Wire cleaning system
By designing a cable cleaning system that utilizes an automated production line for immersion, spraying, and blowing, the problem of low efficiency in manual cleaning has been solved, achieving efficient and safe cable cleaning and improving production efficiency and product quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JUSHI GRP CO
- Filing Date
- 2025-06-06
- Publication Date
- 2026-06-12
Smart Images

Figure CN224346494U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fiberglass production technology, and more specifically, to a cable cleaning system. Background Technology
[0002] Currently, in the production process of electronic-grade glass fiber, the yarn guide used in the drawing machine is one of the key accessories, responsible for evenly arranging the fine yarn on the forming winding drum. With prolonged continuous operation, a large amount of fuzz and waste yarn accumulates on the yarn guide. These impurities not only affect the quality of subsequent glass fiber products but may also lead to a reduction in equipment operating efficiency. Therefore, regular cleaning of the yarn guide is a necessary step to ensure smooth production.
[0003] However, existing cleaning methods primarily rely on manual operation, meaning that workers manually clean the yarn guide after each replacement. Each cleaning operation consumes significant time and manpower, especially in large-scale factories where frequent yarn guide replacements and cleaning processes severely disrupt production rhythm and lead to decreased efficiency. Furthermore, the cleaning process is influenced by the individual skills and experience of the operators, resulting in varying cleaning effectiveness among different staff. This uncertainty directly impacts yarn quality and equipment stability in subsequent production processes. Moreover, cleaning the yarn guide involves direct contact with residual glass fibers, which are small and sharp, easily causing injuries. Utility Model Content
[0004] The main objective of this invention is to provide a cable cleaning system to solve the problem of low efficiency in the prior art of manually cleaning cables removed from cable trays.
[0005] To achieve the above objectives, according to one aspect of the present invention, a cable cleaning system is provided, comprising: an immersion washing device, a spray washing device, and a blowing device arranged sequentially along a preset process direction; the immersion washing device has an installation groove for accommodating a product to be cleaned sprayed with detergent, the installation groove being used to contain immersion liquid for immersing the product to be cleaned; the spray washing device includes a device body with a receiving cavity for accommodating the product to be cleaned after immersion washing; the receiving cavity is provided with a spray washing structure for spraying cleaning liquid onto the product to be cleaned to clean impurities on the surface of the product to be cleaned; the blowing device is disposed on the outlet side of the spray washing device for blowing air onto the product to be cleaned after spray washing to remove residual stains on the surface of the product to be cleaned after spray washing.
[0006] Furthermore, the spray washing device also includes: a liquid storage tank having a liquid storage cavity for storing cleaning fluid; the liquid storage cavity is connected to the spray washing structure through a first pipe for supplying cleaning fluid to the spray washing structure; and a filter assembly disposed in the liquid storage cavity, the filter assembly being connected to the receiving cavity through a second pipe for recovering the cleaning fluid in the receiving cavity and filtering the cleaning fluid so that the filtered cleaning fluid flows into the liquid storage cavity.
[0007] Furthermore, the spray washing structure includes: a guiding pipe extending along the length of the device body and disposed within the receiving cavity, the guiding pipe being connected to the first pipe; and multiple spray washing components sequentially and spaced apart from the guiding pipe along the extension direction of the guiding pipe, each spray washing component including multiple nozzles arranged around the product to be cleaned along the width direction of the device body for spraying cleaning liquid onto the product to be cleaned.
[0008] Furthermore, the spray cleaning assembly includes: a first spray pipe, a second spray pipe, and a third spray pipe connected in sequence. The end of the first spray pipe away from the second spray pipe is connected to a guide pipe. The first spray pipe and the third spray pipe are respectively arranged in a vertical direction. The second spray pipe is located at the top of the receiving cavity and is arranged in a horizontal direction. The first spray pipe, the second spray pipe, and the third spray pipe are each provided with a plurality of nozzles at intervals along their extension directions for spraying cleaning liquid toward the product to be cleaned.
