Special telescopic wire storage device for medical equipment

By designing a special telescopic wire storage device for medical equipment, the centralized collection and length adjustment of the wire is achieved by using multiple wire collection boxes and common wire reel handles, the problems of confusing wires and inconvenient adjustment in the prior art are solved, and the orderliness of the wire layout and the convenience of operation are improved.

CN114314202BActive Publication Date: 2025-06-24SUZHOU TRADITIONAL CHINESE MEDICINE HOSPITAL
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Patent Information

Application Number
CN202111667987.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-12-31
Publication Date
2025-06-24
Estimated Expiration
2041-12-31

AI Technical Summary

Technical Problem

The existing medical equipment wire storage methods have problems such as confusing wires, inconvenient adjustment and increased workload, especially in the use scenarios of multiple equipment.

Method used

A telescopic wire storage device for medical equipment is designed, and the wire is concentrated and length adjustment is achieved through multiple wire reel boxes and a common wire reel handle. The wire retracting box is equipped with a freely rotatable winding post and a wire reel handle. The latter realizes rotation and length adjustment of the winding post through the cooperation of the movable card block and the magnet.

Benefits of technology

The orderly layout and convenient adjustment of multiple medical equipment wires is realized, reducing the operation difficulty and workload of medical staff, and improving the cleanliness and efficiency of the clinical environment.

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Abstract

The present invention relates to a special telescopic wire storage device for medical equipment, which includes a plurality of wire reels arranged in parallel and connected to each other. The winding columns of the plurality of wire reels are hollow tubes and are located on the same straight line, and the plurality of wire reels share the same winding handle; the handle in the winding handle is fixedly installed at the tail end of the handle body, and a narrow cavity is axially opened in the handle body. There are several block installation ports corresponding to and communicating with the narrow cavity on the side wall of the handle body. The moving rod is movably installed in the narrow cavity. A reed is respectively installed at the lower parts of both ends of the moving rod. A button is installed near the tail end of the handle body. The inner end of the button is fixed to the upper part of the moving rod. A block installation groove is arranged at the position of the moving rod corresponding to the block installation port, and a magnet is arranged in the block installation groove; the inner hole of the winding column is circular, and an embedding groove matching the movable block is axially opened on the side wall of the inner hole of the winding column. The present invention can realize the centralized collection and arrangement of wires of multiple medical devices, making the wire layout beside the bed orderly.
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Description

Technical Field

[0001] The present invention relates to a telescopic wire storage device for medical equipment, belonging to the technical field of medical auxiliary appliances. Background Art

[0002] With the continuous development of science and technology, there are more and more various medical devices used in hospitals currently. And many wires such as power cords and data cables are usually connected to the outside of the medical devices. These wires usually lack reasonable limit fixation, which will lead to chaotic placement of the wires and messy lines. Moreover, the wires are easily broken when they are entangled and pulled. In addition, when medical staff operate the equipment or walk and move near the equipment, the messy wires will also greatly affect the work efficiency of the medical staff.

[0003] The commonly used existing solution is that medical staff use cable ties to wind or bundle a large number of wires for simple storage. However, this can only improve the neatness to a limited extent. When using and recycling the instrument each time, the medical staff will have to repeat bundling and sorting, which greatly increases the workload. And the length of the bundled wires is difficult to adjust, and it is also very inconvenient to use. In addition, there are also winding storage boxes currently. However, since patients usually need to use multiple devices during clinical treatment, in this case, even if the wires of multiple devices are stored in the storage box, there will still be problems such as chaotic wires and inconvenient adjustment. Therefore, there is an urgent need to design a wire storage device that can overcome the above technical problems. Summary of the Invention

[0004] The purpose of the present invention is to overcome the deficiencies existing in the prior art, and provide a telescopic wire storage device for medical equipment, which has a clever structure and reasonable design, and can realize the centralized collection and arrangement of wires of multiple medical devices, making the wire layout beside the bed orderly.

