Tilting prevention tool for temporary storage of gas cylinders

By designing an anti-reversing tooling with a square ring frame structure composed of adjustable telescopic rods and right-angle connectors, the existing gas cylinder anti-reversing device has large land and poor adaptability, and effective anti-reversing protection for multiple gas cylinders is achieved.

CN222864675UActive Publication Date: 2025-05-13YICHANG DEXIN PRACTICAL GAS CO LTD
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Patent Information

Application Number
CN202421045806.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-14
Publication Date
2025-05-13
Estimated Expiration
2034-05-14

AI Technical Summary

Technical Problem

The existing gas cylinder anti-fall device covers a large area and is inconvenient to use. It cannot be adaptable to adjust according to the size and quantity requirements of the gas cylinder, and has poor adaptability.

Method used

An anti-reversal tooling for gas cylinder temporary storage is designed, adopting a square ring frame structure, including an adjustable telescopic rod and right-angle connector, which can be adjusted according to needs and is suitable for gas cylinders of different sizes and numbers.

Benefits of technology

It realizes anti-fall protection for multiple gas cylinders. The device is small, lightweight, easy to use and install, and has strong applicability, which can effectively offset the tendency of gas cylinders to fall.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-toppling tool for temporary storage of gas cylinders, which comprises a tool body, the tool body is a square annular frame, a plurality of adjacent gas cylinder bodies are arranged in the tool body, and the tool body is sleeved on the outer sides of bottle necks and neck rings of all the gas cylinder bodies inside; the tool body comprises four right-angle connecting pieces and four detachable adjustable telescopic rods, connecting parts are arranged at the two right-angle ends of each right-angle connecting piece, and the two ends of each adjustable telescopic rod are detachably and fixedly matched with the connecting parts of the corresponding right-angle connecting pieces respectively. The four right-angle connecting pieces and the four adjustable telescopic rods are matched to form a square annular frame, the right-angle connecting pieces serve as the right angles of the square annular frame, the adjustable telescopic rods serve as the edges of the square annular frame, the gas cylinders are mutually restrained through the gas cylinder bodies arranged in an array mode, toppling of the gas cylinders is prevented, adjustment, disassembly and installation are convenient, applicability is high, and practicability is high. And the occupied space is small.
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Description

Technical Field

[0001] The utility model relates to the technical field of gas production, in particular to an anti - tipping tooling for temporary storage of gas cylinders. Background Art

[0002] In many links of the gas production process, there are scenarios of temporary storage of gas cylinders. Usually, a large number of gas cylinders are placed side by side in an array. During the process, it is necessary to limit the anti - tipping of the gas cylinders to ensure the stability during temporary storage. The existing anti - tipping devices have the following problems:

[0003] (1) Most of them are anti - tipping frame structures, which occupy a large area, are not convenient for the arrangement of gas cylinders, and are not easy to use.

[0004] (2) The anti - tipping devices generally protect single gas cylinders, and the sizes of the protection devices are limited, and they cannot be adjusted adaptively according to the sizes of the gas cylinders and the requirements for the number of simultaneously protected gas cylinders, so the adaptability is poor. Content of the Utility Model

[0005] The utility model provides an anti - tipping tooling for temporary storage of gas cylinders, aiming to solve the problems that the existing anti - tipping devices for temporary storage of gas cylinders arranged in an array occupy a large area and are not easy to use, and cannot be adjusted according to requirements and have poor adaptability.

[0006] To solve the above - mentioned technical problems, the technical solution adopted by the utility model is as follows:

[0007] The anti - tipping tooling for temporary storage of gas cylinders includes a tooling body. The tooling body is a square - ring - shaped frame. A number of adjacent gas cylinder bodies are arranged inside the tooling body, and the tooling body is sleeved outside the neck rings of all the gas cylinder bodies inside.

[0008] The tooling body includes four right - angle connectors and four detachable adjustable telescopic rods. Both right - angle ends of the right - angle connectors are provided with connecting parts. The two ends of the adjustable telescopic rods are respectively detachably and fixedly matched with the connecting parts of the corresponding right - angle connectors. The four right - angle connectors and the four adjustable telescopic rods cooperate to form a square - ring - shaped frame. The right - angle connectors serve as the right - angles of the square - ring - shaped frame, and the adjustable telescopic rods serve as the sides of the square - ring - shaped frame.

