A cleaning and drying device for magnetic stripe processing

CN118558633BActive Publication Date: 2026-09-25阜阳德润磁材科技有限公司
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Patent Information

Application Number
CN202410990479.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-07-23
Publication Date
2026-09-25
Estimated Expiration
2044-07-23

AI Technical Summary

Technical Problem

[0002]磁条在生产过程中,由于其生产步骤比较多,因此磁条的表面容易粘附有杂质和灰尘,为了保证磁条的生产质量,所以在磁条生产的过程中需要对磁条进行清理,现有的清理方式大多是采用超声波清洗的方式进行清理,但是其清理方式单一,无法有效的保证清理质量,从而影响了磁条的产品质量

Benefits of technology

本发明通过毛刷旋转清理、水流冲洗和擦拭清理多个步骤对磁条进行清理,从而能够有效的提高装置对磁条的清理效果,同时在清理完之后能够对磁条进行烘干,进一步的方便了后续磁条的加工处理,从而满足了磁条的加工需求,间接的提高了装置的实用性。

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Abstract

The application discloses a cleaning and drying device for magnetic stripe processing, which comprises a shell, a cleaning piece arranged in the shell, an external motor driving the cleaning piece to rotate to clean the magnetic stripe, a drainage piece installed on the shell to drain wastewater in the shell, a wiping piece arranged at an output end position of the shell and having three groups, a water removing piece arranged at one side of the wiping piece, and a heating piece installed on the water removing piece to improve the water removing effect of the water removing piece. The magnetic stripe is cleaned through multiple cleaning steps to meet the processing requirement of the magnetic stripe, and the magnetic stripe can be dried and wiped, which further facilitates the subsequent processing of the magnetic stripe and indirectly improves the practicability of the device.
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Description

Technical Field

[0001] This invention relates to the field of magnetic strip processing technology, and more specifically, to a cleaning and drying apparatus for magnetic strip processing. Background Technology

[0002] During the production process of magnetic strips, due to the numerous production steps, impurities and dust easily adhere to the surface of the magnetic strips. In order to ensure the production quality of magnetic strips, they need to be cleaned during the production process. Most existing cleaning methods use ultrasonic cleaning, but this method is limited and cannot effectively guarantee the cleaning quality, thus affecting the product quality of the magnetic strips.

[0003] Therefore, we propose a cleaning and drying device for magnetic strip processing to solve the above problems. Summary of the Invention

[0004] In order to overcome the above-mentioned defects of the prior art, embodiments of the present invention provide a cleaning and drying apparatus for magnetic strip processing to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a cleaning and drying device for magnetic strip processing, comprising a housing; The cleaning component is housed within the casing, and an external motor drives the cleaning component to rotate in order to clean the magnetic strip. Drainage components are installed on the housing to drain wastewater from the housing; The wiping element is located at the output end of the housing, and there are three sets of wiping elements. A water removal component is located on one side of the wiping component; The heating element is installed on the water removal component to improve the water removal effect of the water removal component.

[0006] In a preferred embodiment, the cleaning component includes multiple cleaning discs, which are connected in a series of conduits. Each cleaning disc has a rectangular opening at its center, and a cleaning brush is fixedly connected to the inner sidewall of the rectangular opening. Multiple nozzles are fixedly connected to the sidewall of the rectangular opening. A connecting pipe is fixedly connected to the side wall of one of the cleaning discs. A collar is coaxially sleeved on the side wall of the connecting pipe, and a sealed bearing is provided at the connection between the collar and the connecting pipe. Multiple connecting rods are fixedly connected to the side wall of another cleaning disc, and the same rotating cylinder is fixedly connected to the side wall of the multiple connecting rods. A drive ring is coaxially fixedly connected to the side wall of the rotating cylinder.

