Vaccine management workstation with variable vaccine taking position

By designing a variable-location vaccine management workstation, the problem of multiple doctors simultaneously retrieving vaccines was solved, achieving flexible vaccine retrieval and space optimization, and improving the adaptability and efficiency of the workstation.

CN223521858UActive Publication Date: 2025-11-07AIA YIRONG (SHANGHAI) BIOMEDICAL TECH CO LTD
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Patent Information

Application Number
CN202423153586.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-11-07
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

The existing vaccine management workstations cannot support multiple doctors to collect vaccines at the same time, and the fixed location for collecting vaccines cannot be changed, resulting in increased space occupation and difficulties in site layout.

Method used

A vaccine management workstation with a variable vaccine retrieval location was designed, comprising a storage and retrieval main body, a vaccine dispensing component, and a retrieval position. The workstation achieves flexible vaccine retrieval through alternating transport and dispensing components, and is equipped with an orientation adjustment component and a retrieval identification component to ensure stable vaccine delivery and identification.

Benefits of technology

This system meets the needs of multiple doctors to collect vaccines simultaneously, reduces space usage, and improves the site adaptability and collection efficiency of the vaccine management workstation.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a vaccine management workstation with variable vaccine taking positions, which comprises an access main body, a vaccine sending assembly and at least one taking position, and is characterized in that the access main body is provided with at least one vaccine discharge port for discharging vaccines; the vaccine sending assembly comprises a vaccine conveying component for conveying vaccines and at least two vaccine sending units, and each vaccine sending unit comprises a plurality of conveying components and a plurality of vaccine sending components which are consistent with the conveying direction of the vaccine conveying component; the plurality of conveying components and the plurality of vaccine sending components are alternately arrayed in the conveying direction of the vaccine conveying component, so that the vaccines are conveyed in the direction deviating from the conveying direction of the conveying components through the vaccine sending components when the vaccines slide through the vaccine sending components; and the taking position is arranged at one end part in the conveying direction of part of the vaccine sending components and is used for receiving the vaccines conveyed by the vaccine sending components.
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Description

TECHNICAL FIELD

[0001] The utility model relates to vaccine management apparatus technical field especially takes the vaccine position variable vaccine management workstation. BACKGROUND

[0002] Vaccine will be loaded into vaccine box after production, in order to facilitate the storage and transportation of vaccine, simultaneously, since the bar code on the surface of vaccine box contains the information of vaccine in the box, and then the doctor only needs to scan the bar code to quickly distinguish and select the required vaccine.

[0003] In the prior art, in order to facilitate the taking of vaccine, the vaccine box containing vaccine is stored in the vaccine management workstation with specific environmental temperature, to ensure that the vaccine remains active before being taken, the doctor needs to select the required vaccine in the equipment, and then the selected vaccine can be taken out from the outlet of the vaccine management workstation.

[0004] However, since the existing vaccine management workstation cannot support multiple doctors to take the required vaccine at the same time, only by adding multiple vaccine management workstations can the requirement of multiple doctors taking vaccine at the same time be met, and since the volume of the vaccine management workstation is large, adding multiple vaccine management workstations will occupy more space, thereby causing the space to be crowded. At the same time, since the work position of the doctor taking the required vaccine from the existing vaccine management workstation cannot be changed at will, the site cannot meet the requirement of placing multiple vaccine management workstations. SUMMARY

[0005] To solve the above technical problems and achieve at least one advantage of the utility model, the utility model provides a vaccine management workstation with variable vaccine taking position, wherein the vaccine management workstation with variable vaccine taking position comprises:

[0006] An access main body, the access main body has a discharge port to discharge at least one corresponding vaccine through the discharge port;

[0007] A vaccine delivery assembly, the vaccine delivery assembly comprises a vaccine feeding member and at least two vaccine delivery units, one end of the vaccine feeding member is close to the discharge port, the vaccine feeding member is used to receive and convey the vaccine discharged from the discharge port, the vaccine delivery unit comprises a plurality of conveying members and a plurality of vaccine feeding members, the plurality of conveying members and the plurality of vaccine feeding members are arranged in an alternating manner in the conveying direction of the vaccine feeding member, the conveying direction of the plurality of conveying members is consistent with the conveying direction of the vaccine feeding member, to replace the vaccine feeding member to convey the vaccine, the conveying direction of the plurality of vaccine feeding members deviates from the conveying direction of the conveying member, the vaccine is conveyed by the plurality of conveying members in a manner that can slide over the surface of the plurality of vaccine feeding members, and the vaccine feeding member can convey the vaccine sliding over the vaccine feeding member to a direction deviating from the conveying direction of the conveying member.

