Penicillin bottle guide assembly and feeding device

By using spaced guide rails and connecting beams to form stable guide grooves in the ciling bottle guide device, the problem of airflow spoiler in the prior art is solved, and the sterility and disinfection and purification effect of drug production are improved.

CN223267751UActive Publication Date: 2025-08-26TOT BIOPHARM CO LTD
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Patent Information

Application Number
CN202422630691.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-30
Publication Date
2025-08-26
Estimated Expiration
2034-10-30

AI Technical Summary

Technical Problem

In the production of pharmaceutical products, the existing cilrin bottle guide devices are more likely to cause interference and block the disinfection and purification airflow, reducing the disinfection and purification capacity during the drug production stage.

Method used

The first guide rail and the second guide rail are arranged at intervals, and a stable guide groove is formed through the connecting beam. The connecting wall plate of the connecting beam is arranged as a hollow structure to ensure the stable circulation of the air flow and avoid blocking the disinfection and purification air flow. The connecting beam and the guide rail are fixed through threaded holes and fasteners.

Benefits of technology

It improves the sterility of the cilline bottle in the pharmaceutical production stage, ensures the stable circulation of the disinfection and purification airflow, reduces the risk of contamination of the cilline bottle, and meets the protection requirements of one-way clean airflow.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a penicillin bottle guiding assembly and a feeding device, and relates to the field of medicine production. The penicillin bottle guide assembly comprises a first guide rail piece, a second guide rail piece and at least two connecting beams, and any connecting beam is arranged at the upper end of the guide groove in an avoiding bending mode. One end of the connecting beam is detachably connected with the first guide rail piece, and the other end of the connecting beam is detachably connected with the second guide rail piece. According to the penicillin bottle guide assembly, the first guide rail piece and the second guide rail piece are fixed through the two or more connecting beams, a stable guide groove can be formed, the connecting wall plates of the connecting beams are arranged to be of a hollowed-out plate body structure so as to provide space, and therefore stable and clean one-way airflow can continuously flow, and the stability of the penicillin bottle guide assembly is improved. And the plate body structure is specifically arranged in a manner of vertically extending in the height direction of the connecting beam, so that the bad turbulent flow and blocking influence of the connecting beam on clean one-way airflow in the guide groove is reduced, and the sterility of the penicillin bottle in the pharmaceutical production stage is improved.
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Description

Technical Field

[0001] The utility model relates to the field of medicine production, in particular to a vial material guiding component and a feeding device. Background Art

[0002] In pharmaceutical production, liquid medicines and other medicines can be contained in vials. During the continuous production stage, guide devices can be set at intervals on the upper end of the turntable. The rotation of the turntable can drive the displacement of multiple vials, allowing the vials to enter the guide devices and arrange the guide materials at the desired set speed.

[0003] To ensure the safety of drugs, the vials need to be placed in a reasonable disinfection environment during the production stage, and the vials arranged in sequence on the guide device are disinfected and purified through the disinfection nozzle. However, the current guide device needs to be suspended above the turntable, and in order to ensure that the structural parts in the guide device used to form the guide grooves for accommodating and arranging the vials and the connectors connecting the structural parts are firmly connected to stably support the arrangement of the vials, the size and shape of the structural parts and connectors are usually designed to be large, which can easily cause adverse turbulence and obstruction to the disinfection and purification airflow, thereby reducing the disinfection and purification capabilities during the drug production stage. Utility Model Content

[0004] In order to solve the technical problems raised by the above background technology, the present invention provides a vial material guide assembly, comprising:

[0005] a first guide rail member;

[0006] a second guide rail member, spaced apart from the first guide rail member to form a guide groove suitable for conveying and arranging the vials;

[0007] At least two connecting beams, any two adjacent connecting beams are arranged at intervals, and any connecting beam is arranged at the upper end of the guide groove to avoid bending; one end of the connecting beam is detachably connected to the first guide rail member, and the other end of the connecting beam is detachably connected to the second guide rail member, and any of the connecting beams includes a connecting wall panel, and the connecting wall panel is arranged to be a hollowed-out plate structure, and the plate structure is vertically extended along the height direction of the connecting beam.

