Wall fixing structure of ward interaction screen

By installing a light steel keel structure and horizontal sliding rails on the ward partition wall, combined with the design of sliders and tightening bolts, the problems of instability of the ward interactive screen and wall damage were solved, achieving a stable installation and aesthetic effect, and simplifying the installation process.

CN223984149UActive Publication Date: 2026-03-10BEIJING URBAN CONSTR GROUP
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-10
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

The fixed structure of traditional ward interactive screens can easily lead to unstable equipment and wall damage, and the precise installation position is difficult to preset, affecting the construction progress and aesthetics.

Method used

The system adopts a light steel keel partition wall structure, with horizontal sliding rails and embedded plates. Stable installation is achieved through sliders and tightening bolts. Concealed cable channels are reserved in the wall surface. Combined with sensors to monitor load and displacement, the system ensures the stability and aesthetics of the equipment.

Benefits of technology

This method ensures the stable installation of interactive screens in hospital wards, simplifies the installation process, reduces human error, improves construction efficiency, and guarantees the aesthetics and safety of the wall surface.

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Abstract

A wall fixing structure of a ward interaction screen is arranged on a partition wall of a ward. The partition wall comprises a keel, a heat preservation layer and a panel. At least two horizontal slide rails are vertically arranged in parallel at intervals on the keel corresponding to each bed, and the horizontal slide rails are positioned above the bed head of the sickbed; an embedded plate is arranged on the horizontal sliding rail; the embedded plate is arranged on the front side of the horizontal sliding rail, and a sliding block is arranged at the position, corresponding to the horizontal sliding rail, of the back face of the embedded plate; the sliding block is slidably connected to the horizontal sliding rail. A through hole is formed in the top or the bottom of the sliding block; a puller bolt is in threaded connection with the interior of the through hole; horizontal ribs are integrally arranged at the positions, between the adjacent horizontal sliding rails, of the back face of the embedded plate; threaded holes are formed in the positions, corresponding to the horizontal ribs, of the embedded plate at intervals; a through hole through which a cable passes is formed in the middle of the embedded plate; threading holes are formed in the positions, corresponding to the penetrating holes, of the panel. The fixing structure solves the technical problems that a traditional fixing structure is prone to equipment instability and wall surface damage.
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Description

Technical Field

[0001] This utility model relates to the field of medical equipment installation, specifically a wall-mounted structure for an interactive screen in a ward. Background Technology

[0002] With the widespread adoption of digital medical equipment, bedside interactive screens are gradually becoming an important piece of equipment in hospital wards. The installation of these screens requires consideration of the equipment's weight and the load-bearing requirements of the walls during long-term use.

[0003] Currently, many hospital walls are still made of masonry. Installing interactive screens requires installing concrete equipment strips on the walls, which not only increases wall weight, construction costs, and construction speed, but also affects the aesthetics of the walls. Furthermore, since the interactive screens are purchased and installed by the hospital later, accurately pre-setting the installation location is difficult, making adjustments to the fixed points inconvenient.

[0004] For light steel keel partition walls, the interactive screen has a folding arm, and the frequent dragging and dropping scenarios place higher demands on the stability of the wall. If reasonable fixing points are not set, problems such as unstable equipment and wall damage may easily occur.

[0005] Therefore, it is necessary to design a new type of fixing structure that can ensure the stable installation of the equipment, maintain the aesthetics of the wall, and adapt to the installation requirements of the interactive screen later. Utility Model Content

[0006] The purpose of this utility model is to provide a wall-mounted structure for interactive screens in hospital wards, which aims to solve the technical problems of unstable equipment and wall damage that are common with traditional fixed structures.

[0007] To achieve the above objectives, the present invention adopts the following technical solution.

[0008] A wall-mounted structure for an interactive screen in a ward is installed on a partition wall of the ward. The partition wall includes a frame, an insulation layer filled in the frame, and panels covering both sides of the frame. At least two horizontal slide rails are arranged vertically and parallel at intervals on the frame, corresponding to the position of each bed, and the horizontal slide rails are located above the head of the bed. An embedded plate is installed on the horizontal slide rail. The embedded plate is located on the front side of the horizontal slide rail, and a slider is installed on the back of the embedded plate at the position corresponding to the horizontal slide rail. The slider is slidably connected to the horizontal slide rail. A through hole is provided at the top or bottom of the slider. A tightening bolt is threaded into the through hole. The slider is fixed by the end of the tightening bolt pressing against the horizontal slide rail. A horizontal rib is integrally provided on the back of the embedded plate at the position between adjacent horizontal slide rails. Threaded holes are provided on the embedded plate at intervals corresponding to the horizontal ribs. A through hole for passing a cable is opened in the middle of the embedded plate. A wire hole is opened on the panel at the position corresponding to the through hole.

