intensity, and can effectively prevent the sieve from getting stuck with materials, and can effectively solve the problems in the background technique.
[0006] To achieve the above object, the present utility model provides the following technical solutions: A layered screening device for hot pot base processing, comprising a bottom plate and a screening box. An assembly box and a driving component are installed on the upper surface of the bottom plate. A knocking component is installed on the assembly box. A fixed block and a follower component are arranged inside the assembly box. The follower component is connected to the fixed block and the assembly box. The knocking component is connected to the follower component. An installation column is installed on the follower component. A blanking plate is installed on the installation column. A sieve mesh is installed inside the middle assembly groove of the blanking plate. A linkage component is assembled on the driving component. The linkage component is connected to the knocking component. An installation frame is arranged on the screening box. The installation frame is connected to the bottom plate. A material blocking component is arranged inside the feed inlet of the screening box. Installation blocks and installation plates are successively installed on the upper and lower sides of the side of the feed inlet of the screening box. The installation plate is inclined. A moving component is installed on the installation plate. A jacking component is installed on the moving component. The jacking component passes through the sliding hole on the installation block and is connected to the material blocking component. An impurity removal component is installed on the left side of the screening box. An air inlet net is installed on the right side of the screening box. A flow dividing plate is installed on the lower side inside the screening box.
[0007] As a preferred technical solution of the present utility model, the material blocking component includes a material blocking plate and an installation strip. The material blocking plate is installed on the lower surface of the installation strip. The material blocking plate is arranged inside the feed inlet of the screening box.
[0008] As a preferred technical solution of the present utility model, the impurity removal component includes a fixed cylinder, a hoop and a fan. The fan is installed inside the fixed cylinder through a bracket. The fixed cylinder is installed on the left side of the screening box. The fixed cylinder is in mutual communication with the screening box. The hoop is arranged on the outer side of the fixed cylinder.
[0009] As a preferred technical solution of the present utility model, the follower component includes follower blocks, springs and limit rods. There are two follower blocks, which are respectively arranged on the front and rear sides of the fixed block. The two ends of the limit rod are respectively connected to the fixed block and the follower block. The spring is sleeved on the limit rod. The installation column is installed on the follower block.
[0010] As a preferred technical solution of the present utility model, the moving component includes a locking bolt, a moving block and a guide rail. The moving block is installed on the guide rail. The guide rail is arranged on the installation plate. The locking bolt is installed in the screw hole of the moving block, and the locking bolt is in contact with the guide rail.
[0011] As a preferred technical solution of the present utility model, the jacking component includes a connecting block, a first sliding rod and a second sliding rod. The connecting block is installed at the bottom end of the first sliding rod. The second sliding rod is connected to the moving block and is installed in the sliding hole of the connecting block. The first sliding rod passes through the sliding hole of the installation block and is connected to the installation strip.
[0012] As a preferred technical solution of the present utility model, the knocking assembly includes a connecting bar, a connecting column, an assembly frame, a top column and a rubber ball. The assembly frame is installed on the assembly box, the top column is installed in the sliding hole of the assembly frame, the rubber ball is installed at the upper end of the top column, both ends of the connecting bar are rotatably connected to the connecting column and the top column respectively, and the connecting column is connected to the follower block.
[0013] As a preferred technical solution of the present utility model, the driving assembly includes a connecting shaft and a dual-shaft servo motor. There are two connecting shafts, which are respectively installed at the ends of the output shafts of the dual-shaft servo motor, and the dual-shaft servo motor is installed on the bottom plate through a motor bracket.
[0014] As a preferred technical solution of the present utility model, the linkage assembly includes a linkage rod and a rotating rod. One end of the rotating rod is rotatably connected to one end of the linkage rod, the other end of the rotating rod is fixedly connected to the connecting shaft, and the end of the linkage rod away from the rotating rod is rotatably connected to the connecting column.
