Labeling module of blood culture bottle whole-process fine management platform
By designing a labeling module for a refined management platform for the entire blood culture bottle process, the problem of automatic labeling of blood culture bottles was solved, realizing automated labeling function. The module has a simple structure, strong adaptability, convenient maintenance, and accurate label application.
Patent Information
- Application Number
- CN202520061978.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-11
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-11
AI Technical Summary
The lack of an automatic labeling function for blood culture bottles in the current technology results in a lack of precision in the management process of blood culture bottles.
A labeling module for a refined management platform for the entire blood culture bottle process was designed. It includes a base plate, a printing module, and a labeling module. Utilizing components such as sliders, magnetic holders, printers, motors, rollers, and photoelectric sensors, it realizes functions such as automatic take-up, clamping, rotation, printing, and labeling of blood culture bottles.
It achieves automated labeling of blood culture bottles, with a simple structure, convenient maintenance, and adaptability to blood culture bottles of different diameters, ensuring the accuracy and consistency of label application.
Smart Images

Figure CN223736477U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to blood culture bottle label sticking technical field, concretely relates to blood culture bottle whole process fine management platform's label sticking module. BACKGROUND
[0002] Blood culture bottle whole process fine management platform realizes the management of blood culture bottle, automatic selection of blood culture bottle, automatic printing, automatic label sticking, automatic function of the pipe, wherein realizing the automatic label sticking of blood culture bottle is one of the key links.
[0003] The diameter of blood culture bottle is about 34.5mm, in order to realize its label sticking, a special label sticking module is needed to realize the function, therefore blood culture bottle whole process fine management platform's label sticking module is formed to solve this problem. SUMMARY
[0004] The utility model discloses a blood culture bottle whole process fine management platform's label sticking module, according to the requirement of blood culture bottle whole process fine management platform label sticking, this label sticking module realizes the label sticking function of blood culture bottle, and simple structure, maintenance, cleaning is convenient.
[0005] In order to realize the above-mentioned purpose, the utility model provides the following technical scheme:
[0006] Blood culture bottle whole process fine management platform's label sticking module belongs to blood culture bottle label sticking technical field, blood culture bottle whole process fine management platform includes bottom plate, printing module and label sticking module;
[0007] Two groups of sliding blocks and two magnet fixed frames are arranged on the bottom plate;
[0008] The sliding block is arranged at both ends of the bottom plate;
[0009] One magnet is fixed on each magnet fixed frame;
[0010] Further, the printer mounting plate is provided with two slide rails at the lower edge thereof;
[0011] The slide rails are connected with the sliding blocks to fix the printing module on the bottom plate;
[0012] One end of the slide rail is provided with a limiting block to prevent the printing module from being separated from the sliding block during movement;
[0013] The printer mounting plate is provided with two iron column fixing blocks and two support wheel mounting frames on one side thereof;
[0014] The printer mounting plate is provided with two iron column fixing blocks and two support wheel mounting frames on one side thereof;
[0015] The printer mounting plate is provided with two iron column fixing blocks and two support wheel mounting frames on one side thereof;
[0016] A circular iron column is fixed on each iron column fixing block;
[0017] A supporting wheel is installed on each supporting wheel mounting frame, which can automatically roll on the bottom plate to support the weight of the printing module and prevent damage to the slide rail and slide block;
[0018] A pull handle is installed on the other side of the printer mounting plate to facilitate the pulling out and resetting of the printing module;
[0019] Further, side plate left and side plate right are provided on the labeling module to support the labeling module, and the labeling module is fixed on the bottom plate by the side plate left and side plate right;
[0020] A code scanning and reviewing module mounting frame, a limiting plate, a guide plate, a first tube falling limiting plate, a second tube falling limiting plate, a connecting rod, a driving wheel and a second driven roller are fixed in the middle of the side plate left and side plate right;
[0021] A code scanning and reviewing module is installed on the code scanning and reviewing module mounting frame;
[0022] A limiting plate is installed beside the code scanning and reviewing module mounting frame and is arranged on the upper side of the side plate left and side plate right to limit the blood culture bottle when it is fed;
[0023] The guide plate is also arranged on the upper side of the side plate left and side plate right to guide the blood culture bottle when it is fed;
[0024] The first tube falling limiting plate and the second tube falling limiting plate are arranged on the lower side of the side plate left and side plate right to limit the blood culture bottle when it is discharged;
[0025] A sensor is fixed on the second tube falling limiting plate to realize the edge scanning function of the blood culture bottle;
[0026] A second motor, an arm swinging rod and a first limiting photoelectric sensor are arranged on the outer side of the side plate left;
[0027] A rotating wheel is fixed on one end of the arm swinging rod, and the other end is connected with the connecting rod;
[0028] An eccentric wheel is connected to the second motor. When the second motor drives the eccentric wheel to move, the irregular shape of the eccentric wheel drives the rotating wheel to move, and the arm swinging rod and the connecting rod also move together.
