Harmonica tube water-cooling plate vertical cleaning equipment

By designing a vertical cleaning device for harmonica tube water-cooled plates, vertical tooling and cleaning components are used to achieve vertical lifting and internal cleaning, solving the problem that existing equipment is difficult to remove aluminum shavings and impurities, and improving cleaning efficiency and product performance.

CN118988871BActive Publication Date: 2026-07-31芜湖汇展新能源科技有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
芜湖汇展新能源科技有限公司
Filing Date
2024-09-26
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Existing harmonica tube water-cooled plate cleaning equipment is insufficient to remove internal aluminum shavings and impurities, affecting product performance.

Method used

A vertical cleaning device for harmonica tube water-cooled plates was designed, including a frame, an ultrasonic cleaning tank, a rinsing tank, a dryer, and a lifting mechanism. The vertical tooling and cleaning components enable vertical lifting and internal cleaning of the harmonica tube water-cooled plates, and ultrasonic waves and airflow circulation are used to remove aluminum shavings and impurities.

Benefits of technology

It effectively removes aluminum shavings and impurities from inside the harmonica tube water-cooled plate, improving the cleanliness and performance of the product.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to the field of cleaning equipment technology, specifically to a vertical cleaning device for harmonica tube water-cooled plates. The device includes a frame with an adjustable lifting mechanism below it. The output end of the lifting mechanism is equipped with a vertical fixture for loading the harmonica tube water-cooled plate. A cleaning component is mounted on the vertical fixture to clean the interior of the harmonica tube water-cooled plate. The cleaning component on the vertical fixture removes aluminum shavings and impurities from the harmonica tube, thus improving the cleanliness of the water-cooled plate. After cleaning, the plate is dried using an air-drying machine, a first hot air dryer, and a second hot air dryer, completing the cleaning process. Finally, the plate is discharged through a discharge port. By using vertical cleaning, aluminum shavings and impurities can be thoroughly removed from the harmonica tube water-cooled plate, ensuring the internal cleanliness of the product and effectively improving its performance.
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Description

Technical Field

[0001] This invention relates to the field of cleaning equipment technology, and in particular to a vertical cleaning device for harmonica tube water-cooled plates. Background Technology

[0002] Due to their internal structure, existing harmonica tube water-cooled plates require effective internal cleaning. However, most current ultrasonic cleaning equipment is placed on its side or at an angle, making it difficult to remove impurities from inside the harmonica tube.

[0003] For example, CN116274172A discloses a dual-head automatic cleaning device for harmonica tubes, which can rotate the product 360 degrees to achieve all-round cleaning without dead angles and improve cleaning efficiency. Although the patent has a high degree of automation and can achieve comprehensive cleaning, it is still difficult to fully remove the impurities inside the harmonica tube water-cooling plate, thus affecting the performance of the harmonica tube water-cooling plate. Therefore, in the long-term research and development testing process, it was found that the existing harmonica tube water-cooling plate cleaning equipment is difficult to fully remove aluminum shavings and impurities inside the harmonica tube water-cooling plate, which easily leads to internal dirt in the product and reduces the performance of the harmonica tube water-cooling plate. Summary of the Invention

[0004] In view of this, the purpose of this invention is to provide a vertical cleaning device for harmonica tube water-cooled plates, so as to solve the problem that it is difficult for harmonica tube water-cooled plate cleaning devices to fully remove aluminum shavings and impurities from the harmonica tube water-cooled plates.

[0005] To achieve the above objectives, the present invention provides a vertical cleaning device for harmonica tube water-cooled plates, comprising: a frame, and a feed inlet disposed below the frame; a first ultrasonic cleaning tank disposed on one side of the feed inlet, a second ultrasonic cleaning tank disposed on one side of the first ultrasonic cleaning tank, a first bubbling rinsing tank disposed on one side of the second ultrasonic cleaning tank, a second bubbling rinsing tank disposed on one side of the first bubbling rinsing tank, a hot water rinsing tank disposed on one side of the second bubbling rinsing tank, an air-cutting dryer disposed on one side of the air-cutting dryer, a first hot air dryer disposed on one side of the air-cutting dryer, a second hot air dryer disposed on one side of the first hot air dryer, and a discharge outlet disposed on one side of the second hot air dryer; an adjustable lifting mechanism is disposed below the frame; a vertical fixture for loading the harmonica tube water-cooled plate is disposed at the output end of the lifting mechanism, and a cleaning component is disposed on the vertical fixture for cleaning the interior of the harmonica tube water-cooled plate.