[0009] Furthermore, the filtration assembly includes: a first filter screen disposed within the liquid storage chamber and connected to a portion of the chamber wall to form a first filtration chamber; a second filter screen disposed within the liquid storage chamber and connected to a portion of the chamber wall to form a second filtration chamber, the first filter screen being located within the second filtration chamber; and a pump disposed within the first filtration chamber, the pump being connected to a filter, the filter being connected to the receiving chamber via a second pipe to filter the cleaning fluid within the receiving chamber, and the filtered cleaning fluid sequentially passing through the first and second filter screens before flowing into the liquid storage chamber.
[0010] Furthermore, the spray washing device also includes: a first conveying component disposed at the bottom of the receiving cavity, at least a portion of the first conveying component being movably disposed along the length direction of the device body, and at least a portion of the first conveying component being used to place the product to be cleaned, so as to drive the product to be cleaned to move within the receiving cavity.
[0011] Furthermore, the spray washing device also includes a heating component, which is installed in the liquid storage chamber to heat the temperature of the cleaning liquid in the liquid storage chamber to a preset temperature; wherein the preset temperature Q satisfies: 45℃≤Q≤55℃.
[0012] Furthermore, there are two spray washing devices, which are connected in sequence to clean the products to be cleaned separately.
[0013] Furthermore, the immersion washing device includes: a mounting body, with a mounting groove disposed on the mounting body; a second conveying assembly disposed on the mounting body, at least a portion of the second conveying assembly being movably disposed within the mounting groove, and the product to be washed being disposed on at least a portion of the second conveying assembly to drive the product to be washed within the mounting groove.
[0014] Furthermore, the cleaning device includes: a mounting frame having a movable channel, wherein the product to be cleaned is movably disposed within the movable channel along the extension direction of the movable channel; a blowing assembly and a hot air assembly are sequentially disposed within the movable channel, wherein the blowing assembly is used to spray air at a preset pressure toward the product to be cleaned after being cleaned by the spray cleaning device; and the hot air assembly is used to spray hot air at a preset temperature toward the product to be cleaned to remove residual stains on the product to be cleaned after being cleaned by the spray cleaning device.
[0015] The present invention provides a cable cleaning system, comprising an immersion washing device, a spray washing device, and a blowing device arranged sequentially along a preset process direction. The immersion washing device has an installation tank for accommodating the product to be cleaned, and the installation tank contains immersion washing liquid for immersing the product. The spray washing device includes a main body with a receiving cavity for accommodating the product to be cleaned after immersion washing. The receiving cavity is provided with a spray washing structure for spraying cleaning liquid onto the product to clean impurities on its surface. The blowing device is located on the outlet side of the spray washing device for blowing air onto the product after spray washing to remove residual stains on its surface.
[0016] The technical solution of this utility model involves transporting the replaced ribbon cables to the installation tank of the immersion washing device for pre-washing in the immersion solution. After immersion washing, the cables are transferred to the spray washing device, where high-speed water jets remove debris and tangled lint from the cables. They are then conveyed to the blowing device, where compressed air dries any remaining water stains, completing the cleaning process. This reduces reliance on manual operation, eliminating the need for employees to perform repetitive and physically demanding cleaning work for extended periods, effectively reducing labor intensity. It also ensures the cleanliness of the cables, allows for continuous operation, and enables simultaneous cleaning of multiple cables. This solves the problem of low efficiency in manual cleaning of replaced ribbon cables in existing technologies, improving the reliability of subsequent processes and product quality. Attached Figure Description
[0017] The accompanying drawings, which form part of this application, are used to provide a further understanding of the present invention. The illustrative embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an undue limitation of the present invention. In the drawings:
[0018] Figure 1 A top view of a spray cleaning device provided according to an embodiment of the cable cleaning system of the present invention is shown;
[0019] Figure 2 A side view of a spray cleaning device provided according to an embodiment of the cable cleaning system of the present invention is shown;
[0020] Figure 3 A schematic diagram of the immersion washing device provided according to an embodiment of the cable cleaning system of this utility model is shown;
[0021] Figure 4 A schematic diagram of the cleaning device provided in an embodiment of the cable cleaning system of the present invention is shown.
