Vaccine sorting equipment
By combining scanning devices with moving, rolling, sorting, conveying, and transferring components, the problem of inaccurate vaccine storage has been solved, achieving efficient and accurate vaccine sorting and storage, avoiding vaccination errors, and ensuring vaccine efficacy.
Patent Information
- Application Number
- CN202423153583.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-12-20
AI Technical Summary
In the current technology, the vaccine storage method cannot guarantee that the same vaccine is placed in the correct location, which may lead to incorrect administration, medical accidents, and waste of medical personnel's time.
A scanning device is used to determine the type of vaccine required by the patient. A moving component moves the vaccine to a storage rack. A baffle and an air blowing component reduce friction. A rolling component and a sorting component ensure the correct type of vaccine. A temporary storage component stores vaccines to be retrieved. A conveying component and a transfer component improve efficiency.
It improves the accuracy of vaccine storage and sorting, reduces the possibility of vaccination errors, saves medical staff time, and ensures that vaccines maintain their efficacy under refrigeration conditions.
Smart Images

Figure CN223684011U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of vaccine sorting, especially to vaccine sorting equipment. BACKGROUND
[0002] Generally, multiple vaccines are stored in a storage member, when the inoculation personnel shows the two-dimensional code or bar code of the reserved vaccine, the medical staff scans the two-dimensional code or bar code by using a scanning device, so as to determine the type of vaccine to be inoculated, and then the vaccine of this type is slid from the storage member to the drawer to be taken, and the medical staff can open the drawer to take out the vaccine and inoculate the patient.
[0003] In the prior art, most of the vaccines in the storage member are placed by machinery, and vaccines of the same type are stored in a specific part of the storage member. However, neither this method nor the manual storage method can guarantee that the vaccines in the storage member are completely placed in the correct position. That is, once a vaccine is placed in an incorrect position, the type of the vaccine will be considered as the vaccine type of the area where it is located, resulting in that the vaccine is slid to the drawer and taken out by the medical staff, which is different from the vaccine type required by the patient. If the medical staff directly inoculates the patient, a medical accident may occur. If the medical staff finds the error, the medical staff's time will be wasted to correct the error, which delays the patient's time. SUMMARY
[0004] To achieve at least one advantage of the utility model, the utility model provides vaccine sorting equipment for storing and providing corresponding vaccines for medical staff, which comprises:
[0005] A scanning device for scanning the two-dimensional code or bar code presented by the patient;
[0006] A storage assembly comprising a storage rack and at least one moving member, wherein the storage rack has a plurality of moving channels, the moving member is inclinedly installed in the moving channel of the storage rack, and the moving member is used to drive the vaccine;
[0007] A sorting assembly comprising:
[0008] A rolling member comprising a rolling rack, a plurality of rolling members and a rolling drive member, the rolling rack is arranged below the lower end of the moving member, a plurality of the rolling members are rotatably installed on the rolling rack and are spaced apart from each other by a predetermined distance, and the rolling members are rotatably connected to the rolling drive member;
[0009] At least one sorting member, the sorting member includes at least one detection piece, a plurality of sorting pieces and a plurality of sorting driving pieces, wherein each of the sorting pieces is drivingly connected to one of the sorting driving pieces, and the driving direction of the sorting pieces is set to be away from the moving member, each of the sorting pieces is rotatably installed between two rolling pieces, the upper surface of the sorting piece is flush with the top end of the rolling piece, and the two sides of the sorting piece are attached to the surface of the rolling piece, and the detection piece is installed above the rolling member and the sorting piece;
[0010] At least one temporary storage piece, the temporary storage piece is set in the driving direction of the sorting piece, and the temporary storage piece has an access opening, and the access opening is located below the end of the sorting piece away from the moving member.
[0011] According to an embodiment of the present application, the moving member includes a moving piece, a moving driving piece and at least one blocking plate, the moving piece is obliquely installed in the middle of the moving channel of the storage rack, the moving piece is used to drive the vaccine, the moving piece is drivingly connected to the moving driving piece, the blocking plate is fixed to the surface of the moving piece and moves around the moving piece with the movement of the moving piece, and the blocking plate blocks the moving channel into multiple areas and prevents the vaccine from sliding obliquely downward.