[0015] As a preferred technical solution of the present utility model, there are two assembly boxes arranged corresponding to each other on the left and right.
[0016] The working principle and usage principle of the present utility model are as follows: Pour the raw materials to be screened into the screening box. Through the operation of the fan, the raw materials passing through the screening box are screened for the first time, and the lighter impurities in the raw materials can be sucked out of the screening box. The raw materials in the screening box fall onto the sieve mesh. By the operation of the dual-shaft servo motor, the rotation of the connecting shaft can be driven. The connecting shaft can drive the rotation of the rotating rod. The rotating rod drives the forward and backward movement of the connecting column through the linkage rod. The connecting column can drive the movement of the follower block. The follower block can slide along the limiting rod. The follower block drives the forward and backward shaking of the blanking plate through the mounting column. Through the sieve mesh, the raw materials on the blanking plate are screened again. When the follower block moves, it can apply pressure to the spring, which can ensure the faster movement of the follower block and can also shock-absorb and protect the device. When the connecting column moves forward and backward, it can drive the top column to move up and down in the sliding hole of the assembly frame through the connecting bar. The rubber ball on the top column collides with the sieve mesh, and the raw materials stuck in the sieve mesh can be knocked off, improving the screening efficiency of the sieve mesh.
[0017] Compared with the prior art, the beneficial effects of the present utility model are as follows: The primary screening of the raw materials can be carried out through the impurity removal assembly. The follower block drives the forward and backward shaking of the blanking plate through the mounting column. Through the sieve mesh, the raw materials on the blanking plate are screened again, improving the screening efficiency and quality. Through the knocking assembly, the sieve mesh can be continuously knocked, and the raw materials stuck in the sieve mesh can be knocked off, improving the screening efficiency of the sieve mesh. Description of the Drawings
[0018] Figure 1 It is a schematic diagram of the overall structure of the present utility model;
[0019] Figure 2 This is a schematic diagram of the partial cross-sectional structure of the rear side of the present utility model;
[0020] Figure 3 This is an enlarged schematic diagram of part A of the present utility model;
[0021] Figure 4 This is an enlarged schematic diagram of part B of the present utility model;
[0022] Figure 5 This is an enlarged schematic diagram of part C of the present utility model;
[0023] Figure 6 This is a schematic diagram of the knocking component structure of the present utility model.
[0024] In the figure: 1, bottom plate; 2, blanking plate; 3, sieve mesh; 4, mounting column; 5, screening box; 6, material blocking component; 601, material blocking plate; 602, mounting strip; 7, impurity removing component; 701, fixed cylinder; 702, hoop; 703, fan; 8, mounting frame; 9, fixed box; 10, knocking component; 1001, connecting strip; 1002, connecting column; 1003, assembling frame; 1004, ejector pin; 1005, rubber ball; 11, connecting rod; 12, flow dividing plate; 13, air inlet net; 14, fixed block; 15, mounting plate; 16, ejecting component; 1601, connecting block; 1602, first sliding rod; 1603, second sliding rod; 17, moving component; 1701, locking bolt; 1702, moving block; 1703, guide rail; 18, follower component; 1801, follower block; 1802, spring; 1803, limiting rod; 19, linkage component; 1901, linkage rod; 1902, rotating rod; 20, driving component; 2001, connecting shaft; 2002, double-shaft servo motor. Detailed implementation manners
[0025] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without making creative efforts shall fall within the protection scope of the present utility model.