[0022] The above figures include the following reference numerals:
[0023] 10. Immersion washing device; 11. Mounting tank; 12. Mounting body; 13. Second conveying assembly; 20. Spray washing device; 21. Device body; 210. Receiving cavity; 22. Spray washing structure; 220. Conducting pipe; 221. Spray washing assembly; 2210. Nozzle component; 2211. First spray pipe; 2212. Second spray pipe; 2213. Third spray pipe; 23. Liquid storage tank; 230. Liquid storage cavity; 24. First pipe; 25. Filter assembly; 250. First filter screen; 251. Second filter screen; 252. Extraction pump; 253. Filter; 26. Second pipe; 27. First conveying assembly; 28. Water inlet pipe; 29. Drainage pipe; 30. Cleaning device; 31. Mounting frame; 310. Moving channel; 32. Blowing assembly; 33. Hot air assembly; 34. Third conveying assembly. Detailed Implementation
[0024] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0025] To address the low efficiency of manually cleaning ribbon cables removed from ribbon cable generators in existing technologies, this invention provides a ribbon cable cleaning system.
[0026] Please refer to Figures 1 to 4As shown, the present invention provides a cable cleaning system, including an immersion washing device 10, a spray washing device 20, and a blowing device 30 arranged sequentially along a preset process direction; the immersion washing device 10 has an installation groove 11 for accommodating the product to be cleaned, and the installation groove 11 is used to contain immersion washing liquid for immersing the product to be cleaned; the spray washing device 20 includes a device body 21, and the device body 21 has a receiving cavity 210 for accommodating the product to be cleaned after immersion washing device 10; the receiving cavity 210 is provided with a spray washing structure 22 for spraying cleaning liquid onto the product to be cleaned to clean impurities on the surface of the product to be cleaned; the blowing device 30 is arranged on the outlet side of the spray washing device 20 for blowing air onto the product to be cleaned after being cleaned by the spray washing device 20 to remove residual stains on the surface of the product to be cleaned after being cleaned by the spray washing device 20.
[0027] By applying the technical solution of this utility model, the replaced ribbon cable is transported to the installation tank 11 of the immersion washing device 10 for pre-washing in the immersion solution. After immersion washing, it is transferred to the spray washing device 20, where high-speed water jets from the spray washing structure 22 remove debris and tangled lint from the ribbon cable. It is then conveyed to the blowing device 30, where compressed air blown from the blowing device 30 dries any remaining water stains, thus completing the ribbon cable cleaning. This reduces reliance on manual operation, eliminating the need for employees to perform repetitive and physically demanding cleaning work for extended periods, effectively reducing labor intensity. It also ensures the cleanliness of the ribbon cable, allows for continuous operation, and enables simultaneous cleaning of multiple ribbon cables. This solves the problem of low efficiency in manual cleaning of replaced ribbon cables in existing technologies, improving the reliability of subsequent processes and product quality.
[0028] In this embodiment, the product to be cleaned is the ribbon cable that has been replaced from the ribbon cable assembly.
[0029] In this application, the cable cleaning system also includes a loading device, which includes a movable structure, such as a gantry-type robotic arm, to sequentially transfer multiple replaced cables to the immersion washing device 10, the spray washing device 20, and the blowing device 30 for cleaning, allowing for continuous and simultaneous cleaning of multiple cables. After the cleaning operation is completed by the blowing device 30, the movable structure sequentially places the multiple cables onto the installation trolley and confirms and inspects the cleaning effect.
[0030] like Figure 1 and Figure 2As shown, the spray washing device 20 also includes a storage tank 23 and a filter assembly 25; the storage tank 23 has a storage chamber 230 for storing cleaning fluid; the storage chamber 230 is connected to the spray washing structure 22 through a first pipe 24 for supplying cleaning fluid to the spray washing structure 22; the filter assembly 25 is disposed in the storage chamber 230 and is connected to the receiving chamber 210 through a second pipe 26 for recovering the cleaning fluid in the receiving chamber 210 and filtering the cleaning fluid so that the filtered cleaning fluid flows into the storage chamber 230.