[0006] Preferably, the lifting mechanism includes: a guide rail, fixedly installed on the upper inner side of the frame; a movable trolley is slidably and adjustablely installed below the guide rail; a lifting cable is retractably and adjustablely installed below the movable trolley; the end of the lifting cable away from the movable trolley is fixedly connected to a vertical fixture; and at least four sets of lifting cables are provided.

[0007] Preferably, the vertical fixture includes: a hanging plate, fixedly installed at one end of a sling; columns are fixedly installed at all four ends of the hanging plate; suspension plates are fixedly installed at the bottom of the four columns; steel ropes are fixedly installed on both sides of the suspension plates near both ends; a fixture frame is fixedly installed at one end of each of the four steel ropes; the fixture frame has a U-shaped structure; and elastic clamping mechanisms for fixing the harmonica tube water-cooling plate are provided on both sides inside the fixture frame.

[0008] Preferably, the elastic clamping mechanism includes: an airbag, fixedly installed inside the tooling frame; a valve is fixedly installed on one side of the tooling frame; one end of the valve passes through the tooling frame and is fixedly connected to the airbag; baffles are symmetrically slidably arranged on both sides of the airbag; the two ends of the baffles are adjustablely installed on the inner wall of the tooling frame; at least two airbags are symmetrically arranged; and the harmonica tube water-cooling plate is located between the two airbags.

[0009] Preferably, the cleaning assembly includes: an air inlet box, fixedly installed below the hanging plate, with an air filter fixedly installed at the air inlet of the air inlet box; an air collection box fixedly installed between the four columns; an air pump fixedly installed at the center of the periphery of at least one of the columns; the air inlet end of the air pump is fixedly connected to the air outlet end of the air inlet box; the air outlet end of the air pump is fixedly connected to the air inlet end of the air collection box; a backup power supply is fixedly installed above the air collection box; and a control terminal is fixedly installed above the backup power supply; multiple air pipes fixedly connected to the air outlet end of the air collection box; an electromagnetic one-way valve fixedly installed at the periphery of the multiple air pipes near the air collection box; the ends of the multiple air pipes away from the air collection box passing through the tooling frame and connecting to the harmonica tube water-cooled plate; and a winding mechanism for adjusting the extension position of the multiple air pipe ends below the hanging plate, the winding mechanism being used to adjust the position of the multiple air pipe ends within the cavity of the harmonica tube water-cooled plate.

[0010] Preferably, the winding mechanism includes: a support column, fixedly installed at one end of the lower center of the suspension plate, a servo motor fixedly installed at the bottom end of the support column, a plurality of axially arranged winding drums fixedly installed at the output end of the servo motor, a positioning column fixedly installed at the other end of the lower center of the suspension plate, one side of the positioning column being rotatably connected to the winding drum, a plurality of air tubes being wound around the periphery of each winding drum, and the servo motor synchronously driving the plurality of winding drums to rotate to adjust the position of the end of the air tube inside the harmonica tube water-cooled plate; a hollow guide tube, fixedly installed on one side inside the tooling frame, a plurality of hollow guide tubes being provided, and the plurality of hollow guide tubes being movably sleeved with each of the air tubes; and an air supply pipe fixedly connected between the air collection box and the air bag, with a one-way control valve fixedly installed at one end of the outer periphery of the air supply pipe.

