A code printing and scanning device and a code printing and scanning detection system

CN224794851UActive Publication Date: 2026-09-25HONGYUN HONGHE TOBACCO (GRP) CO LTD
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Patent Information

Application Number
CN202521426803.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-08
Publication Date
2026-09-25
Estimated Expiration
2035-07-08

AI Technical Summary

Technical Problem

传统的CV条包生产设备未安装在线打扫码装置,仅能采用人工手动打码扫码操作,严重影响生产效率

Benefits of technology

[0017]一方面,本实用新型提供了一种打码扫码装置,通过在安装基座上设置旋转柱,并设置包括第一端和第二端的旋转臂,将第一端与旋转柱连接,在第二端设置打码组件和扫码组件,并将旋转臂的第二端设置为能够以旋转柱的轴线为转动轴绕旋转柱转动,这样能够带动打码组件和扫码组件在工作位置和非工作位置进行切换,当打码组件处于工作位置能够对条包卷烟进行打码操作,当扫码组件处于工作位置能够对经过打码组件打码操作的条包卷烟进行扫码操作。这样可以使得,当需要对条包卷烟进行打码操作和扫码操作时,工作人员可以移动旋转臂(例如工作人员手动拉动或者推动),使旋转臂带动打码组件和扫码组件移动至工作位置,这样便能够实现对条包卷烟的打码、扫码操作,操作简单,使用方便;而当不需要对条包卷烟进行打码操作和扫码操作时,工作人员可以移动旋转臂,使旋转臂带动打码组件和扫码组件移动至非工作位置,这样便能够使该打码扫码装置的旋转臂以及安装在旋转臂上的打码组件和扫码组件偏离,减少了安装空间的占用,避免自身的安装位置影响其他部件(如输送装置)的维护维修等操作。该打码扫码装置能够在不影响对条包卷烟进行打码操作和扫码操作的前提下,为工作人员提供了方便,提高了上述打码扫码装置的实用性。

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Abstract

The utility model discloses a kind of coding scanning device and coding scanning detection system, it is related to tobacco product packaging technical field.The coding scanning device includes installation base;Rotary column, is located in installation base;Rotary arm, including first end and second end;First end is connected with rotary column;Coding assembly, is located in second end;Scanning component, is located in second end, is located above coding assembly;In first direction, coding assembly and scanning component are opposite and are arranged;Second end can be with rotary column axis as rotating shaft rotates around rotary column, can drive coding assembly and scanning component switch in working position and non-working position;Coding assembly is in working position can carry out coding operation to strip package cigarette;Scanning component is in working position can carry out scanning operation to strip package cigarette after coding operation by coding assembly.The coding scanning device is used to realize the on-line coding scanning operation of strip package cigarette, reduce the occupation of installation space simultaneously, avoid the influence of own installation position to other device.
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Description

Technical Field

[0001] This utility model relates to the field of tobacco product packaging technology, and in particular to a coding and scanning device and a coding and scanning detection system. Background Technology

[0002] Currently, all heated tobacco products manufactured by domestic cigarette companies are for export. Based on the needs of relevant parties, export cigarette identification codes have been added to the carton packaging, requiring online scanning of these codes during production. Traditional CV carton production equipment lacks online scanning devices, relying solely on manual coding and scanning, severely impacting production efficiency.

[0003] While there are existing automatic coding or scanning devices, these devices need to be fixedly installed on the conveyor of the package, which takes up a lot of installation space. Furthermore, the installation location of these coding and scanning devices fixed on the conveyor affects the maintenance and repair of the conveyor, which is very inconvenient. Utility Model Content

[0004] The purpose of this utility model is to provide a coding and scanning device and a coding and scanning detection system for realizing online coding and scanning operations for carton cigarettes, while reducing the space occupied by the installation and avoiding the impact of its own installation position on other devices.

[0005] To achieve this objective, the present invention adopts the following technical solution:

[0006] On one hand, this utility model provides a coding and scanning device and a coding and scanning detection system. The coding and scanning device includes a mounting base, a rotating column, a rotating arm, a coding component, and a scanning component. The mounting base provides an installation position; the rotating column extends along a first direction and is disposed on the mounting base; the first direction is vertical; the rotating arm extends along a second direction and includes a first end and a second end; the first end is connected to the rotating column; the second direction forms an angle with the first direction; the coding component is disposed at the second end; the scanning component is disposed at the second end and is located above the coding component; in the first direction, the coding component and the scanning component are directly opposite each other; the second end can rotate around the rotating column about its axis, enabling the coding component and the scanning component to switch between working and non-working positions; the coding component, in the working position, can perform coding operations on the cigarette packs; the scanning component, in the working position, can perform scanning operations on the cigarette packs that have been coded by the coding component.

