A transfer assisting device suitable for a gas cylinder

By designing an auxiliary device for transferring gas cylinders, and utilizing a combination of the top cylinder section and the clamping section, the safety hazards and low efficiency problems in the gas cylinder transfer process were solved, achieving the effects of reducing labor intensity and improving transfer efficiency.

CN224676156UActive Publication Date: 2026-08-25河北天越激光再制造科技有限公司
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Patent Information

Application Number
CN202522053869.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-24
Publication Date
2026-08-25
Estimated Expiration
2035-09-24

AI Technical Summary

Technical Problem

Gas cylinders present safety hazards, high labor intensity, and low transfer efficiency during transportation, especially due to their large weight, susceptibility to shaking, and limited number that can be transferred at one time.

Method used

A transfer auxiliary device was designed, comprising a long beam, a connecting plate, a battery, a top cylinder section, and a clamping section. The top cylinder section lifts the gas cylinder, and the clamping section secures the gas cylinder, ensuring that the gas cylinder does not shake during transportation and enabling the simultaneous transport of multiple gas cylinders.

Benefits of technology

It reduced the labor intensity of staff, improved the efficiency and safety of gas cylinder transfer, and increased the number of disposable transferable gas cylinders.

✦ Generated by Eureka AI based on patent content.

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Abstract

A kind of transfer auxiliary device suitable for gas cylinder, including long beam, connecting plate, battery, bottle part and clamping part;The number of long beam is two, and its end is respectively connected with the two ends of connecting plate, and the combination of long beam and connecting plate is U-shaped;The bottom end surface of long beam is provided with universal wheel at both ends;The battery is set on connecting plate, and handle is also provided on connecting plate;The number of bottle part is two, and it is respectively set on the outer side wall of two long beams;The number of clamping part is multiple, and it is set on the top end surface of long beam along the length direction of long beam.The utility model improves the transfer efficiency of gas cylinder, reduces the labor intensity of staff.
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Description

Technical Field

[0001] This utility model relates to a transfer device, and more particularly to a device that can assist workers in transporting gas cylinders, belonging to the technical field of gas cylinder transfer auxiliary equipment. Background Technology

[0002] The safety inspection procedures for gas cylinders require them to be placed upright. When transferring gas cylinders, workers must move them onto flatbed carts. This process has several drawbacks. First, the weight of the gas cylinders poses safety hazards and is physically demanding during handling. Second, the cylinders are prone to swaying during transport, potentially leading to tipping. Furthermore, to ensure smooth transfer, workers must manually support the cylinders, limiting the number of cylinders that can be transferred at once and impacting efficiency. Therefore, a device is needed to assist workers in transferring gas cylinders, thereby reducing workload and improving efficiency. Utility Model Content

[0003] The purpose of this invention is to overcome the shortcomings of the prior art and provide a transfer auxiliary device suitable for gas cylinders, which can not only reduce the labor intensity of workers, but also improve the transfer efficiency of gas cylinders.

[0004] The problem described in this utility model is solved by the following technical solution: A transfer auxiliary device for gas cylinders includes a long beam, a connecting plate, a battery, a top cylinder section, and a clamping section. There are two long beams, each connected at one end to both ends of the connecting plate, forming a U-shape. Universal wheels are provided at both ends of the bottom surface of each long beam. The battery is mounted on the connecting plate, which also has a handle. There are two top cylinder sections, each mounted on the outer side wall of one of the two long beams. Multiple clamping sections are arranged along the length of the long beams on their top surfaces.

[0005] The above-described auxiliary device for transferring gas cylinders includes a top-mounted cylinder mechanism comprising a slide rail, a slider, a plumb bob, a screw, a turntable, and a top-mounted cylinder mechanism. The slide rail is disposed on the outer side wall of the long beam along its length. One end of the slider has a groove, which slides along the slide rail of the long beam. The end of the slider away from the long beam has a vertical hole, the upper half of which is a threaded hole and the lower half of which is a square hole. The screw passes through the threaded hole of the slider, and a turntable is disposed at the top of the screw. The plumb bob slides within the square hole in the lower half of the vertical hole of the slider. A bearing is disposed at the top of the plumb bob, with the outer ring of the bearing connected to the top surface of the plumb bob, and the inner wall of the inner ring of the bearing connected to the bottom end of the screw. The top-mounted cylinder mechanism is disposed on the bottom surface of the plumb bob.