[0011] Preferably, the cleaning assembly further includes: a fixing frame, fixedly installed inside one end of the air tube; the fixing frame has a hollow structure; a round rod is rotatably inserted into the middle of the fixing frame; fan blades are fixedly installed at the top and the middle of the outer perimeter of the round rod; a base is fixedly installed through the fixing frame at the bottom end of the round rod; a cleaning sleeve is fixedly fitted around the outer perimeter of the base; the top of the cleaning sleeve extends to the outer perimeter of the air tube and fits against the air tube; a silicone ring is fixedly installed around the upper perimeter of the base; the outer perimeter of the silicone ring fits against the inner wall of the cleaning sleeve, and the top of the silicone ring fits against the end of the air tube; multiple annularly arranged air guide vanes are fixedly installed above the base; the rotating silicone ring deforms and expands to squeeze the cleaning sleeve, so that the cleaning sleeve cleans the inside of the harmonica tube water-cooling plate; a first limiting part extends around the outer perimeter of the round rod above the fixing frame; a second limiting part extends around the outer perimeter of the round rod below the fixing frame; and a counterweight is embedded at one end of the air tube.

[0012] Preferably, the output end of the lifting mechanism is further provided with a feeding mechanism for replenishing the first ultrasonic cleaning tank, the second ultrasonic cleaning tank, the first bubbling rinsing tank, the second bubbling rinsing tank, and the hot water rinsing tank.

[0013] The beneficial effects of this invention are as follows: By placing the harmonica tube water-cooled plate into a vertical fixture, and then placing the fixture with the harmonica tube water-cooled plate installed into the feed inlet, the vertical fixture is lifted by a lifting mechanism and sequentially placed into a first ultrasonic cleaning tank, a second ultrasonic cleaning tank, a first bubbling rinsing tank, a second bubbling rinsing tank, and a hot water rinsing tank. During the cleaning process, the cleaning components on the vertical fixture can remove aluminum shavings and impurities inside the harmonica tube, thereby improving the cleanliness of the harmonica tube water-cooled plate. After cleaning, it is dried by an air-cutting dryer, a first hot air dryer, and a second hot air dryer. After complete cleaning, the product is discharged through the discharge port. By using vertical cleaning, aluminum shavings and impurities inside the harmonica tube water-cooled plate can be thoroughly removed, ensuring the internal cleanliness of the product and effectively improving the performance of the harmonica tube water-cooled plate. Attached Figure Description

[0014] To more clearly illustrate the technical solutions in this invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only for this invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0015] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0016] Figure 2 This is a schematic diagram of the main structure of the framework of the present invention;

[0017] Figure 3 This is a schematic diagram of the vertical tooling structure of the present invention;

[0018] Figure 4 for Figure 3 Enlarged structural diagram at point A in the middle;

[0019] Figure 5 for Figure 3 Enlarged structural diagram at point B;

[0020] Figure 6 This is a schematic cross-sectional view of the tracheal end of the present invention;

[0021] Figure 7 This is a schematic diagram of the three-dimensional structure of the tooling frame of the present invention;

[0022] Figure 8 This is a three-dimensional cross-sectional view of the trachea of ​​the present invention.

[0023] The diagram is labeled as follows: 1. Feed inlet; 2. First ultrasonic cleaning tank; 3. Second ultrasonic cleaning tank; 4. First bubbling rinsing tank; 5. Second bubbling rinsing tank; 6. Hot water rinsing tank; 7. Air dryer; 8. First hot air dryer; 9. Second hot air dryer; 10. Discharge outlet; 11. Feeding mechanism; 12. Lifting mechanism; 13. Frame; 14. Guide rail; 141. Moving trolley; 142. Sling; 15. Hanging plate; 151. Column; 152. Suspension plate; 153. Air inlet box; 154. Air filter; 155. Air collection box; 156. Air pump; 157. 158. Backup power supply; 16. Control terminal; 17. Support column; 18. Servo motor; 19. Winding drum; 10. Positioning column; 11. Air pipe; 12. Electromagnetic check valve; 13. Tooling frame; 14. Steel rope; 155. Hollow guide tube; 16. Air supply pipe; 176. Airbag; 187. Valve; 188. Barrier frame; 19. Fixture frame; 109. Round rod; 100. Fan blade; 101. First limit part; 102. Second limit part; 103. Counterweight; 104. Chassis; 105. Cleaning sleeve; 106. Silicone ring; 107. Air guide plate. Detailed Implementation

