Solid raw material separation device for soup-stock production
By using a conical screen and a motor-driven stirring system in stock production, the problem of clogging of stock filter components is solved, efficient solid raw material separation and stock production are achieved, and the quality and efficiency of stock is improved.
Patent Information
- Application Number
- CN202422358869.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-26
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-26
AI Technical Summary
During the existing broth production process, the filter components are prone to clogging, resulting in low production efficiency and poor broth quality.
A conical screen moving vertically is used in the cooking barrel. A thick screen hole is provided on the top of the conical screen, a fine screen hole is provided on the side wall, and a motor-driven agitating shaft and agitating rod are equipped to achieve effective separation and stirring of solid raw materials. The power rod drives the conical screen to move upward to separate the solid raw materials in advance.
It effectively avoids clogging of filter components, improves the separation efficiency between solid raw materials and broth, shortens the boiling cycle, and improves the production efficiency and quality of broth.
Smart Images

Figure CN223127442U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of high - soup production, and particularly to a solid - raw - material separation device for high - soup production. Background Technique
[0002] When producing high - soup, various solid raw materials such as bones and spices are used for boiling. After boiling the nutritional components into water, high - soup is formed. In order to ensure the quality and taste of high - soup, generally, the high - soup is filtered to separate the solid raw materials from the high - soup. The existing filtering components usually set a sieve plate in the cooking pot that matches its cross - section, place the solid raw materials on the sieve plate, and directly release the high - soup from the bottom of the sieve plate after the high - soup is boiled, leaving the solid raw materials on the sieve plate. Although this method can quickly separate the solid raw materials from the high - soup, in the actual use process, some bone dregs or small - particle spices are very likely to block the sieve plate, resulting in a relatively slow liquid - discharging process after the high - soup is boiled, and the actual screening and filtering effect is poor, affecting the production efficiency of high - soup. Content of the Utility Model
[0003] The purpose of the utility model is to provide a solid - raw - material separation device for high - soup production, which can solve the technical problem that the existing high - soup filtering components are easy to be blocked and affect the production efficiency of high - soup, reduce the possibility of blockage of the filtering components, improve the separation efficiency of solid raw materials in high - soup, and ensure the quality of high - soup.
[0004] In order to achieve the above - mentioned purpose, the utility model is realized through the following technical solutions:
[0005] A solid - raw - material separation device for high - soup production includes a cooking barrel. The top of the cooking barrel is movably connected with a barrel cover. The bottom of the cooking barrel is provided with a liquid - discharging pipe. A motor is arranged on the barrel cover. A stirring shaft is arranged on the output shaft of the motor. A plurality of stirring rods are arranged on the stirring shaft. A conical sieve that moves vertically is arranged inside the cooking barrel. A plurality of coarse sieve holes are arranged at the top of the conical sieve. A plurality of fine sieve holes are arranged on the side wall of the conical sieve. The aperture of the coarse sieve holes is larger than that of the fine sieve holes. A power rod for driving the conical sieve to move vertically is arranged inside the cooking barrel.
[0006] Furthermore, hanging racks are symmetrically and movably connected to the top of the cooking barrel. The power rod is arranged between the hanging rack and the conical sieve.
[0007] Furthermore, the bottom of the power rod is rotatably connected to the conical sieve. The top of the power rod penetrates through the hanging rack and is threadedly connected thereto. A guiding column is also arranged between the hanging rack and the conical sieve. The guiding column penetrates through the hanging rack and is slidably connected thereto.
[0008] Furthermore, the longitudinal section of the hanging rack is an inverted U shape, and a clamping groove for cooperating with the inverted U shape is provided at the top of the cooking barrel.
[0009] Furthermore, a rotating shaft is rotatably connected inside the conical sieve, and a plurality of stirring rods are also provided on the rotating shaft. The top of the rotating shaft is movably connected to the bottom of the stirring shaft.
[0010] Furthermore, a cross-shaped block is provided at the bottom of the stirring shaft, and a cross-shaped groove for movably inserting the cross-shaped block is provided at the top of the rotating shaft.
