A cylinder cleaning system and method

By introducing a stirring and draining gear mechanism into the gas cylinder cleaning system, the problems of low draining efficiency and adhesion of gas cylinders are solved, achieving a highly efficient cleaning and draining process, improving overall cleaning efficiency and reducing manual labor intensity.

CN117324342BActive Publication Date: 2026-03-31CHONGQING TONGHUI GAS
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-31
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing technologies have low water drainage efficiency for gas cylinders, which affects cleaning efficiency, and the problem of gas cylinders sticking together has not been effectively solved.

Method used

The system employs a roller conveyor, a cleaning placement cage, a cleaning protection box, a cleaning chamber, a cleaning drive plate, a displacement drive motor, a cleaning auxiliary mechanism, and a cleaning efficiency enhancement mechanism. It achieves mixing and rapid draining of the gas cylinders through a stirring and draining gear mechanism.

Benefits of technology

It improves the drainage efficiency of gas cylinders, prevents gas cylinders from sticking together, further improves cleaning efficiency, and reduces the labor intensity of workers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a gas cylinder cleaning system and method, relates to a gas cylinder cleaning device, and comprises a roller conveyor, a cleaning placement cage, a cleaning driving plate, a cleaning mounting plate, a displacement driving motor, a cleaning auxiliary mechanism and a cleaning efficiency increasing mechanism. The cleaning protection box is arranged outside the roller conveyor. The cleaning box body is fixedly connected to the inside of the cleaning protection box, and the inside of the cleaning box body is provided with a cleaning spray head. The cleaning driving plate is slidably connected to the top of the inside of the cleaning protection box. The cleaning mounting plate is arranged below the cleaning driving plate. The displacement driving motor is fixedly connected to the rear of the cleaning protection box. The cleaning auxiliary mechanism is arranged in the inside of the cleaning protection box. The cleaning efficiency increasing mechanism is arranged below the cleaning mounting plate, the stirring of the gas cylinder is realized, the mutual adhesion of the gas cylinders is avoided, the draining efficiency of the gas cylinders is ensured, and the problem that the existing draining by relying on the self weight leads to low draining efficiency and influences the cleaning efficiency of the gas cylinders is solved.
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Description

Technical Field

[0001] This invention relates to the field of gas cylinder cleaning equipment technology, and in particular to a gas cylinder cleaning system and method. Background Technology

[0002] When producing gas cylinders, the cylinder blanks generally need to be cleaned before subsequent welding operations can be carried out. Currently, when cleaning gas cylinders, the cylinders are usually placed in a cleaning basket, and then the cleaning basket is placed in a cleaning tank. Water is sprayed through the nozzles in the cleaning tank to rinse them. Then, the workers place the rinsed cylinders on a draining board to drain. After the cylinders have been draining for a period of time, they are put into a drying oven for drying.

[0003] The existing application number: CN201711014613.0 discloses a cleaning device and method for aluminum alloy tubing used in the aluminum alloy inner liner of gas cylinders. The device is a low-cost, thorough, efficient, and highly automated cleaning system. It can simultaneously clean the inner and outer surfaces of the aluminum alloy tubing. Through a rotating spray cleaning system and an external spray mechanism, it can simultaneously remove various types of dirt from the surface of the aluminum alloy tubing (such as a mixture of surface-adhered lubricating grease, aluminum alloy powder, and aluminum shavings), resulting in a more thorough cleaning and higher efficiency than general cleaning machines and manual cleaning. Furthermore, there is no water accumulation in the cleaning tank during the cleaning process, and the cleaned water can be recycled and reused, saving water resources and significantly reducing the use of cleaning agents, thus alleviating the burden on water treatment. The cleaning process is fully automated, saving manpower and resources, reducing cleaning costs, and improving work efficiency.

