Medical antibacterial ALC partition structure

CN224785128UActive Publication Date: 2026-09-22新疆兵团城建集团有限公司
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Patent Information

Application Number
CN202521339619.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-27
Publication Date
2026-09-22
Estimated Expiration
2035-06-27

AI Technical Summary

Technical Problem

然而,现有技术中传统ALC平板的安装系统难以满足ICU、手术室等高标准医疗环境的需求

Benefits of technology

[0014]1、通过ALC平板的预开槽设计、倒角处理及定位连接装置的一体化结构,实现医疗设备带快速嵌入及模块化拼装,显著提高施工效率。可旋转270度的不锈钢连接片配合尼龙胀管螺钉固定,简化施工流程,减少二次加工,适应复杂安装角度需求。

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Abstract

A kind of medical antibacterial ALC partition structure, including prefabricated ALC flat plate, four corners of the ALC flat plate are connected with the top surface and bottom surface of room respectively by positioning connecting mechanism, and energy-absorbing cushion block is equipped between ALC flat plate and the top surface and bottom surface of room, T-shaped antibacterial guard is pressed in the gap between two adjacent ALC flat plates;Through the pre-slot design of ALC flat plate, chamfer processing and the integration of positioning connecting device, realize the quick embedding of medical equipment and modular assembly, significantly improve construction efficiency. The connecting piece that can rotate 270 degrees is fixed with ALC flat plate by screw hole and screw, simplify construction process, reduce secondary processing, adapt to complex installation angle requirement;The utility model has the advantages of antibacterial sealing, heat insulation bridge and anti-seismic function, significantly improve the health safety and construction efficiency of medical building, meet the demand of high-standard environment.
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Description

Technical Field

[0001] This utility model relates to the field of partition wall installation technology, specifically to a medical antibacterial ALC partition wall structure. Background Technology

[0002] ALC (autoclaved aerated concrete) partition walls are widely used in the construction industry due to their lightweight, fire resistance, and excellent sound insulation properties. However, existing traditional ALC panel installation systems are insufficient to meet the high-standard requirements of medical environments such as ICUs and operating rooms. Firstly, conventional panel joints are often sealed with ordinary sealant or cement mortar, lacking long-lasting antibacterial properties. This makes them prone to bacterial growth in humid environments, turning the joints into sources of microbial contamination and increasing the risk of cross-infection within hospitals, failing to meet the cleanliness and hygiene requirements of medical spaces. Secondly, medical buildings have stringent requirements for structural seismic performance. Traditional installation methods, often using rigid connections such as welding or bolts, are prone to stress concentration during earthquakes, leading to panel cracking and joint dislocation, threatening medical safety. Furthermore, traditional construction processes require multiple steps, such as on-site cutting, positioning, and grouting, which are inefficient and reliant on manual experience, resulting in extended construction periods and increased costs, making them unsuitable for rapid hospital renovations or emergency scenarios. Utility Model Content

[0003] In order to overcome the defects of the existing technology, the purpose of this utility model is to provide a medical antibacterial ALC partition structure, which integrates antibacterial sealing, thermal bridging and elastic shock resistance functions through positioning connectors and energy-absorbing pads, so as to achieve rapid installation and meet the requirements of medical buildings for hygiene, safety and construction efficiency.

[0004] To achieve the above objectives, this utility model provides the following technical solution:

[0005] A medical antibacterial ALC partition wall structure includes a prefabricated ALC plate 1. The four corners of the ALC plate 1 are connected to the top and bottom surfaces of the room through positioning and connecting mechanisms 2, and an energy-absorbing pad 3 is provided between the ALC plate 1 and the top and bottom surfaces of the room. A T-shaped antibacterial strip 5 is pressed into the gap between two adjacent ALC plates 1.

[0006] The ALC plate 1 has chamfers 101 at both ends, and the angle of the chamfers 101 is adapted to the arc angle of the arc edge of the flat oval thin-walled steel pipe 201.

[0007] The ALC plate 1 is provided with heat insulation pads 102 at the four corners of the connection surface between the plate and the positioning connection mechanism 2.