[0008] At least one access position is arranged at one side of the conveying member in the conveying direction and at one end of the seedling forming member in the conveying direction, and the access position is used to receive the vaccine conveyed by the seedling forming member.

[0009] According to an embodiment of the present application, the conveying member and the seedling forming member are arranged at the same height.

[0010] According to an embodiment of the present application, the seedling forming assembly further comprises at least one posture adjusting member, the posture adjusting member comprises a pair of posture adjusting pieces and a pair of posture adjusting stabilizing pieces corresponding to the pair of posture adjusting pieces, the pair of posture adjusting pieces are arranged at the seedling conveying member in a relative manner and form a posture adjusting space for passing the vaccine between the pair of posture adjusting pieces, the posture adjusting space gradually decreases in the cross-sectional dimension in the conveying direction of the seedling conveying member, and the minimum cross-sectional dimension of the posture adjusting space formed between the pair of posture adjusting pieces matches the cross-sectional dimension in the width direction of the vaccine, and the pair of posture adjusting stabilizing pieces are respectively connected to the pair of posture adjusting pieces in a manner that the extension direction is consistent with the conveying direction of the seedling conveying member and form a posture adjusting stabilizing space between the pair of posture adjusting pieces, and the posture adjusting stabilizing space is communicated with the posture adjusting space at the minimum cross-sectional dimension.

[0011] According to an embodiment of the present application, the distance dimension between adjacent conveying members is smaller than the length dimension in the width direction of the vaccine.

[0012] According to an embodiment of the present application, the access position forms at least one access space, so that when the access position is arranged at one side of the conveying member in the conveying direction and corresponds to one end of the seedling forming member, the vaccine conveyed by the seedling forming member is received through the access space.

[0013] According to an embodiment of the present application, the seedling forming assembly further comprises a seedling taking identification piece corresponding to the access position, the seedling taking identification piece is installed near the seedling forming member close to the access position, and the seedling taking identification piece is electrically connected to the seedling forming member.

[0014] According to the utility model one embodiment, the access main body includes equipment body, at least one material placing assembly and at least one material discharging assembly, the equipment body forms the installation space and with the installation space communication The discharge port, the material placing assembly includes material placing frame body, at least one placing piece and at least one stop piece, the material placing frame body is arranged in the installation space, the seedling sending member one end is at the discharge port, at least one the placing piece is arranged in the material placing frame body in the inclined way, the placing piece forms at least one placing channel for placing at least one the vaccine, the placing channel has high end and low end, the stop piece is arranged in the placing piece, and the stop piece is located in the low end of the placing channel, when the vaccine slides to the low end of the placing channel along the placing channel due to gravity, the vaccine is prevented from sliding from the low end of the placing channel by the stop piece, the material discharging assembly is arranged in the installation space of the equipment body, so that at least one the vaccine in the placing channel is taken out from the placing channel to the seedling sending member at the discharge port by the material discharging assembly.

[0015] According to the utility model one embodiment, the low end of the placing piece is provided with at least one air hole, the material discharging assembly includes at least one air pipe corresponding to the air hole, at least one air suction piece and guide member, the guide member is arranged in the installation space and is close to the low end of the placing channel, the guide member is used to guide the vaccine falling to the guide member to the seedling sending member at the discharge port, the air suction piece is arranged near the air hole, and the air suction piece forms at least one air inlet and at least one air outlet, the air pipe forms a channel, and the two ends of the channel are communicated with the air hole and the air outlet of the air suction piece respectively.

[0016] According to the utility model one embodiment, the material placing assembly further includes at least two placing limit pieces, and the at least two placing limit pieces are oppositely installed on the placing piece, and the at least two placing limit pieces are located on both sides of the extension direction of the placing channel.

[0017] According to the utility model one embodiment, the access main body further includes at least one temperature control piece, and the temperature control piece is installed on the equipment body in a manner that can adjust the temperature in the installation space. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 A perspective view schematic diagram of one preferred embodiment of the utility model from one angle is shown.

[0019] Figure 2 A perspective view schematic diagram of another angle of one preferred embodiment of the utility model is shown, wherein part of the structure of the equipment body is removed.

[0020] Figure 3 An enlarged view of B is shown. Figure 2 An enlarged view of B is shown.