[0008] As a preferred technical solution, the connecting beam also includes a first connecting cap and a second connecting cap, one end of the connecting wall panel is fixedly connected to the first connecting cap, the other end of the connecting wall panel is fixedly connected to the second connecting cap, the first connecting cap is fixedly connected to the first guide rail member, and the second connecting cap is fixedly connected to the second guide rail member.

[0009] As a preferred technical solution, a first connecting hole is provided on the upper end surface of the first guide rail member, a first threaded hole is provided on the end surface of the first connecting cap facing the first guide rail member, and the first connecting hole and the first threaded hole are correspondingly connected and arranged by a fastener; a second connecting hole is provided on the upper end surface of the second guide rail member, a second threaded hole is provided on the end surface of the second connecting cap facing the second guide rail member, and the second connecting hole and the second threaded hole are correspondingly connected and arranged by a fastener.

[0010] As a preferred technical solution, two first threaded holes are provided, and the two first threaded holes are constructed at intervals on the first connecting cap, and the arrangement direction of the two first threaded holes is parallel to the extension direction of the guide groove; two second threaded holes are provided, and the two second threaded holes are constructed at intervals on the second connecting cap, and the arrangement direction of the two second threaded holes is parallel to the extension direction of the guide groove.

[0011] As a preferred technical solution, the connecting wall panels are configured as a C-shaped structure or a U-shaped structure.

[0012] As a preferred technical solution, the thickness range of the connecting wall plate is set to 3mm-7mm; and / or

[0013] The connecting wall plate is configured as a stainless steel metal plate.

[0014] As a preferred technical solution, the guide groove includes an introduction area and an arrangement area which are arranged in communication with each other, the introduction area is configured with at least one connecting beam, and the arrangement area is configured with at least one connecting beam.

[0015] As a preferred technical solution, the first guide rail member is provided with a limiting section, the limiting section has a limiting wall surface arranged toward the lead-in area, and the wall surface section of the limiting wall surface close to the lead-in area is arranged to be a plane; and / or

[0016] The second guide rail member is provided with a discharge section, the discharge section has a discharge wall surface connected to the arrangement area, and the discharge wall surface is configured as an arc-shaped curved surface.

[0017] The utility model also provides a feeding device, which comprises the above-mentioned vial guiding assembly.

[0018] As a preferred technical solution, the loading device also includes a turntable and a material picking mechanism, the turntable is spaced apart from the first guide rail member and the second guide rail member of the vial guide assembly, the turntable is suitable for driving the vial into the guide groove of the vial guide assembly, the material picking mechanism is arranged in the downstream discharge area of ​​the guide groove, the sum of the vertical thickness of the first guide rail member and the spacing distance between the first guide rail member and the turntable is less than the vertical length from the open section of the vial to the bottom of the vial, and the sum of the vertical thickness of the second guide rail member and the spacing distance between the second guide rail member and the turntable is less than the vertical length from the open section of the vial to the bottom of the vial.

[0019] The technical solution provided by the utility model has the following advantages:

[0020] The utility model provides a syringe bottle guide assembly, including a first guide rail member, a second guide rail member and at least two connecting beams, the second guide rail member and the first guide rail member are arranged at intervals to form a guide groove suitable for conveying and arranging syringe bottles; any two adjacent connecting beams are arranged at intervals, and any connecting beam is arranged at the upper end of the guide groove to avoid bending; one end of the connecting beam is detachably connected to the first guide rail member, and the other end of the connecting beam is detachably connected to the second guide rail member, and any connecting beam includes a connecting wall panel, and the connecting wall panel is arranged as a hollowed-out plate structure, and the plate structure is vertically extended along the height direction of the connecting beam.

[0021] The vial guide assembly of this structure fixes the first guide member and the second guide member together through two or more connecting beams to form a stable guide groove. Any connecting beam is set at the upper end of the guide groove to avoid bending, and the connecting wall panel of the connecting beam is set as a hollowed-out plate structure to provide space, which is conducive to the continuous circulation of stable and clean unidirectional airflow and protects the sterilized and heat-source-free exposed vials. The plate structure is specifically extended vertically along the height direction of the connecting beam to reduce the adverse turbulence and obstruction caused by the connecting beam on the clean unidirectional airflow in the guide groove, thereby improving the sterility of the vials during the drug production stage.

