Stacking equipment for blister tray production

By designing an automated blister pallet stacking device, the automatic and neat descent and compaction of pallets are achieved through the cooperation of a rotating shaft and a blocking bar, which solves the problem of low efficiency in manual stacking and improves construction efficiency and pallet stacking quality.

CN224160062UActive Publication Date: 2026-04-24LIANSHENG (SUZHOU) PACKING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
LIANSHENG (SUZHOU) PACKING CO LTD
Filing Date
2025-06-09
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

In the current blister tray production process, the cut trays need to be stacked neatly by hand, resulting in low construction efficiency.

Method used

Design a stacking device for producing blister trays. By using the cooperation of a rotating shaft, a rotating ring and a blocking bar, the blister trays can be automatically and neatly lowered and stacked. The trays are also compacted by an air pump.

Benefits of technology

It enables automatic and neat stacking of blister trays, improving construction efficiency and ensuring the stability and stacking quality of the trays.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224160062U_ABST
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Abstract

The utility model relates to stacking equipment for blister tray production, which comprises a stacking box with a rectangular frame, the side surface of the stacking box with the rectangular frame is open, and a collecting frame for placing blister trays is arranged inside the open part; a motor is further installed in the bottom side of the stacking box, the tail end of a main shaft of the motor is fixedly connected with a driving gear disc, the outer side of the driving gear disc is meshed with a plurality of sets of driven gear discs, the inner sides of the driven gear discs are fixedly connected with vertically-arranged rotating shafts, and the bottoms of the rotating shafts are rotationally connected with the stacking box. Compared with the prior art, the plastic uptake tray conveying device has the advantages that it can be guaranteed that the plastic uptake trays sequentially descend by a certain height, the plastic uptake trays cannot be scattered, it is guaranteed that the plastic uptake trays are stably and neatly placed in a collecting frame, and therefore the plastic uptake trays can be conveniently collected. The purpose of centralized stacking is achieved, manual neat arrangement is not needed, and the working efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of blister tray production, and in particular to a stacking device for blister tray production. Background Technology

[0002] Blister trays are used to place items. In the actual production process, blister rolls are heated, and then air is extracted using a vacuum pump, causing the sheet to adhere and form in a mold. After forming, the blister trays generally need to be cut. When cutting larger blister trays, only one can usually be cut at a time. Then, the blister tray is manually removed and another blister tray is placed in the mold. The removed blister trays need to be neatly stacked together. The stacked blister trays need to be aligned and compacted. Manually stacking blister trays is time-consuming and affects construction efficiency. Therefore, to address the above problems, a stacking device for blister tray production is proposed. Utility Model Content

[0003] In view of the above-mentioned problems in the prior art, the main purpose of this utility model is to provide a stacking device for producing blister trays. The device uses a rotating shaft to drive the outer rotating ring and the blocking rod to rotate, ensuring that the blister trays descend in sequence to a certain height without scattering, and ensuring that they are stably and neatly placed inside the collection box, thus achieving the purpose of centralized stacking.

[0004] To achieve the above objectives, the technical solution adopted by this utility model is as follows: a stacking device for producing blister trays, the stacking device including a stacking box with a rectangular frame, the side of the stacking box with the rectangular frame being open, and a collection frame for placing blister trays being provided inside the open part;

[0005] A motor is also installed inside the bottom side of the stacking box. The motor's main shaft is fixedly connected to a drive gear disk. Multiple driven gear disks mesh on the outer side of the drive gear disk. Vertically arranged rotating shafts are fixedly connected to the inner side of each driven gear disk. The bottom of the rotating shaft is rotatably connected to the stacking box. Evenly distributed rotating rings are fixedly connected to the outer side of the rotating shaft, and a blocking rod is fixedly connected to the outer side of each rotating ring.

[0006] Furthermore, the outer side of the stacking box is provided with three sets of strip-shaped grooves, and the rotating shaft, rotating ring and blocking rod are set inside the strip-shaped grooves.

[0007] Furthermore, the rotating shaft is hollow, and the bottommost blocking rod is also hollow. This blocking rod passes through the rotating ring and is connected to the rotating shaft. An exhaust hole is provided at the bottom of the bottommost blocking rod.

[0008] Furthermore, the upper and lower blocking bars are staggered.

