Bottle row transfer device

By setting partitions and lifting and translational bottle protection mechanisms on the bottle row transfer device, combined with multiple conveying channels and parallel conveyor belts, the problem of low efficiency of bottle rows during sterilization transfer is solved, and stability and production capacity are improved.

CN223444386UActive Publication Date: 2025-10-17TRUKING TECH LTD
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Patent Information

Application Number
CN202422897263.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-27
Publication Date
2025-10-17
Estimated Expiration
2034-11-27

AI Technical Summary

Technical Problem

In the prior art, the efficiency of bottle rows during the sterilization and transportation process is low and bottles are easily overturned and damaged due to squeezing, which affects the stability of equipment operation.

Method used

The design of partitions on the first conveyor belt is adopted, combined with the lifting and translation bottle protection and bottle pushing mechanism to prevent the bottles from squeezing each other and improve production capacity through multiple conveying channels; the bottle picking mechanism uses a drive mechanism and suction cups to quickly place the bottle rows horizontally, and combined with parallel conveyor belts to increase the discharge speed.

Benefits of technology

It improves the stability and productivity of the bottle unloading process, reduces bottle damage and bottle overturning, and improves the stability and efficiency of equipment operation.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223444386U_ABST
Patent Text Reader

Abstract

The utility model discloses a bottle row transfer device, which relates to the technical field of pharmaceutical equipment and packaging equipment and comprises a first conveying belt 1, a plurality of first partition plates 2 are arranged on the first conveying belt 1 at intervals, and a first bottle conveying channel 3 is arranged between two adjacent rows of first partition plates 2. A first lifting translation bottle protecting mechanism 4 and a first lifting translation bottle pushing mechanism 5 are arranged on the first bottle conveying channel 3, a tray unloading bottle pushing mechanism 6 is arranged at one end of the first conveying belt 1, a bottle taking mechanism 7 and a discharging channel 8 are arranged at the other end of the first conveying belt 1, and the bottle taking mechanism 7 is in butt joint with the discharging channel 8. And the bottle taking mechanism 7 is used for horizontally placing the vertically conveyed bottle rows on the discharging channel 8. The bottle row transfer device has the advantages of being stable in operation and high in productivity.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to pharmaceutical, packing equipment technical field especially relates to a bottle row transfer device. BACKGROUND

[0002] The existing BFS plastic ampoule bottle is widely used, and the terminal sterilization is an important link in the production process. At present, the sterilization and transfer are mainly carried out by manual loading and unloading disc mode, which is low in efficiency. The technical scheme of the Chinese patent application with the application number CN202010646008.0 discloses a bottle row disc unloading machine and disc unloading method. The rack is provided with a bottle unloading mechanism for pushing the bottle rows on the carrying platform to the bottle conveying mechanism, and a bottle unloading and protecting mechanism for protecting the bottles when the bottle unloading mechanism pushes the bottles. The multiple rows of bottle rows on the carrying platform are pushed and conveyed, which easily causes the bottle rows to be squeezed, resulting in bottle overturning and bottle row damage, affecting the stable operation of the equipment. SUMMARY

[0003] The technical problem to be solved by the utility model is to overcome the deficiencies of the prior art and provide a bottle row transfer device with stable operation and high productivity.

[0004] To solve the above technical problems, the utility model adopts the following technical scheme:

[0005] A bottle row transfer device, comprising a first conveying belt 1, a plurality of first partition plates 2 are arranged on the first conveying belt 1 at intervals, a first bottle conveying channel 3 is arranged between the two adjacent first partition plates 2, a first lifting and translating bottle protecting mechanism 4 and a first lifting and translating bottle pushing mechanism 5 are arranged on the first bottle conveying channel 3, a disc unloading and bottle pushing mechanism 6 is arranged at one end of the first conveying belt 1, a bottle taking mechanism 7 and a discharge channel 8 are arranged at the other end of the first conveying belt 1, the bottle taking mechanism 7 is connected to the discharge channel 8, and the bottle taking mechanism 7 is used for horizontally placing the vertically conveyed bottle row on the discharge channel 8. The mutual squeezing phenomenon of the bottle rows is reduced, so as to avoid bottle overturning and bottle row damage, improve the stability of the bottle row disc unloading process, assist the bottle conveying through the first conveying belt 1, the disc unloading and bottle pushing mechanism 6 can push the bottle row in the sterilization disc 17 with large volume, a plurality of first conveying channels 3 are arranged, and the productivity is improved.

