A medicine cabinet or traditional Chinese medicine dispensing cabinet
By introducing a storage cavity, sealing ring, and one-way valve into the storage structure of the traditional Chinese medicine dispensing bottle, the problem of poor sealing effect during insertion and removal of the dispensing bottle is solved, achieving better moisture protection and ease of operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- BEIJING HOLLYCON MEDICAL TECH CO LTD
- Filing Date
- 2024-04-17
- Publication Date
- 2026-07-17
AI Technical Summary
In existing technologies, dispensing bottles are easily affected by atmospheric pressure during insertion and removal, resulting in poor sealing and difficulty in insertion and removal.
A storage structure for a traditional Chinese medicine dispensing bottle was designed, including a storage cavity and a sealing ring, equipped with a one-way valve for insertion and a one-way valve for removal. The air pressure difference in the sealed space is adjusted by the valve structure to ensure that the dispensing bottle remains sealed during insertion and removal.
This technology improves the sealing effect of dispensing bottles during insertion and removal, reduces the impact of atmospheric pressure on insertion and removal, and enhances moisture protection and ease of operation.
Smart Images

Figure CN118145177B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of moisture-proof preservation technology for pharmaceuticals, specifically to a medicine cabinet or traditional Chinese medicine dispensing cabinet. Background Technology
[0002] The Chinese medicine granule dispensing bottle consists of a dispensing bottle cap and a bottle body. Each dispensing bottle contains one type of Chinese medicine granule. When dispensing, the corresponding dispensing bottle is inserted into the dispensing device to dispense the Chinese medicine granules from the dispensing bottle.
[0003] Although the ventilation of the dispensing bottle cap is poor when it is not in a dispensing state, it is far from achieving a sealing effect.
[0004] Existing technology CN216103348U discloses a moisture-proof medicine bottle for convenient dispensing of medicines, and existing technology CN208403697U discloses a medicine bottle storage cylinder and a medicine cabinet containing the same. Both can be inserted into and removed from the dispensing medicine bottle. However, a completely sealed space is formed between the two and the dispensing medicine bottle, so the insertion and removal of the dispensing medicine bottle will be affected by atmospheric pressure. Summary of the Invention
[0005] The purpose of this invention is to provide a storage structure and dispensing method for a traditional Chinese medicine dispensing bottle, in order to solve the technical problem in the prior art where a sealing device or a medicine bottle storage cylinder forms a completely sealed space with the dispensing bottle, which is difficult to insert or remove due to atmospheric pressure.
[0006] To solve the above technical problems, a storage structure for a traditional Chinese medicine dispensing bottle includes:
[0007] A storage cavity, wherein the front end of the storage cavity is open to allow a dispensing bottle to be inserted into the storage cavity;
[0008] A sealing ring is fixedly installed on the inner wall of the storage cavity. The sealing ring can make close contact with the outer wall of the bottle body or dispensing bottle cap to form a sealed space that seals the dispensing bottle.
[0009] As a preferred embodiment of the present invention, a valve structure is installed on the rear side of the storage cavity. During the insertion or removal of the bottle, the valve structure can be opened to reduce the pressure difference between the sealed space and the outside.
[0010] As a preferred embodiment of the present invention, the valve structure is configured as a bottle insertion check valve and a bottle removal check valve fixedly installed at the rear end of the storage cavity.
[0011] When the pressure difference between the storage chamber and the outside is greater than the opening threshold of the bottle insertion check valve, the bottle insertion check valve is in the open state to discharge the gas in the storage chamber to the outside.
[0012] When the pressure difference between the external environment and the storage chamber is greater than the opening threshold of the bottle-pulling check valve, the bottle-pulling check valve is in the open state to input gas into the storage chamber.
[0013] As a preferred embodiment of the present invention, the bottle insertion one-way valve is attached and fixed to the outside of the storage cavity, and the bottle removal one-way valve is attached and fixed to the inside of the storage cavity.
[0014] As a preferred embodiment of the present invention, the inner wall of the storage cavity is recessed outward to form an annular groove, which is used to place the sealing ring.
[0015] As a preferred embodiment of the present invention, the inner ring wall of the sealing ring is provided with at least two layers of sealing rings, and all of the sealing rings can be in close contact with the outer wall of the bottle body or the regulator cap to improve the sealing effect.