[0009] Preferably, the keel includes vertical keels and horizontal keels; the vertical keels are arranged at the same height, and the upper end of the vertical keel is connected to the top keel set at the bottom of the top plate, and the lower end of the vertical keel is connected to the ground keel set on the ground; the horizontal keel is connected between adjacent vertical keels, and the front side of the vertical keel extends beyond the front side of the horizontal keel; the horizontal slide rail is connected to the front side of the horizontal keel at the position corresponding to the horizontal keel; the front side of the embedded plate is flush with the front side of the vertical keel.

[0010] Preferably, the top and bottom of the horizontal slide rail are respectively provided with slide grooves along the transverse length; the longitudinal section shape of the inner surface of the slider is adapted to the longitudinal section shape of the horizontal slide rail; the slider is fitted on the horizontal slide rail, and slide bars are respectively provided on the inner surface of the slider at the position corresponding to the slide groove; the slide bars are slidably connected to the slide groove.

[0011] Preferably, the implant is located directly above the head of the hospital bed, and the distance between the implant and the ground is 1550~1650mm.

[0012] Preferably, the length of the embedded plate is 400mm~500mm, the width of the embedded plate is 250mm~300mm, and the thickness of the embedded plate is not less than 5mm.

[0013] Preferably, the wall fixing structure is further provided with a sensor group; the sensor group includes a load sensor and a displacement sensor; the load sensor is installed at the connection between the embedded plate and the keel and at the connection between the embedded plate and the interactive screen; the displacement sensor is installed on the keel and the embedded plate.

[0014] Compared with the prior art, the present invention has the following features and beneficial effects.

[0015] 1. The headboard wall of the hospital bed in this utility model adopts a light steel keel partition wall, with connection and fixing points set inside the wall to ensure the stability of the interactive screen and also to ensure the access of high-voltage and low-voltage wires. The fixing method adopts a concealed embedding method, and the surface is decorated with resin board to ensure the aesthetics of the wall.

[0016] 2. This utility model uses square steel keel to transfer load, ensuring sufficient load-bearing capacity, and reserves a large area of ​​embedded plate in the middle to ensure that interactive screens of any size can be installed later.

[0017] 3. The adjustable embedded plate of this utility model supports horizontal displacement, which allows the fixing structure to be flexibly adjusted according to the position of different hospital beds and the needs of interactive screens. By adjusting the slide rail and slider, the later installation process can be simplified and human error can be reduced. Once the position is adjusted, tightening the top bolts can fix it, thus improving installation efficiency.

[0018] 4. The embedded plate in this utility model adopts multiple sliders and at least two sliding connections. At the same time, the embedded plate is integrally provided with stiffening ribs at the connection position with the interactive screen. The design of these structures of the embedded plate increases the stability of the connection structure and ensures that the equipment is installed securely. Attached Figure Description

[0019] The present invention will now be described in further detail with reference to the accompanying drawings.

[0020] Figure 1 This is a schematic diagram of the horizontal cross-section of the wall fixing structure of this utility model installed in the partition wall.

[0021] Figure 2 This is a schematic diagram of the embedded plate in this utility model.

[0022] Figure 3 This is a schematic diagram of the structure of the present invention, in which the slider is set on the horizontal slide rail.

[0023] Attached diagram labels: 1 - partition wall, 1.1 - keel, 1.1.1 - vertical keel, 1.1.2 - horizontal keel, 1.2 - insulation layer, 1.3 - panel, 2 - horizontal slide rail, 3 - embedded plate, 4 - slider, 5 - through hole, 6 - tightening bolt, 7 - horizontal rib, 8 - perforation, 9 - slide groove, 10 - slide strip. Detailed Implementation