[0004] However, existing methods for draining water from gas cylinders typically involve inverting the cylinders and relying on the weight of the water for drainage. Due to surface tension, water tends to adhere to the cylinders, resulting in low drainage efficiency and consequently affecting the overall cleaning efficiency of the gas cylinders. Summary of the Invention

[0005] In view of this, the present invention provides a gas cylinder cleaning system and method, which realizes the pouring out of cleaning water, realizes the stirring of gas cylinders, avoids the gas cylinders sticking together, ensures the drainage efficiency of gas cylinders, further improves the cleaning efficiency of gas cylinders, and facilitates the subsequent drying of gas cylinders in the cleaning basket.

[0006] The present invention provides a gas cylinder cleaning system and method with the following objectives and effects: a roller conveyor, a cleaning placement cage, a cleaning protective box, a cleaning box body, a cleaning drive plate, a cleaning mounting plate, a displacement drive motor, a cleaning auxiliary mechanism, and a cleaning efficiency enhancement mechanism.

[0007] The cleaning cage is placed above the roller conveyor;

[0008] The cleaning and protection box is installed on the outside of the roller conveyor;

[0009] The cleaning chamber is fixedly connected to the inside of the cleaning protective box, and the inside of the cleaning chamber is equipped with a cleaning nozzle;

[0010] The cleaning drive plate is slidably connected to the upper part of the cleaning protective box, and the cleaning drive plate is provided with a threaded hole structure.

[0011] The cleaning mounting plate is located below the cleaning drive plate;

[0012] The displacement drive motor is fixedly connected to the rear of the cleaning and protective box, and the displacement drive motor is a reciprocating motor structure.

[0013] The cleaning auxiliary mechanism is located inside the cleaning protective box;

[0014] The cleaning enhancement mechanism is located below the cleaning mounting plate.

[0015] Furthermore, the cleaning auxiliary mechanism includes: a sorting rod and an anti-abrasion edge;

[0016] The sorting rods are provided in two sets, and the two sets of sorting rods are fixedly connected to the upper front end of the roller conveyor. The two sets of sorting rods together form a trumpet-shaped structure.

[0017] The anti-abrasion edge has a rounded corner structure and is located on the left and right sides at the rear of the cleaning and placement cage.

[0018] Furthermore, the cleaning auxiliary mechanism also includes: a movable guide rod and a movable drive screw;

[0019] Two sets of movable guide rods are provided. The two sets of movable guide rods are fixedly connected to the upper left and right sides of the inside of the cleaning protective box. Both sets of movable guide rods are slidably connected to the cleaning drive plate.

[0020] The movable drive screw is rotatably connected to the upper middle position inside the cleaning and protective box. The movable drive screw is coaxially and fixedly connected to the rotating shaft of the displacement drive motor, and the movable drive screw is threadedly connected to the cleaning drive plate.

[0021] Furthermore, the cleaning auxiliary mechanism also includes a lifting drive cylinder;

[0022] Two sets of lifting drive cylinders are provided. The two sets of lifting drive cylinders are fixedly connected to the upper left and right sides of the inside of the cleaning and protective box, and the piston rods of the two sets of lifting drive cylinders are fixedly connected to the cleaning mounting plate.

[0023] Furthermore, the cleaning efficiency enhancement mechanism includes: a holding hook and a hanging gear;

[0024] The holding hooks are provided in two sets, and the two sets of holding hooks are fixedly connected to the lower left and right sides of the cleaning installation plate respectively;

[0025] The hanging gear component is fixedly connected to the left side of the cleaning and placement cage.

[0026] Furthermore, the cleaning efficiency enhancement mechanism also includes: a water-draining gear and a water-draining motor;

[0027] The drain gear is rotatably connected to the lower left side of the holding hook, and the drain gear meshes with the hanging gear. The drain gear is coaxially fixedly connected to a sprocket structure.

[0028] The drain motor is fixedly connected above the cleaning mounting plate. A sprocket structure is provided on the left side of the drain motor shaft. The sprocket structure of the drain motor is connected to the sprocket structure of the drain gear component through chain drive.

