Device for preventing oxygen bottle from toppling
By designing an oxygen cylinder dumping device including back plate, side plate and bottom plate, the snap, spacer structure and telescopic barrier structure are used to solve the problem that the existing device cannot effectively prevent the oxygen cylinder from pouring, and the stable support and safe use of the oxygen cylinder are achieved.
Patent Information
- Application Number
- CN202421705325.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-18
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-07-18
AI Technical Summary
During the transportation, recycling and placement of oxygen cylinders, the existing anti-tilt device is simple to make and does not comply with safety specifications. It cannot effectively prevent the oxygen cylinder from pouring, and it is difficult to store the oxygen cylinder in a regular manner, which is easy to pour due to external forces.
An oxygen cylinder dumping device including back plate, side plate A, side plate B and bottom plate is designed. A stable structure is constructed by a combination of back plate, side plate and bottom plate. A snap, spacer structure and a telescopic barrier structure are used to adjust according to the size and shape of the oxygen cylinder to ensure that the oxygen cylinder is stable in the device.
This device effectively prevents the pouring of oxygen cylinders, ensures safe use, has a stable structure, high safety, wide applicability, space-saving and easy maintenance.
Smart Images

Figure CN222864696U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of gas cylinder anti-dumping structures, in particular to a device for preventing an oxygen cylinder from dumping. Background Art
[0002] In modern industrial production and construction, oxygen and acetylene are two important industrial gases that are widely used in welding, cutting and other processes. Since these two gases are flammable and explosive, their safety management and use procedures are particularly important.
[0003] At present, most enterprises and units have established relatively complete systems and processes for the management of the use and distribution of oxygen and acetylene, ensuring the orderliness and safety of gas use. However, there are still some safety hazards that cannot be ignored in the transportation, recycling and placement of oxygen cylinders. But the reality is that due to various reasons, such as cost considerations and management negligence, the production and use of anti-dumping devices are quite arbitrary. Some devices are simple to make, do not meet safety regulations, and cannot effectively prevent oxygen cylinders from tipping over; others cannot store oxygen cylinders in an orderly manner and are easily tipped over by external forces. Utility Model Content
[0004] In order to solve the problems existing in the prior art, the utility model provides a device for preventing an oxygen cylinder from tipping over, which solves the above technical problems.
[0005] To achieve the purpose of the utility model, the utility model adopts the following technical scheme: a device to prevent oxygen cylinders from tipping over, comprising a back plate, a side plate A, a side plate B, and a bottom plate, wherein the side plates A and B are respectively vertically welded on both sides of the back plate; the inner side of the bottom of the back plate is connected to the inner sides of the bottom of the side plates A and the side plates B by the bottom plate; a plurality of buckles 1 are evenly spaced on the inner side plate surface of the back plate near the top; a plurality of spacing structures are provided at positions corresponding to the lower ends of the plurality of buckles; a buckle 2 and a telescopic blocking structure are sequentially provided on one side of the inner side plate surface of the side plate A near the top from top to bottom; the buckle 1 is used in conjunction with the folded spacing structure; the buckle 2 is used in conjunction with the telescopic blocking structure after contraction and folding; a plurality of spacing plates are evenly spaced on the upper surface of the bottom plate; one side of the spacing plate is connected to the inner side of the back plate.
[0006] Furthermore, the spacing structure is composed of an axle seat b, a second rotating shaft and a baffle; the axle seat b is in a groove shape; the baffle is in a long strip shape; the rear end of the baffle is movably connected to the axle seat b by the second rotating shaft.
[0007] Furthermore, the telescopic blocking structure is composed of an axle seat a, a first rotating shaft and a telescopic rod; the axle seat a is in a groove shape; the rear end of the telescopic rod is movably connected to the axle seat a by the first rotating shaft; a hole is provided on the plate surface of the side panel B at a position corresponding to the telescopic rod; and one end of the telescopic rod passes through the hole after being stretched.
[0008] Furthermore, an arc-shaped slot is provided at the lower side of the front end of the baffle bar; the slot is used in conjunction with the extended telescopic rod.
[0009] Furthermore, after the baffle is folded upward, it is snapped into buckle 1 and fixed.
[0010] Furthermore, after the telescopic rod is contracted and folded upward, it is snapped into the second buckle and fixed.
[0011] Furthermore, a slope is provided at the front end of the bottom plate.
