Radiator cleaning production line

By designing a radiator cleaning production line, including a multi-station cleaning structure and loading mobile mechanism, the high cost, low efficiency and safety risks of traditional cleaning technology are solved, and efficient, safe and environmentally friendly radiator cleaning results are achieved.

CN119528016BActive Publication Date: 2025-05-13CHANGZHOU YIZHONG ELECTRIC CO LTD
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Patent Information

Application Number
CN202510085727.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2025-05-13
Estimated Expiration
2045-01-20

AI Technical Summary

Technical Problem

Traditional radiator cleaning technology has problems such as high equipment cost, complex operation, low environmental friendliness, high safety risks, high labor intensity and low work efficiency, and it is difficult to ensure the consistency of cleaning quality.

Method used

A radiator cleaning production line is designed, including protective frames, cleaning structures and loading moving mechanisms. The cleaning structure achieves multi-directional cleaning through pre-degreasing stations, main degreasing stations, water washing stations, drying stations 1, paint immersion stations and drying stations 2. The loading moving mechanism moves the radiator smoothly through the servo motor, rotating rod and buffer positioning mechanism to prevent shaking.

Benefits of technology

It improves the cleaning and cleanliness of the radiator, reduces labor intensity and operation complexity, enhances the safety and environmental friendliness of the cleaning process, and meets the needs of modern and efficient production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a radiator cleaning production line and the technical field of radiator cleaning, including a protective frame; protective seats are relatively arranged on the left and right sides of the protective frame. By setting a cleaning structure, the radiator sequentially enters the pre-degreasing station, the main degreasing station, the water washing station, the drying station 1, the varnishing station, and the drying station 2, which changes the traditional high-pressure water jet cleaning technology and the chemical solvent immersion cleaning method, and increases the cleaning cleanliness of the radiator; by setting a loading and moving mechanism, when the radiator drives the cable to swing left and right, the movable ring 1 and the movable ring 2 will respectively press the buffer spring 1 and the buffer spring 2 to deform, thereby absorbing the shaking force generated on the cable, so that the cable moves smoothly, and at the same time, when the radiator swings up and down, the connecting plate 2 drives the spring shock absorber to deform, absorbs the shaking force, and prevents the radiator from shaking up and down, so that the radiator can smoothly enter each station.
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Description

Technical Field

[0001] The invention relates to the technical field of radiator cleaning, in particular to a radiator cleaning production line. Background Art

[0002] As the trend of industrial manufacturing industry transforming towards automation accelerates, more and more companies are beginning to pay attention to and introduce automated production lines to improve production efficiency and reduce costs. As an important component of many equipment, radiators play an important role in ensuring the stability of equipment operation and extending service life. However, traditional radiator cleaning mostly relies on manual operation, which is not only time-consuming and labor-intensive, but also difficult to ensure the consistency of cleaning quality, which has an adverse effect on the quality and performance of the radiator.

[0003] At present, the common radiator cleaning solutions on the market mainly include high-pressure water jet cleaning technology and chemical solvent immersion cleaning method. Among them, high-pressure water jet cleaning technology uses high-pressure water flow to flush the dirt on the heat sink to achieve the purpose of cleaning. The advantages of this method are fast cleaning speed and good effect, but it also has problems such as high equipment cost and complex operation; chemical solvent immersion cleaning method is usually used for more delicate or difficult to wash radiators with water. Although this method can effectively remove oil stains and other organic pollutants, it is less environmentally friendly and easily leaves residues.

[0004] Both of the existing cleaning technologies have their own limitations. For example, high-pressure water jet cleaning may damage the surface of the heat sink, resulting in a decrease in its heat dissipation efficiency; chemical solvent immersion faces environmental pressure and high safety risks. In addition, these traditional cleaning methods generally have the disadvantages of high labor intensity and low work efficiency, which can no longer meet the needs of modern and efficient production. When cleaning the radiator, since the radiator needs to be hoisted, the radiator often shakes during the hoisting and transfer process. If the shaking is too large, it is easy to cause safety problems. At the same time, it is not easy to place the radiator into the cleaning frame, affecting the cleaning efficiency. Summary of the invention

[0005] 1. Technical problems solved

[0006] In order to solve the above technical problems, the present invention provides a radiator cleaning production line.

