Oxygen pipeline power socket protection structure

By designing a protective structure for the power socket of the oxygen pipeline, and using protective frames and barrier components to seal the power socket, the problems of exposed power sockets and unauthorized charging are solved, thus improving safety and convenience.

CN224036705UActive Publication Date: 2026-03-24FIRST HOSPITAL OF QINHUANGDAO
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

The existing bedside power outlets lack protective structures when not in use, leaving them directly exposed and posing a safety hazard. Furthermore, patients may charge their electronic devices without authorization.

Method used

An oxygen pipeline power socket protection structure was designed, including a protective frame, a mounting plate, a barrier component, and a connecting component. The barrier component closes the power socket when not in use, and the connecting component opens the socket only when needed.

Benefits of technology

It effectively protects the power socket, preventing it from being directly exposed, reducing safety hazards, preventing patients from charging it themselves, and is easy to operate and highly stable.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an oxygen pipeline power socket protection structure, which belongs to the technical field of power socket protection, and comprises a substrate, a socket is fixed on the substrate, the socket is provided with a power socket, the substrate is provided with a protection structure, and the protection structure comprises a protection frame, a mounting plate, a blocking assembly and a connecting assembly. Through the arrangement of the protection frame, the mounting plate, the blocking assembly and the connecting assembly, when the power socket is not used, the blocking assembly cooperates with the protection frame to protect the power socket, the power socket is prevented from being directly exposed, the integrity of the power socket is effectively guaranteed, meanwhile, private charging of a patient can be avoided, and the service life of the patient is prolonged. The blocking assembly is installed on the protection frame in a sliding mode and used in cooperation with the connecting assembly, the stability after the baffle ascends and is closed can be effectively guaranteed, a receding hole and a connecting groove are formed in the connecting assembly and used in cooperation with a T-shaped connector, a movable rod and other structures can be rapidly rotated by 90 degrees, and connection and loosening of the T-shaped connector are facilitated.
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Description

TECHNICAL FIELD

[0001] The utility model relates to power socket protection technical field, especially in oxygen pipeline power socket protection structure. BACKGROUND

[0002] In the hospital, clinic and other medical institutions, oxygen pipeline system is used for providing oxygen therapy for patients. Through the central oxygen supply system, oxygen is delivered to each oxygen using point such as ward, operating room, emergency room, to meet the oxygen demand of patients. In some wards, portable oxygen supply equipment is used to cooperate with oxygen pipeline for oxygen supply, and the oxygen supply equipment needs to be connected to the power supply when in use. The power socket is usually arranged at the head of the bed, which can be used quickly.

[0003] The existing bedside power socket is used, the oxygen supply equipment is placed on the bedside cabinet, the oxygen supply equipment is connected with the power socket and powered on after connection, and the generated oxygen is delivered to the patient's mouth and nose through the oxygen pipeline, so that the oxygen supply effect is realized. However, the existing bedside power socket does not have a protection structure, and the power socket cannot be effectively protected when not in use. At the same time, when the power socket is directly exposed, the patient may privately charge electronic devices such as mobile phones, which may cause safety hazards. UTILITY MODEL CONTENT

[0004] The main purpose of the utility model is to provide an oxygen pipeline power socket protection structure, which can effectively solve the problems in the background art.

[0005] In order to achieve the above purpose, the technical scheme adopted by the utility model is as follows:

[0006] An oxygen pipeline power socket protection structure, comprising a base plate, a socket fixed on the base plate, and a power socket provided on the socket, a protection structure provided on the base plate, and the protection structure comprising a protection frame, a mounting plate, a blocking component and a connecting component, the protection frame being fixed on the base plate through the mounting plate, and the protection frame being connected with the blocking component, and the connecting component being provided at the top end position of the protection frame.

[0007] Preferably, the mounting plate is connected with the base plate through a screw, and a sliding groove is formed in the protection frame.

[0008] Preferably, the blocking component penetrates the lower end of the protection frame and is slidingly connected in the sliding groove, and the top end of the blocking component is clamped with the connecting component.

[0009] Preferably, the blocking component comprises a baffle, a weight bar, a limiting rod and a T-shaped joint, the baffle is slidingly connected in the sliding groove in the vertical direction, the baffle is fixedly connected with the weight bar, the limiting rod is installed at the upper end position of the baffle, and the limiting rod is threadedly connected with the baffle, and the T-shaped joint is fixed at the middle position of the top of the baffle.

[0010] Preferably, the connecting assembly comprises a fixed cover, a partition, a movable rod, a connecting block, a clearance hole, a connecting groove, a circular plate, a spring and a triangular block, the partition is fixed in the interior of the fixed cover, and the fixed cover is installed on the protection frame, a circular hole is formed in the fixed cover, the movable rod penetrates through the partition, and the connecting block is fixedly connected to the lower end of the movable rod.

[0011] Preferably, the clearance hole and the connecting groove are formed in the connecting block and communicate with each other, the circular plate is fixed to the upper end of the movable rod, the spring is sleeved on the upper side portion of the movable rod located on the partition, and the triangular block is fixed to the upper surface of the circular plate.

