Anesthetic drug preparation and treatment chamber

By designing an anesthetic drug configuration and treatment chamber, the rapid classification and use of drugs and the convenient recycling of waste bottles are achieved, which solves the inconvenience of drug identification and waste bottle recycling in anesthesia work and improves work efficiency.

CN119344883BActive Publication Date: 2025-09-30PEKING UNIVERSITY THIRD HOSPITAL (THE THIRD CLINICAL MEDICAL SCHOOL OF PEKING UNIVERSITY)
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Patent Information

Application Number
CN202411249844.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-06
Publication Date
2025-09-30
Estimated Expiration
2044-09-06

AI Technical Summary

Technical Problem

During the use of existing anesthetic drug devices, anesthesiologists need to spend time identifying drugs, and it is inconvenient to recycle waste bottles after injection, resulting in low anesthesia work efficiency.

Method used

An anesthetic drug dispensing and treatment chamber is designed, which includes a flip cover, a chamber body, a new product placement area and a waste bottle recovery area. It adopts structures such as a conveying device and a gathering plate to achieve rapid classification and retrieval of drugs and convenient recovery of waste bottles.

Benefits of technology

It improves the work efficiency of anesthesia work, makes the medicine taking quick and accurate, and the waste bottle recycling neat and efficient, reducing the labor burden.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to an anesthetic drug dispensing and treatment chamber, which belongs to the technical field of medical equipment. It includes a flip cover and a chamber body. One side of the flip cover is hinged to the chamber body. When the flip cover is opened, a new product placement area and a waste bottle recovery area are respectively provided in the chamber body. The new product placement area is provided with multiple medicine boxes, and a first partition for separating and placing new medicine bottles is arranged side by side in the medicine boxes. A feeding box is provided at the bottom of the medicine box, and a conveying device for conveying new medicine bottles is provided between the feeding box and the medicine box. The waste bottle recovery area is provided with a discharge plate, a material leakage port is provided on the discharge plate, a conveying funnel is fixed below the material leakage port, and a recovery box is provided below the conveying funnel. Both the feeding box and the recovery box can be pulled out horizontally from the side of the chamber body. The present application has the effect of speeding up the taking of anesthetic drugs and the recovery of waste bottles, thereby improving the work efficiency of anesthesia work.
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Description

Technical Field

[0001] The present application relates to the technical field of medical equipment, and in particular to an anesthetic drug dispensing treatment chamber. Background Art

[0002] The advancement of anesthesiology is inseparable from the development and use of anesthetic drugs. Currently, there are many types of anesthetic drugs with different pharmacological effects and efficacy. One of the daily focuses of clinical anesthesiologists is to skillfully use various anesthetic drugs in order to achieve the best clinical results. Before surgery, most patients need anesthesiologists to implement different anesthesia methods to reduce intraoperative pain and increase comfort. When anesthesiologists perform preoperative anesthesia on patients who need surgery, they need to use five to ten anesthetic drugs to inject them into the patient's body in sequence to anesthetize the patient.

[0003] Most anesthetic drugs only need to be stored at room temperature away from light, including local anesthetics, general anesthetics and volatile inhalation anesthetics. However, some drugs have special requirements for temperature, such as needing to be refrigerated at a temperature between 2 and 8°C or stored away from light. It is recommended to store the drugs under the guidance of a professional pharmacist.

[0004] In existing anesthetic drug devices, anesthetic bottles are generally placed in a scattered anesthetic tray. During the anesthesia operation, when different anesthetics are used for patients at different times, the anesthesiologist needs to spend time carefully identifying the type of anesthetic required for each patient, which makes the anesthesiologist spend a long time on the patient's anesthesia operation. In addition, the waste bottles of anesthetic drugs after injection need to be recycled and cannot be thrown away randomly. At this time, a separate device needs to be found for recycling. Such anesthesia work efficiency is low and the labor burden is heavy. Summary of the Invention

[0005] In order to speed up the collection of anesthetic drugs and the recycling of waste bottles and improve the efficiency of anesthesia work, this application provides an anesthetic drug configuration treatment chamber.