[0007] In some embodiments, the coding and scanning device further includes a first positioning component extending along the first direction; the first positioning component is disposed on the mounting base; a first positioning element is disposed at the first end; the first positioning component is capable of locking or releasing the first positioning element to lock the second end in the working position or release the second end from the working position.

[0008] In some embodiments, the first positioning component includes a first support member disposed on the mounting base, a first locking portion disposed on the first support member, and a first locking member; the first locking portion includes a first locking sub-part and a second locking sub-part disposed at intervals along the first direction; the first positioning member has a first locking through hole along the first direction; the first positioning member can be located between the first locking sub-part and the second locking sub-part, and the first locking member can simultaneously pass through the first locking sub-part, the first locking through hole, and the second locking sub-part along the first direction to lock the position of the first positioning member.

[0009] In some embodiments, the first locking member includes an operating portion and a threaded portion; the operating portion is connected to the end of the threaded portion; both the first locking sub-part and the second locking sub-part have threaded holes along the first direction; the threaded portion can pass through the two threaded holes along the first direction.

[0010] In some embodiments, the coding and scanning device further includes a second positioning component extending along the first direction; the second positioning component is disposed on the mounting base; the rotating arm is provided with a second positioning member extending along the second direction; the second positioning component is capable of locking or releasing the second positioning member to lock the second end in the non-working position or release the second end from the non-working position.

[0011] In some embodiments, the second positioning component includes a second support member disposed on the mounting base, a second locking portion disposed on the second support member, and a second locking member; the second positioning member has a second locking through hole along the first direction; in the first direction, the second locking through hole can be disposed opposite to the second locking portion, and the second locking member can pass through the second locking portion and the second locking through hole simultaneously along the first direction to lock the second positioning member.

[0012] In some embodiments, the second end is provided with a mounting member extending along the first direction; the coding component and the scanning component are disposed on the mounting member, and in the first direction, the coding component and the scanning component are located below the rotating arm.

[0013] In some embodiments, the mounting member is slidably connected to the second end; the mounting member is movable along the first direction to change the position of the coding component and the scanning component in the first direction.

[0014] On the other hand, this utility model provides a coding and scanning detection system, which includes a conveying device and a coding and scanning device as described above; the conveying device includes a lifting channel for conveying the pack of cigarettes along the first direction; the lifting channel is provided with a front baffle, and the coding and scanning device is positioned directly opposite the front baffle; a detection notch is provided on the front baffle, through which at least a portion of the pack of cigarettes can be exposed; the coding component and the scanning component are positioned directly opposite the detection notch in a third direction; the third direction, the second direction, and the first direction are arranged at angles to each other.

[0015] In some embodiments, the coding and scanning detection system further includes a control device, which is coupled to the conveying device and the coding and scanning device respectively; the control device can control the conveying device to convey the carton of cigarettes, and control the coding and scanning device to perform coding and scanning operations on the carton of cigarettes.

[0016] The beneficial effects of this utility model are:

[0017] On the one hand, this utility model provides a coding and scanning device. By setting a rotating column on a mounting base and setting a rotating arm including a first end and a second end, the first end is connected to the rotating column, and a coding component and a scanning component are set at the second end. The second end of the rotating arm is configured to rotate around the rotating column with the axis of the rotating column as the rotation axis. This can drive the coding component and the scanning component to switch between working and non-working positions. When the coding component is in the working position, it can perform coding operation on the cigarette pack. When the scanning component is in the working position, it can perform scanning operation on the cigarette pack that has been coded by the coding component. This design allows for convenient and simple operation. When coding and scanning of cigarette cartons are required, the operator can move the rotating arm (e.g., manually pull or push) to move the coding and scanning components to the working position. When coding and scanning are not needed, the operator can move the rotating arm to a non-working position, thus offsetting the rotating arm and the components mounted on it. This reduces installation space requirements and prevents the device from interfering with the maintenance of other components (such as the conveyor system). This coding and scanning device provides convenience for operators without affecting the coding and scanning operations of cigarette cartons, enhancing its practicality.

