A water damage all-around cleaning device for a power module with telescopic cylinder

By designing a cylinder telescopic adjustable power module water stain removal device, the problem of water stain residue on the cooler surface after the CSAM process was solved, achieving all-round removal and automated control, improving product performance, safety, adaptability, and environmental friendliness.

CN122305775APending Publication Date: 2026-06-30SHANGHAI BAISHAN IND DEV CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHANGHAI BAISHAN IND DEV CO LTD
Filing Date
2026-04-09
Publication Date
2026-06-30

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Abstract

This invention discloses a cylinder-adjustable power module water stain removal device, comprising a support mechanism, a blowing mechanism, and a fixing mechanism, both of which are mounted on the support mechanism. The support mechanism includes a base frame, a base, a first support frame, a second support frame, a third support frame, a first reinforcing rib, a second reinforcing rib, a third reinforcing rib, a reinforcing plate, and a filling plate. This solution, based on omnidirectional blowing and lifting linkage, combined with PLC automated control, stable support, convenient operation, and efficient water stain collection design, completely solves the problem of water stain residue in the cooler after the CSAM process. It ensures product performance and reliability while improving production efficiency, safety, and adaptability, making it a highly efficient, stable, and easy-to-use industrial-grade water stain removal device.
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Description

Technical Field

[0001] This invention relates to the field of industrial automation equipment technology, specifically to a cylinder telescopic adjustable power module water stain removal device. Background Technology

[0002] Full-bridge power modules (such as DINV / A66 / TPAK models) require CSAM processing during industrial production. This process is a key step in ensuring the structural performance and operational stability of the product, and the product's cooler is the core heat dissipation component.

[0003] After the CSAM process is applied to full-bridge power modules (such as DINV / A66 / TPAK models), water stains may remain on the surface of the cooler. If these water stains are not removed in time, they may affect the product's circuit performance, assembly sealing, and long-term reliability.

[0004] Therefore, a solution is needed. Summary of the Invention

[0005] (a) Technical problems to be solved To address the shortcomings of existing technologies, this invention provides a cylinder telescopic adjustable power module water stain removal device to solve the problems mentioned in the background section.

[0006] (II) Technical Solution To achieve the above objectives, the present invention provides the following technical solution: A cylinder telescopic adjustable power module water stain removal device includes a support mechanism, a blowing mechanism and a fixing mechanism, wherein the blowing mechanism and the fixing mechanism are both mounted on the support mechanism. The support mechanism includes a base frame, a base, support frame one, support frame two, support frame three, reinforcing rib one, reinforcing rib two, reinforcing rib three, a reinforcing plate, and a filling plate. The base is located at the four bottom corners of the base frame. Support frame one is vertically located at the left and right ends of the top of the base frame. Support frame two is located at the rear end of the top of the base frame, corresponding to the position of each support frame one. Support frame three is located at the top of support frame one and support frame two. Reinforcing rib one is inclinedly located at the front end of support frame one and connected to support frame three. Reinforcing rib two is located at the rear end of support frame one and connected to support frame two. Reinforcing rib three is located between two support frames two. The reinforcing plate is located at the bottom of reinforcing rib three. The filling plate is located in the rear half of the top of the base frame. The blowing mechanism includes a partition, a water guide plate, observation glass one, observation glass two, a guide rail, a sliding door, a sliding plate, a handle, a fixing plate, a positioning cylinder, a mounting groove, a positioning block, a positioning hole, a positioning sensor, a transparent window, transparent glass, a base plate, a two-way filter, a support base, an air tank, an air inlet, an air outlet, a solenoid valve, a water tank, a PLC controller, a water collection pipe, a drain outlet, an air inlet pipe, an air distribution plate, an air distribution pipe, and blowing holes. The partition is located between the two support frames one, the water guide plate is located in the front half of the top of the base frame, and the observation glass one is enclosed by... At the top of the water guide plate, the second observation glass is positioned above the first observation glass. The guide rail is positioned at the top of each of the third support frames. The sliding door is positioned on the guide rail. The sliding plates are positioned opposite each other on each guide rail and located at the bottom of the sliding door. The handles are positioned on the left and right sides and the front end of the top of the sliding door. The fixing plate is positioned in the middle of the left side of the third support frame. The positioning cylinder is positioned at the right end of the fixing plate and above the sliding door. The mounting groove is horizontally positioned at the rear end of the sliding door. A positioning block is located at the left end of the mounting slot; a positioning hole is located on the positioning block and parallel to the positioning cylinder; a positioning sensor is located at the right end of the sliding door; a transparent window is located at the front end of the base frame; transparent glass is located at the left, rear, and right ends of the base frame; a base plate is located at the bottom of the base frame; a bidirectional filter is located at the left end of the base frame; a support base is arranged opposite each other on the top left half of the base plate; an air tank is located on the support base; and an air inlet and outlet are respectively located on the air tank. The front and top of the tank, the solenoid valve is located on the air outlet, the water tank is located on the right side of the gas tank, the PLC controller is located on the right end of the base frame, the water collection pipe is located on the top of the water tank, the drain outlet is located on the top of the water collection pipe and is located to the right rear of the water guide plate, the air inlet pipe is located on the top of the sliding door, the air distribution plate is located on the bottom of the sliding door and is connected to the air inlet pipe, the air distribution pipes are located one in front and one behind the bottom of the air distribution plate, and the blow holes are evenly distributed on the opposite surfaces of the two air distribution pipes.

