Self-closing countable shading medicine storage device
The self-closing, countable, light-proof medicine storage device solves the problems of inconvenience in self-closing, difficulty in counting, and drop and collision prevention in medicine storage, and realizes safe and efficient storage and counting of medicines, which is suitable for a variety of places of use.
Patent Information
- Application Number
- CN202520461879.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-17
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-03-17
AI Technical Summary
Existing light-proof medicine storage boxes have problems such as inconvenient self-closing, difficulty in counting medicines, insufficient drop and collision protection, and functional partitions that are not adapted to the needs of different usage locations.
A self-closing, countable, light-proof medicine storage device was designed. It adopts a light-proof box cover and a flip-top structure, combined with a weighing base and a partition plate to achieve automatic closing and rapid counting. The device also improves its drop and collision resistance through cushioning materials and anti-slip design, and the partition plate enables functional zoning.
It effectively reduces the risk of drug deterioration and damage due to light exposure, simplifies the drug statistics process, adapts to the needs of different usage locations, and improves the safety and efficiency of drug storage.
Smart Images

Figure CN223836100U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of drug storage, specifically a self-closing, countable, light-proof drug storage device. Background Technology
[0002] The statements in this section are merely background information relating to this disclosure, and these statements may constitute prior art. In the process of developing this utility model, the inventors discovered at least the following problems in the prior art.
[0003] In hospital pharmacies, many medications are explicitly required to be stored away from light or shielded from light. This is especially true for many injectable medications that require light protection, necessitating the use of opaque containers for packaging or storage. In practice, it is often necessary to remove some of the outer packaging of these medications in advance and store them in dedicated light-proof boxes to meet the high-frequency daily medication dispensing needs. While storing these medications after removing their original packaging improves dispensing efficiency to some extent, it also increases the risks of spoilage, damage, and inventory difficulties due to unsuitable storage environments. Through preliminary research, the inventor discovered that most common light-proof medicine boxes on the market are ordinary plastic boxes, consisting of a box body and a hinged or push-button lid, with the box body made of a black, rigid material.
[0004] The inventors discovered in their practical work that such light-proof boxes for storing medicines have the following main drawbacks:
[0005] 1. Self-closing issue:
[0006] Most existing drug storage light-proof boxes do not close automatically. After medication is removed, it is inconvenient for pharmacists to close the lid, or they may easily forget to do so (especially during busy periods), leading to prolonged exposure of the medication to light and increasing the risk of spoilage. Furthermore, products like the "Drug Light-Proof Storage Box" in patent application number 201922426860.2, where the lid is hinged to the edge of the box, expose all medications inside to light when opened. If not closed promptly or forgotten, this further increases the risk of spoilage.
[0007] 2. Difficulty in calculating the quantity of medicines:
[0008] Because the medications are broken down and scattered in light-proof boxes, it's difficult to visually identify the quantity when they're piled up. This forces pharmacists to manually remove and count each medication from the box during inventory checks, which is extremely inconvenient and increases their workload. Without quantity tracking, there's a risk of excessive medication removal and prolonged storage, leading to expiration. Furthermore, inventory management is complex and cumbersome; emptying medications during inventory not only increases the risk of breakage but also extends their exposure to light, increasing the risk of spoilage, thus presenting certain limitations.
[0009] 3. Lacks drop and collision protection design:
[0010] Since medicine light-proof boxes are usually placed on medicine shelves at a certain height for pharmacists to reach, and are mostly made of hard plastic, there is a high risk of damage to the box itself and the medicines inside if it is accidentally dropped. In addition, because the inside of the box is also made of hard plastic, it is easy for injectable medicines to be damaged by collisions during the unpacking process.
[0011] 4. Functional partitioning issues:
[0012] Existing light-proof boxes, due to their varying usage locations, cannot simultaneously meet the needs of different environments with their standardized functional zoning. Some environments, such as clinical use, require storing a large number of different medications, and their complex zoning and numerous compartments make them unsuitable for pharmacies storing single-item medications. Conversely, some scenarios, such as the commonly used large-compartment light-proof box in pharmacies, have overly simplistic zoning and cannot meet the need for storing single-item medications by batch number when multiple batches exist.
