Label box for medical equipment management
By introducing a support mechanism and a lifting mechanism into the label box, and using the cooperation of wedge blocks and lifting rods, the label classification and lifting is realized, which solves the visual interference problem caused by the mixing of labels in the existing label box and improves the search efficiency.
Patent Information
- Application Number
- CN202520615741.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-02
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-04-02
AI Technical Summary
Existing label boxes for medical equipment management lack the function of classifying and lifting labels. Various types and a large number of labels are placed on the same plane, and the labels' identification, color and other information are intertwined, creating visual interference and affecting the efficiency of finding them.
A label box is designed, comprising a label box body, a support mechanism, and a lifting mechanism. The support mechanism consists of a label box placement platform, a single-sided wedge block, a double-sided wedge block, a U-shaped mounting bracket, and a lifting rod. The lifting operation is initiated by pressing the single-sided wedge block, and the label box placement platform is pushed upward by the cooperation of the double-sided wedge block and the lifting rod, so as to realize the classification and storage of labels and easy retrieval.
It improves the controllable handling space for tags, makes it easier to find specific types of tags, reduces search time, and improves the efficiency of medical equipment management.
Smart Images

Figure CN223865420U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a label box technical field, especially a label box for medical equipment management. BACKGROUND
[0002] The label box for medical equipment management is mainly used for storing and managing various medical equipment labels, and has important significance in medical equipment management. Whether the equipment department of a hospital manages the medical equipment in the hospital daily or medical staff quickly obtains relevant information when using the equipment, the label box plays a key role. It helps staff to accurately find the label of the corresponding equipment, paste the label on the equipment, and clearly identify the name, model, use state, maintenance period and other information of the equipment, so as to facilitate the identification, tracking and maintenance of the medical equipment, thereby improving the overall efficiency and quality of medical equipment management, ensuring the orderly development of medical work, and the current label box for medical equipment management usually needs the following technologies in practical application:
[0003] 1. Reasonable internal space planning technology to realize orderly classified storage of different types of labels.
[0004] 2. Convenient label taking technology to ensure that staff can quickly and non-destructively take labels.
[0005] 3. Strong and durable and light material technology, so that the label box can withstand a certain use intensity and is easy to move in the medical environment.
[0006] At present, in order to realize the effective management and storage of medical equipment labels, various devices and methods are adopted. Some hospitals use drawer type storage cabinets, and the drawer stores one layer, and the drawer is pulled out to find and take. In addition, some hospitals set up convenient identification on each label on this basis, so that staff can find it more quickly.
[0007] However, the above method has a prominent problem, that is, the existing label box usually lacks label classification lifting function, and various types and large quantities of labels are arranged on the same plane. A large number of different types of labels are placed on the same plane, and the information such as the identification and color of the labels are intertwined, forming visual interference. When staff find a specific label, they need to distinguish one by one among a large number of labels, which affects the search efficiency. INVENTION CONTENTS
[0008] To address the shortcomings of existing technologies, this utility model provides a label box for medical equipment management. It solves the problem that existing label boxes typically lack a label sorting and lifting function, and that multiple types and large quantities of labels are placed on the same plane. This results in overlapping label information (identification, color, etc.) and visual interference, requiring staff to sift through a large number of labels to find a specific one, thus reducing search efficiency.
[0009] To achieve the above objectives, this utility model provides the following technical solution:
[0010] A label box for medical device management includes a label box body. Inside the label box body is a support mechanism for storing labels. The support mechanism includes a label box placement platform slidably connected inside the label box body. Inside the label box body is a lifting mechanism for raising the sliding label box placement platform. The lifting mechanism includes a single-sided wedge block, a double-sided wedge block, a U-shaped mounting bracket, and a lifting rod. The single-sided wedge block and the double-sided wedge block are slidably connected inside the label box body. The U-shaped mounting bracket is fixedly connected inside the label box body. The lifting rod is slidably connected inside the U-shaped mounting bracket. The double-sided wedge block is in contact with both the single-sided wedge block and the lifting rod.
[0011] Preferably, the outer surfaces of the lifting rod and the double-sided wedge block are both provided with return springs, and the two sets of return springs are respectively provided on the inner surfaces of the U-shaped mounting bracket and the label box body.
[0012] Preferably, the lower end of the lifting rod is rotatably connected to a rotating wheel, and the rotating wheel is in contact with the outer surface of the double-sided wedge block.
[0013] Preferably, an identification plate is fixedly connected to the outer surface of the single-sided wedge block, and a set of label storage boxes is provided at the upper end of the label box placement platform.