[0007] (II) Technical solution

[0008] Based on this, the present invention provides the following technical solution: a radiator cleaning production line, comprising a protective frame;

[0009] The left and right sides of the protection frame are oppositely provided with protection seats, the protection frame is fixed to the rear end of the guide rail, a cleaning structure is installed on the inner side of the protection frame, and a loading and moving mechanism is installed on the inner side of the guide rail;

[0010] The cleaning structure includes a pre-degreasing station, a main degreasing station, a water washing station, a drying station 1, a paint dipping station, and a drying station 2. The pre-degreasing station is installed at the inner front end of the protective frame, and the rear end of the pre-degreasing station is sequentially provided with a main degreasing station, a water washing station, a drying station 1, a paint dipping station, and a drying station 2. Support seats are relatively arranged on the left and right sides of the top of the pre-degreasing station;

[0011] The water washing station is provided with multiple groups, and the water washing station includes a disturbance mechanism and a circulating water tower filter. The disturbance mechanism is installed at the front and rear ends of the water washing station, and a circulating water tower filter is provided at the left end of the water washing station;

[0012] The loading and moving mechanism includes a moving seat, a servo motor, a rotating rod, a rotating wheel 1, an electric push rod, a moving plate, a telescopic rod, a buffer positioning mechanism, a rotating shaft, and a rotating wheel 2. The rotating wheel 1 and the rotating wheel 2 are both slidably matched with the inner side of the guide rail, the bottom of the servo motor is fixed to the moving seat, the output end of the servo motor is transmission matched with the rotating rod, the rotating rod is transmission connected with the middle part of the rotating wheel 1, the rotating shaft is installed at the rear end of the moving seat, the rotating wheel 2 is relatively arranged on the left and right sides of the rotating shaft, the electric push rod is fixed at the bottom of the moving seat, the bottom of the electric push rod is fixed to the moving plate, the telescopic rods are relatively arranged at the top four corners of the moving plate, the top of the telescopic rod is fixedly connected to the moving seat, and the buffer positioning mechanism is installed at the bottom of the moving plate.

[0013] Preferably, the disturbance mechanism includes a blower, a diverter pipe, and an air supply pipe. The front end of the blower is fixed to the water washing station, the blower is connected to the left end of the diverter pipe, and air supply pipes are equidistantly distributed at the front end of the diverter pipe. The air supply pipes pass through the rear end of the water washing station and are arranged inside the water washing station.

[0014] Preferably, the buffer positioning mechanism includes connecting plate 1, a sliding rod, folding plate 1, folding plate 2, connecting plate 2, a spring shock absorber, and a shock absorbing structure. The top of connecting plate 1 is fixed to the movable plate, and folding plate 1 and folding plate 2 are arranged in a cross shape, and folding plate 1 and folding plate 2 are hinged to each other at the intersection, the top of the spring shock absorber is fixed to connecting plate 1, the bottom of the spring shock absorber is fixedly connected to connecting plate 2, and the bottom of connecting plate 2 is installed with a shock absorbing structure.

[0015] Preferably, there are four sliding rods in total, and the sliding rods form a group of two, which are respectively arranged at the front and rear ends of connecting plate one and the front and rear ends of connecting plate two. The sliding rods are respectively slidably matched with the inner sides of connecting plate one (581) and connecting plate two, and the sliding rods are respectively rotatably connected to connecting plate one and connecting plate two.

[0016] Preferably, the shock-absorbing structure includes a horizontal plate, a fixed seat, a cable, a fixed ring, an anti-sway mechanism, a vertical rod, and a hook. The top of the horizontal plate is fixed to the connecting plate, the top of the horizontal plate is fixed with a fixed seat, the cable is embedded in the inner side of the fixed seat, and the cable is fixed to the inner side of the fixed seat, the cable runs through the middle of the fixed ring, the top of the fixed ring is fixed to the horizontal plate, the cable runs through the middle of the anti-sway mechanism, the top of the anti-sway mechanism is fixedly connected to the vertical rod, and the top of the vertical rod is fixed to the horizontal plate, and the bottom of the cable is provided with a hook.