[0013] In addition, when the number of medicines in the light-proof box is small, if the storage compartment is too large, the medicines (especially glass tube injections) may be easily bumped when being taken out, increasing the risk of breakage. Summary of the Invention
[0014] In view of the above problems, the purpose of this utility model is to solve some of the problems in the prior art, or at least alleviate these problems.
[0015] A self-closing, countable, light-shielding medicine storage device includes a light-shielding box body and a flip-top; it also includes a light-shielding lid; the lower end of the lid's box wall is clearance-fitted with the upper end of the box wall's box body, or is positioned and connected; the middle of the side wall of the lid is symmetrically provided with arc-shaped protrusions; the flip-top includes a rotating part located in the middle and two light-shielding baffles symmetrically arranged relative to the rotating part, which can block the medicine dispensing opening of the lid when closed; the arc-shaped protrusions of the lid are connected to the rotating part of the flip-top through a connector, enabling the light-shielding baffles to self-close when no external force is applied.
[0016] Optionally, the connector is a positioning rod; the arc-shaped protrusion of the box cover is connected to the positioning rod; the center of the rotating part is provided with a through hole adapted to the positioning rod, and the positioning rod passes through the through hole.
[0017] Optionally, the connector includes a rotating shaft and a return spring; the rotating shaft passes through the middle of the rotating part and is fixedly connected thereto, with its two ends located in the grooves of the arc-shaped protrusion of the lid, which can drive the flip cover to rotate relative to the lid; the return spring is located between the two ends of the rotating shaft and the arc-shaped protrusion of the lid, and is used to reset the flip cover through the rotating shaft when the light-shielding baffle is not subjected to external force.
[0018] Furthermore, the light-shielding baffle is provided with an outwardly protruding isolation block; the isolation block is located at the end of the light-shielding baffle that is away from the rotating part.
[0019] The self-closing, countable, light-proof medicine storage device also includes a weighing base located at the lower end of the box.
[0020] Furthermore, the bottom of the weighing base is provided with an adsorption component or an anti-slip component; the front end of the weighing base is provided with a display screen.
[0021] The self-closing, countable, light-shielding medicine storage device also includes a partition plate; at least one set of slots are symmetrically arranged on the inner wall of the box body, and the partition plate can slide into the slots; the horizontal orientation of the partition plate is consistent with the horizontal orientation of the connector; the height of the box lid is greater than or equal to the width of the light-shielding baffle of the flip-top.
[0022] Preferably, the partition is inverted L-shaped; the inner and outer walls of the box body, the partition, the lid, and the flip-top are all made of cushioning plastic.
[0023] Optionally, the upper wall of the box body is fitted with the lower wall of the box lid through a ring strip.
[0024] Preferably, the ring strip is located on the outer edge of the upper wall of the box body.
[0025] This utility model has the following beneficial effects:
[0026] 1. This application, through the design of the lid and flip-top, effectively blocks light during and after medication dispensing, preventing exposure to the medications. Furthermore, the addition of a weighing base at the bottom of the box allows for quick counting of the stored medications without removing them one by one, significantly reducing the risk of spoilage due to light exposure. The weighing base also greatly reduces the workload for pharmacists during routine dispensing and month-end inventory checks.
[0027] 2. To improve drop and collision resistance and reduce the risk of drug breakage, this application uses black soft cushioning for the box body, lid, flip cover, and dividers. This not only prevents the box from breaking upon impact, thus avoiding spillage and damage to the drugs, but the internal cushioning plastic also effectively protects the drugs, reducing the risk of breakage due to collisions. Furthermore, the return spring in embodiment 2 of the flip cover ensures that the flip cover remains closed after the box is tipped over or dropped, further protecting the drugs from spillage and breakage. Additionally, the dividers help to concentrate the drugs in a smaller space, preventing breakage from collisions when handling them. The addition of suction or anti-slip components on the weighing base also reduces the likelihood of the box tipping over or falling. Through these designs, the risk of drug breakage is significantly reduced.