[0012] According to an embodiment of the present application, the surface of the moving piece forms a plurality of air holes, each of the air holes is set on the side of the blocking plate towards the high end of the moving piece, the storage assembly further includes a blowing member, the blowing member is set at the low end of the moving piece and is communicated with the air holes, and the blowing member can blow out gas.
[0013] According to an embodiment of the present application, the vaccine sorting equipment further includes a conveying assembly and a transfer assembly, the conveying assembly conveys a plurality of vaccines to a predetermined position, and the transfer assembly transfers the vaccines from the predetermined position to the moving channel of the storage rack.
[0014] According to an embodiment of the present application, the conveying assembly includes a conveying member and a guide member, the conveying member is set to convey the vaccine, the guide member is installed on the conveying member and the vaccine passes through the guide member, the guide member is installed on the conveying member, the guide member forms a guide channel, in the conveying direction of the conveying member, the opening size of the guide channel is set to be smaller and smaller, and the outlet of the guide channel is adapted to the width of the vaccine.
[0015] According to an embodiment of the present application, the conveying member has a side wall, the guide member has an inclined wall, the distance between the inclined wall and the side wall of the conveying member is set to decrease along the conveying direction, and the minimum distance between the inclined wall and the side wall of the conveying member is set to be adapted to the width of the vaccine.
[0016] According to an embodiment of the present application, the guide member has two inclined walls, the two inclined walls are oppositely arranged, the distance between the two inclined walls is set to decrease along the conveying direction, and the minimum distance between the two inclined walls is set to be adapted to the width of the vaccine.
[0017] According to an embodiment of the present application, the guide member further has a straight wall with the same number as the inclined wall, one end of each straight wall is connected to the end of the inclined wall forming the outlet of the guide channel, and the other end of each straight wall extends along the conveying direction of the conveying member.
[0018] According to an embodiment of the present application, the transfer assembly includes a transfer assembly, a lifting member and a rotating member, the transfer assembly is arranged between the conveying member and the storage rack, the transfer assembly is drivingly connected to the lifting member for lifting, and the transfer assembly is drivingly connected to the rotating member for rotation.
[0019] According to an embodiment of the present application, the rotating member has a rotatable driving part, the transfer member includes a transfer body, a first rotating part, a lifting part and a suction part, wherein the transfer body is rotatably mounted on the driving part, the transfer body is drivingly connected to the first rotating part for rotation, the lifting part is mounted on the end of the transfer body away from the driving part, the suction part is drivingly mounted on the lower end of the lifting part, and the suction part can adsorb the vaccine. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 The structure schematic diagram of the vaccine sorting equipment is shown.
[0021] Figure 2 The structure schematic diagram in the refrigeration box of the vaccine sorting equipment is shown.
[0022] Figure 3 The structure schematic diagram of the storage assembly of the vaccine sorting equipment is shown.
[0023] Figure 4 The structure schematic diagram of the vaccine sorting equipment in another direction is shown.
[0024] Figure 5 ToFigure 4 A local enlarged view at the middle A.
[0025] Figure 6 A cross-sectional schematic view of a transfer member of the vaccine sorting device is shown. DETAILED DESCRIPTION
[0026] The following description is provided so that others skilled in the art can have the best
[0027] Those skilled in the art should understand that in the disclosure of the present application, the terms "longitudinal", "transverse", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, which are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore the above terms cannot be understood as a limitation of the present application.
[0028] It can be understood that the term "one" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of one element can be one, and in another embodiment, the number of the element can be multiple, and the term "one" cannot be understood as a limitation of the number.
[0029] Reference Figures 1 to 6 According to a preferred embodiment of the present application, a vaccine sorting device for storing and providing corresponding vaccines 90 to medical personnel will be described in detail below, which comprises a scanning device 10, a storage assembly 20 and a sorting assembly 30.
[0030] The scanning device 10 is used to scan the two-dimensional code or bar code presented by the patient, so as to determine the type of vaccine required by the patient. As an example, the scanning device 10 is implemented to include a code reader.
[0031] The storage assembly 20 comprises a storage rack 21 and at least one moving member 22, wherein the storage rack 21 has a plurality of moving channels 2101, and the moving member 22 is obliquely installed in the moving channel 2101 of the storage rack 21, and the moving member 22 is used to drive the vaccine 90.