[0012] Compared with the prior art, the utility model has the following beneficial effects:
[0013] The device constructs a stable structure through the combination of a back plate, side plate A, side plate B and a bottom plate, which can effectively prevent the oxygen cylinder from tipping over. At the same time, the buckle 1, buckle 2 and other structures designed on the device enable the spacing structure and the telescopic blocking structure to be conveniently folded and unfolded, and the operation is simple and convenient. Through the set spacing structure and telescopic blocking structure, it can be adjusted according to the size and shape of the oxygen cylinder to ensure that the oxygen cylinder is firmly supported inside the device. When not in use, the spacing structure and the telescopic blocking structure can be folded up and fixed in the buckle, reducing the volume of the device and facilitating storage. The device for preventing the oxygen cylinder from tipping over has the beneficial effects of stable structure, high safety, wide applicability, space saving and easy maintenance, and can effectively prevent the oxygen cylinder from tipping over and ensure safe use. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a schematic diagram of the overall expanded structure of the utility model;
[0015] Figure 2 This is a schematic diagram of the structure of the utility model when not in use;
[0016] Figure 3 This is a schematic diagram of the enlarged structure of part A of the utility model;
[0017] In the figure: back panel-1, side panel A-2, side panel B-3, bottom panel-4, spacer panel-5, telescopic rod-6, buckle 1-7, shaft seat a-8, first rotating shaft-9, stop bar-10, buckle 2-11, hole-12, slot-13, shaft seat b-14, second rotating shaft-15. DETAILED DESCRIPTION
[0018] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention:
[0019] like Figure 1-3 As shown, a device for preventing an oxygen cylinder from tipping over comprises a back plate 1, a side plate A2, a side plate B3, and a bottom plate 4. The two sides of the back plate 1 are respectively vertically welded with side plates A2 and B3; the inner side of the bottom of the back plate 1 is connected to the inner side of the bottom of the side plates A2 and B3 by the bottom plate 4; a plurality of buckles 7 are arranged at equal intervals on the inner side of the back plate 1 near the top, and the buckles 7 are used to fix the oxygen cylinder to ensure the stability of the oxygen cylinder in the device; a plurality of spacing structures are arranged at the corresponding positions at the lower ends of the plurality of buckles 7, and the spacing structures are used in conjunction with the buckles 7 in the folded state to fix the oxygen cylinder in the device to prevent it from tipping over. When the oxygen cylinder does not need to be fixed, the spacing structure can be unfolded to facilitate the placement of the oxygen cylinder; a buckle 2 11 and a telescopic blocking structure are arranged on one side of the inner side of the side plate A2 near the top from top to bottom, and the buckle 2 11 is used to fix the oxygen cylinder on the side plate A2 when necessary to prevent it from tipping over. The telescopic blocking structure can be stretched and fixed after the oxygen cylinder is completely inserted, so as to further increase the stability of the front end of the oxygen cylinder; the buckle 1 7 is used in conjunction with the folded spacing structure; the buckle 2 11 is used in conjunction with the telescopic blocking structure after contraction and folding; a plurality of spacing plates 5 are provided at equal intervals on the upper surface of the bottom plate 4, and the spacing plates 5 are used to separate the oxygen cylinders to prevent them from colliding with each other or tipping over; one side of the spacing plate 5 is connected to the inner side of the back plate 1.
[0020] Specifically, the spacing structure is composed of an axle seat b14, a second rotating shaft 15 and a baffle 10; the axle seat b14 is in a groove shape; the baffle 10 is in a long strip shape; the rear end of the baffle 10 is movably connected to the axle seat b14 by the second rotating shaft 15.
[0021] When the oxygen cylinder needs to be fixed in the device, the spacing structure located on the inner side of the back plate 1 comes into play. Specifically, the shaft seat b14 serves as a support point, and its groove shape allows the second rotating shaft 15 to rotate freely therein. The baffle 10 is in the shape of a long strip, and its rear end is movably connected to the shaft seat b14 through the second rotating shaft 15, which enables the baffle 10 to be turned up and down around the second rotating shaft 15. When not in use, the baffle 10 can be folded upward to reduce space occupation. When the oxygen cylinder is placed in, the baffle 10 can be unfolded downward to form a barrier to prevent the oxygen cylinder from shaking left and right.
[0022] Specifically, the telescopic blocking structure is composed of an axle seat a8, a first rotating shaft 9 and a telescopic rod 6; the axle seat a8 is in a groove shape; the rear end of the telescopic rod 6 is movably connected to the axle seat a8 by the first rotating shaft 9; a hole 12 is provided at a position corresponding to the telescopic rod 6 on the plate surface of the side panel B3; and one end of the telescopic rod 6 passes through the hole 12 after being stretched.
[0023] In the process of fixing the oxygen cylinder, the telescopic blocking structure plays a key role. The shaft seat a8 also has a groove shape, allowing the first rotating shaft 9 to rotate therein. The rear end of the telescopic rod 6 is movably connected to the shaft seat a8 through the first rotating shaft 9, which means that the telescopic rod 6 can be telescoped around the first rotating shaft 9. The hole 12 on the side plate B3 provides a space for the telescopic rod 6 to pass through, so that the telescopic rod 6 can be extended and fixed from the hole 12 after being stretched. Effectively prevent the oxygen cylinder from tipping forward.