[0028] 3. The partition also allows this application to divide functions according to different situations, so as to better meet the needs of different usage locations; the L-shaped partition, and the orientation of the flip cover, ensures that the outer medicines are discharged first and the rear medicines are discharged last, so as to reduce the risk of medicines expiring and deteriorating.
[0029] 4. This application also designs the height of the flip cover and the box lid, as well as the connection method between the box lid and the box body, and with the isolation block set on the flip cover, it makes the pharmacist's medication dispensing process smoother and can be well applied in the actual work of pharmacies, with huge market prospects. Attached Figure Description
[0030] The above-described structure of this utility model can be further illustrated by the non-limiting embodiments given in the following drawings.
[0031] Figure 1 This is a schematic diagram of the structure of this utility model;
[0032] Figure 2 This is a schematic diagram of one embodiment of the box body;
[0033] Figure 3 This is a schematic diagram of yet another embodiment of the box body;
[0034] Figure 4 This is a structural schematic diagram of an embodiment of the present invention where the lid is larger than the box body;
[0035] Figure 5 This is a schematic diagram of yet another embodiment of the box body;
[0036] Figure 6 This is a schematic diagram of a box with L-shaped dividers.
[0037] Figure 7 This is a structural diagram of an L-shaped partition plate;
[0038] Figure 8 This is a schematic diagram of Embodiment 1 of the box lid (excluding the flip lid);
[0039] Figure 9 A schematic diagram of a flip cover that mates with the lid of Embodiment 1;
[0040] Figure 10 This is a schematic diagram of Embodiment 2, which is a box lid (excluding the flip lid);
[0041] Figure 11 A schematic diagram of a flip cover that mates with the lid of Embodiment 2;
[0042] Figure 12 This is a bottom view of the weighing base;
[0043] Figure 13 This is a diagram showing the flip cover with isolation blocks when closed.
[0044] Figure 14 This is a diagram showing the flip cover with isolation blocks when opened.
[0045] The components are: 1-box lid; 2-box body; 3-flip lid; 4-display screen; 5-weighing base; 6-positioning rod; 7-rotating shaft; 8-partition plate; 9-slot; 10-reset spring; 11-ring bar; 12-isolation block; 13-suction cup; 14-through hole; 15-drug label slot. Detailed Implementation
[0046] The present invention will be further described below with reference to the accompanying drawings. The embodiments of the present invention are only used to illustrate the present invention and not to limit the present invention. Various substitutions and modifications made in accordance with ordinary technical knowledge and conventional means in the art without departing from the technical concept of the present invention should be included within the scope of the present invention.
[0047] This invention provides a light-proof medicine storage device that can automatically close and weigh and count medicines, aiming to solve the problems mentioned in the background, such as the cumbersome closing process of conventional light-proof boxes (or forgetting to close them), the increased risk of medicines deteriorating due to exposure to light, and the difficulty in counting the medicines stored in the boxes. The specific solution is as follows.
[0048] like Figure 1As shown, a self-closing, countable, light-shielding medicine storage device includes a light-shielding box body 2 and a flip cover 3; it also includes a light-shielding box lid 1; the lower end of the box wall of the box lid 1 is clearance-fitted with the upper end of the box wall of the box body 2, or is positioned and connected; the middle of the side wall of the box lid 1 is symmetrically provided with arc-shaped protrusions; the flip cover 3 includes a rotating part located in the middle and two light-shielding baffles symmetrically arranged relative to the rotating part, which can block the medicine dispensing opening of the box lid 1 when closed; the arc-shaped protrusions of the box lid 1 are connected to the rotating part of the flip cover 3 through a connector, which enables the light-shielding baffles to self-close under the action of gravity when no external force is applied.