[0026] Please refer to Figure 1-6, the present utility model provides a technical solution: a layered screening device for hot pot base processing, including a bottom plate 1 and a screening box 5. An assembly box 9 and a driving component 20 are installed on the upper surface of the bottom plate 1. There are two assembly boxes 9 arranged corresponding to each other left and right. A knocking component 10 is installed on the assembly box 9. A fixed block 14 and a follower component 18 are arranged inside the assembly box 9. The follower component 18 is connected to the fixed block 14 and the assembly box 9. The follower component 18 includes a follower block 1801, a spring 1802, and a limiting rod 1803. There are two follower blocks 1801, which are respectively arranged on the front and back sides of the fixed block 14. The two ends of the limiting rod 1803 are respectively connected to the fixed block 14 and the follower block 1801. The spring 1802 is sleeved on the limiting rod 1803. An installation column 4 is installed on the follower block 1801. The follower block 1801 can slide along the limiting rod 1803. When the follower block 1801 moves, it can apply pressure to the spring 1802, which can ensure that the follower block 1801 moves relatively fast. The follower block 1801 drives the front and back shaking of the blanking plate 2 through the installation column 4, and the raw materials on the blanking plate 2 are screened again through the sieve mesh 3. The knocking component 10 is connected to the follower component 18. An installation column 4 is installed on the follower component 18, and a blanking plate 2 is installed on the installation column 4. A sieve mesh 3 is installed inside the assembly groove in the middle of the blanking plate 2. The raw materials flowing out of the screening box 5 fall onto the sieve mesh 3. A linkage component 19 is assembled on the driving component 20, and the linkage component 19 is connected to the knocking component 10. The driving component 20 includes a connecting shaft 2001 and a double-shaft servo motor 2002. There are two connecting shafts 2001, which are respectively installed at the ends of the output shafts of the double-shaft servo motor 2002. The double-shaft servo motor 2002 is installed on the bottom plate 1 through a motor bracket. When the double-shaft servo motor 2002 operates, it can drive the rotation of the connecting shaft 2001. The linkage component 19 includes a linkage rod 1901 and a rotating rod 1902. One end of the rotating rod 1902 is rotatably connected to one end of the linkage rod 1901, and the other end of the rotating rod 1902 is fixedly connected to the connecting shaft 2001. The end of the linkage rod 1901 away from the rotating rod 1902 is rotatably connected to a connecting column 1002. The connecting shaft 2001 can drive the rotation of the rotating rod 1902, and the rotating rod 1902 drives the front and back movement of the connecting column 1002 through the linkage rod 1901. The connecting column 1002 can drive the movement of the follower block 1801. The knocking component 10 includes a connecting strip 1001, a connecting column 1002, an assembly frame 1003, a top column 1004, and a rubber ball 1005. The assembly frame 1003 is installed on the assembly box 9. The top column 1004 is installed in the sliding hole of the assembly frame 1003. The rubber ball 1005 is installed at the upper end of the top column 1004. The two ends of the connecting strip 1001 are respectively rotatably connected to the connecting column 1002 and the top column 1004. The connecting column 1002 is connected to the follower block 1801. When the connecting column 1002 moves back and forth, it can drive the top column 1004 to move up and down in the sliding hole of the assembly frame 1003 through the connecting strip 1001.The rubber ball 1005 on the top column 1004 collides with the sieve 3, which can knock off the raw materials stuck in the sieve 3, improve the screening efficiency of the sieve 3. An installation frame 8 is provided on the screening box 5, and the installation frame 8 is connected to the bottom plate 1. A material blocking component 6 is arranged inside the feed inlet of the screening box 5. The material blocking component 6 includes a material blocking plate 601 and an installation strip 602. The material blocking plate 601 is installed on the lower surface of the installation strip 602. The material blocking plate 601 is arranged inside the feed inlet of the screening box 5. By adjusting the height of the material blocking plate 601, the feed amount of the screening box 5 can be adjusted, preventing the feed amount of the screening box 5 from being too large and improving the screening quality. Installation blocks 11 and installation plates 15 are sequentially installed on the upper and lower sides of the side of the feed inlet of