[0029] A first motor, a second limiting photoelectric sensor, a third limiting photoelectric sensor, a fourth limiting photoelectric sensor and a code disc are arranged on the outer side of the side plate right;
[0030] The first motor is connected with a first synchronous pulley;
[0031] The first synchronous pulley is connected with a second synchronous pulley through a synchronous belt;
[0032] The second synchronous pulley is fixed at one end of the driving roller, so that the first motor provides power for the driving roller;
[0033] The code disc is connected at the other end of the connecting rod and moves with the connecting rod;
[0034] The second limit photoelectric, the third limit photoelectric and the fourth limit photoelectric are fixed at the side of the code disc and detect several positions of the code disc;
[0035] The two swing rods are connected in the middle of the connecting rod;
[0036] The two swing rods are connected with one end of the tension spring through the first spring connecting rod respectively;
[0037] The other end of the two tension springs is fixed on the upper left and right side plates through the second spring connecting rod respectively;
[0038] All components are simple in assembly structure, so that processing, installation and maintenance are more convenient and simple.
[0039] The labeling module of the whole-process fine management platform of the blood culture bottle realizes the automatic labeling function of the blood culture bottle, and the overall structure is simple, light and convenient to maintain.
[0040] In order to more clearly describe the structural features and functions of the utility model, the utility model will be described in detail below in combination with the drawings and specific embodiments. BRIEF DESCRIPTION OF DRAWINGS
[0041] Figure 1 It is a first schematic view of the overall structure of the embodiment of the utility model;
[0042] Figure 2 It is a second schematic view of the overall structure of the embodiment of the utility model;
[0043] Figure 3 It is a front view of the overall structure of the embodiment of the utility model;
[0044] Figure 4 It is a right view of the overall structure of the embodiment of the utility model;
[0045] Figure 5 It is a left view of the overall structure of the embodiment of the utility model;
[0046] Figure 6 It is a sectional view of the overall structure of the embodiment of the utility model;
[0047] Label: 1, print module; 2, labeling module; 3, left side plate; 4, right side plate; 5, bottom plate; 6, printer; 7, first motor; 8, first synchronous pulley; 9, first spring connecting column; 10, tension spring; 11, rotating wheel; 12, second motor; 13, eccentric wheel; 14, first limit photoelectric; 15, second spring connecting column; 16, connecting rod; 17, second synchronous pulley; 18, synchronous belt; 19, second limit photoelectric; 20, third limit photoelectric; 21, fourth limit photoelectric; 22, code disc; 23, iron column fixing block; 24, iron column; 25, support wheel; 26, support wheel mounting frame; 27, sliding block; 28, slide rail; 29, limit block; 30, magnet fixing frame; 31, printer mounting plate; 32, limit plate; 33, swing rod; 34, first driven roller; 35, first falling tube limit plate; 36, guide plate; 37, driving roller; 38, blood culture bottle; 39, second driven roller; 40, second falling tube limit plate; 41, pull handle; 42, sensor; 43, printer head; 44, magnet; 45, slide; 46, code scanning and reviewing module mounting frame; 47, code scanning and reviewing module; 48, swing arm rod; DETAILED DESCRIPTION
[0048] In order to make the purpose, technical scheme and advantages of the embodiments of the present application more clear, the technical scheme in the embodiments of the present application will be described clearly and completely in conjunction with the drawings. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0049] The specific implementation of the present application will be described in detail in conjunction with specific embodiments.
[0050] In an embodiment of the present application, referring to Figures 1-6The label sticking module of the blood culture bottle whole-process fine management platform comprises a bottom plate 5, a printing module 1 and a label sticking module 2 are arranged on the bottom plate 5, a sliding block 27 is further arranged on the bottom plate 5, a printer mounting plate 31 is arranged on the printing module 1, a sliding rail 28 is arranged below the edge of the printer mounting plate 31, the printing module 1 is connected with the bottom plate 5 through the connection of the sliding block 27 and the sliding rail 28, and the printing module 1 can freely move along the sliding rail 28, a first motor 7, a second motor 12, a driving roller 37, a first driven roller 34, a second driven roller 39, a sensor 42 and a code scanning and checking module 47 are arranged on the label sticking module 2, the label sticking module 2 is powered by the two motors, the relative position of the three rollers is changed, and the printing module 1 is matched, so that the blood culture bottle 38 is connected, pressed, rotated, printed, labeled and discharged, the sensor 42 realizes edge detection and determines the label sticking position, the code scanning and checking module 47 realizes the identification and checking of the bar code on the newly-stuck label, and the correctness of the stuck bar code is ensured, so that the label sticking work of the blood culture bottle 38 is realized.