[0007] In a preferred embodiment, the drainage component includes a drainage pipe disposed at the output end of the housing, a drive box sleeved on the drainage pipe, a drive rod that enables the drainage pipe to rotate through the drive box, and a rotating ring that contacts the drive ring at one end of the drive rod.

[0008] In a preferred embodiment, a plurality of friction elements are provided between the drive ring and the rotating ring; The friction element includes a first contact block fixedly connected to the side wall of the drive ring, a second contact block matching the first contact block fixedly connected to the side wall of the rotating ring, a first magnetic block embedded in the second contact block, a cavity provided in the first contact block, multiple sets of springs fixedly connected to the inner side wall of the cavity, one end of the multiple sets of springs fixedly connected to the same second magnetic block matching the first magnetic block, and a suction cup matching the second contact block fixedly connected to the side wall of the second magnetic block.

[0009] In a preferred embodiment, the wiping component includes two adjusting plates, with two sets of crossbars between the two adjusting plates that can move up and down via the adjusting component, and two reciprocating screws between the two sets of crossbars, each of which is threaded with a scraping kit.

[0010] In a preferred embodiment, the scraping kit includes a scraping ring threaded onto a reciprocating lead screw, and a cleaning sponge sleeve coaxially fixed to the side wall of the scraping ring, with multiple rubber strips embedded in the cleaning sponge sleeve.

[0011] In a preferred embodiment, the adjusting member includes sliding grooves respectively disposed on two adjusting plates, each of the two sliding grooves being provided with two sliders that can move up and down, and a double-threaded lead screw threadedly connected to the two sliders passing through one of the sliding grooves, while the two sets of sliders are respectively connected to two sets of crossbars.

[0012] In a preferred embodiment, the dewatering component includes a transmission box, through which two rotating rods are disposed. Each of the two rotating rods has a dewatering ring fitted on its side wall. One end of each of the two rotating rods is connected to the same fixed plate, and one end of each of the two rotating rods is rotatably connected to the fixed plate.

[0013] In a preferred embodiment, the heating element includes two heating rings fixedly connected to the side wall of the fixed plate. The input ends of the two heating rings are fixedly connected to air inlet pipes connected to an external air source. One end of each of the two rotating rods passes through the side wall of the two heating rings and extends into the interior. Multiple copper rings are fixedly connected to the inner side wall of each of the two heating rings. Multiple sets of magnets are fixedly connected to the side wall of each of the two rotating rods, and the multiple sets of magnets are respectively located in the two heating rings. The output ends of the two heating rings are fixedly connected to air outlet pipes. A connecting ring is coaxially sleeved and connected to the side wall of each of the two rotating rods. A sealed bearing is provided at the connection between the connecting ring and the rotating rod, and the two air outlet pipes are respectively connected to the two connecting rings.

[0014] In a preferred embodiment, the dewatering ring includes a connecting sleeve fitted onto the rotating rod, the connecting sleeve and the rotating rod being connected in communication, and a plurality of guide tubes connected to and communicating with the connecting sleeve being fixedly connected to the side wall of the connecting sleeve, the side walls of the plurality of guide tubes being provided with a plurality of air outlets, a sponge ring being fixedly connected to the side wall of the connecting sleeve, the sponge ring being able to wrap around the plurality of guide tubes, and the plurality of guide tubes being connected to each other through a plurality of heat-conducting rings.

[0015] The technical effects and advantages of this invention are as follows: This invention cleans magnetic strips through multiple steps, including rotating brush cleaning, water rinsing, and wiping, thereby effectively improving the cleaning effect of the device. After cleaning, the magnetic strips can be dried, further facilitating subsequent processing and meeting the processing requirements of magnetic strips, thus indirectly improving the practicality of the device. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of the present invention; Figure 2 This is a schematic diagram of the external structure of the shell and drainage component in this invention; Figure 3 This is a schematic diagram of the cleaning component in the present invention; Figure 4 This is an exploded structural diagram of the drainage component and the cleaning component in this invention; Figure 5 This is a schematic diagram of the connection structure of the friction element in this invention; Figure 6 This is a schematic diagram of the connection structure between the wiping component and the adjusting component in this invention; Figure 7 This is a schematic diagram of the connection structure of the scraping kit in this invention; Figure 8 This is a schematic diagram of the connection structure between the water removal component and the heating component in this invention; Figure 9 This is a schematic diagram of the connection structure of the water removal ring in this invention; Figure 10 This is a schematic diagram of the internal connection structure of the heating ring in this invention.