[0031] In this way, the storage tank 23, as the main storage container for the cleaning fluid, can continuously provide clean cleaning fluid to the spray washing structure 22, while the filter assembly 25 can recover and purify the used dirty cleaning fluid, allowing it to flow back into the storage chamber 230. This not only ensures an adequate supply of cleaning fluid but also achieves the recycling of the cleaning fluid, reducing material costs and improving resource utilization. Furthermore, the filter assembly 25 ensures that impurities and particles in the recovered cleaning fluid are effectively removed, preventing these impurities from being sprayed back onto the product to be cleaned through the storage chamber 230. This ensures the quality and effectiveness of the spray washing process, avoids secondary pollution, and enhances the consistency and reliability of the cleaning.
[0032] In this embodiment, the outer surface of the liquid storage tank 23 is provided with 10mm thick heat insulation cotton; the cleaning fluid is water; the liquid storage tank 23 is provided with a low liquid level alarm component to detect the real-time liquid level in the liquid storage chamber 230, so that when the liquid level in the liquid storage chamber 230 is lower than the preset position, an alarm is issued to remind manual replenishment of liquid and the supply of cleaning fluid to the spray cleaning structure 22 is automatically shut off.
[0033] In this application, the storage tank 23 is connected to a drain pipe 29 for draining the cleaning fluid containing impurities from the storage chamber 230; the storage chamber 230 is provided at a certain angle at the connection with the drain pipe 29 to facilitate the discharge of the cleaning fluid through the drain pipe 29. The storage tank 23 is connected to a water inlet pipe 28 for supplying cleaning fluid into the storage tank 23.
[0034] Specifically, the spray washing structure 22 includes a guide pipe 220 and a plurality of spray washing components 221; the guide pipe 220 extends along the length direction of the device body 21 and is disposed in the receiving cavity 210, and the guide pipe 220 is connected to the first pipe 24; the plurality of spray washing components 221 are sequentially and spaced apart from the guide pipe 220 along the extension direction of the guide pipe 220, and the spray washing components 221 include a plurality of nozzles 2210, which are arranged around the product to be cleaned along the width direction of the device body 21 for spraying cleaning liquid onto the product to be cleaned.
[0035] With the above configuration, multiple nozzles 2210 are arranged around the product to be cleaned along the width of the main body 21 of the device, ensuring full coverage of the surface of the product to be cleaned. Whether in the vertical or horizontal direction, uniform spraying can be obtained, effectively removing impurities from various parts of the surface of the product to be cleaned and improving the cleaning effect.
[0036] The nozzle 2210 has a spray pressure of 0.5-0.6 MPa and a flow rate of 10-20 cubic meters per hour. The nozzle 2210 is a fan-shaped nozzle that sprays from all sides to achieve comprehensive cleaning of the product. Furthermore, the spray pressure and flow rate of the nozzle 2210 can be manually adjusted according to different practical needs and actual working conditions.
[0037] Specifically, the spray cleaning assembly 221 includes a first spray pipe 2211, a second spray pipe 2212, and a third spray pipe 2213 connected in sequence. The end of the first spray pipe 2211 away from the second spray pipe 2212 is connected to the guide pipe 220. The first spray pipe 2211 and the third spray pipe 2213 are respectively arranged vertically, while the second spray pipe 2212 is located at the top of the receiving cavity 210 and is arranged horizontally. The first spray pipe 2211, the second spray pipe 2212, and the third spray pipe 2213 are each provided with multiple nozzles 2210 spaced apart along their extension directions for spraying cleaning fluid toward the product to be cleaned. This ensures that the product to be cleaned receives sufficient spraying of cleaning fluid from top to bottom and from inside to outside, achieving all-round cleaning without dead angles and improving the uniformity and thoroughness of cleaning. Furthermore, the dense arrangement of multiple spray pipes and nozzles 2210 increases the contact area and frequency between the cleaning fluid and the product surface, enabling the rapid and effective removal of impurities from the product surface, shortening the cleaning time, and improving the efficiency of the production line.
