Automatic soup base packaging machine

By introducing an automated collection mechanism into the soup mix packaging machine, the problem of the packaging machine's ineffective collection was solved, achieving an efficient and stable soup mix bag collection and production process, and reducing labor costs.

CN223982758UActive Publication Date: 2026-03-10DASHANHE GRP BAOKANG LVSHENG MODERN AGRICO
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

Existing soup mix packaging machines are unable to effectively collect and organize packaged soup mix bags in large-scale production, resulting in low efficiency and a high risk of packaging damage.

Method used

An automated soup packaging machine was designed, equipped with a collection mechanism, including a guide groove, a lead screw, a servo motor, a bevel gear, a sliding sleeve, a collection box, a controller, a pressure sensor, and a buzzer alarm. The servo motor drives the lead screw to rotate, and the sliding sleeve drives the collection box to move. Combined with the pressure sensor and buzzer alarm, automated collection and reminders are achieved.

Benefits of technology

It enables automated and continuous collection of soup mix bags, improving production efficiency, reducing manual operation, lowering labor costs, and ensuring production stability through pressure sensors and alarms.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic soup packaging machine which comprises a soup packaging machine body, a box door is arranged on the front side of the soup packaging machine body, a discharging pipe is installed on the left side of the soup packaging machine body, a storage barrel is installed on the top of the soup packaging machine body, and a feeding pipe is installed on the top of the storage barrel. According to the automatic packaging machine, the packaged soup bags can be continuously received through the automatic collecting mechanism, frequent manual operation and collection are not needed, the time interval between packaging and collecting is greatly shortened, the whole packaging production process is smoother and more efficient, and compared with a traditional packaging machine, the packaging yield in unit time can be remarkably improved.
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Description

Technical Field

[0001] This utility model relates to the field of soup packaging machine technology, specifically an automated soup packaging machine. Background Technology

[0002] Soup packaging machines are suitable for various industries, including food, chemical, pharmaceutical, daily chemical, and catering. In the food industry, they can be used for packaging various soup bases, seasonings, and solid beverages; in the chemical industry, they can be used for packaging some powdered or liquid chemical products; and in the pharmaceutical industry, they can be used for packaging pharmaceutical powders or pastes.

[0003] However, traditional soup packaging machines on the market have many shortcomings. The most prominent problem is that their functions are relatively limited. In particular, after packaging, they cannot effectively collect and organize the packaged soup bags. In large-scale production, manual collection is not only inefficient but also prone to packaging damage. Therefore, we propose an automated soup packaging machine. Utility Model Content

[0004] The purpose of this invention is to provide an automated soup packaging machine to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: an automated soup packaging machine, comprising a soup packaging machine body, a door provided on the front side of the soup packaging machine body, a feeding pipe installed on the left side of the soup packaging machine body, a storage cylinder installed on the top of the soup packaging machine body, a feeding pipe installed on the top of the storage cylinder, a valve installed on the feeding pipe, a support plate fixedly connected to the bottom of the soup packaging machine body, support legs fixedly connected to the four corners of the bottom of the support plate, the bottoms of the four support legs fixedly connected to the same base plate, and a collecting mechanism provided on the base plate.

[0006] Furthermore, the collection mechanism includes a guide groove, a lead screw, a driven bevel gear, a servo motor, a driving bevel gear, a sliding sleeve, a collection box, a controller, a pressure sensor, and a buzzer alarm. A guide groove is provided on the top left side of the base plate, and a lead screw is rotatably connected to the rear side of the inner wall of the guide groove via a bearing.

[0007] Furthermore, the front end of the lead screw passes through the guide groove and the base plate in sequence and extends to the outside of the base plate. The lead screw is movably connected to the base plate, and a driven bevel gear is fixedly connected to the front end of the lead screw.

[0008] Furthermore, a servo motor is fixedly installed on the front side of the base plate, and a drive bevel gear is fixedly connected to the output end of the servo motor. The drive bevel gear and the driven bevel gear mesh with each other. Through the operation of the servo motor, the drive bevel gear is driven to rotate, thereby driving the driven bevel gear and the lead screw to rotate.

[0009] Furthermore, the lead screw is threadedly connected to a sliding sleeve. The bottom of the sliding sleeve is in movable contact with the bottom of the inner wall of the guide groove, the left side of the sliding sleeve is in movable contact with the left side of the inner wall of the guide groove, and the right side of the sliding sleeve is in movable contact with the right side of the inner wall of the guide groove. The above arrangement can prevent the sliding sleeve from rotating with the lead screw.

[0010] Furthermore, the top of the sliding sleeve passes through the guide groove and extends to the outside of the guide groove and is fixedly connected to a collection box. The top of the collection box has an open structure to facilitate receiving the packaged soup bags output from the feed pipe.