[0024] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to specific embodiments. Example

[0025] like Figure 1As shown, a vertical cleaning device for harmonica tube water-cooled plates includes: a frame 13, and a feed inlet 1 disposed below the frame 13. A first ultrasonic cleaning tank 2 is disposed on one side of the feed inlet 1, a second ultrasonic cleaning tank 3 is disposed on one side of the first ultrasonic cleaning tank 2, a first bubbling rinsing tank 4 is disposed on one side of the second ultrasonic cleaning tank 3, a second bubbling rinsing tank 5 is disposed on one side of the first bubbling rinsing tank 4, a hot water rinsing tank 6 is disposed on one side of the second bubbling rinsing tank 5, an air-cutting dryer 7 is disposed on one side of the air-cutting dryer 7, a first hot air dryer 8 is disposed on one side of the first hot air dryer 8, a second hot air dryer 9 is disposed on one side of the second hot air dryer 9, and a discharge outlet 10 is disposed on one side of the second hot air dryer 9. A lifting mechanism 12 is adjustablely disposed below the frame 13. A vertical fixture for loading the harmonica tube water-cooled plate is disposed at the output end of the lifting mechanism 12. A cleaning component is disposed on the vertical fixture for cleaning the interior of the harmonica tube water-cooled plate.

[0026] The process involves placing the harmonica tube water-cooled plate into a vertical fixture, then placing the fixture with the water-cooled plate installed at the inlet 1. The fixture is then lifted by the lifting mechanism 12 and sequentially placed into the first ultrasonic cleaning tank 2, the second ultrasonic cleaning tank 3, the first bubbling rinsing tank 4, the second bubbling rinsing tank 5, and the hot water rinsing tank 6. During the cleaning process, the cleaning components on the vertical fixture remove aluminum shavings and impurities from the harmonica tube, thereby improving the cleanliness of the harmonica tube water-cooled plate. After cleaning, the plate is dried by the air-cutting dryer 7, the first hot air dryer 8, and the second hot air dryer 9. After complete cleaning, the plate is discharged through the outlet 10. By using vertical cleaning, the aluminum shavings and impurities inside the harmonica tube water-cooled plate can be thoroughly removed, ensuring the internal cleanliness of the product and effectively improving the performance of the harmonica tube water-cooled plate.

[0027] To facilitate the vertical lifting and transport of vertical fixtures and maintain their vertical position during the cleaning process, such as Figure 1 and Figure 2As shown, the lifting mechanism 12 includes: a guide rail 14, which is bolted to the upper inner side of the frame 13; a movable trolley 141 is slidably and adjustablely mounted below the guide rail 14, the movable trolley 141 being driven by a motor to move its wheels on the guide rail 14; and a sling 142 is adjustablely and retractably mounted below the movable trolley 141, the sling 142 being retractable and adjustable by a winding machine. The end of the sling 142 away from the movable trolley 141 is bolted to a vertical fixture. At least four sets of slings 142 are provided. The four sets of equipment can further improve the stability during hoisting. The output end of the hoisting mechanism 12 is also equipped with a feeding mechanism 11 for replenishing the first ultrasonic cleaning tank 2, the second ultrasonic cleaning tank 3, the first bubbling rinsing tank 4, the second bubbling rinsing tank 5 and the hot water rinsing tank 6. The feeding mechanism 11 can conveniently add new rinsing solution to the first ultrasonic cleaning tank 2, the second ultrasonic cleaning tank 3, the first bubbling rinsing tank 4, the second bubbling rinsing tank 5 and the hot water rinsing tank 6. The feeding mechanism 11 can be composed of a water pump and a water pipe installed on the water pump. Example

[0028] Furthermore, such as Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 7 As shown, the vertical fixture includes: a hanging plate 15, which is fixedly installed at one end of a sling 142 by bolts; columns 151 are fixedly installed at all four ends of the hanging plate 15 by bolts; suspension plates 152 are fixedly installed at the bottom ends of the four columns 151 by bolts; steel ropes 171 are fixedly installed on both sides of the suspension plates 152 near both ends by bolts; a fixture frame 17 is fixedly installed at one end of the four steel ropes 171 by bolts; the fixture frame 17 has a U-shaped structure; and elastic clamping mechanisms for fixing harmonica tube water-cooling plates are provided on both sides inside the fixture frame 17.