[0021] Figure 4 An enlarged view of B is shown.

[0022] Figure 5 An enlarged view of B is shown. Figure 4 An enlarged view of B is shown.

[0023] Figure 6 An enlarged view of B is shown. Figure 4 An enlarged view of B is shown.

[0024] Figure 7 An enlarged view of B is shown.

[0025] Figure 8 An enlarged view of B is shown. Figure 7 An enlarged view of B 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 orientations or positional relationships indicated by the terms "longitudinal", "lateral", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like are based on the orientations or positional relationships shown in the drawings, which are only for the purpose of facilitating the description of the present application and simplifying the description, and do not indicate or imply that the device or element 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 on 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 on the number.

[0029] Reference Figures 1 to 8, a vaccine management workstation with variable vaccine taking position according to a preferred embodiment of the present utility model will be described in detail below, wherein the vaccine management workstation with variable vaccine taking position comprises a storage and taking main body 10, a vaccine sending assembly 20 and at least one taking position 30.

[0030] Specifically, the storage and taking main body 10 has a discharge port 1102 to discharge the corresponding at least one vaccine 90 through the discharge port 1102.

[0031] The vaccine sending assembly 20 comprises a vaccine sending member 21 and at least two vaccine sending units 22. One end of the vaccine sending member 21 is close to the discharge port 1102, and the vaccine sending member 21 is used to receive and transmit the vaccine 90 discharged from the discharge port 1102. The vaccine sending unit 22 comprises a plurality of conveying members 221 and a plurality of vaccine sending members 222. The plurality of conveying members 221 and the plurality of vaccine sending members 222 are arranged in an alternating manner in the transmission direction of the vaccine sending member 21, and the transmission direction of the plurality of conveying members 221 is consistent with the transmission direction of the vaccine sending member 21, so as to replace the vaccine sending member 21 to transmit the vaccine 90. The transmission direction of the plurality of vaccine sending members 222 deviates from the transmission direction of the conveying member 221, the vaccine 90 is transmitted by the plurality of conveying members 221 in a manner that can slide over the surface of the plurality of vaccine sending members 222, and the vaccine sending member 222 can transmit the vaccine 90 sliding over the vaccine sending member 222 to a direction deviating from the transmission direction of the conveying member 221.

[0032] The taking position 30 is arranged on one side of the transmission direction of the conveying member 221, and the taking position 30 is located at one end of the transmission direction of part of the vaccine sending members 222. The taking position 30 is used to receive the vaccine 90 transmitted by part of the vaccine sending members 222. That is, when the vaccine 90 is transmitted by the plurality of conveying members 221 and slides over part of the vaccine sending members 222, the part of the vaccine sending members 222 that the vaccine 90 slides over is started to transmit the vaccine 90 sliding over the vaccine sending members 222 to the taking position 30, so that the vaccine 90 deviates from the transmission direction of the plurality of conveying members 221, and the vaccine 90 is transmitted to the taking position 30, so that the doctor at the taking position 30 can take the vaccine 90.

[0033] Preferably, the vaccine sending member 21 is implemented to comprise a conveyor belt. The conveying member 221 is implemented to comprise a roller. The vaccine sending member 222 is implemented to comprise a conveyor belt.

[0034] It can be understood that, since the plurality of conveying members 221 and the plurality of vaccine-discharging members 222 are arranged in an alternating manner in the conveying direction of the vaccine-discharging member 21, when the vaccines 90 are conveyed by the conveying members 221, the vaccines 90 will contact and slide over part of the vaccine-discharging members 222.

[0035] It should be noted that, since the conveying direction of the vaccine-discharging members 222 deviates from the conveying direction of the conveying members 221, regardless of the forward rotation and the reverse rotation of the vaccine-discharging members 222, the conveying direction of the vaccine-discharging members 222 deviates from the conveying direction of the conveying members 221, and thus the vaccines 90 conveyed by the conveying members 221 and sliding over the vaccine-discharging members 222 can be conveyed to both sides of the conveying direction of the conveying members 221 by the vaccine-discharging members 222.

[0036] As an example, the access position 30 is arranged on either side of the conveying direction of the conveying members 221, and the access position 30 is arranged at either end of the conveying direction of any part of the vaccine-discharging members 222, so that the forward rotation and the reverse rotation of the part of the vaccine-discharging members 222 over which the vaccines 90 slide can convey the vaccines 90 to the access position 30.

