Sealing detection equipment

The graded detection and automated rejection sealing inspection equipment solves the problem of insufficient accuracy in existing medicine bottle sealing inspection equipment. This equipment achieves efficient and accurate detection and automated rejection of medicine bottle seals, improving the efficiency and quality of drug production and reducing costs.

CN223996686UActive Publication Date: 2026-03-17ZHONGSHAN BAOYUAN BIO-ENG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-28
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

Existing methods for detecting the sealing of medicine bottles are not precise enough, are prone to errors, and are inefficient due to the lack of manual intervention, making it difficult to meet the requirements of high efficiency, high quality, and automation in modern pharmaceutical production.

Method used

The sealing inspection equipment adopts graded inspection and automated rejection. The sealing of the medicine bottle is inspected twice by first and second thermal detectors. Qualified products continue to be transported, while unqualified products are rejected to the collection box by a pusher device, so as to realize the automated rejection of unqualified products.

Benefits of technology

It improved testing efficiency and product quality, reduced manual intervention, lowered production costs, and enhanced the continuity and stability of production.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223996686U_ABST
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Abstract

The utility model discloses a sealing detection device, comprising: a frame table connected with a first transport line, a second transport line and a third transport line; a first thermal detector with a detection area covering the top surface of the first conveying line is arranged on the first detection assembly; a second thermal detector with a detection area covering the top surface of the second conveying line is arranged on the second detection assembly; the pushing assembly is arranged on one side of the first conveying line, and a pushing block is arranged on the pushing assembly; the collecting frame is arranged on the rack, and an inlet of the collecting frame faces the third conveying line; and the removing assembly is arranged on the third conveying line and comprises a pushing frame arranged on the third conveying line, and a driving piece capable of driving the sliding frame to slide towards the collecting frame is further arranged at the end of the third conveying line. The utility model aims to overcome the problems in the prior art, and provides the sealing detection equipment which is high in detection efficiency and can automatically reject defective products.
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Description

Technical Field

[0001] This utility model relates to the field of pharmaceutical and health care technology, and in particular to a sealing detection device. Background Technology

[0002] There are some problems and shortcomings in the existing medicine bottle sealing inspection process. On the one hand, traditional sealing inspection methods often judge the sealing of medicine bottles through only a single inspection step. This inspection method is not accurate and comprehensive enough, and is prone to inspection errors. This may result in some unqualified medicine bottles entering the subsequent production process, thereby affecting product quality and safety and posing potential risks to drug production.

[0003] On the other hand, the detection of substandard medicine bottles usually requires manual intervention and rejection. This method is not only inefficient, but also prone to fatigue and errors due to manual operation, which increases production costs and makes it difficult to ensure the continuity and stability of production. It cannot meet the requirements of high efficiency, high quality and automation in modern pharmaceutical production. Utility Model Content

[0004] The purpose of this invention is to overcome the problems of the prior art and provide a sealing inspection device with high detection efficiency and the ability to automatically reject defective products.

[0005] To achieve the above objectives, the present invention adopts the following solution:

[0006] A sealing inspection device, comprising:

[0007] A frame platform is connected to a first transport line and a second transport line arranged in parallel front and rear. The first transport line and the second transport line can transport medicine bottles. A third transport line corresponding to a certain section of the second transport line is provided at the other end of the frame platform.

[0008] A first detection component is mounted on the frame platform, and the first detection component is supported by a first transport line and a second transport line. The first detection component is equipped with a first thermal detector whose detection area covers the top surface of the first transport line.

[0009] The second detection component is mounted on the frame platform, and the first detection component is supported by the first transport line and the second transport line. The second detection component is equipped with a second thermal detector whose detection area covers the top surface of the second transport line.

[0010] A pusher assembly is disposed on the frame platform and is disposed on one side of the first transport line. The pusher assembly is provided with a pusher block that can push the medicine bottles on the first transport line to the second transport line.

[0011] A collection box is disposed on the rack, and the inlet of the collection box is oriented toward the third transport line;

[0012] The rejection component is disposed on the third transport line. The rejection component includes a pusher frame disposed on the third transport line. The end of the third transport line is also provided with a drive member that can drive the sliding frame to slide toward the collection frame.

[0013] The first detection component includes a first mounting frame for erecting a first transport line and a second transport line. A first moving component is provided on the first mounting frame. A first mounting base that can move with the first moving component is connected to the first moving component. The first thermal detector is disposed on the first mounting base and can move with the first mounting base between the first transport line and the second transport line.

