Mechanism for collecting invisible codes on wine bag assembly line

By setting trigger pins and infrared cameras on the wine bag assembly line, the mechanically triggered infrared cameras for invisible code acquisition, solving the problems of high cost and low success rate of invisible code acquisition, and achieving low cost and efficient invisible code acquisition and product traceability.

CN223133321UActive Publication Date: 2025-07-22YIBIN PLASTIC PACKAGING MATERIALS CO LTD +2
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Patent Information

Application Number
CN202421846029.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-07-22
Estimated Expiration
2034-08-01

AI Technical Summary

Technical Problem

In the prior art, the cost of collecting invisible codes is high, the effect is poor, which can easily affect production efficiency. Commodities that have not collected invisible codes are likely to flow into normal production lines, affecting warehousing, logistics and traceability effects.

Method used

The trigger pins and infrared cameras are set up on the wine bag assembly line. The trigger pins mechanically trigger infrared cameras for invisible code collection to ensure stable operation and photo shooting speed. Use waste cylinders and waste conveyor belts to process unsuccessfully collected products.

Benefits of technology

It realizes low-cost and efficient invisible code collection, avoids uncollected goods flowing into normal production lines, improves the acquisition success rate, and is conducive to the warehousing, logistics and traceability of goods.

✦ Generated by Eureka AI based on patent content.

Smart Images

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Abstract

The utility model relates to the technical field of assembly line invisible code acquisition, and aims to solve the problems that the acquisition cost is high, the effect is poor, the influence on the production efficiency is large, commodities without invisible codes are easy to flow into a normal production line, the commodities are inconvenient to store, logistics and trace, and the acquisition success rate is poor in the prior art. The utility model provides a mechanism for collecting invisible codes on a wine bag assembly line. The mechanism comprises a conveying line, a plurality of moving bottles are arranged on the conveying line, an invisible code collecting area is arranged at the conveying front end of the conveying line and provided with a trigger clamp and an infrared camera, the trigger clamp is located on the upper portion of the conveying line, and the upper ends of the bottles movably pass through the trigger clamp. The infrared camera is obliquely located on the upper portion of the conveying line and corresponds to bottle invisible codes. And a signal line is connected between the trigger clip and the infrared camera. The beneficial effects of the utility model are that the collection cost is low, the effect is good, the production efficiency is not affected, uncollected commodities are not easy to flow into a normal production line, the storage, logistics and traceability of the commodities are facilitated, and the collection success rate is high.
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Description

Technical Field

[0001] The utility model relates to the technical field of invisible code collection on a production line, and more specifically, to a mechanism for collecting invisible codes on a wine packaging production line. Background Art

[0002] With the development of the application of one object one code, invisible codes storing variable information are printed on wine bottles for anti-counterfeiting of wine products. Since the data stored in the invisible codes is one object one code, it can be used for identity recognition and applied to aspects such as warehousing, logistics, and traceability. Currently, the collection of invisible codes is mostly manual or with a single method, resulting in high collection costs, poor effects, easy impact on production efficiency, and it is easy for products without invisible codes collected to flow into the normal production line and the market, which is not conducive to warehousing, logistics, and traceability of products. Summary of the Utility Model

[0003] The utility model aims to provide a mechanism for collecting invisible codes on a wine packaging production line to solve the problems in the prior art, such as high collection costs, poor effects, easy impact on production efficiency, easy for products without invisible codes collected to flow into the normal production line and the market, which is not conducive to warehousing, logistics, traceability of products, and poor collection success rate.

[0004] The embodiments of the utility model are implemented as follows:

[0005] The embodiment of the utility model provides a mechanism for collecting invisible codes on a wine packaging production line, which includes a conveyor line;

[0006] There are several moving bottles on the above conveyor line. An invisible code collection area is provided at the front end of the conveyor line of the above conveyor line. A trigger clamp and an infrared camera are provided in the invisible code collection area. The trigger clamp is located above the conveyor line, and the upper end of the bottle can pass through the trigger clamp movably;

[0007] The above infrared camera is located above the conveyor line and is inclined. The infrared camera corresponds to the invisible code on the bottle;

[0008] A signal line is provided between the above trigger clamp and the above infrared camera. One end of the signal line is connected to the trigger clamp, and the other end of the signal line is connected to the infrared camera.