[0037] In a variant embodiment, when the access position 30 is implemented as two, the two access positions 30 are arranged on both sides of the conveying direction of the conveying members 221, respectively, and the two access positions 30 are arranged at the ends of the conveying direction of part of the vaccine-discharging members 222, respectively, to receive the vaccines 90 conveyed by the vaccine-discharging members 222. As a variant, the two access positions 30 can be arranged on the same side of the conveying direction of the conveying members 221.

[0038] In another variant embodiment, the access position 30 can be implemented as a plurality. The plurality of access positions 30 are arranged on both sides of the conveying direction of the conveying members 221, respectively, and the plurality of access positions 30 are arranged at the ends of the conveying direction of part of the vaccine-discharging members 222, respectively, to receive the vaccines 90 conveyed by the vaccine-discharging members 222. As a variant, the two access positions 30 can be arranged on the same side of the conveying direction of the conveying members 221.

[0039] As an example, the access sites 30 are provided in plurality, and when the vaccine 90 conveyed by the conveying member 221 is not the vaccine required by the access site 30 at the end of the conveying direction of the vaccine delivery member 222 through which the vaccine 90 slides, the vaccine delivery member 222 is in the inactivated state, and until the vaccine 90 conveyed by the conveying member 221 is the vaccine required by the access site 30 at the end of the conveying direction of the vaccine delivery member 222 through which the vaccine 90 slides, the vaccine delivery member 222 is in the activated state, and the vaccine 90 is conveyed by the vaccine delivery member 222 to the corresponding access site 30, so that the corresponding vaccine 90 can be accessed by the doctor at the access site 30.

[0040] It is worth mentioning that since the access sites 30 can be provided on both sides of the conveying direction of the conveying member 221, and the access sites 30 can be provided at any end of the conveying direction of any part of the vaccine delivery member 222 and used to receive the vaccine 90 conveyed by the vaccine delivery member 222, during the placement of the vaccine management workstation in the site, the position of the access site 30 can be changed to avoid the obstacles in the site from hindering the placement of the vaccine management workstation in the site.

[0041] That is, when the vaccine management workstation is placed in the site, and the original objects in the site hinder the placement of the vaccine management workstation, the relative position of the access site 30 relative to the vaccine delivery unit 22 can be changed to avoid the hindrance of the original objects in the site to the placement of the vaccine management workstation.

[0042] Preferably, the conveying member 221 is at the same height as the vaccine delivery member 222, so that the vaccine 90 conveyed by the plurality of conveying members 221 can be in contact with the vaccine delivery member 222, and the vaccine 90 can be conveyed by the vaccine delivery member 222 in contact with the vaccine 90.

[0043] Preferably, the vaccine delivery assembly 20 further comprises at least one posture adjusting member 23. The posture adjusting member 23 comprises a pair of posture adjusting pieces 231. A pair of the posture adjusting pieces 231 are provided in opposite ways on the vaccine delivery member 21, and a posture adjusting space 2301 for passing the vaccine 90 is formed between the pair of the posture adjusting pieces 231. The cross-sectional dimension of the posture adjusting space 2301 in the conveying direction of the vaccine delivery member 21 gradually decreases, and the minimum cross-sectional dimension of the posture adjusting space 2301 formed between the pair of the posture adjusting pieces 231 matches the cross-sectional dimension of the vaccine 90 in the width direction.

[0044] The posture adjusting member 23 further comprises a pair of posture adjusting stabilizers 232 corresponding to the pair of posture adjusting members 231. The pair of posture adjusting stabilizers 232 are respectively connected to the pair of posture adjusting members 231 in a manner that the extending direction is consistent with the conveying direction of the seedling conveying member 21, and form a posture adjusting stabilizing space 2302 between the pair of posture adjusting members 231. The posture adjusting stabilizing space 2302 is in communication with the posture adjusting space 2301 at the minimum cross-sectional dimension.

[0045] It can be understood that, during the process that the vaccine 90 conveyed by the seedling conveying member 21 passes through the posture adjusting space 2301, the vaccine 90 will slide along the posture adjusting members 231 due to the surface of the pair of posture adjusting members 231, and the end of the length direction of the vaccine 90 will enter the posture adjusting stabilizing space 2302 from the minimum dimension of the posture adjusting space 2301 in the conveying direction of the seedling conveying member 21, so that the posture adjusting stabilizers 232 adhere to the two side surfaces of the length direction of the vaccine 90 to limit the posture of the vaccine 90 after the vaccine 90 completely enters the posture adjusting stabilizing space 2302, so as to avoid the vaccine 90 from rolling in the seedling conveying member 21 or even falling out of the seedling conveying member 21 due to the length direction being perpendicular to the conveying direction of the seedling conveying member 21 during the process that the seedling conveying member 21 conveys the vaccine 90.