[0016] As a preferred embodiment of the present invention, the end of the slot extends rearward and is provided with a threaded portion, the threaded portion being provided with an internal thread;
[0017] The threaded portion is connected to a tail cap, and both the bottle insertion check valve and the bottle removal check valve are located on the tail cap;
[0018] The front end of the tail cap can abut against the sealing ring.
[0019] As a preferred embodiment of the present invention, the circumferential wall of the tail cap is provided with a plurality of raised anti-slip textures.
[0020] This invention also provides a method for dispensing traditional Chinese medicine, using a traditional Chinese medicine dispensing cabinet, which includes multiple storage structures, comprising the following steps:
[0021] Enter the name of the medicine to be dispensed through the human-computer interaction panel to find the location of the corresponding storage cavity in the Chinese medicine dispensing cabinet;
[0022] Remove the corresponding dispensing bottle from the storage chamber and insert it into the dispensing device for dispensing;
[0023] After the medicine has been dispensed, insert the dispensing bottle back into the corresponding storage cavity;
[0024] Repeat the above steps to adjust the required medicinal materials in the prescription in sequence.
[0025] Compared with the prior art, the present invention has the following advantages:
[0026] The present invention designs the medicine compartment to form a sealed space that seals the bottle cap when the medicine bottle is inserted. The medicine compartment is equipped with a one-way valve for inserting and removing the bottle for allowing air to enter and exit the sealed space. This allows the medicine bottle cap to be sealed when the medicine bottle is inserted into the medicine compartment, and reduces the influence of atmospheric pressure when inserting or removing the medicine bottle. Attached Figure Description
[0027] To more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are merely exemplary, and those skilled in the art can derive other embodiments based on the provided drawings without creative effort.
[0028] Figure 1 This is a schematic diagram of the structure of the medicine cabinet in this invention when it is filled with dispensing medicine bottles;
[0029] Figure 2 This is a schematic diagram of the medicine cabinet in this invention when no dispensing bottles are inserted;
[0030] Figure 3 This is a schematic diagram of the main frame and circuit board in this invention;
[0031] Figure 4 This is a schematic diagram of the disassembled structure of the Chinese medicine compartment in this invention;
[0032] Figure 5 This is a schematic diagram of the structure of two adjacent drug compartments being connected in this invention;
[0033] Figure 6 for Figure 5 Rear view diagram;
[0034] Figure 7 This is a schematic diagram of the structure when the drug compartment at the edge is connected to the main frame in this invention;
[0035] Figure 8 for Figure 7 A top view of the medicine rack after the upper half has been removed;
[0036] Figure 9 This is a schematic diagram of the gap between adjacent drug compartments in this invention;
[0037] Figure 10 This is a schematic cross-sectional view of the medicine compartment in this invention;
[0038] Figure 11 This is a schematic diagram of the structure of the dispensing bottle when it is inserted to the deepest point in the medicine compartment in this invention;
[0039] Figure 12 for Figure 11An enlarged schematic diagram of part A in the middle;
[0040] Figure 13 This is a schematic diagram of the structure of the dispensing bottle when it just comes into contact with the sealing ring in this invention;
[0041] Figure 14 This is a schematic diagram of the structure of a conventional medicine cabinet in this invention.
[0042] The labels in the diagram represent the following:
[0043] 1-Medicine compartment, 2-Sealing ring, 3-Dispensing bottle cap, 4-Dispensing medicine bottle, 5-Sealed space, 6-Insertion check valve, 7-Removal check valve, 8-Slot, 9-Sealing ring, 10-Threaded part, 11-Tail cap, 12-Main frame, 13-Positioning plate, 14-Insertion block, 15-Insertion hole, 16-Strip slot, 17-Rack and pinion, 18-Square steel tube, 19-Aluminum profile, 20-Indicator light, 21-Circuit board, 22-Gap, 23-Storage cavity, 24-External curtain, 25-Electrical control box, 26-Back panel. Detailed Implementation
[0044] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0045] like Figures 10-13 As shown, the present invention specifically provides a storage structure for a traditional Chinese medicine dispensing bottle, comprising:
[0046] Medicine compartment 1 (medicine compartment 1 is a solid structure forming storage cavity 23), medicine compartment 1 has a storage cavity 23 with a circular cross section, and the front end of medicine compartment 1 is open (i.e. one end of storage cavity 23 is open) for inserting dispensing medicine bottle 4.