[0038] like Figure 1 As shown, the filter assembly 25 includes a first filter screen 250, a second filter screen 251, and a pump 252. The first filter screen 250 is disposed in the liquid storage chamber 230 and connected to a portion of the wall of the liquid storage chamber 230 to form a first filter chamber. The second filter screen 251 is disposed in the liquid storage chamber 230 and connected to a portion of the wall of the liquid storage chamber 230 to form a second filter chamber. The first filter screen 250 is located in the second filter chamber. The pump 252 is disposed in the first filter chamber and is connected to a filter 253. The filter 253 is connected to the receiving chamber 210 through a second pipe 26 to filter the cleaning liquid in the receiving chamber 210. The filtered cleaning liquid then flows into the liquid storage chamber 230 after passing through the first filter screen 250 and the second filter screen 251 in sequence.
[0039] The aforementioned setup, with the first filter 250 and the second filter 251 arranged sequentially, can capture impurity particles of different sizes. The first filter 250 initially filters out large particles, while the second filter 251 further intercepts smaller particles. This staged filtration method significantly improves the purity of the filtered cleaning solution. The extraction pump 252 draws the cleaning solution used to wash the product from the receiving chamber 210 through the second pipe 26. After deep purification by the filter 253, the cleaning solution is returned to the first filter chamber. Finally, it is filtered again by the first filter 250 and the second filter 251, and then returned to the storage chamber 230 for reuse. This process forms a closed-loop self-circulating purification system, effectively preventing the reintroduction of external contaminants and ensuring the continuous high quality of the cleaning solution.
[0040] In this embodiment, filter 253 is a bag filter.
[0041] like Figure 2 As shown, the spray washing device 20 also includes a first conveying component 27, which is disposed at the bottom of the receiving cavity 210. At least a portion of the first conveying component 27 is movably arranged along the length of the device body 21. At least a portion of the first conveying component 27 is used to place the product to be cleaned, thereby moving the product within the receiving cavity 210. In this way, the first conveying component 27 can precisely control the movement speed and position of the product within the receiving cavity 210, ensuring that the product remains under each spray washing component 221 for a sufficient time, allowing all parts of the product surface to be thoroughly cleaned, achieving the best cleaning effect and avoiding unevenness caused by insufficient or excessive cleaning in certain areas. Simultaneously, it reduces the waiting time for manual operation, enabling the cleaning process to be continuous, improving the production line's turnover speed and overall production efficiency.
[0042] In this embodiment, the first conveying component 27 is a conveyor belt structure.
[0043] Specifically, the spray cleaning device 20 also includes a heating component, which is disposed within the liquid storage chamber 230 to heat the cleaning fluid within the liquid storage chamber 230 to a preset temperature; wherein the preset temperature Q satisfies: 45℃≤Q≤55℃. With this configuration, the cleaning fluid at the preset temperature has lower surface tension and viscosity compared to cold water, making it easier to penetrate the stains on the surface of the ribbon cable product and more effectively remove them.
[0044] In this embodiment, the heating component is an electric heating element.
[0045] In this application, the spray washing device 20 also includes a digital display temperature controller, which is respectively installed in the liquid storage chamber 230 to detect the temperature in the liquid storage chamber 230 in real time, and to issue an alarm when the temperature of the cleaning liquid in the liquid storage chamber 230 is lower than a first preset value and higher than a second preset value; optionally, the first preset value is 45°C and the second preset value is 55°C.
[0046] In this application, there are two spray washing devices 20, which are connected sequentially to clean the product to be cleaned separately. The first spray washing device 20 performs a rough wash to remove large particles and obvious contaminants from the surface of the product; the second spray washing device 20 performs a fine wash, targeting fine residues and deep-seated stains for more thorough cleaning. This division of labor between the two stages ensures the final cleanliness of the product, achieving a deep cleaning effect. This not only guarantees deep cleaning of the product surface, improving cleaning efficiency and saving resources, but also ensures consistent product quality and safe operation of subsequent processes. The receiving cavities 210 of the two device bodies 21 are selectively connected via a baffle plate.