[0006] The anesthetic drug dispensing treatment chamber provided in this application adopts the following technical solutions:

[0007] The anesthetic drug configuration treatment chamber includes a flip cover and a chamber body. The chamber body is arranged horizontally, and one side of the flip cover is hinged to the chamber body. A new product placement area and a waste bottle recovery area are adjacently arranged in the chamber body. A plurality of medicine boxes are arranged side by side in the new product placement area, and the top covers of the medicine boxes are all missing. A plurality of first partitions are arranged in parallel at intervals in the medicine boxes, and the first partitions are slidably connected to the medicine boxes. The sliding direction of the first partitions slides back and forth in the vertical direction. A feeding box is provided at the bottom of the medicine box, and the feeding box passes through the side wall of the chamber body and is slidably connected to the chamber body, and the sliding direction is along the horizontal direction. A conveying device for conveying medicines is provided between the feeding box and the medicine box; a feeding plate is provided in the waste bottle recovery area, and the feeding plate is fixed to the chamber body, and a leakage port is opened on the feeding plate, and a baffle is slidably connected to the leakage port, and the sliding direction of the baffle is perpendicular to the leakage direction of the leakage port. A recovery box is provided at the bottom of the baffle, and the recovery box passes through the side wall of the chamber body and is slidably connected to the chamber body, and the sliding direction of the recovery box is along the horizontal direction.

[0008] By adopting the above technical solution, when the flip cover is opened, the inside of the bin can be clearly divided. One side is the part for taking out unopened new anesthetic drugs, and the other side is the part for placing recycled waste bottles. A plurality of medicine boxes are arranged side by side in the new product placement area to facilitate the placement of various commonly used types of anesthetic drugs, which are classified and placed for quick and accurate taking. A first partition is provided between two adjacent medicine bottles, making the storage more tidy and not messy. A replenishment box is also provided below the medicine box, which can replenish the drugs in the upper medicine box in real time, ensuring that the staff can take new drugs as soon as the flip cover is opened; the waste bottles after injection cannot be thrown around, and the labels on the bottles cannot be damaged, so the waste bottles after injection are directly placed on the discharge plate, and then fall from the leakage port to the recycling box below. After the staff has finished using them, they can take out the recycling box for recycling and placement. Such a setting greatly improves the work efficiency of the staff in using anesthetic drugs.

[0009] Optionally, the conveying device includes a conveyor belt, which is arranged vertically. A plurality of placement teeth are fixed on the conveyor belt at intervals. The placement teeth are arranged horizontally and have a downward protruding arc. A feeding box is fixed with a conveying tooth at one end close to the conveyor belt. The placement teeth close to the side of the feeding box pass through the bottom of the conveying tooth and convey upward. A receiving tooth is rotatably connected to the medicine box for receiving the medicine on the placement tooth.

[0010] By adopting the above technical solution, after the medicine bottles in the feeding box are placed on the conveying teeth, the placing teeth on the conveyor belt pass through the conveying teeth and transport upward, and the medicine bottles can be directly delivered to the placing teeth. During the upward transportation of the conveyor belt, the medicine bottles on the placing teeth are then interlaced with the receiving teeth and the placing teeth, so that the medicine bottles are delivered to the receiving teeth and the medicine box, thereby achieving the purpose of feeding.

[0011] Optionally, the top surface of the feeding box is missing, the side of the feeding box away from the conveyor belt is flush with the side wall of the warehouse body, and a handle is fixed thereon, and the bottom of the feeding box is rotatably connected to multiple rollers, the multiple rollers are horizontally arranged, and the direction of the rotating axis is perpendicular to the conveying direction of the conveyor belt, and the multiple rollers are synchronously transported in the direction of the conveyor belt, and the conveying teeth are highly and smoothly connected to the rollers.