[0017] The attached figures are labeled as follows: 1. Housing; 2. Cleaning component; 21. Cleaning disc; 22. Conduit; 23. Cleaning brush; 24. Nozzle; 25. Connecting pipe; 26. Collar; 27. Sealed bearing; 28. Connecting rod; 29. ​​Rotating cylinder; 210. Drive ring; 3. Drainage component; 31. Drive box; 32. Drive rod; 33. Rotating ring; 34. Drainage pipe; 4. Friction component; 41. First contact block; 42. Second contact block; 43. First magnet; 44. Cavity; 45. Spring; 46. Second magnet; 47. Suction cup; 5. Wiping component; 51. Adjusting plate; 5 2. Crossbar, 53. Reciprocating screw, 54. Scraping kit, 541. Scraping ring, 542. Cleaning sponge sleeve, 543. Rubber strip, 6. Adjusting component, 61. Slide groove, 62. Slider, 63. Double threaded screw, 7. Water removal component, 71. Transmission box, 72. Rotating rod, 73. Fixing plate, 74. Water removal ring, 741. Connecting sleeve, 742. Guide tube, 743. Air outlet, 744. Sponge ring, 745. Heat conduction ring, 8. Heating component, 81. Heating ring, 82. Air inlet pipe, 83. Copper ring, 84. Magnet, 85. Air outlet pipe, 86. Connecting ring. Detailed Implementation

[0018] 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.

[0019] Reference Figure 1 and Figure 2 A cleaning and drying device for magnetic strip processing includes a housing 1, which is located at the output position of the magnetic strip processing production line. The housing 1 is fixed in a suitable position by a fixing seat, and the fixing seat is fixed upwards to avoid the housing 1 affecting the normal operation of other equipment. It is particularly noteworthy that the cleaning component 2 is located in the housing 1, and a bearing is provided at the contact position between the housing 1 and the cleaning component 2, so that the cleaning component 2 can rotate normally and be effectively supported. At the same time, two bearing seats are connected to the cleaning component 2, which further ensures the normal operation of the cleaning component 2.

[0020] Reference Figure 2 and Figure 3The cleaning component 2 is located within the housing 1. The cleaning component 2 includes multiple cleaning discs 21, which are connected by multiple conduits 22. Each cleaning disc 21 has a rectangular opening in its center, and a cleaning brush 23 is fixedly connected to the inner wall of the rectangular opening. Notably, the cleaning brush 23 is tilted in the direction of magnetic strip transport, allowing it to scrape away impurities from the magnetic strip. Simultaneously, multiple nozzles 24 are fixedly connected to the side wall of the rectangular opening, with their output direction aligned with the direction of magnetic strip movement, enabling water to be sprayed onto the magnetic strip, further achieving the purpose of cleaning it. Importantly, the extension and output directions of the cleaning brushes 23 and nozzles 24 are both located between two cleaning discs 21, allowing impurities and water to leak out between them, thus preventing impurities from accumulating on the cleaning discs 21.

[0021] Reference Figure 3 One of the cleaning discs 21 has a connecting pipe 25 fixedly connected to its side wall. A collar 26 is coaxially sleeved on the side wall of the connecting pipe 25. A sealed bearing 27 is provided at the connection between the collar 26 and the connecting pipe 25. It is particularly noteworthy that the input end of the collar 26 is fixedly connected to a pipe connected to an external water source, so as to ensure that the external water source enters the collar 26. At the same time, there is a notch between the collar 26 and the connecting pipe 25, so that the water source can enter the connecting pipe 25 through the collar 26. This allows the water source to enter the cleaning disc 21, so that the water source can be sprayed out from the nozzle 24, and further clean the impurities on the magnetic strip.