[0046] Preferably, the dimension between adjacent conveying members 221 is smaller than the length dimension in the width direction of the vaccine 90, so as to prevent the vaccine 90 from being unable to be continuously conveyed by the plurality of conveying members 221 due to falling between adjacent conveying members 221 in a manner that the length direction is perpendicular to the conveying direction of the conveying members 221 when the vaccine 90 is conveyed by the plurality of conveying members 221.

[0047] Preferably, the access site 30 forms at least one access space 301, so as to receive the vaccine 90 conveyed by the seedling conveying member 222 through the access space 301 when the access site 30 is arranged on both sides of the conveying direction of the conveying member 221 and corresponds to one end of the seedling conveying member 222, so as to facilitate the doctor to access the vaccine 90.

[0048] Preferably, the access space 301 is implemented as a groove.

[0049] Preferably, the seedling conveying assembly 20 further comprises a seedling identification member 24 corresponding to the access site 30.

[0050] In the present embodiment, the seed taking recognition member 24 is installed near the seed taking position 30 close to the seed producing member 222, and the seed taking recognition member 24 is electrically connected to the seed producing member 222, so that when the seed taking recognition member 24 detects a barcode of the vaccine 90 conveyed by the conveying member 221 as information of the vaccine 90 required by the doctor at the seed taking position 30 at the end of the conveying direction of the seed producing member 222 to which the seed taking recognition member 24 is electrically connected, the corresponding part of the seed producing member 222 is started to convey the vaccine 90 to the seed taking space 301 of the seed taking position 30 at the end of the conveying direction of the seed producing member 222.

[0051] As a deformable, the seed taking recognition member 24 can also be installed on the seed taking position 30 and towards the seed taking space 301, so that the seed taking recognition member 24 detects a barcode of the vaccine 90 in the seed taking space 301 to determine whether the vaccine 90 is of the type required by the doctor at the seed taking position 30.

[0052] Preferably, the seed taking recognition member 24 is implemented to include a bar code scanner.

[0053] Preferably, the access subject 10 includes a device body 11, at least one loading assembly 12 and at least one discharging assembly 13. The device body 11 forms a mounting space 1101 and the discharging port 1102 communicating with the mounting space 1101. The loading assembly 12 includes a loading rack body 121, at least one placing member 122, and at least one blocking member 123. The loading rack body 121 is arranged in the mounting space 1101. One end of the seed conveying member 21 is at the discharging port 1102. At least one placing member 122 is arranged in the loading rack body 121 in an inclined manner and forms at least one placing passage 1221 for placing at least one vaccine 90. The placing passage 1221 has a high end and a low end. The blocking member 123 is arranged on the placing member 122, and the blocking member 123 is located at the low end of the placing passage 1221, so that when the vaccine 90 slides along the placing passage 1221 to the low end of the placing passage 1221 due to gravity, the vaccine 90 is prevented from falling from the low end of the placing passage 1221 by the blocking member 123. The discharging assembly 13 is arranged in the mounting space 1101 of the device body 11, so that at least one vaccine 90 in the placing passage 1221 is taken out from the placing passage 1221 to the seed conveying member 21 at the discharging port 1102 by the discharging assembly 13.

[0054] Specifically, the low end of the placing member 122 is provided with at least one air hole 12201. The discharging assembly 13 comprises at least one air duct 131 corresponding to the air hole 12201, at least one air suction member 132 and a guiding member 133. The guiding member 133 is arranged in the installation space 1101 and close to the low end of the placing channel 1221, and is used to guide the vaccine 90 falling on the guiding member 133 to the vaccine feeding member 21 at the discharging port 1102. The air suction member 132 is arranged close to the air hole 12201, and forms at least one air suction port and at least one air outlet port. The air duct 131 forms a channel, and the two ends of the channel are communicated with the air hole 12201 and the air outlet port of the air suction member 132 respectively. Air is blown out from the air hole 12201 through the air outlet port of the air suction member 132 and the channel formed by the air duct 131 by the air suction member 132, so that the part of the vaccine 90 at the low end of the placing channel 1221 flies away from the placing member 122, and the vaccine 90 can pass over the resisting member 123 under the action of gravity, and then falls on the guiding member 133 and is guided by the guiding member 133 to fall on the vaccine feeding member 21.