[0014] The first movable component includes a first threaded rod rotatably connected to the top of a first mounting bracket. A first drive motor is provided on one side of the first mounting bracket. The output shaft of the first drive motor is connected to the first threaded rod and drives the first threaded rod to rotate. A first slider that can slide along the first threaded rod is provided on the first threaded rod. A first connecting seat is provided on the first slider. A second drive motor is provided on the first connecting seat. The output shaft of the second drive motor is connected to a second threaded rod. The other end of the second threaded rod is rotatably connected to the first connecting seat. A second slider is connected to the second threaded rod. The first mounting seat is connected to the end of the second slider.

[0015] The pusher has a vertically arranged baffle, and the end of the baffle is provided with a pushing surface that can push the body of the medicine bottle.

[0016] The collection frame is arc-shaped and has a channel. The inlet is located at the end of the channel so that the medicine bottle can enter the channel.

[0017] A first sliding assembly is provided between the first mounting bracket and the frame, allowing the first mounting bracket to slide relative to the frame. The first sliding assembly includes a second mounting seat disposed on the frame. A third drive motor is disposed at one end of the second mounting seat. A third threaded rod is disposed on the output shaft of the third drive motor. The other end of the third threaded rod is rotatably connected to the second mounting seat, and a third sliding block is connected to the third threaded rod. One end of the first mounting bracket is connected to the third sliding block.

[0018] The jacking assembly includes a base mounted on the frame, and the base is provided with a plurality of jacking columns that can slide and extend relative to it. The jacking block is disposed at the end of the plurality of jacking columns.

[0019] The push block is provided with a first arc-shaped groove.

[0020] The combined width of the first and second transport lines is equal to the width of the third transport line.

[0021] Compared with existing technologies, this invention has the following advantages: In use, the first transport line is connected to an external transport line, allowing medicine bottles sealed with aluminum foil to be transported from the first transport line. When a medicine bottle passes the first thermal detector, if the seal is qualified, it continues to be transported on the first transport line. If the seal is unqualified, it is pushed to the second transport line by a pushing device. The second thermal detector on the second transport line performs a second inspection. If the seal is qualified, it continues to be transported along the second transport line to the third transport line. If it is unqualified, it is rejected by a rejection device and placed in a collection box, preventing unqualified products from flowing into subsequent stages. This graded inspection and automated rejection design not only improves production efficiency and product quality but also reduces manual intervention, lowers production costs, and significantly enhances the continuity and stability of production. Attached Figure Description

[0022] Figure 1 This is a top view of the sealing inspection equipment of this utility model;

[0023] Figure 2 This is a schematic diagram of the sealing inspection equipment of this utility model;

[0024] Figure 3 This is a schematic diagram of the push-up assembly of the sealing detection equipment of this utility model.

[0025] Labels: 1. Frame, 11. First transport line, 12. Second transport line, 13. Third transport line, 2. First detection component, 21. First thermal detector, 22. First mounting bracket, 23. First moving component, 231. First threaded rod, 232. First drive motor, 233. First slider, 234. First connecting seat, 235. Second threaded rod, 236. Second slider, 237. First mounting seat, 24. Second detection component, 31. Second thermal detector, 4. Pushing component, 41. Pushing block, 41. First arc groove, 411. Base, 42. Pushing column, 43. Collection frame, 5. Inlet, 51. Channel, 52. Removal component, 6. Pushing frame, 61. Strip hole, 611. Baffle, 611. Pushing surface, 612. Driving component, 62. Positioning column, 63. First sliding component, 7. Second mounting seat, 71. Third drive motor, 72. Third threaded rod, 73. Third sliding block, 74. Detailed Implementation

[0026] The present invention will be further described in detail below with reference to embodiments:

[0027] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit its scope.

[0028] like Figures 1 to 3 As shown, a sealing inspection device includes: a frame platform 1, on which a first transport line 11 and a second transport line 12 arranged in parallel front and rear are connected, the first transport line 11 and the second transport line 12 being capable of transporting medicine bottles; a third transport line 13 corresponding to a segment of the second transport line 12 is provided at the other end of the frame platform 1; a first detection component 2, which is disposed on the frame platform 1, and the first detection component 2 supports the first transport line 11 and the second transport line 12; the first detection component 2 is provided with a first thermal detector 21 whose detection area covers the top surface of the first transport line 11; and a second detection component 3, which is disposed on the frame platform 1, and the first detection component 2 supports the first transport line 11 and the second transport line 12. The component 3 is equipped with a second thermal detector 31 whose detection area covers the top surface of the second transport line 12; a push assembly 4 is mounted on the frame 1 and is located on one side of the first transport line 11, and the push assembly 4 is equipped with a push block 41 capable of pushing medicine bottles on the first transport line 11 to the second transport line 12; a collection frame 5 is mounted on the frame, and the entrance 51 of the collection frame 5 faces the third transport line 13; a rejection assembly 6 is mounted on the third transport line 13, and the rejection assembly 6 includes a push frame 61 mounted on the third transport line 13, and the end of the third transport line 13 is also equipped with a drive member 62 capable of driving the sliding frame to slide toward the collection frame 5.