[0022] Reference Figure 3 Another cleaning disc 21 has multiple connecting rods 28 fixedly connected to its side wall. A rotating cylinder 29 is fixedly connected to the side wall of each connecting rod 28. Notably, a first gear is coaxially fixedly connected to the side wall of the rotating cylinder 29, and a second gear meshes with the first gear on one side. A motor that can rotate the second gear is located on one side of the second gear. Therefore, when the motor operates, the second gear rotates, which in turn rotates the first gear, thus causing the rotating cylinder 29 to rotate. When the rotating cylinder 29 rotates, the cleaning disc 21 rotates with the assistance of the connecting rods 28, ensuring thorough cleaning of the magnetic strips. A drive ring 210 is coaxially fixedly connected to the side wall of the rotating cylinder 29. When the rotating cylinder 29 rotates, the drive ring 210 rotates accordingly, further ensuring the normal operation of other components.

[0023] Reference Figure 4A drainage component 3 is connected to the housing 1. The drainage component 3 includes a drainage pipe 34 located at the output end of the housing 1. A drive box 31 is sleeved on the drainage pipe 34. The drive box 31 contains two helical gears. One helical gear is sleeved on the drainage pipe 34, while the other helical gear meshes with the first helical gear. A drive rod 32, connected to the other helical gear, is passed through the side wall of the drive box 31. A bearing seat is sleeved on the drive rod 32, and the bearing seat is connected to the housing 1, thereby increasing the stability of the drive rod 32. One end of the drive rod 32 is fixedly connected to a drive ring 210. The rotating ring 33 is in contact with the drive ring 210. Since both the drive ring 210 and the rotating ring 33 are made of rubber and have anti-slip textures and particles on their contact surfaces, the rotating ring 33 can rotate. When the rotating ring 33 rotates, the drive rod 32 can rotate. When the drive rod 32 rotates, the two helical gears in the drive box 31 can rotate, which in turn can rotate the drain pipe 34. When the drain pipe 34 rotates, it can generate a certain centrifugal force for drainage, thereby effectively preventing impurities from clogging the drain and improving drainage efficiency.

[0024] Reference Figure 5 Multiple friction elements 4 are provided between the drive ring 210 and the rotating ring 33. The friction element 4 includes a first contact block 41 fixedly connected to the side wall of the drive ring 210, and a second contact block 42 matching the first contact block 41 fixedly connected to the side wall of the rotating ring 33. A first magnetic block 43 is embedded in the second contact block 42. A cavity 44 is provided in the first contact block 41. Multiple sets of springs 45 are fixedly connected to the inner side wall of the cavity 44. One end of the multiple sets of springs 45 is fixedly connected to the same second magnetic block 46 matching the first magnetic block 43. A suction cup 47 matching the second contact block 42 is fixedly connected to the side wall of the second magnetic block 46.

[0025] In actual operation, when the drive ring 210 rotates, the first contact block 41 and the second contact block 42 can come into contact. With the assistance of the first magnetic block 43, the second magnetic block 46 can move closer to the first magnetic block 43, so that the suction cup 47 can adhere to the second contact block 42. It is particularly noteworthy that the material of the second contact block 42 is such that the suction cup 47 can be attracted to it. This ensures that the drive ring 210 can drive the rotating ring 33 to rotate, so that the drain pipe 34 can rotate normally. It is also particularly noteworthy that the cavity 44 has an opening, which further allows the suction cup 47 to extend out, thereby ensuring the normal use of the device and indirectly improving the practicality of the device.