[0011] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0012] 1. The structure of the present utility model is provided with a conical sieve that moves vertically inside the cooking barrel. Coarse sieve holes are provided at the top of the conical sieve, and fine sieve holes are provided on the side wall of the conical sieve. The aperture of the coarse sieve holes is larger than that of the fine sieve holes. Such a structure enables solid raw materials such as bones and spices to be directly placed on the top of the conical sieve. Large pieces of bones and spices and other solids are blocked by the coarse sieve holes and remain on the top of the conical sieve. During the cooking process, small particles of bone dregs or spices pass through the coarse sieve holes and enter the inside of the conical sieve. Since the inside of the conical sieve is a cone with a wider top and a narrower bottom, under the action of a plurality of fine sieve holes on the side wall, the bone dregs or small particle spices are blocked and gathered at the bottom of the cone, and there are enough fine sieve holes on the side of the cone to achieve a filtering effect. Therefore, such a structure realizes the effective separation of solid raw materials and high soup. At the same time, the conical sieve is not easily blocked during use, ensuring the smooth flow of high soup from the liquid outlet pipe, greatly improving the production efficiency and product quality of high soup;
[0013] 2. A barrel cover is movably connected to the top of the cooking barrel. A motor is provided on the barrel cover, and a stirring shaft is provided on the output shaft of the motor. A plurality of stirring rods are provided on the stirring shaft. Such a structure enables the raw materials to be continuously stirred during the boiling process of high soup, improving the effect of nutrient precipitation and the utilization rate of solid raw materials. After the boiling is completed, the power rod is used to drive the conical sieve to move upward in advance, enabling the solid raw materials to be separated from the high soup in advance, making the high soup flow more smoothly when flowing out from the liquid outlet pipe, further saving the waiting time for filtration and separation, shortening the boiling cycle of high soup, and further improving the production efficiency of high soup. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Attached Figure 1 is a three-dimensional structural schematic diagram of the present utility model.
[0015] Attached Figure 2 is a front view of the present utility model.
[0016] Attached Figure 3 is the attached Figure 2 cross-sectional view in the A-A direction of the present utility model.
[0017] Appendix Figure 4 is the sectional view taken along the B-B direction in the appendix of the present utility model. Figure 3
[0018] Appendix Figure 5 is the sectional view taken along the C-C direction in the appendix of the present utility model. Figure 4
[0019] Reference numerals shown in the appended drawings:
[0020] 1. Cooking barrel; 2. Barrel cover; 3. Liquid outlet pipe; 4. Motor; 5. Stirring shaft; 6. Stirring rod; 7. Conical sieve; 8. Coarse sieve holes; 9. Fine sieve holes; 10. Power rod; 11. Hanging rack; 12. Guide post; 13. Card slot; 14. Rotating shaft; 15. Cross block; 16. Cross groove. Detailed implementation manners
[0021] The present utility model will be further described below in conjunction with specific embodiments. It should be understood that these embodiments are only used to illustrate the present utility model and not to limit the scope of the present utility model. In addition, it should be understood that after reading the content taught by the present utility model, those skilled in the art can make various changes or modifications to the present utility model, and these equivalent forms also fall within the scope defined by this application.
[0022] Refer to Figure 1 and Figure 2, the utility model relates to a solid raw material separation device for high - soup production. The main structure includes a cooking barrel 1, which is heated under the action of an external heating component to realize the heating and boiling of solid raw materials therein, so as to extract the nutrients in the solid raw materials into water to form high - soup. A barrel cover 2 is movably connected to the top of the cooking barrel 1. Specifically, the barrel cover 2 is detachably connected to the side wall of the cooking barrel 1 through a lock, which is convenient for taking and placing raw materials. A sealing ring is arranged between the barrel cover 2 and the cooking barrel 1 to improve the sealing performance of the cooking barrel 1 and ensure the boiling efficiency. A liquid outlet pipe 3 is arranged at the bottom of the cooking barrel 1, and the high - soup after boiling is discharged from the bottom liquid outlet pipe 3. Preferably, a valve for controlling its opening and closing is arranged on the liquid outlet pipe 3 to facilitate the control of the high - soup discharge. A motor 4 is fixed on the barrel cover 2 by welding or bolts. A stirring shaft 5 is fixed on the output shaft of the motor 4 by welding or bolts. A plurality of stirring rods 6 are fixed on the stirring shaft 5 by welding or bolts. Such a structure drives the stirring shaft 5 to rotate by the motor 4 during the boiling process, and uses a plurality of stirring rods 6 to stir the solid raw materials, accelerating the extraction efficiency of the nutrients therein and improving the boiling efficiency. A conical sieve 7 that moves vertically is arranged inside the cooking barrel 1. The longitudinal section of the conical sieve 7 is