Anti-toppling structure of oxygen bottle

By designing an anti-tipping structure for oxygen cylinders, and utilizing components such as clamps, buffer bases, and shock absorbers, the problem of oxygen cylinders tipping over during transportation has been solved, achieving multi-directional buffering and improved stability, making it suitable for various transportation tools and scenarios.

CN224261437UActive Publication Date: 2026-05-19CHINESE PEOPLES LIBERATION ARMY NAVAL SPECIALTY MEDICAL CENT
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHINESE PEOPLES LIBERATION ARMY NAVAL SPECIALTY MEDICAL CENT
Filing Date
2025-07-11
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Oxygen cylinders are prone to tipping over during transport due to bumps or external forces, affecting their suitability for use in special environments.

Method used

An oxygen cylinder anti-tipping structure was designed, including a clamp, a buffer base, a shock absorber, and a damper. The combination of the buffer frame and the hemispherical base provides longitudinal shock absorption and multi-directional cushioning, and the combination of the hanging chain and forklift arm socket enhances stability.

Benefits of technology

It effectively prevents oxygen cylinders from tipping over in multiple directions, improving their stability and applicability in special environments, and making them suitable for different transportation tools and scenarios.

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Abstract

The utility model discloses an anti-toppling structure of an oxygen bottle. An oxygen bottle anti-toppling structure comprises a hoop used for being fixed to the outer side of an oxygen bottle and further comprises a buffer base, the buffer base comprises an installation base, and an installation hole is formed in the installation base; the mounting base is connected with the outer edge of a buffer frame through four shock absorbers; the inner wall of the buffer frame is hinged to the outer edge of a hemispherical base through four dampers arranged in the circumferential direction, and the hemispherical base is supported at the bottom of the buffer frame. A limiting groove for embedding an oxygen bottle is formed in the center of the semispherical base, and the hoop is hinged to the semispherical base through a supporting rod which is obliquely arranged. The shock absorbers are additionally arranged to achieve longitudinal shock absorption, and buffering in the front-back direction and the left-right direction is achieved through the four dampers arranged in the circumferential direction. The oxygen bottle is installed on the hemispherical base, and the anti-toppling effect of the oxygen bottle is improved through the large semicircular structure at the bottom.
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Description

Technical Field

[0001] This utility model relates to the field of oxygen cylinder technology, and in particular to an anti-tipping structure for oxygen cylinders. Background Technology

[0002] Oxygen cylinders are primarily used to provide oxygen inhalation therapy for patients with respiratory diseases (such as respiratory infections, asthma, COPD, etc.) and cardiovascular diseases (such as coronary heart disease, myocardial infarction, cerebral hemorrhage, cerebral infarction, etc.) who experience hypoxemia. They can also be used to quickly relieve hypoxia and eliminate fatigue in low-pressure environments or after strenuous mental or physical labor. Oxygen cylinders are ideal oxygen supply equipment in hospitals, emergency stations, battlefield medical care, polar plateaus, sanatoriums, nursing homes, homes, and personal healthcare settings.

[0003] Currently, medical oxygen cylinders are generally made of alloy material, are cylindrical, and have a large volume and mass. When oxygen cylinders are transported with patients, especially in emergency transfers, maritime and air ambulance services, and disaster relief, they are prone to tipping over due to the significant jolting of the vehicle during travel. They are also prone to tipping over when working on soft soil in the field or when subjected to external forces.

[0004] There is an urgent need for a simple and effective installation structure to prevent oxygen cylinders from tipping over, so as to further improve their applicability in the aforementioned special environments or scenarios. Utility Model Content

[0005] This utility model addresses the problems and shortcomings of existing technologies by providing an oxygen cylinder anti-tipping structure.

[0006] The present invention solves the above-mentioned technical problems through the following technical solution:

[0007] This utility model provides an oxygen cylinder anti-tipping structure, including a clamp for fixing to the outside of the oxygen cylinder, characterized in that it also includes a buffer base, the buffer base including a mounting base, the mounting base having mounting holes;

[0008] The mounting base is connected to the outer edge of a buffer frame via four shock absorbers;

[0009] The inner wall of the buffer frame is hinged to the outer edge of the hemispherical base through four circumferentially arranged dampers, and the hemispherical base is supported at the bottom of the buffer frame.

[0010] The hemispherical base has a limiting groove in the center for embedding the oxygen cylinder, and the clamp is hinged to the hemispherical base by an inclined support rod.

[0011] This invention incorporates a shock absorber for longitudinal vibration reduction and four circumferentially arranged dampers for buffering in the front-to-back and left-to-right directions. The oxygen cylinder is mounted on a hemispherical base, and the large semi-circular structure at the bottom enhances its anti-tipping effect.

[0012] More preferably, the mounting base has a forklift arm insertion hole for the forklift arm to pass through.

[0013] It facilitates forklift transport.

[0014] A further preferred embodiment includes a hanging chain, one end of which is connected to a hook, and the other end of which is detachably connected to the hemispherical base.

[0015] This allows for upward traction of the hemispherical base, improving the anti-tipping effect of the oxygen cylinder.

[0016] More preferably, the outer diameter of the hemispherical base is larger than the outer diameter of the oxygen cylinder.

[0017] More preferably, the two ends of the damper are connected to the buffer frame and the hemispherical base respectively through a mutually matching ball head and ball cup rotatable connection structure.

[0018] Suitable for buffering in different force directions.

[0019] More preferably, the clamp includes semi-circular pipe clamps arranged at the front and rear, which are detachably connected by bolts.