[0029] Furthermore, the cleaning efficiency enhancement mechanism also includes: a vibration drive gear, a vibration transmission gear, a vibration disk, a vibration drive protrusion, a vibration striking element, and a vibration return spring;

[0030] The vibration drive gear is rotatably connected to the lower right side of a set of holding hooks on the right side;

[0031] The vibration transmission gear is fixedly connected to the right side of the cleaning placement cage, and the vibration drive gear and the vibration transmission gear mesh.

[0032] The vibratory disk is coaxially and fixedly connected to the left side of the vibration transmission gear;

[0033] The vibration drive protrusion is provided in multiple sets, and the multiple sets of vibration drive protrusion are fixedly connected to the left side of the vibratory plate.

[0034] The vibrating striking component is slidably connected below a set of holding hooks on the right side, and the right side of the vibrating striking component is in frictional contact with the vibration driving protrusion.

[0035] The vibration reset spring is fixedly connected to the inside of the lower part of a set of gripping hooks on the right side, and the right end of the vibration reset spring is fixedly connected to the vibration striking component.

[0036] Furthermore, the cleaning efficiency enhancement mechanism also includes: a stirring baffle, a stirring component, a stirring support component, and a stirring connecting rod;

[0037] The stirring stop lever is fixedly connected to the middle position of a set of holding hooks on the right side;

[0038] The stirring element is rotatably connected inside the cleaning cage, and the right end of the stirring element is rotatably connected to the vibration transmission gear.

[0039] The stirring support is fixedly connected to the upper right side of the stirring component;

[0040] The stirring connecting rod is fixedly connected to the front of the stirring support and is positioned above the stirring stop bar.

[0041] Beneficial effects

[0042] This invention utilizes a cleaning auxiliary mechanism. When cleaning gas cylinders, workers place the cylinders in a cleaning basket, which is then transported to the vicinity of a cleaning box by a conveyor. At this point, a motor is activated, driving a lead screw to rotate. This screw moves a hook above the cleaning basket, and a cylinder is then activated, causing the hook to attach to the basket. The cylinder is then raised again, and finally, the basket is placed into the cleaning box. The cleaning is then performed using nozzles within the cleaning box, eliminating the need for manual cleaning, reducing worker workload, and ensuring efficient cylinder cleaning.

[0043] This invention utilizes a cleaning efficiency-enhancing mechanism. After the gas cylinders are cleaned, the cleaning basket rises, activating the draining motor. The motor's shaft rotates, driving gears that mesh with gears on the cleaning basket, causing it to rotate and drain the cleaning water, facilitating subsequent drying of the gas cylinders. Simultaneously, the basket's rotation drives a vibration transmission gear, which in turn drives a vibration drive gear, which in turn drives a drive disc. The protrusions on the drive disc activate a vibrating striking element, causing the basket to vibrate and ensuring rapid drainage, thus improving the draining efficiency. Furthermore, the rotation of the cleaning basket causes a stirring shaft within it to rotate relative to the basket, agitating the gas cylinders and preventing them from sticking together, further enhancing the draining efficiency and improving overall cleaning efficiency. Attached Figure Description

[0044] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.

[0045] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.

[0046] In the attached diagram:

[0047] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the present invention.

[0048] Figure 2 This is a schematic diagram of the organizing rod structure according to an embodiment of the present invention.

[0049] Figure 3 This is a schematic diagram of the movable drive screw structure according to an embodiment of the present invention.

[0050] Figure 4 This is a schematic diagram of the cleaning auxiliary mechanism according to an embodiment of the present invention.

[0051] Figure 5 This is a schematic diagram of the mounting gear structure according to an embodiment of the present invention.

[0052] Figure 6 This is a schematic diagram of the holding hook structure according to an embodiment of the present invention.

[0053] Figure 7 This is a schematic diagram of the cleaning efficiency enhancement mechanism according to an embodiment of the present invention.

[0054] Figure 8 This is a schematic diagram of the stirring component structure according to an embodiment of the present invention.