[0006] As a further improvement of the above technical scheme:

[0007] The discharge channel 8 is a second conveying belt 9 and a third conveying belt 10 arranged side by side, the bottles are alternately discharged, and the productivity is improved.

[0008] The bottle taking mechanism 7 comprises a first driving mechanism 11, a rotating shaft 12, a second driving mechanism 13, a third driving mechanism 14 and a suction disc 15, the first driving mechanism 11 is connected to the rotating shaft 12, the end of the rotating shaft 12 is connected to the second driving mechanism 13, the rotating shaft 12 is provided with the third driving mechanism 14, the third driving mechanism 14 is connected to the suction disc 15, and the fast bottle taking is realized.

[0009] The first driving mechanism 11 and the third driving mechanism 14 are translational cylinders, and the second driving mechanism 13 is a rotary cylinder.

[0010] The first conveying belt 1 is provided with a feeding area 16 between the first conveying belt 1 and the disc unloading and bottle pushing mechanism 6, and the feeding area 16 is used for placing a sterilization disc 17.

[0011] Further comprising a fourth conveying belt 18, the fourth conveying belt 18 is connected with a fifth conveying belt 19, the fifth conveying belt 19 is provided with second partitions 20 at intervals, one side of the fifth conveying belt 19 is provided with a lifting bottle protection mechanism 21, and the other side of the fifth conveying belt 19 is provided with a disc loading and bottle pushing mechanism 22, so that the bottle rows in the same row are arranged separately, and the bottle rows are prevented from being squeezed.

[0012] The fifth conveying belt 19 is connected with a transition platform 23, the transition platform 23 is provided with third partitions 28 at intervals, and the second bottle conveying channels 29 are arranged between the two adjacent rows of third partitions 28, so that the bottle rows are prevented from being squeezed, the transition platform 23 is used for buffering the platform, and the disc loading efficiency is improved.

[0013] The second bottle conveying channels 29 are provided with a second lifting translational bottle protection mechanism 24 and a second lifting translational bottle pushing mechanism 25, the transition platform 23 is connected with a discharging area 26, one side of the discharging area 26 is provided with a disc loading and bottle protection mechanism 27, and the discharging area 26 is used for placing the sterilization disc 17.

[0014] The lifting bottle protection mechanism 21 is arranged between the fifth conveying belt 19 and the transition platform 23.

[0015] Compared with the prior art, the bottle row transfer device has the following advantages:

[0016] The bottle row transfer device comprises a first conveying belt 1, first partitions 2 are arranged at intervals on the first conveying belt 1, first bottle conveying channels 3 are arranged between the two adjacent rows of first partitions 2, a first lifting translational bottle protection mechanism 4 and a first lifting translational bottle pushing mechanism 5 are arranged on the first bottle conveying channels 3, a disc unloading and bottle pushing mechanism 6 is arranged at one end of the first conveying belt 1, a bottle taking mechanism 7 and a discharging channel 8 are arranged at the other end of the first conveying belt 1, the bottle taking mechanism 7 is connected with the discharging channel 8, the bottle taking mechanism 7 is used for horizontally placing the vertically conveyed bottle row on the discharging channel 8, the bottle row is separated by the first partitions 2, the bottle row is conveyed in different first bottle conveying channels 3, the bottle row in the same row is prevented from being squeezed, the first conveying belt 1 is used for assisting in conveying the bottle row, the friction at the bottom of the bottle row is reduced, the bottle row in the same column is prevented from being squeezed, the bottle row is prevented from being turned over and damaged, the stability of the disc unloading process of the bottle row is improved, the first conveying belt 1 is used for assisting in conveying the bottle row, the disc unloading and bottle pushing mechanism 6 can push the bottle row in the sterilization disc 17 with a large volume, a plurality of first conveying channels 3 are arranged, and the production capacity is improved. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a disc unloading structure schematic view of a bottle row transfer device of the utility model;

[0018] Figure 2 It is a bottle taking mechanism structure schematic view of a bottle row transfer device of the utility model;

[0019] Figure 3 It is a disc loading structure schematic view of a bottle row transfer device of the utility model;

[0020] Figure 4 It is a disc loading structure side view of a bottle row transfer device of the utility model.