[0018] On the other hand, this utility model provides a coding and scanning detection system, which includes all the technical features of the aforementioned coding and scanning device. Its beneficial effects are the same as those of the aforementioned coding and scanning device, and will not be repeated here. Furthermore, this coding and scanning detection system allows the coding and scanning components of the coding and scanning device to face the exposed portion of the cigarette pack at the detection notch. This allows the coding and scanning components to automatically code and scan the cigarette pack sequentially. The conveyor automatically transports the cigarette pack along the edge, and the coding and scanning device automatically codes and scans the cigarette pack. The entire process requires no manual intervention, significantly saving manpower and improving the efficiency of coding and scanning cigarette packs. Attached Figure Description

[0019] Figure 1 This is a structural diagram of a coding and scanning device provided in a specific embodiment of this utility model;

[0020] Figure 2 This is a structural diagram of a coding and scanning detection system provided in a specific embodiment of this utility model.

[0021] In the picture:

[0022] 1. Mounting base; 2. Rotating column; 3. Rotating arm; 31. First end; 311. First positioning component; 32. Second end; 33. Second positioning component; 4. Coding assembly; 5. Scanning assembly; 6. First positioning assembly; 61. First support component; 62. First locking part; 621. First locking sub-part; 622. Second locking sub-part; 63. First locking component; 7. Second positioning assembly; 71. Second support component; 72. Second locking part; 73. Second locking component; 8. Mounting component; 9. Handle; 10. Conveying device; 101. Lifting channel; 102. Front baffle; 1021. Detection notch; 20. Coding and scanning device; 30. Carton of cigarettes;

[0023] X1, first direction; X2, second direction; X3, third direction. Detailed Implementation

[0024] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present invention and not intended to limit it. Furthermore, it should be noted that, for ease of description, the accompanying drawings show only the parts relevant to the present invention, not the entire structure.

[0025] In the description of this utility model, unless otherwise explicitly specified and limited, the terms "connected," "linked," and "fixed" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0026] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.

[0027] In the description of this embodiment, the terms "upper," "lower," "left," and "right," etc., refer to the orientation or positional relationship shown in the accompanying drawings. They are used only for ease of description and simplification of operation, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, the terms "first" and "second" are only used for distinction in description and have no special meaning.

[0028] On the one hand, such as Figure 1 As shown, this embodiment provides a coding and scanning device 20, which is used to perform coding and scanning operations on carton cigarettes 30. The coding and scanning device 20 includes: a mounting base 1, a rotating column 2, a rotating arm 3, a coding component 4, and a scanning component 5.

[0029] The aforementioned mounting base 1 is used to provide an installation location. The mounting base 1 may be, for example, a plate-like structure or a block-like structure. It is easy to understand that the mounting base 1 can be mounted to other fixed objects (such as the ground, or a support platform, support frame, etc.) by means of connectors (such as bolts).

[0030] like Figure 1 As shown, the rotating column 2 extends along the first direction X1 and is disposed on the mounting base 1. The connection between the rotating column 2 and the mounting base 1 is, for example, welding or bolting. The first direction X1 is, for example, a vertical direction.

[0031] like Figure 1As shown, the rotating arm 3 extends along the second direction X2. The rotating arm 3 can be, for example, a rod-shaped structure (the cross-sectional shape can be circular, elliptical, or rectangular, etc.), or a plate-shaped structure. The rotating arm includes a first end 31 and a second end 32. The first end 31 of the rotating arm 3 is connected to the rotating column 2, for example, by welding or by fitting the first end 31 onto the rotating arm 3. The second direction X2 forms an angle with the first direction X1, for example, 90°. The second end 32 of the rotating arm 3 can rotate about the axis of the rotating column 2. It is easy to understand that the second end 32 of the rotating arm 3 can rotate around the rotating column 2. This can be achieved by the rotating column 2 being a cylindrical structure, with the first end 31 of the rotating arm 3 fitted onto this cylindrical structure, allowing the second end 32 of the rotating arm 3 to rotate around the rotating column 2. Alternatively, the rotating column 2 can include an inner ring structure and an outer ring structure (similar to a bearing structure), with rolling elements or lubricating elements provided between the inner and outer ring structures, allowing relative rotation between them. The inner ring structure is fixedly connected to the mounting base 1, and the first end 31 of the rotating arm 3 is fixedly connected to the outer ring structure, also enabling the second end 32 of the rotating arm 3 to rotate around the rotating column 2. In practical applications, those skilled in the art can flexibly configure the structure according to actual usage requirements; further limitations are not specified here.