[0047] A sealing ring 2 is fixedly installed on the inner wall of the medicine compartment 1. The sealing ring 2 can make close contact with the outer wall of the bottle body or dispensing bottle cap 3 to form a sealed space 5 for sealing the dispensing medicine bottle 4.
[0048] The principle behind using the above-described storage structure to seal and store the dispensing medicine bottle 4 is as follows:
[0049] The sealing ring 2 fits tightly against the smooth body of the dispensing bottle 4 or the smooth outer wall of the dispensing bottle cap 3, preventing the exchange of air and moisture inside and outside the sealing ring 2. A sealed space 5 is formed between the sealing ring 2 and the rear end of the medicine compartment 1. The dispensing bottle cap 3 of the dispensing bottle 4 is located in this sealed space 5, which can achieve the effect of sealing and preventing moisture.
[0050] This invention offers better moisture protection compared to existing medicine cabinets, for the following reasons:
[0051] Each medicine compartment 1 corresponds to a dispensing medicine bottle 4. When dispensing, simply pull the dispensing medicine bottle 4 corresponding to the medicine to be dispensed out of the medicine compartment 1, and then put the dispensing medicine bottle 4 into the dispensing device for dispensing.
[0052] The dispensing bottles 4 that are not used in this dispensing process are always inserted in the medicine compartment 1 and kept sealed to reduce the number of dispensing bottles 4 exposed to air during a single dispensing process.
[0053] Meanwhile, during the dispensing process, once a medicinal material has been dispensed, the dispensing bottle 4 can be immediately inserted back into the medicine compartment 1, shortening the time that the dispensing bottle 4 is exposed to air during a single dispensing process.
[0054] That is, the moisture-proof effect is improved by reducing the number of dispensing bottles 4 exposed during dispensing and the exposure time.
[0055] This invention is simpler in structure and easier to use than existing medicine cabinets, for the following reasons:
[0056] Through ingenious design, this invention enables the medicine bottle 4, the sealed object, to work with the medicine compartment 1 and the sealing ring 2 to form a sealed environment. The medicine bottle 4 is both the sealed object and one of the components that create the sealed environment, making the structure more streamlined.
[0057] Furthermore, the formation or dissolution of the sealed environment depends entirely on the insertion or removal of the dispensing bottle 4 from the medicine compartment 1. That is, the action of inserting the dispensing bottle 4 into the medicine compartment 1 in this invention is equivalent to the two actions of placing the dispensing bottle 4 into the medicine cabinet and then closing the outer curtain in a traditional medicine cabinet, making the usage steps much simpler.
[0058] Furthermore, during the bottle insertion process, after the sealing ring 9 comes into close contact with the outer wall of the bottle body or the dispensing bottle cap 3, it prevents the exchange flow between the storage cavity 23 and the outside gas.
[0059] At this point, a problem arises:
[0060] If the dispensing bottle 4 is not inserted further into the storage space 23, it is very easy for the dispensing bottle 4 to move outward and lose contact with the sealing ring 2 when affected by factors such as cabinet vibration.
[0061] If the medicine bottle 4 is inserted further inward, the gas in the sealed space 5 will be gradually compressed. On the one hand, the compressed gas will create resistance to the insertion action.
[0062] On the other hand, even if the resistance generated by compressed air is forcibly overcome by human force and the dispensing bottle 4 is inserted deep into the storage cavity 23, the air pressure in the sealed space 5 will become very high. When the person releases the dispensing bottle 4, the strong air pressure will overcome the friction between the dispensing bottle 4 and the sealing ring 2 and push the dispensing bottle 4 outward.
[0063] The present invention takes the following measures to overcome the above problems:
[0064] A valve structure is installed on the rear side of the medicine compartment 1. During the insertion or removal of the bottle, the valve structure can be opened to reduce the pressure difference between the sealed space 5 and the outside.
[0065] Specifically, the valve structure can be configured as follows:
[0066] A through hole is provided at the rear end of the medicine compartment 1, and a removable rubber plug is installed in the through hole.
[0067] When inserting or removing the bottle, remove the rubber stopper to allow outside air to communicate with the sealed space 5; after inserting the dispensing bottle 4 into the medicine compartment 1, insert the rubber stopper into the through hole to block the flow and exchange of air between the sealed space 5 and the outside.