[0047] like Figure 3 As shown, the immersion washing device 10 includes a mounting body 12 and a second conveying component 13; a mounting groove 11 is disposed on the mounting body 12; the second conveying component 13 is disposed on the mounting body 12, and at least a portion of the second conveying component 13 is movably disposed within the mounting groove 11. The product to be cleaned is placed on at least a portion of the second conveying component 13 to move the product to be cleaned into the mounting groove 11 for immersion washing. This arrangement, through a movable structure, accurately places the product to be cleaned onto the second conveying component 13 and completely immerses it in the washing solution. Driven by the second conveying component 13, it ensures sufficient contact between the surface of the product to be cleaned and the washing solution, thereby effectively removing oil stains from the surface of the product and achieving a comprehensive and uniform cleaning effect. After immersion washing, the product to be cleaned is then transferred from the mounting groove 11 to the spray washing device 20 for high-pressure spray washing via a movable structure. The overall process reduces manual intervention and improves the automation level of the cleaning process.
[0048] In this embodiment, the second conveying component 13 is a conveyor belt structure.
[0049] like Figure 4As shown, the cleaning device 30 includes a mounting frame 31, a blowing assembly 32, and a hot air assembly 33. The mounting frame 31 has a movable channel 310, in which the product to be cleaned is movably disposed along the extension direction of the movable channel 310. The blowing assembly 32 and the hot air assembly 33 are sequentially disposed in the movable channel 310. The blowing assembly 32 is used to spray air at a preset pressure toward the product to be cleaned after being cleaned by the spray cleaning device 20. The hot air assembly 33 is used to spray hot air at a preset temperature toward the product to be cleaned to remove residual stains on the product after being cleaned by the spray cleaning device 20.
[0050] Thus, through the combined use of the blower assembly 32 and the hot air assembly 33, the product to be cleaned after spraying is sequentially dried. The blower assembly 32 accelerates the evaporation of moisture and other liquid impurities on the product surface by spraying air at a preset pressure, reducing residual dampness and removing most of the moisture and impurities, thereby increasing the drying speed. The hot air assembly 33 then provides hot air at a preset temperature, removing most of the water stains and further accelerating the drying process, ensuring the product reaches the ideal dry state in a short time. Furthermore, this simplifies the operator's workflow, reduces the need for manual intervention, and significantly improves cleaning efficiency.
[0051] In this embodiment, the blowing assembly 32 includes an air compressor and a first fan component. The air compressor is used to provide finely filtered compressed air to the first fan component for intermittent strong wind water cutting of the product to be cleaned after spraying. The wind cutting time is 1-2 minutes and the wind cutting pressure is 0.5-0.8 MPa. The pressure is regulated by a filter pressure reducing valve. A pressure regulating valve and an air filter are installed on the air circuit.
[0052] In this embodiment, the hot air assembly 33 includes an air heating tube and a second fan component, so that a laminar flow hood is used to circulate clean hot air to blow hot air onto the product to be cleaned, and the temperature of the air heating tube is 45°C-55°C.
[0053] In this application, the cleaning device 30 further includes a third conveying assembly 34, which is disposed at the bottom of the movable channel. At least a portion of the third conveying assembly 34 is movably arranged along the length of the mounting frame 31. At least a portion of the third conveying assembly 34 is used to place the product to be cleaned, thereby moving the product within the movable channel 310. In this way, the third conveying assembly 34 can precisely control the speed and position of the product to be cleaned within the movable channel 310, ensuring that the product remains under the blowing assembly 32 and the hot air assembly 33 for a sufficient time, so that all parts of the product surface can be adequately blown to achieve the best water stain removal effect.
[0054] In this embodiment, the third conveying component 34 is a conveyor belt structure.
