Quantitative filling machine for hotpot soup base

By introducing storage bins, filling components, conveying components, and stop components into the hot pot soup base quantitative filling machine, and utilizing components such as electric telescopic cylinders and push rods, the problem of inaccurate quantitative control of paste soup base has been solved, achieving stable and accurate quantitative filling and improving work efficiency.

CN223494917UActive Publication Date: 2025-10-31HUNAN RISHENG FOOD CO LTD
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Patent Information

Application Number
CN202422879707.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-25
Publication Date
2025-10-31
Estimated Expiration
2034-11-25

AI Technical Summary

Technical Problem

Existing hot pot soup base quantitative filling machines have difficulty accurately controlling the quantitative volume of paste-like viscous materials, causing some soup base to fall out and affecting the quantitative volume.

Method used

The design includes a storage tank, filling components, conveying components, and a stop component. It utilizes components such as electric telescopic cylinders and push rods to achieve quantitative filling by precisely controlling the filling volume and sealing the pipeline.

Benefits of technology

It has enabled stable and accurate quantitative filling of hot pot soup base, improved work efficiency, and avoided waste of soup base.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of filling machines, and particularly relates to a hot pot soup base quantitative filling machine which comprises a material storage box, the material storage box is fixedly installed at the top ends of two supporting legs, the outer side wall of the material storage box is provided with a canning assembly, the canning assembly comprises an L-shaped frame, the L-shaped frame is arranged on the outer side wall of the material storage box in an inverted L shape, and the outer side wall of the L-shaped frame is provided with a filling opening. A first electric telescopic cylinder is fixedly arranged at the top end of a transverse plate of the L-shaped frame, a first plate is arranged at the top end of a telescopic rod of the first electric telescopic cylinder, a plurality of push rods are arranged on the first plate in a penetrating mode, a second plate is fixedly arranged on the outer side of a vertical plate of the L-shaped frame, and a plurality of mounting holes are formed in the second plate. And a quantitative pipe is arranged under the multiple mounting holes, a third plate is arranged at the top end of the other end opening of the quantitative pipe in a penetrating mode, a plurality of material boxes are arranged on the bottom side of the third plate in parallel, the purpose of quantitatively filling the hotpot soup base is achieved through cooperation, and the practicability of the device is improved.
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Description

Technical Field

[0001] This utility model belongs to the field of filling machine technology, specifically a quantitative filling machine for hot pot soup base. Background Technology

[0002] Hot pot broth is an important component of hot pot. When eating hot pot, in order to save time and effort, the pre-made hot pot broth is usually mixed with water. Therefore, after the hot pot broth is cooked, it is usually necessary to fill it into prepared containers. At the same time, in order to determine the volume, a hot pot broth quantitative filling machine is needed.

[0003] A quantitative filling machine for hot pot soup base, a quantitative filling device specifically for viscous materials such as hot pot base and sauce, typically includes a cylinder, a feeding component, a discharging component, and a leak-proof component. The cylinder drives the piston to draw the hot pot soup base in the hopper into the feeding pipe, and the filling amount is controlled by the stroke of the cylinder. The cylinder pushes again to push the material out, so that the soup base enters the container from the filling port.

[0004] Existing hot pot soup base quantitative filling machines are inconvenient to accurately control the quantity of hot pot soup base, which is usually in the form of a paste and has a certain viscosity. Some soup base will fall out, which will affect the volume when quantitatively filling. Therefore, a hot pot soup base quantitative filling machine is proposed to address the above problems. Utility Model Content

[0005] To overcome the shortcomings of existing technologies and address the problems of existing equipment, this utility model proposes a quantitative filling machine for hot pot soup base.