[0005] According to the technical solution provided by the present invention: a telescopic wire storage device for medical equipment, including a wire storage box, the wire storage box includes a box body, the outer periphery of the box body is provided with a first wire passing port and a second wire passing port, and a rotatable winding column is arranged at the axial center of the box body; characterized in that: there are multiple wire storage boxes, the multiple wire storage boxes are placed in parallel and connected to each other, the winding columns of the multiple wire storage boxes are hollow tubes and are located on the same straight line, and the multiple wire storage boxes share the same winding handle; the winding handle includes a handle, a handle body, a moving rod, a reed and a movable latch, the handle is fixedly installed at the tail end of the handle body, a narrow cavity is axially opened in the handle body, and several latch installation ports corresponding to the narrow cavity are arranged on the side wall of the handle body, the moving rod is movably installed in the narrow cavity, a reed is installed at the lower part of both ends of the moving rod, a button is installed near the tail end of the handle body, the inner end of the button is fixed to the upper part of the moving rod, a latch installation groove is arranged at the position of the moving rod corresponding to the latch installation port, a magnet is arranged in the latch installation groove, and the movable latch can be inserted into the latch installation groove through the latch installation port and be magnetically fixed; the inner hole of the winding column is circular, and an embedding groove matching the movable latch is axially opened on the side wall of the inner hole of the winding column.

[0006] As a further improvement of the present invention, several colored coating sections with different colors are arranged on the handle body, and each latch installation port corresponds to a colored coating section.

[0007] As a further improvement of the present invention, a hook hole is opened at the upper end of the movable latch.

[0008] As a further improvement of the present invention, a connecting boss is arranged on the surface of one side of the box body, and several card pins are arranged around the connecting boss; a connecting concave cavity is arranged on the surface of the other side of the box body, an inwardly retracted edge is arranged on the opening edge of the connecting concave cavity, and several bayonets corresponding to the card pins one by one are opened on the inwardly retracted edge, a first magnetic part is eccentrically arranged on the surface of the connecting boss, and a second magnetic part is eccentrically arranged at the bottom of the connecting concave cavity; when the card pins are aligned with the bayonets, the first magnetic part and the second magnetic part are staggered from each other; when the first magnetic part and the second magnetic part are aligned and attracted, the card pins and the bayonets are staggered from each other.

[0009] As a further improvement of the present invention, the box body includes a first box cover and a second box cover, and the first box cover and the second box cover are connected by a buckle.

[0010] As a further improvement of the present invention, the outer peripheral edge of the box body is provided with a first wire threading cavity and a second wire threading cavity that bulge outwards. The first wire threading cavity and the second wire threading cavity are arranged in mirror symmetry. One end of the first wire threading cavity and the second wire threading cavity is set as a radial plane, and the first wire threading port and the second wire threading port are respectively arranged on the radial plane. The other ends of the first wire threading cavity and the second wire threading cavity are smoothly connected to the outer circumference of the box body in an arc shape.

[0011] As a further improvement of the present invention, the central angle corresponding to the arc segment between the first wire threading port and the second wire threading port on the box body is greater than 90 degrees but less than 120 degrees.

[0012] As a further improvement of the present invention, spiral wire winding guide grooves with opposite winding directions are respectively arranged at both ends of the wire winding column.

[0013] Compared with the prior art, the present invention has the following advantages:

[0014] The wire storage device in the present invention is composed of multiple wire storage boxes. The wires of different medical devices are respectively stored in different wire winding storage boxes, so as to realize the centralized collection and arrangement of the wires of multiple medical devices, making the wire layout beside the bed orderly. Moreover, since multiple wire winding storage boxes share a wire winding handle, during operation, by switching the installation position of the movable block on the wire winding handle, different wire winding storage boxes can be correspondingly adjusted, without the need to separate the wire winding storage boxes and then adjust them, and the operation is very convenient. Description of the Drawings

[0015] Figure 1 It is a schematic diagram of the overall structure of an embodiment of the present invention.

[0016] Figure 2 It is a left side view of the structure of the wire storage box in an embodiment of the present invention.

[0017] Figure 3 It is a right side view of the structure of the wire storage box in an embodiment of the present invention.

[0018] Figure 4 It is a main cross-sectional view of the structure of the wire winding handle in an embodiment of the present invention.

[0019] Figure 5 It is a top view of the structure of the wire winding handle in an embodiment of the present invention.

