Computer data line transmission manufacturing device
By designing a manufacturing device for data line production, using the combined technology of heating and cleaning liquid, the problems of stubborn stains and surface quality detection are solved, efficient cleaning and quality detection are achieved, and the production quality and detection accuracy of data line are improved.
Patent Information
- Application Number
- CN202510301327.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-14
- Publication Date
- 2025-06-03
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
It is difficult for the prior art to effectively clean stubborn stains, such as oil stains and glue residues during the production process of data lines, and traditional testing methods cannot fully reflect the scratches, depressions, and protrusions of the outer wall of the wire, resulting in inaccurate testing results and affecting product quality.
A computer data line transmission manufacturing device is designed, including a bearing part, a softening mechanism, a coating mechanism, a detection part and a wiping mechanism. The data line is heated by heating the heating member to expand the insulating layer and show small scratches; the coating layer absorbs the cleaning liquid and applies it to the outer wall of the data line, and uses volatilization to accelerate cooling and cleaning; the detection head collects image data for quality judgment; the wipe layer is combined with the scratch ring to clean the surface of the data line and prevent dirt from accumulating in the wipe layer.
Through the combination of heating and cleaning liquid, stubborn stains on the data line can be effectively removed and cleaning efficiency can be improved; scratches, depressions and protrusions on the surface of the data line can be detected and repaired to improve product quality and inspection accuracy; extend the service life of the wipe layer to ensure the continuous and efficient operation of the equipment.
Smart Images

Figure CN120079615A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of data cable production, and specifically relates to a computer data cable transmission manufacturing device. Background Art
[0002] In the field of computer data cable transmission manufacturing, ensuring the quality and cleanliness of data cables is of utmost importance. The condition of the outer wall of the data cable directly affects its performance and service life, and there are obvious deficiencies in traditional detection and cleaning methods.
[0003] For example, a patent of Chinese Patent Application CN118847562B discloses an appearance cleaning device for data cable production, which relates to the technical field of appearance cleaning. It includes a working frame, both sides of the working frame are installed with frame plates, and conveying round openings are opened in the middle of the frame plates. There is a transmission processing mechanism, the transmission processing mechanism includes a mounting sleeve, a rotating wheel and an arc-shaped brush strip. At the upper end and the bottom end of the right side of the inner cavity of the working frame, rotating wheels are provided. On the opposite side of the upper end and the bottom end of the rotating wheels, mounting sleeves are installed. Arc-shaped brush strips are installed outside the rotating wheels. There is a circular processing mechanism, and the circular processing mechanism includes a rotating ring, a bevel gear plate and a circular air duct.
[0004] Although the above technology realizes the cleaning and detection of the outside of the data cable, dust, debris and other impurities in the production environment are easily attached to the brush head or the outer wall of the data cable, changing the friction force, resulting in inaccurate detection results. Moreover, relying solely on the single determination data of friction force cannot comprehensively reflect problems such as scratches, depressions, and protrusions that may exist on the outer wall of the wire, which is very likely to cause missed inspections and affect the product quality control.
[0005] During the production process of the data cable, it may be contaminated with stubborn stains such as oil stains and glue residues. Ordinary brush heads are difficult to effectively clean them. Although vigorously wiping may remove some stains, it will cause physical damage to the outer wall of the data cable, affecting the insulation performance and appearance quality.
[0006] Therefore, the present invention provides a computer data cable transmission manufacturing device. Summary of the Invention
[0007] In order to make up for the deficiencies of the prior art and solve at least one of the technical problems proposed in the background art.
[0008] The technical solution adopted by the present invention to solve its technical problems is as follows: A computer data cable transmission manufacturing device of the present invention includes a bearing part, a softening mechanism, a coating mechanism, a detection part and a wiping mechanism; The bearing part includes a bearing table and a storage box. The storage box is fixedly installed on the outer wall of the bearing table and is used to store cleaning liquid; The softening mechanism includes an installation cylinder and a heating element. The installation cylinder is fixedly installed on the inner wall of the bearing table, and the heating element is used to heat the data cable passing through the installation cylinder; The coating mechanism includes a mounting ring and a coating layer. The coating layer is fixedly installed on the inner wall of the mounting ring and is used to absorb the cleaning liquid in the inner cavity of the storage tank. The mounting ring coincides with the axis of the mounting cylinder. The detection part includes a mounting frame and a detection head. The detection head is installed in the bearing platform through the mounting frame. The wiping mechanism includes a wiping layer and a support ring. The wiping layer is arranged on the inner wall of the support ring. One end of the mounting ring away from the mounting cylinder is rotatably connected to the support ring.