[0007] Preferably, the first support frame has a cubic structure, the first support frame and the second support frame have the same length, and the third support frame has a length equal to the length of one side of the base frame.

[0008] Preferably, both observation glass one and observation glass two are rectangular parallelepiped structures, the perimeter of observation glass two is smaller than the perimeter of observation glass one, and observation glass one and observation glass two are integrally formed.

[0009] Preferably, the sliding door has a rectangular structure, the fixing plate has an I-shaped structure, and the sliding door, sliding plate, handle, positioning block and air inlet pipe are integrally formed.

[0010] Preferably, the fixing mechanism includes support columns, a receiving plate, a water tank, a lifting cylinder, a sliding sleeve, a sliding rod, a top plate, a first limiting plate, a vertical plate, a first guide block, a second limiting plate, a clamp, a second guide block, and a support plate. The support columns are located at the top of the water guide plate, offset from the four corners. The receiving plate is mounted on the four support columns. The water tanks are arranged opposite each other on the receiving plate. The lifting cylinder is located at the bottom of the middle part of the receiving plate. The sliding sleeve passes through the receiving plate and is located at one end of each support column facing the adjacent water tank. The sliding rod passes through... Each of the sliding sleeves is provided with a top plate positioned on top of each pair of front and rear sliding rods. A first limiting plate is positioned opposite each other on top of the right-hand top plate. A vertical plate is positioned on top of each first limiting plate. A first guide block is positioned on top of each vertical plate. A second limiting plate is positioned on top of the top plate corresponding to the position of each first limiting plate. A clamp is positioned on top of each second limiting plate. A second guide block is positioned on the right end of each of the sliding sleeves. A support plate is positioned at the output end of the lifting cylinder and located on top of the receiving plate.

[0011] Preferably, the receiving plate has a chamfered rectangular structure, the water tank has a rectangular structure, and the support column and the receiving plate are integrally formed.

[0012] Preferably, each of the sliding rods is integrally formed with the top plate at its top, the length of the top plate on the left is greater than the length of the top plate on the right, and the guide block one and guide block two are located at the same height and their opposite surfaces are both concave V-shaped structures.

[0013] (III) Beneficial Effects This invention provides a cylinder-adjustable power module water stain removal device. It has the following beneficial effects: 1. The uniform blowing holes of the air distribution duct, combined with the product's reciprocating lifting and lowering, and the air distribution plate's flow stabilization design, achieve thorough removal of water stains from all directions, ensuring product performance and reliability; 2. PLC centralized control and automated linkage, combined with positioning and locking and visual monitoring, improve operational accuracy and safety; 3. Modular reinforced support structure + integrated molded sliding door and pipeline anti-interference design, balancing device stability and ease of operation and maintenance; 4. The water guiding and collection system and the two-way filter configuration enable efficient collection and discharge of water stains and airflow purification, combining environmental protection and equipment protection; 5. The adjustable fixing mechanism and cylinder telescopic design are compatible with various power module products, improving equipment utilization and expansion flexibility. Attached Figure Description

[0014] Figure 1This is a schematic diagram of the overall structure of the present invention; Figure 2 This invention is based on Figure 1 A schematic diagram of the hidden base from another perspective; Figure 3 This is a front view schematic diagram of the hidden base of the present invention; Figure 4 This is a schematic diagram of the mounting groove and positioning block structure of the present invention; Figure 5 This is a schematic diagram of the air distribution duct structure of the present invention; Figure 6 This is a schematic diagram of the fixing mechanism on the water guide plate of the present invention.