[0029] The tooling frame 17 is installed below the suspension plate 152 by steel rope 171, which can further improve the flexibility of the tooling frame 17 during hoisting. At the same time, when the harmonica tube water-cooled plate immersed in the rinsing solution is submerged in the rinsing solution, it can effectively prevent the sling 142 from being immersed in the rinsing solution, thereby preventing the oil on the surface of the sling 142 from contaminating the rinsing solution. The elastic clamping mechanism provided on the tooling frame 17 can conveniently clamp and fix the harmonica tube water-cooled plate of various sizes and specifications.

[0030] The elastic clamping mechanism includes: an airbag 174, which is fixedly installed inside the tooling frame 17 by bolts; a valve 175 is fixedly installed on one side of the tooling frame 17 by bolts; one end of the valve 175 passes through the tooling frame 17 and is connected to the airbag 174 by bolts; a baffle 176 is symmetrically slidably arranged on both sides of the airbag 174; the two ends of the baffle 176 are adjustablely installed on the inner wall of the tooling frame 17; at least two airbags 174 are symmetrically arranged; and the harmonica tube water-cooling plate is located between two airbags 174.

[0031] The harmonica tube water-cooling plate is placed between two airbags 174. Air is injected into the airbags 174 through the valve 175, so that the inflated airbags 174 can clamp the harmonica tube water-cooling plate. At the same time, by adjusting the position of the baffle 176 on the airbags 174, the pressure inside the airbags 174 can be further increased, so that the airbags 174 can effectively clamp the harmonica tube water-cooling plate and improve the clamping effect during the rinsing and cleaning process. Example

[0032] Furthermore, such as Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 7As shown, the cleaning assembly includes: an air inlet box 153, which is bolted to the bottom of the hanging plate 15; an air filter 154 is bolted to the air inlet of the air inlet box 153; an air collection box 155 is bolted between four columns 151; and an air pump 156 is bolted to the center of the periphery of at least one column 151. The air inlet of the air pump 156 is bolted to the air outlet of the air inlet box 153, and the air outlet of the air pump 156 is bolted to the air inlet of the air collection box 155. A backup power supply 157 is bolted to the top of the air collection box 155, and a control terminal 158 is bolted to the top of the backup power supply 157. Air entering the air intake box 153 is first filtered and impurities removed by the air filter element 154, preventing contamination when the air pump 156 delivers air from the air intake box 153 to the air collection box 155. The backup power supply 157 provides power, and the control terminal 158 facilitates user start / stop operation. Specifically, the control terminal 158... This can be achieved using existing technology; multiple air tubes 164 are bolted to the outlet of the air collection box 155. An electromagnetic one-way valve 165 is bolted to the outer end of each air tube 164 near the air collection box 155. The outer end of each air tube 164 away from the air collection box 155 passes through the tooling frame 17 and connects to the harmonica tube water-cooling plate. A winding mechanism is provided below the suspension plate 152 to adjust the extension position of the ends of the multiple air tubes 164. The winding mechanism is used to adjust the position of the ends of the multiple air tubes 164 on the harmonica tube. The position of each air pipe 164 inside the water-cooled plate is adjusted by a winding mechanism. At the same time, the air pipe 164 is connected to the air collection box 155 by an electromagnetic one-way valve 165, so that the gas inside the air collection box 155 is delivered to the inside of the harmonica tube water-cooled plate through the air pipe 164. The impact of the airflow creates a circulating vortex inside and outside the harmonica tube water-cooled plate, which drives the rinsing liquid to clean the inside of the harmonica tube water-cooled plate to remove excess aluminum chips and impurities, ensuring the cleanliness of the product's interior.