[0049] When medication needs to be retrieved from the storage device, simply press down on the light-blocking baffle and insert your hand to take it out. After the medication is removed, since the light-blocking baffle is no longer under external force, the flip cover 3 rotates in the opposite direction under the action of gravity or the connecting parts to block the medication opening of the lid 1. Thus, the lid automatically resets after each medication retrieval without manual closing. Because the rotating part of the flip cover 3 is located in the middle of the lid 1, and the light-blocking baffles are symmetrically arranged, when a hand is inserted to retrieve the medication, the light-blocking baffle on the side that is pressed open will rotate to the other side to block the light. Furthermore, since the size of such boxes is generally not much larger than an adult's palm, most of the light from the side that is pressed open will be blocked by the hand inserted inside. Using this method, not only can the probability of the medication being exposed to light be minimized when retrieving it be minimized, but the flip cover 3 can also quickly reset to block the light after the hand is removed. Furthermore, since the flip cover 3 closes automatically without external force, closing it after the medicine is removed becomes extremely simple and can be done without the need for a pharmacist. This significantly reduces the risk of medicine deterioration due to light exposure.
[0050] The connector can be implemented using a variety of existing structures.
[0051] Example 1:
[0052] like Figure 8 As shown, the connecting component is a positioning rod 6; the arc-shaped protrusion of the box cover 1 is fixedly connected to the positioning rod 6; the center of the rotating part is provided with a through hole 14 that matches the positioning rod 6, such as... Figure 9 As shown, the positioning rod 6 passes through the through hole 14. Because of the through hole 14, the rotating part of the flip cover 3 allows it to rotate 360 degrees around the positioning rod 6 under external force. When the external force disappears, under the gravity of the two symmetrically arranged light-shielding baffles, the flip cover 3 will automatically return to its initial state to block the medicine dispensing opening, thereby preventing light from entering.
[0053] Since the connector in Embodiment 1 has no other structure except for a rotating shaft 7, it is simple to implement, low in cost, and not easily damaged, making it suitable for large-scale use.
[0054] Example 2:
[0055] like Figure 10 As shown, the connecting member includes a rotating shaft 7 and a return spring 10; Figure 11 As shown, the rotating shaft 7 passes through the middle of the rotating part and is fixedly connected to it. Its two ends are located within the grooves of the arc-shaped protrusions of the lid 1, enabling the flip cover 3 to rotate relative to the lid 1. The return spring 10 is located between the two ends of the rotating shaft 7 and the arc-shaped protrusions of the lid 1, used to reset the flip cover 3 via the rotating shaft 7 when the light-shielding baffle is not subjected to external force. Because the rotating part of the flip cover 3 is fixedly connected to the rotating shaft 7, when the light-shielding baffle is pressed and rotated, it will cause the rotating shaft 7 to rotate together, and compress the return spring 10. When the hand leaves the flip cover 3, the return spring 10 releases, causing the rotating shaft 7 to rotate, thereby automatically resetting the flip cover 3 to its initial state under the drive of the return spring.
[0056] In addition to effectively reducing light exposure to the medicine, Example 2 also prevents the flip cover 3 from opening when the medicine storage device is tipped over or the medicine rack is dropped due to the restoring force of the return spring. This prevents the medicine inside from spilling out of the box and reduces the risk of medicine breakage.
[0057] like Figure 1 As shown, the self-closing, countable, light-proof medicine storage device also includes a weighing base 5 located at the lower end of the box body 2. The weighing base 5 can be an electronic scale, including a main unit, button battery, switch, etc., and is fixedly connected to the box body 2 above by adhesive or other means. Preferably, a high-precision electronic scale is used, powered by a button battery, with weighing and tare functions, requiring a precision of 0.01g or higher for more accurate medicine weighing. Furthermore, the front end of the weighing base 5 has a display screen 4 that shows the weight of the medicines inside the box body 2. The quantity of medicines can be calculated based on the weight of each individual medicine stored in the device. Using this method, pharmacists do not need to remove each medicine individually when counting the quantity, facilitating quick counting of the medicines stored in the box. This not only facilitates quick inventory control during daily dispensing but also makes counting easy during month-end inventory, reduces the risk of breakage during medicine removal, and minimizes the possibility of medicines deteriorating due to exposure to light—a win-win situation.
