Probiotic filling machine

By setting up scraping and discharge mechanisms in the probiotic filling machine, the problem of material retention after the equipment is stopped is solved, and efficient material discharge and processing quality are improved.

CN223279373UActive Publication Date: 2025-08-29HUBEI YUEHAI BIOLOGICAL TECH CO LTD
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Patent Information

Application Number
CN202422673007.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2025-08-29
Estimated Expiration
2034-11-01

AI Technical Summary

Technical Problem

The existing probiotic filling machines retain materials after the equipment is stopped, resulting in a decrease in the quality of material processing and the easy mix of new and old materials.

Method used

Set up a scraping mechanism and a discharge mechanism, and use the combination of stirring, scraping, discharge and refrigeration mechanism to reduce material wall hanging to ensure the discharge rate and processing quality of the material.

Benefits of technology

Effectively reduce material wall hanging, improve material discharge rate, avoid miscellaneous materials from old and new materials, and improve processing quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of probiotic filling, in particular to a probiotic filling machine which is provided with a scraping mechanism and a discharging mechanism, so that the situation that materials are hung on the wall can be reduced in the probiotic filling process, the discharging rate of the materials is ensured, material accumulation in equipment is reduced, new and old materials are prevented from being mixed, and the production efficiency is improved. The processing quality is improved; comprising a stirring mechanism; the device further comprises a scraping mechanism, a discharging mechanism, a filling mechanism and a refrigerating mechanism, the scraping mechanism is installed in the stirring mechanism, the discharging mechanism is installed at the lower end of the stirring mechanism, the filling mechanism is installed at the lower end of the discharging mechanism, and the refrigerating mechanism is installed on the stirring mechanism; the stirring mechanism is used for stirring, the scraping mechanism is used for scraping, the discharging mechanism is used for discharging, the filling mechanism is used for filling, and the refrigerating mechanism is used for refrigerating.
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Description

Technical Field

[0001] The utility model relates to the technical field of probiotics filling, in particular to a probiotics filling machine. Background Art

[0002] Probiotics are a type of active microorganisms that are beneficial to the host. They colonize in the human body, change the composition of the host's flora in a certain part, thereby regulating the host's mucosal and systemic immune function or regulating the balance of intestinal flora to promote nutrient absorption and maintain intestinal health.

[0003] Existing probiotic filling machines, such as the one disclosed in utility model patent application number 202320647793.0, provide an automatic probiotic filling and capping machine. A CCD camera detects whether the cap is facing the correct way up and down. A cap flipping mechanism flips the cap 180 degrees if it's facing the wrong way up. A cap transport mechanism pre-places the cap onto the can. A cap pressing mechanism presses the cap firmly onto the can. This application reduces manpower and saves costs.

[0004] However, during the probiotic filling process, there will be material residue when the equipment is stopped and used again, which will lead to a decrease in material processing quality. Utility Model Content

[0005] In order to solve the above technical problems, the utility model provides a probiotic filling machine that is equipped with a scraping mechanism and a discharge mechanism, so as to reduce the occurrence of material hanging on the wall during the probiotic filling process, thereby ensuring the material discharge rate, reducing the material accumulation in the equipment, ensuring that new and old materials are not mixed, and improving the processing quality.

[0006] The utility model is a probiotic filling machine, comprising a stirring mechanism; a scraping mechanism, a discharging mechanism, a filling mechanism and a refrigeration mechanism, wherein the scraping mechanism is installed in the stirring mechanism, the discharging mechanism is installed at the lower end of the stirring mechanism, the filling mechanism is installed at the lower end of the discharging mechanism, and the refrigeration mechanism is installed on the stirring mechanism;

[0007] The stirring mechanism stirs, the scraping mechanism scrapes, the discharging mechanism discharges, the filling mechanism fills, and the refrigeration mechanism cools; the material is stirred by opening the stirring mechanism, and the material on the inner wall of the equipment is scraped by the scraping mechanism, the material is kept warm by opening the refrigeration mechanism, the material is discharged by opening the discharging mechanism, and the filling mechanism is used for filling, so that during the probiotic filling process, the occurrence of material hanging on the wall can be reduced, thereby ensuring the material discharge rate, reducing the accumulation of material in the equipment, ensuring that new and old materials are not mixed, and improving the processing quality.