[0032] like Figure 1 As shown, the coding component 4 is located at the second end 32 of the rotating arm 3. This coding component 4 can be, for example, a general-purpose laser coding machine or a dynamic focal length laser machine. The scanning component 5 is also located at the second end 32 of the rotating arm 3, and above the coding component 4. This allows for immediate scanning after coding the cigarette pack 30, improving coding and scanning efficiency. The scanning component 5 can be, for example, an embedded scanning module or a fixed scanner. In the first direction X1, the coding component 4 and the scanning component 5 are positioned opposite each other, ensuring the accuracy of the scanning operation.

[0033] The second end 32 of the aforementioned rotating arm 3 rotates about the axis of the aforementioned rotating column 2, thereby driving the coding component 4 and the scanning component 5 mounted on the second end 32 of the rotating arm 3 to switch between a working position (e.g., facing the conveying device 10, with the rotating arm 3 perpendicular to the conveying direction of the conveying device 10) and a non-working position (e.g., the rotating arm 3 parallel to the conveying direction of the conveying device 10). When the coding component 4 is in the working position, it can perform coding operations on the carton of cigarettes 30; when the scanning component 5 is in the working position, it can perform scanning operations on the carton of cigarettes 30 that has been coded by the coding component 4.

[0034] Therefore, in this embodiment, a rotating column 2 is set on the mounting base 1, and a rotating arm 3 including a first end 31 and a second end 32 is set. The first end 31 is connected to the rotating column 2, and a coding component 4 and a scanning component 5 are set on the second end 32. The second end 32 of the rotating arm 3 is configured to rotate around the rotating column 2 with the axis of rotation as the axis of rotation. This can drive the coding component 4 and the scanning component 5 to switch between working and non-working positions. When the coding component 4 is in the working position, it can perform coding operation on the carton of cigarettes 30. When the scanning component 5 is in the working position, it can perform scanning operation on the carton of cigarettes 30 that has been coded by the coding component 4. This design allows for convenient and simple operation. When coding and scanning of the cigarette packs 30 are required, the operator can move the rotating arm 3 (e.g., manually pull or push it) to move the coding component 4 and scanning component 5 to the working position. When coding and scanning are not needed, the operator can move the rotating arm 3 to a non-working position, thus offsetting the rotating arm 3 and the coding and scanning components 4 and 5. This reduces the space occupied and prevents the installation position from interfering with the maintenance and repair of other components (such as the conveyor device 10). This coding and scanning device 20 provides convenience for operators without affecting the coding and scanning operations of the cigarette packs 30, improving its practicality.

[0035] In some embodiments, combined with Figure 1 , Figure 2 As shown, the above-mentioned coding and scanning device 20 also includes a first positioning component 6. The first positioning component 6 extends along a first direction X1 and is disposed on the mounting base 1. Here, the connection between the first positioning component 6 and the mounting base 1 is, for example, welding or bolted connection.

[0036] The first end 31 of the aforementioned rotating arm 3 is provided with a first positioning member 311. This first positioning member 311 may be, for example, a block-shaped structure or a plate-shaped structure. The aforementioned first positioning component 6 can lock or release the first positioning member 311 to lock the second end 32 of the rotating arm 3 in the aforementioned working position or release the second end 32 of the rotating arm 3 from the aforementioned working position. With this configuration, the cooperation of the first positioning component 6 and the first positioning member 311 can lock the second end 32 of the rotating arm 3 in the working position, thus ensuring stability of the second end 32 of the rotating arm 3 when it is in the working position and improving the accuracy of the coding operation performed by the coding component 4 and the scanning operation performed by the scanning component 5, both located at the second end 32 of the rotating arm 3.

