Industrial gas cylinder unloading auxiliary device

By designing an auxiliary device for unloading industrial gas cylinders, using fixed magnets and buffer magnets to control the rolling speed of the cylinders and extending the vehicle legs to adjust the height, the safety risks and low efficiency of unloading industrial gas cylinders are solved, achieving safe and efficient cylinder handling.

CN224145959UActive Publication Date: 2026-04-21伊春鹿鸣矿业有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
伊春鹿鸣矿业有限公司
Filing Date
2025-05-14
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

In industrial production, the handling of industrial gas cylinders poses significant safety risks, is labor-intensive, and has low efficiency. Current technologies mainly rely on manual handling or simple trailers, leading to safety and efficiency issues.

Method used

Design an industrial gas cylinder unloading auxiliary device, including a truck head, a truck bed, a fixed magnet, telescopic legs, a tension spring, a triangular platform, bushings, and a buffer magnet. The fixed magnet is used to attach to the rear of the transport vehicle, the triangular platform and the buffer magnet control the rolling speed of the gas cylinder, and the telescopic legs adjust the height to achieve safe and efficient handling of the gas cylinder.

Benefits of technology

It effectively reduces the workload and difficulty for workers, improves work efficiency, and ensures the safety of gas cylinders and personnel. It is suitable for the management and operation of various industrial gas cylinders.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an industrial gas cylinder unloading auxiliary device, and belongs to the technical field of gas cylinder unloading. A fixed magnet is arranged on the front side of a vehicle head; the triangular platform is a frame type triangular prism composed of round pipes, a shaft sleeve parallel to the truck head is arranged at the bottom of the truck hopper, the two sides of one prism of the triangular platform extend and extend into the shaft sleeve, the side face, right opposite to the prism, of the triangular prism is flush with the top of the truck head, and an auxiliary round pipe aligned with the round pipe on the top face of the triangular platform is arranged at the top of the truck head. Buffer magnets are arranged on two sides of the top surface of the triangular platform; the rear side of the headstock is connected with the adjacent side surface of the triangular prism through a tension spring; wheels are fixed to the bottom of the auxiliary trolley through telescopic trolley legs. The device is easy to manufacture and low in cost; the application range is wide, and the device can be used for any industrial gas cylinder; according to the device, the waste of manpower can be greatly reduced; according to the device, the working intensity and difficulty of workers are reduced.
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Description

Technical Field

[0001] This utility model relates to the field of gas cylinder unloading, and in particular to an auxiliary device for unloading industrial gas cylinders. Background Technology

[0002] In my country's industrial production, handling industrial gas cylinders such as oxygen and acetylene cylinders is a very common task. However, this task carries significant safety risks, mainly due to the large number of personnel and complex environment at the work site, as well as the weight and special nature of the cylinders themselves, which can easily lead to accidents. Currently, this task is still accomplished using outdated methods such as manual lifting or simple trailers, resulting in high labor intensity, high risk, and low efficiency for workers. Therefore, to improve the safety and mobility of this work, while reducing the risk and increasing efficiency, we have designed a new type of safety device.

[0003] This utility model proposes an auxiliary device for unloading industrial gas cylinders, which has many advantages and innovations. It not only fundamentally avoids the safety risks of handling industrial gas cylinders and reduces the workload and difficulty of workers, but also manages and operates various industrial gas cylinders more effectively, greatly improving the work efficiency of workers. Utility Model Content

[0004] The main purpose of this utility model is to provide an auxiliary device for unloading industrial gas cylinders, which can effectively solve the problems in the background art.

[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0006] An auxiliary device for unloading industrial gas cylinders includes a truck head, a truck bed, a fixed magnet, telescopic legs, a tension spring, a triangular platform, bushings, and a buffer magnet.