[0009] Preferably, there are two mounting frames. One mounting frame is located between the support ring and the mounting cylinder, and the other mounting frame is located on the side of the support ring away from the mounting cylinder.
[0010] Preferably, a diversion pipe is fixedly installed on the inner wall of the mounting ring. One end of the diversion pipe extends into the inner cavity of the coating layer and is provided with a liquid discharge port. An annular pipe is arranged on the radially outer wall of the mounting ring. The inner cavity of the annular pipe is communicated with the inner cavity of the diversion pipe. A control pump is fixedly installed on the outer wall of the storage tank. The input end of the control pump extends into the inner cavity of the storage tank, and the output end of the control pump is communicated with the inner cavity of the annular pipe.
[0011] Preferably, a guide cylinder is fixedly installed on the outer wall of the support ring. A sliding frame is slidably installed on the side wall of the guide cylinder. A scraping ring is fixedly installed at the bottom of the sliding frame. The axis of the scraping ring coincides with the axis of the support ring, and the inner wall of one side facing the support ring is inclined. A collection groove is fixedly installed on the bottom surface of the bearing platform. The upper opening of the collection groove is located directly below the mounting ring.
[0012] Preferably, a mounting cover is fixedly installed on the outer wall of the support ring. An elastic ring is fixedly installed on the outer wall of the mounting cover. The inner cavity of the elastic ring is communicated with the inner cavity of the mounting cover. The outer wall of the elastic ring is attached to the outer wall of the wiping layer.
[0013] Preferably, a communication pipe is fixedly installed on the outer wall of the mounting cover. The other end of the communication pipe is fixedly installed with an adjustment cylinder. One end of the guide cylinder is fixedly connected to the outer wall of the adjustment cylinder, and the inner cavity of the guide cylinder is communicated with the inner cavity of the adjustment cylinder. A control plug is slidably installed in the inner cavity of the guide cylinder. A connecting rod is fixedly installed on the outer wall of the control plug. The other end of the connecting rod is fixedly connected to the outer wall of the sliding frame.
[0014] Preferably, a mounting block is fixedly installed on the outer wall of the guide cylinder. A plug pin is slidably installed in the inner wall of the mounting block through an elastic member. An annular groove is formed on the radially outer wall of the control plug. One end of the plug pin extends into the inner cavity of the guide cylinder, and the side wall of the plug pin is inclined.
[0015] Preferably, a sealing patch is fixedly installed on the inner wall of the adjusting cylinder. The sealing patch is made of an elastic material and has a tendency to fit the upper end of the communicating pipe in real time at the bottom surface; A connecting cylinder is fixedly installed on the outer wall of the installation cover, and a traction plug is slidably installed on the inner wall of the connecting cylinder; The bottom surface of the insertion pin is fixedly installed and connected with a connecting rope connected to the traction plug, and the outer wall of the control plug is fixedly connected with a traction rope connected to the sealing patch.
[0016] Preferably, a transfer cylinder is fixedly installed on the inner wall of the mounting bracket between the support ring and the installation cylinder. A master control plug is slidably installed in the inner cavity of the transfer cylinder, and one end of the transfer cylinder is communicated with the inner cavity of the adjusting cylinder through a conduit.
[0017] Preferably, the heating elements are spirally distributed in the inner cavity of the installation cylinder. A control cover is fixedly installed on the radial outer wall of the installation cylinder, and the inner cavity of the control cover is communicated with the end of the transfer cylinder away from the adjusting cylinder through a conduit.