[0008] Preferably, the stirring mechanism includes a stirring bin, a stirring shaft and a motor 1, a feed port is provided at the upper end of the stirring bin, the stirring shaft is rotatably mounted on the stirring bin, and the stirring shaft input end extends to the upper side of the stirring bin, the motor 1 is mounted at the upper end of the stirring bin, and the output end of the motor 1 is connected to the stirring shaft input end; the stirring shaft is driven by turning on the motor 1 to rotate the stirring shaft to stir the material.

[0009] Preferably, the scraping mechanism includes a gear ring, a scraper, a main gear and a slave gear. The gear ring is rotatably installed in the mixing chamber, the scraper is installed at the lower end of the gear ring, the main gear is installed on the mixing shaft, and the slave gear is rotatably installed in the mixing chamber, and the slave gear is meshed with both the main gear and the gear ring; the main gear is driven to rotate by the rotation of the mixing shaft, and the main gear rotates and meshes with the slave gear to rotate the slave gear, and the slave gear rotates and meshes with the gear ring to drive the scraper to rotate to scrape the material on the inner wall.

[0010] Preferably, the discharging mechanism includes an auger, a spiral blade shaft and motor 2, the auger is installed at the lower end of the mixing bin, the spiral blade shaft is rotatably installed in the auger, and the input end of the spiral blade shaft extends to the left side of the auger, motor 2 is installed at the left end of the auger, and the output end of motor 2 is connected to the input end of the spiral blade shaft; by turning on motor 2, the spiral blade shaft is driven to rotate and discharge the material.

[0011] Preferably, the filling mechanism includes a filling tube, a bottom plate, a baffle and a spring. The filling tube is installed at the lower end of the auger, the bottom plate is installed on the filling tube, and the baffle is slidably installed on the filling tube through the spring; the bottle mouth presses against the baffle so that the baffle cooperates with the spring to rise and discharge the material.

[0012] Preferably, the refrigeration mechanism includes a refrigeration bin and a refrigeration wire, the refrigeration bin is installed on the stirring bin, and the refrigeration wire is installed in the refrigeration bin; the refrigeration wire is energized to keep the material warm.

[0013] Compared with the prior art, the beneficial effects of the utility model are as follows: the material is stirred by opening the stirring mechanism, the material on the inner wall of the equipment is scraped off by the scraping mechanism, the material is kept warm by opening the refrigeration mechanism, the material is discharged by opening the discharge mechanism, and the material is filled by the filling mechanism, so that during the probiotic filling process, the occurrence of material hanging on the wall can be reduced, thereby ensuring the material discharge rate, reducing the accumulation of material in the equipment, ensuring that new and old materials are not mixed, and improving the processing quality. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 This is an axonometric structural diagram of the present utility model;

[0015] Figure 2 This is a schematic diagram of the front-view cross-section axonometric structure of the present invention;

[0016] Figure 3 This is a schematic diagram of the axonometric structure of the utility model when viewed from below;

[0017] Figure 4 The filling mechanism of the utility model is Figure 2 Middle A section is an axonometric enlarged structural diagram of the front view section;

[0018] Markings in the accompanying drawings: 1. stirring mechanism; 11. stirring chamber; 12. stirring shaft; 13. motor 1; 2. scraping mechanism; 21. gear ring; 22. scraper; 23. main gear; 24. slave gear; 3. discharge mechanism; 31. auger; 32. spiral blade shaft; 33. motor 2; 4. filling mechanism; 41. filling tube; 42. bottom plate; 43. baffle; 44. spring; 5. refrigeration mechanism; 51. refrigeration chamber; 52. refrigeration wire. DETAILED DESCRIPTION

[0019] To facilitate understanding of the present invention, a more comprehensive description of the present invention will be provided below with reference to the accompanying drawings. The present invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the present invention.