[0015] In the diagram: 1-Support mechanism; 11-Base frame; 12-Base; 13-Support frame one; 14-Support frame two; 15-Support frame three; 16-Reinforcing rib one; 17-Reinforcing rib two; 18-Reinforcing rib three; 19-Reinforcing plate; 110-Filling plate; 2-Blowing mechanism; 21-Partition plate; 22-Water guide plate; 23-Observation glass one; 24-Observation glass two; 25-Guide rail; 26-Sliding door; 27-Slide plate; 28-Handle; 29-Fixing plate; 210-Positioning cylinder; 211-Mounting groove; 212-Positioning block; 213-Positioning hole; 214-Position sensor; 215-Transparent window; 216-Transparent glass; 217-Base plate; 218-Two-way filter; 219-Support base; 220-Air tank; 221-Air inlet; 222-Air outlet; 223-Solenoid valve; 224-Water tank; 225-PLC controller; 226-Water collection pipe; 227-Drain outlet; 228-Air inlet pipe; 229-Air distribution plate; 230-Air distribution pipe; 231-Blow hole; 3-Fixing mechanism; 31-Support column; 32-Receiving plate; 33-Water tank; 34-Lifting cylinder; 35-Sliding sleeve; 36-Sliding rod; 37-Top plate; 38-Limiting plate one; 39-Upright plate; 310-Guide block one; 311-Limiting plate two; 312-Clamp; 313-Guide block two; 314-Panel. Detailed Implementation

[0016] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0017] Please see Figure 1-6 The present invention provides a technical solution to achieve this: it includes a support mechanism 1, a blowing mechanism 2 and a fixing mechanism 3, wherein the blowing mechanism 2 and the fixing mechanism 3 are both disposed on the support mechanism 1.

[0018] The support mechanism 1 includes a base frame 11, a base 12, a first support frame 13, a second support frame 14, a third support frame 15, a first reinforcing rib 16, a second reinforcing rib 17, a third reinforcing rib 18, a reinforcing plate 19, and a filling plate 110. The base 12 is located at the four corners of the bottom of the base frame 11. The first support frame 13 is vertically located at the left and right ends of the top of the base frame 11. The second support frame 14 is located at the rear end of the top of the base frame 11, corresponding to the position of each first support frame 13. The third support frame 15 is located at the top of the first support frame 13 and the second support frame 14. The first reinforcing rib 16 is inclinedly located at the front end of the first support frame 13 and connected to the third support frame 15. The second reinforcing rib 17 is located at the rear end of the first support frame 13 and connected to the second support frame 14. The third reinforcing rib 18 is located between the two second support frames 14. The reinforcing plate 19 is located at the bottom of the third reinforcing rib 18. The filling plate 110 is located in the rear half of the top of the base frame 11. The blowing mechanism 2 includes a partition 21, a water guide plate 22, observation glass one 23, observation glass two 24, a guide rail 25, a sliding door 26, a slide plate 27, a handle 28, a fixing plate 29, a positioning cylinder 210 (model: SMC MGPM16-20Z), a mounting groove 211, a positioning block 212, a positioning hole 213, a position sensor 214 (model: E3Z-D61), a transparent window 215, transparent glass 216, a base plate 217, a two-way filter 218, a support base 219, an air tank 220, an air inlet 221, an air outlet 222, a solenoid valve 223 (model: 4V210-08), a water tank 224, and a PLC controller 225 (model: S7-200 SMART). SR20), water collection pipe 226, drain outlet 227, air inlet pipe 228, air distribution plate 229, air distribution pipe 230 and blow hole 231, partition plate 21 is set between two support frames 13, water guide plate 22 is set on the front half of the top of the base frame 11, observation glass 1 23 is wrapped on the top of the water guide plate 22, observation glass 24 is set on the top of observation glass 1 23, guide rail 25 is set on the top of each support frame 15, sliding door 26 is set on the guide rail 25, and sliding plate 27 is set on the left and right opposite each The guide rail 25 is located at the bottom of the sliding door 26. The handle 28 is located on the left and right sides and the front end of the top of the sliding door 26. The fixing plate 29 is located in the middle of the left support frame 3 15. The positioning cylinder 210 is located at the right end of the fixing plate 29 and above the sliding door 26. The mounting groove 211 is horizontally located at the rear end of the sliding door 26. The positioning block 212 is located at the left end of the mounting groove 211. The positioning hole 213 is located on the positioning block 212 and is parallel to the positioning cylinder 210. The positioning sensor 214 is located on the sliding door 26. At the right end, a transparent window 215 is located at the front end of the base frame 11, transparent glass 216 is located at the left, rear, and right ends of the base frame 11, a base plate 217 is located at the bottom of the base frame 11, a two-way filter 218 is located at the left end of the base frame 11, a support base 219 is located opposite each other at the top left half of the base plate 217, a gas tank 220 is located on the support base 219, an air inlet 221 and an air outlet 222 are located at the front and top of the gas tank 220 respectively, a solenoid valve 223 is located on the air outlet 222, and a water tank 22... 4 is located on the right side of the gas tank 220, the PLC controller 225 is located on the right end of the base frame 11, the water collection pipe 226 is located on the top of the water tank 224, the drain outlet 227 is located on the top of the water collection pipe 226 and is located to the right rear of the water guide plate 22, the air inlet pipe 228 is located on the top of the sliding door 26, the air distribution plate 229 is located at the bottom of the sliding door 26 and is connected to the air inlet pipe 228, the air distribution pipes 230 are located one in front and one behind at the bottom of the air distribution plate 229, and the blowing holes 231 are evenly distributed on the opposite surfaces of the two air distribution pipes 230.