[0022] The vial guide assembly and loading device provided by the utility model have first and second guide rails specifically designed to match the height of the vials. Their height is lower than that of the open vials, preventing airflow from dirty surfaces onto the open vials and reducing the risk of contaminating sterile vials. This meets the requirement for unidirectional clean airflow to protect lower open vials. The height of the first and second guide rails is preferably 25 mm. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] In order to more clearly illustrate the specific implementation methods of the utility model or the technical solutions in the prior art, the drawings required for use in the specific implementation methods or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are some implementation methods of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0024] Figure 1 A schematic diagram of the working of the feeding device provided by the utility model;

[0025] Figure 2 This is a schematic structural diagram of the vial material guide assembly provided by the utility model;

[0026] Figure 3 This is a partial structural diagram of the vial material guide assembly provided by the utility model;

[0027] Figure 4 A schematic cross-sectional view of the feeding device provided by the present invention;

[0028] Figure 5 This is a schematic structural diagram of the connecting beam in the vial guide assembly provided by the present invention;

[0029] Figure 6 This is a schematic diagram of the bottom of the connecting beam in the vial guide assembly provided by the present invention;

[0030] Description of reference numerals:

[0031] 1-first guide rail member; 11-first connecting hole; 12-limiting section;

[0032] 2-second guide rail member; 21-second connecting hole; 22-discharging section;

[0033] 3-connecting beam; 31-first connecting cap; 311-first threaded hole; 32-second connecting cap; 321-second threaded hole; 33-connecting wall panel;

[0034] 4-guide groove; 41-introduction area; 42-arrangement area;

[0035] 5-turntable; 6-feeding mechanism; 7-opening section. DETAILED DESCRIPTION

[0036] The following is a clear and complete description of the technical solution of the present invention in conjunction with the accompanying drawings. Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts are within the scope of protection of the present invention.

[0037] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely to facilitate the description of this utility model and simplify the description. They do not indicate or imply that the devices or components referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0038] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; direct connections, indirect connections through an intermediate medium, and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on the specific circumstances.

[0039] In addition, the technical features involved in the different embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.

[0040] Example 1

[0041] This embodiment provides a vial guide assembly, such as Figures 1 to 5 As shown, the vial guide assembly includes a first guide member 1, a second guide member 2 and at least two connecting beams 3. The second guide member 2 is spaced apart from the first guide member 1 to form a guide groove 4 suitable for conveying and arranging vials; any two adjacent connecting beams 3 are spaced apart, and any connecting beam 3 is bent and arranged at the upper end of the guide groove 4; one end of the connecting beam 3 is detachably connected to the first guide member 1, and the other end of the connecting beam 3 is detachably connected to the second guide member 2, and any connecting beam 3 includes a connecting wall panel 33, and the connecting wall panel 33 is arranged as a hollowed-out plate structure, and the plate structure is vertically extended along the height direction of the connecting beam 3.

[0042] The syringe bottle material guide assembly provided in this embodiment fixes the first guide member 1 and the second guide member 2 by two or more connecting beams 3 to form a stable guide groove 4. Any connecting beam 3 is set at the upper end of the guide groove 4 to avoid bending, and the connecting wall panel 33 of the connecting beam 3 is set as a hollow plate structure to provide space, which is conducive to the continuous circulation of stable and clean unidirectional airflow and protects the sterilized and heat-source-free exposed syringe bottles. The plate structure is specifically extended vertically along the height direction of the connecting beam 3 to reduce the adverse turbulence and obstruction caused by the connecting beam 3 on the clean unidirectional airflow in the guide groove 4, thereby improving the sterility of the syringe bottles during the drug production stage.

[0043] like Figure 3 As shown, in this embodiment, the guide groove 4 includes an introduction area 41 and an arrangement area 42 that are connected to each other. The introduction area 41 is configured with one or more connecting beams 3, and the arrangement area 42 is configured with one or more connecting beams 3.

[0044] In a specific embodiment, two connecting beams 3 are provided, one connecting beam 3 is provided at the upper end of the introduction area 41 , and another connecting beam 3 is provided at the upper end of the arrangement area 42 .