[0051] Further, the printing module 1 is connected with the bottom plate 5 through the connection of the sliding block 27 and the sliding rail 28, and the printing module 1 can freely move along the sliding rail 28; in this way, the printing module 1 can be moved out of the label sticking module, so that the replacement of the printing paper and the cleaning work of the printer head 43 are facilitated.
[0052] An iron column 24 is arranged on the printing module 1, a magnet 44 is arranged on the bottom plate 5, the iron column 24 and the magnet 44 are attracted to each other when the printing module 1 is pushed back to the original position, and the position of the printing module 1 is fixed.
[0053] Further, an arm swinging rod 48, a rotating wheel 11, the second motor 12, an eccentric wheel 13, a connecting rod 16, a swinging piece 33 and a code disc 22 are arranged on the label sticking module 2, when the second motor 12 rotates, the eccentric wheel 13 moves, the irregular shape of the eccentric wheel 13 can press and move the rotating wheel 11, the rotating wheel 11 is fixed on the arm swinging rod 48 and simultaneously drives the arm swinging rod 48 to move, the arm swinging rod 48 and the connecting rod 16 are fixedly connected together, the connecting rod 16 further fixedly has the swinging piece 33 and the code disc 22, when the arm swinging rod 48 moves, through the multi-stage linkage, the connecting rod 16, the swinging piece 33 and the code disc 22 are driven to move together.
[0054] The labeling module 2 is provided with a driving roller 37, a first driven roller 34, a second driven roller 39 and a tension spring 10. When the eccentric wheel 13 does not press the rotating wheel 11, the swing member 33 is not subjected to the force brought by the rotation of the second motor 12. At this time, the swing member 33 is completely returned to the original position under the action of the tension spring 10, and the swing member 33 is moved outward under the driving of the second motor 12 and returned to the original position under the action of the tension spring 10, so as to realize the back-and-forth movement of the first driven roller 34.
[0055] The labeling module 2 is provided with a first limiting photoelectric sensor 14. Since the eccentric wheel 13 has an irregular shape, when the eccentric wheel 13 is separated from the rotating wheel 11, the first limiting photoelectric sensor 14 is used to detect the position. The swing member 33 is completely pressed against the blood culture bottle 38 by the force of the tension spring 10. Since the force of the tension spring 10 can be elastically changed, the labeling module can be applicable to blood culture bottles 38 with a certain range of diameters, thereby enhancing the adaptability of the labeling module.
[0056] The labeling module 2 is provided with a code disc 22, a second limiting photoelectric sensor 19, a third limiting photoelectric sensor 20 and a fourth limiting photoelectric sensor 21. When the code disc 22 moves with the linkage part, the code disc 22 can mark three positions of the swing member 33, which are a pipe placing position, a pipe receiving position and a pressing position when there is no blood culture bottle 38. The three positions are detected by the second limiting photoelectric sensor 19, the third limiting photoelectric sensor 20 and the fourth limiting photoelectric sensor 21 respectively.
[0057] The labeling module 2 is provided with a sensor 42, which realizes the edge inspection of the blood culture bottle 38, so as to ensure that the positions of the original label and the new label on the blood culture bottle 38 are uniform and standardized.
[0058] The labeling module 2 is provided with a code scanning and checking module 47, which realizes the inspection of the bar code on the label of the blood culture bottle 38, so as to ensure that the bar code is printed correctly and accurately, thereby playing the function of inspection and checking.
[0059] The labeling module is used to complete the labeling of the blood culture bottle 38, and the printer 6 is used to complete the printing. Under the driving of the second motor 12, the four position changes and detections of the first driven roller 34 are completed. When the first driven roller 34 presses the blood culture bottle 38, the driving roller 37 is rotated by the first motor 7, and the blood culture bottle 38 is rotated at the same time, so as to complete the labeling. When the first driven roller 34 presses the blood culture bottle 38, the power is provided by the tension spring 10. Since the tension spring 10 has an elastic change range, the labeling module has a certain redundancy and can be applicable to more types of blood culture bottles 38.
[0060] The label sticking module of the blood culture bottle whole-process fine management platform of the utility model, when the label sticking module sticks labels, each component cooperates with each other, realizes the work of pipe connection, pressing, rotation, printing, label sticking and pipe placing of the blood culture bottle 38, the device has wide application range, strong adaptability, simple structure, and is convenient to install and maintain.