[0012] By adopting the above technical solution, the feeding box can be taken out directly from the warehouse to replenish anesthetic drugs. The medicine bottles placed in the feeding box will be gradually transported one by one to the conveying teeth under the synchronous drive of multiple rollers. In this way, the medicine bottles on the conveying teeth can be transported to the medicine box through the placement teeth.

[0013] Optionally, the side of the medicine placing box close to the conveyor belt is missing, and the bottom surface is rotatably connected to a rotating rod, the receiving teeth are fixedly connected to the rotating rod, and a driving assembly for driving the rotating rod to rotate is provided in the warehouse body. When the placing teeth convey the medicine to a position close to the medicine placing box, the receiving teeth pass through the bottom of the placing teeth and rotate, and when the medicine rolls onto the medicine placing box, the receiving teeth rotate in the opposite direction.

[0014] By adopting the above technical solution, the receiving teeth can achieve the purpose of receiving the medicine bottle on the placing teeth onto the medicine box through the reciprocating rotation of the rotating rod. When the placing teeth are transferred close to the medicine box, the receiving teeth pass through the placing teeth from the bottom of the placing teeth and flip over until the medicine bottle rolls onto the medicine box. The receiving teeth then rotate back to the bottom of the placing teeth to receive the medicine bottle again.

[0015] Optionally, the bottom of the medicine box is set at a lower height on the side away from the conveyor belt than on the side close to the conveyor belt. A plurality of first cylinders are fixed to the bottom of the medicine box, and the movable ends of the first cylinders are fixed to the first partition.

[0016] By adopting the above technical solution, since there is a height difference at the bottom of the medicine box, the medicine bottles received from the receiving teeth will roll to one end under the action of gravity. At this time, the first partition gradually rises to separate the medicine bottles one by one, so as to keep the medicine box neat and tidy.

[0017] Optionally, the driving assembly includes a driven tooth and a rack, the driven tooth is fixed to the rotating rod, the rack slides relative to the warehouse body, the sliding direction of the rack is in the direction of approaching or moving away from the conveyor belt, and the driven tooth and the rack are engaged.

[0018] By adopting the above technical solution, the rack engages with the driven teeth when sliding, thereby driving the driven teeth to rotate. The rotation of the driven teeth drives the rotating rod to rotate, thereby driving the receiving teeth to rotate. The rotation of the receiving teeth facilitates the reception of new medicine bottles from the placement teeth.

[0019] Optionally, the discharge plate is slidably connected to two gathering plates, the gathering plates abut against the discharge plate, and the sliding directions of the two gathering plates are in the direction of approaching or moving away from each other. A screw assembly is provided in the bin body for driving the two gathering plates to slide simultaneously.

[0020] By adopting the above technical solution, the staff can place the waste bottles of injected anesthetics on the discharge board at will. At this time, the waste bottles may not necessarily fall from the leakage port. At this time, the two gathering plates move simultaneously to gather the waste bottles to the middle position, which is convenient for the waste bottles to fall directly for recycling. Otherwise, they will pile up on the discharge board and it will be difficult to organize them.

[0021] Optionally, the screw assembly includes a bidirectional screw and a guide rod. The bidirectional screw rotates relative to the bin body, and the rotation axis of the bidirectional screw is in the horizontal direction. The guide rod is arranged parallel to the bidirectional screw and is fixedly connected to the discharge plate. The two gathering plates are axially symmetrically arranged along the center line of the bidirectional screw. One end of the gathering plate is threadedly connected to the bidirectional screw, and the other end is slidingly connected to the guide rod.

[0022] By adopting the above technical solution, the bidirectional screw rotates to drive the two gathering plates to move at the same time. The two gathering plates move towards or away from each other at the same time under the guidance of the guide rod, thereby gathering the waste bottles to a position where they are easy to drop from the leakage port.

[0023] Optionally, a conveying funnel is fixed to the bottom of the discharge plate, the conveying funnel is arranged directly below the discharge port and above the recovery box, the cross-section of the conveying funnel is funnel-shaped, and a rubber pad is fixed to the inner wall of the conveying funnel.

