Wall type oxygen inhaler storage device for treatment room
Patent Information
- Application Number
- CN202522028660.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-22
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-09-22
AI Technical Summary
[0003]中国专利公开号CN205162431U公开了一种氧气表架,其通过波浪形支撑线杆与横向滑槽的配合,调整 2 根波浪形支撑线杆之间的间距,用以支撑流量表,但波浪形支撑线杆与横向滑槽之间缺乏锁定装置,波浪形支撑线杆可能会随意滑动,导致氧气表下部的湿化瓶滚动旋转,随之带动氧气表上部的表头部分移位,造成氧气表之间相互磕碰损坏
1.在分别将非湿化型吸氧装置和湿化型吸氧装置收入第一收纳盒和第二收纳盒的内部以后,即可将第二收纳盒的卡块插入第一收纳盒底端的卡槽中,以此将两个收纳盒连接在一起,从而减小占用的收纳空间;
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Figure CN224640019U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical device technology, specifically a wall-mounted oxygen inhaler storage device for treatment rooms. Background Technology
[0002] Oxygen therapy is one of the most common nursing procedures and treatments in clinical practice. It is classified into low-flow, medium-flow, and high-flow oxygen therapy based on the oxygen flow rate. In the past, only humidified oxygen therapy was used in my country. In recent years, with the continuous advancement of medical technology, non-humidified oxygen therapy is now widely used for patients receiving low- to medium-flow or short-term high-flow oxygen therapy, while humidified oxygen therapy is mainly used for patients receiving long-term high-flow oxygen therapy.
[0003] Chinese Patent Publication No. CN205162431U discloses an oxygen meter holder, which uses the cooperation of a wavy support rod and a transverse sliding groove to adjust the spacing between two wavy support rods to support the flow meter. However, there is no locking device between the wavy support rod and the transverse sliding groove. The wavy support rod may slide freely, causing the humidification bottle at the bottom of the oxygen meter to roll and rotate, which in turn causes the meter head at the top of the oxygen meter to shift, resulting in the oxygen meters colliding and being damaged. Utility Model Content
[0004] The present invention aims to overcome the shortcomings of the prior art, namely, the lack of a locking device between the wavy support rod and the transverse slide groove, which allows the wavy support rod to slide freely, causing the humidification bottle at the bottom of the oxygen meter to roll and rotate, thereby causing the meter head at the top of the oxygen meter to shift and resulting in damage to the oxygen meters from collision.
[0005] A wall-mounted oxygen inhaler storage device for treatment rooms is proposed, comprising a first storage box, a second storage box, a rotating door, a partition plate, and an air inlet limiting groove. The first storage box is positioned above the second storage box and is connected to the second storage box. The rotating door is slidably connected to both the first and second storage boxes. The interiors of both the first and second storage boxes are vertically provided with partition plates, and both partition plates are provided with multiple air inlet limiting grooves.
[0006] In this utility model, both the first and second storage boxes have vertically arranged partitions at their center. The air inlets of two adjacent oxygen inhalers stored inside the storage boxes are separated by these partitions. Each oxygen inhaler's air inlet is positioned on one of the partitions by an air inlet limiting groove made of silicone. These grooves wrap around the air inlets of the oxygen inhalers. Furthermore, the first storage box contains a retaining ring below each humidified oxygen inhaler, with the lower end of the humidified oxygen inhaler inserted into the ring. Inside the fixing ring and inside the second storage box, there is a limiting post under each non-humidified oxygen inhaler. The air inlet at the bottom of the non-humidified oxygen inhaler is inserted into the limiting post to prevent adjacent oxygen inhalers from colliding. This solves the problem mentioned in the technical background that there is no locking device between the wavy support rod and the transverse slide groove. The wavy support rod may slide freely, causing the humidification bottle under the oxygen meter to roll and rotate, which in turn causes the meter head part at the top of the oxygen meter to shift, resulting in the oxygen meters colliding and being damaged.
[0007] In a preferred embodiment of the present invention, the first storage box and the second storage box are respectively provided with a plurality of non-humidifying oxygen inhalation devices and a plurality of humidifying oxygen inhalation devices. After the non-humidifying oxygen inhalation devices or the humidifying oxygen inhalation devices have been used, they can be stored inside the first storage box or the second storage box, thus facilitating storage.