[0017] Preferably, the cables, fixing rings, anti-sway mechanisms, vertical rods and hooks mutually constitute a hook structure, and there are four groups of hook structures in total, which are arranged at the four bottom corners of the horizontal plate.

[0018] Preferably, the anti-sway mechanism includes circular ring 1, vertical plate, circular ring 2, buffer spring 1, movable ring 1, circular ring 3, buffer spring 2, and movable ring 2. The circular ring 1 is fixed to the bottom of the vertical rod, the vertical plate is fixed to the front end of the circular ring 2, buffer spring 1 is arranged at the four inner corners of the circular ring 2, the buffer spring 1 is fixed to the movable ring 1, the vertical plate is fixed to the outer wall of the circular ring 3, buffer springs 2 are arranged equidistantly on the inner side of the circular ring 3, and the movable ring 2 is fixed to the front end of the buffer spring 2.

[0019] Preferably, there are four groups of vertical plates, and the vertical plates are arranged relatively along the four inner corners of circular ring one, the vertical plates are fixed to the inner side of circular ring one, the middle parts of movable ring one and movable ring two are hollow structures, and the center lines of movable ring one and movable ring two are in the same vertical direction.

[0020] (III) Beneficial effects

[0021] Compared with the prior art, the present invention provides a radiator cleaning production line, which has the following beneficial effects:

[0022] 1. The radiator cleaning production line is equipped with a cleaning structure. The radiator enters the pre-degreasing station, main degreasing station, water washing station, drying station 1, varnishing station, and drying station 2 in sequence. It changes the traditional high-pressure water jet cleaning technology and chemical solvent immersion cleaning method, so that the radiator can be cleaned in all directions, increasing the cleaning cleanliness of the radiator.

[0023] 2. The radiator cleaning production line is equipped with a loading and moving mechanism. When the radiator drives the cable to swing left and right, the movable ring 1 and the movable ring 2 will respectively press the buffer spring 1 and the buffer spring 2 to deform, thereby absorbing the shaking force generated on the cable and allowing the cable to move smoothly. At the same time, when the radiator swings up and down, the connecting plate 2 drives the spring shock absorber to deform to absorb the shaking force and prevent the radiator from swinging up and down, so that the radiator can smoothly enter each work station. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0025] Figure 2 It is a schematic diagram of the three-dimensional structure of the cleaning structure of the present invention;

[0026] Figure 3 It is a schematic diagram of the three-dimensional structure of the disturbance mechanism of the present invention;

[0027] Figure 4 This is a schematic diagram of the three-dimensional structure of the loading and moving mechanism of the present invention;

[0028] Figure 5 It is a schematic diagram of the three-dimensional structure of the buffer positioning mechanism of the present invention;

[0029] Figure 6 It is a schematic diagram of the three-dimensional structure of the shock absorbing structure of the present invention;

[0030] Figure 7 It is a schematic diagram of a partial three-dimensional structure of the shock absorbing structure of the present invention;

[0031] Figure 8 It is a schematic diagram of the three-dimensional structure of the anti-sway mechanism of the present invention.