[0021] The number of the utility model's drawing in the figure is explained: 1, first conveying belt;2, first partition;3, first bottle conveying channel;4, first lifting and translating bottle protection mechanism;5, first lifting and translating bottle pushing mechanism;6, disc unloading bottle pushing mechanism;7, bottle taking mechanism;8, discharging channel;9, second conveying belt;10, third conveying belt;11, first driving mechanism;12, rotating shaft;13, second driving mechanism;14, third driving mechanism;15, suction cup;16, feeding area;17, sterilization disc;18, fourth conveying belt;19, fifth conveying belt;20, second partition;21, lifting bottle protection mechanism;22, disc loading bottle pushing mechanism;23, transition platform;24, second lifting and translating bottle protection mechanism;25, second lifting and translating bottle pushing mechanism;26, discharging area;27, disc loading bottle protection mechanism;28, third partition;29, second bottle conveying channel. DETAILED DESCRIPTION

[0022] The utility model will be explained further in detail below in combination with the drawings and specific embodiments of the specification.

[0023] As Figures 1 to 2 Disclosed is a bottle row transfer device, which comprises a first conveying belt 1, a plurality of first partitions 2 are arranged at intervals on the first conveying belt 1, a first bottle conveying channel 3 is arranged between two adjacent rows of first partitions 2, a first lifting and translating bottle protection mechanism 4 and a first lifting and translating bottle pushing mechanism 5 are arranged on the first bottle conveying channel 3, a disc unloading bottle pushing mechanism 6 is arranged at one end of the first conveying belt 1, a feeding area 16 is arranged between the first conveying belt 1 and the disc unloading bottle pushing mechanism 6, the feeding area 16 is used for placing a sterilization disc 17, a bottle taking mechanism 7 and a discharging channel 8 are arranged at the other end of the first conveying belt 1, the bottle taking mechanism 7 is connected to the discharging channel 8, and the discharging channel 8 comprises a second conveying belt 9 and a third conveying belt 10 arranged side by side.

[0024] The bottle taking mechanism 7 comprises a first driving mechanism 11, a rotating shaft 12, a second driving mechanism 13, a third driving mechanism 14 and a suction cup 15, the first driving mechanism 11 is connected to the rotating shaft 12, the end of the rotating shaft 12 is connected to the second driving mechanism 13, the rotating shaft 12 is provided with the third driving mechanism 14, the third driving mechanism 14 is connected to the suction cup 15, the first driving mechanism 11 and the third driving mechanism 14 are translational cylinders, the second driving mechanism 13 is a rotary cylinder, and the bottle taking mechanism 7 is used for horizontally placing the vertically conveyed bottle row on the discharge channel 8.

[0025] The bottle row is placed in the sterilization tray 17 for sterilization and then is conveyed to the feeding area 16, the tray unloading and bottle pushing mechanism 6 pushes the bottle row in the sterilization tray 17 from one side into the first bottle conveying channel 3 on the first conveying belt 1, when the tray unloading and bottle pushing mechanism 6 pushes the bottle, the first lifting and translational bottle protecting mechanism 4 protects the bottle from the other side of the bottle row, the tray unloading and bottle pushing mechanism 6 and the first lifting and translational bottle protecting mechanism 4 keep synchronous movement, so that all the bottle rows in the sterilization tray 17 enter the first bottle conveying channel 3, the tray unloading and bottle pushing mechanism 6 and the first lifting and translational bottle protecting mechanism 4 reset, and the next sterilization tray enters the feeding area 16 and the tray unloading is performed on the next sterilization tray, the first conveying belt 1 moves to convey the bottle row, and when the bottle row at one end of the first conveying belt 1 contacts the bottle taking mechanism 7, the first conveying belt 1 stops conveying, the bottle taking mechanism 7 sucks the bottle row from the side and rotates to horizontally place the bottle row on the second conveying belt 9 of the discharge channel 8, the first lifting and translational bottle pushing mechanism 5 pushes a row of bottle rows forward, the bottle taking mechanism 7 acts again, the suction cup 15 sucks the bottle row from the side, the first driving mechanism 11 drives the suction cup 15 to translate from above the second conveying belt 9 to the third conveying belt 10, and the second driving mechanism 13 drives the suction cup to rotate, so that the bottle row is horizontally placed.