[0026] Reference Figure 6The output end of the housing 1 is provided with multiple sets of wiping components 5. The wiping component 54 includes two adjusting plates 51. Between the two adjusting plates 51, there are two sets of horizontal bars 52 that can move up and down. Between the two sets of horizontal bars 52, there are two reciprocating screws 53, and each of the two reciprocating screws 53 is threaded with a scraping kit 54.

[0027] Reference Figure 7 The scraping kit 54 includes a scraping ring 541 threaded onto a reciprocating screw 53. A cleaning sponge sleeve 542 is coaxially fixedly connected to the side wall of the scraping ring 541, and multiple rubber strips 543 are embedded in the cleaning sponge sleeve 542.

[0028] In actual operation, when the magnetic strip moves between the two scraping rings 541, the cleaning sponge sleeve 542 comes into contact with the surface of the magnetic strip, thereby cleaning the impurities on the surface of the magnetic strip. It is particularly noteworthy that the rubber strip 543 has a certain contraction force, which does not affect the normal use of the cleaning sponge sleeve 542. It is also noteworthy that the cleaning sponge sleeve 542 can adhere to the impurities on the magnetic strip, thereby improving the cleaning effect of the device. When the rubber strip 543 comes into contact with the magnetic strip, it can cause the scraping ring 541 to rotate. When the scraping ring 541 rotates, with the assistance of the reciprocating screw 53 thread, it can move the scraping ring 541 in the thread direction of the reciprocating screw 54, thereby allowing the scraping ring 541 to move left and right, further cleaning the magnetic strip. It is particularly noteworthy that multiple sets of scraping rings 541 are provided, which further ensures that the magnetic strip is thoroughly cleaned.

[0029] Reference Figure 6 The adjusting plate 51 is equipped with an adjusting component 6. Notably, the adjusting component 6 includes a sliding groove 61 respectively set on the two adjusting plates 51. Each of the two sliding grooves 61 is equipped with two sliding blocks 62 that can move up and down. A double-threaded screw 63 that is threadedly connected to the two sliding blocks 62 is passed through one of the sliding grooves 61. At the same time, the two sets of sliding blocks 62 are respectively connected to two sets of crossbars 52. In actual operation, the operator can directly rotate the double-threaded screw 63, while the sliding blocks 62 are limited by the sliding groove 61. This allows the position of the reciprocating screw 53 to be adjusted, and further allows the scraping ring 541 to contact the magnetic strip, thereby enabling the magnetic strip to be thoroughly cleaned.

[0030] Reference Figure 8The wiping component 5 has a water removal component 7 on one side. The water removal component 7 includes a transmission box 71 located on one side of the reciprocating screw 53. It is particularly noteworthy that the transmission box 71 includes a box body, and the box body 71 has two pulleys connected by a belt drive. A rotating rod connected to an external motor is connected to the side wall of one of the pulleys. Rotating rods 72 passing through the side wall of the box body are fixedly connected to both pulleys. Water removal rings 74 are sleeved on the side walls of both rotating rods 72. It is particularly noteworthy that one end of the two rotating rods 72 is connected to the same fixing plate 73, and one end of the two rotating rods 72 is rotatably connected to the fixing plate 73.

[0031] Reference Figure 8 and Figure 10 The water removal component 7 is connected to a heating component 8. Two heating rings 81 are fixedly connected to the side wall of the fixing plate 73. The input ends of the two heating rings 81 are fixedly connected to an air inlet pipe 82 connected to an external air source. One end of each of the two rotating rods 72 passes through the side wall of the two heating rings 81 and extends into the interior. Multiple copper rings 83 are fixedly connected to the inner side wall of each of the two heating rings 81. Multiple sets of magnets 84 are fixedly connected to the side wall of each of the two rotating rods 72, and the multiple sets of magnets 84 are located in the two heating rings 81 respectively. The output ends of each of the two heating rings 81 are fixedly connected to an air outlet pipe 85. A connecting ring 86 is coaxially sleeved on the side wall of each of the two rotating rods 72 and communicates with it. A sealed bearing is provided at the connection between the connecting ring 86 and the rotating rod 72, and the two air outlet pipes 85 are respectively connected to the two connecting rings 86.