[0007] The front of the vehicle is a cuboid, and the front and the cargo bed together form an auxiliary trolley. The sides of the cargo bed are inclined frames that slope downwards from the top of the front. A fixing magnet is installed on the front of the front. The triangular platform is a frame-type triangular prism made of round tubes. A bushing parallel to the front is installed at the bottom of the cargo bed. The two sides of one side edge of the triangular platform extend into the bushing, and the side of the triangular prism opposite to this side edge, i.e., the top surface of the triangular platform, is flush with the top of the front. An auxiliary round tube aligned with the round tube on the top surface of the triangular platform is installed on the top of the front. Buffer magnets are installed on the upper and lower sides of the top surface of the triangular platform. The rear of the front and the adjacent side of the triangular prism are connected by a tension spring. The wheels of the auxiliary trolley are fixed at the bottom by telescopic legs.

[0008] This utility model relates to an auxiliary device for unloading industrial gas cylinders, wherein the triangles on the upper and lower bases of the triangular prism of the triangular platform are equilateral triangles.

[0009] This utility model relates to an auxiliary device for unloading industrial gas cylinders, wherein the side edge length of the triangular platform is greater than the length of the industrial gas cylinder.

[0010] This utility model relates to an auxiliary device for unloading industrial gas cylinders, wherein the magnetic force of the buffer magnet is equal to two-thirds of the weight of the industrial gas cylinder.

[0011] This utility model relates to an auxiliary device for unloading industrial gas cylinders, wherein the width of the truck bed is greater than the length of the side edge of the triangular platform.

[0012] This utility model relates to an auxiliary device for unloading industrial gas cylinders, wherein four fixed magnets are symmetrically arranged on the front side of the vehicle.

[0013] This utility model relates to an auxiliary device for unloading industrial gas cylinders, wherein the wheels are industrial-grade swivel wheels.

[0014] This utility model relates to an auxiliary device for unloading industrial gas cylinders. The triangular platform is composed of hollow triangular prisms made of round tubes. The sides of the hollow triangular prisms are provided with round tubes parallel to the upper and lower bottom surfaces, and the round tubes on each side are connected to form a frame-type triangular prism.

[0015] Compared with the prior art, the present invention has the following beneficial effects:

[0016] This utility model discloses an auxiliary device for unloading industrial gas cylinders. It is simple to manufacture and low in cost. It has a wide range of applications and can be used for any industrial gas cylinder. This device can greatly reduce the waste of manpower. It can also ensure the safety of both industrial gas cylinders and workers, reduce the workload and difficulty of workers, and more effectively manage and operate various industrial gas cylinders, thus greatly improving the work efficiency of workers. Attached Figure Description

[0017] Figure 1 This is a side view of an industrial gas cylinder unloading auxiliary device according to the present invention.

[0018] Figure 2 This is a side top view of an industrial gas cylinder unloading auxiliary device according to the present invention.

[0019] Figure 3 This is a side view of the triangular platform rotating in an industrial gas cylinder unloading auxiliary device according to this utility model.

[0020] In the diagram: 1 is the front of the vehicle; 2 is the cargo bed; 3 is the fixed magnet; 4 is the telescopic legs; 5 is the tension spring; 6 is the triangular platform; 7 is the bushing; and 8 is the buffer magnet. Detailed Implementation

[0021] 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 embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0022] Example 1

[0023] Example 1: As Figure 1-3 As shown, an industrial gas cylinder unloading auxiliary device includes a truck head, a truck bed, a fixed magnet, telescopic legs, a tension spring, a triangular platform, bushings, and a buffer magnet.

[0024] The front of the vehicle is rectangular and is used to connect and secure it to the transport vehicle.

[0025] The cab and the cargo bed form an auxiliary trolley. The sides of the cargo bed are inclined frames that slope downwards from the top of the cab. A fixing magnet is installed on the front of the cab. The auxiliary trolley moves to the rear of the transport vehicle via the fixing magnet, and the inclined frames on both sides of the cargo bed provide protection.

[0026] The triangular platform is a frame-type triangular prism made of round tubes. The bottom of the truck bed is equipped with a bushing parallel to the front of the truck. The two sides of one of the prisms of the triangular platform extend into the bushing, and the side of the triangular prism facing the platform is flush with the top of the front of the truck. The triangular platform is made of round steel tubes. The gas cylinder rolls on the round tubes. When the gas cylinder exceeds the center line of the top surface of the triangular platform, the triangular platform tilts the gas cylinder to the rear.