[0055] List of reference numerals

[0056] 1. Roller conveyor; 101. Sorting rod; 102. Anti-abrasion edge; 103. Moving guide rod; 104. Moving drive screw; 105. Lifting drive cylinder; 2. Cleaning placement cage; 3. Cleaning protective box; 4. Cleaning box body; 5. Cleaning drive plate; 6. Cleaning mounting plate; 601. Holding hook; 602. Hanging gear; 603. Draining gear; 604. Draining motor; 605. Vibration drive gear; 606. Vibration transmission gear; 607. Vibration disc; 608. Vibration drive protrusion; 609. Vibration striking component; 610. Vibration return spring; 611. Stirring baffle; 612. Stirring component; 613. Stirring support component; 614. Stirring connecting rod; 7. Displacement drive motor. Detailed Implementation

[0057] Example 1: Please refer to Figures 1 to 5 As shown:

[0058] This invention provides a gas cylinder cleaning system and method, including a roller conveyor 1, a cleaning placement cage 2, a cleaning protective box 3, a cleaning box body 4, a cleaning drive plate 5, a cleaning mounting plate 6, a displacement drive motor 7, and a cleaning auxiliary mechanism.

[0059] The cleaning cage 2 is placed above the roller conveyor 1;

[0060] The cleaning and protection box 3 is installed on the outside of the roller conveyor 1;

[0061] The cleaning chamber 4 is fixedly connected to the inside of the cleaning protective chamber 3, and the cleaning nozzle is installed inside the cleaning chamber 4.

[0062] The cleaning drive plate 5 is slidably connected to the upper part of the cleaning protective box 3, and the cleaning drive plate 5 is provided with a threaded hole structure.

[0063] The cleaning mounting plate 6 is positioned below the cleaning drive plate 5;

[0064] The displacement drive motor 7 is fixedly connected to the rear of the cleaning and protective box 3. The displacement drive motor 7 is a reciprocating motor structure.

[0065] The cleaning auxiliary mechanism is located inside the cleaning protection box 3.

[0066] The cleaning auxiliary mechanism includes: a sorting rod 101, an anti-abrasion edge 102, a moving guide rod 103, a moving drive screw 104, and a lifting drive cylinder 105.

[0067] Two sets of sorting rods 101 are provided. The two sets of sorting rods 101 are fixedly connected to the upper front end of the roller conveyor 1. The two sets of sorting rods 101 together form a trumpet-shaped structure.

[0068] The anti-abrasion edge 102 has a rounded corner structure and is located on the left and right sides behind the cleaning and placement cage 2.

[0069] Two sets of movable guide rods 103 are provided. The two sets of movable guide rods 103 are fixedly connected to the upper left and right sides of the inside of the cleaning protective box 3, and both sets of movable guide rods 103 are slidably connected to the cleaning drive plate 5.

[0070] The movable drive screw 104 is rotatably connected to the upper middle position inside the cleaning protective box 3. The movable drive screw 104 is coaxially and fixedly connected to the rotating shaft of the displacement drive motor 7. The movable drive screw 104 is threadedly connected to the cleaning drive plate 5.

[0071] Two sets of lifting drive cylinders 105 are provided. The two sets of lifting drive cylinders 105 are fixedly connected to the upper left and right sides of the inside of the cleaning protective box 3, and the piston rods of the two sets of lifting drive cylinders 105 are fixedly connected to the cleaning mounting plate 6.

[0072] During use, when the gas cylinder needs to be cleaned, the worker places the gas cylinder inside the cleaning cage 2, and then places the cleaning cage 2 above the roller conveyor 1. The roller conveyor 1 then transports the cleaning cage 2 into the cleaning protective box 3. During the transport process, the anti-abrasion edge 102 contacts the organizing rod 101, which organizes the cleaning cage 2, ensuring that it remains in the middle position on the roller conveyor 1. Once the cleaning cage 2 moves to the vicinity of the cleaning box 4... At this time, the displacement drive motor 7 is turned on. The rotation of the shaft of the displacement drive motor 7 drives the movement drive screw 104 to rotate. The rotation of the movement drive screw 104 drives the cleaning drive plate 5 to move backward. The backward movement of the cleaning drive plate 5 drives the lifting drive cylinder 105 to move backward. After the lifting drive cylinder 105 moves backward above the cleaning placement cage 2, the lifting drive cylinder 105 is turned on. The lifting drive cylinder 105 drives the cleaning mounting plate 6 to move downward. The downward movement of the cleaning mounting plate 6 realizes the driving function, which facilitates the subsequent removal of the cleaning placement cage 2.