[0058] To better assist pharmacists in calculating drug quantities, this application also includes a drug label slot 15. This slot can be installed on the outer wall of the lid 1 or the body 2, and a label for the stored drug can be inserted inside. The label can record the drug name, the weight of a single drug, and the weight of the empty box. After weighing the drugs, the pharmacist can quickly calculate the quantity simply by clicking the calculator, which is very convenient. For example, when this application is used to store 1 ml of Vitamin B12 injection solution, the weight of a single vial of Vitamin B12 injection solution is approximately 5.00 g before use. This weight, along with the drug name, is entered into the label slot. During inventory, after tare, the total weight of the drugs is approximately 250.00 g, allowing the calculation that the total quantity of Vitamin B12 injection solution stored in the box is 50 vials. When inventory is not required, the weighing base 5 can be turned off to save electricity.
[0059] Of course, the weighing base 5 can also be configured to directly display the quantity. This type of device is a relatively common existing technology and is not within the scope of protection of this patent.
[0060] To address the problem of medicine storage devices tipping over or falling off the shelves, the inventors also made certain improvements to the balancing base 5. For example... Figure 12 As shown, the bottom of the weighing base 5 is equipped with an adsorption component or an anti-slip component, which can, to some extent, prevent the possibility of tipping over or falling. The adsorption component can be multiple magnets placed in the recesses of the weighing base 5 to attract the iron medicine rack. Alternatively, it can be multiple small suction cups attached to the bottom of the weighing base 5 by adhesive or other means. The anti-slip component can be achieved by adding anti-slip pads or anti-slip protrusions to the four corners of the bottom of the weighing base 5.
[0061] In addition to providing suction or anti-slip components at the bottom of the symmetrical weight base 5, the inventors also made improvements to the interior of the box to better protect the medicine inside. For example... Figure 5 As shown, the self-closing, countable, light-shielding medicine storage device also includes a divider 8; at least one set of slots 8 are symmetrically arranged on the inner wall of the box body 2, and the divider 8 can slide into the slots 8. By setting the divider 8 inside the box body 2, when the number of medicines in the box is small, the divider 8 can be used to gather the medicines into a smaller space, preventing damage from collisions during handling. In addition, the biggest function of the divider 8 is to allow the uniformly designed medicine storage device to be functionally partitioned according to different situations, so as to better meet the needs of different usage locations. For scenarios requiring the storage of many types of medicines, one or more dividers 8 can be used for partitioning; for scenarios requiring the storage of a single type of medicine, one or no divider 8 can be used depending on the batch number of the medicine being stored. Using the above method, when a medicine has different expiration dates and batch numbers, the outermost medicines are removed first, and the later medicines are removed last, reducing the risk of medicines expiring and deteriorating.
[0062] Since the flip cover 3 is located in the middle of the box body 2, medication can be retrieved from both the front and back. Therefore, to prevent pharmacists from mistakenly retrieving medications from newer batches, the horizontal orientation of the partition plate 8 is consistent with the horizontal orientation of the connecting piece, such as... Figure 5 As shown. In actual use, the side storing the medicines with older batch numbers can be placed facing the pharmacist so that the pharmacist can reach for the medicines with older batch numbers first, thus achieving the effect of functional zoning.
[0063] Since the light-shielding baffle of the flip cover 3 opens by pressing down, the height of the box cover 1 is greater than or equal to the width of the light-shielding baffle of the flip cover 3 to avoid the partition plate 8 affecting the flipping of the flip cover 3. This ensures that the light-shielding baffle of the flip cover 3 will not contact the partition plate 8 even when flipped to its lowest point, thus preventing the partition plate 8 from affecting the dispensing of medicine. Even without the partition plate 8, the height of the box cover 1 is equal to or slightly greater than the width of the light-shielding baffle of the flip cover 3, which can also prevent the flip cover 3 from contacting the medicine inside the box when flipped, thus avoiding obstruction of rotation or damage to the medicine.