[0026] The first partition plate 2 is used for separating the bottle rows, so that the bottle rows are conveyed in different first bottle conveying channels 3, the mutual extrusion of the bottle rows in the same row is avoided, the first conveying belt 1 is used for assisting in conveying the bottle rows, the friction at the bottom of the bottle row is reduced, the mutual extrusion of the bottle rows in the same column is reduced, so that the bottle row is prevented from being inverted and damaged, the stability of the bottle row unloading process is improved, the first conveying belt 1 is used for assisting in conveying the bottle rows, the tray unloading and bottle pushing mechanism 6 can push the bottle rows in the sterilization tray 17 with a larger volume, a plurality of first conveying channels 3 are arranged, and the production capacity is improved. The bottle taking mechanism 7 places the bottle rows by translation and staggered placement on the second conveying belt 9 and the third conveying belt 10 arranged side by side, so that the double-channel bottle output is realized, when the second conveying belt 9 outputs the bottle row, the bottle taking mechanism 7 does not need to wait for the second conveying belt 9 to completely output the bottle body, and the next row of bottle rows can be placed on the third conveying belt 10, so that the discharge speed is increased. The bottle row is unloaded by rotating and sucking the bottle body, the risk of bottle jamming is avoided, and the success rate of unloading the tray is improved.

[0027] As Figures 3 to 4The tray loading mechanism of the bottle row transfer device also comprises a fourth conveying belt 18, the fourth conveying belt 18 is connected with a fifth conveying belt 19, the fifth conveying belt 19 is provided with second partitions 20 at intervals, one side of the fifth conveying belt 19 is provided with a lifting bottle protection mechanism 21, the lifting bottle protection mechanism 21 is arranged between the fifth conveying belt 19 and a transition platform 23, the other side of the fifth conveying belt 19 is provided with a tray loading and bottle pushing mechanism 22, the fifth conveying belt 19 is connected with the transition platform 23, the transition platform 23 is provided with third partitions 28 at intervals, a second bottle conveying channel 29 is arranged between two adjacent rows of third partitions 28, the second bottle conveying channel 29 is provided with a second lifting and translating bottle protection mechanism 24 and a second lifting and translating bottle pushing mechanism 25, the transition platform 23 is connected with a discharge area 26, one side of the discharge area 26 is provided with a tray loading and bottle protection mechanism 27, and the discharge area 26 is used for placing the sterilization tray 17.

[0028] The bottle row to be sterilized is conveyed through the fourth conveying belt 18, the bottle row has a wide gap between the bottle row and the bottle row, the fifth conveying belt 19 is step-by-step conveyed, so that the bottle rows are arranged at intervals on the fifth conveying belt 19 and are separated through the second partitions 20, when the bottle row enters the fifth conveying belt 19, the lifting bottle protection mechanism 12 protects the bottle on one side of the fifth conveying belt 19, the positions where the fifth conveying belt 19 is connected with the transition platform 23 are all distributed with the bottle rows, the lifting bottle protection mechanism 12 is avoided, the tray loading and bottle pushing mechanism 22 pushes the bottle row into the second bottle conveying channel 29, at the same time, the second lifting and translating bottle protection mechanism 24 and the tray loading and bottle pushing mechanism 22 are synchronously moved and protect the bottle, so that the bottle body enters the transition platform 23, when the transition platform 23 is filled with the bottle rows, the second lifting and translating bottle pushing mechanism 25 pushes the bottle row into the sterilization tray, and at the same time, the tray loading and bottle protection mechanism 27 protects the bottle on the other side of the sterilization tray 17.