[0055] As can be seen from the above description, the embodiments of this utility model achieve the following technical effects:
[0056] The cable cleaning system includes an immersion washing device 10, a spray washing device 20, and a blowing device 30 arranged sequentially along a preset process direction. The immersion washing device 10 has an installation tank 11 for accommodating the product to be cleaned, and the installation tank 11 is used to contain immersion washing liquid for immersing the product to be cleaned. The spray washing device 20 includes a device body 21, and the device body 21 has a receiving cavity 210 for accommodating the product to be cleaned after immersion washing device 10. The receiving cavity 210 is provided with a spray washing structure 22 for spraying cleaning liquid onto the product to be cleaned to clean impurities on the surface of the product to be cleaned. The blowing device 30 is located on the outlet side of the spray washing device 20 for blowing air onto the product to be cleaned after being cleaned by the spray washing device 20 to remove residual stains on the surface of the product to be cleaned after being cleaned by the spray washing device 20. The technical solution of this utility model involves transporting the replaced ribbon cables to the installation tank 11 of the immersion washing device 10 for pre-washing in the immersion solution. After immersion washing, the cables are transferred to the spray washing device 20, where high-speed water jets from the spray washing structure 22 remove debris and tangled lint from the ribbon cables. They are then conveyed to the blowing device 30, where compressed air blown out by the blowing device 30 dries any remaining water stains, thus completing the cleaning of the ribbon cables. This reduces reliance on manual operation, eliminating the need for employees to perform repetitive and physically demanding cleaning work for extended periods, effectively reducing labor intensity. It also ensures the cleanliness of the ribbon cables, allows for continuous operation, and enables simultaneous cleaning of multiple ribbon cables. This solves the problem of low efficiency in manual cleaning of replaced ribbon cables in existing technologies, improving the reliability of subsequent processes and product quality.
[0057] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.
[0058] Unless otherwise specifically stated, the relative arrangement, numerical expressions, and values of the components and steps described in these embodiments do not limit the scope of this invention. It should also be understood that, for ease of description, the dimensions of the various parts shown in the drawings are not drawn to actual scale. Techniques, methods, and devices known to those skilled in the art may not be discussed in detail, but where appropriate, such techniques, methods, and devices should be considered part of the specification. In all examples shown and discussed herein, any specific values should be interpreted as merely exemplary and not as limitations. Therefore, other examples of exemplary embodiments may have different values. It should be noted that similar reference numerals and letters in the following drawings denote similar items; therefore, once an item is defined in one drawing, it need not be further discussed in subsequent drawings.
[0059] In the description of this utility model, it should be understood that the directional terms such as "front, back, up, down, left, right", "horizontal, vertical, horizontal" and "top, bottom" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description. Unless otherwise stated, these directional terms do not indicate or imply that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on the scope of protection of this utility model. The directional terms "inner" and "outer" refer to the inner and outer contours of each component itself.
[0060] For ease of description, spatial relative terms such as "above," "on top of," "on the upper surface of," "above," etc., are used herein to describe the spatial positional relationship of a device or feature as shown in the figures to other devices or features. It should be understood that spatial relative terms are intended to encompass different orientations in use or operation beyond the orientation of the device as described in the figures. For example, if the device in the figures were inverted, a device described as "above" or "on top of" other devices or structures would subsequently be positioned as "below" or "under" other devices or structures. Thus, the exemplary term "above" can include both "above" and "below." The device may also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatial relative descriptions used herein will be interpreted accordingly.
[0061] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A cable cleaning system, characterized in that, include: The immersion washing device (10), the spray washing device (20), and the blowing cleaning device (30) are arranged sequentially along the preset process direction; The immersion device (10) has a mounting groove (11) for accommodating the product to be cleaned, and the mounting groove (11) is used to contain immersion liquid for immersing the product to be cleaned. The spray washing device (20) includes a device body (21), the device body (21) having a receiving cavity (210) for receiving the product to be cleaned after being immersed in the immersion washing device (10); the receiving cavity (210) is provided with a spray washing structure (22) for spraying cleaning liquid onto the product to be cleaned to clean the impurities on the surface of the product to be cleaned; The blowing device (30) is located on the outlet side of the spray washing device (20) to blow air onto the product to be cleaned after being cleaned by the spray washing device (20) to remove the residual stains on the surface of the product to be cleaned after being cleaned by the spray washing device (20).
2. The cable cleaning system according to claim 1, characterized in that, The spray washing device (20) also includes: A storage tank (23) has a storage cavity (230) for storing cleaning fluid; the storage cavity (230) is connected to the spray structure (22) via a first pipe (24) for supplying the cleaning fluid to the spray structure (22); A filter assembly (25) is disposed in the liquid storage chamber (230). The filter assembly (25) is connected to the receiving chamber (210) through a second pipe (26) to recover the cleaning liquid in the receiving chamber (210) and filter the cleaning liquid so that the filtered cleaning liquid flows into the liquid storage chamber (230).