[0032] Preferably, the moving member 22 comprises a moving piece 221, a moving driving piece 222 and at least one blocking plate 223, the moving piece 221 is obliquely installed at the middle of the moving channel 2101 of the storage rack 21, and is used to drive the vaccine 90. The moving piece 221 is drivingly connected to the moving driving piece 222, so that the vaccine 90 in the moving channel 2101 is driven to move. The blocking plate 223 is fixed on the surface of the moving piece 221 and moves around the moving piece 221 with the movement of the moving piece 221, the blocking plate 223 blocks the moving channel 2101 into multiple areas and prevents the vaccine 90 from sliding obliquely downward, so that multiple vaccines 90 are stored in one moving channel 2101 and driven by the same moving piece 221.
[0033] As an example, the moving member 22 is implemented to comprise a conveyor belt.
[0034] It is worth mentioning that generally, the vaccines 90 on the same moving piece 221 are of the same type, so as to facilitate the distinction of the vaccines 90.
[0035] The sorting assembly 30 comprises a rolling member 31, at least one sorting member 32 and at least one temporary storage piece 33, wherein the rolling member 31 comprises a rolling rack 311, multiple rolling pieces 312 and a rolling driving piece 313, the rolling rack 311 is arranged below the lower end of the moving member 22, multiple rolling pieces 312 are rotatably installed on the rolling rack 311 and are spaced apart from each other by a predetermined distance, and the rolling pieces 312 are drivingly and rotatably connected to the rolling driving piece 313, so as to facilitate the vaccine 90 to fall on the rolling pieces 312 and be driven to move by the rolling pieces 312.
[0036] As an example, the rolling piece is implemented to comprise a rolling wheel, and the rolling driving piece 313 is implemented to comprise a driving motor.
[0037] The sorting member 32 comprises at least one detection member 321, a plurality of sorting members 322, and a plurality of sorting driving members 323, wherein each of the sorting members 322 is drivingly connected to one of the sorting driving members 323, and the driving direction of the sorting members 322 is set to be away from the moving member 22. Each of the sorting members 322 is rotatably mounted between two of the rolling members 312, the upper surface of the sorting member 322 is flush with the top end of the rolling member 312, and the two sides of the sorting member 322 are in contact with the surface of the rolling member 312, so that the vaccine 90 falling on the rolling member 312 is brought to the sorting member 322 under the rolling of the rolling member 312, and the vaccine 90 is moved away from the moving member 22 by the sorting member 322 when the sorting member 322 is driven by the sorting driving member 323.
[0038] The detection member 321 is mounted above the rolling member 31 and the sorting member 322 to detect the type of the vaccine 90 on the rolling member 31 and the sorting member 322 in a wide range, and determine the type of the vaccine 90.
[0039] As an example, the sorting member 322 is implemented as a conveyor belt, and the sorting driving member 323 is implemented as a driving motor. The detection member 321 is implemented as a barcode scanner.
[0040] The temporary storage member 33 is arranged in the driving direction of the sorting member 322, and the temporary storage member 33 has an access opening 3301 below the end of the sorting member 322 away from the moving member 22, so that the vaccine 90 on the sorting member 322 can enter the inside of the temporary storage member 33 through the access opening 3301 for medical personnel to take.
[0041] As can be understood by those skilled in the art, after the patient presents the two-dimensional code or the bar code to the medical staff, the medical staff uses the scanning device 10 to determine the type of the vaccine 90 that the patient needs to be inoculated with. The vaccine 90 in the storage assembly 20 is stored in the moving channel 2101 of the storage rack 21. After the scanning device 10 completes scanning, the moving piece 221 is driven by the moving driving piece 222, so that the stored vaccine 90 is tilted and moved downward by the moving piece 221. At this time, the blocking plate 223 located in the moving direction of the vaccine 90 is rotated to the lower side of the moving piece 221 along with the movement of the moving piece 221, so that the vaccine 90 can be tilted and slide out of the moving channel 2101 and fall on the rolling piece 312 or the sorting piece 322. Then, the detection piece 321 detects the vaccine 90 falling on the rolling piece 312 or the sorting piece 322 from above. If the type of the falling vaccine 90 is incorrect, the vaccine 90 will be driven away from the temporary storage piece 33 by the rolling piece 312, and the moving piece 221 will re-drive another vaccine 90 to fall on the rolling piece 312. If the type of the vaccine 90 is correct, the sorting piece 322 will drive the vaccine 90 into the temporary storage piece 33 for the medical staff to take. In this way, the type of the vaccine 90 is further detected when it is taken out of the storage rack 21, greatly reducing the possibility of incorrect type of the vaccine 90.