[0009] Preferably, the tooling body is square, and at least four gas cylinder bodies are sleeved inside. The four gas cylinder bodies are arranged in a "field" shape.

[0010] More preferably, the tooling body surrounds the neck rings of all the gas cylinder bodies arranged inside the ring, and the tooling body always bears above the bottle bodies of all the gas cylinder bodies arranged inside the ring.

[0011] Preferably, the two ends of the adjustable telescopic rod are respectively provided with a first threaded joint and a second threaded joint, one side connection portion of the right-angle connector is a first threaded opening, the first threaded opening corresponds to the first threaded joint and forms a threaded fit, and the other side connection portion of the right-angle connector is a second threaded opening, the second threaded opening corresponds to the second threaded joint and forms a threaded fit.

[0012] As a more preferred embodiment, the adjustable telescopic rod includes an outer rod and an inner rod, the outer rod is a hollow structure, an opening is provided on one side of the outer rod, and the inner rod is coaxially and movably embedded in the outer rod along the axial direction from the opening, the other side of the outer rod is sealed, and the first threaded joint is coaxially and concentrically provided on the sealed end of the outer rod, and the second threaded joint is coaxially and concentrically provided on the end of the inner rod away from the outer rod.

[0013] Furthermore, the outer rod and the first threaded joint are integrally formed, and the inner rod and the second threaded joint are integrally formed.

[0014] Furthermore, the outer rod is provided with a pair of relatively arranged limiting holes, which penetrate the outer rod in the radial direction of the outer rod, and the inner rod is provided with a plurality of pairs of positioning holes at equal intervals in the axial direction, and the axial direction of each pair of positioning holes is the same, and each pair of positioning holes penetrates the inner rod in the radial direction of the inner rod.

[0015] In detail, when the inner rod is embedded in the outer rod, one pair of positioning holes is aligned with and overlaps with the limiting holes, and fastening bolts are detachably provided in the overlapping positioning holes and limiting holes.

[0016] In more detail, the radius of the positioning hole is the same as the radius of the limiting hole.

[0017] Beneficial effects of the utility model:

[0018] 1. The utility model uses the tooling body of the square ring frame to limit the bottleneck collars of the upper ends of the gas cylinder bodies arranged in an array, and uses the tooling body to restrain each other. When one of the gas cylinders has a tendency to fall, the tooling body is pulled by other gas cylinders to offset the tendency, thereby preventing the gas cylinder from falling. The utility model is convenient to use and install, and can simultaneously prevent multiple gas cylinders from falling. The device is compact, light, and easy to use.

[0019] 2. The tooling body of the utility model is assembled by means of an adjustable telescopic rod and a right-angle connector, which is convenient for installation and disassembly. At the same time, the size of the tooling body can be adjusted by the adjustable telescopic rod, which is convenient for adapting to the anti-fall protection requirements of gas cylinders of different sizes or different numbers of gas cylinders, and has strong applicability. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is a schematic diagram of the installation of an embodiment of the utility model;

[0021] Figure 2This is a schematic diagram of the installation of the tooling body of the utility model;

[0022] Figure 3 This is a schematic diagram of disassembling the tooling body of the utility model;

[0023] Figure 4 This is a schematic diagram of the installation of another application embodiment of the utility model;

[0024] In the figure: 1. Gas cylinder body; 2. Bottle neck collar; 3. Tool body;

[0025] 4. Adjustable telescopic rod; 401. outer rod; 402. inner rod; 403. limit hole; 404. positioning hole; 405. fastening bolt; 406. first threaded joint; 407. second threaded joint;

[0026] 5. Right-angle connector; 501. First threaded opening; 502. Second threaded opening. DETAILED DESCRIPTION

[0027] As follows, embodiments are further described with reference to the accompanying drawings.

[0028] like Figure 1~Figure 3 As shown, as a preferred embodiment 1, an anti-falling tool for temporary storage of gas cylinders includes a tool body 3, wherein the tool body 3 is a square ring frame, wherein a plurality of adjacently arranged gas cylinder bodies 1 are arranged inside the tool body 3, and the tool body 3 is sleeved on the outer side of the bottleneck collar 2 of all the gas cylinder bodies 1 inside;

[0029] The tool body 3 includes four right-angle connectors 5 and four detachable adjustable telescopic rods 4. Both right-angle ends of the right-angle connector 5 are provided with connecting parts. The two ends of the adjustable telescopic rod 4 are respectively detachably fixedly matched with the connecting parts of the corresponding right-angle connector 5. The four right-angle connectors 5 and the four adjustable telescopic rods 4 cooperate to form a square ring frame. The right-angle connector 5 serves as the right angle of the square ring frame, and the adjustable telescopic rods 4 serve as the sides of the square ring frame.