[0011] Furthermore, a controller is fixedly installed on the left side of the base plate, a pressure sensor is fixedly embedded in the top of the sliding sleeve, the top of the pressure sensor abuts against the bottom of the collection box, a buzzer is fixedly installed on the left side of the collection box, and the pressure sensor, the buzzer, and the servo motor are electrically connected to the controller.

[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0013] 1. This utility model, by setting up an automated collection mechanism, can continuously and uninterruptedly receive packaged soup mix bags without the need for frequent manual collection, greatly shortening the time interval between packaging and collection, making the entire packaging production process smoother and more efficient. Compared with traditional packaging machines, it can significantly increase the packaging output per unit time.

[0014] 2. It reduces the manpower required for manual collection, lowers the company's labor costs, and avoids production stoppages caused by errors that may occur due to manual operation, such as damaged packaging or untimely collection, thereby improving the stability and reliability of production.

[0015] 3. Through the coordinated operation of pressure sensors, controllers and buzzer alarms, the load-bearing pressure threshold of the collection box can be set according to actual production needs. When the threshold is reached, an alarm will be automatically issued to remind staff to handle the soup bags in the collection box. Attached Figure Description

[0016] Figure 1 This is a front view structural diagram of the present utility model;

[0017] Figure 2 This is a schematic diagram of the left-side structure of this utility model;

[0018] Figure 3 This is a schematic diagram of the assembly structure of the collection box and the sliding sleeve of this utility model;

[0019] Figure 4 This is a schematic diagram of the structure of the sliding sleeve of this utility model;

[0020] Figure 5 This is a top view of the structure of this utility model.

[0021] In the diagram: 1. Soup packaging machine body; 2. Feeding pipe; 3. Storage cylinder; 4. Feeding pipe; 5. Support plate; 6. Support leg; 7. Base plate; 8. Collection mechanism; 801. Guide groove; 802. Lead screw; 803. Driven bevel gear; 804. Servo motor; 805. Driven bevel gear; 806. Sliding sleeve; 807. Collection box; 808. Controller; 809. Pressure sensor; 810. Buzzer alarm. Detailed Implementation

[0022] 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 of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] In the description of this utility model, it should be understood that the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings, are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined with "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, unless otherwise stated, "a plurality of" means two or more.

[0024] Please see Figure 1-5An automated soup packaging machine includes a soup packaging machine body 1, a box door on the front side of the soup packaging machine body 1, a feeding pipe 2 installed on the left side of the soup packaging machine body 1, a storage cylinder 3 installed on the top of the soup packaging machine body 1, a feeding pipe 4 installed on the top of the storage cylinder 3, a valve installed on the feeding pipe 4, a support plate 5 fixedly connected to the bottom of the soup packaging machine body 1, support legs 6 fixedly connected to the four corners of the bottom of the support plate 5, the bottom of the four support legs fixedly connected to the same base plate 7, and a collection mechanism 8 provided on the base plate 7.

[0025] The collection mechanism 8 includes a guide groove 801, a lead screw 802, a driven bevel gear 803, a servo motor 804, a driving bevel gear 805, a sliding sleeve 806, a collection box 807, a controller 808, a pressure sensor 809, and a buzzer alarm 810. The guide groove 801 is provided on the top left side of the base plate 7, and the lead screw 802 is rotatably connected to the rear side of the inner wall of the guide groove 801 through a bearing.

[0026] The front end of the lead screw 802 passes through the guide groove 801 and the base plate 7 in sequence and extends to the outside of the base plate 7. The lead screw 802 is movably connected to the base plate 7, and the front end of the lead screw 802 is fixedly connected to the driven bevel gear 803.

[0027] A servo motor 804 is fixedly installed on the front side of the base plate 7. The output end of the servo motor 804 is fixedly connected to the drive bevel gear 805. The drive bevel gear 805 and the driven bevel gear 803 mesh with each other.

[0028] The operation of the servo motor 804 drives the active bevel gear 805 to rotate, which in turn drives the driven bevel gear 803 and the lead screw 802 to rotate.

[0029] The lead screw 802 is threadedly connected to a sliding sleeve 806. The bottom of the sliding sleeve 806 is in contact with the bottom of the inner wall of the guide groove 801, the left side of the sliding sleeve 806 is in contact with the left side of the inner wall of the guide groove 801, and the right side of the sliding sleeve 806 is in contact with the right side of the inner wall of the guide groove 801. The above arrangement can prevent the sliding sleeve 806 from rotating with the lead screw 802.

[0030] The top of the sliding sleeve 806 passes through the guide groove 801 and extends to the outside of the guide groove 801 and is fixedly connected to the collection box 807. The top of the collection box 807 is an open structure, which facilitates receiving the packaged soup bags output from the feed pipe 2.