[0037] In some embodiments, such as Figure 2 As shown, the first positioning component 6 includes a first support member 61 (which is, for example, rod-shaped) disposed on the mounting base 1, a first locking portion 62 disposed on the first support member 61, and a first locking member 63. The first locking portion 62 includes a first locking sub-part 621 and a second locking sub-part 622 spaced apart along a first direction X1, each of which is, for example, plate-shaped. The first positioning member 311 has a first locking through hole along the first direction X1. The first positioning member 311 can be located between the first locking sub-part 621 and the second locking sub-part 622, and the first locking member 63 can simultaneously penetrate the first locking sub-part 621, the first locking through hole, and the second locking sub-part 622 along the first direction X1 to lock the position of the first positioning member 311. Through this configuration, the position of the first positioning member 311 can be locked, thereby locking the second end 32 of the rotating arm 3 in the working position. The structure is simple, easy to manufacture, and convenient to use.

[0038] In some embodiments, the first locking member 63 includes an operating part and a threaded part, wherein the operating part is connected to the end of the threaded part. The operating part is, for example, a disc-shaped structure, and the threaded part is, for example, a threaded rod. Both the first locking sub-part 621 and the second locking sub-part 622 have threaded holes along a first direction X1, and the threaded part can pass through the two threaded holes along the first direction X1. With this configuration, when using the coding and scanning device 20, the operator can rotate the operating part to drive the threaded part to rotate, thereby allowing the threaded part to insert into the first locking sub-part 621 and the second locking sub-part 622. This facilitates the operator in locking the position of the first positioning member 311 (or the second end 32 of the rotating arm 3). The structure is simple and easy to use.

[0039] In some embodiments, combined with Figure 1 , Figure 2 As shown, the above-mentioned coding and scanning device 20 also includes a second positioning component 7, which extends along the first direction X1 and is disposed on the mounting base 1. Here, the connection between the second positioning component 7 and the mounting base 1 is, for example, welding or bolted connection.

[0040] The aforementioned rotating arm 3 is provided with a second positioning member 33 extending along the second direction X2. This second positioning member 33 is, for example, a long strip-shaped plate structure. The aforementioned second positioning assembly 7 can lock or release the second positioning member 33 to lock the second end 32 of the rotating arm 3 in a non-working position or release it from the non-working position. With this configuration, the second end 32 of the rotating arm 3 can be locked in a non-working position by the cooperation of the second positioning assembly 7 and the second positioning member 33. This ensures the stability of the second end 32 of the rotating arm 3 when it is in the non-working position, preventing uncontrolled movement of the rotating arm 3 and avoiding safety risks when the coding / scanning device 20 is not in operation.

[0041] In some embodiments, such as Figure 2 As shown, the second positioning component 7 includes a second support member 71 (which is, for example, rod-shaped) disposed on the mounting base 1, a second locking part 72 (which is, for example, plate-shaped) disposed on the second support member 71, and a second locking member 73. The second positioning member 73 has a second locking through hole along a first direction X1. The second locking through hole is directly opposite the second locking part 72 along the first direction X1. The second locking member 73 can simultaneously pass through the second locking part 72 and the second locking through hole along the first direction X1 to lock the second positioning member 73. With this configuration, the position of the second positioning member 33 can be locked, thereby locking the second end 32 of the rotating arm 3 in a non-working position. The structure is simple, easy to manufacture, and convenient to use.

[0042] In some embodiments, such as Figure 1 As shown, the second end 32 of the aforementioned rotating arm 3 is provided with a mounting member 8 extending along the first direction X1. This mounting member 8 is, for example, plate-shaped. The aforementioned coding component 4 and the aforementioned scanning component 5 are disposed on the mounting member 8, and in the first direction X1, the coding component 4 and the scanning component 5 are located below the aforementioned rotating arm 3. This arrangement provides a mounting position for the coding component 4 and the scanning component 5, facilitating their installation. Furthermore, when it is necessary to change the position (height) of the coding component 4 and the scanning component 5 in the first direction X1, it is not necessary to adjust the rotating column 2 connected to the first end 31 of the rotating arm 3; only the mounting member 8 connected to the second end 32 of the rotating arm 3 needs to be adjusted, making it convenient to use.