[0014] Preferably, both the label storage box and the label box placement platform have magnets fitted inside, and the two sets of magnets are in contact with each other.
[0015] Preferably, a partition is fixedly connected inside the label box body, and the label box placement platform is located at the upper end of the partition.
[0016] Preferably, the label box body is rotatably connected to a lid, and the label box body has a slot inside.
[0017] Preferably, the single-sided wedge block is rotatably connected to a locking limit block, and the locking limit block is compatible with the slot.
[0018] Compared with the prior art, the present invention has the following beneficial effects:
[0019] 1. When a certain type of label needs to be retrieved, the lifting operation is initiated by pressing down on the single-sided wedge block. As the single-sided wedge block descends, it pushes the double-sided wedge block along the inclined surface towards one end of the lifting rod. The other end of the double-sided wedge block is in contact with the lifting rod, so as it slides, it pushes the lifting rod upward. The lifting rod then lifts the corresponding label box placement platform upward, making the label box on the upper part of the placement platform higher than other label boxes. This improves the controllable retrieval space during the retrieval operation and makes it convenient and easy to find specific types of labels.
[0020] 2. After pressing down on the single-sided wedge block to lift the label box placement platform, the locking limit block can be screwed on so that its surface extends into the slot, thereby limiting the current position of the single-sided wedge block. This way, the staff does not need to keep pressing down on the single-sided wedge block and can free up their hands to easily pick up the labels. Attached Figure Description
[0021] The above description is only an overview of the technical solution of this utility model. In order to better understand the technical means of this utility model and to implement it in accordance with the contents of the specification, the preferred embodiments of this utility model are described in detail below with reference to the accompanying drawings.
[0022] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0023] Figure 2 This is an exploded view of the label box placement platform of this utility model.
[0024] Figure 3 This is an exploded view of the double-sided wedge block connection of this utility model;
[0025] Figure 4 This is an exploded view of the lifting rod connection of this utility model.
[0026] Legend: 11. Label box body; 12. Label box placement platform; 13. Single-sided wedge block; 14. Double-sided wedge block; 15. U-shaped mounting bracket; 16. Lifting rod; 17. Return spring; 18. Rotary wheel; 19. Label plate; 21. Label storage box; 22. Magnet; 23. Divider; 24. Box lid; 25. Card slot; 26. Locking limit block. Detailed Implementation
[0027] This application provides a label box for medical device management, effectively solving the problem that existing label boxes often lack label classification and lifting functions. Multiple types and large quantities of labels are placed on the same plane, and the labels' markings, colors, and other information are intertwined, creating visual interference. When staff need to find a specific label, they must sort through a large number of labels one by one, affecting search efficiency. When a specific type of label needs to be retrieved, pressing down on a single-sided wedge block initiates the lifting operation. As the single-sided wedge block descends, it pushes a double-sided wedge block along its inclined surface towards one end of the lifting rod. The other end of the double-sided wedge block's inclined surface is in contact with the lifting rod, so its sliding motion pushes the lifting rod upwards. The lifting rod then lifts the corresponding label box placement platform upwards, making the label box on the platform higher than other label boxes. This improves the controllable retrieval space and allows for convenient and easily visible retrieval of specific label types.
[0028] Example
[0029] like Figure 1 , Figure 2 , Figure 3 and Figure 4As shown, the technical solution in this application embodiment effectively solves the problem that existing label boxes usually lack label classification and lifting functions. Multiple types and a large number of labels are placed on the same plane. When many different types of labels are placed on the same plane, the label identification, color and other information are intertwined, forming visual interference. When staff need to find a specific label, they must sort through a large number of labels one by one, which affects the efficiency of the search. The general approach is as follows: A label box for medical device management includes a label box body 11. The label box body 11 has a support mechanism for storing labels inside, including a label box placement platform 12. The label box placement platform 12 is slidably connected inside the label box body 11. The label box body 11 has a lifting mechanism for lifting the label box placement platform 12. The lifting mechanism includes a single-sided wedge block 13, a double-sided wedge block 14, a U-shaped mounting bracket 15, and a lifting rod 16. The single-sided wedge block 13 is slidably connected inside the label box body 11, the double-sided wedge block 14 is slidably connected inside the label box body 11, the U-shaped mounting bracket 15 is fixedly connected inside the label box body 11, and the lifting rod 16 is slidably connected to the U-shaped mounting bracket 16. Inside the mounting bracket 15, the double-sided wedge blocks 14 are in contact with the single-sided wedge blocks 13 and the lifting rod 16. The label box body 11 is equipped with three label box placement platforms 12. Different types of label boxes are installed and placed on the three label box placement platforms 12 respectively. When a label needs to be taken out and used, the single-sided wedge block 13 is pressed down, and the single-sided wedge block 13 and the double-sided wedge block 14 are in contact at their inclined surfaces. When the single-sided wedge block 13 descends, it pushes the double-sided wedge block 14 to slide towards one end of the lifting rod 16. The double-sided wedge block 14 then pushes the lifting rod 16 upward through its inclined surface at the other end. The lifting rod 16 lifts the label box placement platform 12 upward, so that the label box at the top of the label box placement platform 12 is higher than other label boxes, which makes it easier to take out. Moreover, this method of lifting up a type of label box makes it easier to find.
