Telescopic anti-splashing pipe for gas station

By designing telescopic splash-proof pipes, the problem of difficulty in adjusting and storage of traditional splash-proof pipes is solved, and the refueling containers flexibly adapted to different heights is achieved, which improves refueling efficiency and safety.

CN222989782UActive Publication Date: 2025-06-17郭江龙
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Patent Information

Application Number
CN202422315426.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-06-17
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

The traditional splash-proof pipe is designed to be fixed, unable to adjust, difficult to adapt to refueling containers of different sizes and heights, and difficult to store and clean, which poses a potential risk of electrostatic fire.

Method used

A telescopic anti-spray tube is designed, including No. 1, No. 2 and end telescopic tubes. Multi-stage telescopic adjustment is achieved through limiting snap rings and snaps. It is equipped with anti-static ropes and through holes, and handles and fixing ropes are easy to operate.

Benefits of technology

It realizes a telescopic design that is easy to store and clean, has strong applicability, can flexibly adapt to refueling containers of different heights, improves refueling efficiency and safety, and reduces the risk of electrostatic fire.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222989782U_ABST
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Abstract

The utility model discloses a telescopic anti-splashing pipe for a gas station, the anti-splashing pipe comprises a first telescopic pipe, a second telescopic pipe and a tail end telescopic pipe which are mutually sleeved from top to bottom, the inner diameter of the first telescopic pipe is matched with the outer diameter of the second telescopic pipe, and the tail end of the first telescopic pipe is provided with an integrally connected limiting snap ring; the top end of the second telescopic pipe is provided with a limiting buckle connected with the limiting clamping ring in a matched and clamped mode. The inner diameter of the second telescopic pipe is matched with the outer diameter of the tail end telescopic pipe, the tail end of the second telescopic pipe is provided with a limiting clamping ring which is integrally connected, and the top end of the tail end telescopic pipe is provided with a limiting buckle which is clamped with the limiting clamping ring in a matched mode. A fixedly-connected connecting sleeve is arranged at the top end of the first telescopic pipe, and a fixing rope is arranged on the connecting sleeve; an anti-static rope is fixedly connected to the top of the tail end telescopic pipe, and the other end of the anti-static rope sequentially penetrates through the second telescopic pipe and the first telescopic pipe and protrudes out of the first telescopic pipe.
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Description

Technical Field

[0001] The utility model relates to refueling auxiliary equipment, in particular to a telescopic anti-splash pipe for gas stations. Background Art

[0002] In the daily operation of gas stations, refueling large barrels and containers is a common and important service. However, the use of traditional anti-splash pipes in this process faces many challenges.

[0003] Firstly, the design of traditional anti-splash pipes is often relatively fixed, with non-adjustable length, which brings great limitations in practical applications. Oil barrels and refueling containers of different sizes have different heights, and anti-splash pipes with fixed lengths are difficult to meet the requirements in different scenarios. If the pipeline is too long, not only is it inconvenient to operate, but it is also easy to cause oil spillage or leakage during refueling, increasing safety risks; if the pipeline is too short, it may not be able to reach the bottom of the oil barrel, resulting in low refueling efficiency. Moreover, when using existing fuel dispensers to refuel large containers, there is also a hidden danger of static electricity causing fire accidents during refueling.

[0004] Secondly, the storage and cleaning of traditional anti-splash pipes are also a problem. Due to the long pipe body and difficult to store, these pipes often occupy a large position in the storage space of gas stations, which is not conducive to saving space. At the same time, being exposed to the air for a long time, the anti-splash pipes are easy to be contaminated with dust and dirt, which not only affects the appearance but also may have a potential impact on the quality of oil products. During the cleaning process, due to the long pipe body and complex structure, the cleaning difficulty is large, increasing the maintenance cost.

[0005] In addition, the carriage design of some large-barrel oil vehicles purchasing diesel is limited, and the top space is small. Traditional anti-splash pipes are often difficult to be placed in the carriage for use, restricting their scope of application. This not only brings inconvenience to the refueling work but also may lead to dissatisfaction of customers with the gas station service.

[0006] In view of the above problems, although some improved anti-splash pipes have emerged on the market, most of them still fail to fundamentally solve the above problems. Therefore, it is particularly important to develop a telescopic anti-splash refueling pipe that is both safe and convenient, easy to store and clean, and can flexibly adapt to the heights of different refueling containers. Content of the Utility Model

[0007] The technical problem to be solved by the utility model is to overcome the above-mentioned technical defects and provide a telescopic anti-splash pipe for gas stations.

