Anti-toppling gas cylinder tooling

CN224801435UActive Publication Date: 2026-09-25SHAANXI AEROSPACE DELIN TECH GRP CO LTD +1
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Patent Information

Application Number
CN202522301976.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-30
Publication Date
2026-09-25
Estimated Expiration
2035-10-30

AI Technical Summary

Technical Problem

[0005]本申请实施例通过提供一种防倾倒气瓶工装,解决了现有技术中乙炔气瓶移动以及放置过程中容易出现倾倒危险的问题

Benefits of technology

对气瓶进行移动时,将移动车架停放在夹具机构以及底环机构一侧,随后将内固定组件以及夹具机构和底环机构从气瓶上方套设在气瓶的周向外壁,随后推动移动车架,使得移动车架带动杠杆组件的一端靠近内固定组件,在移动车架移动过程中,移动车架的底部卡设进底环机构上,杠杆组件的一端抵接在内固定组件下部,随后下压杠杆组件远离内固定组件的一端,使得内固定组件被杠杆组件抬升,由于底环机构卡设在移动车架下部,当内固定组件上升时,带动夹具机构的一端移动,夹具机构的另一端固定在底环机构上无法持续上升,使得底环机构被夹具机构带动上提脱离地面后,继续上提使得夹具机构收紧,对气瓶底端进行固定,继而实现将底环机构提升脱离地面,以及驱动夹具机构固定气瓶并提升气瓶的效果,方便移动机架带动气瓶进行搬运;

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Abstract

The application relates to the technical field of gas cylinder tooling, and particularly discloses a kind of anti-toppling gas cylinder tooling, comprising: inner fixing assembly, for being sleeved on the outer wall of upper portion of gas cylinder;Clamp mechanism, hoisting in the lower portion of the inner fixing assembly, for clamping the outer wall of lower portion of gas cylinder;Bottom ring mechanism, cover is set in the lower portion of gas cylinder, and is connected with the end of clamp mechanism away from the inner fixing assembly, the bottom ring mechanism cooperates with the inner fixing assembly, for driving clamp mechanism clamping in the outer wall of bottom of gas cylinder when inner fixing assembly is lifted;Lever assembly, one end is in abutment with the inner fixing assembly;Movable frame, is located in one side of the inner fixing assembly and the bottom ring mechanism, the middle part of lever assembly is rotatably arranged on the upper portion of movable frame, solve the problem that existing technology is prone to toppling danger in the process of moving and placing acetylene cylinder.
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Description

Technical Field

[0001] This application relates to the field of gas cylinder tooling technology, and in particular to an anti-tipping gas cylinder tooling. Background Technology

[0002] Acetylene, as an important industrial fuel, is widely used in metal welding, cutting, and other fields. Currently, acetylene cylinders pose a significant risk of tipping over during routine storage and short-distance movement in workshops, construction sites, and other locations. Acetylene cylinders are filled with porous packing material and acetone; if tipped over, the solvent may leak out, potentially leading to combustion, explosion, and other serious safety accidents, posing a substantial safety hazard.

[0003] To mitigate the aforementioned risks, gas cylinders are typically secured to walls or supports using tools such as wire and chains, or simple caps and bases. However, these traditional methods are cumbersome, lack stability, and severely restrict the necessary mobility of the cylinders. When workstation adjustments or relocations are required, multiple people often have to manually move them, resulting in low efficiency and increased risk. Furthermore, most existing gas cylinder securing fixtures or trolleys on the market suffer from complex structures, limited uses, large space requirements, and high costs, failing to simultaneously and efficiently meet the two core requirements of stable storage and convenient relocation.

[0004] Therefore, there is an urgent need for a comprehensive device that is highly integrated, easy to operate, safe and reliable, and can simultaneously solve the problems of preventing gas cylinders from tipping over and moving them easily. Utility Model Content

[0005] This application provides an anti-tipping gas cylinder fixture, which solves the problem of the risk of tipping over during the movement and placement of acetylene gas cylinders in the prior art.