a cone with a wider top and a narrower bottom. A plurality of through - type coarse sieve holes 8 are arranged at the top of the conical sieve 7. The coarse sieve holes 8 can block large - sized solid raw materials such as large bones or spices, and only allow smaller - sized bone dregs or spices to enter the inside of the conical sieve 7. Such a structure realizes the separation of solid raw materials of different sizes in advance, making the solid raw materials of different sizes distributed at intervals vertically, further reducing the possible blockage of the filtering component. A plurality of fine sieve holes 9 are arranged on the side wall of the conical sieve 7. The aperture of the coarse sieve holes 8 is larger than that of the fine sieve holes 9. After the smaller - sized bone dregs or spice raw materials enter the inside of the conical sieve 7, due to the shape of the inside of the conical sieve 7 being wider at the top and narrower at the bottom, these small - sized solid raw materials gather and distribute at the bottom inside the conical sieve 7 along the inclined side wall, making it not easy for the fine sieve holes 9 on the side wall to be blocked, thereby ensuring the smoothness and efficiency of the separation of solid raw materials and high - soup. A power rod 10 for driving the conical sieve 7 to move vertically is arranged inside the cooking barrel 1. When the boiling is almost completed, the power rod 10 is used to drive the conical sieve 7 to move upward in advance, so that the high - soup passes through the coarse sieve holes 8 and the fine sieve holes 9 in advance and is located below the conical sieve 7 after being separated from the solid raw materials. During the subsequent liquid discharge, it can be quickly discharged from the liquid outlet pipe 3 in time, greatly shortening the waiting time for solid raw material separation, improving the smoothness and efficiency of screening and filtering, shortening the boiling cycle, improving the boiling efficiency, and ensuring the quality of the high - soup.
[0023] Preferably, referring to Figure 4, the top of the cooking barrel 1 is symmetrically and movably connected with hanging racks 11. The power rod 10 is arranged between the hanging racks 11 and the conical sieve 7. The hanging racks 11 can be used to support the power rod 10 to realize the up and down movement drive of the conical sieve 7. At the same time, after the high soup production is completed, the hanging racks 11 can be removed from the top of the cooking barrel 1, and the power rod 10 and the conical sieve 7 can be taken out from the inside of the cooking barrel 1, which is convenient for taking out the filtered solid raw materials and carrying out timely treatment.
[0024] Preferably, referring to Figure 3 , the bottom of the power rod 10 is rotatably connected to the conical sieve 7 through a bearing. The top of the power rod 10 passes through the hanging rack 11 and is threadedly connected thereto. A guide post 12 is also arranged between the hanging rack 11 and the conical sieve 7. The bottom of the guide post 12 is welded or bolted to the conical sieve 7. The top of the guide post 12 passes through the hanging rack 11 and is slidably connected thereto. With such a structure, only by rotating the power rod 10 can the conical sieve 7 at the bottom be driven to slide up and down along the guide post 12 under the action of the threaded connection, making the up and down movement drive of the conical sieve 7 more efficient and stable.
[0025] Preferably, the longitudinal section of the hanging rack 11 is an inverted U shape, and a clamping groove 13 for cooperating with the inverted U shape is arranged at the top of the cooking barrel 1. With such a structure, when the hanging rack 11 is matched with the top of the cooking barrel 1, it only needs to be buckled into the clamping groove 13. Under the action of gravity, the hanging rack 11 is automatically clamped in the clamping groove 13. When disassembling, only need to lift the hanging rack 11 upward, making the fixation and separation of the hanging rack 11 and the cooking barrel 1 more convenient and efficient.
[0026] Preferably, a rotating shaft 14 is rotatably connected to the inside of the conical sieve 7 through a bearing, and a plurality of stirring rods 6 are also welded or bolted to the rotating shaft 14. The top of the rotating shaft 14 is movably connected to the bottom of the stirring shaft 5. With such a structure, after the barrel cover 2 is installed on the top of the cooking barrel 1, the bottom of the stirring shaft 5 is simultaneously connected to the top of the rotating shaft 14, so that the stirring shaft 5 drives the rotating shaft 14 to rotate synchronously, and the stirring rods 6 can also stir the solid raw materials inside the conical sieve 7 synchronously, improving the precipitation efficiency of the nutritional components in the solid raw materials inside the conical sieve 7 and improving the utilization rate of solid raw materials of different sizes.
[0027] Preferably, referring to Figure 5 , a cross block 15 is welded or bolted to the bottom of the stirring shaft 5, and a cross groove 16 for movably inserting the cross block 15 is arranged at the top of the rotating shaft 14. With such a structure, after the barrel cover 2 is installed, the cross block 15 is inserted into the cross groove 16. When the stirring shaft 5 rotates, the rotating shaft 14 is effectively driven to rotate through the insertion and cooperation of the cross block 15 and the cross groove 16, making the connection and separation of the stirring shaft 5 and the rotating shaft 14 more convenient and stable.