the screening box 5. The installation plate 15 is inclined. A moving component 17 is installed on the installation plate 15. An ejecting component 16 is installed on the moving component 17. The ejecting component 16 passes through the sliding hole on the installation block 11 and is connected to the material blocking component 6. The moving component 17 includes a locking bolt 1701, a moving block 1702, and a guide rail 1703. The moving block 1702 is installed on the guide rail 1703. The guide rail 1703 is arranged on the installation plate 15. The locking bolt 1701 is installed in the screw hole of the moving block 1702, and the locking bolt 1701 contacts the guide rail 1703. The locking bolt 1701 can lock the moving block 1702 at any position on the guide rail 1703. The ejecting component 16 includes a connecting block 1601, a first sliding rod 1602, and a second sliding rod 1603. The connecting block 1601 is installed at the bottom end of the first sliding rod 1602. The second sliding rod 1603 is connected to the moving block 1702 and is installed in the sliding hole of the connecting block 1601. The first sliding rod 1602 passes through the sliding hole of the installation block 11 and is connected to the installation strip 602. When the moving block 1702 moves along the guide rail 1703, it drives the second sliding rod 1603 to move on the connecting block 1601. Since the installation plate 15 is inclined, when the second sliding rod 1603 moves, it can drive the first sliding rod 1602 to move up and down. The first sliding rod 1602 drives the installation strip 602 to move up and down. A cleaning component 7 is installed on the left side of the screening box 5. The cleaning component 7 includes a fixed cylinder 701, a hoop 702, and a fan 703. The fan 703 is installed inside the fixed cylinder 701 through a bracket. The fixed cylinder 701 is installed on the left side of the screening box 5. The fixed cylinder 701 communicates with the screening box 5. The hoop 702 is arranged on the outer side of the fixed cylinder 701. By running the fan 703, the raw materials passing through the screening box 5 are screened for the first time, and the lighter impurities in the raw materials can be sucked out of the screening box 5. The collection net can be fixed on the fixed cylinder 701 through the hoop 702. An air inlet net 13 is installed on the right side of the screening box 5. The air inlet net 13 can increase the air intake of the screening box 5, prevent the negative pressure inside the screening box 5 from being too large, and prevent the fan 703 from sucking away the raw materials. A diversion plate 12 is installed on the lower side inside the screening box 5. The diversion plate 12 can divert the raw materials passing through the inside of the screening box 5, prevent the raw materials from accumulating on the sieve 3, and improve the screening efficiency.
[0027] Although embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.
Claims
1. A layered screening device for processing hot pot soup base, comprising a bottom plate (1) and a screening box (5), characterized in that: An assembly box (9) and a driving assembly (20) are mounted on the upper surface of the bottom plate (1); a knocking assembly (10) is mounted on the assembly box (9); a fixed block (14) and a follower assembly (18) are arranged inside the assembly box (9); the follower assembly (18) is connected to the fixed block (14) and the assembly box (9); the knocking assembly (10) is connected to the follower assembly (18); a mounting column (4) is mounted on the follower assembly (18); a blanking plate (2) is mounted on the mounting column (4); a screen (3) is mounted inside a middle assembly groove of the blanking plate (2); a linkage assembly (19) is mounted on the driving assembly (20); the linkage assembly (19) is connected to the knocking assembly (10); and a screen (3) is mounted on the screening box (5). A mounting frame (8) is provided, the mounting frame (8) being connected to the bottom plate (1), a material blocking assembly (6) being provided inside the feed port of the screening box (5), a mounting block (11) and a mounting plate (15) being sequentially installed on the upper and lower sides of the feed port of the screening box (5), the mounting plate (15) being arranged in an inclined manner, a moving assembly (17) being installed on the mounting plate (15), an ejection assembly (16) being installed on the moving assembly (17), the ejection assembly (16) passing through a sliding hole on the mounting block (11) and connected to the material blocking assembly (6), a dust removal assembly (7) being installed on the left side of the screening box (5), an air inlet net (13) being installed on the right side of the screening box (5), and a diverter plate (12) being installed on the lower side of the interior of the screening box (5).