[0006] The above-described auxiliary device for transferring gas cylinders includes a cylinder-topping mechanism comprising a crossbar, a triangular insert, a guide rod, and a first electric cylinder. The center of the top surface of the crossbar is connected to the bottom surface of the vertical column. The length direction of the crossbar is parallel to the length direction of the long beam. The top surface of the triangular insert is inclined, its bottom surface is horizontal, and its end surface away from the long beam is vertical, and this vertical surface is connected to the end of the guide rod. A guide hole is provided on the crossbar, and the guide rod passes through the guide hole of the crossbar. The first electric cylinder is located on the end surface of the crossbar away from the triangular insert, and its piston rod passes through the center hole of the crossbar and is connected to the vertical surface of the triangular insert. The axis of the piston rod of the first electric cylinder is parallel to the length direction of the guide rod. The power output terminal of the battery is connected to the power input terminal of the first electric cylinder via a wire.

[0007] The aforementioned auxiliary device for transferring gas cylinders includes a clamping section comprising two clamping mechanisms, which are respectively and oppositely arranged on the top surfaces of the long beams on both sides. Each clamping mechanism includes a vertical plate, a guide plate, a second electric cylinder, and a long arc plate. The vertical plate is located on the top surface of the long beam, and both its top and bottom ends are provided with horizontal guide holes, with guide plates passing through each of the two horizontal guide holes. The second electric cylinder is located at the center of the outer wall of the vertical plate, and the end of its piston rod passes through the central through hole of the vertical plate. The outer wall of the long arc plate is connected to the end of the guide plate, and the center of the outer wall of the long arc plate is connected to the end of the piston rod of the second electric cylinder. A rubber pad is provided on the inner wall of the long arc plate. The power input terminal of the second electric cylinder is connected to the power output terminal of the battery via a wire.

[0008] This invention lifts the gas cylinder by raising its top part, so that its bottom is off the ground; then, the clamping part clamps the gas cylinder, thereby ensuring that the gas cylinder does not shake during transportation and ensuring transportation safety; and the setting of long beams on both sides allows multiple gas cylinders to be placed between the two long beams, so that multiple clamping parts on the long beams on both sides can clamp and transport multiple gas cylinders, improving the transfer efficiency of gas cylinders. Attached Figure Description

[0009] Figure 1 This is a schematic diagram of the first three-dimensional structure of the present invention; Figure 2 This is a schematic diagram of the second three-dimensional structure of the present invention.

[0010] The list of labels in the diagram is as follows: 1. Long beam, 2. Connecting plate, 3. Battery, 4. Slide rail, 5. Slider, 6. Vertical column, 7. Turntable, 8. Crossbar, 9. Triangular insert plate, 10. Guide rod, 11. First electric cylinder, 12. Vertical plate, 13. Guide plate, 14. Second electric cylinder, 15. Long arc plate. Detailed Implementation

[0011] See Figure 1 and Figure 2 This utility model includes a long beam 1, a connecting plate 2, a storage battery 3, a top bottle section, and a clamping section. There are two long beams 1, each connected at one end to both ends of the connecting plate 2. The combination of the long beams 1 and the connecting plate 2 forms a U-shape. Gas cylinders can pass between the two long beams 1 and move into the corresponding clamping section. The long beams 1 are relatively long, allowing multiple gas cylinders to be accommodated between them. Universal wheels are provided at both ends of the bottom surface of each long beam 1. The storage battery 3 is mounted on the connecting plate 2, which also has a handle. Workers use the handle to push the device forward. The storage battery provides power to the electric cylinder within the device. There are two top bottle sections, each located on the outer side wall of one of the two long beams 1. The top bottle section lifts the gas cylinder, detaching it from the ground. There are multiple clamping sections, arranged along the length of the long beams 1 on their top surfaces. After the top bottle section lifts the gas cylinder, the clamping section holds it, preventing it from touching the ground and facilitating its transfer.

[0012] The top cylinder section includes a slide rail 4, a slider 5, a plumb bob 6, a screw, a turntable 7, and a top cylinder mechanism. The slide rail 4 is arranged on the outer wall of the long beam 1 along its length. One end of the slider 5 is provided with a groove, and the groove of the slider 5 is slidably disposed on the slide rail 4 of the long beam 1. The slider 5 can slide on the slide rail 4 on the side wall of the long beam 1, thereby adjusting the position of the top cylinder section so that it can be moved in front of the gas cylinder for lifting operations. The end of the slider 5 away from the long beam 1 is provided with a vertical hole, the upper half of which is a threaded hole. The lower half of the slide block 5 has a square hole, through which the screw passes. A turntable 7 is installed at the top of the screw. Manually rotating the turntable will drive the screw to rotate. The rotating screw rises and falls within the threaded hole, thereby driving the vertical column to rise and fall synchronously. The vertical column 6 is slidably installed in the square hole of the lower half of the vertical hole of the slide block 5. A bearing is installed at the top of the vertical column 6, and the outer ring of the bearing is connected to the top surface of the vertical column 6. The inner wall of the inner ring of the bearing is connected to the bottom end of the screw. The bottle-topping mechanism is installed on the bottom surface of the vertical column 6. The rise and fall of the vertical column drives the bottle-topping mechanism to rise and fall synchronously.