[0009] Furthermore, an inclined section is provided on the upper part of the inner wall of the stacking box, and a sensor counter is installed inside one side of the inclined section.

[0010] Furthermore, an air pump is fixedly connected to the side of the stacking box. The output end of the air pump is connected to a hose, and the other end of the hose is connected to an exhaust pipe. Multiple rotating shafts are rotatably connected to the bottom end of the exhaust pipe.

[0011] Furthermore, the exhaust pipe is Y-shaped and located inside the stacking box.

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

[0013] The cut blister trays are placed inside the stacking box via the inclined section, while the blocking bars serve to prevent the blister trays from falling. When the number of blister trays reaches a certain value, the motor is started to drive the drive gear plate to rotate, which in turn drives the driven gear plate on the side to rotate, thereby rotating the rotating shaft. The rotating shaft then drives the outer rotating ring and the blocking bars to rotate, ensuring that the specified number of blister trays descend sequentially. This setup ensures that the blister trays descend sequentially to a certain height without becoming disordered, ensuring that they are stably and neatly placed inside the collection box, achieving the purpose of centralized stacking without the need for manual alignment, thus improving work efficiency.

[0014] After the blister tray falls into the collection box, its air pump drives air through the hose, exhaust pipe and rotating shaft into the bottom barrier bar. When the bottom barrier bar is back above the stacking box, it blows and squeezes the blister tray to compact it and ensure the stacking quality of the blister trays. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0016] Figure 2 This is a schematic diagram of the installation structure of the driven gear disk of this utility model;

[0017] Figure 3 This is a schematic diagram of the exhaust pipe structure of this utility model.

[0018] Legend: 1. Stacking box; 2. Motor; 3. Driven gear disk; 4. Driven gear disk; 5. Rotating shaft; 6. Rotating ring; 7. Blocking bar; 8. Collection box; 9. Air pump equipment; 10. Hose; 11. Exhaust pipe; 12. Inclined part; 13. Strip groove; 14. Sensor counter. Detailed Implementation

[0019] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are some embodiments of this utility model, but not all embodiments.

[0020] Example

[0021] A stacking device for producing blister trays, such as Figure 1-3 As shown, the stacking device includes a stacking box 1 with a rectangular frame. The side of the stacking box 1 with the rectangular frame is open, and a collection box 8 for placing blister trays is provided inside the open part.

[0022] A motor 2 is installed inside the bottom side of the stacking box 1. The main shaft of the motor 2 is fixedly connected to a drive gear disk 3. Multiple driven gear disks 4 mesh on the outer side of the drive gear disk 3. A vertically arranged rotating shaft 5 is fixedly connected to the inner side of each driven gear disk 4. The bottom of the rotating shaft 5 is rotatably connected to the stacking box 1. Evenly distributed rotating rings 6 are fixedly connected to the outer side of the rotating shaft 5, and a blocking rod 7 is fixedly connected to the outer side of each rotating ring 6.

[0023] The outer side of the stacking box 1 has three sets of strip-shaped grooves 13, and the rotating shaft 5, rotating ring 6 and blocking rod 7 are arranged inside the strip-shaped grooves 13.

[0024] The upper and lower blocking bars 7 are staggered.

[0025] An inclined section 12 is provided on the upper part of the inner wall of the stacking box 1, and a sensor counter 14 is installed inside one side of the inclined section 12.

[0026] Blister trays are used to place items. In the actual production process, blister rolls are heated, and then a vacuum pump extracts the air, causing the sheet to adhere and form in a mold. After forming, the blister trays generally need to be cut. When cutting larger blister trays, usually only one can be cut at a time. The cut tray is then manually removed, and another blister tray is placed in the next. The removed blister trays need to be neatly stacked together. The stacked blister trays require alignment and compaction. Manually stacking blister trays is time-consuming and affects work efficiency. The cut blister trays are then passed through an inclined section... 12 is placed inside the stacking box 1, while the blocking rod 7 serves to block the blister trays. When the number of blister trays reaches a certain value, the motor 2 is started to drive the drive gear disk 3 to rotate. The drive gear disk 3 drives the driven gear disk 4 on the side to rotate, thereby causing the rotating shaft 5 to rotate. The rotating shaft 5 drives the outer rotating ring 6 and the blocking rod 7 to rotate. At this time, it is used to ensure that the specified number of blister trays descend in sequence. This setting can ensure that the blister trays descend in sequence to a certain height without making the blister trays messy. It ensures that they are stably and neatly placed inside the collection box 8, achieving the purpose of centralized stacking. There is no need for manual alignment, which improves work efficiency.

