Oxygen mist storage box
By designing an oxygen nebulizer storage box, the problem of contamination caused by improper management of oxygen tubing was solved, enabling convenient storage and cleaning maintenance of oxygen tubing and nebulizers, and improving the efficiency of medical resource utilization.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DONGGUAN BINHAI BAY CENT HOSPITAL
- Filing Date
- 2025-01-10
- Publication Date
- 2026-04-17
AI Technical Summary
In traditional oxygen nebulizer therapy, the management and cleaning of oxygen tubing presents hygiene and safety issues, as it is easily contaminated by dust and bacteria in the ward air, leading to a waste of medical resources.
Design an oxygen mist storage box, comprising an oxygen mist box body, a partition, a flip-top cover, and a press-top cover, for storing the nebulizer and oxygen inhalation tube respectively. It is installed on the wall by bolts to achieve separate storage and convenient management of the nebulizer and oxygen inhalation tube.
It effectively reduces the risk of contamination of oxygen tubing and nebulizers, improves the convenience of cleaning and maintenance, meets the management requirements of wards, and reduces the waste of medical resources.
Smart Images

Figure CN224126061U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical device technology, and more specifically, to an oxygen mist collection box. Background Technology
[0002] In recent years, with the development of medical technology and the improvement of people's living standards, oxygen nebulization inhalation therapy has been widely used in hospital clinical practice. Traditional oxygen nebulization therapy uses a nebulizer to generate fine oxygen mist particles, which are then delivered to the patient's nasal cavity for inhalation through an oxygen cannula.
[0003] In traditional settings, oxygen nebulizer therapy involves the use of oxygen tubing and a nebulizer. However, in clinical hospital settings, the use of oxygen tubing associated with nebulizers is often haphazard. After a patient finishes oxygen nebulizer therapy, the tubing is usually left hanging haphazardly by the bedside, placed in a plastic bag beside the bed, or even left on the floor. This results in the ward not meeting the 10S management requirements. Furthermore, the tubing is highly susceptible to contamination from dust and bacteria in the ward air, making it impossible to guarantee hygiene and safety when reused, leading to a waste of medical resources and failing to meet actual application needs.
[0004] How to solve the above problems has become an urgent technical challenge. Utility Model Content
[0005] The technical problem to be solved by this utility model is to provide an oxygen mist storage box that is easy to store and manage oxygen inhalation tubes and nebulizers to reduce contamination and is easy to clean and maintain.
[0006] To achieve the above objectives, this utility model provides the following technical solution:
[0007] An oxygen mist storage box includes an oxygen mist box body that is externally bolted to a wall; the interior of the oxygen mist box body is divided by a partition into a left cavity with a flip-top cover for placing an external nebulizer and a right cavity with a press-top cover, and an oxygen tube storage structure that can be movably extended outside the right cavity when the press-top cover is opened is provided at the bottom of the right cavity.
[0008] Preferably, the oxygen tube storage structure includes a support partition disposed at the bottom of the right cavity via an elastic body and movable relative to the right cavity, and a limiting post provided at the top of the support partition for external oxygen tube winding for storage management, and the limiting post is normally limited within the right cavity by the press-type top cover.
[0009] Preferably, a limiting groove is provided on the outer wall of the limiting column to facilitate the winding and fixing of an external oxygen inhalation tube.
[0010] Preferably, the shape of the supporting partition is adapted to the inner shape of the right cavity.
[0011] Preferably, the elastic body is a spring.
[0012] Compared with the prior art, the beneficial effects of this utility model are:
[0013] In this utility model, the oxygen mist box is installed on the wall of the ward at a predetermined position by external bolts. Then, the external nebulizer and oxygen inhalation tube are placed in the left and right cavities respectively. The nebulizer and oxygen inhalation tube are stored in the oxygen mist box in a spaced manner by the cooperation of the partition plate, the flip-top cover and the press-top cover, so as to achieve storage and management. When a patient needs oxygen nebulizer therapy, the flip-top cover is opened to remove the nebulizer, which is then filled with nebulized medication and connected to the external oxygen supply tubing. Next, the press-to-open top cover allows the corresponding component of the oxygen tubing storage structure, along with the oxygen tubing, to extend outside the right cavity. The patient can then use the oxygen tubing to connect with the nebulizer for oxygen nebulizer therapy. After oxygen nebulizer therapy, the oxygen tubing is removed, cleaned, and wrapped around the corresponding component of the oxygen tubing storage structure. Pressing the oxygen tubing storage structure retracts the oxygen tubing into the right cavity, while simultaneously closing the press-to-open top cover to seal the oxygen tubing within the right cavity. The nebulizer is then removed, placed in the left cavity, and the flip-top cover is closed. This process stores the nebulizer and oxygen tubing within the oxygen nebulizer box for easy storage and management, reducing contamination and facilitating cleaning and maintenance. Therefore, this invention offers the advantages of convenient storage and management of the oxygen tubing and nebulizer to reduce contamination and facilitate cleaning and maintenance. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the oxygen mist collection box described in this utility model.