[0009] During use, the above bottles on the conveyor line move from the front end of the conveyor line of the above conveyor line to the rear end of the conveyor line. During this process, the upper part of the bottle slides over the trigger clamp in the invisible code collection area. After the trigger clamp is triggered, it transmits a photographing signal to the infrared camera through the signal line. After receiving the signal, the infrared camera quickly takes a picture to collect the invisible code on the bottle.

[0010] An apparatus for collecting invisible codes on a wine packaging production line disclosed in this embodiment uses the above-mentioned trigger clip to mechanically send commands to the above-mentioned infrared camera, ensuring stable operation and fast photographing speed, improving the success rate of invisible code collection. As a result, an apparatus for collecting invisible codes on a wine packaging production line has the beneficial effects of low collection cost, good effect, no impact on production efficiency, preventing products without invisible codes from flowing into the normal production line, facilitating warehousing, logistics, traceability of products, and high collection success rate.

[0011] Optionally, an L-shaped support member is fixedly connected to the side wall at the front end of the conveyor line. The L-shaped support member has a long side and a short side. The long side of the L-shaped support member is fixedly connected to the side wall at the front end of the conveyor line, and the short side of the L-shaped support member is located at the top of the front end of the conveyor line.

[0012] With this arrangement, the L-shaped support member can provide a support platform for the trigger clip and the infrared camera, facilitating the installation of the trigger clip and the infrared camera, and thus facilitating photographing and collecting the invisible code on the bottle.

[0013] Optionally, a groove is formed on the lower surface of the short side close to the long side, and the trigger clip is movably connected to the groove.

[0014] With this arrangement, the groove can provide an installation space for the trigger clip, facilitating the fixation of the trigger clip on the L-shaped support member.

[0015] Optionally, the trigger clip has a first clip and a second clip. The first clip and the second clip are symmetrically arranged and movably connected to both sides of the groove. Moreover, the first clip and the second clip are distributed in a V-shape. The end with a wider distance between the first clip and the second clip is located at the front end of the conveyor line. The upper section of the bottle moves along the moving direction of the conveyor line and sequentially passes through the end with a wider distance between the first clip and the second clip and the end with a narrower distance between the first clip and the second clip.

[0016] With this arrangement, the V-shaped distribution of the first clip and the second clip facilitates the movement of the bottle from the end with a wider distance between the first clip and the second clip to the end with a narrower distance between the first clip and the second clip. In this way, the bottle can push open the end with a narrower distance between the first clip and the second clip, thereby achieving the triggering effect and facilitating the control of the infrared camera to photograph and collect the invisible code.

[0017] Optionally: On one side of the above-mentioned first clip and the above-mentioned second clip close to the groove wall, triggers are hingedly connected, and the triggers elastically abut on one side of the above-mentioned first clip or the above-mentioned second clip close to the groove wall.

[0018] With such a setting, the above-mentioned bottle moves from the front end of the conveyor line to the direction of the trigger clip. The upper end of the above-mentioned bottle slides over the wider end of the distance between the above-mentioned first clip and the above-mentioned second clip. When the above-mentioned bottle continues to slide over the narrower end of the distance between the above-mentioned first clip and the above-mentioned second clip, the above-mentioned bottle will push open the above-mentioned first clip and the above-mentioned second clip, so that the above-mentioned first clip and the above-mentioned second clip will trigger the above-mentioned trigger. Once the above-mentioned trigger is triggered, it will transmit a command signal to the above-mentioned infrared camera through a signal line, and the above-mentioned infrared camera will quickly take multiple photos to facilitate the work of adopting the invisible code on the above-mentioned bottle.

[0019] Optionally: The above-mentioned trigger is electrically connected to the above-mentioned infrared camera through a signal line.

[0020] With such a setting, it is beneficial to control the above-mentioned infrared camera to take pictures through the above-mentioned trigger clip, and the operation is stable, improving the success rate of invisible code acquisition.