[0024] By adopting the above technical solution, the conveying funnel not only facilitates the transportation of waste bottles on the discharge plate to the recycling box, but the rubber pad inside the conveying funnel can also reduce the collision and damage of the waste bottles, thereby maintaining the integrity of the waste bottles.

[0025] Optionally, a height difference is set on both sides of the bottom surface of the recovery box, and the conveying funnel is set on the side of the recovery box with a relatively higher height. A plurality of second partitions are arranged at intervals in the recovery box. The plurality of second partitions are vertically arranged and slide back and forth in the vertical direction relative to the recovery box.

[0026] By adopting the above technical solution, the waste bottles that fall into the recycling box are affected by their own gravity and roll to the side of the recycling box where the bottom plate is set at a lower height. Then the second partition is raised in sequence to separate the waste bottles. The recycling box can be taken out directly from the side wall of the warehouse relative to the warehouse body, which is convenient for the recycling and collection of waste bottles.

[0027] In summary, this application includes at least one of the following beneficial technical effects:

[0028] 1. When the staff is performing anesthesia, they can open the flip cover and take medicine directly from the medicine boxes of different categories in the new product placement area. If the medicine in the medicine box is insufficient, the supplementary medicine in the feeding box will be continuously replenished to the medicine box through the conveyor device, so that the staff can take the medicine quickly and accurately;

[0029] 2. After the injection, the waste bottles can be placed directly on the discharge board, and the two collecting boards can be used to arrange the waste bottles at different angles so that they can fall from the leakage port into the recovery box for collection and recovery. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] Figure 1 It is a schematic diagram of the overall structure of an embodiment of the present application;

[0031] Figure 2 It is a schematic diagram of the cross-sectional structure of the new product placement area;

[0032] Figure 3 To show Figure 2 Schematic diagram of the structure of part A;

[0033] Figure 4 This is a schematic diagram showing the overhead structure of the waste bottle recycling area;

[0034] Figure 5 This is a schematic diagram showing the cross-sectional structure of the waste bottle recycling area.

[0035] In the figure, 1. flip cover; 2. warehouse body; 3. new product placement area; 31. medicine box; 311. first partition; 312. first cylinder; 313. receiving tooth; 314. rotating rod; 32. feeding box; 321. conveying tooth; 322. roller; 3221. first motor; 4. waste bottle recovery area; 41. discharge plate; 411. leakage port; 4111. baffle; 4112. fourth cylinder; 412. gathering plate; 42. recovery box; 421. second partition; 4211. second cylinder; 43. conveying funnel; 5. conveying device; 51. conveyor belt; 52. placement tooth; 6. driving assembly; 61. driven tooth; 62. rack; 63. third cylinder; 7. screw assembly; 71. bidirectional screw; 72. guide rod; 73. second motor. DETAILED DESCRIPTION

[0036] The following is combined with Figures 1-4 This application is described in further detail.

[0037] The embodiments of the present application disclose an anesthetic drug dispensing treatment chamber.

[0038] refer to Figure 1The anesthetic drug configuration treatment chamber includes a flip cover 1 and a chamber body 2. The chamber body 2 is arranged horizontally. One side of the flip cover 1 is hinged to the chamber body 2, and the other side can be flipped relative to the chamber body 2 to open the inside of the chamber body 2. The chamber body 2 is provided with a corresponding password lock and an electronic display screen. The flip cover 1 can be opened only by entering the correct password, and the electronic display screen will display the corresponding anesthetic drug type and storage time. However, the password lock and electronic display screen here are existing technologies, so they will not be introduced in detail here.