[0032] In the figure: 1, protection frame; 2, protection seat; 3, guide rail; 4, cleaning structure; 5, loading and moving mechanism; 41, pre-degreasing station; 42, main degreasing station; 43, water washing station; 44, drying station 1; 45, varnishing station; 46, drying station 2; 431, disturbance mechanism; 432, circulating water tower filter; 4311, air blower; 4312, shunt pipe; 4313, air supply pipe; 51, moving seat; 52, servo motor; 53, rotating rod; 54, rotating wheel 1; 55, electric push rod; 56, moving plate; 57, telescopic rod; 58, buffer positioning mechanism; 59, rotating shaft; 51 0. Rotating wheel 2; 581. Connecting plate 1; 582. Sliding rod; 583. Folding plate 1; 584. Folding plate 2; 585. Connecting plate 2; 586. Spring shock absorber; 587. Shock-absorbing structure; 5871. Horizontal plate; 5872. Fixed seat; 5873. Cable; 5874. Fixed ring; 5875. Anti-sway mechanism; 5876. Vertical rod; 5877. Hook; 587a. Ring 1; 587b. Vertical plate; 587c. Ring 2; 587d. Buffer spring 1; 587e. Movable ring 1; 587f. Ring 3; 587g. Buffer spring 2; 587h. Movable ring 2. DETAILED DESCRIPTION

[0033] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0034] See also Figure 1-Figure 3, a radiator cleaning production line, comprising a protection frame 1; protection seats 2 are arranged oppositely on the left and right sides of the protection frame 1, the protection frame 1 is fixed to the rear end of the guide rail 3, a cleaning structure 4 is installed on the inner side of the protection frame 1, and a loading and moving mechanism 5 is installed on the inner side of the guide rail 3; the cleaning structure 4 comprises a pre-degreasing station 41, a main degreasing station 42, a water washing station 43, a drying station 1 44, a varnishing station 45, and a drying station 2 46, the pre-degreasing station 41 is installed at the inner front end of the protection frame 1, the rear end of the pre-degreasing station 41 is sequentially arranged with the main degreasing station 42, the water washing station 43, the drying station 1 44, the varnishing station 45, and the drying station 2 46, the top left and right sides of the pre-degreasing station 41 are oppositely A support seat 411 is provided; a plurality of water washing stations 43 are provided, the water washing stations 43 include a disturbance mechanism 431 and a circulating water tower filter 432, the disturbance mechanism 431 is installed at the front and rear ends of the water washing station 43, a circulating water tower filter 432 is provided at the left end of the water washing station 43, the disturbance mechanism 431 includes a blower 4311, a diverter pipe 4312, and an air supply pipe 4313, the front end of the blower 4311 is fixed to the water washing station 43, the blower 4311 is connected to the left end of the diverter pipe 4312, the front end of the diverter pipe 4312 is equidistantly distributed with air supply pipes 4313, the air supply pipe 4313 runs through the rear end of the water washing station 43, and is provided inside the water washing station 43.

[0035] In some embodiments, the air blower 4311 is an ordinary air blower, which is used to deliver air to the shunt pipe 4312 and then blow it out through the air supply pipe 4313, so as to disturb the water in the water washing station 43 and increase the cleaning efficiency of the radiator in the water washing station 43. The water washing station 43 is provided with multiple groups, which can be two groups or three groups, which are not limited here. The circulating water tower filter 432 is used to collect the waste water in the water washing station 43. The circulating water tower filter 432 is an ordinary circulating water filter, which is a kind of filter that directly intercepts impurities in the water, removes suspended matter and particulate matter in the water body, reduces turbidity, purifies water quality, reduces the generation of system dirt, bacteria, algae, rust, etc., so as to purify the water quality and recycle water. The water enters the self-cleaning filter body from the water inlet and is then delivered to the water washing station 4 again. In the spray head of 3, the radiator is cleaned and sprayed to realize water circulation. The pre-degreasing station 41 is used for pre-degreasing the radiator. The pre-degreasing station 41 is added with a degreasing solution to remove the oil stains on the preventive resin filling surface of the radiator. The main degreasing station 42 uses the degreasing solution to chemically react the attachments on the surface of the radiator with the solution and clean them off. Then the radiator enters the water washing station 43 for multiple water washings, enters the drying station 1 44 for hot air drying, and then enters the paint dipping station 45 for paint dipping operation, and finally enters the drying station 2 46 for multiple drying. In this way, the whole cleaning process of the radiator is completed, which changes the traditional high-pressure water jet cleaning technology and the chemical solvent immersion cleaning method, so that the radiator can be cleaned in all directions, and the cleaning cleanliness of the radiator is increased.