[0021] Optionally: A notch is provided at one end of the above-mentioned short side away from the above-mentioned long side, and an inclined plate is provided outside the above-mentioned notch. One end of the above-mentioned inclined plate is fixedly connected to one end of the above-mentioned short side away from the above-mentioned long side, and the above-mentioned infrared camera is located in the above-mentioned notch and fixedly connected to the above-mentioned inclined plate.

[0022] With such a setting, the above-mentioned notch provides an installation position for the above-mentioned infrared camera, and the above-mentioned inclined plate determines the inclination angle of the above-mentioned infrared camera, which is beneficial for the above-mentioned infrared camera to collect the invisible code on the above-mentioned bottle.

[0023] Optionally: A waste rejection cylinder is provided on one side of the rear end of the above-mentioned conveyor line. One end of the output shaft of the above-mentioned waste rejection cylinder is fixedly connected to the side wall of the conveyor line. The bottom surface of the above-mentioned waste rejection cylinder is parallel to the conveyor belt of the above-mentioned conveyor line, and a push plate is fixedly connected to the output shaft of the above-mentioned waste rejection cylinder.

[0024] With such a setting, the output shaft of the above-mentioned waste rejection cylinder can push the above-mentioned push plate, and the above-mentioned bottle that fails to collect the invisible code on the above-mentioned conveyor line is pushed out of the above-mentioned conveyor line through the above-mentioned push plate, effectively ensuring that all the above-mentioned bottles on the above-mentioned conveyor line have successfully collected the invisible code, which is convenient for warehousing, logistics and traceability.

[0025] Optionally: A waste rejection conveyor belt is provided on the other side of the rear end of the above-mentioned conveyor line. One end of the above-mentioned waste rejection conveyor belt close to the above-mentioned conveyor line is vertically connected to the other side of the above-mentioned conveyor line and is coaxial with the above-mentioned waste rejection cylinder.

[0026] With such a setting, the above-mentioned rejection conveyor belt can support the above-mentioned bottles that have failed to collect the invisible code and are pushed out by the above-mentioned rejection cylinder, and convey the above-mentioned bottles that have failed to collect the invisible code to the rejection area for recycling through the above-mentioned rejection conveyor belt.

[0027] Optionally: support frames are provided at the bottoms of both the above-mentioned conveyor line and the above-mentioned rejection conveyor belt, and guard bars are provided on both sides of the tops of the above-mentioned conveyor line and the above-mentioned rejection conveyor belt, and the above-mentioned guard bars are arranged along the axial direction of the above-mentioned conveyor line or the above-mentioned rejection conveyor belt.

[0028] With such a setting, the above-mentioned support frame can support the above-mentioned conveyor line and the above-mentioned rejection conveyor belt, so that the above-mentioned conveyor line and the above-mentioned rejection conveyor belt are far from the ground, and the above-mentioned guard bars can prevent the above-mentioned bottles from falling during the movement, effectively reducing the production risk.

[0029] Based on the above description, an invisible code collection mechanism disclosed by the present utility model on a wine packaging production line has the beneficial effects of low collection cost, good effect, no impact on production efficiency, preventing uncollected invisible code products from flowing into the normal production line, being conducive to warehousing, logistics, traceability of products, and high collection success rate. Description of the Drawings

[0030] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the following will briefly introduce the drawings required for use in the embodiments. It should be understood that the following drawings only show some embodiments of the present utility model, and therefore should not be regarded as limiting the scope. For those of ordinary skill in the art, other related drawings can be obtained based on these drawings without creative efforts.

[0031] Figure 1 It is a three-dimensional structure diagram of a first perspective of an invisible code collection mechanism on a wine packaging production line in an embodiment of the present utility model;

[0032] Figure 2 In an embodiment of the present utility model Figure 1 It is a schematic structural diagram of a partial enlarged view A;

[0033] Figure 3 It is a three-dimensional structure diagram of a second perspective of an invisible code collection mechanism on a wine packaging production line in an embodiment of the present utility model;

[0034] Figure 4 In an embodiment of the present utility model Figure 3 It is a schematic structural diagram of a partial enlarged view B.