[0020] Description of reference numerals: 1 - box body, 1a - first wire threading opening, 1b - second wire threading opening, 1c - connecting boss, 1d - retaining pin, 1e - connecting cavity, 1f - inwardly retracted edge, 1g - bayonet, 1h - first wire threading cavity, 1i - second wire threading cavity, 1.1 - first box cover, 1.2 - second box cover, 1.3 - buckle, 2 - wire winding post, 2a - groove, 2b - spiral wire winding guide groove, 3 - wire winding handle, 3.1 - handle, 3.2 - handle body, 3.2a - narrow cavity, 3.2b - retaining block mounting opening, 3.2c - colored coating section, 3.3 - moving rod, 3.3a - retaining block mounting groove, 3.4 - reed, 3.5 - movable retaining block, 3.5a - hook hole, 3.6 - button, 3.7 - magnet, 4 - first magnetic member, 5 - second magnetic member. Detailed implementation manners

[0021] The present invention will be further described below with reference to specific drawings and embodiments.

[0022] As Figures 1 to 5 shown, the embodiment discloses a telescopic wire storage device for medical equipment, including four wire storage boxes. The wire storage box includes a box body 1. The outer periphery of the box body 1 is provided with a first wire threading opening 1a and a second wire threading opening 1b. A rotatable wire winding post 2 is provided at the axial center of the box body 1; the four wire storage boxes are placed parallel and side by side and connected to each other. The wire winding posts 2 of the four wire storage boxes are hollow tubes and are located on the same straight line. The four wire storage boxes share the same wire winding handle 3; the wire winding handle 3 includes a handle 3.1, a handle body 3.2, a moving rod 3.3, a reed 3.4 and a movable retaining block 3.5. The handle 3.1 is fixedly installed at the tail end of the handle body 3.2. An axially extending narrow cavity 3.2a is formed in the handle body 3.2. Two retaining block mounting openings 3.2b corresponding to and communicating with the narrow cavity 3.2a are provided on the side wall of the handle body 3.2. The moving rod 3.3 is movably installed in the narrow cavity 3.2a. A reed 3.4 is respectively installed at the lower parts of both ends of the moving rod 3.3. A button 3.6 is installed near the tail end of the handle body 3.2. The inner end of the button 3.6 is fixed to the upper part of the moving rod 3.3. A retaining block mounting groove 3.3a corresponding to the retaining block mounting opening 3.2b is provided on the moving rod 3.3. A magnet 3.7 is provided in the retaining block mounting groove 3.3a. The movable retaining block 3.5 can be inserted into the retaining block mounting groove 3.3a through the retaining block mounting opening 3.2b and be magnetically fixed; the inner hole of the wire winding post 2 is circular, and a groove 2a matching the movable retaining block 3.5 is axially formed on the side wall of the inner hole of the wire winding post 2.

[0023] During actual use, the wires of multiple medical devices are respectively wound up in four wire reels. When installed, the wires are threaded through the hooks on the winding posts 2, and then wound around the winding posts 2. The two ends of the wires respectively pass through the first wire-passing opening 1a and the second wire-passing opening 1b. Since the four wire reels are interconnected, the wires of multiple medical devices are centrally collected and sorted, making the wire layout beside the bed orderly. During clinical treatment, when the length of the wire of a certain medical device needs to be adjusted due to movement, only a wire winding handle 3 is needed for operation. The operation method is as follows: First, determine which wire reel the wire whose length needs to be adjusted is wound up in, and then, according to the sorting position of this wire reel in the entire wire storage device, install the movable block 3.5 into the corresponding block installation groove 3.3a through the appropriate block installation opening 3.2b. The movable block 3.5 is magnetically fixed by the magnet 3.7 in the block installation groove 3.3a; then press the button 3.6 to move the moving rod 3.3 downward to the lower part of the narrow cavity 3.2a. The moving rod 3.3 drives the movable block 3.5 to retract into the block installation opening 3.2b. In this way, the handle body 3.2 of the wire winding handle 3 can be easily inserted into the inner hole of the winding post 2. When the handle body 3.2 is inserted to an appropriate depth, release the button 3.6, and drive the handle body 3.2 to slowly rotate by using the handle 3.1. When it rotates to the position where the movable block 3.5 is aligned with the block installation groove 3.3a, the reed 3.4 pushes the moving rod 3.3 upward to make the movable block 3.5 embed into the block installation groove 3.3a. In this way, by driving the handle body 3.2 to rotate by using the handle 3.1 again, the winding post 2 of the corresponding wire reel can be rotated, and the length of the wire wound in this wire reel can be conveniently adjusted.