[0018] The beneficial effects of the present invention are as follows: 1. By setting the heating elements, the data cable passing through the installation cylinder is heated. In this embodiment, when the data cable passes through, the outer wall of the insulating layer is heated by the heating elements. The heating causes the insulating layer material to expand. When there are small scratches on the surface of the insulating layer, they become more obvious due to the expansion. The detection head collects the image data on the surface of the data cable as a parameter for judging the surface quality of the data cable. A wiping layer and a coating layer are provided. After the heated insulating layer of the data cable contacts the cleaning liquid, the volatilization of the cleaning liquid is utilized to accelerate the cooling of the insulating layer of the data cable. At the same time, when the heated insulating layer contacts the cleaning liquid, due to the residual heat on the surface after heating, the cleaning liquid can better penetrate into the dirt and combine with the dirt, improving the cleaning efficiency. At the same time, during the heating process, the dents and protrusions on the outside of the data cable are repaired. After wiping, the dirt on the surface of the data cable is removed as the final image data collection, thereby improving the production quality of the data cable; 2. By setting the scraping ring, the outer wall of the wiping layer is scraped by the friction between the scraping ring and the wiping layer to clean the wiping layer and prevent dirt from accumulating and remaining on the outer wall of the wiping layer for reuse. After the data cable is completely wound, the fluid in the elastic ring is discharged, and the elastic ring is controlled to contract, thereby driving the wiping layer to contract. At this time, the contracted wiping layer is scraped by the scraping ring. Compared with scraping the wiping layer in the expanded state, it can protect the wiping layer and extend its service life. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The present invention will be further described below with reference to the accompanying drawings.
[0020] Figure 1 is a schematic structural diagram of the whole of the present invention; Figure 2 is a schematic internal structure diagram of the carrier table in the present invention; Figure 3 is a schematic structural diagram of the heating element in the present invention; Figure 4 is a schematic installation diagram of the diversion pipe in the present invention; Figure 5 is a schematic installation diagram of the wiping layer in the present invention; Figure 6 is a schematic internal structure diagram of the adjusting cylinder in the present invention; Figure 7 is Figure 6 a partial enlarged view of part A in
[0021] In the figure: 1, bearing platform; 2, mounting cylinder; 3, control cover; 4, adapter cylinder; 5, scraping ring; 6, collection groove; 7, mounting rack; 8, storage box; 9, support ring; 10, detection head; 11, main control plug; 12, control pump; 13, heating element; 14, annular pipe; 15, diversion pipe; 16, coating layer; 17, mounting ring; 18, sliding rack; 19, connecting rod; 20, mounting block; 21, connecting rope; 22, adjusting cylinder; 23, insertion pin; 24, guiding cylinder; 25, towing rope; 26, sealing patch; 27, connecting pipe; 28, wiping layer; 29, elastic ring; 30, mounting cover; 31, control plug; 32, connecting cylinder; 33, towing plug. Specific embodiments
[0022] In order to make the technical means, creative features, achieved purposes and functions of the present invention easy to understand, the present invention will be further described below in conjunction with specific embodiments.
[0023] As Figures 1 to 7 shown, the computer data cable transmission manufacturing device of the present invention is used in cooperation with the data cable production and winding steps, and includes a bearing part, a softening mechanism, a coating mechanism, a detection part and a wiping mechanism.
[0024] The bearing part includes a bearing platform 1 and a storage box 8. The storage box 8 is fixedly installed on the outer wall of the bearing platform 1 and is used to store cleaning liquid. Inlet and outlet ports are respectively arranged at both ends of the bearing platform 1. The direction of data cable travel is marked by setting a pointing arrow. When in use, it needs to be used in cooperation with a data cable winder. The data cable during winding enters from the inlet port and exits from the outlet port.
[0025] The softening mechanism includes a mounting cylinder 2 and a heating element 13. The mounting cylinder 2 is fixedly installed on the inner wall of the bearing platform 1. One end of the mounting cylinder 2 is communicated with the inlet port. When the data cable is wound and conveyed, it passes through the inner cavity of the mounting cylinder 2.
[0026] The heating element 13 is used to heat the data cable passing through the mounting cylinder 2. In this embodiment, the heating element 13 is selected as a resistance heating wire. When the data cable passes through, it heats the rubber insulation layer on the outer wall of the data cable (suitable for the outer insulation layer of the data cable being made of elastic rubber material). By heating the outer wall of the insulation layer through the heating element 13, the insulation layer material expands. When there are fine scratches on the surface of the insulation layer (such as scratches by thin and sharp objects), they become more obvious due to expansion, which is convenient for appearance detection.
[0027] The coating mechanism includes a mounting ring 17 and a coating layer 16, and the coating layer 16 is made of elastic rubber material.
[0028] The coating layer 16 is fixedly installed on the inner wall of the mounting ring 17 and is used to absorb the cleaning liquid in the inner cavity of the storage box 8. The mounting ring 17 coincides with the axis of the mounting cylinder 2. When the data cable is conveyed, the heated data cable passes through the coating layer 16. After the coating layer 16 absorbs the cleaning liquid, it coats the cleaning liquid on the outer wall of the data cable to facilitate the wiping and cleaning of the dirt on the surface of the data cable.