[0068] Furthermore, based on the valve mechanism, to simplify the bottle insertion and removal actions, the valve structure is configured as follows:
[0069] A bottle insertion check valve 6 is fixedly installed at the rear end of the medicine compartment 1. When the pressure difference between the storage chamber 23 and the outside is greater than the opening threshold of the bottle insertion check valve 6, the bottle insertion check valve 6 is in the open state to discharge the gas in the storage chamber 23 to the outside.
[0070] Not only can the dispensing bottle 4 be inserted deep into the storage cavity 23, preventing the dispensing bottle 4 from easily detaching from the sealing ring 2, but it can also reduce the resistance of the insertion action, achieving the purpose of saving effort in inserting the bottle.
[0071] Furthermore, considering that if the air pressure in the sealed space 5 is low after the bottle is inserted and the dispensing bottle 4 is inserted deeply, the air pressure in the sealed space 5 will continue to decrease during the process of pulling out the dispensing bottle 4, forming a negative pressure and creating resistance to the bottle pulling action.
[0072] To this end, the present invention also fixes a bottle-pulling one-way valve 7 at the rear end of the medicine compartment 1. When the pressure difference between the outside and the storage cavity 23 is greater than the opening threshold of the bottle-pulling one-way valve 7, the bottle-pulling one-way valve 7 is in the open state to input gas into the storage cavity 23, thereby achieving the purpose of saving effort in bottle removal.
[0073] Specifically, the bottle insertion one-way valve 6 is attached to the outside of the tail cap 11, and the bottle removal one-way valve 7 is attached to the inside of the tail cap 11. Both are fixed by adhesive bonding.
[0074] Furthermore, in order to ensure that the sealing ring 2 can remain tightly attached to the dispensing bottle 4 while preventing the dispensing bottle 4 from moving the sealing ring 2 when it is inserted or removed, the following design was made for the installation of the sealing ring 2:
[0075] The inner wall of the medicine compartment 1 is recessed outward to form an annular groove 8, which is used to place the sealing ring 2.
[0076] When the dispensing bottle 4 tries to move the sealing ring 2 using friction, the slot 8 can act as a limit, preventing the sealing ring 2 from moving with the dispensing bottle 4 to the front or rear of the medicine compartment 1.
[0077] Furthermore, at least two layers of sealing rings 9 are provided on the inner ring wall of the sealing ring 2, and multiple sealing rings 9 can make close contact with the outer wall of the bottle body or the dispensing bottle cap 3 to improve the sealing effect.
[0078] Furthermore, to facilitate the installation and replacement of the sealing ring 2, the present invention has the following design:
[0079] The end of the slot 8 extends rearward and is provided with a threaded portion 10, which is provided with an internal thread.
[0080] The threaded part 10 is connected to the tail cap 11, and the bottle insertion check valve 6 and the bottle removal check valve 7 are both provided on the tail cap 11.
[0081] The front end of the tail cap 11 can abut against the sealing ring 2. That is, the end face of the tail cap 11 serves as a component surface of the slot 8. The sealing ring 2 can be easily installed and replaced simply by loosening and removing the tail cap 11.
[0082] Meanwhile, the removable tail cap 11 also facilitates cleaning of the storage chamber 23 of the medicine compartment 1.
[0083] like Figures 1-3 As shown, in order to solve the above-mentioned technical problems, the present invention further provides a traditional Chinese medicine dispensing cabinet, including a rectangular main frame 12, in which a plurality of the above-mentioned storage structures are arranged in a matrix.
[0084] Adjacent medicine compartments 1 need to be connected and fixed in a certain way, as well as between medicine compartment 1 and the main frame 12, so as to make medicine compartment 1 neatly arranged and to prevent medicine compartment 1 from falling off the main frame 12.
[0085] There are various ways to fix it, such as screw fixing, clip fixing, clamp fixing, etc.
[0086] like Figures 4-8As shown, in this invention, the device is fixed by insertion and limiting, specifically as follows:
[0087] Rectangular positioning plates 13 are connected to the outer walls on both the front and rear sides of the medicine compartment 1;
[0088] The side of the positioning plate 13 is provided with a plug 14 or a socket 15 so that adjacent medicine compartments 1 can be plugged into each other, and the medicine compartments 1 at the edge are plugged into the strip slots 16 on the frame.
[0089] For example, the medicine compartment 1, which is not connected to the main frame 12, can have insert blocks 14 on the left and lower sides of the positioning plate 13, and insert holes 15 on the upper and right sides.