[0024] like Figure 1-3As shown, the wall-mounted structure of this ward interactive screen is installed on the partition wall 1 of the ward; the partition wall 1 includes a keel 1.1, an insulation layer 1.2 filled in the keel 1.1, and a panel 1.3 covering both sides of the keel 1.1; at least two horizontal slide rails 2 are arranged vertically and parallel at intervals at the position corresponding to each bed on the keel 1.1, and the horizontal slide rails 2 are located above the head of the bed; embedded plates 3 are installed on the horizontal slide rails 2; the embedded plates 3 are located on the front side of the horizontal slide rails 2, and sliders 4 are installed on the back of the embedded plates 3 at the position corresponding to the horizontal slide rails 2. In this embodiment, each embedded plate 3 is connected to two horizontal slide rails 2; at least two sliders 4 are provided on the back of the embedded plate 3, generally four, and the four sliders 4 are respectively provided on the back of the embedded plate 3 near the four corners; threaded holes are provided on the front side of the sliders 4, and the sliders 4 are connected to the embedded plate 3 by screws; the sliders 4 are slidably connected to the horizontal slide rails 2; through holes 5 are provided on the top or bottom of the sliders 4; tightening bolts 6 are threadedly connected in the through holes 5; the sliders 4 are fixed by pressing the end of the tightening bolts 6 against the horizontal slide rails 2; horizontal ribs 7 are integrally provided on the back of the embedded plate 3 at the position between adjacent horizontal slide rails 2; threaded holes are provided at intervals on the embedded plate 3 corresponding to the horizontal ribs 7; a through hole 8 for passing through a cable is opened in the middle of the plate surface of the embedded plate 3; a wire hole with a diameter of 40mm is opened on the panel 1.3 corresponding to the through hole 8.

[0025] In this embodiment, the keel 1.1 includes a vertical keel 1.1.1 and a horizontal keel 1.1.2; the vertical keel 1.1.1 is arranged at full height, and the upper end of the vertical keel 1.1.1 is connected to the top keel set at the bottom of the top plate, and the lower end of the vertical keel 1.1.1 is connected to the ground keel set on the ground; the vertical keel 1.1.1 is fixed to the top and ground keels with dovetail wires; the horizontal keel 1.1.2 is connected between adjacent vertical keels 1.1.2, and the front side of the vertical keel 1.1.1 extends beyond the front side of the horizontal keel 1.1.2; the horizontal slide rail 2 is connected to the front side of the horizontal keel 1.1.2 at the position corresponding to the horizontal keel 1.1.2; the front side of the embedded plate 3 is flush with the front side of the vertical keel 1.1.1.

[0026] In this embodiment, the top and bottom of the horizontal slide rail 2 are respectively provided with slide grooves 9 along the transverse length; the longitudinal section shape of the inner surface of the slider 4 is adapted to the longitudinal section shape of the horizontal slide rail 2; the slider 4 is fitted on the horizontal slide rail 2, and a slide bar 10 is respectively provided on the inner surface of the slider 4 at the position corresponding to the slide groove 9; the slide bar 10 is slidably connected to the slide groove 9.

[0027] In this embodiment, the embedded plate 3 is located directly above the head of the hospital bed, and the distance between the embedded plate 3 and the ground is 1550~1650mm.

[0028] In this embodiment, the length of the embedded plate 3 is 400mm~500mm, the width of the embedded plate 3 is 250mm~300mm, and the thickness of the embedded plate 3 is not less than 5mm.

[0029] In this embodiment, a sensor group is also provided in the wall fixing structure; the sensor group includes a load sensor and a displacement sensor; the load sensor is installed at the connection between the embedded plate 3 and the keel and at the connection between the embedded plate 3 and the interactive screen, and detects the force at the connection point in real time to ensure that the installed equipment is subjected to reasonable force on the partition wall 1 and avoids overload; the displacement sensor is installed on the keel and the embedded plate 3 to monitor the displacement of the embedded plate and the partition wall 1, and can detect the small displacement of the partition wall 1 or the equipment caused by load changes, and promptly detect potential displacement problems.

[0030] In this embodiment, the vertical keel 1.1.1 is made of square steel, and the cross-sectional dimensions of the vertical keel 1.1.1 are 20*30*3mm; the galvanized square steel horizontal keel 1.1.2 is made of square steel, and the cross-sectional dimensions of the horizontal keel 1.1.2 are smaller than those of the vertical keel 1.1.1.

[0031] In this embodiment, the construction method of the wall fixing structure of the ward interactive screen is as follows.

[0032] Step 1: Make light steel keel. Connect the vertical keel 1.1.1 and the horizontal keel into a whole according to the design. Set the horizontal slide rail 2 between the adjacent vertical keels 1.1.1 at a height of 1600~1650mm from the ground.

[0033] Step 2: Slide the embedded plate 3 with the slider 4 onto the horizontal slide rail 2;

[0034] Step 3: Install the light steel keel and connect the vertical keel 1.1.1 to the top and bottom keels using dovetail screws.