[0024] As Figure 5 shown, in this embodiment, several colored coating sections 3.2c with different colors are provided on the handle body 3.2, and each block installation opening 3.2b corresponds to a colored coating section 3.2c. With such a setting, by observing the colored coating section 3.2c, the insertion length of the handle body 3.2 of the wire winding handle 3 can be clearly judged, so as to judge whether the movable block 3.5 has entered the winding post 2 of the wire reel that needs to be adjusted.

[0025] As Figure 4 shown, in this embodiment, a hook hole 3.5a is provided at the upper end of the movable block 3.5. With such a setting, it is convenient to take out the movable block 3.5 from the block installation groove 3.3a.

[0026] As Figures 1 to 3As shown, in this embodiment, a connecting boss 1c is provided on the surface of one side of the box body 1, and a plurality of bayonet pins 1d are provided around the connecting boss 1c; a connecting cavity 1e is provided on the surface of the other side of the box body 1, and an inward extension 1f is provided on the opening edge of the connecting cavity 1e, and a plurality of bayonet ports 1g corresponding to the bayonet pins 1d are provided on the inward extension 1f, and an eccentrically arranged first magnetic attraction member 4 is provided on the surface of the connecting boss 1c, and an eccentrically arranged second magnetic attraction member 5 is provided at the bottom of the connecting cavity 1e; when the bayonet pin 1d is aligned with the bayonet port 1g, the first magnetic attraction member 4 and the second magnetic attraction member 5 are staggered; when the first magnetic attraction member 4 and the second magnetic attraction member 5 are aligned and attracted, the bayonet pin 1d and the bayonet port 1g are staggered. With such a configuration, multiple wire collection boxes can be quickly connected and disassembled, greatly improving the convenience of clinical use.

[0027] like Figures 1 to 3 As shown, in this embodiment, the box body 1 includes a first box cover 1.1 and a second box cover 1.2, and the first box cover 1.1 and the second box cover 1.2 are connected by a buckle 1.3. With this arrangement, the box body 1 can be easily opened and closed, which is convenient for the storage operation of the wires.

[0028] like Figures 1 to 3 As shown, in this embodiment, the outer peripheral edge of the box body 1 is provided with a first threading cavity 1h and a second threading cavity 1i that bulge outward, and the first threading cavity 1h and the second threading cavity 1i are arranged in mirror symmetry; one end of the first threading cavity 1h and the second threading cavity 1i is set as a radial plane, and the first threading port 1a and the second threading port 1b are respectively arranged on the radial plane, and the other end of the first threading cavity 1h and the second threading cavity 1i is connected to the outer periphery of the box body 1 in an arc-shaped smooth transition. In this way, the first threading cavity 1h and the second threading cavity 1i play a guiding role, which can make the collection and release of the wire easier, and avoid the wire from being blocked at the first threading port 1a and the second threading port 1b.

[0029] like Figures 1 to 3 As shown, in this embodiment, the central angle of the arc segment between the first threading opening 1a and the second threading opening 1b on the box body 1 is greater than 90 degrees but less than 120 degrees. This arrangement allows sufficient restraint space around the wound wire to prevent the wire in the box body 1 from being wound loosely.

[0030] like Figure 1 As shown, in this embodiment, spiral winding guide grooves 2b with opposite spiraling directions are respectively provided at both ends of the winding post 2. In this way, the spiral winding guide grooves 2b play a guiding role, which can prevent the wire from winding irregularly on the winding post 2 and avoid the wire from being entangled when winding on the winding post 2, which is not conducive to winding and releasing.

[0031] The above-described are only the preferred embodiments of the present invention, and the above specific embodiments do not limit the present invention. Within the scope of the technical concept of the present invention, various deformations and modifications can occur. Any retouching, modification, or equivalent replacement made by those of ordinary skill in the art according to the above description shall fall within the scope protected by the present invention.