[0039] refer to Figure 1 and Figure 2 , open the flip cover 1, the new product placement area 3 and the waste bottle recycling area 4 are adjacently arranged inside the warehouse body 2, and the shell part between the new product placement area 3 and the waste bottle recycling area 4 can be disassembled, which is convenient for inspecting and repairing the structure inside the warehouse body 2; a plurality of medicine boxes 31 are arranged side by side in the new product placement area 3, the top covers of the medicine boxes 31 are all missing, and a plurality of first partitions 311 are arranged in parallel at intervals inside the medicine boxes 31, and the spacing between adjacent first partitions 311 matches the diameter of the anesthetic bottle. The first partition 311 is slidably connected to the medicine box 31, and a mounting box is fixed to the bottom of the medicine box 31. A plurality of first cylinders 312 are fixed in the mounting box, and the movable end of the first cylinder 312 is fixed to the first partition 311, and the first cylinder 312 drives the first partition 311 to slide back and forth in the vertical direction.

[0040] refer to Figure 1 and Figure 2 The bottom of the medicine box 31 is provided with a feeding box 32, which passes through the side wall of the warehouse body 2 and is slidably connected to the warehouse body 2, and the sliding direction is along the horizontal direction. The outer wall of the feeding box 32 is flush with the outer wall of the warehouse body 2, and a handle is fixed on the outer wall of the feeding box 32. The staff can directly pull the handle to pull out the feeding box 32 from the side wall of the warehouse body 2; the top surface of the feeding box 32 is missing, and the side away from the handle is also missing, and a conveying tooth 321 is fixed on the end of the feeding box 32 away from the handle. The conveying tooth 321 is comb-shaped, and the conveying tooth 321 itself The comb teeth have a downward protruding arc, which can temporarily hold the new medicine bottle; the bottom of the feeding box 32 is rotatably connected to multiple rollers 322, and the multiple rollers 322 are arranged horizontally and parallel to each other. The multiple rollers 322 are synchronously driven by a conveyor chain. A first motor 3221 is fixed to the bottom of the feeding box 32, and the motor shaft of the first motor 3221 is fixed to one of the rollers 322. The first motor 3221 drives the multiple rollers 322 to synchronously convey toward the conveyor belt 51, and the conveying teeth 321 and the rollers 322 are highly and smoothly connected.

[0041] refer to Figure 1 、 Figure 2 and Figure 3A conveying device 5 is arranged between the feeding box 32 and the medicine placing box 31. The conveying device 5 includes a conveyor belt 51. The conveyor belt 51 is arranged vertically. A plurality of placing teeth 52 are fixed at intervals on the conveyor belt 51. The plurality of placing teeth 52 are parallel to each other and are all arranged horizontally. The conveyor belt 51 is close to one side of the medicine placing box 31. The placing teeth 52 themselves are also comb-shaped and are provided with a downward protruding arc. When conveying, the placing teeth 52 pass through the bottom of the conveying teeth 321, and can directly transfer the new medicine bottle on the conveying teeth 321 to the placing teeth 52, and then the placing teeth 52 follow the conveyor belt 51 to be conveyed upward.

[0042] A receiving tooth 313 is provided on the medicine box 31. The side of the medicine box 31 close to the conveyor belt 51 is missing, and the end of the bottom surface of the medicine box 31 is rotatably connected to the rotating rod 314. The rotating axis direction of the rotating rod 314 is perpendicular to the conveying direction of the conveyor belt 51 and is arranged horizontally. The receiving tooth 313 is fixedly connected to the rotating rod 314; a driving assembly 6 is provided in the warehouse body 2. The driving assembly 6 includes a driven tooth 61, a rack 62 and a third cylinder 63. The driven tooth 61 is coaxially fixed with the rotating rod 314, the third cylinder 63 is fixed to the warehouse body 2, and the movable end of the third cylinder 63 is connected to the rack 62 is fixed, the rack 62 itself is set horizontally and meshes with the driven tooth 61, and the third cylinder 63 drives the rack 62 to slide in the direction close to or away from the conveyor belt 51. When the placing tooth 52 conveys the medicine to a position close to the medicine box 31, the receiving tooth 313 passes through the bottom of the placing tooth 52 and rotates. At this time, the receiving tooth 313 receives the new medicine bottle on the placing tooth 52 onto the receiving tooth 313. When the medicine rolls onto the medicine box 31, the receiving tooth 313 rotates in the opposite direction and returns to the bottom of the next placing tooth 52, ready to repeat the flipping action.