[0019] In detail, bracket 1 511 has a cubic structure, support frame 1 13 and support frame 2 14 have the same length, and support frame 3 15 has the same length as one side of the base frame 11.

[0020] Both observation glass 1 23 and observation glass 2 24 are rectangular parallelepiped structures. The perimeter of observation glass 2 24 is smaller than that of observation glass 1 23. Observation glass 1 23 and observation glass 2 24 are integrally formed.

[0021] The sliding door 26 has a rectangular structure, the fixing plate 29 has an I-shaped structure, and the sliding door 26, the sliding plate 27, the handle 28, the positioning block 212 and the air inlet pipe 228 are integrally formed.

[0022] The fixing mechanism 3 includes support columns 31, receiving plates 32, water tanks 33, lifting cylinders 34 (model: SMC CDQ2B32-50SZ), sliding sleeves 35, sliding rods 36, top plates 37, limiting plates 38, upright plates 39, guide blocks 310, limiting plates 311, clamps 312, guide blocks 313, and support plates 314. The support columns 31 are located at the top of the water guide plate 22, slightly off-center from the four corners. The receiving plates 32 are mounted on the four support columns 31. The water tanks 33 are positioned opposite each other on the receiving plates 32. The lifting cylinders 34 are located at the bottom center of the receiving plate 32. The sliding sleeves 35 penetrate the receiving plate 32 and are located at the end of each support column 31 facing the adjacent water tank 33. A rod 36 is installed through each sliding sleeve 35. A top plate 37 is installed on the top of each pair of front and rear sliding rods 36. A first limiting plate 38 is installed opposite each other on the top of the right top plate 37. A vertical plate 39 is installed on the top of each first limiting plate 38. A first guide block 310 is installed on the top of each vertical plate 39. A second limiting plate 311 is installed on the top of the top plate 37 corresponding to the position of each first limiting plate 38. A clamp 312 is installed on the top of each second limiting plate 311. A second guide block 313 is installed at the right end of each. A support plate 314 is installed at the output end of the lifting cylinder 34 and located on the top of the receiving plate 32.

[0023] The receiving plate 32 has a chamfered rectangular structure, the water tank 33 has a rectangular structure, and the support column 31 and the receiving plate 32 are integrally formed.

[0024] Each slide bar 36 is integrally formed with its own top plate 37. The length of the top plate 37 on the left is greater than the length of the top plate 37 on the right. The guide block 1 310 and the guide block 2 313 are at the same height and their opposite surfaces are both concave V-shaped structures.

[0025] Solution Analysis: 1. Water stains are removed more thoroughly, ensuring product performance. All-round blowing design: The blow holes 231 of the air distribution pipe 230 are evenly distributed on the opposite surface. With the help of the lifting cylinder 34 to drive the product to move back and forth, it can blow away water stains on the surface of the cooler without dead angles and avoid residue.