[0008] In a preferred embodiment of the present invention, both the upper and lower ends of the first and second storage boxes are provided with locking blocks and slots. The locking blocks can be inserted into the slots to form a locking connection. Therefore, when storage is required, the first storage box can be locked onto the second storage box through the locking blocks and slots, connecting the first and second storage boxes together, thus facilitating storage and transportation.
[0009] In a preferred embodiment of the present invention, each of the first and second storage boxes is provided with a rotating plate. The rotating plate and the rotating plate are interference-fitted with the first and second storage boxes. Therefore, after the rotating plate and the rotating plate rotate to the desired position, the friction between the first and second storage boxes and the rotating plate and the rotating plate will restrict the position of the rotating plate and the rotating plate.
[0010] In a preferred embodiment of the present invention, the top and bottom plates of the first and second storage boxes are threadedly connected to the partition plate. When it is necessary to clean the first and second storage boxes, the first and second storage boxes can be completely disassembled and each component of the first and second storage boxes can be cleaned.
[0011] In a preferred embodiment of the present invention, the first storage box is provided with multiple limiting posts inside, and the non-humidifying oxygen inhalation device is connected to the limiting posts and inserted into the top of the limiting posts, thereby restricting the position of the non-humidifying oxygen inhalation device.
[0012] In a preferred embodiment of the present invention, the second storage box is provided with multiple fixing rings inside. The lower end of the humidifying oxygen inhalation device is inserted into the fixing ring. After the lower end of the humidifying oxygen inhalation device is inserted into the fixing ring, the fixing ring will restrict the position of the non-humidifying oxygen inhalation device.
[0013] In a preferred embodiment of the present invention, the two sets of partition plates are provided with sliding grooves, and the air inlet limiting groove is slidably disposed inside the sliding grooves. Therefore, the air inlet limiting groove can slide up and down to meet different height usage requirements.
[0014] In a preferred embodiment of the present invention, the air inlet limiting groove is provided with a sliding block at one end of the partition plate, and the air inlet limiting groove is attached to the sliding block at one end. Therefore, when the sliding block slides inside the groove, it will drive the air inlet limiting groove to move synchronously.
[0015] In a preferred embodiment of the present invention, the air inlet limiting groove is made of silicone. After the non-humidifying oxygen inhalation device and the humidifying oxygen inhalation device are placed inside the first storage box and the second storage box, the air inlets of the non-humidifying oxygen inhalation device and the humidifying oxygen inhalation device can be inserted into the air inlet limiting groove, thereby preventing collisions between the air inlets of the non-humidifying oxygen inhalation device and the humidifying oxygen inhalation device.
[0016] The advantages of this utility model compared with the prior art are: 1. After storing the non-humidifying oxygen inhalation device and the humidifying oxygen inhalation device into the first storage box and the second storage box respectively, the locking block of the second storage box can be inserted into the locking slot at the bottom of the first storage box to connect the two storage boxes together, thereby reducing the storage space occupied. 2. After the non-humidified oxygen inhalation device and the humidified oxygen inhalation device are placed inside the first storage box and the second storage box, the partition will separate the air inlets of the non-humidified oxygen inhalation device and the humidified oxygen inhalation device, and the silicone air inlet limiting groove will wrap around the air inlets of the non-humidified oxygen inhalation device and the humidified oxygen inhalation device, thereby preventing the air inlets from bumping against each other. 3. After the non-humidifying oxygen inhalation device and the humidifying oxygen inhalation device are placed inside the first storage box and the second storage box, the limiting post and the fixing ring will fix the positions of the non-humidifying oxygen inhalation device and the humidifying oxygen inhalation device respectively, so as to prevent the non-humidifying oxygen inhalation device and the humidifying oxygen inhalation device from tipping over when moving. 4. The top and bottom plates of the first and second storage boxes are threaded to the partition plate, so when cleaning is required, the first and second storage boxes can be separated and the separated parts can be cleaned separately. 5. The rotating plates of the first and second storage boxes are marked with "humidification" and "non-humidification" respectively to help medical staff distinguish between them; 6. The rotating plate and rotating door on the first and second storage boxes are rotatably connected to the first and second storage boxes, so the rotating plate and rotating door can rotate 360 degrees on the storage boxes. After the rotating plate and rotating door are rotated open, the oxygen inhalation device inside the storage box can be taken out, thereby reducing the steps and difficulty of taking out the oxygen inhalation device. Attached Figure Description