[0008] The positioning and connecting mechanism 2 includes a flat oval thin-walled steel pipe 201, with connecting pieces 202 rotatably connected to the straight edges on both sides of the flat oval thin-walled steel pipe 201, and a thin-walled steel honeycomb mesh support structure 203 provided inside the flat oval thin-walled steel pipe 201. A first elastic rubber damping pad 205 is filled between the thin-walled steel honeycomb mesh support structure and the inner wall of the flat oval thin-walled steel pipe 201.

[0009] The connecting piece 202 has a rotation angle of 0-270°.

[0010] The energy-absorbing pad 3 includes a PVC square tube 301, and a second elastic rubber damping pad 302 is embedded in the PVC square tube 301.

[0011] The ALC plate 1 has multiple longitudinal grooves 103.

[0012] The connecting piece 202 is connected to the ALC plate 1 through the screw hole 4.

[0013] This utility model has the following beneficial effects:

[0014] 1. The ALC flat panel's pre-grooved design, chamfering, and integrated positioning connection device enable rapid embedding and modular assembly of medical equipment, significantly improving construction efficiency. A 270-degree rotatable stainless steel connecting plate, combined with nylon expansion screws, simplifies the construction process, reduces secondary processing, and adapts to complex installation angle requirements.

[0015] 2. By using T-shaped PVC antibacterial protective strips (joint surfaces), each connecting surface of the wall can be coated with antibacterial material to form a three-dimensional antibacterial barrier from the inside out, effectively inhibiting bacterial growth; meeting the high standards required for a clean environment in hospitals.

[0016] 3. By combining the heat insulation pad with the thin-walled stainless steel flat round tube connector, the heat conduction path is blocked, thus improving the thermal insulation performance of the partition wall; the flat round elastic rubber damping layer and the energy-absorbing pad work together to absorb vibration energy through elastic deformation, reducing the adverse effects of earthquakes, while filling installation gaps and avoiding stress concentration.

[0017] In summary, by using pre-grooved and chamfered designs combined with 270° rotatable connecting pieces to achieve rapid modular assembly, employing T-shaped antibacterial strips combined with antibacterial coatings to form a three-dimensional antibacterial barrier, and utilizing energy-absorbing pads and elastic rubber damping layers to synergistically absorb energy and resist earthquakes, this utility model has the advantages of high construction efficiency, excellent antibacterial performance, good earthquake safety, excellent thermal performance, and effective avoidance of stress concentration. Attached Figure Description

[0018] Figure 1 This is a perspective view of the entire utility model.

[0019] Figure 2 This is a schematic diagram of the steel honeycomb mesh structure of this utility model.

[0020] Figure 3 This is a schematic diagram of the structure of the prefabricated wall panel of this utility model.

[0021] Figure 4 This is a schematic diagram of the positioning and connecting device of this utility model.

[0022] Figure 5 This is a schematic diagram of the structure of the energy-absorbing pad block of this utility model.

[0023] Figure 6 This is a partial schematic diagram of the positioning and connecting device of this utility model.

[0024] In the diagram: 1. ALC flat plate; 101. Chamfer; 102. Heat insulation pad; 103. Longitudinal groove; 2. Positioning and connecting mechanism; 201. Flat round thin-walled steel pipe; 202. Connecting piece; 203. Thin-walled steel honeycomb mesh support structure; 204. First elastic rubber damping pad; 3. Energy-absorbing pad block; 301. PVC square tube; 302. Second elastic rubber damping pad; 4. Screw holes; 5. T-shaped PVC antibacterial strip. Detailed Implementation

[0025] The present invention will now be described in further detail with reference to the accompanying drawings.

[0026] like Figure 1 , Figure 2 As shown, a medical antibacterial ALC partition wall structure includes a prefabricated ALC plate 1. The four corners of the ALC plate 1 are connected to the top and bottom surfaces of the room through positioning and connecting mechanisms 2, and energy-absorbing pads 3 are provided between the ALC plate 1 and the top and bottom surfaces of the room. T-shaped antibacterial strips 5 are pressed into the gaps between two adjacent ALC plates 1 to fill the gaps and absorb vibration energy, providing antibacterial sealing.

[0027] The ALC plate 1 has chamfers 101 at both ends, and the angle of the chamfers 101 is adapted to the arc angle of the arc edge of the flat oval thin-walled steel pipe 201.

[0028] The ALC plate 1 is provided with heat insulation pads 102 at the four corners of the connection surface between the plate and the positioning connection mechanism 2.