[0032] Reference Figure 9 The dewatering ring 74 includes a connecting sleeve 741 sleeved on the rotating rod 72. It is particularly noteworthy that the connecting sleeve 741 and the rotating rod 72 are connected in communication, and multiple guide tubes 742 are fixedly connected to the side wall of the connecting sleeve 741 and are connected thereto. Multiple air outlets 753 are provided on the side wall of the multiple guide tubes 742. At the same time, a sponge ring 744 is fixedly connected to the side wall of the connecting sleeve 741, and the sponge ring 744 can wrap around the multiple guide tubes 742. The multiple guide tubes 742 are connected to each other through multiple heat-conducting rings 745.

[0033] In actual operation, when the external motor is working, one of the pulleys rotates. With the assistance of the belt, the other pulley rotates, causing both rotating rods 72 to rotate. This rotation of the two rotating rods 72 causes multiple sets of magnets 84 to rotate, generating heat in the copper ring 83. Simultaneously, when gas enters the heating ring 81, it is heated. The heated gas is then output from the outlet pipe 85. Since the connecting ring 86 is connected to the rotating rods 72, gas enters the rotating rods 72 and then flows into the connecting sleeve 741, exiting from the guide tube 742. This not only dries the magnetic strips but also cleans the sponge ring 744 to some extent. Furthermore, with the assistance of the heat-conducting ring 745, heat is evenly distributed on the sponge ring 744, improving its performance and enhancing the device's usability.