[0006] The technical solution adopted by this utility model to solve its technical problem is a hot pot soup base quantitative filling machine, including a storage box, which is fixedly installed on the top of two support legs. A filling assembly is provided on the outer wall of the storage box, and a stopping assembly is provided on the filling assembly. A conveying assembly is provided below the filling assembly. The filling assembly includes an L-shaped frame, and the L-shaped frame is arranged in an inverted L shape on the outer wall of the storage box. A first electric telescopic cylinder is fixedly installed at the top of the horizontal plate of the L-shaped frame, and a first plate is provided at the top of the telescopic rod of the first electric telescopic cylinder. Multiple push rods are installed through the first plate. A second plate is fixedly installed on the outside of the vertical plate of the L-shaped frame. The second plate has multiple mounting holes, and a metering tube is installed directly below each mounting hole. A third plate is installed through the top of the other end of the metering tube. Multiple material boxes are arranged side by side on the bottom side of the third plate. A feeding port is opened on the bottom side of each material box. A feeding pipe is installed at the top of the feeding port. A filling pipe is installed at the top of the feeding pipe. A filling head is installed at the bottom of the filling pipe. Together, they can quantitatively fill hot pot soup base.

[0007] Preferably, the push rod is deeply embedded in the metering tube, and a pressure plate is provided at the top of the push rod. The pressure plate is slidably disposed in the metering tube, so as to push out the metered soup.

[0008] Preferably, the top end of the filling tube is provided with an installation plate, the top end of the installation plate is provided with a second electric telescopic cylinder, the telescopic rod of the second electric telescopic cylinder passes through the installation plate and extends into the filling tube, and the top end of the telescopic rod is provided with a second pressure plate, which together achieves the ability to fill the soup into the container.

[0009] Preferably, the shut-off component includes a rotating cylinder, a pin is inserted through the material box, a rotating cylinder is provided at the top end of the pin, a through groove is provided inside the rotating cylinder, a rotating plate is provided at the other end of the pin, a short rod is provided at the other end of the rotating plate, an installation shaft is sleeved on the short rod, and a short plate is provided on the outside of the installation shaft. This combination enables the pipe to be shut off after the soup is quantified, ensuring the quantified volume.

[0010] Preferably, a mounting base is provided on the bottom side of the storage box, and a No. 3 electric telescopic cylinder is installed in the mounting base through a pin. The top end of the telescopic rod of the No. 3 electric telescopic cylinder penetrates the outer side wall of the short plate, so as to drive the rotating cylinder to rotate.

[0011] Preferably, the conveying assembly includes a working plate, with two working plates symmetrically arranged directly below the filling tube. A rotating shaft runs through the two working plates, and multiple rotating shafts are fitted with belt gears, which are driven by a transmission belt. A placement plate is provided on the outer wall of one of the working plates, and a drive motor is provided at the top of the placement plate. The output end of the drive motor is connected to one of the rotating shafts through a coupling. Rollers are fitted on multiple rotating shafts, and conveyor belts are fitted on multiple rollers. This combination enables rapid conveying of containers and improves the working efficiency of the device.

[0012] The beneficial effects of this utility model are:

[0013] 1. This utility model, by setting up a conveying component, allows workers to place prepared filling containers sequentially on the conveyor belt, start the drive motor, and the output end of the drive motor drives the rotating shaft to rotate. The rotation, in conjunction with the transmission belt, enables the conveying of the filling containers and allows for speed control, ensuring stable filling. Once the containers are in place, the third electric telescopic cylinder is activated, which drives the push rod, which in turn pushes the first pressure plate, squeezing a measured amount of soup into the filling tube. The second electric telescopic cylinder is then activated, and its telescopic rod drives the second pressure plate to expel the soup, thus completing the filling process and improving the working efficiency of the device.

[0014] 2. This utility model, by setting up a stop component, activates the No. 3 electric telescopic cylinder. When the telescopic rod of the No. 3 electric telescopic cylinder extends or retracts, it pulls the mounting shaft to rotate. The mounting shaft drives the rotating plate to rotate, and the rotating plate drives the rotating cylinder to rotate. The through groove inside the rotating cylinder is connected to the pipe, allowing the hot pot soup to enter the container. At this time, the No. 1 electric telescopic cylinder is activated to first push out the air in the metering tube. Then, the No. 1 electric telescopic cylinder is activated in the reverse direction. The telescopic rod will drive the No. 1 plate to rise, and the No. 1 plate will drive the push rod to rise and fall. The No. 1 pressure plate at the top of the push rod will generate negative pressure with the container. After the metered hot pot soup is sucked into the metering tube, the No. 3 electric telescopic cylinder is activated in the reverse direction, so that the through groove does not connect with the rotating cylinder. This achieves the sealing of the pipe, preventing soup from entering the metered metering tube. After the metering is completed, the metering tube can be accurately controlled. Attached Figure Description