[0030] Both the lifting rod 16 and the double-sided wedge block 14 are equipped with return springs 17 on their outer surfaces. Two sets of return springs 17 are respectively installed on the inner surfaces of the U-shaped mounting bracket 15 and the label box body 11. A rotating wheel 18 is rotatably connected to the lower end of the lifting rod 16, and the rotating wheel 18 is in contact with the outer surface of the double-sided wedge block 14. A label plate 19 is fixedly connected to the outer surface of the single-sided wedge block 13. A set of label storage boxes 21 is installed at the upper end of the label box placement platform 12. Magnets 22 are fitted inside both the label storage box 21 and the label box placement platform 12. The two sets of magnets 22 are in contact, and when the double-sided wedge block 14 and the lifting rod 16 slide, they will compress the two... The retraction of the return spring 17 provides a sliding reset force through the compression of the two return springs 17. The lifting rod 16 contacts the surface of the double-sided wedge block 14 through the rotating wheel 18 at its lower end. The label plate 19 is used to distinguish the multiple single-sided wedge blocks 13, for example, by distinguishing them according to diagnostic equipment labels, therapeutic equipment labels, monitoring equipment labels, etc. The labels are rolled up and rotated in the label storage box 21. They can be taken out for use by pulling the label to make it rotate. The label storage box 21 is installed on the upper end of the label box placement platform 12 by two magnets 22 for easy retrieval and replacement.
[0031] A partition 23 is fixedly connected inside the label box body 11. The label box placement platform 12 is located at the upper end of the partition 23. A box cover 24 is rotatably connected inside the label box body 11. A slot 25 is opened inside the label box body 11. A locking limit block 26 is rotatably connected inside the single-sided wedge block 13. The locking limit block 26 and the slot 25 are compatible. In the non-lifted state, the upper surfaces of the label box placement platform 12 and the partition 23 are in contact to provide support. The label is protected by screwing the box cover 24 closed. When the single-sided wedge block 13 is pressed down to lift the label box placement platform 12, the locking limit block 26 set in the lowered label box placement platform 12 can be screwed to make the surface of the locking limit block 26 extend into the slot 25, thereby limiting the current position of the single-sided wedge block 13, making it convenient to work and freeing up both hands to pick up the label.
[0032] To address the problems existing in the prior art, this utility model provides a label box for medical device management. When a certain type of label needs to be retrieved, the lifting operation is initiated by pressing down on the single-sided wedge block 13. During the descent of the single-sided wedge block 13, it pushes the double-sided wedge block 14 along the inclined surface towards one end of the lifting rod 16. The other end of the double-sided wedge block 14 is in contact with the lifting rod 16, so when it slides, it pushes the lifting rod 16 upward. The lifting rod 16 then lifts the corresponding label box placement platform 12 upward, making the label box on the upper end of the label box placement platform 12 higher than other label boxes. This improves the controllable retrieval operation space and makes it convenient and easy to find specific types of labels.
[0033] Label box body 11: As an overall frame, it provides installation and support space for internal components. It works with the box cover 24 to protect the labels and prevent dust and other damage to the labels. Its internal slot 25 is adapted to the locking limit block 26 of the single-sided wedge block 13 to fix the position of the single-sided wedge block 13 so that the labels can be picked up by both hands.
[0034] Label box placement platform 12: Three placement platforms are installed with different types of label boxes to achieve classified storage. They are connected by a sliding connection and a lifting mechanism. When not lifted, they are supported by a partition 23 to ensure stability. A label storage box 21 is set at the top and is magnetically fixed by a magnet 22 for easy retrieval and replacement.
[0035] Single-sided wedge block 13: slides inside the label box body 11. Pressing it will start the lifting operation. The double-sided wedge block 14 is pushed by the inclined surface. The external label plate 19 distinguishes the label categories corresponding to different blocks. The internal rotation locking limit block 26 cooperates with the card slot 25 to fix the position. The upper rectangular block limits the rotation angle of the locking limit block 26 to prevent it from completely entering the body and making it inconvenient to take out.