[0030] Embodiment 1 provides an anti-falling tooling for temporary storage of gas cylinders, with multiple gas cylinder bodies 1 arranged in an array as a prerequisite, and a square ring frame of a tooling body 3 is used to limit the positions of several gas cylinder bodies 1 arranged adjacent to each other in the array, and the tooling body 3 is surrounded by the outer sides of the bottleneck collars 2 of these adjacently arranged gas cylinder bodies 1, and is supported on the top of the bottle body, and the bottleneck collar 2 of each gas cylinder body 1 is limited, and a limiting fit is formed by restraining each other. When one of the gas cylinder bodies 1 has a tendency to fall, the bottleneck collar 2 of the gas cylinder body 1 pulls the tooling body 3 and pulls it to one side, and the tooling body 3 applies a reaction force to the gas cylinder body 1 with a tendency to fall through the weight of the other remaining gas cylinder bodies 1, thereby offsetting the tendency of the gas cylinder body 1 to fall, thereby preventing the gas cylinder body 1 from falling;

[0031] The tooling body 3 is composed of four right-angle connectors 5 and four detachable adjustable telescopic rods 4. On the one hand, by adjusting the adjustable telescopic rods 4, it is convenient to adjust the length and width of the tooling body 3, so as to be applicable to the anti-falling operation of gas cylinder bodies 1 of different sizes and different numbers of gas cylinder bodies 1, improving the applicability. And the tooling body 3 is convenient for installation and disassembly, and is convenient for adjustment, carrying and maintenance.

[0032] As a preferred embodiment 2, the tooling body 3 is square, and at least four gas cylinder bodies 1 are sleeved inside, and the four gas cylinder bodies 1 are arranged in a "field" shape.

[0033] Embodiment 2 provides the minimum unit and layout method when the tooling body 3 realizes the anti-falling function, ensuring the stability of the gas cylinder anti-falling.

[0034] As a preferred embodiment 3, the tooling body 3 surrounds the bottleneck collar 2 of the gas cylinder body 1 arranged in all rings, and the tooling body 3 is always承接于所有环内布置气瓶本体1的瓶身上方。便于工装本体3对气瓶的瓶颈颈圈2形成限位,防止工装本体3从瓶身外围滑落,气瓶有倒下趋势时,一般是顶部绕底部歪斜,因此瓶颈颈圈2处会较先倾斜,通过杠杆原理,在瓶颈颈圈2处便于抵消倾斜趋势。

[0035] As a preferred embodiment 4, the two ends of the adjustable telescopic rod 4 are respectively provided with a first thread joint 406 and a second thread joint 407. One side connecting part of the right-angle connector 5 is a first thread port 501, and the first thread port 501 corresponds to the first thread joint 406 and forms a thread fit. The other side connecting part of the right-angle connector 5 is a second thread port 502, and the second thread port 502 corresponds to the second thread joint 407 and forms a thread fit. It is convenient for the fixed installation of the adjustable telescopic rod 4.

[0036] As a preferred embodiment 5, the adjustable telescopic rod 4 includes an outer rod 401 and an inner rod 402. The outer rod 401 is of a hollow structure, and there is an opening on one side of the outer rod 401. And the inner rod 402 is coaxially and movably embedded in the outer rod 401 along the axial direction from the opening. The other side of the outer rod 401 is sealed, and the first thread joint 406 is coaxially arranged on the sealed end of the outer rod 401, and the second thread joint 407 is coaxially arranged on the end of the inner rod 402 far from the outer rod 401. By changing the relative displacement of the inner rod 402 in the outer rod 401, the length of the adjustable telescopic rod 4 is changed, and the first thread joint 406 and the second thread joint 407 respectively correspond to the outer rod 401 and the inner rod 402, which is convenient for installation and identification.

[0037] It should be noted that there is an unclear expression in the original text of item , and the translation is adjusted as much as possible according to the context. You can check and correct it according to the actual situation.As a preferred embodiment 6, the outer rod 401 and the first threaded joint 406 are integrally formed, and the inner rod 402 and the second threaded joint 407 are integrally formed, which is convenient for installation and use.