[0015] The accompanying drawings, which are included to provide a further understanding of the present invention and form part of this application, illustrate exemplary embodiments of the present invention and, together with the description thereof, serve to explain the present invention and do not constitute an undue limitation thereof. In the drawings:

[0016] Figure 1 This is a schematic diagram of the first overall three-dimensional structure;

[0017] Figure 2 This is a schematic diagram of the filling component installation structure;

[0018] Figure 3 This is a schematic diagram of the installation position structure of the conveyor component;

[0019] Figure 4 This is a schematic diagram of the cross-sectional structure of a metering cylinder;

[0020] Figure 5 This is a schematic diagram of the cross-sectional structure of the stop component;

[0021] Legend:

[0022] In the diagram: 1. Storage bin; 10. Filling head; 11. L-shaped frame; 12. Electric telescopic cylinder No. 1; 13. Plate No. 1; 14. Push rod; 15. Plate No. 2; 16. Metering tube; 17. Plate No. 3; 18. Material box; 19. Filling tube; 2. Pressure plate No. 1; 21. Feed pipe; 22. Electric telescopic cylinder No. 2; 23. Pressure plate No. 2; 24. Mounting plate; 25. Rotating cylinder; 26. Rotating plate; 27. Mounting shaft; 28. Electric telescopic cylinder No. 3; 29. ​​Mounting base; 30. Support leg; 3. Working plate; 31. Rotating shaft; 32. Drive motor; 33. Transmission belt; 34. Roller; 35. Conveyor belt. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0024] Please see Figures 1-5 As shown, a hot pot soup base quantitative filling machine includes a storage tank 1, which is fixedly installed on the top of two support legs 30. A filling assembly is provided on the outer wall of the storage tank 1, and a stopping component is provided on the filling assembly. A conveying assembly is provided below the filling assembly. The filling assembly includes an L-shaped frame 11, which is arranged in an inverted L-shape on the outer wall of the storage tank 1. A first electric telescopic cylinder 12 is fixedly installed at the top of the horizontal plate of the L-shaped frame 11. A first plate 13 is provided at the top of the telescopic rod of the first electric telescopic cylinder 12. Multiple push rods 14 are installed through the upper part of the L-shaped frame 11. A second plate 15 is fixedly installed on the outer side of the vertical plate. Multiple mounting holes are opened on the second plate 15, and a metering tube 16 is installed directly below the multiple mounting holes. A third plate 17 is installed through the top of the other end of the metering tube 16. Multiple material boxes 18 are arranged side by side on the bottom side of the third plate 17. A feeding port is opened on the bottom side of the material box 18. A feeding pipe 21 is installed at the top of the feeding port. A filling pipe 19 is installed at the top of the feeding pipe 21. A filling head 10 is installed at the bottom end of the filling pipe 19.

[0025] In operation, existing hot pot soup base quantitative filling machines often suffer from problems due to the soup base's typically paste-like consistency and viscosity. In such cases, precise quantitative control is difficult, and some soup base may spill, affecting the measured volume. This invention addresses this by incorporating a conveyor assembly. Workers place prepared filling containers sequentially onto the conveyor belt 35, activate the drive motor 32, and the output of the drive motor 32 rotates the shaft 31. The rotation of the shaft 31, in conjunction with the transmission belt 33, enables the conveying of the filling containers and allows for speed control, ensuring stable filling. Once the containers are in position, the third electric telescopic cylinder 28 is activated. This cylinder drives a push rod 14, which in turn pushes the first pressure plate 2, squeezing the measured amount of soup base into the filling tube 19. The second electric telescopic cylinder 22 is then activated, its extension rod driving the second pressure plate 23 to expel the soup base, thus completing the filling process and improving the device's efficiency.