[0043] In some embodiments, the mounting member 8 is slidably connected to the second end 32 of the rotating arm 3. Here, the slidable connection between the mounting member 8 and the second end 32 of the rotating arm 3 is achieved, for example, by providing a groove (e.g., a dovetail groove or an inverted trapezoidal groove) on the mounting member 8 or the second end 32 of the rotating arm 3, and providing a slider (e.g., a dovetail slider or an inverted trapezoidal slider) adapted to the groove on the second end 32 of the rotating arm 3 or the mounting member 8. The sliding connection between the mounting member 8 and the second end 32 of the rotating arm 3 is achieved through the cooperation of the groove and the slider. The mounting member 8 can move along the first direction X1 to change the position of the coding component 4 and the scanning component 5 in the first direction X1. With this configuration, the position of the coding component 4 and the scanning component 5 in the first direction X1 can be changed by sliding the mounting member 8 along the first direction X1. This allows the coding component 4 and the scanning component 5 to perform coding and scanning operations on the packs of cigarettes 30 on the conveying device 10 at different heights, improving the practicality of the coding and scanning device 20.

[0044] It is easy to understand that the aforementioned mounting component 8 or rotating arm 3 is also provided with a third locking component, positioned at the location of the mounting component 8 in the first direction X1. This third locking component is, for example, a bolt or a locking pin, and those skilled in the art can flexibly configure it according to actual usage requirements, which will not be described in detail here.

[0045] In addition, to facilitate the operation of the rotating arm 3 of the aforementioned barcode scanning device 20 by staff, such as... Figure 1 As shown, a handle 9 can also be provided at the second end 32 of the rotating arm 3. The handle 9 can be, for example, U-shaped or L-shaped, and can be configured according to actual usage requirements. Further details are omitted here. This configuration provides a gripping position for the operator, facilitating pulling or pushing movements of the rotating arm 3 and improving the practicality of the aforementioned coding and scanning device 20.

[0046] On the other hand, such as Figure 2 As shown, this embodiment provides a coding and scanning detection system, which includes a conveying device 10 and a coding and scanning device 20 described in any of the embodiments above.

[0047] like Figure 2 As shown, the conveying device 10 includes a lifting channel 101 for conveying the cigarette packs 30 along a first direction X1. The specific implementation of the conveying device 10 using the lifting channel 101 to convey the cigarette packs 30 along the first direction X1 is not a core improvement of this embodiment and will not be described in detail here.

[0048] like Figure 2As shown, the aforementioned lifting channel 101 is equipped with a front baffle 102, and the aforementioned coding and scanning device 20 is positioned directly opposite the front baffle 102. The front baffle 102 has a detection notch 1021, through which at least a portion of the cigarette pack 30 is exposed (generally, the QR code area on the side of the cigarette pack 30 is exposed to the detection notch 1021). The aforementioned coding component 4 and the aforementioned scanning component 5 are positioned directly opposite the detection notch 1021 in the third direction X3. Here, the third direction X3, the second direction X2 mentioned above, and the first direction X1 mentioned above are arranged at an angle to each other, for example, 90°.

[0049] The above configuration allows the coding component 4 and scanning component 5 in the coding and scanning device 20 to face the portion of the cigarette pack 30 exposed to the detection notch 1021. This enables the coding component 4 and scanning component 5 to perform automatic coding and scanning operations on the cigarette pack 30 sequentially. The conveying device 10 automatically conveys the edge of the cigarette pack, and the coding and scanning device 20 performs automatic coding and scanning on the cigarette pack 30. The entire process requires no manual intervention, significantly saving manpower and improving the efficiency of coding and scanning the cigarette pack 30.

[0050] In some embodiments, the above-described coding and scanning detection system further includes a control device. This control device is coupled to both the conveying device 10 and the coding and scanning device 20, including electrical and signal connections. The control device can control the conveying device 10 to convey the cigarette packs 30 and control the coding and scanning device 20 to perform coding and scanning operations on the cigarette packs 30. The specific structure of the control device and the specific methods or procedures by which the control device controls the conveying device 10 and the coding and scanning device 20 are not core improvements of this embodiment and will not be described in detail here.

[0051] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating the present utility model, and are not intended to limit the implementation of the present utility model. Those skilled in the art can make various obvious changes, readjustments, and substitutions without departing from the protection scope of this utility model. It is neither necessary nor possible to exhaustively describe all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.