[0029] In use, this invention connects the first transport line 11 to an external transport line, allowing medicine bottles sealed with aluminum foil to be transported via the first transport line 11. When a medicine bottle passes the first thermal detector 21, if the seal is found to be qualified, it continues to be transported via the first transport line 11. If the seal is found to be unqualified, it is pushed onto the second transport line 12 by a pushing device. The second thermal detector 31 of the second detection component 3 on the second transport line 12 performs a second detection. If the seal is found to be qualified, it continues to be transported along the second transport line 12 to the third transport line 13. If it is unqualified, it is rejected by a rejection device and placed into the collection frame 5, preventing unqualified products from flowing into subsequent stages. This graded detection and automated rejection design not only improves production efficiency and product quality but also reduces manual intervention, lowers production costs, and significantly enhances the continuity and stability of production.

[0030] The first detection component 2 includes a first mounting frame 22 for supporting the first transport line 11 and the second transport line 12. A first moving component 23 is mounted on the first mounting frame 22, and a first mounting base 24 is connected to the first moving component 23, allowing it to move with the first moving component. A first thermal detector 21 is mounted on the first mounting base 24 and can move with the first mounting base 24 between the first transport line 11 and the second transport line 12. The first moving component 23 is used to adjust the position of the first thermal detector 21 so that the first thermal detector 21 corresponds to the position of the medicine bottle to be detected.

[0031] The first moving component 23 includes a first threaded rod 231 rotatably connected to the top of the first mounting bracket 22. A first drive motor 232 is provided on one side of the first mounting bracket 22. The output shaft of the first drive motor 232 is connected to the first threaded rod 231 and drives the first threaded rod 231 to rotate. A first slider 233 that can slide along the first threaded rod 231 is provided. A first connecting seat 234 is provided on the first slider 233. A second drive motor 235 is provided on the first connecting seat 234. The output shaft of the second drive motor 235 is connected to a second threaded rod 236. The other end of the second threaded rod 236 is rotatably connected to the first connecting seat 234. A second slider 237 is connected to the second threaded rod 236. The first mounting bracket 24 is connected to the end of the second slider 237. The first drive motor 232, the first slider 233 and the first threaded rod 231 work together to make the first connecting seat 234 move laterally relative to the first mounting bracket 22. The second drive motor, the second threaded rod 236 and the second slider 237 work together to make the first mounting seat 24 slide up and down, thereby changing the height distance between the first thermal detector 21 and the medicine bottle, thus adapting to medicine bottles of different heights and making it more widely applicable.

[0032] The pusher 61 has a vertically arranged baffle 611, and the end of the baffle 611 is provided with a pushing surface 612 that can push the body of the medicine bottle. The baffle 611 can prevent unsealed medicine bottles from continuing to move along the third transport line 13. The pushing surface 612 is used to move and push the medicine bottle, pushing the medicine bottle from the third transport line 13 into the collection frame 5.

[0033] The collection frame 5 is arc-shaped and has a channel 52. The inlet 51 is located at the end of the channel 52 so that medicine bottles can enter the channel 52 to facilitate the collection of unqualified sealed medicine bottles.

[0034] A first sliding assembly 7 is provided between the first mounting bracket 22 and the frame, allowing the first mounting bracket 22 to slide relative to the frame. The first sliding assembly 7 includes a second mounting base 71 mounted on the frame. A third drive motor 72 is located at one end of the second mounting base 71. The output shaft of the third drive motor 72 has a third threaded rod 73. The other end of the third threaded rod 73 is rotatably connected to the second mounting base, and a third sliding block 74 is connected to the third threaded rod 73. One end of the first mounting bracket 22 is connected to the third sliding block 74. The first sliding assembly 7 allows the first mounting bracket 22 to move back and forth relative to the frame, thereby adjusting the detection position. The second detection assembly 3 has the same structure as the first detection assembly 2.

[0035] The jacking assembly 4 includes a base mounted on the frame, and a plurality of jacking columns 43 that are slidably extendable relative to the base. A jacking block 41 is disposed at the end of each of the jacking columns 43. The jacking columns 43 are jacked by cylinders for easy operation.

[0036] The push block 41 is provided with a first arc-shaped groove 411, which facilitates the pushing of the bottle body.

[0037] The combined width of the first transport line 11 and the second transport line 12 is equal to the width of the third transport line 13. This arrangement facilitates the transport of medicine bottles, and even medicine bottles with substandard seals can be transported to the entrance 51 of the third transport line 13 for centralized processing, making it convenient to use.