[0055] Preferably, the air suction member 132 is implemented to comprise an air suction machine.

[0056] In the embodiment, the guiding member 133 is implemented to comprise a conveying belt, and one end of the guiding member 133 is above the end of the vaccine feeding member 21 close to the discharging port 1102, so that the vaccine 90 falling on the guiding member 133 can fall on the vaccine feeding member 21 under the conveying of the guiding member 133.

[0057] Preferably, the placing assembly 12 further comprises at least two placing limit members 124. The at least two placing limit members 124 are oppositely arranged on the placing member 122 and located on both sides of the extension direction of the placing channel 1221.

[0058] It is worth mentioning that, since a pair of the placement limiters 124 are arranged on both sides of the extension direction of the placement channel 1221 to limit the position of the vaccine 90 in the placement channel 1221, the vaccine 90 can not be deviated to be at the vent hole 12201 during sliding along the placement channel 1221 to the low end of the placement channel 1221; meanwhile, when the gas is blown out from the vent hole 12201 through the channel formed by the air inlet of the air suction member 132 and the venting pipeline 131, the flying direction of the vaccine 90 is limited by the pair of the placement limiters 124, so that the vaccine 90 can only fly away from the placement member 122, thereby avoiding the vaccine 90 from falling back into the placement channel 1221 due to tilting.

[0059] Preferably, the placement assembly 12 further comprises a placement sensor 125 corresponding to the placement channel 1221. The placement sensor 125 is installed on the placement member 122, and the placement sensor 125 is located at the low end of the placement channel 1221, so as to monitor whether the vaccine 90 is in the placement channel 1221 at any time through the placement sensor 125, thereby supplementing the vaccine 90 in the placement channel 1221 in time.

[0060] Preferably, the placement sensor 125 is implemented as a pressure sensor.

[0061] Preferably, the discharge assembly 13 further comprises an on-off member 134 corresponding to the venting pipeline 131. The on-off member 134 is arranged in the venting pipeline 131 in a manner that can control the opening and closing of the channel formed by the venting pipeline 131.

[0062] For example, when it is necessary to ventilate into the channel formed by the venting pipeline 131 through the air outlet of the air suction member 132, the on-off member 134 is closed first, so as to ventilate into the channel formed by the venting pipeline 131 first, so that the gas is compressed in the venting pipeline 131, and when the on-off member 134 is opened instantaneously, the gas is blown out from the vent hole 12201 at a predetermined speed, so as to prevent the situation that the vaccine 90 cannot be blown up due to being too heavy.

[0063] Preferably, the on-off member 134 is implemented as a solenoid valve.

[0064] Specifically, the access body 10 further comprises at least one temperature control member 14. The temperature control member 14 is installed on the equipment body 11 in a manner that can adjust the temperature in the installation space 1101, so as to adapt the temperature in the installation space 1101 to store the vaccine 90, thereby preventing the vaccine 90 from being inactivated.

[0065] Preferably, the temperature control member 14 is implemented to comprise a refrigeration air conditioning system.

[0066] It should be noted that when the artificial classifies and places the vaccines 90 into the corresponding placement channels 1221, the artificial needs to repeatedly scan the barcodes of the vaccines 90 to determine the corresponding placement channels 1221 into which the vaccines 90 should be placed. This operation is time-consuming, thereby causing the operation of classifying and placing the vaccines 90 into the corresponding placement channels 1221 to be time-consuming. Meanwhile, since the temperature in the installation space 1101 is relatively low, the artificial will feel unwell when staying in the installation space 1101 for a long time.

[0067] Preferably, the vaccine management equipment for dispensable vaccines further comprises a vaccine sorting and cabinet placing assembly 40. The vaccine sorting and cabinet placing assembly 40 is installed in the installation space 1101 of the equipment body 11, so as to automatically classify and place the vaccines 90 into the placement channels 1221 through the vaccine sorting and cabinet placing assembly 40.