Claims

1. A coding and scanning device for coding and scanning cartons of cigarettes (30), characterized in that, include: Mounting base (1) is used to provide an installation location; A rotating column (2) extends along a first direction (X1) and is disposed on the mounting base (1); the first direction (X1) is a vertical direction; A rotating arm (3) extends along a second direction (X2) and includes a first end (31) and a second end (32); the first end (31) is connected to the rotating column (2); the second direction (X2) is set at an angle to the first direction (X1); A coding component (4) is set at the second end (32); A barcode scanning component (5) is disposed at the second end (32) and located above the barcode printing component (4); in the first direction (X1), the barcode printing component (4) and the barcode scanning component (5) are disposed opposite each other; The second end (32) can rotate around the axis of the rotating column (2) as the rotation axis, and can drive the coding component (4) and the scanning component (5) to switch between working and non-working positions; When the coding component (4) is in the working position, it can perform coding operation on the carton of cigarettes (30); when the scanning component (5) is in the working position, it can perform scanning operation on the carton of cigarettes (30) after the coding operation by the coding component (4).

2. The barcode scanning device according to claim 1, characterized in that, It also includes a first positioning component (6) extending along the first direction (X1); the first positioning component (6) is disposed on the mounting base (1); The first end (31) is provided with a first positioning element (311); the first positioning component (6) is capable of locking or releasing the first positioning element (311) to lock the second end (32) in the working position or release the second end (32) from the working position.

3. The barcode scanning device according to claim 2, characterized in that, The first positioning component (6) includes a first support member (61) disposed on the mounting base (1), a first locking part (62) disposed on the first support member (61), and a first locking member (63). The first locking part (62) includes a first locking sub-part (621) and a second locking sub-part (622) disposed at intervals along the first direction (X1); The first positioning member (311) has a first locking through hole along the first direction (X1); the first positioning member (311) can be located between the first locking sub-part (621) and the second locking sub-part (622), and the first locking member (63) can pass through the first locking sub-part (621), the first locking through hole and the second locking sub-part (622) along the first direction (X1) to lock the position of the first positioning member (311).

4. The barcode scanning device according to claim 3, characterized in that, The first locking member (63) includes an operating part and a threaded part; the operating part is connected to the end of the threaded part; the first locking sub-part (621) and the second locking sub-part (622) are both provided with threaded holes along the first direction (X1); the threaded part can pass through the two threaded holes along the first direction (X1).

5. The barcode scanning device according to claim 1, characterized in that, It also includes a second positioning component (7) extending along the first direction (X1); the second positioning component (7) is disposed on the mounting base (1); The rotating arm (3) is provided with a second positioning member (33) extending along the second direction (X2); the second positioning component (7) is capable of locking or releasing the second positioning member (33) to lock the second end (32) in the non-working position or to release the second end (32) from the non-working position.

6. The barcode scanning device according to claim 5, characterized in that, The second positioning component (7) includes a second support member (71) disposed on the mounting base (1), a second locking part (72) disposed on the second support member (71), and a second locking member (73); The second positioning member (33) has a second locking through hole along the first direction (X1); in the first direction (X1), the second locking through hole can be directly opposite the second locking part (72), and the second locking member (73) can pass through the second locking part (72) and the second locking through hole along the first direction (X1) to lock the second positioning member (33).

7. The barcode scanning device according to any one of claims 1 to 6, characterized in that, The second end (32) is provided with a mounting member (8) extending along the first direction (X1); the coding component (4) and the scanning component (5) are disposed on the mounting member (8), and in the first direction (X1), the coding component (4) and the scanning component (5) are located below the rotating arm (3).

8. The barcode scanning device according to claim 7, characterized in that, The mounting component (8) is slidably connected to the second end (32); the mounting component (8) can move along the first direction (X1) to change the position of the coding component (4) and the scanning component (5) in the first direction (X1).

9. A barcode scanning and detection system, characterized in that, Includes a conveying device (10) and a coding and scanning device as described in any one of claims 1 to 8; The conveying device (10) includes a lifting channel (101) for conveying the pack of cigarettes (30) along the first direction (X1). The lifting channel (101) is provided with a front baffle (102), and the coding and scanning device is positioned directly opposite the front baffle (102); a detection notch (1021) is provided on the front baffle (102), and at least part of the cigarette pack (30) can be exposed to the detection notch (1021); the coding component (4) and the scanning component (5) are positioned directly opposite the detection notch (1021) in the third direction (X3); the third direction (X3), the second direction (X2), and the first direction (X1) are arranged at an angle to each other.

10. The barcode scanning and detection system according to claim 9, characterized in that, It also includes a control device, which is coupled to the conveying device (10) and the coding and scanning device respectively; the control device can control the conveying device (10) to convey the pack of cigarettes (30), and control the coding and scanning device to perform coding and scanning operations on the pack of cigarettes (30).