[0008] To solve the above technical problems, the technical solution provided by the present utility model is a telescopic anti-splash pipe for a gas station. The anti-splash pipe includes a first telescopic pipe, a second telescopic pipe, and a terminal telescopic pipe that are sleeved with each other from top to bottom. The inner diameter of the first telescopic pipe matches the outer diameter of the second telescopic pipe. A limit snap ring is integrally connected to the tail end of the first telescopic pipe, and a limit buckle that cooperates with and is snap-connected to the limit snap ring is provided at the top end of the second telescopic pipe;

[0009] The inner diameter of the second telescopic pipe matches the outer diameter of the terminal telescopic pipe. A limit snap ring is integrally connected to the tail end of the second telescopic pipe, and a limit buckle that cooperates with and is snap-connected to the limit snap ring is provided at the top end of the terminal telescopic pipe;

[0010] A connecting sleeve is fixedly connected to the top end of the first telescopic pipe, and a fixing rope is provided on the connecting sleeve;

[0011] An anti-static rope is fixedly connected to the top of the terminal telescopic pipe. The other end of the anti-static rope passes through the second telescopic pipe and the first telescopic pipe in sequence and protrudes from the first telescopic pipe;

[0012] A plurality of through holes are respectively formed in the first telescopic pipe, the second telescopic pipe, and the terminal telescopic pipe.

[0013] Further, handles are fixedly connected to the left and right ends of the connecting sleeve respectively.

[0014] Further, both ends of the fixing rope are fixedly connected to the connecting sleeve.

[0015] Further, an oil outlet is provided at the tail end of the pipe body of the terminal telescopic pipe, and the oil outlet is a bevel opening.

[0016] The advantages of the present utility model compared with the prior art are as follows:

[0017] 1) It is convenient for storage and cleaning: The telescopic design enables the fuel pipe to be contracted to a shorter length when not in use, facilitating storage and cleaning.

[0018] 2) Strong applicability: The multi-stage telescopic adjustment function can flexibly adapt to fuel containers of different heights, improving fueling efficiency and applicability.

[0019] 3) High safety performance: The anti-static rope and through hole design effectively prevent the accumulation of static electricity and oil and gas, reducing safety risks; preventing static electricity generated by splash fueling of large containers from causing fire accidents.

[0020] 4) Convenient operation: The handle and fixing rope design make the fueling process more stable and convenient. Brief Description of the Drawings

[0021] Figure 1 is a structural schematic diagram of a telescopic anti-splash pipe for a gas station of the present utility modelFigure 1 ;

[0022] Figure 2 is a structural schematic diagram of a telescopic anti - splash pipe for a gas station of the present utility model Figure 2 ;

[0023] Figure 3 is a cross - sectional view of a telescopic anti - splash pipe for a gas station of the present utility model;

[0024] Figure 4 is of a telescopic anti - splash pipe for a gas station of the present utility model Figure 3 enlarged view of part A

[0025] As shown in the figure: 1. First telescopic pipe, 2. Second telescopic pipe, 3. Connecting sleeve, 4. Fixed rope, 5. Anti - static rope, 6. Through - hole, 7. Handle, 8. Limit buckle, 9. Limit snap ring, 10. End telescopic pipe. Specific embodiments

[0026] The following further details the telescopic anti - splash pipe for a gas station of the present utility model with reference to the accompanying drawings.

[0027] With reference to the accompanying drawings, for a telescopic anti - splash pipe for a gas station, the anti - splash pipe includes a first telescopic pipe 1, a second telescopic pipe 2, and an end telescopic pipe 10 that are sleeved on each other from top to bottom. The inner diameter of the first telescopic pipe 1 matches the outer diameter of the second telescopic pipe 2. A limit snap ring 9 is integrally connected to the tail end of the first telescopic pipe 1, and a limit buckle 8 that cooperates with and is snap - connected to the limit snap ring 9 is provided at the top end of the second telescopic pipe 2;

[0028] The inner diameter of the second telescopic pipe 2 matches the outer diameter of the end telescopic pipe 10. A limit snap ring 9 is integrally connected to the tail end of the second telescopic pipe 2, and a limit buckle 8 that cooperates with and is snap - connected to the limit snap ring 9 is provided at the top end of the end telescopic pipe 10;