[0029] In this embodiment, the cleaning liquid is selected as alcohol (with excellent volatility). After the heated insulation layer of the data cable contacts the cleaning liquid, by using the volatilization of the cleaning liquid, the temperature reduction of the insulation layer of the data cable is accelerated. At the same time, when the heated insulation layer contacts the cleaning liquid, due to the residual heat on the surface, the cleaning liquid can better penetrate into the dirt and combine with the dirt, promoting the subsequent wiping and cleaning.
[0030] The detection part includes a mounting bracket 7 and a detection head 10. The detection head 10 is installed in the carrier 1 through the mounting bracket 7, and the mounting bracket 7 is fixedly connected to the inner wall of the carrier 1 to provide an installation position for the detection head 10. In this embodiment, the detection head 10 is selected as a common surface detection camera, which is used to collect the image data on the surface of the data cable (judging whether the surface quality of the cable is qualified by collecting the surface image information of the cable, which is a common detection method, and the specific collection and judgment are not elaborated here too much), as a parameter for judging the surface quality of the data cable.
[0031] The wiping mechanism includes a wiping layer 28 and a support ring 9. The outer part of the wiping layer 28 is made of elastic non-woven fabric, and the inside is filled with sponge.
[0032] The wiping layer 28 is arranged on the inner wall of the support ring 9. One end of the mounting ring 17 away from the mounting cylinder 2 is rotatably connected to the support ring 9. The data cable passes through the wiping layer 28, and the surface of the wiping layer 28 is in close contact with the outer wall of the data cable. The data cable smeared with the cleaning liquid by the coating layer 16 slides and rubs against the wiping layer 28, and the wiping layer 28 wipes and absorbs the dirt with the cleaning liquid to achieve the cleaning of the data cable.
[0033] There are two mounting brackets 7. One of the mounting brackets 7 is located between the support ring 9 and the mounting cylinder 2. The detection head 10 outside the mounting bracket 7 between the support ring 9 and the mounting cylinder 2 is used to detect scratches on the outer wall of the data cable after heating the data cable.
[0034] The other mounting bracket 7 is located on the side of the support ring 9 away from the mounting cylinder 2. The detection head 10 inside the mounting bracket 7 here is used to detect dents, protrusions and dirt on the outside of the data cable (the dents and protrusions are caused by extrusion and the rubber on the surface of the data cable is not damaged). The data cable located there has been heated and wiped clean. During the heating process, the internal stress inside the rubber is released. The reduction of the internal stress makes it easier for the rubber molecular chains to adjust and recover under the action of thermal motion and thermal expansion, thereby repairing the dents and protrusions on the outside of the data cable. After wiping, the dirt on the surface of the data cable is removed for final image data acquisition, thus improving the production quality of the data cable.
[0035] Among them, the position of the mounting bracket 7 is the image data acquisition point on the surface of the data cable. Two acquisition points are set to collect different target data, thereby improving the production quality of the data cable.
[0036] As a preferred embodiment of the present invention, a diversion pipe 15 is fixedly installed on the inner wall of the mounting ring 17. Among them, the diversion pipe 15 is a rigid copper pipe.
[0037] One end of the diversion pipe 15 extends into the inner cavity of the coating layer 16 and is provided with a liquid discharge port. The diversion pipes 15 are evenly distributed in a ring along the axis of the mounting ring 17. Cleaning is injected into the coating layer 16 through the plurality of diversion pipes 15, thereby realizing the wetting of the coating layer 16.
[0038] An annular pipe 14 is provided on the radially outer wall of the mounting ring 17. The inner cavity of the annular pipe 14 is communicated with the inner cavity of the diversion pipe 15. The inner cavities of the plurality of diversion pipes 15 are communicated with the inner cavity of the annular pipe 14. The inner wall of the annular pipe 14 is fixedly connected to the inner wall of the diversion pipe 15. The diversion pipe 15 provides support for the annular pipe 14. At the same time, cleaning liquid is injected into the inner cavity of the annular pipe 14 to realize the synchronous delivery of the cleaning liquid into the interiors of the plurality of diversion pipes 15.