[0006] In a first aspect, this utility model provides an anti-tipping gas cylinder fixture, comprising: an inner fixing component for being fitted onto the upper outer wall of the gas cylinder; a clamping mechanism suspended below the inner fixing component for clamping the lower outer wall of the gas cylinder; a bottom ring mechanism covering the lower part of the gas cylinder and connected to the end of the clamping mechanism away from the inner fixing component, wherein the bottom ring mechanism cooperates with the inner fixing component to drive the clamping mechanism to clamp onto the bottom outer wall of the gas cylinder when the inner fixing component is lifted; a lever component with one end abutting against the inner fixing component; and a movable frame disposed on one side of the inner fixing component and the bottom ring mechanism, wherein the middle part of the lever component is rotatably disposed on the upper part of the movable frame.

[0007] In one possible implementation, the internal fixing assembly includes: two sets of inner rings, the two sets of inner rings being arranged vertically at intervals; a first outer ring, sleeved outside one of the inner rings, with multiple connecting rods between the first outer ring and the inner ring; a first U-shaped rod, located outside the first outer ring, with both ends of the first U-shaped rod connected to the outer wall of the first outer ring; wherein the first U-shaped rod is used to abut one end of the lever assembly; and two sets of lifting rods, the two sets of lifting rods being spaced apart at the lower part of the inner ring, the bottom end of the lifting rod being used to install the clamping mechanism.

[0008] In one possible implementation, the bottom ring mechanism includes: a second outer ring, which covers the outside of the clamping mechanism, and the diameter of the second outer ring is larger than that of the first outer ring; two sets of first telescopic rods, which are spaced apart on the upper part of the second outer ring, and the end of the first telescopic rod away from the second outer ring is connected to the end of the clamping mechanism away from the lifting rod; the second outer ring is C-shaped, and the opening of the C-shaped second outer ring is for the gas cylinder to pass through; and multiple second telescopic rods, which are arranged in a ring around the outside of the clamping mechanism, with one end of the second telescopic rod connected to the first outer ring and the other end connected to the second outer ring.

[0009] In one possible implementation, the clamping mechanism includes: a first slider disposed at the bottom end of the lifting rod; a first slide rail disposed on the side of the first slider away from the gas cylinder, the first slide rail being slidably connected to the first slider; wherein, the first sliders and the first slide rails of the two sets of clamping mechanisms are inclinedly arranged towards the center of the second outer ring; a second slider, one end of which is connected to the bottom surface of the first slide rail, and the other end of which is horizontally arranged towards the second outer ring; a second slide rail slidably connected to the second slider, the end of the second slide rail away from the second slider being connected to the top end of the first telescopic rod; and a semi-circular plate disposed at the lower part of the first slide rail.

[0010] In one possible implementation, the inner wall of the semi-annular plate is provided with anti-slip pads.

[0011] In one possible implementation, the mobile frame includes: two sets of I-beams spaced apart; a second U-shaped rod with its opening facing downwards, the two ends of which are used to connect to the two ends of the first openings of the two sets of I-beams; wherein the second opening of the I-beam faces the bottom ring mechanism and is used to engage the bottom ring mechanism; two sets of rollers located on the outer sides of the two sets of I-beams; and two sets of mounting ears spaced apart on the top surface of the second U-shaped rod, each set being used to mount two sets of lever assemblies.

[0012] In one possible implementation, the lever assembly includes: a pry bar, rotatably connected to the mounting lug at its center; a first hook, mounted on the pry bar near the end of the first U-shaped rod; a handle, located on the pry bar away from the first hook; and a second hook, located on the pry bar near the handle, the second hook being located at the lower part of the pry bar.

[0013] One or more technical solutions provided in the embodiments of this utility model have at least the following technical effects or advantages: When moving the gas cylinder, the mobile frame is placed on one side of the clamping mechanism and the bottom ring mechanism. Then, the inner fixing component, clamping mechanism, and bottom ring mechanism are fitted onto the outer circumferential wall of the gas cylinder from above. The mobile frame is then pushed, causing one end of the lever component to approach the inner fixing component. During the movement of the mobile frame, the bottom of the mobile frame is engaged with the bottom ring mechanism, and one end of the lever component abuts against the lower part of the inner fixing component. Then, the end of the lever component away from the inner fixing component is pressed down, causing the inner fixing component to be lifted by the lever component. Since the bottom ring mechanism is engaged at the bottom of the mobile frame, when the inner fixing component rises, it drives one end of the clamping mechanism to move. The other end of the clamping mechanism is fixed to the bottom ring mechanism and cannot continue to rise. After the bottom ring mechanism is lifted off the ground by the clamping mechanism, it continues to rise, causing the clamping mechanism to tighten and fix the bottom of the gas cylinder. This achieves the effect of lifting the bottom ring mechanism off the ground and driving the clamping mechanism to fix and lift the gas cylinder, making it convenient for the mobile frame to move the gas cylinder. When the designated position is reached, slowly loosen one end of the lever assembly, causing the other end of the lever assembly to move downwards, placing the inner fixing assembly, clamping mechanism, and bottom ring mechanism, and moving the gas cylinder to the ground. Then, drag the moving frame away from the inner fixing assembly and bottom ring mechanism. Subsequently, the bottom ring mechanism and inner fixing assembly fix the gas cylinder, and the bottom ring mechanism increases the contact area between the gas cylinder and the ground to prevent the gas cylinder from tipping over after being hit. Attached Figure Description