[0061] It can be understood that the utility model is described through some embodiments, and those skilled in the art know that various changes or equivalent replacements can be made to these features and embodiments without departing from the spirit and scope of the utility model. In addition, these features and embodiments can be modified to adapt to specific conditions and materials under the guidance of the utility model without departing from the spirit and scope of the utility model. Therefore, the utility model is not limited by the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of the application belong to the scope protected by the utility model.
Claims
1. A labeling module of a blood culture bottle whole-process fine management platform, characterized in that, The utility model provides a blood culture bottle labeling machine, including the bottom plate (5), be provided with printing module (1) and label module (2) on the bottom plate (5), still be provided with sliding block (27) on the bottom plate (5), be provided with printer mounting plate (31) on the printing module (1), be provided with slide rail (28) under the edge of printer mounting plate (31), through the connection of sliding block (27) and slide rail (28), realize the connection of printing module (1) and bottom plate (5), and printing module (1) can freely move along the direction of slide rail (28), be provided with first motor (7), second motor (12), driving roller (37), first driven roller (34), second driven roller (39), sensor (42) and scan code review module (47) on label module (2), and label module (2) provides power through two motors, the change of three rollers relative position and the cooperation of printing module (1) complete the work of blood culture bottle (38) pipe connection, compression, rotation, printing, label and put pipe, sensor (42) realizes the patrol edge, determines the sticking position of label, and scan code review module (47) completes the identification and review function of new sticking label bar code.
2. The labeling module of the blood culture bottle full-process fine management platform according to claim 1, characterized in that, The printing module (1) is connected with the bottom plate (5) through the connection of the sliding block (27) and the slide rail (28), and the printing module (1) can freely move along the direction of the slide rail (28). In this way, the printing module (1) can be moved out of the labeling module, facilitating the replacement of the printing paper and the cleaning work of the printer head (43).
3. The labeling module of the blood culture bottle full-process fine management platform according to claim 1, characterized in that, The printing module (1) is provided with an iron column (24), and the bottom plate (5) is provided with a magnet (44). When the printing module (1) is pushed back to the original position, the iron column (24) and the magnet (44) are attracted to each other, ensuring that the position of the printing module (1) is fixed and immovable.
4. The labeling module of the blood culture bottle full-process fine management platform according to claim 1, characterized in that, The label module (2) is provided with a swing arm rod (48), a rotating wheel (11), a second motor (12), an eccentric wheel (13), a connecting rod (16), a swing piece (33), and a code disc (22). When the second motor (12) rotates, the eccentric wheel (13) moves. When the eccentric wheel (13) moves, it can press the rotating wheel (11) to move. The rotating wheel (11) is fixed on the swing arm rod (48) and drives the swing arm rod (48) to move. The swing arm rod (48) and the connecting rod (16) are fixedly connected together. The connecting rod (16) is also fixed with the swing piece (33) and the code disc (22). When the swing arm rod (48) moves, through the multi-stage linkage, the connecting rod (16) moves, and the swing piece (33) and the code disc (22) move together.
5. The labeling module of the blood culture bottle full-process fine management platform according to claim 4, characterized in that, The labeling module (2) is provided with a driving roller (37), a first driven roller (34), a second driven roller (39) and a tension spring (10). When the eccentric wheel (13) does not press the rotating wheel (11), the swing member (33) is not affected by the force brought by the rotation of the second motor (12). At this time, the swing member (33) is completely returned to the original position under the action of the tension spring (10), so that the swing member (33) is driven by the second motor (12) to move outward and is returned to the original position under the action of the tension spring (10), thereby realizing the back-and-forth movement of the first driven roller (34).
6. The labeling module of the blood culture bottle full-process fine management platform according to claim 5, characterized in that, The labeling module (2) is provided with a first limiting photoelectric sensor (14). When the eccentric wheel (13) is separated from the rotating wheel (11), the first limiting photoelectric sensor (14) is used to detect the position. The swing member (33) is completely pressed against the blood culture bottle (38) by the force of the tension spring (10).
7. The labeling module of the blood culture bottle full-process fine management platform according to claim 6, characterized in that, The labeling module (2) is provided with a code disc (22), a second limiting photoelectric sensor (19), a third limiting photoelectric sensor (20) and a fourth limiting photoelectric sensor (21). When the code disc (22) moves with the linkage part, the code disc (22) can mark three positions of the swing member (33), which are a pipe placing position, a pipe connecting position and a pressing position when there is no blood culture bottle (38). The three positions are detected by the second limiting photoelectric sensor (19), the third limiting photoelectric sensor (20) and the fourth limiting photoelectric sensor (21) respectively.