[0042] Preferably, the moving channels 2101 of the storage rack 21 are arranged in an array. The storage rack 21 is divided into multiple areas in the transverse direction, and the same type of vaccine 90 is stored in each area. The number of temporary storage pieces 33 is the same as the number of areas divided by the storage rack 21, so that each temporary storage piece 33 can temporarily store the same type of vaccine 90, facilitating the management of the medical staff.
[0043] Preferably, the surface of the moving piece 221 forms a plurality of air holes 22101, and each air hole 22101 is arranged on the side of the blocking plate facing the high end of the moving piece 221. The storage assembly 20 further comprises a blowing member 23 arranged at the low end of the moving piece 221 and connected to the air holes 22101. The blowing member 23 can blow out gas.
[0044] As an example, the blowing member 23 is implemented to include a hair dryer.
[0045] It can be understood that when the vaccine 90 is placed on the moving member 221 in an inclined manner, the vaccine 90 is blocked by the blocking plate 223, and the lower end of the vaccine 90 is above the air hole 22101. When the vaccine 90 moves to the lowest end of the moving member 221, the blocking plate 223 moves below the moving member 221 in a surrounding manner, and the air blowing member 23 blows air to reduce the friction between the lower end of the vaccine 90 and the moving member 221, so that the vaccine 90 is more easily slid off the moving channel 2101.
[0046] Preferably, the vaccine sorting device further comprises a conveying assembly 40 and a transferring assembly 50. The conveying assembly 40 conveys a plurality of vaccines 90 to a predetermined position. The transferring assembly 50 transfers the vaccines 90 from the predetermined position to the moving channels 2101 of the storage racks 21, avoiding manual placement of the vaccines 90 one by one into the moving channels 2101.
[0047] Preferably, the conveying assembly 40 comprises a conveying member 41 and a guide member 42. The conveying member 41 is configured to convey the vaccines 90. The guide member 42 is mounted on the conveying member 41 and through which the vaccines 90 pass.
[0048] The guide member 42 is mounted on the conveying member 41. The guide member 42 forms a guide channel 4201. In the conveying direction of the conveying member 41, the opening size of the guide channel 4201 is configured to become smaller and smaller, and the outlet of the guide channel 4201 is adapted to the width of the vaccine 90.
[0049] As an example, the conveying member 41 is implemented to comprise a conveying belt.
[0050] It can be understood that the vaccines 90 are conveyed by the conveying member 41 in any posture and pass through the guide member 42 to be conveyed to a predetermined position. When the vaccines 90 pass through the guide member 42, the vaccines 90 enter the guide channel 4201 from the inlet and are conveyed out of the guide channel 4201 from the outlet, so that the vaccines 90 are conveyed to the predetermined position in a posture-fixed manner.
[0051] In one embodiment, the conveying member 41 has a side wall, and the guide member 42 has an inclined wall 421. The distance between the inclined wall 421 and the side wall of the conveying member 41 is configured to become smaller and smaller along the conveying direction, and the minimum distance between the inclined wall 421 and the side wall of the conveying member 41 is configured to be adapted to the width of the vaccine 90, that is, the inclined wall 421 and the side wall of the conveying member 41 form the guide channel 4201.
[0052] In another embodiment, the guide member 42 has two inclined walls 421, the two inclined walls 421 are oppositely arranged, the distance between the two inclined walls 421 is arranged to be from large to small along the conveying direction, and the minimum distance between the two inclined walls 421 is arranged to be adapted to the width of the vaccine 90, that is, the two inclined walls 421 form the guide channel 4201.
[0053] Preferably, the guide member 42 further has a number of straight walls 422 same as the number of the inclined walls 421, one end of each of the straight walls 422 is connected to the end of the inclined wall 421 forming the outlet of the guide channel 4201, and the other end of each of the straight walls 422 extends along the conveying direction of the conveying member 41, thereby extending the outlet of the guide channel 4201 and ensuring that the vaccine 90 is always conveyed in a fixed posture.
[0054] Preferably, the conveying assembly 40 further comprises a feeding member 43 arranged to communicate with the end of the conveying member 41 from which the conveying starts, the feeding member 43 is used to orderly place the vaccine 90 on the end of the conveying member 41 from which the conveying starts, so that the vaccine 90 is conveyed by the conveying member 41 to a predetermined position.