[0064] However, there is a problem with the above method. Because the light-shielding baffle does not contact the separator 8, there is still a small chance that the pharmacist will pick up the medicine from the new batch number side when reaching for it. To better solve this problem, the separator 8 is inverted L-shaped, such as... Figure 7 As shown. When the functional areas are divided using the divider 8, the cover above the divider 8 can effectively block the new batch of medicines, thus preventing pharmacists from mistakenly taking the new batch of medicines.
[0065] To further enhance drop and collision resistance, the inner and outer walls of the box body 2, the partition plate 8, the lid 1, and the flip lid 3 can all be made of black, soft, cushioning plastic. This not only prevents the box from breaking upon impact, thus avoiding spillage and damage to the medicine, but the internal cushioning plastic also effectively protects the medicine, reducing the risk of breakage due to collisions. The cushioning plastic can be made of soft, drop-resistant plastics such as polystyrene foam. The inner wall of the box body 2 can be covered with soft cushioning material through methods such as inlaying.
[0066] While it is convenient for pharmacists to retrieve medication via the flip-top 3, loading medication into the box via the flip-top 3 is time-consuming and can easily lead to damage. This is why this application uses a gap fit or positioning connection between the lid 1 and the box body 2, allowing the lid 1 to be lifted upwards to separate it from the box body 2, thus facilitating medication loading.
[0067] The lid 1 and the body 2 can be connected in various ways. For example... Figure 2 As shown, a positioning pin can be provided at the upper end of the box body 2, and a corresponding pin hole can be provided on the box cover 1, thereby achieving a positioning connection. Alternatively, as shown... Figure 3As shown, the upper wall of the box body 2 is fitted with the lower wall of the box lid 1 via a ring strip 11. Alternatively, existing detachable connection methods can also be used; both are feasible.
[0068] However, since this application generally applies to single medications, the entire medication storage device is not large. The three commonly used dimensions for the box body 2 are 12cm*12cm*6cm, 18cm*12cm*6cm, and 22cm*15cm*10cm. If the lid 1 is connected to the box body 2 in the aforementioned manner, the opening for dispensing medication on the flip-top 3 will be smaller than the opening at the top of the box body 2, inevitably affecting the pharmacist's medication retrieval. To solve the above problem, such as... Figure 6 As shown, the ring 11 is located on the outer extension of the upper wall of the box body 2, thereby allowing the area of the lid 1 to be larger relative to the box body 2, which means that the opening for taking out medicine on top of it is larger (correspondingly, the size of the light-shielding baffle of the flip cover 3 is also increased at the same time). Figure 4 As shown, this is to facilitate the pharmacist's dispensing of medication. Using the above method, even for a 12cm*12cm*6cm box, the light-shielding baffle of the flip-top 3 must be at least 10cm long and at least 6cm wide to facilitate medication retrieval.
[0069] Because the flip cover 3 uses a flip-up mechanism, when the pharmacist takes the medicine and removes their hand from the opening of the flip cover 3, the flip cover 3 will also rotate back. Especially under the restoring force of the return spring 10, this may obstruct the pharmacist's hand and affect the medication retrieval process. To reduce this impact and make the medication retrieval process smoother for the pharmacist, such as... Figure 13 As shown in Figure 14, the light-shielding baffle is provided with an outwardly protruding isolation block 12; the isolation block 12 is located at the end of the light-shielding baffle that is away from the rotating part.
[0070] The isolation block 12 can be made of a flexible material and is shaped like a protrusion. When a pharmacist's hand reaches in to retrieve medication, the isolation block 12 creates an isolation area between the hand and the light-shielding baffle of the flip cover 3, such as... Figure 14 As shown, this design ensures that the hand is not obstructed by the light-blocking baffle before leaving the medicine dispensing opening of the flip cover 3, thus making the medicine dispensing process smoother. Of course, the end of the light-blocking baffle of the flip cover 3 can also be made concave to reduce obstruction when dispensing medicine.