[0014] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments of this utility model or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0015] Figure 1 This is a schematic diagram of the anti-tipping gas cylinder tooling structure provided in the embodiments of this application; Figure 2 This is a schematic diagram of the internal fixation component structure provided in an embodiment of this application; Figure 3This is a schematic diagram of the fixture assembly structure provided in an embodiment of this application; Figure 4 This is a schematic diagram of the bottom ring mechanism provided in an embodiment of this application; Figure 5 This is a schematic diagram of the mobile vehicle frame structure provided in an embodiment of this application.

[0016] icon: 100 - Internal fixation components; 110 - Inner ring; 120 - First outer ring; 130 - Connecting rod; 140 - First U-shaped rod; 150 - Lifting rod; 200-gas cylinder; 300 - Fixture mechanism; 310 - First slider; 320 - First slide rail; 330 - Second slider; 340 - Second slide rail; 350 - Semi-ring plate; 360 - Anti-slip pad; 400-bottom ring mechanism; 410 - Second outer ring; 420 - First telescopic bar; 430 - Second telescopic bar; 500-Lever Component; 510 - Crowbar; 520 - First hook; 530 - Handle; 540 - Second hook; 600-Mobile chassis; 610 - I-beam; 620 - Second U-shaped rod; 630 - Roller; 640 - Mounting lug. Detailed Implementation

[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some, not all, of the embodiments of the present utility model. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present utility model.

[0018] In the description of the embodiments of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing the embodiments of this utility model and simplifying the description. They do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. The terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. In addition, the terms "installed," "connected," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal connection of two components. For those skilled in the art, the specific meaning of the above terms in the embodiments of this utility model can be understood according to the specific circumstances.

[0019] Example 1 Please see Figures 1-5 An anti-tipping gas cylinder fixture includes: an inner fixing component 100 for fitting onto the upper outer wall of a gas cylinder 200; a clamping mechanism 300 suspended below the inner fixing component 100 for clamping the lower outer wall of the gas cylinder 200; a bottom ring mechanism 400 covering the lower part of the gas cylinder 200 and connected to one end of the clamping mechanism 300 away from the inner fixing component 100, wherein the bottom ring mechanism 400 cooperates with the inner fixing component 100 to drive the clamping mechanism 300 to clamp onto the bottom outer wall of the gas cylinder 200 when the inner fixing component 100 is lifted; a lever component 500, one end of which abuts against the inner fixing component 100; and a movable frame 600 disposed on one side of the inner fixing component 100 and the bottom ring mechanism 400, wherein the middle part of the lever component 500 is rotatably disposed on the upper part of the movable frame 600.