[0026] The push rod 14 is deeply embedded in the metering tube 16, and a pressure plate 2 is provided at the top of the push rod 14. The pressure plate 2 is slidably disposed in the metering tube 16. A mounting plate 24 is provided at the top of the filling tube 19. A second electric telescopic cylinder 22 is provided at the top of the mounting plate 24. The telescopic rod of the second electric telescopic cylinder 22 passes through the mounting plate 24 and extends into the filling tube 19. A pressure plate 23 is provided at the top of the telescopic rod. The stopping component includes a rotating cylinder 25. A pin is inserted through the material box 18. The rotating cylinder 25 is provided at the top of the pin. A through groove is opened in the rotating cylinder 25. A rotating plate 26 is provided at the other end of the pin. A short rod is provided at the other end of the rotating plate 26. An installation shaft 27 is sleeved on the short rod. A short rod is provided on the outside of the installation shaft 27. The storage box 1 has a mounting base 29 on its bottom side. A third electric telescopic cylinder 28 is installed in the mounting base 29 via a pin. The top of the telescopic rod of the third electric telescopic cylinder 28 passes through the outer wall of the short plate. The conveying assembly includes a working plate 3. Two working plates 3 are symmetrically arranged directly below the filling pipe 19. A rotating shaft 31 passes through the two working plates 3. Each of the rotating shafts 31 is fitted with a belt gear, and the belt gears are driven by a transmission belt 33. A placement plate is provided on the outer wall of one of the working plates 3. A drive motor 32 is provided at the top of the placement plate. The output end of the drive motor 32 is connected to one of the rotating shafts 31 via a coupling. Rollers 34 are fitted on each of the rotating shafts 31, and conveyor belts 35 are fitted on each of the rollers 34.

[0027] In operation, existing hot pot soup base quantitative filling machines suffer from difficulties in accurately controlling the quantity of soup base, which is typically a paste with a certain viscosity. This results in some soup base falling out, affecting the volume measured. In this solution, a stop component is incorporated. When the third electric telescopic cylinder 28 is activated, its extension and retraction pulls the mounting shaft 27, which in turn rotates the rotating plate 26. The rotating plate 26 then rotates the rotating cylinder 25. The through-groove within the rotating cylinder 25 is connected to a pipe, allowing the hot pot soup base to enter the material box 18. At this time, the first electric telescopic cylinder 12 is activated to push out the air in the metering tube 16. Then, the first electric telescopic cylinder 12 is activated in reverse. The telescopic rod will drive the first plate 13 to rise, and the first plate 13 will drive the push rod 14 to rise and fall. The first pressure plate 2 at the top of the push rod 14 will generate negative pressure with the material box 18. After the metered hot pot soup is sucked into the metering tube 16, the third electric telescopic cylinder 28 is activated in reverse to prevent the through groove from connecting with the rotating cylinder 25. This combination achieves the sealing of the pipe, so that no soup will enter the metered metering tube 16. After this combination, the metering tube 16 can be accurately controlled.

[0028] Working Principle: Existing hot pot soup base quantitative filling machines often suffer from problems due to the soup base's paste-like consistency and viscosity. Inaccurate quantitative control is difficult, as some soup base may spill, affecting the measured volume. This invention addresses this by incorporating a conveyor assembly. Workers place prepared filling containers sequentially onto the conveyor belt 35, activate the drive motor 32, and the output of the drive motor 32 rotates the shaft 31. The rotation of 31, in conjunction with the transmission belt 33, enables the conveying of the filling containers and allows for speed control, ensuring stable filling. Once the containers are in position, the third electric telescopic cylinder 28 is activated. This cylinder drives a push rod 14, which in turn pushes the first pressure plate 2, squeezing the measured amount of soup base into the filling tube 19. The second electric telescopic cylinder 22 is then activated, its extension rod driving the second pressure plate 23 to expel the soup base, thus completing the filling process and improving the device's efficiency.