[0071] The drug storage device proposed in this application not only effectively solves the problem of drug spoilage but also facilitates drug inventory management. Furthermore, its multiple anti-drop and anti-collision designs significantly reduce the risk of drug breakage. This drug storage device is suitable for various application scenarios and can be effectively used in pharmacy operations, indicating a huge market potential.
[0072] Unless otherwise specified, fixed connections can be riveting, welding, bolting, etc., while movable connections can be hinged, etc.
Claims
1. A self-closing, countable, light-shielding medicine storage device, comprising a light-shielding box body (2) and a flip-top (3); characterized in that, It also includes a light-shielding lid (1); the lower end of the lid (1) is fitted with the upper end of the body (2) through a gap or a positioning connection; the side wall of the lid (1) is symmetrically provided with an arc-shaped protrusion in the middle; the flip cover (3) includes a rotating part located in the middle and two light-shielding baffles symmetrically arranged relative to the rotating part, which can block the medicine opening of the lid (1) when closed; the arc-shaped protrusion of the lid (1) is connected to the rotating part of the flip cover (3) through a connector, which can make the light-shielding baffles not subject to light. It closes automatically when subjected to external force; the connecting component includes a rotating shaft (7) and a return spring (10); the rotating shaft (7) passes through the middle of the rotating part and is fixedly connected to it, and its two ends are located in the groove of the arc-shaped protrusion of the cover (1), which can drive the flip cover (3) to rotate relative to the cover (1); the return spring (10) is located between the two ends of the rotating shaft (7) and the arc-shaped protrusion of the cover (1), and is used to reset the flip cover (3) through the rotating shaft (7) when the light shield is not subjected to external force.
2. The self-closing, countable, light-shielding medicine storage device according to claim 1, characterized in that, The connector is a positioning rod (6); the arc-shaped protrusion of the box cover (1) is connected to the positioning rod (6); the middle part of the rotating part is provided with a through hole (14) that is adapted to the positioning rod (6), and the positioning rod (6) passes through the through hole (14).
3. The self-closing, countable, light-shielding medicine storage device according to claim 1, characterized in that, The light-shielding baffle is provided with an outwardly protruding isolation block (12); the isolation block (12) is located at the end of the light-shielding baffle away from the rotating part.
4. The self-closing, countable, light-shielding medicine storage device according to claim 1, characterized in that, It also includes a weighing base (5) located at the lower end of the box body (2).
5. The self-closing, countable, light-shielding medicine storage device according to claim 4, characterized in that, The bottom of the weighing base (5) is provided with an adsorption component or an anti-slip component; the front end of the weighing base (5) is provided with a display screen (4).
6. The self-closing, countable, light-shielding medicine storage device according to claim 1, characterized in that, It also includes a partition plate (8); at least one set of slots (9) are symmetrically arranged on the inner wall of the box body (2), and the partition plate (8) can slide into the slot (9); the horizontal orientation of the partition plate (8) is consistent with the horizontal orientation of the connector; the height of the box cover (1) is greater than or equal to the width of the light-shielding baffle of the flip cover (3).
7. The self-closing, countable, light-shielding medicine storage device according to claim 6, characterized in that, The partition (8) is inverted L-shaped; the inner and outer walls of the box body (2), the partition (8), the box lid (1) and the flip lid (3) are all made of cushioning plastic.
8. The self-closing, countable, light-shielding medicine storage device according to claim 1, characterized in that, The upper wall of the box body (2) is fitted with the lower wall of the box cover (1) through a ring strip (11).
9. The self-closing, countable, light-shielding medicine storage device according to claim 8, characterized in that, The ring (11) is located on the outer edge of the upper end of the box wall of the box body (2).
Citation Information
Patent Citations
Light-proof medicine storage box
CN211767477U