[0038] The present invention has been described in detail above. However, modifications or improvements can be made to it, which will be obvious to those skilled in the art. Therefore, any modifications or improvements that do not depart from the spirit of the present invention are within the protection scope of the present invention.

Claims

1. A closure detection apparatus, characterized by, The utility model relates to a medicine bottle conveying device, including: A rack table (1) is connected with first conveying line (11) and second conveying line (12) that are arranged in parallel in front and back, first conveying line (11) and second conveying line (12) can convey medicine bottles, one end of rack table (1) is provided with third conveying line (13) corresponding to the second conveying line (12) certain section, First detection assembly (2) is arranged on rack table (1), and first detection assembly (2) is arranged first conveying line (11) and second conveying line (12), first detection assembly (2) is provided with first thermal detector (21) that covers the top surface of first conveying line (11) on the detection area, Second detection assembly (3) is arranged on rack table (1), and first detection assembly (2) is arranged first conveying line (11) and second conveying line (12), second detection assembly (3) is provided with second thermal detector (31) that covers the top surface of second conveying line (12) on the detection area, Push assembly (4) is arranged on rack table (1), and push assembly (4) is arranged on the side of first conveying line (11), push assembly (4) is provided with push block (41) on the first conveying line (11) medicine bottle can be pushed to the second conveying line (12) on, Collecting frame (5) is arranged on the rack, and the entrance (51) of collecting frame (5) is arranged towards third conveying line (13), The rejection assembly (6) is arranged on the third conveying line (13), and the rejection assembly (6) includes a push frame (61) arranged on the third conveying line (13), and the third conveying line (13) end is further provided with a driving member (62) capable of driving the sliding frame to slide towards the collecting frame (5).

2. The closure detection apparatus of claim 1, wherein First detection assembly (2) includes first mounting frame (22) that first conveying line (11) and second conveying line (12) are arranged, first mounting frame (22) is provided with first mobile assembly (23), first mobile assembly (23) is connected with first mounting seat (24) capable of following its movement, first thermal detector (21) is arranged on first mounting seat (24), and first thermal detector (21) can move along with first mounting seat (24) between first conveying line (11) and second conveying line (12).

3. The closure detection apparatus of claim 2, wherein The first moving assembly (23) comprises a first threaded rod (231) rotatably connected to the top end of a first mounting frame (22), one side of the first mounting frame (22) is provided with a first driving motor (232), the output shaft of the first driving motor (232) is connected with the first threaded rod (231) and drives the first threaded rod (231) to rotate, the first threaded rod (231) is provided with a first sliding block (233) capable of sliding thereon, the first sliding block (233) is provided with a first connecting seat (234), the first connecting seat (234) is provided with a second driving motor (235), the output shaft of the second driving motor (235) is connected with a second threaded rod (236), the other end of the second threaded rod (236) is rotatably connected to the first connecting seat (234), the second threaded rod (236) is connected with a second sliding block (237), and the first mounting seat is connected to the end of the second sliding block (237).

4. The cap detection apparatus of claim 1, wherein The push frame (61) has a vertically arranged baffle (611), and the end of the baffle (611) is further provided with a pushing surface (612) capable of pushing the bottle body of the medicine bottle.

5. The cap detection apparatus of claim 1, wherein The collecting frame (5) is arranged in an arc shape, and the collecting frame (5) is provided with a channel (52), and the inlet (51) is arranged at the end of the channel (52) so that the medicine bottle can enter into the channel (52).

6. The cap detection apparatus of claim 2, wherein The first mounting frame (22) and the rack are provided with a first sliding assembly (7) capable of sliding the first mounting frame (22) relative to the rack, the first sliding assembly (7) comprises a second mounting seat (71) arranged on the rack, the end of the second mounting seat (71) is provided with a third driving motor (72), the output shaft of the third driving motor (72) is provided with a third threaded rod (73), the other end of the third threaded rod (73) is rotatably connected to the second mounting seat, and the third threaded rod (73) is connected with a third sliding block (74), and one end of the first mounting frame (22) is connected to the third sliding block (74).

7. The cap detection apparatus of claim 1, wherein The pushing assembly (4) comprises a base (42) arranged on the rack, and a plurality of pushing columns (43) capable of sliding relative to the base (42) are arranged on the base (42), and the pushing block (41) is arranged at the end of the plurality of pushing columns (43).

8. The closure detection apparatus of claim 7, wherein The pushing block (41) is provided with a first arc-shaped groove (411).

9. The cap detection apparatus of claim 1, wherein The width sum of the first conveying line (11) and the second conveying line (12) is equal to the width of the third conveying line (13).