3. The cable cleaning system according to claim 2, characterized in that, The spray washing structure (22) includes: A connecting pipe (220) extends along the length of the device body (21) and is disposed in the receiving cavity (210), and the connecting pipe (220) is connected to the first pipe (24); Multiple spray washing components (221) are sequentially and spaced apart from the connecting pipe (220) along the extension direction of the connecting pipe (220). Each spray washing component (221) includes multiple nozzle elements (2210), which are arranged around the product to be cleaned along the width direction of the device body (21) for spraying the cleaning liquid onto the product to be cleaned.
4. The cable cleaning system according to claim 3, characterized in that, The spray washing assembly (221) includes: A first nozzle (2211), a second nozzle (2212), and a third nozzle (2213) are connected in sequence. The end of the first nozzle (2211) away from the second nozzle (2212) is connected to the guide pipe (220). The first nozzle (2211) and the third nozzle (2213) are respectively arranged in a vertical direction. The second nozzle (2212) is located at the top of the receiving cavity (210) and is arranged in a horizontal direction. The first nozzle (2211), the second nozzle (2212), and the third nozzle (2213) are respectively provided with a plurality of nozzle elements (2210) at intervals along their extension direction for spraying the cleaning liquid toward the product to be cleaned.
5. The cable cleaning system according to claim 2, characterized in that, The filter assembly (25) includes: A first filter screen (250) is disposed in the liquid storage cavity (230) and connected to a portion of the cavity wall of the liquid storage cavity (230) to form a first filter cavity with the portion of the cavity wall of the liquid storage cavity (230); The second filter screen (251) is disposed in the liquid storage cavity (230) and connected to a portion of the cavity wall of the liquid storage cavity (230) to form a second filter cavity with a portion of the cavity wall of the liquid storage cavity (230), wherein the first filter screen (250) is located in the second filter cavity; An extraction pump (252) is installed in the first filter chamber. The extraction pump (252) is connected to a filter (253). The filter (253) is connected to the receiving chamber (210) through the second pipe (26) so as to filter the cleaning liquid in the receiving chamber (210) through the filter (253) and allow the filtered cleaning liquid to flow into the liquid storage chamber (230) after passing through the first filter screen (250) and the second filter screen (251) in sequence.
6. The cable cleaning system according to claim 1, characterized in that, The spray washing device (20) also includes: A first conveying component (27) is disposed at the bottom of the receiving cavity (210). At least a portion of the first conveying component (27) is movably disposed along the length direction of the device body (21). At least a portion of the first conveying component (27) is used to place the product to be cleaned so as to drive the product to be cleaned to move within the receiving cavity (210).
7. The cable cleaning system according to claim 2, characterized in that, The spray washing device (20) also includes: A heating component is disposed in the liquid storage chamber (230) to heat the temperature of the cleaning fluid in the liquid storage chamber (230) to a preset temperature; wherein the preset temperature Q satisfies: 45℃≤Q≤55℃.
8. The cable cleaning system according to claim 1, characterized in that, There are two spray washing devices (20), which are connected in sequence to clean the products to be cleaned respectively.
9. The cable cleaning system according to claim 1, characterized in that, The immersion apparatus (10) includes: Mounting body (12), the mounting groove (11) is disposed on the mounting body (12); A second conveying component (13) is disposed on the mounting body (12). At least a portion of the second conveying component (13) is movably disposed within the mounting groove (11). The product to be cleaned is disposed on at least a portion of the second conveying component (13) to drive the product to be cleaned to be immersed in the mounting groove (11).
10. The cable cleaning system according to claim 1, characterized in that, The cleaning device (30) includes: The mounting frame (31) has a movable channel (310), and the product to be cleaned is movably disposed in the movable channel (310) along the extension direction of the movable channel (310); A blower assembly (32) and a hot air assembly (33) are sequentially arranged in the active channel (310). The blower assembly (32) is used to spray air at a preset pressure toward the product to be cleaned after being cleaned by the spray washing device (20). The hot air assembly (33) is used to spray hot air at a preset temperature toward the product to be cleaned to remove the stains remaining on the product to be cleaned after being cleaned by the spray washing device (20).