[0073] Example 2:

[0074] Based on Example 1, such as Figures 1 to 8 As shown, it also includes a cleaning enhancement mechanism, which is located below the cleaning mounting plate 6.

[0075] The cleaning efficiency enhancement mechanism includes: a holding hook 601, a hanging gear 602, a draining gear 603, a draining motor 604, a vibration drive gear 605, a vibration transmission gear 606, a vibrating plate 607, a vibration drive protrusion 608, a vibration striking component 609, a vibration return spring 610, a stirring baffle 611, a stirring component 612, a stirring support component 613, and a stirring connecting rod 614.

[0076] Two sets of holding hooks 601 are provided, and the two sets of holding hooks 601 are fixedly connected to the lower left and right sides of the cleaning mounting plate 6 respectively;

[0077] The gear component 602 is fixedly connected to the left side of the cleaning cage 2;

[0078] The drain gear 603 is rotatably connected to the lower left side of the holding hook 601. The drain gear 603 meshes with the hanging gear 602. The drain gear 603 is coaxially fixedly connected to a sprocket structure.

[0079] The drain motor 604 is fixedly connected above the cleaning mounting plate 6. A sprocket structure is provided on the left side of the rotating shaft of the drain motor 604. The sprocket structure of the drain motor 604 is connected to the sprocket structure of the drain gear 603 through chain drive.

[0080] The vibration drive gear 605 is rotatably connected to the lower right side of a set of holding hook parts 601 on the right side;

[0081] Vibration transmission gear 606 is fixedly connected to the right side of the cleaning placement cage 2, and vibration drive gear 605 and vibration transmission gear 606 mesh.

[0082] The vibratory plate 607 is coaxially and fixedly connected to the left side of the vibratory transmission gear 606;

[0083] Multiple sets of vibration drive protrusions 608 are provided, and the multiple sets of vibration drive protrusions 608 are fixedly connected to the left side of the vibratory plate 607 respectively.

[0084] The vibrating striking component 609 is slidably connected to the lower part of a set of holding hooks 601 on the right side, and the right side of the vibrating striking component 609 is in frictional contact with the vibration driving protrusion 608.

[0085] The vibration reset spring 610 is fixedly connected to the inside of the lower part of a set of holding hooks 601 on the right side, and the right end of the vibration reset spring 610 is fixedly connected to the vibration striking member 609.

[0086] The stirring lever 611 is fixedly connected to the middle position of a set of holding hooks 601 on the right side;

[0087] The agitator 612 is rotatably connected inside the cleaning cage 2, and the right end of the agitator 612 is rotatably connected to the vibration transmission gear 606.

[0088] The stirring support 613 is fixedly connected to the upper right side of the stirring component 612;

[0089] The stirring connecting rod 614 is fixedly connected to the front of the stirring support 613, and the stirring connecting rod 614 is positioned above the stirring stop bar 611.