[0039] A control pump 12 is fixedly installed on the outer wall of the storage box 8. The control pump 12 is a common micro water pump. The input end of the control pump 12 extends into the inner cavity of the storage box 8. The output end of the control pump 12 is communicated with the inner cavity of the annular pipe 14. The cleaning liquid in the inner cavity of the storage box 8 is transported to the inner cavity of the annular pipe 14 through the control pump 12 to facilitate the wetting of the coating layer 16.
[0040] A guide cylinder 24 is fixedly installed on the outer wall of the support ring 9. A sliding frame 18 is slidably installed on the side wall of the guide cylinder 24. The sliding frame 18 can slide along the axis of the guide cylinder 24.
[0041] A scraping ring 5 is fixedly installed at the bottom of the sliding carriage 18. The axial direction of the scraping ring 5 coincides with the axis of the support ring 9. After the data cable is wound up, the sliding carriage 18 is slidably adjusted to drive the scraping ring 5 to slide towards the inner cavity of the support ring 9. By rubbing the scraping ring 5 against the wiping layer 28, the outer wall of the wiping layer 28 is scraped to clean the wiping layer 28, preventing dirt from accumulating and remaining on the outer wall of the wiping layer 28 for convenient reuse.
[0042] In order to improve the scraping and cleaning effect, the inner wall of one side of the scraping ring 5 facing the support ring 9 is inclined, improving the scraping and cleaning effect during scraping and cleaning.
[0043] When the scraping ring 5 continues to slide after passing over the wiping layer 28, the coating layer 16 is squeezed to discharge the residual cleaning liquid in the coating layer 16. A collection groove 6 is fixedly installed on the bottom surface of the carrier 1. The upper end opening of the collection groove 6 is located directly below the mounting ring 17. After the winding is completed, the cleaning liquid discharged by squeezing the coating layer 16 falls into the inner cavity of the collection groove 6, achieving the effect of protecting the coating layer 16.
[0044] As a preferred embodiment of the present invention, a mounting cover 30 is fixedly installed on the outer wall of the support ring 9. A cavity is provided inside the mounting cover 30 and it is made of a rigid material (hard plastic is selected). An elastic ring 29 is fixedly installed on the outer wall of the mounting cover 30. The elastic ring 29 is made of rubber material and has a cavity inside.
[0045] The inner cavity of the elastic ring 29 communicates with the inner cavity of the mounting cover 30. The outer wall of the elastic ring 29 is in contact with the outer wall of the wiping layer 28. When the wiping layer 28 wipes the outer wall of the data cable, a fluid (hydraulic oil is selected in this embodiment) is injected into the inner cavity of the mounting cover 30 to control the expansion of the elastic ring 29, so that the wiping layer 28 can be evenly and tightly attached to the outer wall of the data cable.
[0046] After the data cable is wound up, the fluid in the elastic ring 29 is discharged to control the contraction of the elastic ring 29, thereby driving the contraction of the wiping layer 28. At this time, the contracted wiping layer 28 is scraped by the scraping ring 5, which can protect the wiping layer 28 and extend its service life compared to scraping when the wiping layer 28 is in the expanded state.
[0047] A communication pipe 27 is fixedly installed on the outer wall of the mounting cover 30. The other end of the communication pipe 27 is fixedly installed with an adjustment cylinder 22. The communication between the adjustment cylinder 22 and the inner cavity of the mounting cover 30 is achieved through the communication pipe 27. The inner cavity of the adjustment cylinder 22 stores hydraulic oil.
[0048] One end of the guide cylinder 24 is fixedly connected to the outer wall of the adjustment cylinder 22, and the inner cavity of the guide cylinder 24 communicates with the inner cavity of the adjustment cylinder 22. The adjustment cylinder 22 provides support for the guide cylinder 24.
[0049] A control plug 31 is slidably installed in the inner cavity of the guiding cylinder 24. A connecting rod 19 is fixedly installed on the outer wall of the control plug 31. The other end of the connecting rod 19 is fixedly connected to the outer wall of the sliding frame 18. Sliding the control plug 31 drives the connecting rod 19 to slide, thereby driving the sliding frame 18 and the scraping ring 5 to slide.
[0050] When wiping the outer wall of the data cable, the oil pressure in the inner cavity of the lifting and adjusting cylinder 22 is increased. At this time, the control plug 31 slides forward until the scraping ring 5 slides out of the inner cavity of the support ring 9. At the same time, the elastic ring 29 expands until the wiping layer 28 fits against the outer wall of the data cable.