[0045] As a preferred embodiment, Figure 3 As shown, the first guide rail member 1 is provided with a limiting section 12, and the limiting section 12 has a limiting wall surface set toward the introduction area 41, and the wall surface section of the limiting wall surface close to the introduction area 41 is set as a plane. With this arrangement, when the turntable member 5 rotates, the limiting wall surface of the limiting section 12 intercepts and concentrates the vials, so that the vials move toward the introduction area 41 as the turntable member 5 is driven by rotation. The wall surface section of the limiting wall surface close to the introduction area 41 is set as a plane, which is conducive to the multiple vials being arranged neatly on the wall surface section first, so that under the contact action of subsequent vials, they gradually move toward the introduction section, thereby improving the material guiding efficiency.

[0046] As a preferred embodiment, Figure 3 As shown, the second guide member 2 is provided with a discharge section 22 having a discharge wall surface connected to the arrangement area 42, and the discharge wall surface is configured as an arc-shaped surface. In a specific implementation, a discharge mechanism is positioned adjacent to the discharge section 22. The discharge mechanism specifically comprises a rotating reclaiming tray with a plurality of annularly arranged reclaiming chutes. The rotation of the rotating reclaiming tray causes the annularly arranged reclaiming chutes to sequentially retrieve vials from the discharge section 22 for transport to subsequent workstations. The arc-shaped discharge wall surface facilitates the transitional transport of vials.

[0047] In a specific embodiment, Figure 5As shown, the connecting beam 3 further includes a first connecting cap 31 and a second connecting cap 32. One end of a connecting wall plate 33 is fixedly connected to the first connecting cap 31, and the other end of the connecting wall plate 33 is fixedly connected to the second connecting cap 32. The first connecting cap 31 is fixedly connected to the first guide rail member 1, and the second connecting cap 32 is fixedly connected to the second guide rail member 2. By fixing the first connecting cap 31 of the connecting beam 3 to the first guide rail member 1, the second connecting cap 32 to the second guide rail member 2, and the connecting wall plate 33 to each other, the first connecting cap 31 and the second connecting cap 32 are fixedly connected, so that the first guide rail member 1, the second guide rail member 2, and two or more connecting beams 3 are fixedly arranged, ensuring the stability of the connection of the entire material guide assembly.

[0048] As a preferred embodiment, Figure 3 and Figure 6 As shown, the upper end surface of the first guide rail member 1 is provided with a first coupling hole 11, and the end surface of the first connecting cap 31 facing the first guide rail member 1 is provided with a first threaded hole 311. The first coupling hole 11 and the first threaded hole 311 are correspondingly connected and arranged by fasteners. The upper end surface of the second guide rail member 2 is provided with a second coupling hole 21, and the end surface of the second connecting cap 32 facing the second guide rail member 2 is provided with a second threaded hole 321. The second coupling hole 21 and the second threaded hole 321 are correspondingly connected and arranged by fasteners. The first coupling hole 11 and the first threaded hole 311 are connected by fasteners to fix the first connecting cap 31 to the first guide rail member 1. The second coupling hole 21 and the second threaded hole 321 are connected by fasteners to fix the second connecting cap 32 to the second guide rail member 2.

[0049] As a further embodiment, two first threaded holes 311 are provided, and the two first threaded holes 311 are spaced apart on the first connecting cap 31, and the arrangement direction of the two first threaded holes 311 is arranged parallel to the extension direction of the guide groove 4; two second threaded holes 321 are provided, and the two second threaded holes 321 are spaced apart on the second connecting cap 32, and the arrangement direction of the two second threaded holes 321 is arranged parallel to the extension direction of the guide groove 4. This configuration, on the one hand, can increase the connection area between the first connecting cap 31 and the first guide rail member 1, and increase the connection area between the second connecting cap 32 and the second guide rail member 2, thereby strengthening the connection and fixing effect of the structure and facilitating the dimensional stability of the guide groove 4; on the other hand, it facilitates the alignment and connection of the structure, improving assembly efficiency.