[0034] Finally, the following points should be noted: First, in the description of this application, it should be noted that, unless otherwise specified and limited, the terms "installation", "connection", and "linkage" should be interpreted broadly, and can be mechanical or electrical connections, or internal connections between two components, or direct connections. "Up", "down", "left", "right", etc. are only used to indicate relative positional relationships. When the absolute position of the described object changes, the relative positional relationship may change. Secondly: The accompanying drawings of the embodiments disclosed in this invention only involve the structures involved in the embodiments disclosed in this invention. Other structures can refer to the general design. In the absence of conflict, the same embodiment and different embodiments of this invention can be combined with each other. In conclusion, the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A cleaning and drying device for magnetic strip processing, characterized in that; Includes the housing (1); Cleaning component (2) is installed in housing (1). An external motor drives the cleaning component (2) to rotate to clean the magnetic strip. Drainage component (3) is installed on the housing (1) to drain the wastewater in the housing (1); Wiping component (5) is located at the output end of housing (1), and the number of wiping components (5) is three sets; Water removal component (7) is disposed on one side of wiping component (5); Heating element (8) is installed on water removal element (7) to improve the water removal effect of water removal element (7); The cleaning component (2) includes multiple cleaning discs (21), which are connected by multiple conduits (22). Each of the multiple cleaning discs (21) has a rectangular opening in the middle, and a cleaning brush (23) is fixedly connected to the inner side wall of the rectangular opening. Multiple nozzles (24) are fixedly connected to the side wall of the rectangular opening. One of the cleaning discs (21) has a connecting pipe (25) fixedly connected to its side wall. A collar (26) is coaxially sleeved on the side wall of the connecting pipe (25). A sealed bearing (27) is provided at the connection between the collar (26) and the connecting pipe (25). Another cleaning disc (21) has multiple connecting rods (28) fixedly connected to its side wall, and the same rotating cylinder (29) is fixedly connected to the side wall of the multiple connecting rods (28). A drive ring (210) is coaxially fixedly connected to the side wall of the rotating cylinder (29). The drainage component (3) includes a drainage pipe (34) disposed at the output end of the housing (1), a drive box (31) is sleeved on the drainage pipe (34), a drive rod (32) that can rotate the drainage pipe (34) is provided through the drive box (31), and a rotating ring (33) that contacts the drive ring (210) is fixedly connected to one end of the drive rod (32). Multiple friction elements (4) are provided between the drive ring (210) and the rotating ring (33); The friction element (4) includes a first contact block (41) fixedly connected to the side wall of the drive ring (210), a second contact block (42) matching the first contact block (41) fixedly connected to the side wall of the rotating ring (33), a first magnetic block (43) embedded in the second contact block (42), a cavity (44) provided in the first contact block (41), a plurality of springs (45) fixedly connected to the inner side wall of the cavity (44), a second magnetic block (46) matching the first magnetic block (43) fixedly connected to one end of the plurality of springs (45), and a suction cup (47) matching the second contact block (42) fixedly connected to the side wall of the second magnetic block (46). The water removal component (7) includes a transmission box (71), in which two rotating rods (72) are provided through. Water removal rings (74) are sleeved on the side walls of the two rotating rods (72). One end of the two rotating rods (72) is connected to the same fixed plate (73), and one end of the two rotating rods (72) is rotatably connected to the fixed plate (73). The heating element (8) includes two heating rings (81) fixedly connected to the side wall of the fixed plate (73). The input end of each heating ring (81) is fixedly connected to an air inlet pipe (82) connected to an external air source. One end of each of the two rotating rods (72) passes through the side wall of the two heating rings (81) and extends into the interior. Multiple copper rings (83) are fixedly connected to the inner side wall of each heating ring (81). Multiple sets of magnets (84) are fixedly connected to the side wall of each rotating rod (72), and the multiple sets of magnets (84) are located in the two heating rings (81). The output end of each heating ring (81) is fixedly connected to an air outlet pipe (85). A connecting ring (86) is coaxially sleeved on the side wall of each rotating rod (72) and communicates with it. A sealed bearing is provided at the connection between the connecting ring (86) and the rotating rod (72), and the two air outlet pipes (85) are connected to the two connecting rings (86) respectively. The dewatering ring (74) includes a connecting sleeve (741) sleeved on the rotating rod (72). The connecting sleeve (741) and the rotating rod (72) are connected in communication. Multiple guide tubes (742) are fixedly connected to the side wall of the connecting sleeve (741). Multiple air outlets (743) are provided on the side wall of the multiple guide tubes (742). A sponge ring (744) is fixedly connected to the side wall of the connecting sleeve (741). The sponge ring (744) can wrap around the multiple guide tubes (742). The multiple guide tubes (742) are connected to each other through multiple heat-conducting rings (745).

2. The cleaning and drying device for magnetic strip processing according to claim 1, characterized in that: The wiping component (5) includes two adjusting plates (51), and two sets of crossbars (52) that can move up and down through the adjusting component (6) are provided between the two adjusting plates (51). Two reciprocating screws (53) are provided between the two sets of crossbars (52), and a scraping kit (54) is threaded onto both reciprocating screws (53).

3. The cleaning and drying device for magnetic strip processing according to claim 2, characterized in that: The scraping kit (54) includes a scraping ring (541) threaded onto a reciprocating screw (53), and a cleaning sponge sleeve (542) is coaxially fixedly connected to the side wall of the scraping ring (541), and multiple rubber strips (543) are embedded in the cleaning sponge sleeve (542).

4. The cleaning and drying device for magnetic strip processing according to claim 3, characterized in that: The adjusting component (6) includes a slide groove (61) respectively set on two adjusting plates (51). Each slide groove (61) is provided with two sliders (62) that can move up and down. One of the slide grooves (61) is provided with a double threaded screw (63) that is threadedly connected to the two sliders (62). At the same time, the two sets of sliders (62) are respectively connected to two sets of crossbars (52).

Citation Information

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