[0020] In the above embodiment, when moving the gas cylinder 200, the moving frame 600 is positioned on one side of the clamping mechanism 300 and the bottom ring mechanism 400. Then, the inner fixing component 100, the clamping mechanism 300, and the bottom ring mechanism 400 are fitted over the gas cylinder 200 and placed on its circumferential outer wall. The moving frame 600 is then pushed, causing one end of the lever assembly 500 to approach the inner fixing component 100. During the movement of the moving frame 600, the bottom of the moving frame 600 engages with the bottom ring mechanism 400, and one end of the lever assembly 500 abuts against the lower part of the inner fixing component 100. Finally, the lever assembly 500 is pressed down away from the inner fixing component 100. At one end, the inner fixing component 100 is lifted by the lever component 500. Since the bottom ring mechanism 400 is locked at the lower part of the mobile frame 600, when the inner fixing component 100 rises, it drives one end of the clamping mechanism 300 to move. The other end of the clamping mechanism 300 is fixed on the bottom ring mechanism 400 and cannot continue to rise. After the bottom ring mechanism 400 is lifted off the ground by the clamping mechanism 300, it continues to rise, causing the clamping mechanism 300 to tighten and fix the bottom end of the gas cylinder 200. This achieves the effect of lifting the bottom ring mechanism 400 off the ground and driving the clamping mechanism 300 to fix and lift the gas cylinder 200, making it convenient for the mobile frame to move the gas cylinder 200. When the designated position is reached, one end of the lever assembly 500 is slowly loosened, causing the other end of the lever assembly 500 to move downwards, placing the inner fixing assembly 100, the clamping mechanism 300, and the bottom ring mechanism 400, thereby placing the gas cylinder 200 on the ground. Then, the moving frame 600 is dragged away from the inner fixing assembly 100 and the bottom ring mechanism 400. Subsequently, the bottom ring mechanism 400 and the inner fixing assembly 100 fix the gas cylinder 200. The bottom ring mechanism 400 increases the contact area between the gas cylinder 200 and the ground, preventing the gas cylinder 200 from tipping over after being hit.

[0021] Example 2 Please see Figures 1-5 The internal fixing component 100 includes: two sets of inner rings 110, which are arranged vertically at intervals; a first outer ring 120, which is sleeved on the outside of one of the inner rings 110, and a plurality of connecting rods 130 are provided between the first outer ring 120 and the inner ring 110; a first U-shaped rod 140, which is located outside the first outer ring 120, and the two ends of the first U-shaped rod 140 are connected to the outer wall of the first outer ring 120; wherein the first U-shaped rod 140 is used to abut one end of the lever assembly 500; and two sets of lifting rods 150, which are arranged at intervals at the lower part of the inner ring 110, and the bottom end of the lifting rod 150 is used to install the clamping mechanism 300.

[0022] In the above embodiment, two sets of inner rings 110 are vertically spaced apart, and their inner cavities are used to fit on the upper outer wall of the gas cylinder 200. The opening of the first U-shaped rod 140 faces the outer wall of the first outer ring 120. The lower wall of the bottom end of the first U-shaped rod 140 abuts against one end of the lever mechanism, so that the lever mechanism can pry the first outer ring 120 to drive the inner ring 110 to rise. The lifting rod 150 is used to drive one end of the clamping mechanism 300 to move when the inner ring 110 rises, so that the clamping mechanism 300 tightens and clamps and fixes the bottom outer wall of the gas cylinder 200.

[0023] Example 3 Please see Figures 1-5 The bottom ring mechanism 400 includes: a second outer ring 410, which covers the outside of the clamping mechanism 300, and the diameter of the second outer ring 410 is larger than that of the first outer ring 120; two sets of first telescopic rods 420, which are spaced apart on the upper part of the second outer ring 410, and the end of the first telescopic rod 420 away from the second outer ring 410 is connected to the end of the clamping mechanism 300 away from the lifting rod 150; the second outer ring 410 is C-shaped, and the opening of the C-shaped second outer ring 410 is for the gas cylinder 200 to pass through; and multiple second telescopic rods 430, which are annularly covered outside the clamping mechanism 300, with one end of the second telescopic rod 430 connected to the first outer ring 120 and the other end connected to the second outer ring 410.

[0024] In the above embodiment, when the first outer ring 120 rises, the clamping mechanism 300 is moved upward by the lifting rod 150. After the clamping mechanism 300 and the lifting rod 150 move upward a certain distance, the first telescopic rod 420 and the second telescopic rod 430 cannot continue to rise, so that the distance between the bottom end of the lifting rod 150 and the top end of the first telescopic rod 420 changes when the lifting continues, so that the clamping mechanism 300 works to clamp and fix the bottom end of the gas cylinder 200.

[0025] Example 4 Please see Figures 1-5The clamping mechanism 300 includes: a first slider 310 disposed at the bottom end of the lifting rod 150; a first slide rail 320 disposed on the side of the first slider 310 away from the gas cylinder 200, the first slide rail 320 being slidably connected to the first slider 310; wherein, the first slider 310 and the first slide rail 320 of the two sets of clamping mechanisms 300 are inclinedly arranged towards the center of the second outer ring 410; a second slider 330, one end of which is connected to the bottom surface of the first slide rail 320, and the other end of which is horizontally arranged towards the second outer ring 410; a second slide rail 340 slidably connected to the second slider 330, the end of the second slide rail 340 away from the second slider 330 being connected to the top end of the first telescopic rod 420; and a semi-ring plate 350 disposed at the lower part of the first slide rail 320.