[0068] Specifically, the vaccine sorting and cabinet placing assembly 40 comprises a sorting member 41, a conveying member 42, a cabinet placing moving member 43, and at least one information identifying assembly 44. The sorting member 41, the conveying member 42, the cabinet placing moving member 43, and the information identifying assembly 44 are all installed in the installation space 1101 of the equipment body 11. The sorting member 41 forms a delivery outlet 4101. The sorting member 41 is used to deliver the vaccines 90 from the delivery outlet 4101 in a predetermined posture. The conveying member 42 is located near the delivery outlet 4101, and the conveying member 42 is used to receive and convey the vaccines 90 delivered from the delivery outlet 4101. The cabinet placing moving member 43 is located near the conveying member 42, and the cabinet placing moving member 43 is used to suck up the vaccines 90 conveyed by the conveying member 42. The information identifying assembly 44 is located near the cabinet placing moving member 43, and the information identifying assembly 44 has a cabinet placing identifying member 441, which is used to scan and identify the information in the barcode of the vaccines 90 sucked up by the cabinet placing moving member 43. The information identifying assembly 44 is electrically connected to the cabinet placing moving member 43, so as to transmit the information in the barcode of the vaccines 90 sucked up by the cabinet placing moving member 43, which is identified by the cabinet placing identifying member 441, to the cabinet placing moving member 43, thereby facilitating the position of the placement channels 1221 corresponding to the vaccines 90, and placing the vaccines 90 into the corresponding placement channels 1221 through the cabinet placing moving member 43.

[0069] The in-cabinet moving member 43 is used to suck the vaccine 90 from the conveying member 42 and move it to the in-cabinet identification member 441, so that after the barcode of the vaccine 90 is identified by the in-cabinet identification member 441 to know the position of the placement channel 1221 corresponding to the vaccine 90, the vaccine 90 is placed into the corresponding placement channel 1221 by the in-cabinet moving member 43.

[0070] Preferably, the in-cabinet moving member 43 comprises at least one moving unit 431, at least one extension arm 432 and at least one suction box member 433. The moving unit 431 is arranged on the device body 11, and the suction box member 433 is arranged on the moving unit 431 through the extension arm 432, so that the moving unit 431 can drive the suction box member 433 to move through the extension arm 432, and the vaccine 90 is sucked from the conveying member 42 by the suction box member 433. The moving unit 431 is electrically connected to the information identification assembly 44.

[0071] As a preferred embodiment, the moving unit 431 comprises a three-axis moving mechanism.

[0072] It can be understood that after the moving unit 431 drives the suction box member 433 to move through the extension arm 432, and the vaccine 90 conveyed by the conveying member 42 is sucked by the suction box member 433, the moving unit 431 will again drive the suction box member 433 to move through the extension arm 432, so that the barcode of the vaccine 90 is directed towards the in-cabinet identification member 441 of the information identification assembly 44, and after the barcode of the vaccine 90 is scanned and identified by the in-cabinet identification member 441 to transmit information to the moving unit 431, the moving unit 431 drives the vaccine 90 sucked by the suction box member 433 through the extension arm 432 to the corresponding placement channel 1221, and the vaccine 90 is released into the corresponding placement channel 1221 by the suction box member 433, so as to complete the operation of classifying and placing the vaccine 90 into the corresponding placement channel 1221.

[0073] Preferably, the arrangement member 41 comprises a collating machine. The conveying member 42 comprises a conveyor belt. The suction box member 433 comprises a suction disc.

[0074] Preferably, the in-cabinet identification member 441 comprises a barcode scanner.

[0075] In the present embodiment, the vaccine feeding cabinet assembly 40 further comprises a pair of transmission limiting members 45. The pair of transmission limiting members 45 are oppositely arranged on the transmission member 42, and are located on both sides of the direction in which the transmission member 42 feeds the vaccine 90, so as to avoid the vaccine 90 from falling during the feeding process of the transmission member 42.

[0076] 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 deformation or modification without departing from the principles.

Claims

1. A vaccine management station with variable vaccine locations, characterized in that, The vaccine management workstation with variable vaccine taking position comprises: an access subject having a discharge port for discharging at least one corresponding vaccine through the discharge port; a vaccine dispensing assembly including a vaccine feeding member and at least two vaccine dispensing units, one end of the vaccine feeding member being close to the discharge port, the vaccine feeding member being used to receive and transfer the vaccine discharged from the discharge port, the vaccine dispensing units including a plurality of conveying members and a plurality of vaccine dispensing members, the plurality of conveying members and the plurality of vaccine dispensing members being arranged in an alternating manner in the transfer direction of the vaccine feeding member, the transfer direction of the plurality of conveying members being consistent with the transfer direction of the vaccine feeding member to replace the vaccine feeding member to transfer the vaccine, the transfer direction of the plurality of vaccine dispensing members being deviated from the transfer direction of the conveying members, the vaccine being transferred by the plurality of conveying members in a manner of sliding over the surfaces of the plurality of vaccine dispensing members, and the vaccine dispensing members being capable of transferring the vaccine sliding over the vaccine dispensing members to a direction deviated from the transfer direction of the conveying members; at least one access position being arranged on one side of the transfer direction of the conveying members and at one end of the transfer direction of part of the vaccine dispensing members, the access position being used to receive the vaccine transferred by part of the vaccine dispensing members.