[0035] Icon: 1 - conveyor line, 2 - bottle, 3 - invisible code collection area, 4 - trigger clip, 5 - infrared camera, 6 - L-shaped support, 7 - long side, 8 - short side, 9 - groove, 10 - first clip, 11 - second clip, 12 - trigger, 13 - notch, 14 - inclined plate, 15 - rejection cylinder, 16 - push plate, 17 - rejection conveyor belt, 18 - support frame, 19 - protective rod. Detailed implementation

[0036] To make the objectives, technical solutions and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are some, but not all, of the embodiments of the present utility model. The components of the embodiments of the present utility model described and illustrated herein generally can be arranged and designed in a variety of different configurations.

[0037] Therefore, the following detailed description of the embodiments of the present utility model provided in the drawings is not intended to limit the scope of the present utility model claimed, but merely represents selected embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts fall within the scope of protection of the present utility model.

[0038] Embodiment

[0039] See Figure 1 , Figure 2 , Figure 3 and Figure 4 , this embodiment provides a mechanism for collecting invisible codes on a wine packaging production line, including a conveyor line 1;

[0040] There are several moving bottles 2 on the conveyor line 1. An invisible code collection area 3 is provided at the front end of the conveyor line 1. A trigger clip 4 and an infrared camera 5 are provided in the invisible code collection area 3. The trigger clip 4 is located above the conveyor line 1, and the upper end of the bottle 2 can move through the trigger clip 4;

[0041] The infrared camera 5 is located above the conveyor line 1 and is inclined. The infrared camera 5 corresponds to the invisible code on the bottle 2;

[0042] A signal line (not shown in the figure) is provided between the trigger clip 4 and the infrared camera 5. One end of the signal line is connected to the trigger clip 4, and the other end of the signal line is connected to the infrared camera 5.

[0043] During use, the bottles 2 on the conveyor line 1 move from the front end of the conveyor line 1 to the rear end of the conveyor line 1. During this process, the upper part of the bottle 2 slides over the trigger clip 4 in the invisible code acquisition area 3. After the trigger clip 4 is triggered, it transmits a photographing signal to the infrared camera 5 through a signal line. After receiving the signal, the infrared camera 5 quickly takes a photo to acquire the invisible code on the bottle 2.

[0044] Since the mechanism for acquiring invisible codes on the wine packaging production line disclosed in this implementation scheme uses the mechanical trigger of the trigger clip 4 to transmit commands to the infrared camera 5, it ensures the stability of operation and the speed of photographing, improves the success rate of invisible code acquisition, and further enables the mechanism for acquiring invisible codes on the wine packaging production line to have the beneficial effects of low acquisition cost, good effect, no impact on production efficiency, avoiding the inflow of products without acquired invisible codes into the normal production line, being conducive to the warehousing, logistics, traceability of products, and high acquisition success rate.

[0045] See Figure 1 、 Figure 2 、 Figure 3 and Figure 4 As shown in, a L-shaped support member 6 is fixedly connected to the side wall of the front end of the conveyor line 1. The L-shaped support member 6 has a long side 7 and a short side 8. The long side 7 of the L-shaped support member 6 is fixedly connected to the side wall of the front end of the conveyor line 1, and the short side 8 of the L-shaped support member 6 is located at the top of the front end of the conveyor line 1. The L-shaped support member 6 can provide a support platform for the trigger clip 4 and the infrared camera 5, which is beneficial to the installation of the trigger clip 4 and the infrared camera 5, and further facilitates the photographing and acquisition of the invisible code on the bottle 2.

[0046] A groove 9 is formed on the lower surface of the short side 8 close to the long side 7. The trigger clip 4 is movably connected in the groove 9. The groove 9 can provide an installation space for the trigger clip 4, which is beneficial to the fixation of the trigger clip 4 on the L-shaped support member 6.