[0012] Compared with the prior art, the oxygen pipeline power socket protection structure has the following beneficial effects: when the power socket is not used, the blocking assembly cooperates with the protection frame to realize the protection work of the power socket, direct exposure of the power socket is avoided, the integrity of the power socket is effectively guaranteed, self-charging of the patient is avoided, the safety hidden danger is reduced, the blocking assembly is slidingly installed on the protection frame, cooperates with the connecting assembly, and can effectively guarantee the stability after the baffle is lifted and closed, the clearance hole and the connecting groove are arranged in the connecting assembly, cooperate with the T-shaped joint, can quickly rotate the movable rod and other structures by 90 degrees, facilitate connection and loosening of the T-shaped joint, and are high in operation convenience; the fixed cover and the triangular block are adopted, professional tools must be used to rotate the movable rod, and self-operation of the patient to open the baffle is prevented. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 It is a whole structure schematic view of the utility model;

[0014] Figure 2 It is a structure schematic view of the socket of the utility model;

[0015] Figure 3 It is a structure schematic view of the blocking assembly of the utility model;

[0016] Figure 4 It is a structure schematic view of the connecting assembly of the utility model.

[0017] In the drawing: 1, base plate; 2, socket; 3, power socket; 4, protection frame; 5, mounting plate; 6, blocking assembly; 601, baffle; 602, weight increasing strip; 603, limiting rod; 604, T-shaped joint; 7, connecting assembly; 701, fixed cover; 702, partition; 703, movable rod; 704, connecting block; 705, clearance hole; 706, connecting groove; 707, circular plate; 708, spring; 709, triangular block; 8, sliding groove. DETAILED DESCRIPTION

[0018] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0019] like Figures 1-4 As shown, a protective structure for an oxygen pipeline power socket includes a base plate 1, a socket 2 fixed on the base plate 1, and a power socket 3 on the socket 2. A protective structure is provided on the base plate 1, comprising a protective frame 4, a mounting plate 5, a barrier component 6, and a connecting component 7. The protective frame 4 is fixed to the base plate 1 via the mounting plate 5 and is connected to the barrier component 6. The connecting component 7 is located at the top of the protective frame 4. Screws are provided on the mounting plate 5, which is connected to the base plate 1 via the screws. A sliding groove 8 is formed on the protective frame 4. The barrier component 6 extends through the lower end of the protective frame 4 and is slidably connected in the sliding groove 8. The top of the barrier component 6 is engaged with the connecting component 7.

[0020] During the installation of the entire protective structure, screws and mounting plate 5 are used to mount the protective frame 4 onto the base plate 1. A barrier component 6 is installed in the groove 8 on the protective frame 4, and a connecting component 7 is installed on the top of the protective frame 4. When the oxygen pipeline and related equipment are not in use, the barrier component 6, in conjunction with the protective frame 4, seals the power socket 3 on the socket 2. The connecting component 7 connects to the barrier component 6 to ensure stability. Because the power socket 3 is covered, patients are prevented from connecting and charging it themselves, while also ensuring the integrity of the power socket 3. When the power socket 3 needs to be used, a tool adapted to the connecting component 7 is used to rotate the components in the connecting component 7, causing the connecting component 7 to separate from the barrier component 6. The barrier component 6 then moves down to expose the power socket 3. The oxygen supply equipment is then connected to the power socket 3, and the oxygen supply equipment is started to supply oxygen to the patient through the oxygen pipeline.

[0021] According to the above implementation scheme, the barrier component 6 includes a baffle 601, a weight-adding strip 602, a limiting rod 603, and a T-joint 604. The baffle 601 is vertically slidably connected in the slide groove 8, and the baffle 601 is fixedly connected to the weight-adding strip 602. The limiting rod 603 is installed at the upper end of the baffle 601 and is threadedly connected to the baffle 601. The T-joint 604 is fixed at the middle position of the top of the baffle 601.

[0022] When socket 2 is not in use, the T-shaped connector 604 on the top of the barrier component 6 connects to the connecting component 7, and the baffle 601 covers the power socket 3, achieving an isolation effect. When the power socket 3 needs to be used, the connecting component 7 separates from the barrier component 6, and the baffle 601 slides down to make way under the action of the weight-adding bar 602. During this process, the baffle 601 is limited by the limiting rod 603 to prevent it from falling off the slide groove 8.

[0023] The connecting assembly 7 comprises a fixed cover 701, a partition plate 702, a movable rod 703, a connecting block 704, a clearance hole 705, a connecting groove 706, a circular plate 707, a spring 708 and a triangular block 709. The partition plate 702 is fixed in the interior of the fixed cover 701, and the fixed cover 701 is installed on the protection frame 4. A circular hole is formed in the fixed cover 701. The movable rod 703 penetrates through the partition plate 702. The connecting block 704 is fixedly connected to the lower end of the movable rod 703. The clearance hole 705 and the connecting groove 706 are formed in the connecting block 704, and the clearance hole 705 is in communication with the connecting groove 706. The circular plate 707 is fixed to the upper end of the movable rod 703. The spring 708 is sleeved on the portion of the movable rod 703 above the partition plate 702. The triangular block 709 is fixed to the upper surface of the circular plate 707.