[0027] The top of the vehicle's front end is equipped with an auxiliary round tube that aligns with the round tube on the top surface of the triangular platform. The auxiliary round tube is aligned with the round tube on the triangular platform to assist in the rolling of the gas cylinder.

[0028] Buffer magnets are installed on both sides of the top surface of the triangular platform to slow down the rolling speed of the gas cylinder on the triangular platform.

[0029] The rear side of the front of the vehicle and the adjacent triangular prism side are connected by a tension spring. The tension spring controls the distance between the rear side of the front of the vehicle and the triangular platform. When the triangular platform tilts to the rear and the gas cylinder detaches from the triangular platform, the tension spring will reset the triangular platform.

[0030] The wheels of the auxiliary trolley are fixed at the bottom by telescopic legs. The telescopic legs can control the height of the auxiliary trolley, making it suitable for transport vehicles of different heights.

[0031] This utility model relates to an auxiliary device for unloading industrial gas cylinders, wherein the triangles on the upper and lower bases of the triangular prism of the triangular platform are equilateral triangles.

[0032] This utility model discloses an auxiliary device for unloading industrial gas cylinders, wherein the length of the prism on the top surface of the triangular platform is greater than the length of the industrial gas cylinder. The industrial gas cylinder rolls on the triangular platform, and with the assistance of buffer magnets on both sides of the platform, the dimensions of the triangular platform need to be slightly larger than the dimensions of the industrial gas cylinder.

[0033] This utility model discloses an auxiliary device for unloading industrial gas cylinders. The magnetic force of the buffer magnet is equal to two-thirds of the weight of the industrial gas cylinder. The purpose of the buffer magnet is to slow down the rolling speed of the industrial gas cylinder and prevent it from rolling too fast. Therefore, the fact that the magnetic force of the buffer magnet is equal to two-thirds of the weight of the industrial gas cylinder ensures that the rolling speed of the industrial gas cylinder is controlled.

[0034] This utility model relates to an auxiliary device for unloading industrial gas cylinders, wherein the width of the truck bed is greater than the length of the prism of the triangular platform. Because bushings are provided on both sides of the bottom of the truck bed, and the extended portion of the prism is inserted into the bushings, the width of the truck bed will definitely be greater than the length of the prism of the triangular platform.

[0035] This utility model discloses an auxiliary device for unloading industrial gas cylinders, wherein four fixed magnets are symmetrically arranged on the front side of the vehicle. The fixed magnets on the front side of the vehicle are attached to the rear of the transport vehicle, ensuring that the front of the auxiliary device and the rear of the transport vehicle are attached together by the fixed magnets.

[0036] This utility model relates to an auxiliary device for unloading industrial gas cylinders, wherein the wheels are industrial-grade swivel wheels.

[0037] Example 2: Figure 1-3As shown, an industrial gas cylinder unloading auxiliary device is used as follows: An auxiliary trolley is welded from ordinary steel, and a triangular platform is fabricated from steel. A tension spring is installed between the auxiliary trolley and the triangular platform to control the tilting speed. When the triangular platform tilts to the rear of the auxiliary trolley, the tension spring pulls the platform back to its initial position. Buffer magnets are installed on both sides of the triangular platform to control the rolling speed of the gas cylinder. Bushings are installed at both ends of one prism of the triangular platform, and a shaft (i.e., extending the prism) connects the bushings, fixing the two ends of the prism to the sides of the center of the truck bed, allowing the triangular platform to rotate around the fixed prism. Buffer magnets are embedded on both sides of the triangular platform surface to slow the gas cylinder's forward and downward rolling speed. In use, the height of the auxiliary trolley is adjusted by telescopic outriggers until the top of the trolley's front is level with the bottom of the truck bed. The trolley is then placed against the rear truck bed, and the four fixed magnets on the trolley automatically attach to the truck bed, stabilizing the trolley. Then the industrial gas cylinder rolls from the transport vehicle onto the triangular platform. When the gas cylinder rolls past the center line of the triangular platform, the gas cylinder's own weight presses the triangular platform to tilt towards the rear of the truck bed. Due to the tension spring, the tilt angle of the triangular platform will not be too large. The triangular platform gradually tilts forward and downward. Under the attraction of the buffer magnets on both sides of the triangular platform, the gas cylinder slowly rolls to the ground. Then, the triangular platform automatically returns to its original state by the action of the tension spring.