[0050] In a specific embodiment, Figure 5As shown, the connecting wall plate 33 is configured as a U-shaped structure, which has a hollowed-out cavity that faces and communicates with the guide groove 4. Specifically, the U-shaped structure includes a first wall plate, a second wall plate, and a third wall plate that are sequentially connected. The first wall plate is fixedly connected to the first connecting cap 31, and the third wall plate is fixedly connected to the second connecting cap 32. The first wall plate and the second wall plate are bent, and the second wall plate and the third wall plate are bent. The end of the first wall plate away from the second wall plate extends toward the first connecting cap 31, and the end of the third wall plate away from the second wall plate extends toward the second connecting cap 32.

[0051] In another specific embodiment, the connecting wall plate 33 is configured as a U-shaped structure.

[0052] As a preferred embodiment, the thickness of the connecting wall plate 33 is set to be in the range of 3 mm to 7 mm.

[0053] In a specific embodiment, the connecting wall plate 33 is configured as a stainless steel metal plate.

[0054] In some embodiments, the first connecting cap 31 , the second connecting cap 32 , and the connecting wall plate 33 are integrally formed.

[0055] Example 2

[0056] The utility model also provides a feeding device, which comprises the above-mentioned vial guiding assembly.

[0057] In this embodiment, see Figure 1 and Figure 4 The loading device further includes a turntable 5 and a pick-up mechanism 6. The turntable 5 is spaced apart from the first guide rail 1 and the second guide rail 2 of the vial guide assembly, respectively. The turntable 5 is adapted to drive the vials into the guide channel 4 of the vial guide assembly. The pick-up mechanism 6 is disposed in the downstream discharge region of the guide channel 4. Specifically, the turntable 5 is adapted to interface with an external rotary drive mechanism. The pick-up mechanism is disposed adjacent to the discharge section 22 of the guide channel 4. The pick-up mechanism specifically includes a rotating pick-up tray equipped with a plurality of annularly arranged pick-up troughs. The rotation of the rotating pick-up tray causes the annularly arranged pick-up troughs to pick up vials from the discharge section 22 and sequentially receive and transfer the vials discharged from the discharge section 22.

[0058] In this embodiment, see Figure 4The sum of the vertical thickness of the first guide member 1 and the distance between the first guide member 1 and the turntable member 5 is less than the vertical length from the vial's open section 7 to the vial's bottom. The sum of the vertical thickness of the second guide member 2 and the distance between the second guide member 2 and the turntable member 5 is less than the vertical length from the vial's open section 7 to the vial's bottom. This arrangement allows the upper end surfaces of the first and second guide members 1 and 2 to be lower than the height of the vial's open section 7, facilitating the full flow of disinfectant and purified gas through the vial's open section 7, thereby enhancing the purification effect.

[0059] During the specific implementation process, the spacing distance between the first guide member 1 and the turntable member 5 can be adjusted and increased, and the spacing distance between the second guide member 2 and the turntable member 5 can be increased to improve the circulation capacity of the disinfection and purification airflow, which helps to improve the disinfection and purification effect of the syringe bottle; of course, on the basis of ensuring the effective connection strength of the first guide member 1, the connecting beam 3, and the second guide member 2, the vertical thickness of the first guide member 1 and the vertical thickness of the second guide member 2 can be reasonably reduced to achieve the purpose of correspondingly increasing the spacing distance between the first guide member 1 and the turntable member 5 and increasing the spacing distance between the second guide member 2 and the turntable member 5, thereby improving the circulation capacity of the disinfection and purification airflow and improving the disinfection and purification effect of the syringe bottle.

[0060] The first and second guide rail members 1 and 2 are specifically designed to fit the height of the vials. They are lower than the open vials, preventing airflow from the unclean surface of the vials, reducing the risk of contaminating sterile vials and meeting the requirement for unidirectional clean airflow to protect the lower open vials. In a specific embodiment, the heights of the first and second guide rail members 1 and 2 are preferably set to 25 mm.

[0061] Obviously, the above embodiments are merely examples for clarity of explanation and are not intended to limit the implementation methods. Those skilled in the art will readily appreciate that other variations or modifications based on the above descriptions are possible. It is not necessary and impossible to enumerate all implementation methods here. Obvious variations or modifications arising therefrom remain within the scope of protection of the present invention.