[0020] Example 1

[0021] like Figures 1 to 4 As shown, a probiotic filling machine includes a stirring mechanism 1, a scraping mechanism 2, a discharging mechanism 3, a filling mechanism 4 and a refrigeration mechanism 5. The scraping mechanism 2 is installed in the stirring mechanism 1, the discharging mechanism 3 is installed at the lower end of the stirring mechanism 1, the filling mechanism 4 is installed at the lower end of the discharging mechanism 3, and the refrigeration mechanism 5 is installed on the stirring mechanism 1;

[0022] The stirring mechanism 1 stirs, the scraping mechanism 2 scrapes, the discharging mechanism 3 discharges, the filling mechanism 4 fills, and the refrigeration mechanism 5 refrigerates;

[0023] The stirring mechanism 1 includes a stirring chamber 11, a stirring shaft 12 and a motor 13. A feed port is provided at the upper end of the stirring chamber 11. The stirring shaft 12 is rotatably mounted on the stirring chamber 11, and the input end of the stirring shaft 12 extends to the upper side of the stirring chamber 11. The motor 13 is mounted on the upper end of the stirring chamber 11, and the output end of the motor 13 is connected to the input end of the stirring shaft 12.

[0024] The scraping mechanism 2 includes a gear ring 21, a scraper 22, a main gear 23 and a slave gear 24. The gear ring 21 is rotatably mounted in the mixing chamber 11, the scraper 22 is mounted on the lower end of the gear ring 21, the main gear 23 is mounted on the mixing shaft 12, and the slave gear 24 is rotatably mounted in the mixing chamber 11, and the slave gear 24 is meshed with both the main gear 23 and the gear ring 21.

[0025] The discharge mechanism 3 includes an auger 31, a spiral blade shaft 32 and a second motor 33. The auger 31 is installed at the lower end of the mixing chamber 11. The spiral blade shaft 32 is rotatably installed in the auger 31, and the input end of the spiral blade shaft 32 extends to the left side of the auger 31. The second motor 33 is installed at the left end of the auger 31, and the output end of the second motor 33 is connected to the input end of the spiral blade shaft 32.

[0026] The filling mechanism 4 includes a filling tube 41, a bottom plate 42, a baffle 43 and a spring 44. The filling tube 41 is mounted on the lower end of the auger 31, the bottom plate 42 is mounted on the filling tube 41, and the baffle 43 is slidably mounted on the filling tube 41 via the spring 44.

[0027] The refrigeration mechanism 5 includes a refrigeration chamber 51 and a refrigeration wire 52. The refrigeration chamber 51 is installed on the stirring chamber 11, and the refrigeration wire 52 is installed in the refrigeration chamber 51.

[0028] By turning on the motor 13, the stirring shaft 12 is driven to rotate the stirring shaft 12 to stir the material. At the same time, the main gear 23 is driven to rotate by the rotation of the stirring shaft 12. While the main gear 23 rotates, it meshes with the slave gear 24 to rotate the slave gear 24. While the slave gear 24 rotates, it meshes with the gear ring 21, so that the gear ring 21 drives the scraper 22 to rotate to scrape the material on the inner wall. By energizing the refrigeration wire 52, the refrigeration wire 52 keeps the material warm. By turning on the motor 2 33, the spiral blade shaft 32 is driven to rotate the spiral blade shaft 32 to discharge the material. The bottle mouth is pressed against the baffle 43, so that the baffle 43 cooperates with the spring 44 to rise to discharge and fill the material. In this way, during the probiotic filling process, the occurrence of material hanging on the wall can be reduced, thereby ensuring the material discharge rate, reducing the accumulation of material in the equipment, ensuring that new and old materials are not mixed, and improving the processing quality.