[0033] Furthermore, the winding mechanism includes: a support column 16, bolted to one end of the lower center of the suspension plate 152; a servo motor 161 bolted to the bottom of the support column 16; a plurality of axially arranged winding drums 162 bolted to the output end of the servo motor 161; and a positioning post 163 bolted to the other end of the lower center of the suspension plate 152. One side of the positioning post 163 is rotatably connected to the winding drum 162. A plurality of air tubes 164 are wound around the periphery of each winding drum 162. The servo motor 161 synchronously drives the plurality of winding drums 162 to rotate, thereby adjusting the position of the ends of the air tubes 164 inside the harmonica tube water-cooled plate. The synchronous rotation of the winding drums 162 driven by the servo motor 161 adjusts the winding position of the air tubes 164 wound on the winding drums 162, thus changing the height of the bottom ends of each air tube 164. The system allows for movement and adjustment within the harmonica tube water-cooled plate. A hollow guide tube 172 is bolted to one side of the tooling frame 17. Multiple hollow guide tubes 172 are provided, each movably connected to an air tube 164. These hollow guide tubes 172 effectively guide the bottom of the air tube 164 towards the interior of the harmonica tube water-cooled plate within the tooling frame 17, facilitating cleaning of the harmonica tube water-cooled plate's interior. An air supply pipe 173 connects the air collection box 155 and the air bladder 174 via bolts. A one-way control valve is bolted to one end of the air supply pipe 173, controlling the amount of gas supplied from the air collection box 155 to the air bladder 174 via the air supply pipe 173. This facilitates rapid inflation of the air bladder 174 and improves the ease of clamping and fixing the harmonica tube water-cooled plate. Example

[0034] Furthermore, such as Figure 6 and Figure 8As shown, the cleaning assembly further includes: a fixing frame 18, which is bolted to one end of the air tube 164. The fixing frame 18 has a hollow structure, which effectively guides the airflow and rinsing liquid to circulate within the harmonica tube water-cooled plate. A round rod 181 is rotatably inserted into the middle of the fixing frame 18. Fan blades 182 are bolted to the top and the middle of the outer periphery of the round rod 181. The bottom end of the round rod 181 passes through the fixing frame 18 and is bolted to a base 186. A cleaning sleeve 187 is fixedly sleeved around the outer periphery of the base 186. The top of the cleaning sleeve 187 extends to the air tube 164. 4. A silicone ring 188 is bolted to the outer periphery of the chassis 186 and fits into the air pipe 164. The outer periphery of the silicone ring 188 fits into the inner wall of the cleaning sleeve 187, and the top of the silicone ring 188 fits into the end of the air pipe 164. Multiple annularly arranged air guide vanes 189 are bolted to the top of the chassis 186. The rotating silicone ring 188 deforms and expands to squeeze the cleaning sleeve 187, so that the cleaning sleeve 187 cleans the inside of the harmonica tube water cooling plate. When the airflow inside the air pipe 164 passes through the bottom end of the air pipe 164, the airflow passes through the fan blade 182 and the air guide vanes 189. 9. The drive rod 181 rotates. As the airflow velocity inside the air tube 164 increases, the rod 181 drives the chassis 186 to rotate at high speed. The silicone ring 188 on the upper edge of the chassis 186 expands outward due to centrifugal force. At the same time, due to the high air pressure at the bottom of the air tube 164, more air flows out from the gap between the silicone ring 188 and the air tube 164, further deforming the silicone ring 188. This allows it to compress the cleaning sleeve 187 on the outer periphery of the chassis 186. The compressed cleaning sleeve 187 further improves the fit of the harmonica tube water-cooled plate to the inner wall. Simultaneously, the circulating airflow and rinsing fluid... The cleaning system effectively cleans the inside of the harmonica tube's water-cooled plate, further removing excess aluminum shavings and impurities to ensure the product's internal cleanliness. A first limiting part 183 extends around the periphery of the round rod 181 above the fixing frame 18, and a second limiting part 184 extends around the periphery of the round rod 181 below the fixing frame 18. A counterweight 185 is embedded at one end of the air tube 164. By providing the first limiting part 183 and the second limiting part 184 on the round rod 181, the round rod 181 can be limited on the fixing frame 18, allowing the cleaning sleeve 187 to cover the bottom periphery of the air tube 164 when no gas is introduced.