[0026] Air distribution plate + air distribution duct structure: The air distribution plate 229 can evenly distribute the airflow to each air distribution duct 230, ensuring stable airflow in each blowhole 231, improving purging efficiency, and effectively avoiding the impact of water residue on circuit performance, assembly sealing and long-term reliability.

[0027] 2. Enhanced Automation and Security PLC centralized control: All electrical equipment is controlled by PLC 225, realizing automated linkage of actions such as purging, lifting, and positioning, reducing manual intervention and operational errors.

[0028] Dual safety protection: The positioning sensor 214 works in conjunction with the positioning cylinder 210 to automatically lock after the sliding door 26 is closed to the correct position, preventing accidental operation; the design of the observation glass and transparent window allows operators to monitor the internal working status in real time, improving safety.

[0029] 3. Structural stability and ease of operation Modular support structure: Support mechanism 1 adopts a combination design of multiple support frames, reinforcing ribs and reinforcing plates, which greatly improves the overall rigidity of the device and is not easily deformed during long-term operation.

[0030] Sliding door and pipeline optimization: The sliding door 26 is integrally formed with components such as the slide plate 27 and positioning block 212, ensuring smooth sliding; the design of the mounting groove 211 ensures that the air pipe is not disturbed during the sliding process, avoiding pipe wear or detachment, and making maintenance more convenient.

[0031] 4. Efficient water collection and environmental friendliness Water guiding and collection system: The water guide plate 22, the water collection pipe 226 and the water tank 224 form a complete water stain collection path. The water stains after purging can be quickly collected and discharged to avoid secondary pollution and meet the environmental protection requirements of industrial production.

[0032] Two-way filter configuration: The airflow entering the gas tank 220 is filtered to prevent impurities from entering the purge pipeline, thus protecting the equipment and preventing impurities from contaminating the product.

[0033] 5. Strong adaptability and scalability Adjustable fixing mechanism: The combination of clamp 312, guide block 1 310 and guide block 2 313 can be adapted to different specifications of power module full bridge products (such as DINV / A66 / TPAK), eliminating the need for frequent tooling changes and improving equipment utilization.

[0034] Adjustable cylinder extension design: The stroke of positioning cylinder 210 and lifting cylinder 34 can be adjusted according to actual needs, which can flexibly meet the purging needs of products of different sizes and has strong expandability.

[0035] Working principle: All electrical equipment is controlled by PLC controller 225. The operator pushes the sliding door 26 backward using handle 28, then places the product onto limit plate 38 and limit plate 311, and secures the product using clamp 312 in conjunction with guide block 310 and guide block 313. The sliding door 26 is then closed. After the position sensor 214 detects the position, the output end of the positioning cylinder 210 extends into the positioning hole 213 for positioning. An external pipe connects the bidirectional filter 218 to the air inlet 221. The top of the filling plate has a pre-drilled hole. One end of the external pipe connects to the solenoid valve 223, and the other end passes upward through this hole and through the mounting groove 211 to the top of the sliding door 26, connecting to the air inlet pipe 228. The mounting groove 211 is located behind the partition plate 21. The entire sliding process does not affect the pipe. After installation, the solenoid valve 223 opens, and airflow enters the air distribution plate 229 and is released through the blowholes 231 of each air distribution pipe 230 to blow away water stains on the product. At the same time, the lifting cylinder 34 lifts the product upward and moves it downward through the support plate 314, and the slide rod 36 is limited, thus further enhancing the blowing efficiency of the product.

[0036] Technical effects of implementing this solution: This solution completely solves the industry pain point of water stain residue on the cooler surface after CSAM process through its core design of all-round purging and lifting linkage. At the same time, with PLC automatic control, stable support structure, convenient operation design and efficient water stain collection system, it not only ensures product performance and reliability, but also greatly improves production efficiency and operational safety. It is a highly efficient, stable and easy-to-use industrial-grade water stain removal device with adaptability and expandability.