[0047] See Figure 1 、 Figure 2 、 Figure 3 and Figure 4, the trigger clip 4 has a first clip 10 and a second clip 11. The first clip 10 and the second clip 11 are symmetric to each other and are movably connected to both sides of the groove 9. Moreover, the first clip 10 and the second clip 11 are distributed in a V-shape. The wider end of the spacing between the first clip 10 and the second clip 11 is located at the front end of the conveying line 1 of the conveyor. The upper section of the bottle 2 moves along the moving direction of the conveying line 1 and sequentially passes through the wider end of the spacing between the first clip 10 and the second clip 11 and the narrower end of the spacing between the first clip 10 and the second clip 11. The V-shaped distribution of the first clip 10 and the second clip 11 is conducive to the bottle 2 moving from the wider end of the spacing between the first clip 10 and the second clip 11 to the narrower end of the spacing between the first clip 10 and the second clip 11. In this way, the bottle 2 can push open the narrower end of the spacing between the first clip 10 and the second clip 11, thereby achieving the triggering effect and facilitating the control of the infrared camera 5 to take pictures and collect the invisible code.

[0048] On the side of the first clip 10 and the second clip 11 close to the groove wall of the groove 9, a trigger 12 is hingedly connected. The trigger 12 elastically abuts against the side of the first clip 10 or the second clip 11 close to the groove wall of the groove 9. The bottle 2 moves from the front end of the conveying line 1 towards the trigger clip 4. The upper end of the bottle 2 slides over the wider end of the spacing between the first clip 10 and the second clip 11. When the bottle 2 continues to slide over the narrower end of the spacing between the first clip 10 and the second clip 11, the bottle 2 will push open the first clip 10 and the second clip 11, causing the first clip 10 and the second clip 11 to trigger the aforementioned trigger 12. Once the trigger 12 is triggered, it will transmit a command signal to the infrared camera 5 through a signal line, and the infrared camera 5 will quickly take multiple pictures to facilitate the work of collecting the invisible code on the bottle 2.

[0049] The trigger 12 is electrically connected to the infrared camera 5 through a signal line. This is conducive to controlling the infrared camera 5 to take pictures through the trigger clip 4, with stable operation and improved success rate of invisible code collection.

[0050] See Figure 1 、 Figure 2 、 Figure 3 and Figure 4 , a notch 13 is provided at the end of the short side 8 far from the long side 7. An inclined plate 14 is provided outside the notch 13. One end of the inclined plate 14 is fixedly connected to the end of the short side 8 far from the long side 7. The infrared camera 5 is located in the notch 13 and is fixedly connected to the inclined plate 14. The notch 13 provides an installation position for the infrared camera 5, and the inclined plate 14 determines the inclination angle of the infrared camera 5, which is conducive to the infrared camera 5 collecting the invisible code on the bottle 2.

[0051] On one side of the rear end of the conveyor line 1, there is a waste rejection cylinder 15. One end of the outer shell of the output shaft of the waste rejection cylinder 15 is fixedly connected to the side wall of the conveyor line 1. The bottom surface of the waste rejection cylinder 15 is parallel to the conveyor belt of the conveyor line 1. A push plate 16 is fixedly connected to the output shaft of the waste rejection cylinder 15. The output shaft of the waste rejection cylinder 15 can push the push plate 16, and the bottles 2 that fail to collect the invisible code on the conveyor line 1 are pushed out of the conveyor line 1 through the push plate 16, effectively ensuring that all the bottles 2 on the conveyor line 1 have successfully collected the invisible code, which is convenient for warehousing, logistics and traceability.

[0052] On the other side of the rear end of the conveyor line 1, there is a waste rejection conveyor belt 17. One end of the waste rejection conveyor belt 17 close to the conveyor line 1 is vertically connected to the other side of the conveyor line 1 and is coaxial with the waste rejection cylinder 15. The waste rejection conveyor belt 17 can support the bottles 2 that fail to collect the invisible code pushed out by the waste rejection cylinder 15, and the bottles 2 that fail to collect the invisible code are conveyed to the waste rejection area for recycling through the waste rejection conveyor belt 17.