[0038] As a preferred embodiment 7, the outer rod 401 is provided with a pair of relatively arranged limiting holes 403, and the limiting holes 403 penetrate the outer rod 401 along the radial direction of the outer rod 401. The inner rod 402 is provided with a plurality of pairs of positioning holes 404 at equal intervals along the axial direction, and the axial direction of each pair of positioning holes 404 is the same, and each pair of positioning holes 404 penetrates the inner rod 402 along the radial direction of the inner rod 402.

[0039] As a preferred embodiment 8, when the inner rod 402 is embedded in the outer rod 401, a pair of positioning holes 404 are aligned and overlapped with the limiting holes 403, and the overlapping positioning holes 404 and the limiting holes 403 are detachably provided with fastening bolts 405.

[0040] Embodiments 7 and 8 are used to fix the length of the telescopic rod. When adjusted to a suitable position, the overlapping and aligned positioning holes 404 and the limiting holes 403 are limited by tightening bolts 405, thereby ensuring that the outer rod 401 and the inner rod 402 do not produce relative displacement during use, thereby ensuring stability during use. The arrangement of multiple pairs of positioning holes 404 facilitates the selection of length and improves the utility model of the tooling.

[0041] As a preferred embodiment 9, the radius of the positioning hole 404 is the same as the radius of the limiting hole 403, so as to facilitate the installation of the fastening bolt 405.

[0042] like Figure 4 As shown, as a preferred embodiment 10, when adjacent different tooling bodies 3 limit adjacent gas cylinder bodies 1, an intersection can be formed. As shown in the figure, the first group of four gas cylinder bodies 1 are limited by the first tooling body 3. When two adjacent gas cylinder bodies 1 are limited by the second tooling body 3, the two adjacent gas cylinder bodies 1 in the first group can be used as a shared force point to form a new gas cylinder group, and the second tooling body 3 can be mounted on the new gas cylinder group. In this way, the two new gas cylinders will be restricted by the first group of overall gas cylinders when limiting. When facing multiple gas cylinders arranged in an array, this method can be used to improve the overall limiting stability of the gas cylinders and improve the anti-falling effect.

[0043] As a preferred embodiment 11, the installation method includes the following steps: first, one pair of relatively arranged adjustable telescopic rods 4 is installed, and right-angle connectors 5 are installed at both ends thereof to form a "[]"-shaped structure; the other pair of relatively arranged adjustable telescopic rods 4 is disassembled, and the outer rod 401 and the inner rod 402 are respectively installed on the connecting parts of the corresponding right-angle connectors 5; finally, the corresponding inner rod 402 is embedded in the outer rod 401 and fixed with fastening bolts 405 to complete the overall installation of the tooling.

[0044] As a preferred embodiment 12, during use, if the length needs to be adjusted, the relatively arranged adjustable telescopic rods 4 need to be adjusted synchronously. During the adjustment process, it is only necessary to remove the fastening bolts 405 to cause relative displacement between the inner rod 402 and the outer rod 401. After that, when adjusted to a suitable position, the overlapping and aligned positioning holes 404 and the limiting holes 403 are limited by the fastening bolts 405, without the need to disassemble and install the entirety.

[0045] The working principle of this utility model:

[0046] The utility model provides an anti-falling tool for temporary storage of gas cylinders. It takes multiple gas cylinder bodies 1 arranged in an array as a prerequisite, and uses a square ring frame of a tool body 3 to limit the positions of several gas cylinder bodies 1 arranged adjacent to each other in the array. The tool body 3 is surrounded by the outer sides of the bottleneck collars 2 of the adjacent gas cylinder bodies 1 and is supported on the upper part of the bottle body, and the bottleneck collar 2 of each gas cylinder body 1 is limited. By restraining each other, a limiting match is formed. When one of the gas cylinder bodies 1 has a tendency to fall, the bottleneck collar 2 of the gas cylinder body 1 pulls the tool body 3 and pulls it to one side, and the tool body 3 applies a reaction force to the gas cylinder body 1 with a tendency to fall through the weight of the other remaining gas cylinder bodies 1, thereby offsetting the tendency of the gas cylinder body 1 to fall, thereby preventing the gas cylinder body 1 from falling.