[0043] Because there is a height difference at the bottom of the medicine box 31, the height of the side of the bottom of the medicine box 31 away from the conveyor belt 51 is lower than the height of the side close to the conveyor belt 51. The new medicine bottles that roll into the medicine box 31 will roll to one side of the medicine box 31 under the action of their own gravity, and then the corresponding first partitions 311 will be raised in turn to separate the adjacent medicine bottles, so that the new medicine bottles in the medicine box 31 can be replenished in time and kept neatly organized.

[0044] refer to Figure 4 and Figure 5The waste bottle recovery area 4 is horizontally provided with a discharge plate 41, which is fixed to the warehouse body 2, and a leakage port 411 is opened at the center of the discharge plate 41. There are two baffles 4111 horizontally at the leakage port 411, and the two baffles 4111 seal the leakage port 411. A groove is horizontally opened inside the discharge plate 41, and a fourth cylinder 4112 is fixed in the groove, and the movable end of the fourth cylinder 4112 is fixed to the baffle 4111; two gathering plates 412 are provided on the discharge plate 41, and both ends of the two gathering plates 412 are bent to the middle position to facilitate gathering the waste bottles to a suitable position. The gathering plates 412 are vertically arranged and abut against the discharge plate 41, and the two gathering plates 412 slide with the discharge plate 41.

[0045] refer to Figure 4 and Figure 5 The discharge plate 41 is provided with a screw assembly 7, which includes a bidirectional screw 71, a guide rod 72 and a second motor 73. The second motor 73 is fixed to the warehouse body 2, and the motor shaft of the second motor 73 is fixed to the bidirectional screw 71. The bidirectional screw 71 is arranged horizontally and rotates relative to the discharge plate 41. The rotation axis direction of the bidirectional screw 71 is along the horizontal direction. The guide rod 72 is parallel to the bidirectional screw 71 and is fixedly connected to the discharge plate 41. The two gathering plates 412 are axially symmetrically arranged along the center line of the bidirectional screw 71. One end of the gathering plate 412 is threadedly connected to the bidirectional screw 71, and the other end is slidingly connected to the guide rod 72.

[0046] refer to Figure 4 and Figure 5 A conveying funnel 43 is fixed to the bottom of the discharge plate 41. The conveying funnel 43 is arranged just below the discharge port 411 and above the recovery box 42. The cross section of the conveying funnel 43 is funnel-shaped, and a rubber pad is fixed to the inner wall of the conveying funnel 43, which not only facilitates the recycling of waste bottles on the discharge plate 41 into the recovery box 42 to reduce falling, but also reduces the damage to the waste bottles, because regulations require that the waste bottles and the labels on the waste bottles be kept as intact as possible to facilitate statistics and summarization by staff.

[0047] refer to Figure 4 and Figure 5The bottom of the baffle 4111 is provided with a recovery box 42, and the recovery box 42 passes through the side wall of the warehouse body 2 and can slide relative to the warehouse body 2. A handle is also fixed on the outer wall of the recovery box 42. By pulling the handle, the recovery box 42 can be directly pulled out horizontally from the warehouse body 2; the bottom surface of the recovery box 42 is provided with a height difference, that is, the bottom surface height of the end close to the conveying funnel 43 is relatively higher, and the height of the end away from the conveying funnel 43 is relatively lower. A plurality of second partitions 421 are arranged at intervals in the recovery box 42, and the plurality of second partitions 421 are arranged vertically and slide relative to the recovery box 42. The bottom of the recovery box 42 is also fixed with an installation box, and a plurality of second cylinders 4211 are fixed at intervals in the installation box. The movable end of the second cylinder 4211 is fixedly connected to the second partition 421, and the second cylinder 4211 drives the second partition 421 to slide back and forth in the vertical direction.