[0028] Working principle: In the structure of the present utility model, a conical sieve 7 that moves vertically is arranged inside the cooking barrel 1. Coarse sieve holes 8 are arranged at the top of the conical sieve 7, and fine sieve holes 9 are arranged on the side wall of the conical sieve 7. The aperture of the coarse sieve holes 8 is larger than that of the fine sieve holes 9. Such a structure enables solid raw materials such as bones and spices to be directly placed on the top of the conical sieve 7. Large pieces of bones and spices and other solids are blocked by the coarse sieve holes 8 and remain on the top of the conical sieve 7. During the cooking process, small particles of bone dregs or spices pass through the coarse sieve holes 8 and enter the inside of the conical sieve 7. Since the inside of the conical sieve 7 is a cone that is wider at the top and narrower at the bottom, under the action of multiple fine sieve holes 9 on the side wall, bone dregs or small particle spices and the like are blocked and gathered at the bottom of the cone, and there are enough fine sieve holes 9 on the side of the cone to achieve a filtering effect. Therefore, such a structure realizes the effective separation of solid raw materials and high soup. At the same time, the conical sieve 7 is not easily blocked during use, ensuring the smooth flow of high soup from the liquid outlet pipe 3, greatly improving the production efficiency and product quality of high soup; A barrel cover 2 is movably connected to the top of the cooking barrel 1. A motor 4 is arranged on the barrel cover 2. A stirring shaft 5 is arranged on the output shaft of the motor 4. Multiple stirring rods 6 are arranged on the stirring shaft 5. Such a structure enables the raw materials to be continuously stirred during the boiling process of high soup, improving the effect of nutrient precipitation and the utilization rate of solid raw materials. After the boiling is completed, the conical sieve 7 is driven to move upward in advance by the power rod 10, enabling the solid raw materials to be separated from the high soup in advance, making the high soup flow out more smoothly from the liquid outlet pipe 3, further saving the waiting time for filtration and separation, shortening the boiling cycle of high soup, and further improving the production efficiency of high soup.
Claims
1. A solid raw material separation device for high - soup production, comprising a steaming barrel (1), a barrel cover (2) is movably connected to the top of the steaming barrel (1), and a liquid outlet pipe (3) is provided at the bottom of the steaming barrel (1), characterized in that: A motor (4) is provided on the bucket lid (2). A stirring shaft (5) is provided on the output shaft of the motor (4). A plurality of stirring rods (6) are provided on the stirring shaft (5). A conical sieve (7) that moves vertically is provided inside the cooking bucket (1). A plurality of coarse sieve holes (8) are provided at the top of the conical sieve (7). A plurality of fine sieve holes (9) are provided on the side wall of the conical sieve (7). The aperture of the coarse sieve holes (8) is larger than that of the fine sieve holes (9). A power rod (10) for driving the conical sieve (7) to move vertically is provided in the cooking bucket (1).
2. The solid raw material separation device for high soup production according to claim 1, wherein: Hanging brackets (11) are symmetrically and movably connected to the top of the cooking bucket (1). The power rod (10) is arranged between the hanging brackets (11) and the conical sieve (7).
3. The solid raw material separation device for high soup production according to claim 2, wherein: The bottom of the power rod (10) is rotatably connected to the conical sieve (7). The top of the power rod (10) penetrates through the hanging bracket (11) and is threadedly connected thereto. A guiding column (12) is further provided between the hanging bracket (11) and the conical sieve (7). The guiding column (12) penetrates through the hanging bracket (11) and is slidably connected thereto.
4. The solid raw material separation device for high soup production according to claim 2, characterized in that: The longitudinal section of the hanging bracket (11) is an inverted U shape. A clamping groove (13) for cooperating with the inverted U shape is provided at the top of the cooking bucket (1).
5. The solid raw material separation device for high soup production according to claim 1, wherein: A rotating shaft (14) is rotatably connected inside the conical sieve (7). A plurality of stirring rods (6) are also provided on the rotating shaft (14). The top of the rotating shaft (14) is movably connected to the bottom of the stirring shaft (5).
6. The solid raw material separation device for high soup production according to claim 5, wherein: A cross-shaped block (15) is provided at the bottom of the stirring shaft (5). A cross-shaped groove (16) for movably inserting the cross-shaped block (15) is provided at the top of the rotating shaft (14).