[0053] Support frames 18 are arranged at the bottoms of both the conveyor line 1 and the waste rejection conveyor belt 17, and protective bars 19 are arranged on both sides of the tops of the conveyor line 1 and the waste rejection conveyor belt 17. The protective bars 19 are arranged along the axial direction of the conveyor line 1 or the waste rejection conveyor belt 17. The support frames 18 can support the conveyor line 1 and the waste rejection conveyor belt 17, making the conveyor line 1 and the waste rejection conveyor belt 17 away from the ground. The protective bars 19 can prevent the bottles 2 from falling during the movement process, effectively reducing the production risk.

[0054] See Figure 1 、 Figure 2 、 Figure 3 and Figure 4 , in this embodiment, the device can be installed on the existing wine packaging conveyor line. Select a blank conveyor belt area. The length of the conveyor line 1 area ≥ 400 mm. At the front end of the selected conveyor line 1, install this device. Among them, the trigger clip 4 touches the trigger 12 to sense the wine bottle cap and judge whether there is a wine bottle entering the invisible code collection area 3; the infrared camera 5 immediately receives the signal and can collect the invisible code on the bottle 2.

[0055] See Figure 1 、 Figure 2 、 Figure 3 and Figure 4 , in this embodiment, the device can be directly transformed on the original production line, saving costs and space. During the process of collecting the invisible code, the production line does not need to stop, which has no impact on the original production efficiency. The trigger clip 4 is used to control the start of the infrared camera 5, so that the infrared camera 5 can quickly take multiple shots and collections after starting. Multiple collections increase the probability of recognition. By adding the waste rejection cylinder 15 and the waste rejection conveyor belt 17 on the original production line, the bottles 2 that fail to collect can be prevented from flowing into the normal production line and affecting the anti-counterfeiting traceability effect in the market.

[0056] See Figure 1 、 Figure 2 、 Figure 3 and Figure 4 , the specific use steps of a mechanism for collecting invisible codes on a wine package production line in this embodiment are as follows:

[0057] First, the bottle 2 on the conveyor line 1 moves from the front end of the conveyor of the conveyor line 1 to the rear end of the conveyor of the conveyor line 1. During this process, the upper part of the bottle 2 slides past the wider end of the distance between the first clip 10 and the second clip 11 of the trigger clip 4 in the invisible code collection area 3, and then slides past the narrower end of the distance between the first clip 10 and the second clip 11 again. When the bottle 2 continues to slide past the narrower end of the distance between the first clip 10 and the second clip 11, the bottle 2 will push open the first clip 10 and the second clip 11, so that the first clip 10 and the second clip 11 will trigger the aforementioned trigger 12. Once the trigger 12 is triggered, it will transmit a command signal to the infrared camera 5 through a signal line. The infrared camera 5 needs to take multiple pictures of one bottle 2 to facilitate the adoption of the invisible code on the bottle 2. Analyze multiple pictures. If the invisible code is recognized in any one picture, it can be judged that the invisible code collection of the bottle 2 is successful. If multiple pictures are all analyzed and failed, it is judged that the invisible code collection fails;

[0058] Secondly, the bottle 2 moves to the rejection cylinder 15 under the transmission of the conveyor line 1. The bottle 2 with successful invisible code collection will continue to move on the conveyor line 1, and the bottle 2 with failed invisible code collection will be pushed out of the conveyor line 1 by the push plate 16 at the front end of the rejection cylinder 15, avoiding the bottle 2 with failed invisible code collection from flowing into the normal production line and affecting the anti-counterfeiting and traceability effect in the market;

[0059] Finally, the bottle 2 with failed invisible code collection pushed out by the push plate 16 at the front end of the rejection cylinder 15 moves onto the rejection conveyor belt 17, and the bottle 2 with failed invisible code collection is transported to the rejection area for recycling through the rejection conveyor belt 17.