[0037] The present invention comprises: 1-supporting mechanism; 11-base frame; 12-base; 13-support frame one; 14-support frame two; 15-support frame three; 16-reinforcing rib one; 17-reinforcing rib two; 18-reinforcing rib three; 19-reinforcing plate; 110-filling plate; 2-blowing mechanism; 21-partition plate; 22-water guide plate; 23-observation glass one; 24-observation glass two; 25-guide rail; 26-sliding door; 27-slide plate; 28-handle; 29- 210 - Fixed plate; 211 - Positioning cylinder; 212 - Mounting slot; 213 - Positioning block; 214 - Positioning hole; 215 - Positioning sensor; 216 - Transparent window; 217 - Transparent glass; 218 - Base plate; 219 - Two-way filter; 220 - Support base; 221 - Air tank; 222 - Air outlet; 223 - Solenoid valve; 224 - Water tank; 225 - PLC controller; 226 - Water collection pipe; 227 - Drainage 228-Air inlet duct; 229-Air distribution plate; 230-Air distribution duct; 231-Blow hole; 3-Fixing mechanism; 31-Support column; 32-Receiving plate; 33-Water tank; 34-Lifting cylinder; 35-Sliding sleeve; 36-Sliding rod; 37-Top plate; 38-Limiting plate one; 39-Upright plate; 310-Guide block one; 311-Limiting plate two; 312-Clamp; 313-Guide block two; 314-Panel. These components are all general standard parts or components known to those skilled in the art. Their structure and principle can be learned by those skilled in the art through technical manuals or conventional experimental methods. The problem solved by this invention is that after the CSAM process is carried out on the full-bridge power module products (such as DINV / A66 / TPAK models), water stains will remain on the surface of the cooler. If these water stains are not removed in time, they may affect the circuit performance, assembly sealing and long-term reliability of the product. This invention is based on all-round purging and lifting linkage, combined with PLC automatic control, stable support, convenient operation and efficient water stain collection design, to completely solve the pain point of water stain residue in the cooler after CSAM process. It ensures product performance and reliability while improving production efficiency, safety and adaptability and expandability. It is a highly efficient, stable and easy-to-use industrial-grade water stain removal device.

[0038] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0039] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A cylinder-adjustable power module water stain removal device, characterized in that: It includes a support mechanism (1), a blowing mechanism (2), and a fixing mechanism (3), wherein the blowing mechanism (2) and the fixing mechanism (3) are both mounted on the support mechanism (1); The support mechanism (1) includes a base frame (11), a base (12), a first support frame (13), a second support frame (14), a third support frame (15), a first reinforcing rib (16), a second reinforcing rib (17), a third reinforcing rib (18), a reinforcing plate (19), and a filling plate (110). The base (12) is located at the four corners of the bottom of the base frame (11). The first support frame (13) is vertically located at the left and right ends of the top of the base frame (11). The second support frame (14) is located at the rear end of the top of the base frame (11) corresponding to the position of each first support frame (13). The third support frame (15) is located on the top of the first support frame (13) and the second support frame (14). The first reinforcing rib (16) is inclinedly located at the front end of the first support frame (13) and connected to the third support frame (15). The second reinforcing rib (17) is located at the rear end of the first support frame (13) and connected to the second support frame (14). The third reinforcing rib (18) is located between the two second support frames (14). The reinforcing plate (19) is located at the bottom of the third reinforcing rib (18). The filling plate (110) is located at the rear half of the top of the base frame (11). The blowing mechanism (2) includes a partition (21), a water guide plate (22), observation glass one (23), observation glass two (24), a guide rail (25), a sliding door (26), a sliding plate (27), a handle (28), a fixing plate (29), a positioning cylinder (210), a mounting groove (211), a positioning block (212), a positioning hole (213), a positioning sensor (214), a transparent window (215), a transparent glass (216), a base plate (217), a two-way filter (218), a support base (219), an air tank (220), an air inlet (221), an air outlet (222), a solenoid valve (223), a water tank (224), a PLC controller (225), a water collection pipe (226), and a drain outlet (227). The system includes an air inlet duct (228), an air distribution plate (229), an air distribution duct (230), and an air outlet (231). A partition (21) is positioned between two support frames (13). A water guide plate (22) is positioned on the front half of the top of the base frame (11). An observation glass (23) is wrapped around the top of the water guide plate (22). An observation glass (24) is positioned on top of the observation glass (23). A guide rail (25) is positioned on the top of each support frame (15). A sliding door (26) is positioned on the guide rail (25). A sliding plate (27) is positioned opposite each other on each guide rail (25) and located at the bottom of the sliding door (26). A handle (28) is provided. On the top left and right sides and front end of the sliding door (26), the fixing plate (29) is set in the middle of the support frame three (15) on the left side. The positioning cylinder (210) is set at the right end of the fixing plate (29) and located above the sliding door (26). The mounting groove (211) is set horizontally at the rear end of the sliding door (26). The positioning block (212) is set at the left end of the mounting groove (211). The positioning hole (213) is set on the positioning block (212) and parallel to the positioning cylinder (210). The positioning sensor (214) is set at the right end of the sliding door (26). The transparent window (215) is set at the front end of the base frame (11). The transparent glass (216) is set at the front end of the base frame (11). The following components are located on the left, rear, and right ends of the base frame (11): the base plate (217) is located at the bottom of the base frame (11), the bidirectional filter (218) is located at the left end of the base frame (11), the support base (219) is arranged opposite each other at the top left half of the base plate (217), the gas tank (220) is located on the support base (219), the air inlet (221) and air outlet (222) are respectively located at the front end and top of the gas tank (220), the solenoid valve (223) is located on the air outlet (222), the water tank (224) is located on the right side of the gas tank (220), and the PLC controller (225) is located at the right end of the base frame (11).The water collection pipe (226) is located at the top of the water tank (224), the drain outlet (227) is located at the top of the water collection pipe (226) and to the right rear of the water guide plate (22), the air inlet pipe (228) is located at the top of the sliding door (26), the air distribution plate (229) is located at the bottom of the sliding door (26) and connected to the air inlet pipe (228), the air distribution pipes (230) are located one in front of the other at the bottom of the air distribution plate (229), and the blow holes (231) are evenly distributed on the opposite surfaces of the two air distribution pipes (230).