[0051] After the data cable is wound up, the oil pressure in the inner cavity of the adjusting cylinder 22 is decreased. At this time, the control plug 31 drives the scraping ring 5 to slide in the reverse direction. At the same time, the wiping layer 28 contracts until the scraping ring 5 finishes scraping the wiping layer 28, achieving the purpose of cleaning the wiping layer 28.
[0052] As a preferred embodiment of the present invention, an installation block 20 is fixedly installed on the outer wall of the guiding cylinder 24. A plug pin 23 is slidably installed in the inner wall of the installation block 20 through an elastic member. The outer wall of the plug pin 23 slidably fits with the inner wall of the installation block 20. The elastic member is a spring, one end of which is connected to the bottom surface of the plug pin 23, and the other end is fixedly connected to the inner wall of the installation block 20.
[0053] An annular groove is formed in the radial outer wall of the control plug 31. One end of the plug pin 23 extends into the inner cavity of the guiding cylinder 24. The elastic force of the spring pushes the plug pin 23, so that the plug pin 23 always has a tendency to be inserted into the annular groove.
[0054] The side wall of the plug pin 23 is inclined. When the increase in the inner cavity of the adjusting cylinder 22 drives the control plug 31 to slide, the control plug 31 slides and presses against the inclined surface of the plug pin 23, causing the plug pin 23 to contract until the annular groove on the outer wall of the control plug 31 is aligned with the plug pin 23. At this time, the plug pin 23 is inserted into the annular groove, realizing the one-way locking of the control plug 31.
[0055] When the oil pressure in the inner cavity of the adjusting cylinder 22 decreases, the control plug 31 is locked by the insertion of the plug pin 23 into the annular groove on the outer wall of the control plug 31, thereby limiting the position of the scraping ring 5. As the oil pressure in the inner cavity of the adjusting cylinder 22 decreases, it drives the elastic ring 29 and the wiping layer 28 to contract first. After contraction, the plug pin 23 is slid until the plug pin 23 is separated from the annular groove. At this time, the control plug 31 slides in the reverse direction, driving the scraping ring 5 to slide and scrape the outer wall of the wiping layer 28, preventing the wiping layer 28 from interfering with the movement of the scraping ring 5.
[0056] A sealing patch 26 is fixedly installed on the inner wall of the adjusting cylinder 22. The sealing patch 26 is made of sandalwood material, and one side of the edge position is connected to the inner wall of the adjusting cylinder 22, and the other side can be lifted.
[0057] The sealing sticker 26 is made of elastic material, and the bottom surface has a tendency to fit with the upper end of the connecting tube 27 in real time. After the sealing sticker 26 fits with the upper end surface of the connecting tube 27, the connecting tube 27 is controlled to be unidirectional.
[0058] When the oil pressure in the inner cavity of the regulating cylinder 22 increases, the connecting tube 27 is closed due to the fit between the sealing sticker 26 and the upper end opening of the connecting tube 27. At this time, the control plug 31 slides first until the control plug 31 slides until the scraper ring 5 completely slides out of the inner cavity of the support ring 9 to prevent the expansion of the elastic ring 29 and the wiping layer 28 from interfering with the sliding of the scraper ring 5. The sealing sticker 26 is lifted, the connecting tube 27 is turned on, and the oil pressure in the inner cavity of the regulating cylinder 22 continues to increase until the control plug 31 moves until the connector pin 23 is aligned with the annular groove and the wiping layer 28 fits with the outer wall of the data cable.
[0059] A connecting cylinder 32 is fixedly mounted on the outer wall of the mounting cover 30 , and a traction plug 33 is slidably mounted on the inner wall of the connecting cylinder 32 . The oil pressure in the inner cavity of the mounting cover 30 changes, driving the traction plug 33 to slide.
[0060] The bottom surface of the plug pin 23 is fixedly installed with a connecting rope 21 connected to the traction plug 33. When the oil pressure in the inner cavity of the regulating cylinder 22 is reduced, the traction plug 33 slides toward the inner cavity of the mounting cover 30 until the connecting rope 21 is tensioned. During this process, the elastic ring 29 and the wiping layer 28 shrink to provide an escape space for the sliding of the scraper ring 5. The oil pressure continues to be reduced, and the traction plug 33 slides through the connecting rope 21 to pull the plug pin 23 so that the plug pin 23 is separated from the annular groove. At this time, the control plug 31 starts to slide.