[0024] When the connecting assembly 7 is used, and the connection of the top of the blocking assembly 6 is needed, first, ensure that the T-shaped joint 604 is aligned with the clearance hole 705 on the connecting block 704. A tool is connected to the triangular block 709 on the circular plate 707 through the circular hole at the upper end of the fixed cover 701. An acting force is applied to the circular plate 707. The movable rod 703 and the circular plate 707 descend along the partition plate 702. The spring 708 is compressed. Until the connecting block 704 is connected to the T-shaped joint 604 through the clearance hole 705. Then, the tool is rotated by 90 degrees to rotate the circular plate 707 and the movable rod 703. The connecting block 704 rotates by 90 degrees together, so that the upper end of the T-shaped joint 604 is clamped into the connecting groove 706. Then, the tool is removed. Under the elastic force of the spring 708, the movable rod 703 and the connecting block 704 have a tendency to move upward, thereby ensuring the stability of the T-shaped joint 604 and the blocking plate 601 after being closed. The structure is simple, and the use effect is excellent.

[0025] It should be noted that by arranging the protection frame 4, the mounting plate 5, the blocking assembly 6 and the connecting assembly 7, when the power socket 3 is not used, the blocking assembly 6 cooperates with the protection frame 4 to protect the power socket 3, avoiding direct exposure of the power socket 3, effectively protecting the integrity of the power socket 3, and avoiding private charging by the patient, thereby reducing the safety hazard. The blocking assembly 6 is slidingly installed on the protection frame 4 and cooperates with the connecting assembly 7 to effectively ensure the stability of the blocking plate 601 after being closed. The clearance hole 705 and the connecting groove 706 are arranged in the connecting assembly 7 and cooperate with the T-shaped joint 604 to quickly rotate the movable rod 703 and other structures by 90 degrees, facilitating the connection and disconnection of the T-shaped joint 604. The fixed cover 701 and the triangular block 709 are adopted. Professional tools must be used to rotate the movable rod 703, thereby preventing the patient from privately operating the blocking plate 601.

[0026] The above description describes the use principle, features and beneficial effects of the utility model. According to the above description, the related personnel in the field can understand that the above description does not limit the utility model, and the above embodiment and description describe the basic principle and features of the utility model, under the premise of meeting the utility model concept, the utility model can also be variously changed and improved, and these improvements should fall within the scope of the utility model claimed to be protected.

Claims

1. An oxygen pipeline power socket protection structure, comprising a base plate (1), a socket (2) is fixed on the base plate (1), and a power socket (3) is arranged on the socket (2), characterized in that: The substrate (1) is provided with a protection structure, and the protection structure comprises a protection frame (4), a mounting plate (5), a blocking assembly (6) and a connecting assembly (7), the protection frame (4) is fixed on the substrate (1) through the mounting plate (5), and the protection frame (4) is connected with the blocking assembly (6), and the connecting assembly (7) is arranged at the top end position of the protection frame (4).

2. An oxygen tubing electrical outlet protection structure according to claim 1, wherein: Screws are arranged on the mounting plate (5), the mounting plate (5) is connected with the substrate (1) through the screws, and a sliding groove (8) is formed in the protection frame (4).

3. An oxygen tubing electrical outlet protection structure according to claim 2, wherein: The blocking assembly (6) penetrates the lower end of the protection frame (4), and the blocking assembly (6) is slidingly connected in the sliding groove (8), and the top end of the blocking assembly (6) is clamped with the connecting assembly (7).

4. An oxygen tubing electrical outlet protection structure according to claim 3, wherein: The blocking assembly (6) comprises a baffle (601), a weight bar (602), a limiting rod (603) and a T-shaped joint (604), the baffle (601) is vertically slidingly connected in the sliding groove (8), the baffle (601) is fixedly connected with the weight bar (602), the limiting rod (603) is arranged at the upper end position of the baffle (601), and the limiting rod (603) is threadedly connected with the baffle (601), and the T-shaped joint (604) is fixedly arranged at the top middle position of the baffle (601).

5. An oxygen tubing electrical outlet protection structure according to claim 4, wherein: The connecting assembly (7) comprises a fixed cover (701), a partition plate (702), a movable rod (703), a connecting block (704), a gap hole (705), a connecting groove (706), a circular plate (707), a spring (708) and a triangular block (709), the partition plate (702) is fixed in the fixed cover (701), and the fixed cover (701) is arranged on the protection frame (4), a circular hole is formed in the fixed cover (701), the movable rod (703) penetrates the partition plate (702), and the connecting block (704) is fixedly connected with the lower end of the movable rod (703).

6. An oxygen tubing electrical outlet protection structure according to claim 5, wherein: The gap hole (705) and the connecting groove (706) are formed in the connecting block (704), and the gap hole (705) is in communication with the connecting groove (706), the circular plate (707) is fixedly connected with the upper end of the movable rod (703), the spring (708) is sleeved on the movable rod (703) on the upper side of the partition plate (702), and the triangular block (709) is fixedly arranged on the upper surface of the circular plate (707).