[0017] Figure 1 A schematic diagram of a wall-mounted oxygen inhaler storage device for a treatment room; Figure 2 A schematic diagram of the structure of a first storage box and a second storage box for a wall-mounted oxygen inhaler storage device for a treatment room; Figure 3 A schematic diagram of the internal structure of the first storage box of a wall-mounted oxygen inhaler storage device for a treatment room. Figure 4 A schematic diagram of the internal structure of the second storage box of a wall-mounted oxygen inhaler storage device for a treatment room; Figure 5 An exploded schematic diagram of the structure of the first storage box of a wall-mounted oxygen inhaler storage device for a treatment room. Figure 6 An exploded schematic diagram of the structure of the second storage box of a wall-mounted oxygen inhaler storage device for a treatment room. Figure 7 A schematic diagram of a partition structure for a wall-mounted oxygen inhaler storage device for a treatment room; In the diagram: 1-First storage box, 11-Non-humidifying oxygen inhalation device, 12-Limiting column, 2-Second storage box, 21-Humidifying oxygen inhalation device, 22-Fixing ring, 3-Rotating door, 4-Divider plate, 5-Air inlet limiting groove, 51-Sliding block, 6-Card block, 7-Card groove, 8-Rotating plate, 9-Sliding groove. Detailed Implementation
[0018] The following will refer to the appendix in the embodiments of this utility model. Figure 1-7 The technical solutions in the embodiments of this utility model will be described in detail below.
[0019] like Figure 1-2As shown, a wall-mounted oxygen inhaler storage device for a treatment room includes a first storage box 1, a second storage box 2, a rotating door 3, a partition plate 4, and an air inlet limiting groove 5. The first storage box 1 is positioned above the second storage box 2.
[0020] like Figure 1-2 As shown, both the first storage box 1 and the second storage box 2 are made of elastic plastic, and both the first storage box 1 and the second storage box 2 are cylindrical. The first storage box 1 is snapped onto the second storage box 2, and both the first storage box 1 and the second storage box 2 are equipped with a rotating door 3.
[0021] like Figure 1-2 As shown, the lower end of the rotating door 3 is engaged with the first storage box 1 and the second storage box 2, and the connection between the rotating door 3 and the first storage box 1 and the second storage box 2 is a sliding connection. Therefore, when the first storage box 1 and the second storage box 2 remain stationary...
[0022] like Figure 1-2 As shown, the rotating door 3 can move relative to each other. The interior of the first storage box 1 and the second storage box 2 are both vertically equipped with partition plates 4, and both sets of partition plates 4 are equipped with multiple air inlet limiting grooves 5. After the non-humidified oxygen inhalation device 11 and the humidified oxygen inhalation device 21 are placed inside the first storage box 1 and the second storage box 2.
[0023] like Figure 1-2 As shown, the partition plate 4 separates the adjacent non-humidified oxygen inhalation device 11 and humidified oxygen inhalation device 21, and the air inlet limiting groove 5 restricts the position of the air inlets of the non-humidified oxygen inhalation device 11 and humidified oxygen inhalation device 21, thereby preventing collisions between adjacent air inlets.
[0024] like Figure 3-4 As shown, the first storage box 1 and the second storage box 2 are respectively equipped with multiple non-humidified oxygen inhalation devices 11 and multiple humidified oxygen inhalation devices 21. When the patient is inhaling oxygen, the non-humidified oxygen inhalation device 11 or the humidified oxygen inhalation device 21 can be taken out from the first storage box 1 or the second storage box 2 for use according to the needs.
[0025] like Figure 3-4 As shown, after use, the non-humidifying oxygen inhalation device 11 or the humidifying oxygen inhalation device 21 can be stored inside the first storage box 1 or the second storage box 2 for easy storage.
[0026] like Figure 3-4 As shown, the first storage box 1 and the second storage box 2 are provided with card blocks 6 and card slots 7 at the upper and lower ends. There are four card blocks 6 and the number of card slots 7 is the same as that of card blocks 6. The card blocks 6 are located at the upper ends of the first storage box 1 and the second storage box 2.
[0027] like Figure 3-4 As shown, the four card blocks 6 are evenly distributed with the axis of the first storage box 1 and the second storage box 2 as the center. The card blocks 6 are made of plastic with elastic deformation capability and are glued to the first storage box 1 and the second storage box 2.