[0020] More preferably, the mounting base is mounted to the base plate of the transport vehicle through mounting holes.

[0021] It can be easily detached and installed on different means of transportation.

[0022] Based on common knowledge in the field, the above-mentioned preferred conditions can be combined arbitrarily to obtain various preferred embodiments of this utility model.

[0023] The positive and progressive effects of this utility model are as follows:

[0024] This utility model improves the buffering effect of oxygen cylinders against external forces by setting buffer structures in the front-back, left-right, and up-down directions.

[0025] The oxygen cylinder is mounted on a hemispherical base, and the large semi-circular structure at the bottom improves the anti-tipping effect of the oxygen cylinder. Attached Figure Description

[0026] Figure 1 This is a cross-sectional view of a specific embodiment 1 of the present utility model;

[0027] Figure 2 This is a top view of a specific embodiment 1 of the present utility model;

[0028] Figure 3 This is a cross-sectional view of a specific embodiment 2 of the present utility model. Detailed Implementation

[0029] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0030] like Figure 1 as well as Figure 2 As shown in Specific Embodiment 1, an oxygen cylinder anti-tipping structure includes a clamp 7 for fixing to the outside of the oxygen cylinder and a buffer base. The buffer base includes a mounting base 1 with mounting holes. The mounting base 1 is connected to the outer edge of a buffer frame 2 via four shock absorbers 3. The inner wall of the buffer frame 2 is hinged to the outer edge of a hemispherical base 5 via four circumferentially arranged dampers 4. The hemispherical base 5 is supported at the bottom of the buffer frame 2. A limiting groove for embedding the oxygen cylinder is provided in the center of the hemispherical base 5, and the clamp 7 is hinged to the hemispherical base 5 via an inclined support rod 6. This invention adds shock absorbers 3 to achieve longitudinal shock absorption and uses four circumferentially arranged dampers 4 to achieve buffering in the front-back and left-right directions. This invention improves the anti-tipping effect of the oxygen cylinder by mounting it on the hemispherical base 5 and using the large semi-circular structure at the bottom.

[0031] The shock absorber is installed vertically.

[0032] The mounting base 1 has forklift arm insertion holes for the forklift arm to pass through, facilitating forklift transport. The buffer frame 2 also has forklift arm insertion holes for the forklift arm to pass through. The gap between the mounting base 1 and the buffer frame 2 is the clearance for the forklift arm to pass through. A longitudinal compression spring can also be installed between the mounting base and the buffer frame.

[0033] The outer diameter of the hemispherical base 5 is larger than the outer diameter of the oxygen cylinder. The two ends of the damper 4 are connected to the buffer frame 2 and the hemispherical base 5 via a mutually matching ball-head and ball-cup rotatable connection structure. This design is suitable for buffering in different force directions.

[0034] The clamp 7 includes semi-circular pipe clamps set at the front and rear, which are detachably connected by bolts.

[0035] The height of clamp 7 is higher than 1 / 2 the height of the oxygen cylinder.

[0036] Mounting base 1 is installed onto the base plate of the transport vehicle through mounting holes. This allows for easy detachment and installation on different transport vehicles.

[0037] See Figure 3 In specific embodiment 2, based on specific embodiment 1, a hanging chain 8 is further included. One end of the hanging chain 8 is connected to a hook, and the other end of the hanging chain 8 is detachably connected to the hemispherical base 5. This achieves upward traction of the hemispherical base, improving the anti-tipping effect of the oxygen cylinder. The hook can be hung on the top frame of the transport vehicle.

[0038] While specific embodiments of this utility model have been described above, those skilled in the art should understand that these are merely illustrative examples, and the scope of protection of this utility model is defined by the appended claims. Those skilled in the art can make various changes or modifications to these embodiments without departing from the principles and essence of this utility model, but all such changes and modifications fall within the scope of protection of this utility model.

Claims

1. An anti-toppling structure for an oxygen cylinder, comprising a clamp for fixing to the outside of an oxygen cylinder, characterized in that, It also includes a buffer base, which includes a mounting base and has mounting holes. The mounting base is connected to the outer edge of a buffer frame via four shock absorbers; The inner wall of the buffer frame is hinged to the outer edge of the hemispherical base through four circumferentially arranged dampers, and the hemispherical base is supported at the bottom of the buffer frame. The hemispherical base has a limiting groove in the center for embedding the oxygen cylinder, and the clamp is hinged to the hemispherical base by an inclined support rod.

2. The anti-toppling structure for an oxygen cylinder as claimed in claim 1, wherein The mounting base has forklift arm insertion holes for the forklift arm to pass through.

3. The anti-toppling structure for an oxygen cylinder as claimed in claim 1, wherein It also includes a hanging chain, one end of which is connected to a hook, and the other end of which is detachably connected to the hemispherical base.

4. The anti-toppling structure for an oxygen cylinder as claimed in claim 1, wherein The outer diameter of the hemispherical base is larger than the outer diameter of the oxygen cylinder.

5. The anti-toppling structure for an oxygen cylinder as claimed in claim 1, wherein The two ends of the damper are respectively connected to the buffer frame and the hemispherical base through a mutually matching ball head and ball cup rotatable connection structure.

6. The anti-toppling structure for an oxygen cylinder as claimed in claim 1, wherein The clamp includes semi-circular pipe clamps arranged at the front and rear, which are detachably connected by bolts.

7. The anti-toppling structure for an oxygen cylinder as claimed in claim 1, wherein The mounting base is installed onto the base plate of the transport vehicle through mounting holes.