[0015] Explanation of reference numerals in the attached diagram: 1. Oxygen mist chamber body; 2. Divider plate; 3. Flip-top cover; 4. Left chamber; 5. Press-top cover; 6. Right chamber; 7. Oxygen tube storage structure; 71. Elastomer; 72. Supporting partition; 73. Limiting column; 8. Limiting groove. Detailed Implementation
[0016] The technical solution of this utility model will be further described below with reference to the accompanying drawings and specific embodiments.
[0017] See Figure 1As shown, the present invention proposes an oxygen mist storage box, including an oxygen mist box body 1 that is installed on the wall by external bolts; the interior of the oxygen mist box body 1 is divided by a partition plate 2 into a left cavity 4 for placing an external nebulizer and having a flip-top cover 3 and a right cavity 6 having a press-top cover 5. At the bottom of the right cavity 6, there is an oxygen inhalation tube storage structure 7 that can be moved out of the right cavity 6 when the press-top cover 5 is opened. During use, the oxygen nebulizer box 1 is installed on the predetermined position on the wall of the ward using external bolts. The external nebulizer and oxygen tubing are then placed in the left cavity 4 and right cavity 6 respectively. With the cooperation of the partition plate 2, the flip-top cover 3, and the press-type top cover 5, the nebulizer and oxygen tubing are stored separately within the oxygen nebulizer box 1 for storage and management. When the patient needs oxygen nebulizer therapy, the flip-top cover 3 is opened to remove the nebulizer, which is then filled with nebulized medication and connected to the external oxygen supply pipeline. Next, the press-type top cover 5 is pressed to open, causing the corresponding component of the oxygen tubing storage structure 7, along with the oxygen tubing, to extend out of the right cavity 6. At this time, the patient takes the oxygen tubing and... It connects to the nebulizer, and oxygen mist therapy can be performed on the patient when the nebulizer is turned on. After the oxygen mist therapy is completed, the oxygen tube is removed, cleaned, and then wrapped around the corresponding component of the oxygen tube storage structure 7. Pressing the oxygen tube storage structure 7 causes the oxygen tube to retract into the right cavity 6. At the same time, the press-type top cover 5 is closed, which seals the oxygen tube storage structure 7 and the oxygen tube together in the right cavity 6. The nebulizer is then removed, placed in the left cavity 4, and the flip-top cover 3 is closed. Thus, the nebulizer and the oxygen tube are stored together in the oxygen mist box 1 for easy storage and management, which reduces contamination and makes cleaning, maintenance, and use easier.
[0018] In this embodiment, the oxygen tube storage structure 7 includes a support partition 72 provided at the bottom of the right cavity 6 by an elastic body 71 and movable relative to the right cavity 6. A limiting post 73 is provided at the top of the support partition 72 for external oxygen tubes to be wound for storage and management. The limiting post 73 is normally limited within the right cavity 6 by the press-type top cover 5. During use, the external oxygen tubing is wound and fixed to the limiting post 73. Pressing the limiting post 73 causes the supporting partition 72, along with the oxygen tubing, to retract into the right cavity 6 under the expansion and contraction of the elastic body 71. At this time, the elastic body 71 is compressed, generating an upward restoring force. Simultaneously, the press-type top cover 5 is closed to fix the oxygen tubing inside the right cavity 6. Thus, with the cooperation of the partition 2, the flip-top cover 3, and the press-type top cover 5, the nebulizer and oxygen tubing are stored separately in the oxygen nebulizer box 1 for storage and management. When the patient needs oxygen nebulizer treatment, the flip-top cover 3 is opened, the nebulizer is taken out from the left cavity 4, and the nebulizer medication is filled before connecting it to the external oxygen supply pipeline. Then, the press-type top cover 5 is pressed open. At this time, the press-type top cover 5 no longer locks the limiting post 73. The upward restoring force of the elastic body 71 pushes the support partition 72 back into the right cavity 6. The partition 72 moves the limiting column 73 and the oxygen tube upwards together, so that the limiting column 73 and the oxygen tube extend outside the right cavity 6. Then, the patient removes the oxygen tube and connects it to the nebulizer. Turning on the nebulizer allows for oxygen nebulization therapy to be administered to the patient. After the oxygen nebulization therapy is completed, the oxygen tube is removed, cleaned, and wrapped around the limiting column 73. Pressing the limiting column 73 causes the oxygen tube to retract into the right cavity 6. At the same time, closing the press-type top cover 5 locks the limiting column 73, sealing the oxygen tube storage structure 7 and the oxygen tube together inside the right cavity 6. The nebulizer is then removed, placed in the left cavity 4, and the flip-top cover 3 is closed. This allows the nebulizer and oxygen tube to be stored separately in the oxygen nebulizer box 1 for easy storage and management, reducing contamination and facilitating cleaning, maintenance, and use.