[0035] Those skilled in the art should understand that the discussion of any of the above embodiments is merely exemplary and is not intended to imply that the scope of the invention (including the claims) is limited to these examples; within the framework of the invention, the technical features of the above embodiments or different embodiments can also be combined, the steps can be implemented in any order, and there are many other variations of the different aspects of the invention as described above, which are not provided in the details for the sake of brevity.

Claims

1. A vertical cleaning device for water-cooled plates of harmonica tubes, characterized in that, include: The frame (13) and the feed inlet (1) located below the frame (13) are provided on one side of the feed inlet (1), which is provided with a first ultrasonic cleaning tank (2), a second ultrasonic cleaning tank (3), a first bubbling rinsing tank (4), a second bubbling rinsing tank (5), a hot water rinsing tank (6), an air-cutting dryer (7), a first hot air dryer (8), and a second hot air dryer (9). The second hot air dryer (9) is provided with a discharge port (10) on one side. The frame (13) is provided with an adjustable lifting mechanism (12) below it. The lifting mechanism (12) is provided with a vertical fixture for loading the harmonica tube water-cooled plate at its output end. The vertical fixture is provided with a cleaning component for cleaning the inside of the harmonica tube water-cooled plate. The cleaning assembly includes: multiple air tubes (164), one end of which is connected to the harmonica tube water-cooling plate; the vertical fixture includes: a hanging plate (15), with columns (151) fixedly installed at all four ends below the hanging plate (15), and a suspension plate (152) fixedly installed at the bottom of the four columns (151); a winding mechanism for adjusting the extension position of the ends of the multiple air tubes (164) is provided below the suspension plate (152); the winding mechanism is used to adjust the position of the ends of the multiple air tubes (164) in the inner cavity of the harmonica tube water-cooling plate. The cleaning assembly further includes: a fixing frame (18), which is fixedly installed inside one end of the air tube (164). A round rod (181) is rotatably inserted into the middle of the fixing frame (18). Fan blades (182) are fixedly installed at the top and the middle of the outer periphery of the round rod (181). A chassis (186) is fixedly installed through the fixing frame (18) at the bottom end of the round rod (181). A cleaning sleeve (187) is fixedly sleeved around the outer periphery of the chassis (186). The top of the cleaning sleeve (187) extends to the outer periphery of the air tube (164) and is connected to the cleaning sleeve (187). The air tube (164) is fitted together, and a silicone ring (188) is fixedly installed on the upper four edges of the chassis (186). The outer periphery of the silicone ring (188) is fitted to the inner wall of the cleaning sleeve (187), and the top of the silicone ring (188) is fitted to the end of the air tube (164). Multiple annularly arranged air guides (189) are fixedly installed on the upper part of the chassis (186). The silicone ring (188) in the rotating state deforms and expands to squeeze the cleaning sleeve (187), so that the cleaning sleeve (187) cleans the inside of the harmonica tube water cooling plate.

2. The vertical cleaning equipment for harmonica tube water-cooled plates according to claim 1, characterized in that, The lifting mechanism (12) includes: The guide rail (14) is fixedly installed on the upper inner side of the frame (13). A movable trolley (141) is slidably and adjustablely installed below the guide rail (14). A lifting sling (142) is installed below the movable trolley (141) and can be wound up and adjusted. The end of the lifting sling (142) away from the movable trolley (141) is fixedly connected to the vertical fixture. At least four sets of lifting slings (142) are provided.