[0013] The cylinder-lifting mechanism includes a crossbar 8, a triangular insert plate 9, a guide rod 10, and a first electric cylinder 11; the center of the top surface of the crossbar 8 is connected to the bottom surface of the vertical column 6; the length direction of the crossbar 8 is parallel to the length direction of the long beam 1; the top surface of the triangular insert plate 9 is an inclined plane, its bottom surface is a horizontal plane, and its end surface away from the long beam 1 is a vertical plane, and this vertical plane is connected to the end of the guide rod 10; the function of the guide rod 10 is to ensure that the triangular insert plate 9 can reliably move forward or backward; by the mutual approach of the triangular insert plates 9 on both sides, the slope at its front end scoops up the gas cylinder, thereby raising the gas cylinder; the crossbar 8... A guide hole is provided on the rod 8, and the guide rod 10 passes through the guide hole of the crossbar 8; the first electric cylinder 11 is located on the end face of the crossbar 8 away from the triangular insert 9, and its piston rod passes through the central hole of the crossbar 8 and connects to the vertical plane of the triangular insert 9. The axis of the piston rod of the first electric cylinder 11 is parallel to the length direction of the guide rod 10; the function of the first electric cylinder 11 is to push the two triangular inserts 9 closer to each other and to lift the gas cylinder so that it is off the ground; the power output terminal of the storage battery 3 is connected to the power input terminal of the first electric cylinder 11 through a wire; the storage battery supplies power to the first electric cylinder 11 to ensure its normal operation.

[0014] The clamping part includes two clamping mechanisms, which are respectively and oppositely arranged on the top surfaces of the long beams 1 on both sides; the clamping mechanisms on both sides cooperate to clamp the gas cylinder; the clamping mechanism includes a vertical plate 12, a guide plate 13, a second electric cylinder 14, and a long arc plate 15; the vertical plate 12 is arranged on the top surface of the long beam 1, and both its top and bottom ends are provided with horizontal guide holes, and the guide plate 13 passes through both horizontal guide holes; the second electric cylinder 14 is located at the center of the outer wall of the vertical plate 12, and the end of its piston rod passes through the central through hole of the vertical plate 12; the outer wall of the long arc plate 15 is connected to the end of the guide plate 13. The outer center of the long arc plate 15 is connected to the end of the piston rod of the second electric cylinder 14; the guide plate 13 provides guidance for the long arc plate 15, and the second electric cylinder 14 drives the long arc plate 15 to move back and forth; ensuring that the long arc plates 15 on both sides can clamp the gas cylinder; a rubber pad is provided on the inner wall of the long arc plate 15; the rubber pad ensures that the long arc plate 15 can better clamp the gas cylinder and ensure that the gas cylinder can be transported reliably; the power input terminal of the second electric cylinder 14 is connected to the power output terminal of the storage battery 3 through a wire; the storage battery provides power to the second electric cylinder 14 to ensure that it can operate normally.

[0015] Operating principle: When it is necessary to transfer the gas cylinder, push this device to move it in front of the first gas cylinder, and then push the device so that the first gas cylinder enters between the two long beams 1, and the gas cylinder is located in the clamping part closest to the connecting plate 2. The clamping part closest to the connecting plate 2 is the first clamping part. Then slide the slider 5 to adjust the position of the triangular insert 9 so that the first gas cylinder is located between the two triangular inserts 9. Then rotate the turntable 7 to adjust the height of the triangular insert 9 so that its bottom surface touches the ground. The operator holds the gas cylinder and then starts the first electric cylinder 11 to push the triangular inserts 9 on both sides closer together and scoop up the first gas cylinder. If the scooping process is not smooth, the operator only needs to shake the gas cylinder slightly. After the gas cylinder is raised, the second electric cylinder 14 is activated to move the long arc plates 15 on both sides closer together to clamp the gas cylinder. After the long arc plates on both sides clamp the gas cylinder, the first electric cylinder drives the triangular insert plate 9 to reset. Then, the device is moved to the front of the second gas cylinder and its position is adjusted so that the second gas cylinder moves into the second clamping part. The above actions are repeated to raise the gas cylinder and clamp it. The above actions are repeated until all clamping parts clamp the gas cylinder. Then, the gas cylinder is transferred. After arriving at the unloading point, the gas cylinder furthest from the connecting plate 2 is held by hand, and the second electric cylinders on both sides are controlled to reset to release the clamping of the gas cylinder. Then, the gas cylinder is slowly lowered. This process is repeated until all the gas cylinders are lowered. The gas cylinder transfer operation is now complete.