[0036] See also Figure 4 , radiator cleaning production line, the loading and moving mechanism 5 includes a moving seat 51, a servo motor 52, a rotating rod 53, a rotating wheel 1 54, an electric push rod 55, a moving plate 56, a telescopic rod 57, a buffer positioning mechanism 58, a rotating shaft 59, and a rotating wheel 2 510. The rotating wheel 1 54 and the rotating wheel 2 510 are both slidably matched with the inner side of the guide rail 3. The bottom of the servo motor 52 is fixed to the moving seat 51, and the output end of the servo motor 52 is transmission matched with the rotating rod 53. The rotating rod 53 is transmission connected with the middle part of the rotating wheel 1 54. The rotating shaft 59 is installed at the rear end of the moving seat 51. The rotating wheel 2 510 is relatively arranged on the left and right sides of the rotating shaft 59. The bottom of the moving seat 51 is fixed with an electric push rod 55, and the bottom of the electric push rod 55 is fixed with the moving plate 56. The top four corners of the moving plate 56 are relatively arranged with telescopic rods 57. The top of the telescopic rod 57 is fixedly connected to the moving seat 51, and the bottom of the moving plate 56 is installed with a buffer positioning mechanism 58.

[0037] In some embodiments, the electric push rod 55 is also known as a linear drive, which is a new type of linear actuator mainly composed of a motor push rod and a control device, etc. It can be considered as an extension of the structure of the rotary motor. The servo motor 52 refers to an engine that controls the operation of mechanical components in the servo system. It is an auxiliary motor indirect speed change device. The servo motor 52 can control the speed and has very accurate position accuracy. It can convert the voltage signal into torque and speed to drive the control object, and there are two groups of servo motors 52. The upper ends of the two groups of servo motors 52 are both provided with a rotating rod 53 and a rotating wheel 1 54. The servo motor 52 drives the rotating wheel 1 54 to rotate through the rotating rod 53, so that the rotating wheel 1 54 rotates on the inner side of the guide rail 3, driving the moving seat 51 to move horizontally on the guide rail 3, and the rotating wheel 2 510 will be driven, so that the moving seat 51 moves smoothly, and the radiator suspended at the bottom is moved to different workstations for cleaning operations.