Claims

1. A vial material guide assembly, characterized in that: include: A first guide rail member (1); A second guide rail member (2) is spaced apart from the first guide rail member (1) to form a guide groove (4) suitable for conveying and arranging the vials; At least two connecting beams (3), any two adjacent connecting beams (3) are arranged at intervals, and any connecting beam (3) is arranged at the upper end of the guide groove (4) to avoid bending; one end of the connecting beam (3) is detachably connected to the first guide rail member (1), and the other end of the connecting beam (3) is detachably connected to the second guide rail member (2); any connecting beam (3) includes a connecting wall plate (33), and the connecting wall plate (33) is arranged as a hollowed-out plate structure, and the plate structure is vertically extended along the height direction of the connecting beam (3).

2. The vial material guide assembly according to claim 1, characterized in that: The connecting beam (3) further comprises a first connecting cap (31) and a second connecting cap (32); one end of the connecting wall plate (33) is fixedly connected to the first connecting cap (31); the other end of the connecting wall plate (33) is fixedly connected to the second connecting cap (32); the first connecting cap (31) is fixedly connected to the first guide rail member (1); and the second connecting cap (32) is fixedly connected to the second guide rail member (2).

3. The vial material guiding assembly according to claim 2, characterized in that: The first guide rail member (1) has a first coupling hole (11) on its upper end surface, and the first connecting cap (31) has a first threaded hole (311) on its end surface facing the first guide rail member (1), and the first coupling hole (11) and the first threaded hole (311) are connected and arranged correspondingly by a fastener; the second guide rail member (2) has a second coupling hole (21) on its upper end surface, and the second connecting cap (32) has a second threaded hole (321) on its end surface facing the second guide rail member (2), and the second coupling hole (21) and the second threaded hole (321) are connected and arranged correspondingly by a fastener.

4. The vial material guiding assembly according to claim 3, characterized in that: There are two first threaded holes (311), and the two first threaded holes (311) are spaced apart on the first connecting cap (31). The arrangement direction of the two first threaded holes (311) is parallel to the extension direction of the guide groove (4). There are two second threaded holes (321), and the two second threaded holes (321) are spaced apart on the second connecting cap (32). The arrangement direction of the two second threaded holes (321) is parallel to the extension direction of the guide groove (4).

5. The vial material guiding assembly according to claim 2, characterized in that: The connecting wall plate (33) is configured as a U-shaped structure or a U-shaped structure.

6. The vial material guiding assembly according to any one of claims 1 to 5, characterized in that: The thickness range of the connecting wall plate (33) is set to 3mm-7mm; and / or The connecting wall plate (33) is configured as a stainless steel metal plate.

7. The vial material guiding assembly according to any one of claims 1 to 5, characterized in that: The guide groove (4) comprises an introduction area (41) and an arrangement area (42) which are arranged in communication with each other; the introduction area (41) is provided with at least one connecting beam (3); and the arrangement area (42) is provided with at least one connecting beam (3).

8. The vial material guiding assembly according to claim 7, characterized in that: The first guide rail member (1) is provided with a limiting section (12), the limiting section (12) having a limiting wall surface arranged toward the introduction area (41), and a wall surface section of the limiting wall surface close to the introduction area (41) being arranged as a plane; and / or The second guide rail member (2) is provided with a discharge section (22), the discharge section (22) having a discharge wall surface connected to the arrangement area (42), and the discharge wall surface is configured as an arc-shaped curved surface.

9. A feeding device, characterized in that: The invention comprises the vial material guiding assembly according to any one of claims 1 to 8.

10. The feeding device according to claim 9, characterized in that: The feeding device further comprises a turntable member (5) and a material taking mechanism (6), wherein the turntable member (5) is spaced apart from the first guide rail member (1) and the second guide rail member (2) of the vial guide assembly, respectively; the turntable member (5) is suitable for driving the vial into the guide groove (4) of the vial guide assembly; the material taking mechanism (6) is arranged in the downstream discharge area of ​​the guide groove (4); the sum of the vertical thickness of the first guide rail member (1) and the spacing distance between the first guide rail member (1) and the turntable member (5) is less than the vertical length from the open section (7) of the vial to the bottom of the vial; and the sum of the vertical thickness of the second guide rail member (2) and the spacing distance between the second guide rail member (2) and the turntable member (5) is less than the vertical length from the open section (7) of the vial to the bottom of the vial.