3. The vertical cleaning equipment for harmonica tube water-cooled plates according to claim 2, characterized in that, The vertical fixture includes: A hanging plate (15) is fixedly installed at one end of a sling (142). Columns (151) are fixedly installed at the four ends of the hanging plate (15). Suspension plates (152) are fixedly installed at the bottom of the four columns (151). Steel ropes (171) are fixedly installed on both sides of the suspension plate (152) near both ends. A tooling frame (17) is fixedly installed at one end of the four steel ropes (171). The tooling frame (17) has a U-shaped structure. Elastic clamping mechanisms for fixing harmonica tube water-cooled plates are provided on both sides inside the tooling frame (17).

4. A vertical cleaning device for harmonica tube water-cooled plates according to claim 3, characterized in that, The elastic clamping mechanism includes: An airbag (174) is fixedly installed inside the tooling frame (17). A valve (175) is fixedly installed on one side of the tooling frame (17). One end of the valve (175) passes through the tooling frame (17) and is fixedly connected to the airbag (174). A baffle (176) is symmetrically slidably arranged on both sides of the airbag (174). The two ends of the baffle (176) are adjustablely installed on the inner wall of the tooling frame (17). There are at least two airbags (174) symmetrically arranged. The harmonica tube water-cooled plate is located between the two airbags (174).

5. A vertical cleaning device for harmonica tube water-cooled plates according to claim 3, characterized in that, The cleaning component also includes: An air intake box (153) is fixedly installed below the hanging plate (15). An air filter (154) is fixedly installed at the air inlet of the air intake box (153). An air collection box (155) is fixedly installed between the four columns (151). An air pump (156) is fixedly installed in the middle of the periphery of at least one of the columns (151). The air inlet of the air pump (156) is fixedly connected to the air outlet of the air intake box (153). The air outlet of the air pump (156) is fixedly connected to the air inlet of the air collection box (155). A backup power supply (157) is fixedly installed above the air collection box (155). A control terminal (158) is fixedly installed above the backup power supply (157). Multiple air pipes (164) are fixedly connected to the air outlet of the air collection box (155). An electromagnetic one-way valve (165) is fixedly installed at the outer end of the multiple air pipes (164) near the air collection box (155). The outer end of the multiple air pipes (164) away from the air collection box (155) is inserted into the tooling frame (17) and connected to the harmonica tube water cooling plate.

6. A vertical cleaning device for harmonica tube water-cooled plates according to claim 5, characterized in that, The winding mechanism includes: A support column (16) is fixedly installed at one end of the lower middle part of the suspension plate (152). A servo motor (161) is fixedly installed at the bottom end of the support column (16). Multiple axially arranged take-up drums (162) are fixedly installed at the output end of the servo motor (161). A positioning column (163) is fixedly installed at the other end of the lower middle part of the suspension plate (152). One side of the positioning column (163) is rotatably connected to the take-up drum (162). Multiple air tubes (164) are respectively wound around the periphery of each take-up drum (162). The servo motor (161) synchronously drives the multiple take-up drums (162) to rotate in order to adjust the position of the end of the air tube (164) inside the harmonica tube water-cooled plate. Hollow guide tube (172) is fixedly installed inside one side of the tooling frame (17). Multiple hollow guide tubes (172) are provided, and multiple hollow guide tubes (172) are movably connected to each of the air pipes (164). An air supply pipe (173) is fixedly connected between the air collection box (155) and the air bag (174), and a one-way control valve is fixedly installed at one end of the outer periphery of the air supply pipe (173).

7. A vertical cleaning device for harmonica tube water-cooled plates according to claim 1, characterized in that, The fixing frame (18) has a hollow structure; The outer periphery of the round rod (181) above the fixed frame (18) has a first limiting part (183), and the outer periphery of the round rod (181) below the fixed frame (18) has a second limiting part (184). One end of the air tube (164) is inlaid with a counterweight (185).

8. A vertical cleaning device for harmonica tube water-cooled plates according to claim 1, characterized in that, The output end of the lifting mechanism (12) is also provided with a feeding mechanism (11) for replenishing the first ultrasonic cleaning tank (2), the second ultrasonic cleaning tank (3), the first bubbling rinsing tank (4), the second bubbling rinsing tank (5) and the hot water rinsing tank (6).