[0036] Double-sided wedge block 14: It slides inside the label box body 11 and transmits force through the two inclined surfaces to the single-sided wedge block 13 and the lifting rod 16 respectively to achieve lifting. It has a return spring 17 on the outside. When sliding, the spring is squeezed and the spring helps to return to the original position after the label is taken out.
[0037] U-shaped mounting bracket 15: fixed inside the label box body 11, providing a sliding track for the lifting rod 16 to ensure lifting accuracy, and cooperating with the return spring 17 outside the lifting rod 16 to provide support and guidance for the lifting rod 16 to return to its original position;
[0038] Lifting rod 16: It slides inside the U-shaped mounting bracket 15 and is pushed by the double-sided wedge block 14 to lift the label box placement platform 12 for retrieving and searching labels. It has a return spring 17 on the outside, which works with other components to achieve reset.
[0039] Return spring 17: Two sets are located on the outer surfaces of the lifting rod 16 and the double-sided wedge block 14, respectively. They are squeezed and store energy when the parts slide, and release energy after the label is removed to help the lifting rod 16 and the double-sided wedge block 14 return to their original positions.
[0040] Rotary wheel 18: Rotatably connected to the lower end of the lifting rod 16 and in contact with the outer surface of the double-sided wedge block 14, reducing the friction between the lifting rod 16 and the double-sided wedge block 14, making the lifting rod 16 slide more smoothly;
[0041] Label plate 19: Fixed on the outer surface of the single-sided wedge block 13, it distinguishes the label categories corresponding to different single-sided wedge blocks 13, making it convenient to accurately operate and pick up the required labels;
[0042] Label storage box 21: Placed on top of label box placement platform 12, it stores labels in a roll shape. Labels can be taken out by pulling and rotating. It is connected to label box placement platform 12 by magnet 22 for easy retrieval and replacement.
[0043] Magnets 22: Two sets are respectively fitted inside the label storage box 21 and the label box placement platform 12, and are attached to each other to fix the label storage box 21 on the label box placement platform 12 by magnetic attraction;
[0044] Partition 23: Fixed inside the label box body 11, it provides support for the label box placement platform 12 in the non-lifted state, ensuring the stability of label storage;
[0045] Box lid 24: Rotatably connected inside the label box body 11, it can be screwed closed when the labels are not being taken out, protecting the labels from damage such as dust and moisture;
[0046] Card slot 25: It is formed inside the label box body 11 and is adapted to the locking limit block 26 of the single-sided wedge block 13 to fix the position of the single-sided wedge block 13;
[0047] Locking limit block 26: Rotatably connected inside the single-sided wedge block 13, it is lifted and then screwed to extend into the slot 25, limiting the position of the single-sided wedge block 13, making it convenient to pick up the label with both hands.
[0048] Working principle:
[0049] The first step involves installing three label holders 12 inside the label box body 11. Each holder can hold different types of label boxes, enabling categorized label storage. For example, labels can be categorized as diagnostic equipment labels, treatment equipment labels, monitoring equipment labels, etc. The labels are rolled up and placed inside the label storage box 21. By removing the labels and attaching them to the medical equipment, it is possible to quickly identify specific equipment from among numerous medical devices, especially since medical facilities typically contain a large number of different types of medical equipment. The labels clearly indicate the equipment name, model, and other basic information, allowing medical staff and managers to quickly identify specific equipment from a large pool of devices. The top of the label storage box 21... More precise device model identification can be set. The label storage box 21 is installed on the upper end of the label box placement platform 12 by magnetic attraction through two sets of magnets 22. This connection method makes it convenient to take out and replace the label storage box 21. The partition 23 fixedly connected inside the label box body 11 is located below the label box placement platform 12. In the non-lifted state, it provides support for the label box placement platform 12 and ensures the stability of label storage. The box cover 24 rotatably connected inside the label box body 11 can be closed by screwing when the labels are not taken out, which protects the labels inside the label box body 11 and prevents dust, moisture and other factors from damaging the labels.