[0024] Specifically, the lower front end of the baffle 10 is provided with an arc-shaped slot 13; the slot 13 is used in conjunction with the extended telescopic rod 6. When the oxygen cylinder is placed in the device, the baffle 10 and the telescopic rod 6 need to be used in conjunction to ensure the stability of the oxygen cylinder. The lower front end of the baffle 10 is provided with an arc-shaped slot 13, which perfectly matches the extended telescopic rod 6. When the telescopic rod 6 extends from the hole 12, the slot 13 of the baffle 10 can be stuck on the telescopic rod 6 to form a stable support structure to prevent the oxygen cylinder from tipping over or sliding.
[0025] Specifically, after the baffle bar 10 is folded upward, it is snapped into the buckle 7 and fixed.
[0026] Specifically, after the telescopic rod 6 is contracted and folded upward, it is snapped into the second buckle 11 and fixed.
[0027] Buckle 1 7 and buckle 2 11 are used to fix the folded baffle 10 and telescopic rod 6 respectively. When the baffle 10 is folded upward, it can be snapped into buckle 1 7 to ensure that the baffle 10 will not be unfolded at will. Similarly, when the telescopic rod 6 is contracted and folded upward, it can also be snapped into buckle 2 11 to keep it fixed. This design makes the internal space of the device tidier when the baffle 10 and telescopic rod 6 are not in use.
[0028] Specifically, the front end of the bottom plate 4 is provided with a slope, which makes it easier for the oxygen cylinder to slide when it is put in or taken out, reducing the difficulty of manual operation. At the same time, the slope also makes the oxygen cylinder more stable in the device, preventing the oxygen cylinder from tipping over due to uneven ground or other reasons.
[0029] In use, place the device flat on a stable ground to ensure that the bottom plate 4 is in stable contact with the ground. If multiple oxygen cylinders are placed in the device, first place the oxygen cylinders in order according to the space reserved by the partition plate 5, and then stretch the telescopic blocking structure (telescopic rod 6) on the side plate A outward until one end of the telescopic rod 6 passes through the hole 12 of the side plate B. Then, unfold the multiple spacing structures (bars 10) on the back plate 1 downward, so that the bar 10 is vertically clamped on the telescopic rod 6 to prevent the oxygen cylinders from tipping over.
[0030] The above is only a preferred specific implementation method of the utility model, but the protection scope of the utility model is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes within the technical scope disclosed by the utility model according to the technical solution and improved ideas of the utility model, which should be covered by the protection scope of the utility model.
Claims
1. A device for preventing an oxygen cylinder from tipping over, comprising a back plate (1), a side plate A (2), a side plate B (3), and a bottom plate (4), characterized in that: The two sides of the back panel (1) are respectively vertically welded with side panels A (2) and side panels B (3); the inner side of the bottom of the back panel (1) is connected to the inner side of the bottom of the side panels A (2) and the side panels B (3) by a bottom panel (4); a plurality of snap-on ones (7) are evenly spaced on the inner side of the back panel (1) near the top; a plurality of spacing structures are provided at positions corresponding to the lower ends of the plurality of snap-on ones (7); a snap-on two (11) and a telescopic blocking structure are provided on one side of the inner side of the side panel A (2) near the top in sequence from top to bottom; the snap-on one (7) is used in conjunction with the spacing structure after folding; the snap-on two (11) is used in conjunction with the telescopic blocking structure after contraction and folding; a plurality of spacing plates (5) are evenly spaced on the upper side of the bottom panel (4); one side of the spacing plate (5) is connected to the inner side of the back panel (1).
2. The device for preventing an oxygen cylinder from tipping over according to claim 1, characterized in that: The spacing structure is composed of an axle seat b (14), a second rotating shaft (15) and a baffle (10); the axle seat b (14) is in a groove shape; the baffle (10) is in a long strip shape; the rear end of the baffle (10) is movably connected to the axle seat b (14) by the second rotating shaft (15).
3. The device for preventing an oxygen cylinder from tipping over according to claim 1, characterized in that: The telescopic blocking structure is composed of an axle seat a (8), a first rotating shaft (9) and a telescopic rod (6); the axle seat a (8) is in a groove shape; the rear end of the telescopic rod (6) is movably connected to the axle seat a (8) by the first rotating shaft (9); a hole (12) is provided on the plate surface of the side plate B (3) at a position corresponding to the telescopic rod (6); and one end of the telescopic rod (6) passes through the hole (12) after being stretched.
4. The device for preventing an oxygen cylinder from tipping over according to claim 2, characterized in that: An arc-shaped slot (13) is provided at the lower side of the front end of the blocking bar (10); the slot (13) is used in conjunction with the extended telescopic rod (6).
5. The device for preventing an oxygen cylinder from tipping over according to claim 4, characterized in that: After the blocking strip (10) is folded upward, it is snapped into the buckle 1 (7) and fixed.
6. The device for preventing an oxygen cylinder from tipping over according to claim 3, characterized in that: After the telescopic rod (6) is contracted and folded upward, it is snapped into the second buckle (11) and fixed.
7. The device for preventing an oxygen cylinder from tipping over according to claim 1, characterized in that: The front end of the bottom plate (4) is provided with a slope.