[0038] See also Figure 5-Figure 8, Radiator cleaning production line, the buffer positioning mechanism 58 includes a connecting plate 1 581, a sliding rod 582, a folding plate 1 583, a folding plate 2 584, a connecting plate 2 585, a spring shock absorber 586, and a shock absorbing structure 587. The top of the connecting plate 1 581 is fixed to the movable plate 56, the folding plate 1 583 and the folding plate 2 584 are arranged in a cross shape, and the intersection of the folding plate 1 583 and the folding plate 2 584 is hinged to each other, the top of the spring shock absorber 586 is fixed to the connecting plate 1 581, the bottom of the spring shock absorber 586 is fixedly connected to the connecting plate 2 585, and the bottom of the connecting plate 2 585 is installed with a shock absorbing structure 587, and a total of four sliding rods 582 are provided, and the sliding rods 582 form a group of two, which are respectively arranged on the connecting plate 1 581 The front and rear ends and the front and rear ends of the connecting plate 2 585, the sliding rod 582 is rotatably connected to the connecting plate 1 581 and the connecting plate 2 585 respectively, the sliding rod 582 is slidably matched with the inner sides of the connecting plates 1 581 and the connecting plate 2 585 respectively, the shock absorbing structure 587 includes a horizontal plate 5871, a fixing seat 5872, a cable 5873, a fixing ring 5874, an anti-sway mechanism 5875, a vertical rod 5876, and a hook 5877, the top of the horizontal plate 5871 is fixed to the connecting plate 2 585, the top of the horizontal plate 5871 is fixed with a fixing seat 5872, the cable 5873 is embedded in the inner side of the fixing seat 5872, and the cable 5873 is fixed to the inner side of the fixing seat 5872, the cable 5873 runs through the middle of the fixing ring 5874, the fixing ring 5874 The top of the anti-sway mechanism 5875 is fixed to the horizontal plate 5871, the cable 5873 runs through the middle of the anti-sway mechanism 5875, the top of the anti-sway mechanism 5875 is fixedly connected to the vertical rod 5876, and the top of the vertical rod 5876 is fixed to the horizontal plate 5871, and a hook 5877 is arranged at the bottom of the cable 5873. The cable 5873, the fixed ring 5874, the anti-sway mechanism 5875, the vertical rod 5876, and the hook 5877 mutually constitute a hook structure, and there are four groups of hook structures, which are arranged at the four corners of the bottom of the horizontal plate 5871. The anti-sway mechanism 5875 includes a circular ring 1 587a, a vertical plate 587b, a circular ring 2 587c, a buffer spring 1 587d, a movable ring 1 587e, a circular ring 3 587f, a buffer spring 2 587g, and a movable ring 2 587h. The circular ring 1 587a is fixed to the bottom of the vertical rod 5876, the vertical plate 587b is fixed to the front end of the circular ring 2 587c, the four inner corners of the circular ring 2 587c are relatively provided with buffer springs 1 587d, the buffer spring 1 587d is fixed to the movable ring 1 587e, the vertical plate 587b is fixed to the outer wall of the circular ring 3 587f, the inner side of the circular ring 3 587f is equidistantly provided with buffer springs 2 587g, the front end of the buffer spring 2 587g is fixed with the movable ring 2 587h, a total of four groups of vertical plates 587b are provided, and the vertical plates 587b are relatively provided along the four inner corners of the circular ring 1 587a, the vertical plates 587b are fixed to the inner side of the circular ring 1 587a, the middle parts of the movable ring 1 587e and the movable ring 2 587h are both cavity-shaped structures,And the center lines of the movable ring 1 587e and the movable ring 2 587h are in the same vertical direction.

[0039] In some embodiments, a damping buffer seat is provided at one end of the buffer spring 1 587d close to the ring 2 587c, and a damping buffer seat is provided at one end of the buffer spring 2 587g close to the ring 3 587f, which is used to absorb the spring force on the buffer spring 1 587d and the buffer spring 2 587g to prevent the buffer spring 1 587d and the buffer spring 2 587g from shaking when they are deformed. The cable 5873 passes through the middle of the movable ring 1 587e and the movable ring 2 587h. When the radiator drives the cable 5873 to shake left and right, the movable ring 1 587e and the movable ring 2 587h will press the buffer spring 1 587d and the buffer spring 2 587g to deform respectively, and the damping buffer seats on the buffer spring 1 587d and the buffer spring 2 587g can absorb the spring force on the buffer spring 1 587d and the buffer spring 2 587g. The recoil force on the buffer spring 587g is absorbed, thereby absorbing the shaking force generated on the cable 5873, so that the cable 5873 can move smoothly. At the same time, when the radiator swings up and down, the cable 5873 will drive the cross plate 5871 and the connecting plate 585 to move through the fixed seat 5872, so that the connecting plate 585 drives the spring shock absorber 586 to deform, absorb the shaking force, and prevent the radiator from shaking up and down, so that the radiator can smoothly enter each workstation, and in the process of deformation of the spring shock absorber 586, the folding plate 1 583 and the folding plate 2 584 on the connecting plate 1 581 and the connecting plate 2 585 will swing with each other, suppressing the vibration of the spring shock absorber 586 when it rebounds after absorbing the shock, so as to improve the smoothness of the movement of the radiator.

[0040] In summary, when in use, the radiator is hung on the bottom of the movable plate 56 by the hook 5877, and then the servo motor 52 drives the rotating wheel 54 to rotate, so that the movable seat 51 moves, so that the radiator enters directly above the pre-degreasing station 41, and then the electric push rod 55 moves downward, driving the movable plate 56 to move downward, and while the electric push rod 55 moves, the telescopic rod 57 is synchronously extended, so that the movable plate 56 moves smoothly, so that the radiator enters the interior of the pre-degreasing station 41, and the pre-degreasing operation is performed;

[0041] After the pre-degreasing is completed, the electric push rod 55 performs a collection movement to lift the radiator, and then the moving seat 51 moves one station. Next, the radiator enters the main degreasing station 42 for degreasing operation. In this way, the radiator enters the water washing station 43, the drying station 1 44, the paint dipping station 45, and the drying station 2 46 in sequence for cleaning operations, so that the radiator can be cleaned in all directions to increase the cleaning cleanliness of the radiator.