[0031] A controller 808 is fixedly installed on the left side of the base plate 7. A pressure sensor 809 is fixedly embedded in the top of the sliding sleeve 806. The top of the pressure sensor 809 abuts against the bottom of the collection box 807. A buzzer alarm 810 is fixedly installed on the left side of the collection box 807. The pressure sensor 809, the buzzer alarm 810 and the servo motor 804 are electrically connected to the controller 808 respectively.

[0032] By setting up a pressure sensor 809, a controller 808, and a buzzer alarm 810, when the number of soup bags in the collection box 807 gradually increases, the pressure sensor 809 will detect that the pressure has reached the set threshold and transmit a signal to the controller 808. Then, the controller 808 will activate the buzzer alarm 810 to sound an alarm, thereby reminding staff to deal with the soup bags in the collection box 807 in a timely manner.

[0033] In practical application: Soup ingredients to be packaged are added to the storage cylinder 3 through the feeding pipe 4. The soup packaging machine body 1 is started to package the soup ingredients. The packaged soup bags are output through the discharge pipe 2 and fall into the collection box 807. At the same time, the servo motor 804 is started by the controller 808. The servo motor 804 drives the active bevel gear 805 to rotate continuously in both directions. In turn, the active bevel gear 805 drives the driven bevel gear 803 and the lead screw 802 to rotate continuously in both directions. This causes the sliding sleeve 806 to drive the collection box 807 to move back and forth continuously. This ensures that the packaged soup bags fall evenly into the collection box 807. When the number of soup bags in the collection box 807 gradually increases, the pressure sensor 809 detects that the pressure has reached the set threshold and transmits a signal to the controller 808. Then, the controller 808 activates the buzzer alarm 810 to sound an alarm, thus reminding the staff to handle the soup bags in the collection box 807 in time.

[0034] 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 alterations 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 automated stock cube packaging machine comprising a stock cube packaging machine body (1) characterised in that: The front side of the soup package machine body (1) is provided with a box door, the left side of the soup package machine body (1) is provided with a feeding pipe (2), the bottom of the soup package machine body (1) is fixedly connected with a supporting plate (5), the bottom of the supporting plate (5) is fixedly connected with supporting legs (6) at four corners, the bottom of the four supporting legs is fixedly connected with the same bottom plate (7), and the bottom plate (7) is provided with a collecting mechanism (8).

2. An automated bouillon packet packaging machine according to claim 1, characterized in that: The collecting mechanism (8) comprises a guide groove (801), a lead screw (802), a driven bevel gear (803), a servo motor (804), a driving bevel gear (805), a sliding sleeve (806), a collecting box (807), a controller (808), a pressure sensor (809) and a buzzer alarm (810), the top left side of the bottom plate (7) is provided with a guide groove (801), and the rear side of the inner wall of the guide groove (801) is rotatably connected with a lead screw (802).

3. An automated bouillon packet packaging machine according to claim 2, characterized in that: The front end of the lead screw (802) penetrates the guide groove (801) and the bottom plate (7) in sequence and extends to the outside of the bottom plate (7), the lead screw (802) is movably connected with the bottom plate (7), and the front end of the lead screw (802) is fixedly connected with a driven bevel gear (803).

4. An automated bouillon packet packaging machine according to claim 3, characterized in that: The front side of the bottom plate (7) is fixedly provided with a servo motor (804), the output end of the servo motor (804) is fixedly connected with a driving bevel gear (805), and the driving bevel gear (805) and the driven bevel gear (803) are meshed with each other.

5. An automated bouillon packet packaging machine according to claim 4, characterized in that: The surface of the lead screw (802) is threadedly connected with a sliding sleeve (806), the bottom of the sliding sleeve (806) is movably in contact with the bottom of the inner wall of the guide groove (801), the left side of the sliding sleeve (806) is movably in contact with the left side of the inner wall of the guide groove (801), and the right side of the sliding sleeve (806) is movably in contact with the right side of the inner wall of the guide groove (801).

6. An automated bouillon packet packaging machine according to claim 5, characterized in that: The top of the sliding sleeve (806) penetrates the guide groove (801) and extends to the outside of the guide groove (801) and is fixedly connected with a collecting box (807), and the top of the collecting box (807) is of an open structure.

7. An automated bouillon packet packaging machine according to claim 6, characterized in that: The left side of the bottom plate (7) is fixedly provided with a controller (808), the top of the sliding sleeve (806) is fixedly embedded with a pressure sensor (809), the top of the pressure sensor (809) is in abutment with the bottom of the collecting box (807), the left side of the collecting box (807) is fixedly provided with a buzzer alarm (810), and the pressure sensor (809), the buzzer alarm (810) and the servo motor (804) are electrically connected with the controller (808) respectively.