[0029] A connecting sleeve 3 is fixedly connected to the top end of the first telescopic pipe 1, and a fixed rope 4 is provided on the connecting sleeve 3;

[0030] An anti - static rope 5 is fixedly connected to the top of the end telescopic pipe 10. The other end of the anti - static rope 5 passes through the second telescopic pipe 2 and the first telescopic pipe 1 in sequence and protrudes from the first telescopic pipe 1;

[0031] A plurality of through - holes 6 are respectively formed on the first telescopic pipe 1, the second telescopic pipe 2, and the end telescopic pipe 10.

[0032] Preferably, as an embodiment of this example, handles 7 are fixedly connected to the left and right ends of the connecting sleeve 3 respectively.

[0033] Preferably, in this embodiment, both ends of the fixing rope 4 are fixedly connected to the connecting sleeve 3.

[0034] Preferably, in this embodiment, an oil outlet is provided at the tail end of the pipe body of the end telescopic pipe 10, and the oil outlet is an inclined opening.

[0035] When the present utility model is specifically implemented, first, the telescopic anti-splash pipe is placed into an oil filling container, and then the fuel dispenser nozzle is inserted into the telescopic anti-splash pipe. The telescopic lengths of the first telescopic pipe 1, the second telescopic pipe 2, and the end telescopic pipe 10 are adjusted according to actual needs until an appropriate length is reached. It is fixed by sleeving the fixing rope 4 on the handle of the fuel dispenser nozzle, and then the fuel dispenser nozzle is controlled to start filling the oil product.

[0036] The design of the anti-static rope 5 and the through hole 6 effectively prevents the accumulation of static electricity and oil and gas, reducing the safety risk.

[0037] Handles 7 are respectively installed on the left and right sides of the connecting sleeve 3 to facilitate the operator to hold and operate the fuel pipe.

[0038] The above describes the present utility model and its implementation manners. Such description is not restrictive. What is shown in the drawings is only one of the implementation manners of the present utility model, and the actual structure is not limited thereto. Generally speaking, if those of ordinary skill in the art are inspired by it and without departing from the creative concept of the present utility model, structures and embodiments similar to this technical solution are designed without creative efforts, and they should all fall within the protection scope of the present utility model.

Claims

1. A telescopic splash-proof pipe for a gas station, characterized in that: The anti-splashing pipe comprises a first telescopic pipe (1), a second telescopic pipe (2), and a terminal telescopic pipe (10) which are mutually sleeved from top to bottom, the inner diameter of the first telescopic pipe (1) matches the outer diameter of the second telescopic pipe (2), the tail end of the first telescopic pipe (1) is provided with an integrally connected limiting clamp (9), and the top end of the second telescopic pipe (2) is provided with a limiting buckle (8) which is matched and clamped with the limiting clamp (9); The inner diameter of the second telescopic tube (2) matches the outer diameter of the terminal telescopic tube (10); the tail end of the second telescopic tube (2) is provided with an integrally connected limiting clamp ring (9); the top end of the terminal telescopic tube (10) is provided with a limiting buckle (8) that cooperates with the limiting clamp ring (9) for clamping; A fixed connection sleeve (3) is provided at the top end of the first telescopic tube (1), and a fixing rope (4) is provided on the connection sleeve (3); The top of the terminal telescopic tube (10) is provided with a fixed anti-static rope (5), and the other end of the anti-static rope (5) passes through the second telescopic tube (2) and the first telescopic tube (1) in sequence, and protrudes from the first telescopic tube (1); The first telescopic tube (1), the second telescopic tube (2) and the terminal telescopic tube (10) are respectively provided with a plurality of through holes (6).

2. A telescopic anti-splash pipe for a gas station according to claim 1, characterized in that: The left and right ends of the connecting sleeve (3) are respectively provided with fixed handles (7).

3. The telescopic anti-splash pipe for a gas station according to claim 1, characterized in that: Both ends of the fixing rope (4) are fixedly connected to the connecting sleeve (3) respectively.

4. The telescopic anti-splash pipe for a gas station according to claim 1, characterized in that: The tail end of the tube body of the terminal telescopic tube (10) is provided with an oil outlet, and the oil outlet is an inclined opening.