[0061] The outer wall of the control plug 31 is fixedly connected with a traction rope 25 connected to the closing sticker 26. As the oil pressure in the inner cavity of the adjusting cylinder 22 increases, the control plug 31 slides toward the position of the plug pin 23 until the scraper ring 5 is offset from the wiping layer 28. At this time, the traction rope 25 is tightened, and the control plug 31 continues to slide, pulling one side of the closing sticker 26 to lift up. At this time, the connecting tube 27 is connected, and the elastic ring 29 and the wiping layer 28 expand again until the plug pin 23 is plugged into the annular groove again for reuse.
[0062] As a preferred embodiment of the present invention, a switching tube 4 is fixedly installed on the inner wall of the mounting frame 7 between the support ring 9 and the mounting tube 2, and a master control plug 11 is slidably installed in the inner cavity of the switching tube 4, which divides the inner cavity of the switching tube 4 into two chambers.
[0063] One end of the adapter tube 4 is connected to the inner cavity of the regulating tube 22 through a conduit, and the chamber in which the adapter tube 4 and the regulating tube 22 are connected is filled with hydraulic oil. The sliding master control plug 11 realizes the adjustment of the oil pressure in the inner cavity of the regulating tube 22, and the inner cavity of the adapter tube 4 on the other side of the master control plug 11 is filled with thermal expansion liquid (alcohol is selected in this embodiment).
[0064] The heating element 13 is spirally distributed in the inner cavity of the mounting cylinder 2 to facilitate uniform heating of the outer wall of the passing data cable.
[0065] A control cover 3 is fixedly installed on the radial outer wall of the mounting cylinder 2, and a thermal expansion liquid is filled in the inner cavity of the control cover 3.
[0066] The inner cavity of the control cover 3 is communicated with one end of the adapter cylinder 4 away from the adjustment cylinder 22 through a conduit. During the heating process of the heating element 13, the thermal expansion liquid in the inner cavity of the control cover 3 expands due to heat, pushing the master control plug 11 to slide, increasing the oil pressure in the inner cavity of the adjustment cylinder 22. After the winding is completed, the heating is stopped. At this time, the volume of the thermal expansion liquid in the inner cavity of the control cover 3 decreases, driving the master control plug 11 to slide in the reverse direction and reducing the oil pressure in the inner cavity of the adjustment cylinder 22.
[0067] The above front, back, left, right, up, and down are all based on the Figure 1 description in the accompanying drawings of the specification. Taking the perspective of the person observing as the standard, the side of the device facing the observer is defined as the front, the left side of the observer is defined as the left, and so on.
[0068] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as limiting the protection scope of the present invention.
[0069] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification only illustrate the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection of the present invention is defined by the appended claims and their equivalents.
Claims
1. A computer data line transmission manufacturing device, characterized in that: It includes a bearing part, a softening mechanism, a coating mechanism, a detection part and a wiping mechanism; The bearing portion comprises a bearing platform (1) and a storage box (8); the storage box (8) is fixedly mounted on an outer wall of the bearing platform (1) and is used to store cleaning liquid; The softening mechanism comprises a mounting tube (2) and a heating element (13); the mounting tube (2) is fixedly mounted on the inner wall of the support platform (1); and the heating element (13) is used to heat the data line passing through the mounting tube (2); The coating mechanism comprises a mounting ring (17) and a coating layer (16); the coating layer (16) is fixedly mounted on the inner wall of the mounting ring (17) and is used to absorb the cleaning liquid in the inner cavity of the storage box (8); the mounting ring (17) coincides with the axis of the mounting cylinder (2); The detection unit comprises a mounting frame (7) and a detection head (10), wherein the detection head (10) is mounted in the bearing platform (1) via the mounting frame (7); The wiping mechanism comprises a wiping layer (28) and a support ring (9); the wiping layer (28) is arranged on the inner wall of the support ring (9); and one end of the mounting ring (17) away from the mounting cylinder (2) is rotatably connected to the support ring (9).
2. A computer data line transmission manufacturing device according to claim 1, characterized in that: Two mounting frames (7) are provided, one of which is located between the support ring (9) and the mounting cylinder (2), and the other of which is located on a side of the support ring (9) away from the mounting cylinder (2).