[0090] During use, when the cleaning cage 2 reaches the vicinity of the cleaning chamber 4, the holding hook 601 is moved to the lower left and right sides of the cleaning cage 2 via the cleaning auxiliary mechanism. Then, the holding hook 601 is moved upward, and the holding hook 601 places the cleaning cage 2 into the cleaning chamber 4 for cleaning. After the gas cylinder inside the cleaning cage 2 is cleaned, the cleaning cage 2 is pulled upward by the holding hook 601. At the same time, as the holding hook 601 lifts the cleaning cage 2, the hanging gear 602 and the draining gear 603 are engaged. When the cylinder is engaged, the drain motor 604 is turned on. The rotating shaft of the drain motor 604 drives the sprocket for transmission. This rotation of the drain motor 604 shaft drives the drain gear 603, which in turn drives the hanging gear 602. The hanging gear 602 then drives the cleaning cage 2, which in turn rotates the gas cylinder, causing it to tip over and empty the water. Simultaneously, the rotation of the cleaning cage 2 drives the vibration transmission gear 606 to rotate. The vibration drive gear 605 rotates, which in turn drives the vibrating disc 607 to rotate. The vibrating disc 607 then drives the vibration drive protrusion 608 to rotate, which in turn presses against the vibrating striking element 609. The vibrating striking element 609 is pressed to the left, thus striking the cleaning cage 2 and causing it to vibrate. This accelerates the falling of water droplets and speeds up the draining process in the cleaning cage 2. Once the vibration drive protrusion 608 has passed the position of the vibrating striking element 609, the vibration stops. Component 609 is reset under the action of vibration reset spring 610. While the cleaning cage 2 is rotating, the rotation of the cleaning cage 2 will drive the stirring support 613 to rotate. However, since the stirring support 613 is fixedly connected to the stirring connecting rod 614, the stirring connecting rod 614 is blocked by the stirring stop rod 611. At this time, the stirring connecting rod 614 cannot rotate. At this time, the stirring component 612 rotates relative to the cleaning cage 2. At this time, the cleaning cage 2 is stirred by the stirring component 612, realizing the stirring of the gas cylinder inside the cleaning cage 2 and ensuring the drainage effect of the gas cylinder.

Claims

1. A gas cylinder cleaning system, comprising a roller conveyor (1), a cleaning placement cage (2), a cleaning protective box (3), a cleaning box body (4), a cleaning driving plate (5), a cleaning mounting plate (6), a displacement driving motor (7), a cleaning auxiliary mechanism and a cleaning synergistic mechanism; characterized in that: The cleaning placement cage (2) is placed above the roller conveyor (1); the cleaning protection box (3) is arranged outside the roller conveyor (1); the cleaning box body (4) is fixedly connected inside the cleaning protection box (3), and the inside of the cleaning box body (4) is provided with a cleaning spray head; the cleaning drive plate (5) is slidingly connected above the inside of the cleaning protection box (3), and the cleaning drive plate (5) is provided with a threaded hole structure; the cleaning mounting plate (6) is arranged below the cleaning drive plate (5); the displacement drive motor (7) is fixedly connected behind the cleaning protection box (3), and the displacement drive motor (7) is a reciprocating motor structure; the cleaning auxiliary mechanism is arranged inside the cleaning protection box (3); the cleaning efficiency increasing mechanism is arranged below the cleaning mounting plate (6); the cleaning efficiency increasing mechanism comprises a holding hook piece (601) and a hanging gear piece (602); the holding hook piece (601) is provided in two groups, and the two groups of holding hook pieces (601) are fixedly connected below the left and right sides of the cleaning mounting plate (6); the hanging gear piece (602) is fixedly connected to the left side of the cleaning placement cage (2); the cleaning efficiency increasing mechanism further comprises a draining gear piece (603) and a draining motor (604); the draining gear piece (603) is rotatably connected below the left side of the holding hook piece (601), the draining gear piece (603) is engaged with the hanging gear piece (602), and the draining gear piece (603) is coaxially fixedly connected with a chain wheel structure; the draining motor (604) is fixedly connected above the cleaning mounting plate (6), a chain wheel structure is arranged on the left side of the rotating shaft of the draining motor (604), and the chain wheel structure of the draining motor (604) is drivingly connected with the chain wheel structure of the draining gear piece (603) through a chain; the cleaning efficiency increasing mechanism further comprises a vibration drive gear (605), a vibration transmission gear (606), a vibration disc (607), a vibration drive protrusion (608), a vibration knocking piece (609) and a vibration return spring (610); the vibration drive gear (605) is rotatably connected below the right side of the right group of holding hook pieces (601); the vibration transmission gear (606) is fixedly connected to the right side of the cleaning placement cage (2), and the vibration drive gear (605) is engaged with the vibration transmission gear (606); the vibration disc (607) is coaxially fixedly connected to the left side of the vibration transmission gear (606); the vibration drive protrusions (608) are arranged in multiple groups, and the multiple groups of vibration drive protrusions (608) are fixedly connected to the left side of the vibration disc (607); the vibration knocking piece (609) is slidingly connected below the right group of holding hook pieces (601), and the right side of the vibration knocking piece (609) is in frictional contact with the vibration drive protrusion (608); the vibration return spring (610) is fixedly connected below the inside of the right group of holding hook pieces (601), and the right end of the vibration return spring (610) is fixedly connected with the vibration knocking piece (609).