[0029] When the tray is loaded, the transition platform 23 can synchronously enter the bottle, so that the tray loading efficiency is improved, the second partitions 20 and the third partitions 28 are arranged, so that the adjacent bottle rows are prevented from being extruded, the bottle row is prevented from being damaged and the bottle is prevented from being stuck due to extrusion, and the equipment running stability is achieved.

[0030] Although the utility model has disclosed as above with preferred embodiments, however, it is not used for limiting the utility model. Any person skilled in the art, without departing from the technical scheme range of the utility model, can utilize the technical contents disclosed above to make many possible changes and modifications to the technical scheme of the utility model, or modify as equivalent variation equivalent embodiment. Therefore, any simple modification, equivalent variation and modification made to the above embodiments according to the technical essence of the utility model should fall within the protection range of the technical scheme of the utility model.

Claims

1. A bottle row transfer device, characterized in that: The invention comprises a first conveyor belt (1), a plurality of first partitions (2) are arranged at intervals on the first conveyor belt (1), a first bottle conveying channel (3) is provided between two adjacent rows of the first partitions (2), a first lifting and translating bottle protecting mechanism (4) and a first lifting and translating bottle pushing mechanism (5) are provided on the first bottle conveying channel (3), a unloading tray bottle pushing mechanism (6) is provided at one end of the first conveyor belt (1), and a bottle picking mechanism (7) and a discharge channel (8) are provided at the other end of the first conveyor belt (1), the bottle picking mechanism (7) is docked with the discharge channel (8), and the bottle picking mechanism (7) is used to place the vertically conveyed bottle row horizontally on the discharge channel (8).

2. The bottle row transfer device according to claim 1, characterized in that: The discharge channel (8) is a second conveyor belt (9) and a third conveyor belt (10) arranged in parallel.

3. The bottle row transfer device according to claim 1, characterized in that: The bottle-taking mechanism (7) comprises a first driving mechanism (11), a rotating shaft (12), a second driving mechanism (13), a third driving mechanism (14) and a suction cup (15); the first driving mechanism (11) is connected to the rotating shaft (12); the end of the rotating shaft (12) is connected to the second driving mechanism (13); the rotating shaft (12) is provided with a third driving mechanism (14); and the third driving mechanism (14) is connected to the suction cup (15).

4. A bottle row transfer device as claimed in claim 3, characterized in that: The first drive mechanism (11) and the third drive mechanism (14) are translation cylinders, and the second drive mechanism (13) is a rotation cylinder.

5. The bottle row transfer device according to claim 1, characterized in that: A feeding area (16) is provided between the first conveyor belt (1) and the unloading tray and bottle pushing mechanism (6), and the feeding area (16) is used for placing the sterilization tray (17).

6. The bottle row transfer device according to claim 1, characterized in that: The utility model further comprises a fourth conveyor belt (18), wherein the fourth conveyor belt (18) is connected to a fifth conveyor belt (19), a second partition plate (20) is provided on the fifth conveyor belt (19), a bottle lifting and protecting mechanism (21) is provided on one side of the fifth conveyor belt (19), and a bottle loading and pushing mechanism (22) is provided on the other side of the fifth conveyor belt (19).

7. A bottle row transfer device according to claim 6, characterized in that: The fifth conveyor belt (19) is docked with a transition platform (23), a third partition (28) is provided on the transition platform (23), and a second bottle conveying channel (29) is provided between two adjacent rows of the third partitions (28).

8. A bottle row transfer device according to claim 7, characterized in that: The second bottle conveying channel (29) is provided with a second lifting and translating bottle protection mechanism (24) and a second lifting and translating bottle pushing mechanism (25). The transition platform (23) is connected to the discharge area (26). A tray-loading bottle protection mechanism (27) is provided on one side of the discharge area (26). The discharge area (26) is used to place the sterilization tray (17).

9. The bottle row transfer device according to claim 7, characterized in that: The bottle-lifting and protecting mechanism (21) is arranged between the fifth conveyor belt (19) and the transition platform (23).

Citation Information

Patent Citations

  • Bottom row disc unloading machine and disc unloading method

    CN111661630A