[0055] As an example, the feeding member 43 is implemented to comprise a vibrating disc.
[0056] Preferably, the transfer assembly 50 comprises a transfer assembly 51, a lifting member 52 and a rotating member 53, the transfer assembly 51 is arranged between the conveying member 41 and the storage rack 21, the transfer assembly 51 is drivingly connected to the lifting member 52 for lifting, the transfer assembly 51 is drivingly connected to the rotating member 53 for rotation, so that the transfer assembly 51 can be lifted and rotated to transfer the vaccine 90 from the predetermined position on the conveying member 41 to the moving member 221 of the storage rack 21.
[0057] As an example, the lifting member 52 is implemented to comprise a pneumatic cylinder. The rotating member 53 is implemented to comprise a driving motor. The transfer assembly 51 is connected to the rotating member 53, and the rotating member 53 is installed above the lifting member 52, so that the transfer assembly 51 can be rotated and lifted.
[0058] Preferably, the rotating member 53 has a rotatable driving part 531, and the transferring member 51 comprises a transferring body 511, a first rotating part 512, a lifting part 513 and a suction accessory 514, wherein the transferring body 511 is rotatably installed on the driving part 531, and the transferring body 511 is rotatably connected to the first rotating part 512 so as to increase the rotating modes of the transferring body 511. The lifting part 513 is installed on the end of the transferring body 511 away from the driving part 531, and the suction accessory 514 is installed on the lower end of the lifting part 513 in a liftable manner, and the suction accessory 514 can adsorb the vaccine 90 so as to increase the lifting modes of the transferring body 511.
[0059] For example, the first rotating part 512 is implemented by a driving motor. The lifting part 513 is implemented by a pneumatic cylinder. The suction accessory 514 is implemented by a suction cup.
[0060] Preferably, the transferring member 51 further comprises a second rotating part 515, and the lifting part 513 is rotatably connected to the second rotating part 515 so as to drive the lifting part 513 and the suction accessory 514 to rotate, thereby adjusting the overall orientation of the vaccine 90 when the suction accessory 514 adsorbs the vaccine 90.
[0061] For example, the second rotating part 515 is implemented by a driving motor.
[0062] Preferably, the vaccine sorting device further comprises an inspection assembly 60, and the inspection assembly 60 comprises a placement plate 61 and at least one inspection member 62. The placement plate 61 is installed around the transferring assembly 50 so that the vaccine 90 can be transferred to the placement plate 61 by the transferring assembly 50. The inspection member 62 is installed around the placement plate 61 and detects the objects on the placement plate 61, so that when the vaccine 90 is placed on the placement plate 61, the inspection member 62 detects the type of the vaccine 90, thereby facilitating the transferring assembly 50 to transfer the vaccine 90 to the accurate moving part 221.
[0063] For example, the inspection member 62 is implemented by a barcode scanner.
[0064] Preferably, the vaccine sorting device further comprises a refrigeration box 70 having a space for refrigeration, the storage assembly 20 is installed in the internal space of the refrigeration box 70, the temporary storage 33 is installed on the side wall of the refrigeration box 70 close to the scanning device 10, and the access opening 3301 of the temporary storage 33 is installed slidably to close or open the access opening 3301, so that the access opening 3301 of the temporary storage 33 is closed or opened under the sliding of the temporary storage 33, and the temperature inside the refrigeration box 70 is maintained. More preferably, the sorting assembly 30, the conveying assembly 40, the transferring assembly 50 and the inspection assembly 60 are all installed in the internal space of the refrigeration box 70. In this way, the vaccine 90 is in a refrigeration space before vaccination, avoiding the loss of the efficacy of the vaccine 90.
[0065] It should be understood by those skilled in the art that the above description and the embodiments of the present application shown in the drawings are only examples and do not limit the present application. The advantages of the present application have been fully and effectively realized. The functions and structural principles of the present application have been shown and described in the embodiments, and the embodiments of the present application can be any modification or change without departing from the principles.