2. The cylinder telescopic adjustable power module water stain removal device according to claim 1, characterized in that: The first support (511) has a cubic structure, the first support frame (13) and the second support frame (14) have the same length, and the third support frame (15) has the same length as the single side length of the base frame (11).

3. The cylinder telescopic adjustable power module water stain removal device according to claim 2, characterized in that: Both observation glass one (23) and observation glass two (24) are rectangular parallelepiped structures. The perimeter of observation glass two (24) is smaller than that of observation glass one (23). Observation glass one (23) and observation glass two (24) are integrally formed.

4. The cylinder telescopic adjustable power module water stain removal device according to claim 3, characterized in that: The sliding door (26) has a rectangular structure, the fixing plate (29) has an I-shaped structure, and the sliding door (26), the sliding plate (27), the handle (28), the positioning block (212) and the air inlet pipe (228) are integrally formed.

5. The cylinder telescopic adjustable power module water stain removal device according to claim 4, characterized in that: The fixing mechanism (3) includes a support column (31), a receiving plate (32), a water tank (33), a lifting cylinder (34), a sliding sleeve (35), a sliding rod (36), a top plate (37), a first limiting plate (38), a vertical plate (39), a first guide block (310), a second limiting plate (311), a clamp (312), a second guide block (313), and a support plate (314). The support column (31) is located at the top of the water guide plate (22) at the four corners. The receiving plate (32) is located on the four support columns (31). The water tanks (33) are arranged opposite each other on the receiving plate (32). The lifting cylinder (34) is located at the bottom of the middle part of the receiving plate (32). The sliding sleeve (35) is installed through the receiving plate (32) and is located on each support column (31) facing the adjacent water tank. (33) One end of the slide rod (36) is provided through each of the slide sleeves (35), the top plate (37) is provided on the top of each pair of front and rear slide rods (36), the first limiting plate (38) is provided opposite to each other on the top of the right top plate (37), the upright plate (39) is provided on the top of each of the first limiting plate (38), the first guide block (310) is provided on the top of each of the upright plates (39), the second limiting plate (311) is provided on the top of the top plate (37) corresponding to the position of each of the first limiting plate (38), the clamp (312) is provided on the top of each of the second limiting plate (311), the second guide block (313) is provided on the right end of each of the slide rods (35), and the support plate (314) is provided at the output end of the lifting cylinder (34) and located on the top of the receiving plate (32).

6. The cylinder telescopic adjustable power module water stain removal device according to claim 5, characterized in that: The receiving plate (32) has a chamfered rectangular structure, the water tank (33) has a rectangular structure, and the support column (31) and the receiving plate (32) are integrally formed.

7. The cylinder telescopic adjustable power module water stain removal device according to claim 6, characterized in that: Each of the slide rods (36) is integrally formed with the top plate (37) on its top. The length of the top plate (37) on the left is greater than the length of the top plate (37) on the right. The guide block one (310) and guide block two (313) are at the same height and their opposite surfaces are both concave V-shaped structures.