[0027] The inclined part 12 facilitates the entry of the blister tray into the stacking box 1, and the sensor counter 14 is used to count the placed blister trays. When the number reaches the set value, the signal is transmitted to the controller (not shown in the figure). The controller is used to control the motor 2 to rotate, which in turn causes the blocking rod 7 to rotate. When the uppermost blocking rod 7 rotates to the side, its blister tray falls, and the blocking rod 7 below it extends to prevent the blister tray from falling further, ensuring that the blister tray falls stably over a short distance and that it is stacked stably.

[0028] The three sets of blocking bars 7 can be used to stabilize and support the blister tray.

[0029] An air pump device 9 is fixedly connected to the side of the stacking box 1. The output end of the air pump device 9 is connected to a hose 10, and the other end of the hose 10 is connected to an exhaust pipe 11. Multiple sets of rotating shafts 5 are rotatably connected to the bottom end face of the exhaust pipe 11.

[0030] The rotating shaft 5 is hollow, and the bottommost blocking rod 7 is also hollow. The blocking rod 7 passes through the rotating ring 6 and is connected to the rotating shaft 5. An exhaust hole is provided at the bottom of the bottommost blocking rod 7.

[0031] The exhaust pipe 11 is Y-shaped and is located inside the stacking box 1.

[0032] When the blister tray falls into the collection frame 8, its air pump 9 drives air through the hose 10, exhaust pipe 11 and rotating shaft 5 into the bottommost blocking bar 7. The exhaust hole at the bottom of the bottommost blocking bar 7 blows air, which blows and squeezes the blister tray inside the collection frame 8 to achieve compaction and ensure the stacking quality of the blister trays.

[0033] The bottommost blocking rod 7 is connected to the rotating shaft 5 to ensure airflow and compaction of the blister tray, facilitating subsequent transfer.

[0034] Finally, it should be noted that the above-described embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model.

Claims

1. A stacking device for producing blister trays, characterized in that: The stacking equipment includes a stacking box (1) with a rectangular frame. The side of the stacking box (1) with the rectangular frame is open, and a collection box (8) for placing blister trays is provided inside the open part. A motor (2) is installed inside the bottom side of the stacking box (1). The main shaft of the motor (2) is fixedly connected to a drive gear disk (3). Multiple driven gear disks (4) mesh on the outer side of the drive gear disk (3). A vertically arranged rotating shaft (5) is fixedly connected to the inner side of each driven gear disk (4). The bottom of the rotating shaft (5) is rotatably connected to the stacking box (1). A uniformly distributed rotating ring (6) is fixedly connected to the outer side of the rotating shaft (5), and a blocking rod (7) is fixedly connected to the outer side of each rotating ring (6).

2. The stacking equipment for producing blister trays according to claim 1, characterized in that: The outer side of the stacking box (1) is provided with three sets of strip-shaped grooves (13), and the rotating shaft (5), rotating ring (6) and blocking rod (7) are arranged inside the strip-shaped grooves (13).

3. The stacking equipment for producing blister trays according to claim 1, characterized in that: The rotating shaft (5) is hollow, and the bottommost blocking rod (7) is hollow. The blocking rod (7) passes through the rotating ring (6) and is connected to the rotating shaft (5). The bottommost blocking rod (7) has an exhaust hole.

4. The stacking equipment for producing blister trays according to claim 1, characterized in that: The upper and lower blocking bars (7) are staggered.

5. The stacking equipment for producing blister trays according to claim 1, characterized in that: An inclined section (12) is provided on the upper part of the inner wall of the stacking box (1), and a sensor counter (14) is installed inside the inclined section (12) on one side.

6. The stacking equipment for producing blister trays according to claim 1, characterized in that: An air pump device (9) is fixedly connected to the side of the stacking box (1). The output end of the air pump device (9) is connected to a hose (10). The other end of the hose (10) is connected to an exhaust pipe (11). Multiple sets of rotating shafts (5) are rotatably connected to the bottom end face of the exhaust pipe (11).

7. A stacking device for producing blister trays according to claim 6, characterized in that: The exhaust pipe (11) is Y-shaped and is located inside the stack box (1).