An isolation belt monomer and a three-cavity independent medical belt using the same

CN224640020UActive Publication Date: 2026-08-18TENGZHOU XIAGUANG ELECTRONICS SCI & TECHCO
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Patent Information

Application Number
CN202522457486.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-20
Publication Date
2026-08-18
Estimated Expiration
2035-11-20

AI Technical Summary

Technical Problem

然而,现有隔离带多为统一结构,无法根据医院实际地形灵活组装,难以适应病房、输液室等不同功能区域的空间布局需求,导致安装及使用过程中存在诸多不便

Benefits of technology

本实用新型的隔离带单体可以实现隔离片的角度的调整,能够随型就势,从而适应现场实际条件。通过将多个隔离带单体串联使用,可满足病房、输液室等不同功能区域的空间布局需求。

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Abstract

The utility model discloses a kind of isolation belt monomer and three-cavity independent medical belt using the monomer, isolation belt monomer includes first isolation sheet and second isolation sheet, the first isolation sheet and second isolation sheet are connected together by pivot;The bottom side of first isolation sheet is equipped with first mounting plate;The bottom side of second isolation sheet is equipped with second mounting plate;First mounting plate and second mounting plate are equipped with mounting hole on it. Three-cavity independent medical belt includes oxygen cavity, weak electric cavity and strong electric cavity, the oxygen cavity is isolated by first isolation belt between weak electric cavity, the weak electric cavity and strong electric cavity are isolated by multiple isolation belt monomer;The outside of oxygen cavity, weak electric cavity and strong electric cavity is equipped with buckle plate.The isolation belt monomer of the utility model can realize the angle adjustment of isolation sheet, can be with type just situation, to adapt to actual condition on site. By using multiple isolation belt monomers in series, the spatial layout demand of different function areas such as ward, infusion room can be met.
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Description

Technical Field

[0001] This utility model relates to the field of medical belt technology, and in particular to an isolation belt unit and a three-chamber independent medical belt using the unit. Background Technology

[0002] Currently, there are several types of medical isolation belts. One type is the hybrid medical isolation belt, where high-voltage electricity, low-voltage electricity, and gas pipelines such as oxygen are installed simultaneously in the same cavity, which is highly prone to dangerous accidents such as fires and explosions. Another type has a separate oxygen cavity, while high-voltage and low-voltage electricity are still mixed in the same cavity, which is relatively safer, but still has certain safety hazards. In addition, there is a three-cavity independent structure, with each cavity separated by corresponding isolation belts. However, existing isolation belts are mostly of a uniform structure, which cannot be flexibly assembled according to the actual terrain of the hospital, and is difficult to adapt to the spatial layout requirements of different functional areas such as wards and infusion rooms, resulting in many inconveniences during installation and use. Utility Model Content

[0003] The purpose of this invention is to solve the aforementioned problems by proposing a single isolation strip and a three-chamber independent medical belt using this single strip. This single isolation strip allows for adjustment of the angle of the isolation panels to adapt to actual site conditions. By connecting multiple isolation strips in series, the spatial layout requirements of different functional areas such as wards and infusion rooms can be met.

[0004] To achieve the above objectives, the present invention adopts the following technical solution: A single air-holding strip includes a first air-holding sheet and a second air-holding sheet, which are connected together by a pivot. A first mounting plate is provided on one side of the bottom of the first isolation plate; A second mounting plate is provided on one side of the bottom of the second isolation plate; Both the first mounting plate and the second mounting plate are provided with mounting holes.

[0005] The opening angle range of the first and second isolation panels is 0°-270°, and the isolation strips can be adjusted according to the actual ward layout, making installation more convenient.

[0006] The first mounting plate and the second mounting plate are respectively installed on the same side of the first isolation plate and the second isolation plate, that is, the first mounting plate is installed on the right side of the first isolation plate and the second mounting plate is installed on the right side of the second isolation plate, or the first mounting plate is installed on the left side of the first isolation plate and the second mounting plate is installed on the left side of the second isolation plate, so that there is space to fix the isolation strip unit.

[0007] Both the first and second isolation panels have connecting buckles on the non-connected side. When multiple units need to be connected together, they are hinged together using the connecting buckles and pivots. This allows for arbitrary splicing according to the actual situation to obtain an isolation strip that meets the specific requirements.