[0029] The positioning and connecting mechanism 2 includes a flat oval thin-walled steel tube 201. Connecting pieces 202 are rotatably connected to the straight edges on both sides of the flat oval thin-walled steel tube 201, forming a hinge structure with the flat oval thin-walled steel tube 201. A thin-walled steel honeycomb mesh support structure 203 is provided inside the flat oval thin-walled steel tube 201. A first elastic rubber damping pad 204 is filled between the thin-walled steel honeycomb mesh support structure and the inner wall of the flat oval thin-walled steel tube 201.

[0030] The connecting piece 202 has a rotation angle of 0-270°.

[0031] The energy-absorbing pad 3 includes a PVC square tube 301, and a second elastic rubber damping pad 302 is embedded in the PVC square tube 301 to fill the gap and absorb vibration energy.

[0032] The ALC flat plate 1 has multiple longitudinal grooves 103 for embedding medical device strips.

[0033] The connecting piece 202 is connected to the ALC plate 1 through the screw hole 4.

[0034] The working principle of this utility model is as follows:

[0035] The ALC plate 1 is placed between the ceiling and the floor of the room, and energy-absorbing pads 3 are placed at the top and bottom ends of the ALC plate 1, with a second elastic rubber damping pad 302 embedded inside. Then, it is placed at the corner of the ALC plate 1 through the positioning and connecting mechanism 2. The flat round thin-walled steel tube 201 is equipped with a first elastic rubber damping pad 204, which can effectively absorb energy through elastic deformation, reduce the adverse effects of earthquakes, and fill the installation gap to avoid stress concentration. The arc of the flat round thin-walled steel tube 201 is adapted to the chamfer of the ALC plate 1. The connecting piece of the flat round thin-walled steel tube 201 is connected to the ALC partition 1 through screw holes 4. The connection method is simple and can be quickly installed and disassembled. T-shaped antibacterial strips 5 are pressed into the gaps between two adjacent partition boards 1, and antibacterial sealing material is applied to the gaps of each connecting surface. Multiple longitudinal grooves 103 are opened on the surface of the ALC plate 1 to embed medical equipment belts.

[0036] Although embodiments of the present invention have been shown and described, it will be apparent to those skilled in the art that...

[0037] It is understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of this utility model, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A medical antibacterial ALC partition wall structure, comprising a prefabricated ALC flat plate (1), characterized in that, The four corners of the ALC plate (1) are connected to the top and bottom surfaces of the room through positioning connection mechanism (2), and an energy-absorbing pad (3) is provided between the ALC plate (1) and the top and bottom surfaces of the room. A T-shaped antibacterial strip (5) is pressed into the gap between two adjacent ALC plates (1).

2. The medical antibacterial ALC partition wall structure according to claim 1, characterized in that, The ALC plate (1) has chamfers (101) at both ends, and the angle of the chamfers (101) is adapted to the arc angle of the arc edge of the flat round thin-walled steel pipe (201).

3. The medical antibacterial ALC partition wall structure according to claim 1, characterized in that, The ALC plate (1) has heat insulation pads (102) at the four corners of the connection surface with the positioning connection mechanism (2).

4. The medical antibacterial ALC partition wall structure according to claim 1, characterized in that, The positioning and connecting mechanism (2) includes a flat oval thin-walled steel pipe (201), with connecting pieces (202) rotatably connected to the straight edges on both sides of the flat oval thin-walled steel pipe (201), and a thin-walled steel honeycomb mesh support structure (203) provided inside the flat oval thin-walled steel pipe (201). A first elastic rubber damping pad (204) is filled between the thin-walled steel honeycomb mesh support structure and the inner wall of the flat oval thin-walled steel pipe (201).

5. The medical antibacterial ALC partition wall structure according to claim 4, characterized in that, The connecting piece (202) has a rotation angle of 0-270°.

6. The medical antibacterial ALC partition wall structure according to claim 1, characterized in that, The energy-absorbing pad (3) includes a PVC square tube (301) with a second elastic rubber damping pad (302) embedded inside the PVC square tube (301).

7. The medical antibacterial ALC partition wall structure according to claim 1, characterized in that, The ALC plate (1) has multiple longitudinal grooves (103).

8. A medical antibacterial ALC partition wall structure according to claim 4 or 5, characterized in that, The connecting piece (202) is connected to the ALC plate (1) through the screw hole (4).