[0060] The above are only the preferred embodiments of the present invention and are not used to limit the present invention. For those skilled in the art, the present invention can have various changes and modifications. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. An apparatus for collecting invisible codes on a wine packaging production line, characterized in that: It includes a conveyor line (1); There are several moving bottles (2) on the conveyor line (1). At the front end of the conveyor line (1), there is an invisible code collection area (3). The invisible code collection area (3) is provided with a trigger clip (4) and an infrared camera (5). The trigger clip (4) is located above the conveyor line (1), and the upper end of the bottle (2) can pass through the trigger clip (4) movably; The infrared camera (5) is located above the conveyor line (1) and is inclined. The infrared camera (5) corresponds to the invisible code on the bottle (2); A signal line is provided between the trigger clip (4) and the infrared camera (5). One end of the signal line is connected to the trigger clip (4), and the other end of the signal line is connected to the infrared camera (5).

2. The apparatus for collecting invisible codes on a wine packaging production line according to claim 1, characterized in that: An L-shaped support member (6) is fixedly connected to the side wall of the front end of the conveyor line (1). The L-shaped support member (6) has a long side (7) and a short side (8). The long side (7) of the L-shaped support member (6) is fixedly connected to the side wall of the front end of the conveyor line (1), and the short side (8) of the L-shaped support member (6) is located at the top of the front end of the conveyor line (1).

3. The apparatus for collecting invisible codes on a wine packaging production line according to claim 2, characterized in that: A groove (9) is formed on the lower surface of the short side (8) close to the long side (7), and the trigger clip (4) is movably connected in the groove (9).

4. The apparatus for collecting invisible codes on a wine packaging production line according to claim 3, characterized in that: The trigger clip (4) has a first clip (10) and a second clip (11). The first clip (10) and the second clip (11) are symmetric to each other and are movably connected to both sides of the groove (9). Moreover, the first clip (10) and the second clip (11) are distributed in a V-shaped pattern. The end with a wider distance between the first clip (10) and the second clip (11) is located at the front end of the conveyor line (1). The upper section of the bottle (2) moves along the moving direction of the conveyor line (1) and sequentially passes through the end with a wider distance between the first clip (10) and the second clip (11) and the end with a narrower distance between the first clip (10) and the second clip (11).

5. The apparatus for collecting invisible codes on a wine packaging production line according to claim 4, characterized in that: On the side of the first clip (10) and the second clip (11) close to the groove wall of the groove (9), a trigger (12) is hingedly connected. The trigger (12) elastically abuts against the side of the first clip (10) or the second clip (11) close to the groove wall of the groove (9).

6. The apparatus for collecting invisible codes on a wine packaging production line according to claim 5, characterized in that: The trigger (12) is electrically connected to the infrared camera (5) through a signal line.

7. An apparatus for collecting invisible codes on a wine packaging production line according to claim 2, wherein: A notch (13) is formed at one end of the short side (8) away from the long side (7). An inclined plate (14) is provided outside the notch (13). One end of the inclined plate (14) is fixedly connected to the end of the short side (8) away from the long side (7). The infrared camera (5) is located within the notch (13) and is fixedly connected to the inclined plate (14).

8. An apparatus for collecting invisible codes on a wine packaging production line according to claim 1, wherein: A reject cylinder (15) is provided on one side of the rear end of the conveyor line (1). One end of the housing of the output shaft of the reject cylinder (15) is fixedly connected to the side wall of the conveyor line (1). The bottom surface of the reject cylinder (15) is parallel to the conveyor belt of the conveyor line (1). A push plate (16) is fixedly connected to the output shaft of the reject cylinder (15).

9. An apparatus for collecting invisible codes on a wine packaging production line according to claim 8, wherein: A reject conveyor belt (17) is provided on the other side of the rear end of the conveyor line (1). One end of the reject conveyor belt (17) close to the conveyor line (1) is perpendicularly connected to the other side of the conveyor line (1) and is coaxial with the reject cylinder (15).

10. An apparatus for collecting invisible codes on a wine packaging production line according to claim 9, wherein: Support frames (18) are provided at the bottoms of both the conveyor line (1) and the reject conveyor belt (17). Guard bars (19) are provided on both sides of the tops of the conveyor line (1) and the reject conveyor belt (17). The guard bars (19) are arranged along the axial direction of the conveyor line (1) or the reject conveyor belt (17).