[0028] like Figure 3-4 As shown, the card slot 7 is located at the bottom of the first storage box 1 and the second storage box 2, and the position of the card slot 7 corresponds to the position of the card block 6. The card block 6 can be inserted into the inside of the card slot 7 to form a snap-fit connection.
[0029] like Figure 3-4 As shown, when storage is needed, the first storage box 1 can be attached to the second storage box via the card block 6 and the card slot 7, connecting the first storage box 1 and the second storage box 2 together, thus facilitating storage and transportation.
[0030] like Figure 3-4 As shown, each of the first storage box 1 and the second storage box 2 is provided with a rotating plate 8. The lower end of the rotating plate 8 is engaged with the bottom plate of the first storage box 1 and the second storage box 2, and the connection between the rotating plate 8 and the first storage box 1 and the second storage box 2 is a sliding connection.
[0031] like Figure 3-4 As shown, when the first storage box 1 and the second storage box 2 remain stationary, the rotating plate 8 can slide relative to the first storage box 1 and the second storage box 2. Both the rotating plate 8 and the rotating door 3 are arc-shaped, and the rotating plate 8 and the rotating door 3 are interference-fitted with the first storage box 1 and the second storage box 2.
[0032] like Figure 3-4 As shown, after the rotating plate 8 and the rotating door 3 rotate to the desired position, the friction between the first storage box 1 and the second storage box 2 and the rotating door 3 and the rotating plate 8 will restrict the position between the rotating plate 8 and the rotating door 3, thereby preventing the rotating door 3 and the rotating plate 8 from continuing to move.
[0033] like Figure 3-4 As shown, the rotating door 3 is located inside the rotating plate 8, and the rotating plates 8 of the first storage box 1 and the second storage box 2 are respectively marked with "humidified" and "non-humidified" to help medical staff distinguish between them.
[0034] like Figure 5-6 As shown, the top and bottom plates of the first storage box 1 and the second storage box 2 are threaded onto the partition plate 4. Therefore, when it is necessary to clean the first storage box 1 and the second storage box 2, the first storage box 1 and the second storage box 2 can be completely disassembled and each component of the first storage box 1 and the second storage box 2 can be cleaned, thereby avoiding dead corners.
[0035] like Figure 5-6 As shown, the first storage box 1 has a plurality of limiting posts 12 inside. There are six limiting posts 12, and each limiting post 12 is made of plastic. The lower end of the limiting post 12 is glued to the bottom plate of the first storage box 1.
[0036] like Figure 5-6 As shown, six limiting posts 12 are evenly distributed around the axis of the first storage box 1. The non-humidifying oxygen inhalation device 11 is inserted into the top of the limiting posts 12, thereby restricting the position of the non-humidifying oxygen inhalation device 11.
[0037] like Figure 5-6 As shown, the interior of the second storage box 2 is provided with multiple fixing rings 22. The fixing rings 22 are made of plastic, and there are six fixing rings 22. The six fixing rings 22 are evenly distributed around the axis of the second storage box 2.
[0038] like Figure 5-6 As shown, the lower ends of the six fixing rings 22 are all glued to the second storage box 2. The lower end of the humidifying oxygen inhalation device 21 is inserted into the inside of the fixing rings 22. After the lower end of the humidifying oxygen inhalation device 21 is inserted into the inside of the fixing rings 22, the fixing rings 22 will restrict the position of the non-humidifying oxygen inhalation device 11.
[0039] like Figure 7 As shown, the two sets of partition plates 4 are provided with sliding grooves 9. The sliding grooves 9 are set along the length direction of the partition plate 4. The air inlet limiting groove 5 is slidably set inside the sliding groove 9. Therefore, the air inlet limiting groove 5 can slide up and down to meet different height usage requirements.
[0040] like Figure 7 As shown, the air inlet limiting groove 5 is provided with a sliding block 51 at one end of the partition plate 4. The sliding block 51 is slidably disposed inside the sliding groove 9, and the air inlet limiting groove 5 is attached to the sliding block 51 at one end.
[0041] like Figure 7 As shown, when the sliding block 51 slides inside the sliding groove 9, it will drive the air inlet limiting groove 5 to move synchronously. The air inlet limiting groove 5 is made of silicone.