[0042] The control method of the present invention is to control by manually starting and closing the switch. The wiring diagram of the power element and the provision of power supply are common knowledge in the field, and the present invention is mainly used to protect mechanical devices, so the present invention will no longer explain the control method and wiring layout in detail.

[0043] The control method of the present invention is automatic control through a controller. The control circuit of the controller can be implemented by simple programming by technicians in this field. The provision of power is also common knowledge in this field. The present invention is mainly used to protect mechanical devices, so the present invention will no longer explain the control method and circuit connection in detail.

[0044] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. Radiator cleaning production line, characterized by: comprising a protective frame (1); Protection seats (2) are arranged opposite to each other on the left and right sides of the protection frame (1); the protection frame (1) is fixed to the rear end of the guide rail (3); a cleaning structure (4) is installed on the inner side of the protection frame (1); and a loading and moving mechanism (5) is installed on the inner side of the guide rail (3); The cleaning structure (4) comprises a pre-degreasing station (41), a main degreasing station (42), a water washing station (43), a drying station (44), a paint dipping station (45), and a drying station (46); the pre-degreasing station (41) is installed at the inner front end of the protection frame (1); the rear end of the pre-degreasing station (41) is provided with the main degreasing station (42), the water washing station (43), the drying station (44), the paint dipping station (45), and the drying station (46) in sequence; and support seats (411) are provided on the left and right sides of the top of the pre-degreasing station (41) opposite to each other; The water washing station (43) is provided with a plurality of groups, and the water washing station (43) comprises a disturbance mechanism (431) and a circulating water tower filter (432). The disturbance mechanism (431) is installed at the front and rear ends of the water washing station (43), and the circulating water tower filter (432) is provided at the left end of the water washing station (43); The loading and moving mechanism (5) comprises a moving seat (51), a servo motor (52), a rotating rod (53), a rotating wheel 1 (54), an electric push rod (55), a moving plate (56), a telescopic rod (57), a buffer positioning mechanism (58), a rotating shaft (59), and a rotating wheel 2 (510). The rotating wheel 1 (54) and the rotating wheel 2 (510) are both slidably matched with the inner side of the guide rail (3). The bottom of the servo motor (52) is fixed to the moving seat (51). The output end of the servo motor (52) is in transmission cooperation with the rotating rod (53). The rotating rod (53) is in transmission cooperation with the inner side of the guide rail (3). The middle part of the rotating wheel (54) is connected to the transmission, the rotating shaft (59) is installed at the rear end of the moving seat (51), the rotating wheel (510) is arranged opposite to each other on the left and right sides of the rotating shaft (59), the bottom of the moving seat (51) is fixed with an electric push rod (55), the bottom of the electric push rod (55) is fixed to the moving plate (56), the top four corners of the moving plate (56) are arranged opposite to each other with telescopic rods (57), the top of the telescopic rod (57) is fixedly connected to the moving seat (51), and the bottom of the moving plate (56) is installed with a buffer positioning mechanism (58); The disturbance mechanism (431) comprises an air blower (4311), a flow diverter pipe (4312), and an air supply pipe (4313); the front end of the air blower (4311) is fixed to the water washing station (43); the air blower (4311) is connected to the left end of the flow diverter pipe (4312); the air supply pipes (4313) are equidistantly distributed at the front end of the flow diverter pipe (4312); the air supply pipes (4313) penetrate the rear end of the water washing station (43) and are arranged inside the water washing station (43); The buffer positioning mechanism (58) comprises a connecting plate 1 (581), a sliding rod (582), a folding plate 1 (583), a folding plate 2 (584), a connecting plate 2 (585), a spring shock absorber (586), and a shock absorbing structure (587). The top of the connecting plate 1 (581) is fixed to the movable plate (56), the folding plate 1 (583) and the folding plate 2 (584) are arranged in a cross shape, and the intersection of the folding plate 1 (583) and the folding plate 2 (584) is hinged to each other, the top of the spring shock absorber (586) is fixed to the connecting plate 1 (581), the bottom of the spring shock absorber (586) is fixedly connected to the connecting plate 2 (585), and the bottom of the connecting plate 2 (585) is installed with a shock absorbing structure (587).