3. A computer data line transmission manufacturing device according to claim 2, characterized in that: A flow guide tube (15) is fixedly mounted on the inner wall of the mounting ring (17); one end of the flow guide tube (15) extends to the inner cavity of the coating layer (16) and is provided with a liquid discharge port; An annular tube (14) is provided on the radial outer wall of the mounting ring (17), and the inner cavity of the annular tube (14) is in communication with the inner cavity of the flow guide tube (15); A control pump (12) is fixedly mounted on the outer wall of the storage box (8), the input end of the control pump (12) extends to the inner cavity of the storage box (8), and the output end of the control pump (12) is in communication with the inner cavity of the annular tube (14).
4. A computer data line transmission manufacturing device according to claim 3, characterized in that: A guide cylinder (24) is fixedly mounted on the outer wall of the support ring (9), a sliding frame (18) is slidably mounted on the side wall of the guide cylinder (24), a scraping ring (5) is fixedly mounted on the bottom of the sliding frame (18), the axial direction of the scraping ring (5) coincides with the axis of the support ring (9), and is inclined toward the inner wall of one side of the support ring (9); A collecting trough (6) is fixedly mounted on the bottom surface of the supporting platform (1), and an upper opening of the collecting trough (6) is located directly below the mounting ring (17).
5. A computer data line transmission manufacturing device according to claim 4, characterized in that: A mounting cover (30) is fixedly mounted on the outer wall of the support ring (9), an elastic ring (29) is fixedly mounted on the outer wall of the mounting cover (30), an inner cavity of the elastic ring (29) is communicated with the inner cavity of the mounting cover (30), and the outer wall of the elastic ring (29) is in contact with the outer wall of the wiping layer (28).
6. A computer data line transmission manufacturing device according to claim 5, characterized in that: A connecting pipe (27) is fixedly mounted on the outer wall of the mounting cover (30), an adjusting cylinder (22) is fixedly mounted on the other end of the connecting pipe (27), one end of the guide cylinder (24) is fixedly connected to the outer wall of the adjusting cylinder (22), and the inner cavity of the guide cylinder (24) is connected to the inner cavity of the adjusting cylinder (22); A control plug (31) is slidably mounted in the inner cavity of the guide cylinder (24), a connecting rod (19) is fixedly mounted on the outer wall of the control plug (31), and the other end of the connecting rod (19) is fixedly connected to the outer wall of the sliding frame (18).
7. A computer data line transmission manufacturing device according to claim 6, characterized in that: A mounting block (20) is fixedly mounted on the outer wall of the guide cylinder (24), a plug pin (23) is slidably mounted on the inner wall of the mounting block (20) via an elastic member, an annular groove is formed on the radial outer wall of the control plug (31), one end of the plug pin (23) extends to the inner cavity of the guide cylinder (24), and the side wall of the plug pin (23) is inclined.
8. A computer data line transmission manufacturing device according to claim 7, characterized in that: A sealing sticker (26) is fixedly mounted on the inner wall of the regulating tube (22); the sealing sticker (26) is made of elastic material, and the bottom surface of the sealing sticker has a tendency to fit with the upper end of the connecting tube (27) in real time; A connecting cylinder (32) is fixedly mounted on the outer wall of the mounting cover (30), and a traction plug (33) is slidably mounted on the inner wall of the connecting cylinder (32); A connecting rope (21) connected to a traction plug (33) is fixedly mounted on the bottom surface of the plug pin (23), and a traction rope (25) connected to a closing sticker (26) is fixedly connected to the outer wall of the control plug (31).
9. A computer data line transmission manufacturing device according to claim 8, characterized in that: An adapter tube (4) is fixedly mounted on the inner wall of the mounting frame (7) between the support ring (9) and the mounting tube (2), a master control plug (11) is slidably mounted in the inner cavity of the adapter tube (4), and one end of the adapter tube (4) is connected to the inner cavity of the regulating tube (22) via a conduit.
10. A computer data line transmission manufacturing device according to claim 9, characterized in that: The heating element (13) is distributed in a spiral shape in the inner cavity of the mounting cylinder (2); a control cover (3) is fixedly mounted on the radial outer wall of the mounting cylinder (2); and the inner cavity of the control cover (3) is connected to an end of the adapter cylinder (4) away from the regulating cylinder (22) through a conduit.
Citation Information
Patent Citations
An appearance cleaning device for data cable production
CN118847562B