[0026] In the above embodiment, when the first telescopic rod 420 can no longer extend, the hoisting rod 150 drives the first slider 310 to move upward continuously. Since the two sets of first slide rails 320 are arranged in a V-shape, when the first slider 310 moves upward, it drives the two sets of first slide rails 320 to move closer to the center, and then drives the two sets of semi-ring plates 350 to move closer to the center, clamping them on the outer wall of the bottom end of the gas cylinder 200. During the movement of the second slider 330, the second slider 330 slides within the second slide rail 340, and the sliding direction of the first slide rail 320 is limited by the second slide rail 340.

[0027] Example 5 Please see Figures 1-5 The inner wall of the semi-ring plate 350 is provided with anti-slip pads 360.

[0028] In the above embodiment, when the two sets of clamping mechanisms 300 are working, they drive the two sets of semi-ring plates 350 to move closer to the center. When the two sets of semi-ring plates 350 are clamped on the outer wall of the gas cylinder 200, the anti-slip pad 360 is used to increase the friction of the semi-ring plates 350 and prevent the gas cylinder 200 from falling off between the two sets of semi-ring plates 350 during the movement.

[0029] Example 6 Please see Figures 1-5 The mobile frame 600 includes: two sets of I-beams 610, spaced apart; a second U-shaped rod 620 with its opening facing downwards, the two ends of which are used to connect to the two ends of the first openings of the two sets of I-beams 610; wherein the second opening of the I-beam 610 faces the bottom ring mechanism 400 and is used to engage the bottom ring mechanism 400; two sets of rollers 630, respectively located on the outer sides of the two sets of I-beams 610; and two sets of mounting ears 640, spaced apart on the top surface of the second U-shaped rod 620, each set used to mount two sets of lever assemblies 500.

[0030] In the above embodiment, the second opening of the I-beam 610 is used to hold the second outer ring 410. The lever assembly 500 is installed in the mounting ear 640 and is rotatably connected to the mounting ear 640. When the lever assembly 500 drags the inner ring 110 upward, the lever assembly 500 swings around the mounting ear 640. Dragging one end of the lever assembly 500 can drive the mobile frame 600 to move.

[0031] Example 7 Please see Figures 1-5 The lever assembly 500 includes: a pry bar 510, the middle of which is rotatably connected to the mounting ear 640; a first hook 520, which is installed on the pry bar 510 near the end of the first U-shaped rod 140; a handle 530, which is located on the pry bar 510 away from the first hook 520; and a second hook 540, which is located on the pry bar 510 near the handle 530, and the second hook 540 is located on the lower part of the pry bar 510.

[0032] In the above embodiment, when the handle 530 is held and the pry bar 510 is pressed down, one end of the pry bar 510 with the first hook 520 is engaged at the lower part of the first U-shaped rod 140. Continuing to press down the pry bar 510 causes the pry bar 510 to drive the inner ring 110 fixing component to move upward. Then, the handle 530 is pulled so that the second hook 540 passes around the second U-shaped rod 620 and hangs on one side of the second U-shaped rod 620, which makes it convenient to move the second U-shaped rod 620 when the handle 530 is pulled, thereby achieving the effect of moving the mobile frame 600 by dragging the pry bar 510.

[0033] The various embodiments in this specification are described in a progressive manner. For the same or similar parts between the various embodiments, please refer to each other. Each embodiment focuses on describing the differences from other embodiments.

[0034] The above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit this application. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of this application.

Claims

1. A tooling for preventing tipping of gas cylinders, characterized in that, include: An internal fixing component (100) is used to be fitted onto the upper outer wall of the gas cylinder (200); The clamping mechanism (300) is suspended at the lower part of the inner fixing component (100) and is used to clamp the lower outer wall of the gas cylinder (200); A bottom ring mechanism (400) is installed under the gas cylinder (200) and connected to the end of the clamping mechanism (300) away from the inner fixing component (100). The bottom ring mechanism (400) cooperates with the inner fixing component (100) to drive the clamping mechanism (300) to clamp onto the bottom outer wall of the gas cylinder (200) when the inner fixing component (100) is lifted. One end of the lever assembly (500) abuts against the internal fixation assembly (100); A mobile frame (600) is located on one side of the inner fixing component (100) and the bottom ring mechanism (400), and the lever component (500) is rotatably located on the upper part of the mobile frame (600).