[0048] The staff places the waste bottles after injection on the discharge plate 41. The gathering plate 412 on the discharge plate 41 will gather the waste bottles to a suitable position for placement. At this time, the baffle 4111 is opened, and the waste bottles fall into the recovery box 42 through the conveying funnel 43. Due to the height difference set in the recovery box 42, the waste bottles will roll to the side due to their own gravity. At this time, the second partition 421 is raised to separate the waste bottles in turn. After the anesthesia work is completed, the recovery box 42 is taken out for unified recycling and sorting, which can greatly improve the efficiency of the staff's anesthesia work.

[0049] The implementation principle of the anesthetic drug configuration treatment chamber in the embodiment of the present application is as follows: when the staff performs anesthesia work, they open the flip cover 1 and can clearly see that the medicine box 31 in the new product placement area 3 is filled with medicine bottles of different categories, which can be taken according to actual needs. If there are not enough medicines in the medicine box 31, the replenishment box 32 below will replenish new medicine bottles into the medicine box 31 through the conveying device 5 in real time, and organize them at the same time. The waste bottles after the staff has finished injecting can be directly placed on the discharge plate 41 in the waste bottle recovery area 4. The gathering plate 412 on the discharge plate 41 gathers the waste bottles to a suitable placement position, and then the waste bottles pass through the conveying funnel 43 and fall into the recovery box 42. After the anesthesia work is completed, the recovery box 42 is pulled out and the waste bottles are uniformly recovered and organized, thereby improving the work efficiency of the anesthesia work.

[0050] The embodiments of this specific implementation method are all preferred embodiments of the present application and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.

Claims

1. An anesthetic drug dispensing treatment chamber, comprising a flap (1) and a chamber body (2), wherein the chamber body (2) is arranged horizontally, and one side of the flap (1) is hinged to the chamber body (2), and is characterized in that: A new product placement area (3) and a waste bottle recycling area (4) are adjacently arranged in the warehouse body (2); a plurality of medicine boxes (31) are arranged side by side in the new product placement area (3); the top covers of the medicine boxes (31) are all missing; and a plurality of first partitions (311) are arranged in parallel in the medicine boxes (31); the first partitions (311) are slidably connected to the medicine boxes (31); the sliding direction of the first partitions (311) is reciprocating in the vertical direction; the bottom of the medicine boxes (31) is A feeding box (32) is provided, the feeding box (32) passes through the side wall of the warehouse body (2) and is slidably connected to the warehouse body (2), and the sliding direction is along the horizontal direction. A conveying device (5) for conveying medicines is provided between the feeding box (32) and the medicine box (31); a feeding plate (41) is provided in the waste bottle recovery area (4), the feeding plate (41) is fixed to the warehouse body (2), and a material leakage port (411) is opened on the feeding plate (41), and the material leakage port (411) is slidably connected to the waste bottle recovery area (4). The baffle (4111) is movably connected to the baffle (4111), and the sliding direction of the baffle (4111) is perpendicular to the direction of material leakage from the leakage port (411). A recovery box (42) is provided at the bottom of the baffle (4111), and the recovery box (42) penetrates the side wall of the warehouse body (2) and is slidably connected to the warehouse body (2). The sliding direction of the recovery box (42) is along the horizontal direction. The conveying device (5) includes a conveyor belt (51), the conveyor belt (51) is vertically arranged, and a plurality of placement teeth (52) are fixed on the conveyor belt (51) at intervals. The placement teeth (52) are horizontally arranged and themselves are provided with a downwardly protruding arc. A conveying tooth (321) is fixed on one end of the feeding box (32) close to the conveyor belt (51), and the placement teeth (52) close to the side of the feeding box (32) pass through the bottom of the conveying tooth (321) and convey upward. A receiving tooth (313) for receiving medicine on the placement teeth (52) is rotatably connected to the medicine box (31).