2. The radiator cleaning production line according to claim 1, characterized in that: A total of four sliding rods (582) are provided, and the sliding rods (582) are arranged in pairs to form a group, and are respectively provided at the front and rear ends of the first connecting plate (581) and the front and rear ends of the second connecting plate (585). The sliding rods (582) are respectively slidably matched with the inner sides of the first connecting plate (581) and the second connecting plate (585), and the sliding rods (582) are respectively rotatably connected to the first connecting plate (581) and the second connecting plate (585).

3. The radiator cleaning production line according to claim 1, characterized in that: The shock absorbing structure (587) comprises a horizontal plate (5871), a fixing seat (5872), a cable (5873), a fixing ring (5874), an anti-sway mechanism (5875), a vertical rod (5876), and a hook (5877). The top of the horizontal plate (5871) is fixed to the second connecting plate (585). The top of the horizontal plate (5871) is fixed with the fixing seat (5872). The cable (5873) is embedded in the inner side of the fixing seat (5872), and the cable (5873) and the fixing seat are connected. The cable (5873) is fixed to the inner side of the fixing ring (5872), the cable (5873) passes through the middle of the fixing ring (5874), the top of the fixing ring (5874) is fixed to the horizontal plate (5871), the cable (5873) passes through the middle of the anti-sway mechanism (5875), the top of the anti-sway mechanism (5875) is fixedly connected to the vertical rod (5876), and the top of the vertical rod (5876) is fixed to the horizontal plate (5871), and the bottom of the cable (5873) is provided with a hook (5877).

4. The radiator cleaning production line according to claim 3, characterized in that: The cable (5873), the fixing ring (5874), the anti-sway mechanism (5875), the vertical rod (5876), and the hook (5877) mutually constitute a hook structure, and there are four groups of hook structures, which are arranged at the four bottom corners of the horizontal plate (5871).

5. The radiator cleaning production line according to claim 3, characterized in that: The anti-sway mechanism (5875) comprises a circular ring 1 (587a), a vertical plate (587b), a circular ring 2 (587c), a buffer spring 1 (587d), a movable ring 1 (587e), a circular ring 3 (587f), a buffer spring 2 (587g), and a movable ring 2 (587h); the circular ring 1 (587a) is fixed to the bottom of the vertical rod (5876); the vertical plate (587b) is fixed to the front end of the circular ring 2 (587c). , buffer springs 1 (587d) are arranged at four opposite inner corners of the second circular ring (587c), the buffer spring 1 (587d) is fixed to the movable ring 1 (587e), the vertical plate (587b) is fixed to the outer wall of the third circular ring (587f), buffer springs 2 (587g) are arranged at equal distances on the inner side of the third circular ring (587f), and the front end of the buffer spring 2 (587g) is fixed to the movable ring 2 (587h).

6. The radiator cleaning production line according to claim 5, characterized in that: A total of four groups of the vertical plates (587b) are provided, and the vertical plates (587b) are arranged opposite to each other along the four inner corners of the first circular ring (587a), and the vertical plates (587b) are fixed to the inner side of the first circular ring (587a).

7. The radiator cleaning production line according to claim 5, characterized in that: The middle parts of the movable ring 1 (587e) and the movable ring 2 (587h) are both hollow structures, and the center lines of the movable ring 1 (587e) and the movable ring 2 (587h) are in the same vertical direction.

Citation Information

Patent Citations

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    CN115945431A

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