[0008] The three-chamber independent medical belt using the aforementioned isolation strip unit includes an oxygen chamber, a weak current chamber, and a strong current chamber. The oxygen chamber and the weak current chamber are isolated by a first isolation strip, and the weak current chamber and the strong current chamber are isolated by multiple isolation strip units. The oxygen chamber, weak current chamber, and strong current chamber are equipped with buckles on their exteriors.

[0009] The oxygen chamber is equipped with an oxygen tube and a negative pressure pipe. The oxygen tube is equipped with at least one oxygen terminal, and the negative pressure pipe is equipped with at least one negative pressure terminal.

[0010] The oxygen pipe is also equipped with an oxygen maintenance valve.

[0011] The wiring in the low-voltage compartment is connected to the call extension and the network port socket. The wiring in the high-voltage compartment is connected to at least one switch, at least one light, and at least one socket.

[0012] The beneficial effects of this utility model are: The isolation strip unit of this invention allows for adjustment of the angle of the isolation panel, enabling it to adapt to different site conditions. By connecting multiple isolation strip units in series, the spatial layout requirements of different functional areas such as wards and infusion rooms can be met.

[0013] By combining individual isolation strip units with adjustable angles to form a hinged isolation strip, it is possible to easily install isolation strips of any shape, effectively solving the installation problems caused by the mismatch between design dimensions and actual dimensions, and achieving a perfect balance between design and construction. Attached Figure Description

[0014] Figure 1 This is a structural schematic diagram of a single unit in the firebreak; Figure 2 Schematic diagram of medical belt structure Among them, 1. Oxygen chamber, 2. Low voltage chamber, 3. Oxygen maintenance valve, 4. High voltage chamber, 5. Negative pressure terminal, 6. Oxygen terminal, 7. Call extension, 8. Network port socket, 9. Socket, 10. Switch, 11. First isolation zone, 12. Second isolation zone; 13. First isolation plate, 14. Second isolation plate, 15. Second mounting plate, 16. Rotary shaft, 17. First mounting plate, 18. Mounting hole, 19. Connecting buckle. Detailed Implementation

[0015] The present invention will be further described below with reference to the accompanying drawings and embodiments: A type of isolation strip unit, such as Figure 1 As shown, it includes a first isolation plate 13 and a second isolation plate 14, which are connected together by a rotating shaft 16. A first mounting plate 17 is provided on one side of the bottom of the first isolation plate 13; A second mounting plate 15 is provided on one side of the bottom of the second isolation plate 14; Both the first mounting plate 17 and the second mounting plate 15 are provided with mounting holes 18.

[0016] In this embodiment, the length of the side of the first isolation plate 13 and the second isolation plate 14 parallel to the wall is 9cm, which is larger than the side length of the commonly used 86 box, making it convenient to change the shape and make different isolation strips.

[0017] The opening angle range of the first isolation panel 13 and the second isolation panel 14 is 0°-270°, and the isolation panel can be adjusted according to the actual ward layout, making it easier to install.

[0018] The first mounting plate 17 and the second mounting plate 15 are respectively mounted on the same side of the first isolation plate 13 and the second isolation plate 14, as follows: Figure 1 As shown, the first mounting plate is installed on the right side of the first isolation plate, and the second mounting plate is installed on the right side of the second isolation plate, which allows for space to be used to fix the isolation strip units.

[0019] Both the first and second isolation panels have connecting buckles 19 on their non-connected sides. When multiple units need to be connected together, they are hinged together using the connecting buckles and pivots. This allows for arbitrary splicing according to actual needs, resulting in a hinged isolation strip that meets specific requirements. In this embodiment, the second isolation panel 14 has two connecting buckles 19 on its right side, and the first isolation panel 13 has three connecting buckles 19 on its left side. When connected to another isolation strip unit, the connection is made via a pivot.

[0020] The three-chamber independent medical belt using the aforementioned isolation belt unit, such as Figure 2As shown, the system includes an oxygen chamber 1, a low-voltage chamber 2, and a high-voltage chamber 4. The oxygen chamber 1 and the low-voltage chamber 2 are isolated by a first isolation strip 11. The first isolation strip 11 can be a commonly used isolation strip or a single isolation strip unit provided in this application. The low-voltage chamber 2 and the high-voltage chamber 4 are isolated by a second isolation strip 12. The second isolation strip 12 is composed of multiple isolation strip units, each of which is closely arranged and fixed to form the second isolation strip 12. The oxygen chamber, low-voltage chamber, and high-voltage chamber are externally equipped with fasteners. The isolation strip units and the first isolation strip 11 are processed using precision instruments. With the action of the fasteners, the three chambers can be independently sealed, without interference, and mutually sealed, achieving a safety effect.