[0050] The second step involves pressing down on the single-sided wedge block 13 to initiate the lifting operation when a certain type of label needs to be retrieved. Since the inclined surfaces of the single-sided wedge block 13 and the double-sided wedge block 14 are in contact with each other, during the descent of the single-sided wedge block 13, it pushes the double-sided wedge block 14 along the inclined surface towards one end of the lifting rod 16. The other inclined surface of the double-sided wedge block 14 is in contact with the lifting rod 16, so its sliding motion pushes the lifting rod 16 upwards. The lifting rod 16 then lifts the corresponding label box placement platform 12 upwards, causing the label box placement platform 12 to... 2. The upper label box is higher than the other label boxes, which makes it easier to pick up and find specific types of labels. During the sliding process of the double-sided wedge block 14 and the lifting rod 16, the return spring 17 on their respective outer surfaces is compressed and contracted. After the label is picked up, the single-sided wedge block 13 is released, and the compressed return spring 17 releases its elastic potential energy, providing a sliding reset force for the double-sided wedge block 14 and the lifting rod 16, causing them to return to their initial positions. Consequently, the label box placement platform 12 also returns to its non-lifted state, which is in contact with the upper surface of the partition 23. The lower end of the lifting rod 16 is rotatably connected to a rotating wheel 18 that fits against the outer surface of the double-sided wedge block 14. The rotating wheel 18 reduces the friction between the lifting rod 16 and the double-sided wedge block 14, making the sliding of the lifting rod 16 under the push of the double-sided wedge block 14 smoother. The label plate 19 fixedly connected to the outer surface of the single-sided wedge block 13 is used to distinguish multiple single-sided wedge blocks 13. The label can be quickly identified by the label, making it convenient to accurately operate the corresponding single-sided wedge block 13 to pick up the required label. The slot 25 inside the single-sided wedge block 11 is adapted to the locking limit block 26 rotatably connected inside the single-sided wedge block 13. After pressing down on the single-sided wedge block 13 to lift the label box placement platform 12, the locking limit block 26 can be screwed on so that its surface extends into the slot 25, thereby limiting the current position of the single-sided wedge block 13. This way, the operator does not need to keep pressing down on the single-sided wedge block 13, freeing up both hands to easily pick up the labels. A rectangular block is installed at the upper end of the single-sided wedge block 13 where the locking limit block 26 can rotate, which can limit its rotation angle, as shown in the instruction manual. Figure 4 As shown, this prevents the locking limit block 26 from rotating completely into the label box body 11, making it inconvenient to retrieve.
[0051] Finally, it should be noted that the above embodiments are merely examples for clearly illustrating the present invention and are not intended to limit the implementation. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations. However, obvious variations or modifications derived therefrom are still within the protection scope of this invention.
Claims
1. A label box for medical device management, comprising a label box body (11), wherein the label box body (11) is provided with a support mechanism for storing labels, the support mechanism including a label box placement platform (12), characterized in that, The label box placement platform (12) is slidably connected inside the label box body (11). The label box body (11) is provided with a lifting mechanism for lifting the label box placement platform (12) to slide. The lifting mechanism includes a single-sided wedge block (13), a double-sided wedge block (14), a U-shaped mounting bracket (15), and a lifting rod (16). The single-sided wedge block (13) is slidably connected inside the label box body (11), the double-sided wedge block (14) is slidably connected inside the label box body (11), and the U-shaped mounting bracket (15) is fixedly connected inside the label box body (11). The lifting rod (16) is slidably connected inside the U-shaped mounting bracket (15), and the double-sided wedge block (14) is in contact with the single-sided wedge block (13) and the lifting rod (16).
2. A label box for medical device management as described in claim 1, characterized in that, The outer surfaces of the lifting rod (16) and the double-sided wedge block (14) are both provided with return springs (17); The two sets of reset springs (17) are respectively installed on the inner surface of the U-shaped mounting bracket (15) and the label box body (11).
3. A label box for medical device management as described in claim 2, characterized in that, The lower end of the lifting rod (16) is rotatably connected to a wheel (18); The outer surfaces of the rotating wheel (18) and the double-sided wedge block (14) are in contact with each other.
4. A label box for medical device management as described in claim 3, characterized in that, The outer surface of the single-sided wedge block (13) is fixedly connected to an identification plate (19); The label box placement platform (12) is provided with a set of label storage boxes (21) at its upper end.
5. A label box for medical device management as described in claim 4, characterized in that, A magnet (22) is fitted inside both the label storage box (21) and the label box placement platform (12); The two sets of magnets (22) are attached together.
6. A label box for medical device management as described in claim 5, characterized in that, The label box body (11) is internally fixedly connected to a partition (23); The label box placement platform (12) is located at the upper end of the partition (23).
7. A label box for medical device management as described in claim 6, characterized in that, The label box body (11) is rotatably connected to a box lid (24); The label box body (11) has a card slot (25) inside.
8. A label box for medical device management as described in claim 7, characterized in that, The single-sided wedge block (13) is rotatably connected to a locking limit block (26); The locking limit block (26) and the card slot (25) are adapted to each other.