[0019] In this embodiment, the shape of the supporting partition 72 is adapted to the inner cavity shape of the right cavity 6. The elastic body 71 is a spring.
[0020] In this embodiment, a limiting groove 8 is provided on the outer wall of the limiting column 73 to facilitate the winding and fixing of the external oxygen inhalation tube.
[0021] In this specific embodiment, firstly, the oxygen mist box 1 is installed on the predetermined position on the wall of the ward using external bolts, and then the external nebulizer is placed in the left cavity 4; secondly, under the support and limitation of the limiting post 73 of the oxygen tube storage structure 7, the external oxygen tube is wound and fixed on the limiting groove 8, and then pressing the limiting post 73 causes the supporting partition 72 and the oxygen tube to retract into the right cavity 6 together under the expansion and contraction action of the elastic body 71. At this time, the elastic body 71 is compressed and generates an upward force. The nebulizer and oxygen tube are then stored in the right cavity 6 by pressing down the top cover 5 and simultaneously closing it. Then, with the cooperation of the partition plate 2, the flip-top cover 3, and the press-top cover 5, the nebulizer and oxygen tube are stored separately in the oxygen nebulizer box 1 for storage and management. When the patient needs oxygen nebulizer therapy, the flip-top cover 3 is opened, the nebulizer is removed from the left cavity 4, and the nebulizer medication is filled before connecting it to the external oxygen supply line. Then, the press-top cover 5 is pressed down to open. 5. The locking effect on the limiting column 73 is no longer present. The upward restoring force of the elastic body 71 pushes the supporting partition 72, causing the limiting column 73 and the oxygen tubing to move upwards together, thus extending the limiting column 73 and the oxygen tubing out of the right cavity 6. Finally, the patient removes the oxygen tubing and connects it to the nebulizer. Turning on the nebulizer allows for oxygen nebulization therapy. After the oxygen nebulization therapy is completed, the oxygen tubing is removed, cleaned, and then wrapped around the limiting groove 8 under the support of the limiting column 73. When the limiting post 73 is pressed, the oxygen tube retracts into the right cavity 6. At the same time, the press-type top cover 5 is closed. The pressing-type top cover 5 locks the limiting post 73, sealing the oxygen tube storage structure 7 together with the oxygen tube inside the right cavity 6. The nebulizer is then removed, placed in the left cavity 4, and the flip-top cover 3 is closed. This allows the nebulizer and oxygen tube to be stored together in the oxygen nebulizer box 1 for easy storage and management, reducing contamination and facilitating cleaning, maintenance, and use.
[0022] In summary, the present invention adopts the above-described structure, which has the advantages of facilitating the storage and management of oxygen inhalation tubes and nebulizers to reduce contamination and being easy to clean, maintain and use.
[0023] The above specific embodiments are merely several preferred embodiments of this utility model. Based on the technical solution of this utility model and the relevant teachings of the above embodiments, those skilled in the art can make various alternative improvements and combinations to the above specific embodiments.
Claims
1. An oxygen mist storage box comprising an oxygen mist box body (1) installed on a wall body by an external bolt; characterized in that: The interior of the oxygen mist box (1) is divided by a partition plate (2) into a left cavity (4) for placing an external nebulizer and having a flip-top cover (3) and a right cavity (6) with a press-top cover (5). At the bottom of the right cavity (6) is an oxygen tube storage structure (7) that can extend out of the right cavity (6) when the press-top cover (5) is opened.
2. The oxygen mist containment box of claim 1, wherein: The oxygen tube storage structure (7) includes a support partition (72) provided at the bottom of the right cavity (6) by an elastic body (71) and movable relative to the right cavity (6). A limiting post (73) for external oxygen tubes to be wound around for storage and management is provided at the top of the support partition (72), and the limiting post (73) is normally limited in the right cavity (6) by the push-type top cover (5).
3. The oxygen mist containment box of claim 2, wherein: A limiting groove (8) is provided on the outer wall of the limiting column (73) to facilitate the winding and fixing of the external oxygen inhalation tube.
4. The oxygen mist containment box of claim 2, wherein: The shape of the support partition (72) is adapted to the inner shape of the right cavity (6).
5. The oxygen mist containment box of claim 2, wherein: The elastic body (71) is a spring.