[0029] like Figures 1 to 4 As shown, a probiotic filling machine of the present invention is provided. When working, the stirring shaft 12 is driven by turning on the motor 13 to rotate the stirring shaft 12 to stir the material. At the same time, the main gear 23 is driven to rotate by the rotation of the stirring shaft 12. When the main gear 23 rotates, it engages with the slave gear 24 to rotate the slave gear 24. When the slave gear 24 rotates, it engages with the gear ring 21 so that the gear ring 21 drives the scraper 22 to rotate to scrape the material on the inner wall. The cooling wire 52 is energized to keep the material warm. The spiral leaf shaft 32 is driven by turning on the motor 2 33 to rotate the spiral leaf shaft 32 to discharge the material. The bottle mouth is pressed against the baffle 43 so that the baffle 43 cooperates with the spring 44 to rise to discharge the material.

[0030] The motor 1 13 and the motor 2 33 of the present invention are purchased on the market, and technicians in this industry only need to install and operate them according to the accompanying instruction manuals, without the need for technicians in this field to make creative efforts.

[0031] The main functions achieved by the utility model are: during the probiotic filling process, by setting a scraping mechanism and a discharging mechanism, the occurrence of material hanging on the wall can be reduced, thereby ensuring the material discharge rate, reducing the material accumulation in the equipment, ensuring that new and old materials are not mixed, and improving the processing quality.

[0032] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.

Claims

1. A probiotic filling machine, comprising a stirring mechanism (1); characterized in that: The invention also comprises a scraping mechanism (2), a discharging mechanism (3), a filling mechanism (4) and a refrigeration mechanism (5), wherein the scraping mechanism (2) is installed in the stirring mechanism (1), the discharging mechanism (3) is installed at the lower end of the stirring mechanism (1), the filling mechanism (4) is installed at the lower end of the discharging mechanism (3), and the refrigeration mechanism (5) is installed on the stirring mechanism (1); The stirring mechanism (1) performs stirring, the scraping mechanism (2) performs scraping, the discharging mechanism (3) performs discharging, the filling mechanism (4) performs filling, and the refrigeration mechanism (5) performs refrigeration.

2. A probiotic filling machine according to claim 1, characterized in that: The stirring mechanism (1) comprises a stirring chamber (11), a stirring shaft (12) and a motor (13). The upper end of the stirring chamber (11) is provided with a feed port. The stirring shaft (12) is rotatably mounted on the stirring chamber (11), and the input end of the stirring shaft (12) extends to the upper side of the stirring chamber (11). The motor (13) is mounted on the upper end of the stirring chamber (11), and the output end of the motor (13) is connected to the input end of the stirring shaft (12).

3. A probiotic filling machine as claimed in claim 2, characterized in that: The scraping mechanism (2) comprises a gear ring (21), a scraper (22), a main gear (23) and a slave gear (24). The gear ring (21) is rotatably mounted in the mixing chamber (11), the scraper (22) is mounted at the lower end of the gear ring (21), the main gear (23) is mounted on the mixing shaft (12), and the slave gear (24) is rotatably mounted in the mixing chamber (11), and the slave gear (24) is meshed with the main gear (23) and the gear ring (21).

4. A probiotic filling machine as claimed in claim 2, characterized in that: The discharge mechanism (3) comprises an auger (31), a spiral blade shaft (32) and a second motor (33). The auger (31) is mounted at the lower end of the mixing chamber (11). The spiral blade shaft (32) is rotatably mounted in the auger (31), and the input end of the spiral blade shaft (32) extends to the left side of the auger (31). The second motor (33) is mounted at the left end of the auger (31), and the output end of the second motor (33) is connected to the input end of the spiral blade shaft (32).

5. A probiotic filling machine as claimed in claim 4, characterized in that: The filling mechanism (4) comprises a filling tube (41), a bottom plate (42), a baffle (43) and a spring (44). The filling tube (41) is mounted on the lower end of the auger (31), the bottom plate (42) is mounted on the filling tube (41), and the baffle (43) is slidably mounted on the filling tube (41) via the spring (44).

6. A probiotic filling machine as claimed in claim 2, characterized in that: The refrigeration mechanism (5) comprises a refrigeration chamber (51) and a refrigeration wire (52). The refrigeration chamber (51) is installed on the stirring chamber (11), and the refrigeration wire (52) is installed in the refrigeration chamber (51).

Citation Information

Patent Citations

  • Automatic probiotic filling and capping machine

    CN219929585U