[0090] When assembling the medicine cabinet, first fix and splice the lower, left and right frames, then install the medicine compartments 1 in order from bottom to top, so that adjacent medicine compartments 1 can be inserted into each other, and the medicine compartments 1 on the edge can be inserted into the strip slots 16 on the main frame 12. Finally, install the top frame and clamp and fix multiple medicine compartments 1 in the rectangular main frame 12.
[0091] It should be noted that since there are insert blocks 14 on both the front and rear positioning plates 13, each side of the main frame 12 should be provided with two parallel strip slots 16.
[0092] The medicine cabinet of this invention achieves excellent moisture-proof effect without the need to install or use external door curtain 24, moisture-proof equipment, electrical control box 25 and other related auxiliary equipment. It has a simple and thin structure and a small size.
[0093] Furthermore, when a drug compartment 1 is within the frame, its degrees of freedom in the up, down, left, and right directions are all constrained. Therefore, it is necessary to constrain the degrees of freedom in the front-back direction of the drug compartment 1. This invention employs the following method:
[0094] The inner wall of the insertion hole 15 on the front positioning plate 13 and the edge of the insertion block 14 are provided with protruding toothed racks 17 to prevent adjacent medicine compartments 1 from being misaligned.
[0095] Furthermore, the main frame 12 is composed of several square steel tubes 18 and aluminum profiles 19 connected together, and the strip slots 16 are provided on the aluminum profiles 19.
[0096] For aesthetic and safety reasons, side panels can be connected to the outside of the main frame 12 by screws, and the main frame 12 and the medicine compartment 1 inside can be covered by the side panels.
[0097] Furthermore, since a medicine cabinet contains hundreds of medicine compartments 1, in order to accurately locate the required dispensing bottle 4 during dispensing, the present invention adopts the following measures:
[0098] Each medicine compartment 1 has an indicator light 20 on its front positioning plate 13;
[0099] A circuit board 21 is fixedly installed on one or more side walls of the main frame 12, and each indicator light 20 is connected to the circuit board 21 on the nearby side via a wire.
[0100] The Chinese medicine dispensing cabinet is also equipped with a human-computer interaction panel. The human-computer interaction panel is equipped with a virtual medicine compartment 1 position model with software components, and the virtual medicine compartment 1 corresponds one-to-one with the medicine compartment 1 in the main frame 12.
[0101] When the operator selects dispensing medicine bottle 4 through the human-computer interaction panel, the indicator light 20 of the corresponding physical medicine compartment 1 lights up to accurately indicate the location of the selected dispensing medicine bottle 4.
[0102] Furthermore, traditional medicine cabinet wiring is routed on the back of the cabinet. To protect the cables, a back panel 26 needs to be installed on the back of the cabinet to prevent human touch and to keep the visual appearance neat.
[0103] However, the presence of the backplate 26 not only increases costs but also hinders the installation and removal of the sealing cap. Therefore, based on the drug compartment 1, this invention further optimizes the wiring method of the wires, as follows:
[0104] like Figure 9 As shown, the distance between any two opposite sides of the positioning plate 13 is greater than the diameter of the medicine compartment 1. When two adjacent medicine compartments 1 are inserted together, there is a gap 22 between the adjacent medicine compartments 1 for the wire to pass through.
[0105] The present invention further provides a method for dispensing traditional Chinese medicine, using the above-mentioned traditional Chinese medicine dispensing cabinet, comprising the following steps:
[0106] Enter the name of the medicine to be dispensed through the human-computer interaction panel to find the location of the corresponding medicine compartment 1 in the Chinese medicine dispensing cabinet;
[0107] Remove the corresponding dispensing bottle 4 from the medicine compartment 1 and insert it into the dispensing device for dispensing;
[0108] After the medicine has been dispensed, insert the dispensing bottle 4 back into the corresponding medicine compartment 1;
[0109] Repeat the above steps to adjust the required medicinal materials in the prescription in sequence.
[0110] When dispensing, simply pull the dispensing bottle 4 corresponding to the medicinal material to be dispensed out of the medicine compartment 1, and then put the dispensing bottle 4 into the dispensing device for dispensing.
[0111] The dispensing bottles 4 that are not used in this dispensing process are always inserted in the medicine compartment 1 and kept sealed to reduce the number of dispensing bottles 4 exposed to air during a single dispensing process.
[0112] Meanwhile, during the dispensing process, once a medicinal material has been dispensed, the dispensing bottle 4 can be immediately inserted back into the medicine compartment 1, shortening the time that the dispensing bottle 4 is exposed to air during a single dispensing process.