Claims

1. A transfer auxiliary device suitable for gas cylinders, characterized in that: It includes a long beam (1), a connecting plate (2), a storage battery (3), a top bottle part, and a clamping part; there are two long beams (1), and their ends are respectively connected to the two ends of the connecting plate (2), and the combination of the long beam (1) and the connecting plate (2) is U-shaped; both ends of the bottom surface of the long beam (1) are provided with casters; the storage battery (3) is set on the connecting plate (2), and the connecting plate (2) is also provided with a handle; there are two top bottle parts, and they are respectively set on the outer side walls of the two long beams (1); there are multiple clamping parts, and they are set on the top surface of the long beam (1) along the length direction of the long beam (1).

2. The auxiliary device for transferring gas cylinders according to claim 1, characterized in that: The top bottle part includes a slide rail (4), a slider (5), a vertical column (6), a screw, a turntable (7), and a top bottle mechanism; the slide rail (4) is arranged on the outer wall of the long beam (1) along the length direction of the long beam (1); one end of the slider (5) is provided with a groove, and the groove of the slider (5) is slidably arranged on the slide rail (4) of the long beam (1); the end of the slider (5) away from the long beam (1) is provided with a vertical hole, the upper half of the hole is a threaded hole, the lower half of the hole is a square hole, the screw passes through the threaded hole of the slider (5), the top of the screw is provided with a turntable (7), the vertical column (6) is slidably arranged in the square hole of the lower half of the vertical hole of the slider (5), the top of the vertical column (6) is provided with a bearing, and the outer ring of the bearing is connected to the top surface of the vertical column (6), and the inner wall of the inner ring of the bearing is connected to the bottom end of the screw; the top bottle mechanism is arranged on the bottom surface of the vertical column (6).

3. The auxiliary device for transferring gas cylinders according to claim 2, characterized in that: The top bottle mechanism includes a crossbar (8), a triangular insert (9), a guide rod (10), and a first electric cylinder (11); the center of the top surface of the crossbar (8) is connected to the bottom surface of the vertical column (6); the length direction line of the crossbar (8) is parallel to the length direction line of the long beam (1); the top surface of the triangular insert (9) is an inclined plane, its bottom surface is a horizontal plane, and its end surface away from the long beam (1) is a vertical plane, and this vertical plane is connected to the end of the guide rod (10); the crossbar (8) The guide rod (10) is provided with a guide hole and passes through the guide hole of the cross rod (8); the first electric cylinder (11) is provided on the end face of the cross rod (8) away from the triangular insert (9) and its piston rod passes through the center hole of the cross rod (8) and is connected to the vertical surface of the triangular insert (9). The axis of the piston rod of the first electric cylinder (11) is parallel to the length direction line of the guide rod (10); the power output terminal of the battery (3) is connected to the power input terminal of the first electric cylinder (11) through a wire.

4. The auxiliary device for transferring gas cylinders according to claim 3, characterized in that: The clamping part includes two clamping mechanisms, which are respectively set opposite to each other on the top surface of the long beam (1) on both sides; the clamping mechanism includes a vertical plate (12), a guide plate (13), a second electric cylinder (14) and a long arc plate (15); the vertical plate (12) is set on the top surface of the long beam (1), and both its top and bottom ends are provided with horizontal guide holes, and the guide plate (13) passes through both horizontal guide holes; the second electric cylinder (14) is set at the center of the outer wall of the vertical plate (12), and the end of its piston rod passes through the central through hole of the vertical plate (12); the outer wall of the long arc plate (15) is connected to the end of the guide plate (13), and the center of the outer wall of the long arc plate (15) is connected to the end of the piston rod of the second electric cylinder (14); a rubber pad is provided on the inner wall of the long arc plate (15); the power input end of the second electric cylinder (14) is connected to the power output end of the battery (3) through a wire.