Claims

1. A telescopic wire storage device dedicated for medical equipment, comprising a wire storage box, the wire storage box including a box body (1), the outer periphery of the box body (1) being provided with a first wire threading opening (1a) and a second wire threading opening (1b), and a wire winding column (2) that can rotate freely being arranged at the axial center of the box body (1); characterized in that: There are multiple wire take-up boxes, which are placed parallel to each other and connected. The winding posts (2) of the multiple wire take-up boxes are hollow tubes and located on the same straight line, and the multiple wire take-up boxes share the same winding handle (3); the winding handle (3) includes a handle (3.1), a handle body (3.2), a moving rod (3.3), a reed (3.4) and a movable latch (3.5). The handle (3.1) is fixedly installed at the tail end of the handle body (3.2). An axially extending narrow cavity (3.2a) is provided in the handle body (3.2). A number of latch mounting openings (3.2b) corresponding to and communicating with the narrow cavity (3.2a) are provided on the side wall of the handle body (3.2). The moving rod (3.3) is movably installed in the narrow cavity (3.2a). A reed (3.4) is installed at each of the lower parts of both ends of the moving rod (3.3). A button (3.6) is installed near the tail end of the handle body (3.2). The inner end of the button (3.6) is fixed to the upper part of the moving rod (3.3). A latch mounting groove (3.3a) is provided at the part of the moving rod (3.3) corresponding to the latch mounting opening (3.2b). A magnet (3.7) is provided in the latch mounting groove (3.3a). The movable latch (3.5) can be inserted into the latch mounting groove (3.3a) through the latch mounting opening (3.2b) and be magnetically fixed; the inner hole of the winding post (2) is circular, and an insertion groove (2a) matching the movable latch (3.5) is axially provided on the side wall of the inner hole of the winding post (2); a hook hole (3.5a) is provided at the upper end of the movable latch (3.5); a connecting boss (1c) is provided on the surface of one side of the box body (1), and a number of retaining pins (1d) are provided around the connecting boss (1c); a connecting concave cavity (1e) is provided on the surface of the other side of the box body (1). An inwardly retracted edge (1f) is provided at the opening edge of the connecting concave cavity (1e). A number of bayonet openings (1g) corresponding one-to-one to the retaining pins (1d) are provided on the inwardly retracted edge (1f). A first magnetic member (4) with an eccentric arrangement is provided on the surface of the connecting boss (1c), and a second magnetic member (5) with an eccentric arrangement is provided at the bottom of the connecting concave cavity (1e); when the retaining pins (1d) are aligned with the bayonet openings (1g), the first magnetic member (4) and the second magnetic member (5) are staggered from each other; when the first magnetic member (4) and the second magnetic member (5) are aligned and attracted, the retaining pins (1d) and the bayonet openings (1g) are staggered from each other; the box body (1) includes a first box cover (1.1) and a second box cover (1.2), and the first box cover (1.1) and the second box cover (1.2) are connected by a buckle (1.3) Connection; an outwardly convex first wire threading cavity (1h) and a second wire threading cavity (1i) are provided on the outer peripheral edge of the box body (1), and the first wire threading cavity (1h) and the second wire threading cavity (1i) are arranged in mirror symmetry; one end of the first wire threading cavity (1h) and the second wire threading cavity (1i) is set as a radial plane, the first wire threading opening (1a) and the second wire threading opening (1b) are respectively arranged on the radial plane, and the other ends of the first wire threading cavity (1h) and the second wire threading cavity (1i) are connected to the outer circumference of the box body (1) in an arc-shaped smooth transition.

2. The telescopic wire storage device for medical equipment as described in claim 1, characterized in that: The handle body (3.2) is provided with a plurality of colored coating sections (3.2c) having different colors, and each chuck mounting opening (3.2b) corresponds to a colored coating section (3.2c).

3. The telescopic wire storage device for medical equipment according to claim 1, characterized in that: The central angle corresponding to the arc section between the first wire threading opening (1a) and the second wire threading opening (1b) on the box body (1) is greater than 90 degrees but less than 120 degrees.

4. The telescopic wire storage device for medical equipment as claimed in claim 1, wherein: Spiraled wire winding guide grooves (2b) with opposite winding directions are respectively provided at both ends of the wire winding post (2).

Citation Information

Patent Citations

  • Special telescopic wire storage device for medical equipment

    CN217376865U