[0042] like Figure 7 As shown, after the non-humidifying oxygen inhalation device 11 and the humidifying oxygen inhalation device 21 are stored inside the first storage box 1 and the second storage box 2, the air inlets of the non-humidifying oxygen inhalation device 11 and the humidifying oxygen inhalation device 21 can be inserted into the air inlet limiting groove 5.
[0043] like Figure 7As shown, the silicone inlet limiting groove 5 will then cover the inlets of the non-humidified oxygen inhalation device 11 and the humidified oxygen inhalation device 21, thereby preventing collisions between the inlets of the non-humidified oxygen inhalation device 11 and the humidified oxygen inhalation device 21.
[0044] The movement process in this embodiment is as follows: After the rotating plate 8 or the rotating door 3 is opened, the non-humidified oxygen inhalation device 11 and the humidified oxygen inhalation device 21 can be placed inside the first storage box 1 and the second storage box 2 respectively. Then, the air inlets of the non-humidified oxygen inhalation device 11 and the humidified oxygen inhalation device 21 are inserted into the air inlet limiting groove 5.
[0045] At this time, the air inlets of the adjacent non-humidified oxygen inhalation device 11 and the humidified oxygen inhalation device 21 will be separated by the partition plate 4, and the air inlets will be covered by the air inlet limiting groove 5, thereby preventing the adjacent non-humidified oxygen inhalation device 11 and the humidified oxygen inhalation device 21 from colliding. Then, the first storage box 1 can be attached to the second storage box 2 by the card block 6 and the card slot 7.
[0046] The above embodiments are only for illustrating the technical concept of this utility model and should not be construed as limiting the scope of protection of this utility model. Any modifications made to the technical solution based on the technical concept proposed by this utility model shall fall within the scope of protection of this utility model.
Claims
1. A wall-type oxygen inhaler storage device for a treatment room, characterized by: It includes a first storage box (1), a second storage box (2), a rotating door (3), a partition plate (4), and an air inlet limiting groove (5). The first storage box (1) is located above the second storage box (2) and is connected to the second storage box (2). The rotating door (3) is slidably connected to both the first storage box (1) and the second storage box (2). The interior of both the first storage box (1) and the second storage box (2) is vertically provided with a partition plate (4), and both partition plates (4) are provided with multiple air inlet limiting grooves (5).
2. The wall-type oxygen inhaler storage device for a treatment room according to claim 1, characterized in that: The first storage box (1) and the second storage box (2) are respectively equipped with multiple non-humidifying oxygen inhalation devices (11) and multiple humidifying oxygen inhalation devices (21).
3. The wall-type oxygen inhaler storage device for a treatment room according to claim 2, characterized in that: The first storage box (1) and the second storage box (2) are provided with a card block (6) and a card slot (7) at the upper and lower ends.
4. The wall-type oxygen inhaler storage device for a treatment room according to claim 3, characterized in that: The first storage box (1) and the second storage box (2) are each provided with a rotating plate (8).
5. The wall-mounted oxygen inhaler storage device for a treatment room according to claim 4, characterized in that: The top and bottom plates of the first storage box (1) and the second storage box (2) are threaded onto the partition plate (4).
6. A wall-mounted oxygen inhaler storage device for a treatment room according to claim 5, characterized in that: The first storage box (1) has multiple limiting posts (12) inside, and the non-humidifying oxygen inhalation device (11) is connected to the limiting posts (12).
7. The wall-mounted oxygen inhaler storage device for a treatment room according to claim 5, characterized in that: The second storage box (2) has multiple fixing rings (22) inside, and the lower end of the humidifying oxygen inhalation device (21) is inserted into the fixing rings (22).
8. The wall-mounted oxygen inhaler storage device for a treatment room according to claim 1, characterized by: The two sets of partition plates (4) are provided with sliding grooves, and the air inlet limiting groove (5) is slidably set inside the sliding groove.
9. The wall-mounted oxygen inhaler storage device for a treatment room according to claim 8, characterized by: The air inlet limiting groove (5) is provided with a sliding block (51) at one end of the partition plate (4).
10. The wall-mounted oxygen inhaler storage device for a treatment room according to claim 9, characterized by: The air inlet limiting groove (5) is made of silicone.
Citation Information
Patent Citations
Oxygen table skeleton
CN205162431U