2. The gas cylinder cleaning system of claim 1, wherein: The cleaning auxiliary mechanism comprises two groups of arrangement rods (101) and anti-abrasion edges (102). The two groups of arrangement rods (101) are fixedly connected to the front end of the roller conveyor (1) above, and the two groups of arrangement rods (101) jointly form a horn-shaped structure. The anti-abrasion edge (102) is a round corner structure, and the anti-abrasion edge (102) is arranged on the left and right sides of the rear of the cleaning cage (2).

3. The gas cylinder cleaning system of claim 2, wherein: The cleaning auxiliary mechanism further comprises two groups of moving guide rods (103) and moving drive lead screws (104). The two groups of moving guide rods (103) are fixedly connected to the left and right sides of the upper part of the inside of the cleaning protection box (3), and the two groups of moving guide rods (103) are slidably connected with the cleaning drive plate (5). The moving drive lead screw (104) is rotatably connected to the middle position of the upper part of the inside of the cleaning protection box (3), and the moving drive lead screw (104) is fixedly connected with the rotating shaft of the displacement drive motor (7) in a coaxial manner, and the moving drive lead screw (104) is threadedly connected with the cleaning drive plate (5).

4. The gas cylinder cleaning system of claim 3, wherein: The cleaning auxiliary mechanism further comprises two groups of lifting drive cylinders (105). The two groups of lifting drive cylinders (105) are fixedly connected to the left and right sides of the upper part of the inside of the cleaning protection box (3), and the piston rods of the two groups of lifting drive cylinders (105) are fixedly connected with the cleaning mounting plate (6).

5. The gas cylinder cleaning system of claim 1, wherein: The cleaning auxiliary mechanism further comprises a stirring gear rod (611), a stirring piece (612), a stirring support piece (613) and a stirring connecting rod (614). The stirring gear rod (611) is fixedly connected to the middle position of the right group of holding hook pieces (601). The stirring piece (612) is rotatably connected to the inside of the cleaning cage (2), and the right end of the stirring piece (612) is rotatably connected with the vibration transmission gear (606). The stirring support piece (613) is fixedly connected to the right side of the upper end of the stirring piece (612). The stirring connecting rod (614) is fixedly connected to the front of the stirring support piece (613), and the stirring connecting rod (614) is arranged above the stirring gear rod (611).

6. The use method of the gas cylinder cleaning system according to claim 1, wherein:

01. Preparation, the worker uses the disinfectant to wipe the surface of the gas cylinder, disinfects the gas cylinder, then puts the disinfected gas cylinder into the cleaning basket, closes the basket cover of the cleaning basket, and puts the cleaning basket into the roller conveyor; 02. Decontamination and rinsing, the roller conveyor transports the cleaning basket to the cleaning box, the cleaning basket is put into the cleaning pool by the mechanical arm, the mixed cleaning agent solution is sprayed to the cleaning basket by the cleaning pool nozzle, and the gas cylinder is rinsed, then clean water is used for rinsing; 03. Drainage, the cleaning basket is lifted by the mechanical arm, and the cleaning basket is rotated for drainage during the lifting process, so that the cleaning basket is preliminarily drained and then enters the drying box; 04. Drying and inspection, the cleaning basket is dried in the drying box, and then the worker opens the cleaning basket and inspects the gas cylinder, so as to realize the cleaning of the gas cylinder.

Citation Information

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