[0029] An existing hot pot soup base quantitative filling machine has limitations. Hot pot soup base is typically a paste with a certain viscosity, making precise quantitative control difficult. Some soup base may spill, affecting the volume measured. This solution addresses this issue by incorporating a stop mechanism. When the extension rod of the third electric telescopic cylinder 28 extends or retracts, it pulls the mounting shaft 27, which in turn rotates the rotating plate 26. The rotating plate 26 then rotates the rotating cylinder 25. The through-groove within the rotating cylinder 25 is connected to a pipe, allowing the hot pot soup base to enter the material box 18. When the first electric telescopic cylinder 12 is activated, the air in the metering tube 16 is first pushed out. Then, the first electric telescopic cylinder 12 is activated in reverse. The telescopic rod will drive the first plate 13 to rise. The first plate 13 will drive the push rod 14 to rise and fall. The first pressure plate 2 at the top of the push rod 14 will generate negative pressure with the material box 18. After the metered hot pot soup is sucked into the metering tube 16, the third electric telescopic cylinder 28 is activated in reverse to prevent the through groove from connecting with the rotating cylinder 25. This combination achieves the sealing of the pipe, so that no soup will enter the metered metering tube 16. After this combination, the metering tube 16 can be accurately controlled.

[0030] In the description of this specification, references to terms such as "an embodiment," "example," "specific example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0031] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model.

Claims

1. A quantitative filling machine for hot pot soup base, characterized in that: The system includes a storage bin (1), which is fixedly installed on the top of two support legs (30). A filling assembly is provided on the outer wall of the storage bin (1). A stopping assembly is provided on the filling assembly. A conveying assembly is provided below the filling assembly. The filling assembly includes an L-shaped frame (11), which is arranged in an inverted L-shape on the outer wall of the storage bin (1). A first electric telescopic cylinder (12) is fixedly installed at the top of the horizontal plate of the L-shaped frame (11). A first plate (13) is provided at the top of the telescopic rod of the first electric telescopic cylinder (12). Multiple push rods are threaded through the first plate (13). 14) A second plate (15) is fixedly installed on the outside of the vertical plate of the L-shaped frame (11). The second plate (15) has multiple mounting holes, and a quantitative tube (16) is installed directly below the multiple mounting holes. A third plate (17) is installed through the top of the other end of the quantitative tube (16). Multiple material boxes (18) are arranged side by side on the bottom side of the third plate (17). A feed inlet is opened on the bottom side of the material box (18). A feed pipe (21) is installed at the top of the feed inlet. A filling pipe (19) is installed at the top of the feed pipe (21). A filling head (10) is installed at the bottom of the filling pipe (19).

2. The hot pot soup base quantitative filling machine according to claim 1, characterized in that: The push rod (14) is deeply embedded in the quantitative tube (16), and a pressure plate (2) is provided at the top of the push rod (14), and the pressure plate (2) is slidably disposed in the quantitative tube (16).

3. The hot pot soup base quantitative filling machine according to claim 2, characterized in that: The top end of the filling tube (19) is provided with an installation plate (24), the top end of the installation plate (24) is provided with a second electric telescopic cylinder (22), the telescopic rod of the second electric telescopic cylinder (22) is provided through the installation plate (24) and extends into the filling tube (19), and the top end of the telescopic rod is provided with a second pressure plate (23).

4. The hot pot soup base quantitative filling machine according to claim 3, characterized in that: The stopping component includes a rotating cylinder (25), a pin is provided through the material box (18), the top of the pin is provided with the rotating cylinder (25), the rotating cylinder (25) is provided with a through groove, the other end of the pin is provided with a rotating plate (26), the other end of the rotating plate (26) is provided with a short rod, the short rod is fitted with an installation shaft (27), and the outside of the installation shaft (27) is provided with a short plate.

5. The hot pot soup base quantitative filling machine according to claim 4, characterized in that: The storage box (1) is provided with a mounting base (29) on its bottom side. A third electric telescopic cylinder (28) is installed in the mounting base (29) through a pin shaft. The top of the telescopic rod of the third electric telescopic cylinder (28) is installed through the outer wall of the short plate.

6. The hot pot soup base quantitative filling machine according to claim 5, characterized in that: The conveying assembly includes a working plate (3). Two working plates (3) are symmetrically arranged directly below the filling tube (19). A rotating shaft (31) is arranged through the two working plates (3). A belt gear is sleeved on each of the rotating shafts (31), and the belt gears are driven by a transmission belt (33). A placement plate is provided on the outer wall of one of the working plates (3). A drive motor (32) is provided at the top of the placement plate. The output end of the drive motor (32) is connected to one of the rotating shafts (31) through a coupling. Rollers (34) are sleeved on each of the rotating shafts (31), and a conveyor belt (35) is sleeved on each of the rollers (34).