2. The anti-tipping gas cylinder fixture according to claim 1, characterized in that, The internal fixation assembly (100) includes: The inner ring (110) is provided in two sets, and the two sets of inner rings (110) are arranged vertically at intervals; The first outer ring (120) is sleeved on the outside of one of the inner rings (110), and a plurality of connecting rods (130) are provided between the first outer ring (120) and the inner ring (110). The first U-shaped rod (140) is disposed on the outside of the first outer ring (120), and the two ends of the first U-shaped rod (140) are connected to the outer wall of the first outer ring (120); The first U-shaped rod (140) is used to abut one end of the lever assembly (500); The hoisting rod (150) is provided in two sets, and the two sets of hoisting rods (150) are spaced apart at the lower part of the inner ring (110). The bottom end of the hoisting rod (150) is used to install the clamping mechanism (300).

3. The anti-tipping gas cylinder fixture according to claim 2, characterized in that, The bottom ring mechanism (400) includes: The second outer ring (410) is covered on the outside of the clamping mechanism (300), and the diameter of the second outer ring (410) is larger than that of the first outer ring (120). The first telescopic rod (420) is provided in two sets. The two sets of the first telescopic rod (420) are spaced apart on the upper part of the second outer ring (410). The end of the first telescopic rod (420) away from the second outer ring (410) is connected to the end of the clamping mechanism (300) away from the lifting rod (150). The second outer ring (410) is C-shaped, and the opening of the C-shaped second outer ring (410) is for the gas cylinder (200) to pass through; Multiple second telescopic rods (430) are provided. The multiple second telescopic rods (430) are arranged in a ring around the outside of the clamping mechanism (300). One end of the second telescopic rod (430) is connected to the first outer ring (120), and the other end is connected to the second outer ring (410).

4. The anti-tipping gas cylinder fixture according to claim 3, characterized in that, The clamping mechanism (300) includes: The first slider (310) is located at the bottom end of the hoisting rod (150); The first slide rail (320) is located on the side of the first slider (310) away from the gas cylinder (200), and the first slide rail (320) is slidably connected to the first slider (310); In this case, the first slider (310) and the first slide rail (320) of the two sets of clamping mechanisms (300) are inclined to point towards the center of the second outer ring (410); The second slider (330) is connected at one end to the bottom surface of the first slide rail (320), and at the other end is set horizontally towards the second outer ring (410); The second slide rail (340) is slidably connected to the second slider (330), and the end of the second slide rail (340) away from the second slider (330) is connected to the top end of the first telescopic rod (420); A semi-circular plate (350) is located at the lower part of the first slide rail (320).

5. The anti-tipping gas cylinder fixture according to claim 4, characterized in that, The inner wall of the semi-ring plate (350) is provided with anti-slip pads (360).

6. The anti-tipping gas cylinder fixture according to claim 5, characterized in that, The mobile frame (600) includes: The I-beam (610) is provided in two sets, and the two sets of I-beams (610) are arranged at intervals; The second U-shaped rod (620) is set with its opening facing downwards, and the two ends of the opening of the second U-shaped rod (620) are used to connect the two ends of the first opening of the two sets of I-beams (610); The second opening of the I-beam (610) is positioned facing the bottom ring mechanism (400), and the second opening is used to engage the bottom ring mechanism (400). The rollers (630) are provided in two sets, and the two sets of rollers (630) are respectively located on the outside of the two sets of I-beams (610); The mounting ears (640) are provided in two sets, and the two sets of mounting ears (640) are spaced apart on the top surface of the second U-shaped rod (620). The two sets of mounting ears (640) are respectively used to install two sets of lever assemblies (500).

7. The anti-tipping gas cylinder fixture according to claim 6, characterized in that, The lever assembly (500) includes: The pry bar (510) is rotatably connected to the mounting lug (640) in the middle; The first hook (520) is installed on the pry bar (510) at one end near the first U-shaped rod (140); A handle (530) is provided at the end of the pry bar (510) away from the first hook (520); The second hook (540) is located at one end of the pry bar (510) near the handle (530), and the second hook (540) is located at the lower part of the pry bar (510).