[0021] This embodiment provides a schematic diagram of the medical belt layout of a bronchoscopy room. The oxygen chamber 1 contains an oxygen tube and a negative pressure pipeline. Two oxygen terminals 6 are mounted on the oxygen tube, and two negative pressure terminals 5 are mounted on the negative pressure pipeline. An oxygen maintenance valve 3 is also mounted on the oxygen tube. The wiring in the low-voltage electrical chamber 2 is connected to a call extension 7 and a network socket 8. The wiring in the high-voltage electrical chamber 4 is connected to a switch 10, a light (not shown in the diagram), and four sockets 9.

[0022] In a standard ward, the medical wiring above a bed typically has two high-voltage power outlets and one switch in the high-voltage compartment, one call extension and one network port in the low-voltage compartment, and one negative pressure terminal and one oxygen terminal in the oxygen compartment. In other rooms with different functional areas, the design can be customized according to actual needs.

[0023] The call extension 7 and network socket 8 in the low-voltage compartment 2 are at the same height from the ground as the switch 10 and socket 9 in the high-voltage compartment 4. To achieve this, in this embodiment, the second isolation strip 12 is designed in a serpentine shape. Utilizing the characteristic that the isolation strip unit can be easily deformed, it is possible to easily design a design such as... Figure 2 The second isolation zone 12 is shown. According to ergonomic regulations, the installation height of both high-voltage and low-voltage sockets is typically 1.4 meters, and they should be at the same height. However, in actual construction, the construction team follows the drawings provided by the design institute, while the owner arranges the beds based more on actual usage needs. This leads to significant dimensional deviations between the design drawings and the actual layout, making it difficult to fully meet the safety requirements in the design specifications. When the construction team needs to make minor adjustments to the medical zone according to the actual bed arrangement, traditional medical zones are often difficult to adjust flexibly. This application uses multiple isolation zone units for splicing, which can be easily assembled with the actual layout to form an isolation zone system that matches the actual situation. This modular splicing design effectively solves the installation problems caused by the mismatch between the design dimensions and the actual dimensions.

[0024] Although the specific embodiments of the present utility model have been described above in conjunction with the accompanying drawings, this is not intended to limit the scope of protection of the present utility model. Those skilled in the art should understand that various modifications or variations that can be made by those skilled in the art without creative effort based on the technical solution of the present utility model are still within the scope of protection of the present utility model.

Claims

1. A type of firebreak unit, characterized in that, It includes a first isolation plate and a second isolation plate, which are connected together by a rotating shaft; A first mounting plate is provided on one side of the bottom of the first isolation plate; A second mounting plate is provided on one side of the bottom of the second isolation plate; Both the first mounting plate and the second mounting plate are provided with mounting holes.

2. The isolation strip unit as described in claim 1, characterized in that, The opening angle range of the first and second isolation plates is 0°-270°.

3. A single-unit isolation strip as described in claim 1, characterized in that, The first mounting plate and the second mounting plate are respectively installed on the same side of the first isolation plate and the second isolation plate.

4. A single-unit isolation strip as described in claim 1, characterized in that, Both the first and second isolation plates have connecting buckles on the side where they are not connected.

5. A three-chamber independent medical band using the isolation band unit as described in claim 1, characterized in that, It includes an oxygen chamber, a weak current chamber, and a strong current chamber. The oxygen chamber and the weak current chamber are isolated by a first isolation strip, and the weak current chamber and the strong current chamber are isolated by multiple individual isolation strips. The oxygen chamber, weak current chamber, and strong current chamber are equipped with buckles on their exteriors.

6. The three-chamber independent medical belt as described in claim 5, characterized in that, The oxygen chamber is equipped with an oxygen tube and a negative pressure pipe. The oxygen tube is equipped with at least one oxygen terminal, and the negative pressure pipe is equipped with at least one negative pressure terminal.

7. The three-chamber independent medical belt as described in claim 6, characterized in that, The oxygen pipe is also equipped with an oxygen maintenance valve.

8. The three-chamber independent medical belt as described in claim 5, characterized in that, The wiring inside the low-voltage cavity is connected to the call extension and the network port socket.

9. The three-chamber independent medical belt as described in claim 5, characterized in that, The wiring inside the high-voltage cavity is connected to at least one switch, at least one light, and at least one socket.