[0035] Step 4: Adjust the embedded plate 3 to the middle position of the designed bed, and align the wire hole with the preset pipeline.

[0036] Step 5: Cover with calcium silicate board and glue resin board to form a flat decorative surface, and mark the position of the threaded hole of embedded plate 3 on panel 1.3.

[0037] Step 6, Interactive screen installation: Later, the interactive screen bracket is fixed through the pre-drilled threaded holes in the embedded plate. Screws are used to pass through the calcium silicate board and connect to the threaded holes in the embedded plate 3. The circuit can then be connected and it can be used.

[0038] The above embodiments are not exhaustive examples of specific implementation methods, and other embodiments may also exist. The purpose of the above embodiments is to illustrate the present utility model, rather than to limit the protection scope of the present utility model. All applications derived from simple variations of the present utility model fall within the protection scope of the present utility model.

Claims

1. A wall fixing structure of a ward interaction screen, which is arranged on a partition wall (1) of a ward; the partition wall (1) comprises a keel (1.1), a thermal insulation layer (1.2) filled in the keel (1.1), and a panel (1.3) covering both sides of the keel (1.1); characterized in that: The keel (1.1) is vertically and parallelly arranged with at least two horizontal sliding rails (2) at the position corresponding to each bed, and the horizontal sliding rails (2) are located above the head of the hospital bed; the embedded plate (3) is arranged on the horizontal sliding rail (2); the embedded plate (3) is arranged on the front side of the horizontal sliding rail (2), and the sliding block (4) is arranged on the back of the embedded plate (3) corresponding to the position of the horizontal sliding rail (2); the sliding block (4) is slidingly connected to the horizontal sliding rail (2); the through hole (5) is arranged on the top or bottom of the sliding block (4); the top tight bolt (6) is threadedly connected in the through hole (5); the sliding block (4) is fixed by the end of the top tight bolt (6) abutting against the horizontal sliding rail (2); the horizontal rib (7) is integrally arranged on the back of the embedded plate (3) at the position between adjacent horizontal sliding rails (2); the threaded holes are arranged on the embedded plate (3) corresponding to the horizontal ribs (7); the perforation (8) for passing through the cable is arranged in the middle of the plate surface of the embedded plate (3); the wire hole is arranged on the panel (1.3) corresponding to the perforation (8).

2. The wall mounting structure for a room interaction screen according to claim 1, characterized in that: The keel (1.1) comprises a vertical keel (1.1.1) and a horizontal keel (1.1.2); the vertical keel (1.1.1) is arranged vertically, and the upper end of the vertical keel (1.1.1) is connected with the ceiling keel arranged at the bottom of the ceiling, and the lower end of the vertical keel (1.1.1) is connected with the floor keel arranged on the ground; the horizontal keel (1.1.2) is connected between adjacent vertical keels (1.1.1), and the front side of the vertical keel (1.1.1) exceeds the front side of the horizontal keel (1.1.2); the horizontal sliding rail (2) is connected to the front side of the horizontal keel (1.1.2) at the position corresponding to the horizontal keel (1.1.2); the front side of the embedded plate (3) is flush with the front side of the vertical keel (1.1.1). The top and bottom of the horizontal sliding rail (2) are respectively provided with a sliding groove (9) along the transverse direction; the longitudinal section shape of the inner surface of the sliding block (4) is adapted to the longitudinal section shape of the horizontal sliding rail (2); the sliding block (4) is sleeved on the horizontal sliding rail (2), and the sliding block (4) is provided with a sliding strip (10) on the inner surface corresponding to the sliding groove (9); the sliding strip (10) is slidingly connected with the sliding groove (9).

3. The wall mounting structure for a room interaction screen of claim 1, wherein: The embedded plate (3) is located directly above the head of the hospital bed, and the distance between the embedded plate (3) and the ground is 1550-1650mm.

4. The wall mounting structure for a room interaction screen of claim 1, wherein: The length of the embedded plate (3) is 400-500mm, the width of the embedded plate (3) is 250-300mm, and the thickness of the embedded plate (3) is not less than 5mm.

5. The wall mounting structure for a room interaction screen of claim 1, wherein: The wall fixing structure is also provided with a sensor group; the sensor group comprises a load sensor and a displacement sensor; the load sensor is installed at the connection between the embedded plate (3) and the keel and the connection between the embedded plate (3) and the interactive screen; the displacement sensor is installed on the keel and the embedded plate (3).

6. The wall mounting structure for a room interaction screen of claim 1, wherein: ​