[0047] The tooling body 3 is composed of four right-angle connectors 5 and four detachable adjustable telescopic rods 4. On the one hand, the length and width of the tooling body 3 can be conveniently adjusted by adjusting the adjustable telescopic rods 4, so that it can be suitable for the anti-falling operation of gas cylinder bodies 1 of different sizes and different numbers of gas cylinder bodies 1, thereby improving applicability. In addition, the tooling body 3 is easy to install and disassemble, and is convenient for adjustment, carrying and maintenance.

Claims

1. Anti-falling tooling for temporary storage of gas cylinders, characterized in that: It includes a tooling body (3), and the tooling body (3) is a square-ring-shaped frame. Inside the tooling body (3), there are several adjacent gas cylinder bodies (1), and the tooling body (3) is sleeved outside the bottleneck collars (2) of all the gas cylinder bodies (1) inside. The tooling body (3) includes four right-angle connectors (5) and four detachable adjustable telescopic rods (4). Both right-angle ends of the right-angle connector (5) are provided with connecting parts. The two ends of the adjustable telescopic rod (4) are respectively detachably and fixedly matched with the connecting parts of the corresponding right-angle connectors (5). The four right-angle connectors (5) and the four adjustable telescopic rods (4) cooperate to form a square-ring-shaped frame. The right-angle connectors (5) serve as the right angles of the square-ring-shaped frame, and the adjustable telescopic rods (4) serve as the sides of the square-ring-shaped frame.

2. The anti-falling tool for temporary storage of gas cylinders according to claim 1 is characterized in that: The tooling body (3) is square, and at least four gas cylinder bodies (1) are sleeved inside. The four gas cylinder bodies (1) are arranged in a "field" shape.

3. The anti-falling tool for temporary storage of gas cylinders according to claim 2 is characterized in that: The tooling body (3) surrounds the bottleneck collars (2) of all the gas cylinder bodies (1) arranged inside the rings, and the tooling body (3) is always承接于 the upper parts of the bottle bodies of all the gas cylinder bodies (1) arranged inside the rings.

4. The anti-falling tool for temporary storage of gas cylinders according to any one of claims 1 to 3, characterized in that: Both ends of the adjustable telescopic rod (4) are respectively provided with a first threaded joint (406) and a second threaded joint (407). One side connecting part of the right-angle connector (5) is a first threaded port (501), and the first threaded port (501) corresponds to the first threaded joint (406) and forms a threaded fit. The other side connecting part of the right-angle connector (5) is a second threaded port (502), and the second threaded port (502) corresponds to the second threaded joint (407) and forms a threaded fit.

5. The anti-falling tool for temporary storage of gas cylinders according to claim 4 is characterized in that: The adjustable telescopic rod (4) includes an outer rod (401) and an inner rod (402). The outer rod (401) is of a hollow structure. One side of the outer rod (401) is provided with an opening, and the inner rod (402) is coaxially and movably embedded in the outer rod (401) along the axial direction from the opening. The other side of the outer rod (401) is sealed, and the first threaded joint (406) is coaxially arranged on the sealed end of the outer rod (401). The second threaded joint (407) is coaxially arranged on the end of the inner rod (402) away from the outer rod (401).

6. The anti-falling tool for temporary storage of gas cylinders according to claim 5, characterized in that: The outer rod (401) and the first threaded joint (406) are integrally formed, and the inner rod (402) and the second threaded joint (407) are integrally formed.

7. The anti-falling tool for temporary storage of gas cylinders according to claim 6, characterized in that: A pair of oppositely arranged limiting holes (403) are provided on the outer rod (401). The limiting holes (403) penetrate the outer rod (401) along the radial direction of the outer rod (401). A plurality of pairs of positioning holes (404) are provided on the inner rod (402) at equal intervals along the axial direction, and the axial directions of each pair of positioning holes (404) are the same. Each pair of positioning holes (404) penetrates the inner rod (402) along the radial direction of the inner rod (402).

8. The anti-falling tool for temporary storage of gas cylinders according to claim 7, characterized in that: When the inner rod (402) is embedded in the outer rod (401), one pair of positioning holes (404) is aligned and coincides with the limiting holes (403), and a fastening bolt (405) is detachably arranged in the coincided positioning holes (404) and limiting holes (403).

9. The anti-falling tool for temporary storage of gas cylinders according to claim 8, characterized in that: The radius of the positioning hole (404) is the same as the radius of the limiting hole (403).