2. The vaccine management station with variable vaccine location according to claim 1, characterized in that, The conveying members and the vaccine dispensing members are arranged at the same height.

3. The vaccine management station with variable vaccine location according to claim 2, characterized in that, The vaccine dispensing assembly further comprises at least one posture adjusting member including a pair of posture adjusting pieces and a pair of posture adjusting stabilizing pieces corresponding to the pair of posture adjusting pieces, the pair of posture adjusting pieces being arranged in an opposite manner on the vaccine feeding member and forming a posture adjusting space for the vaccine between the pair of posture adjusting pieces, the posture adjusting space gradually reducing in cross-sectional dimension in the transfer direction of the vaccine feeding member, and the minimum cross-sectional dimension of the posture adjusting space formed between the pair of posture adjusting pieces matching the cross-sectional dimension in the width direction of the vaccine, the pair of posture adjusting stabilizing pieces being respectively connected to the pair of posture adjusting pieces in an extending direction consistent with the transfer direction of the vaccine feeding member and forming a posture adjusting stabilizing space between the pair of posture adjusting pieces, the posture adjusting stabilizing space being in communication with the minimum cross-sectional dimension of the posture adjusting space.

4. The vaccine management station of variable vaccine location according to claim 3, wherein, The distance between adjacent conveying members is smaller than the length in the width direction of the vaccine.

5. The vaccine management station of variable vaccine location according to claim 4, wherein, The access position forms at least one access space for receiving the vaccine transferred by the vaccine dispensing members when the access position is arranged on one side of the transfer direction of the conveying members and corresponds to one end of part of the vaccine dispensing members.

6. The vaccine management station of variable vaccine location according to claim 5, wherein, The vaccine dispensing assembly further comprises a vaccine taking recognition piece corresponding to the access position, the vaccine taking recognition piece being installed near part of the vaccine dispensing members close to the access position, and the vaccine taking recognition piece being electrically connected to the vaccine dispensing members.

7. The vaccine management station of variable vaccine location according to claim 6, wherein, The access body comprises a device body, at least one loading assembly and at least one discharging assembly, the device body forms a mounting space and the discharging port communicating with the mounting space, the loading assembly comprises a loading rack body, at least one placing piece and at least one blocking piece, the loading rack body is arranged in the mounting space, one end of the seedling feeding member is located at the discharging port, at least one placing piece is arranged on the loading rack body in an inclined manner, the placing piece forms at least one placing channel for placing at least one vaccine, the placing channel has a high end and a low end, the blocking piece is arranged on the placing piece and located at the low end of the placing channel to prevent the vaccine from sliding out of the low end of the placing channel when the vaccine slides to the low end of the placing channel along the placing channel due to gravity, and the discharging assembly is arranged in the mounting space of the device body to take out at least one vaccine in the placing channel from the placing channel to the seedling feeding member at the discharging port through the discharging assembly.

8. The vaccine management station of variable vaccine location according to claim 7, wherein, The low end of the placing piece is provided with at least one air hole, the discharging assembly comprises at least one air duct corresponding to the air hole, at least one air suction piece and a guide member, the guide member is arranged in the mounting space and close to the low end of the placing channel, the guide member is used to guide the vaccine falling on the guide member to the seedling feeding member at the discharging port, the air suction piece is arranged near the air hole, and the air suction piece forms at least one air suction port and at least one air outlet, and the air duct forms a channel with two ends respectively communicating with the air hole and the air outlet of the air suction piece.

9. The vaccine management station of variable vaccine location according to claim 8, wherein, The loading assembly further comprises at least two placing limit pieces, at least two placing limit pieces are oppositely mounted on the placing piece, and at least two placing limit pieces are located on both sides of the extension direction of the placing channel.

10. The vaccine management station of variable vaccine location according to claim 9, wherein, The access body further comprises at least one temperature control piece, and the temperature control piece is mounted on the device body in a manner that can adjust the temperature in the mounting space.