[0038] When moving gas cylinders, workers push the flattened cylinders on the transport vehicle. Under the force, the cylinders roll from the transport vehicle to the front of the auxiliary trolley and the triangular platform. When the cylinders roll onto the triangular platform, their rolling speed slows down under the action of buffer magnets. When the cylinders have rolled more than half the distance of the triangular platform (because the cylinders are pushed at the rear of the transport vehicle and the distance at the front is limited, each cylinder will roll to the rear half of the triangular platform), the triangular platform tilts towards the rear of the auxiliary trolley. Under the action of the cylinder's gravity and the magnetic force of the buffer magnets, the cylinders, after tilting at a certain angle with the triangular platform, detach from the platform and fall under the action of gravity. At this time, the distance between the cylinder and the ground is much smaller than the distance between the bottom of the transport vehicle's cargo bed and the ground. Buffer foam can be placed on the ground. Then, the triangular platform returns to its original position under the action of a tension spring, and the unloading process for the next cylinder is repeated.

[0039] After this invention was implemented in the actual work of handling industrial gas cylinders, it not only fundamentally avoided the safety risks of handling industrial gas cylinders and reduced the labor intensity and difficulty for workers, but also more effectively managed and operated various industrial gas cylinders, greatly improving the work efficiency of workers.

[0040] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. An industrial cylinder unloading assist device, characterized by: The industrial gas cylinder unloading auxiliary device includes a truck head (1), a truck bed (2), a fixed magnet (3), telescopic legs (4), a tension spring (5), a triangular platform (6), a bushing (7), and a buffer magnet (8). The front of the vehicle (1) is a cuboid. The front of the vehicle (1) and the cargo box (2) form an auxiliary vehicle. The two sides of the cargo box (2) are inclined frames, and the inclined frames start to slope downward from the top of the front of the vehicle (1). A fixed magnet (3) is provided on the front side of the front of the vehicle (1). The triangular platform (6) is a frame-type triangular prism composed of round tubes. A bushing (7) parallel to the front of the vehicle (1) is provided at the bottom of the cargo box (2). The two sides of one side edge of the triangular platform (6) extend into the bushing (7), and the side of the triangular prism facing the side edge, i.e. the top surface of the triangular platform (6), is flush with the top of the front of the vehicle (1). An auxiliary round tube aligned with the round tube on the top surface of the triangular platform (6) is provided at the top of the front of the vehicle (1). Buffer magnets (8) are provided on the upper and lower sides of the top surface of the triangular platform (6). The rear side of the front of the vehicle (1) and the adjacent side of the triangular prism are connected by a tension spring (5). The wheels of the auxiliary vehicle are fixed at the bottom by telescopic legs (4).

2. The industrial cylinder unloading assist device of claim 1, wherein, The triangles on the upper and lower bases of the triangular platform (6) are equilateral triangles.

3. The industrial cylinder unloading assist device of claim 1, wherein, The length of the side edge of the triangular platform (6) is greater than the length of the industrial gas cylinder.

4. The industrial cylinder unloading assist device of claim 1, wherein, The magnetic force of the buffer magnet (8) is equal to two-thirds of the weight of the industrial gas cylinder.

5. The industrial cylinder unloading assist device of claim 1, wherein, The width of the truck bed (2) is greater than the length of the side edge of the triangular platform (6).

6. The industrial cylinder unloading assist device of claim 1, wherein, Four fixed magnets (3) are symmetrically arranged on the front side of the vehicle head (1).

7. The industrial cylinder unloading assist device of claim 1, wherein, The wheels are industrial-grade casters.

8. The industrial gas cylinder unloading auxiliary device according to claim 1, characterized in that, The triangular platform (6) is composed of round tubes forming a hollow triangular prism. The sides of the hollow triangular prism are provided with round tubes parallel to the upper and lower bottom surfaces, and the round tubes on each side are connected to form a frame-type triangular prism.