2. The anesthetic drug dispensing and treatment chamber according to claim 1, characterized in that: The top surface of the feeding box (32) is missing, and the side of the feeding box (32) away from the conveyor belt (51) is flush with the side wall of the warehouse body (2) and is fixed with a handle. The bottom of the feeding box (32) is rotatably connected to multiple rollers (322), and the multiple rollers (322) are horizontally arranged, and the direction of their rotation axes is perpendicular to the conveying direction of the conveyor belt (51). The multiple rollers (322) are synchronously conveyed in the direction of the conveyor belt (51), and the conveying teeth (321) and the rollers (322) are highly smoothly connected.

3. The anesthetic drug dispensing and treatment chamber according to claim 2, characterized in that: The side of the medicine placing box (31) close to the conveyor belt (51) is missing, and the bottom surface is rotatably connected to a rotating rod (314), and the receiving teeth (313) are fixedly connected to the rotating rod (314). A driving assembly (6) for driving the rotating rod (314) to rotate is provided in the warehouse body (2). When the placing teeth (52) convey the medicine to a position close to the medicine placing box (31), the receiving teeth (313) pass through the bottom of the placing teeth (52) and rotate. When the medicine rolls onto the medicine placing box (31), the receiving teeth (313) rotate in the opposite direction.

4. The anesthetic drug dispensing and treatment chamber according to claim 3, characterized in that: The bottom of the medicine box (31) is arranged at a lower height on the side away from the conveyor belt (51) than on the side close to the conveyor belt (51). A plurality of first cylinders (312) are fixed to the bottom of the medicine box (31), and the movable ends of the first cylinders (312) are fixed to the first partition plate (311).

5. The anesthetic drug dispensing and treatment chamber according to claim 4, characterized in that: The driving assembly (6) includes a driven tooth (61) and a rack (62), wherein the driven tooth (61) is fixed to the rotating rod (314), and the rack (62) slides relative to the bin body (2), and the sliding direction of the rack (62) is in a direction close to or away from the conveyor belt (51), and the driven tooth (61) and the rack (62) are engaged.

6. The anesthetic drug dispensing and treatment chamber according to claim 1, characterized in that: Two gathering plates (412) are slidably connected to the discharge plate (41), and the gathering plates (412) abut against the discharge plate (41). The sliding directions of the two gathering plates (412) are in a direction of approaching or moving away from each other. A screw assembly (7) is provided in the bin body (2) for driving the two gathering plates (412) to slide simultaneously.

7. The anesthetic drug dispensing and treatment chamber according to claim 6, characterized in that: The screw assembly (7) comprises a bidirectional screw (71) and a guide rod (72). The bidirectional screw (71) rotates relative to the bin body (2), and the rotation axis direction of the bidirectional screw (71) is in the horizontal direction. The guide rod (72) is arranged parallel to the bidirectional screw (71) and is fixedly connected to the discharge plate (41). The two gathering plates (412) are arranged axially symmetrically along the center line of the bidirectional screw (71). One end of the gathering plate (412) is threadedly connected to the bidirectional screw (71), and the other end is slidably connected to the guide rod (72).

8. The anesthetic drug dispensing and treatment chamber according to claim 7, characterized in that: A conveying funnel (43) is fixed at the bottom of the discharge plate (41). The conveying funnel (43) is arranged just below the discharge port (411) and above the recovery box (42). The cross section of the conveying funnel (43) is funnel-shaped, and a rubber pad is fixed to the inner wall of the conveying funnel (43).

9. The anesthetic drug dispensing and treatment chamber according to claim 8, characterized in that: A height difference is provided on both sides of the bottom surface of the recovery box (42), and the conveying funnel (43) is provided on the side of the bottom surface of the recovery box (42) with a relatively high height. A plurality of second partitions (421) are provided at intervals in the recovery box (42), and the plurality of second partitions (421) are vertically provided and slide back and forth in a vertical direction relative to the recovery box (42).

Citation Information

Patent Citations

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