Claims
1. Vaccine sorting apparatus for storing and providing corresponding vaccines to medical personnel, characterized in that, The vaccine sorting device comprises: a scanning device for scanning a two-dimensional code or a bar code presented by a patient; a storage assembly comprising a storage rack and at least one moving member, wherein the storage rack has a plurality of moving channels, the moving member is obliquely installed in the moving channel of the storage rack, and the moving member is used to drive the vaccine; a sorting assembly comprising: a rolling member comprising a rolling rack, a plurality of rolling pieces and a rolling driving piece, the rolling rack is arranged below the low end of the moving member, a plurality of the rolling pieces are rotatably installed on the rolling rack and are spaced apart from each other by a predetermined distance, and the rolling pieces are rotatably connected to the rolling driving piece; at least one sorting member comprising at least one detection piece, a plurality of sorting pieces and a plurality of sorting driving pieces, wherein each sorting piece is rotatably connected to one sorting driving piece, and the driving direction of the sorting piece is arranged to be away from the moving member, each sorting piece is rotatably installed between two rolling pieces, the upper surface of the sorting piece is flush with the top end of the rolling piece, and the two sides of the sorting piece are in contact with the surface of the rolling piece, and the detection piece is installed above the rolling member and the sorting piece; at least one temporary storage piece arranged in the driving direction of the sorting piece, the temporary storage piece has an access opening below the end of the sorting piece away from the moving member.
2. The vaccine sortation apparatus of claim 1, wherein, The moving member comprises a moving piece, a moving driving piece and at least one blocking plate, the moving piece is obliquely installed in the middle of the moving channel of the storage rack, the moving piece is used to drive the vaccine, the moving piece is rotatably connected to the moving driving piece, the blocking plate is fixed to the surface of the moving piece and moves around the moving piece with the movement of the moving piece, and the blocking plate blocks the moving channel into a plurality of areas and prevents the vaccine from sliding obliquely downward.
3. The vaccine sortation apparatus of claim 2, wherein, The surface of the moving piece forms a plurality of air holes, each air hole is arranged on the side of the blocking plate towards the high end of the moving piece, and the storage assembly further comprises a blowing member arranged at the low end of the moving piece and connected to the air holes, and the blowing member can blow out gas.
4. The vaccine sortation apparatus of claim 2, wherein, The vaccine sorting device further comprises a conveying assembly and a transfer assembly, the conveying assembly conveys a plurality of vaccines to a predetermined position, and the transfer assembly transfers the vaccine from the predetermined position to the moving channel of the storage rack.
5. The vaccine sortation apparatus of claim 4, wherein, The conveying assembly comprises a conveying member and a guide member, the conveying member is arranged to convey the vaccine, the guide member is installed on the conveying member and the vaccine passes through the guide member, the guide member is installed on the conveying member, the guide member forms a guide channel, the opening size of the guide channel is arranged to be smaller and smaller in the conveying direction of the conveying member, and the outlet of the guide channel is adapted to the width of the vaccine.
6. The vaccine sortation apparatus of claim 5, wherein, The guiding member has two inclined walls, the two inclined walls are oppositely arranged, the distance between the two inclined walls is set to be gradually reduced along the conveying direction, and the minimum distance between the two inclined walls is set to be adapted to the width of the vaccine.
7. The vaccine sortation apparatus of claim 5, wherein, The guiding member has two inclined walls, the two inclined walls are oppositely arranged, the distance between the two inclined walls is set to be gradually reduced along the conveying direction, and the minimum distance between the two inclined walls is set to be adapted to the width of the vaccine.
8. The vaccine sorting apparatus of claim 6 or 7, wherein, The guiding member further has a number of straight walls equal to the number of the inclined walls, one end of each of the straight walls is connected to the end of the inclined wall forming the outlet of the guiding channel, and the other end of each of the straight walls extends along the conveying direction of the conveying member.
9. The vaccine sortation apparatus of claim 5, wherein, The transfer assembly comprises a transfer assembly, a lifting member and a rotating member, the transfer assembly is arranged between the conveying member and the storage rack, the transfer assembly is drivingly connected to the lifting member for lifting, and the transfer assembly is drivingly connected to the rotating member for rotation.
10. The vaccine sortation apparatus of claim 9, wherein, The rotating member has a rotatable driving part, the transfer assembly comprises a transfer body, a first rotating part, a lifting part and a suction accessory, wherein the transfer body is rotatably mounted on the driving part, the transfer body is drivingly connected to the first rotating part for rotation, the lifting part is mounted on the end of the transfer body away from the driving part, and the suction accessory is drivingly mounted on the lower end of the lifting part and can adsorb the vaccine.