2. The stratified screening device for hot pot soup base processing according to claim 1, characterized in that: The material blocking assembly (6) comprises a material blocking plate (601) and a mounting bar (602); the material blocking plate (601) is mounted on the lower surface of the mounting bar (602); and the material blocking plate (601) is arranged in the material inlet of the screening box (5).
3. The stratified screening device for hot pot soup base processing according to claim 1, characterized in that: The impurity removal component (7) comprises a fixed cylinder (701), a clamp (702) and a fan (703); the fan (703) is installed inside the fixed cylinder (701) via a bracket; the fixed cylinder (701) is installed on the left side of the screening box (5); the fixed cylinder (701) and the screening box (5) are in communication with each other; and the clamp (702) is arranged on the outer side of the fixed cylinder (701).
4. The stratified screening device for hot pot soup base processing according to claim 1, characterized in that: The follower assembly (18) comprises a follower block (1801), a spring (1802) and a limiting rod (1803); two follower blocks (1801) are provided and are respectively arranged on the front and rear sides of the fixed block (14); two ends of the limiting rod (1803) are respectively connected to the fixed block (14) and the follower block (1801); the spring (1802) is sleeved on the limiting rod (1803); and the mounting column (4) is mounted on the follower block (1801).
5. The stratified screening device for hot pot soup base processing according to claim 1, characterized in that: The moving assembly (17) comprises a locking bolt (1701), a moving block (1702) and a guide rail (1703); the moving block (1702) is mounted on the guide rail (1703); the guide rail (1703) is arranged on the mounting plate (15); the locking bolt (1701) is mounted in a screw hole of the moving block (1702), and the locking bolt (1701) is in contact with the guide rail (1703).
6. A stratified screening device for hot pot soup base processing according to claim 1 or 5, characterized in that: The ejection assembly (16) comprises a connecting block (1601), a first sliding rod (1602) and a second sliding rod (1603), wherein the connecting block (1601) is mounted at the bottom end of the first sliding rod (1602), the second sliding rod (1603) is connected to the moving block (1702), and the second sliding rod (1603) is mounted in a sliding hole of the connecting block (1601), and the first sliding rod (1602) passes through the sliding hole of the mounting block (11) and is connected to the mounting bar (602).
7. A stratified screening device for hot pot soup base processing according to claim 1 or 4, characterized in that: The knocking assembly (10) comprises a connecting strip (1001), a connecting column (1002), an assembly frame (1003), a top column (1004) and a rubber ball (1005); the assembly frame (1003) is mounted on an assembly box (9); the top column (1004) is mounted in a sliding hole of the assembly frame (1003); the rubber ball (1005) is mounted on the upper end of the top column (1004); the two ends of the connecting strip (1001) are rotatably connected to the connecting column (1002) and the top column (1004) respectively; and the connecting column (1002) is connected to a follower block (1801).
8. The stratified screening device for hot pot soup base processing according to claim 1, characterized in that: The driving assembly (20) comprises a connecting shaft (2001) and a dual-axis servo motor (2002); two connecting shafts (2001) are provided and are respectively mounted on the ends of the output shafts of the dual-axis servo motor (2002); and the dual-axis servo motor (2002) is mounted on the bottom plate (1) via a motor frame.
9. The stratified screening device for hot pot soup base processing according to claim 1, characterized in that: The linkage assembly (19) comprises a linkage rod (1901) and a rotating rod (1902); one end of the rotating rod (1902) is rotationally connected to one end of the linkage rod (1901); the other end of the rotating rod (1902) is fixedly connected to a connecting shaft (2001); and one end of the linkage rod (1901) away from the rotating rod (1902) is rotationally connected to a connecting column (1002).
10. The stratified screening device for hot pot soup base processing according to claim 1, characterized in that: Two assembly boxes (9) are correspondingly arranged on the left and right.
Citation Information
Patent Citations
A layered screening device for hot pot base processing
CN221046250U