[0113] That is, the moisture-proof effect is improved by reducing the number of dispensing bottles 4 exposed during dispensing and the exposure time.
[0114] The above embodiments are merely exemplary embodiments of this application and are not intended to limit this application. The scope of protection of this application is defined by the claims. Those skilled in the art can make various modifications or equivalent substitutions to this application within its substance and scope of protection, and such modifications or equivalent substitutions should also be considered to fall within the scope of protection of this application.
Claims
1. A traditional Chinese medicine dispensing cabinet, characterized in that, It includes a rectangular main frame (12) and several drug compartments (1) arranged in a matrix within the main frame (12); Positioning plates (13) are connected to the outer walls at both ends of the medicine compartment (1). Insertion blocks (14) or insertion holes (15) are provided on the side of the positioning plates (13) so that adjacent medicine compartments (1) can be inserted into each other through the insertion blocks (14) and the insertion holes (15). The inner side of the main frame (12) is provided with a strip slot (16), and the positioning plate (13) of the medicine compartment (1) located at the edge in the matrix arrangement is inserted and fixed to the strip slot (16) on the main frame (12). The medicine compartment (1) includes a storage cavity (23) with a circular cross-section, and the front end of the storage cavity (23) is open for insertion of the front end of the dispensing bottle (4). When the dispensing bottle (4) is inserted into the front end of the storage cavity (23), the inner wall of the medicine compartment (1) and the outer wall of the dispensing bottle (4) together form an independent sealed space (5), and the dispensing bottle cap (3) of the dispensing bottle (4) is located inside the sealed space (5). The medicine compartment (1) includes a bottle insertion check valve (6) for venting gas into the sealed space (5) and a bottle removal check valve (7) for venting gas into the sealed space (5); during the insertion process, the bottle insertion check valve (6) opens to vent the gas in the sealed space (5) to the outside; during the removal process, the bottle removal check valve (7) opens to input gas into the sealed space (5).
2. The traditional Chinese medicine dispensing cabinet according to claim 1, characterized in that, A sealing ring (2) is fixedly provided on the inner wall of the medicine compartment (1), and the sealing ring (2) is used to make close contact with the body of the dispensing medicine bottle (4) or the outer wall of the dispensing bottle cap (3).
3. The traditional Chinese medicine dispensing cabinet according to claim 2, characterized in that, The inner wall of the medicine compartment (1) is recessed outward to form an annular groove (8), which is used to place the sealing ring (2).
4. The traditional Chinese medicine dispensing cabinet according to claim 3, characterized in that, The end of the slot (8) extends rearward and is provided with a threaded part (10), and the threaded part (10) is screwed with a tail cap (11), and the front end face of the tail cap (11) abuts against the sealing ring (2). Both the bottle insertion check valve (6) and the bottle removal check valve (7) are installed on the tail cap (11).
5. The traditional Chinese medicine dispensing cabinet according to claim 3, characterized in that, The inner ring wall of the sealing ring (2) is provided with at least two layers of sealing rings (9), and all of the sealing rings (9) can be in close contact with the outer wall of the bottle body or the dispensing bottle cap (3).
6. The traditional Chinese medicine dispensing cabinet according to claim 1, characterized in that, The inner wall of the insertion hole (15) and the edge of the insertion block (14) on the positioning plate (13) at the front end are provided with protruding toothed racks (17) to constrain and prevent the adjacent medicine compartments (1) from being misaligned.
7. The traditional Chinese medicine dispensing cabinet according to claim 1, characterized in that, Each of the medicine compartments (1) has an indicator light (20) on the positioning plate (13) on the front side, and a circuit board (21) is fixedly installed on at least one side wall of the main frame (12). Each indicator light (20) is electrically connected to the circuit board (21) on the near side through a wire.
8. The traditional Chinese medicine dispensing cabinet according to claim 7, characterized in that, The distance between any two opposite sides of the positioning plate (13) is greater than the diameter of the medicine compartment (1). When two adjacent medicine compartments (1) are inserted together, a gap (22) is formed between the adjacent medicine compartments (1) for the wire to pass through.
9. The traditional Chinese medicine dispensing cabinet according to claim 1, characterized in that, The main frame (12) is made up of several square steel pipes (18) and aluminum profiles (19), and the strip slot (16) is set on the aluminum profile (19).