Cooling and air-drying equipment for cable processing
By designing a cable processing cooling and air-drying equipment including fixing devices, finishing devices and scraping devices, the problems of low efficiency of traditional equipment and uneven cable stress are solved, and the effect of efficient air-drying and extending the cable life is achieved.
Patent Information
- Application Number
- CN202510350222.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2025-06-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional cable processing cooling and air-drying equipment is inefficient and cannot meet the needs of large-scale production. The fixed clamping method may lead to uneven stress on the cable, resulting in defects such as cracks or liquid penetration.
A cooling and air-drying device including a fixing device, a finishing device and a scraping device is designed. The fixing device drives the fan blades to rotate through the rotating shaft, accelerates the air flow rate, and drives the reciprocating screws and pressure plates to rotate through the transmission device, pressing the cables intermittently to avoid uneven stress. The finishing device smooths the cable through pushing blocks and sliding plates, and shakes the water vapor through the arc-shaped spring rod and the paddle. The scraping device scrapes away water vapor from the cable surface through the sliding rod and scraper assembly.
It improves the air-drying efficiency of the cable, avoids the problems of uneven force and liquid penetration of the cable, extends the service life of the cable, and improves the production efficiency.
Smart Images

Figure CN120108863A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of cooling and air-drying equipment for cable processing, and in particular to cooling and air-drying equipment for cable processing. Background Art
[0002] With the rapid development of the power industry, cables are used more and more widely, and the requirements for cable quality and production efficiency are also increasing. In the cable processing process, cooling and air drying are important links, and their effect directly affects the performance and quality of the cable. The traditional natural cooling and air drying method is inefficient and cannot meet the needs of large-scale production. Therefore, efficient cooling and air drying equipment is needed to improve production efficiency to adapt to the rapid development of the industry.
[0003] Patent announcement number CN208954706U is a highly efficient cooling and air-drying equipment for cable processing, including a support platform, a water trough and a conveying platform, the four corners of the lower end of the support platform are welded with legs, a horizontal support plate is welded between the legs, the upper end of the support plate is fixed with a water tank and a waste liquid tank by bolts, the upper end of the support platform is fixed with a water trough and a conveying platform by bolts, a water pump is arranged on one side of the upper end of the water trough, a bracket is welded on the other side of the upper end of the water trough, a clamping assembly and a fan are arranged on the upper end of the bracket, a groove is opened at the upper end of the conveying platform, and a first motor and a roller are arranged at the upper end of the conveying platform. The highly efficient cooling and air-drying equipment for cable processing, the arrangement of the water pump and the water tank enables cold water to circulate in the water trough, enhancing the cooling effect of the cable, and the arrangement of the first motor, the drum and the roller can convey the cable.
[0004] The above-mentioned equipment only continuously clamps the cable through fixed clamping components. The cable will generate stress when it expands and contracts due to heat. Continuous clamping may cause uneven force on the cable, resulting in defects such as cracks in the cable. Liquid attached to the surface of the cable may penetrate into the cable, causing damage to the cable and reducing the service life of the cable. Summary of the invention
[0005] In view of the deficiencies in the prior art, the present invention provides a cooling and air-drying device for cable processing, which solves the problems raised in the above-mentioned background technology.
[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions: A cooling and air-drying device for cable processing includes a support table, a cooling device is fixed on the upper surface of the support table, an output device is fixed on the upper surface of the support table, a support column is fixed on the upper surface of the support table, a finishing plate is fixed on the top of the support column, a fixing device for adapting to cables of different sizes is arranged on the upper surface of the finishing plate, a finishing device for facilitating straightening of the cable is arranged above the fixing device, and a scraping device for concentrating water vapor is arranged on the upper surface of the finishing device;
[0007] Among them, the fixing device includes a rotating shaft, a transmission device, a reciprocating screw, a pressure plate, a first hinged rod, a second hinged rod, a connecting rod, a drying device, a first spring and a water absorption plate. The rotating shaft passes through the upper surface of the support platform and is rotatably connected at the penetration point. The outer wall of the upper end of the rotating shaft is fixed with fan blades, and the rotation of the rotating shaft drives the fan blades to rotate. The transmission device is fixedly connected to the upper surface of the support platform.
[0008] According to the above technical solution, the transmission device includes a first pulley, a second pulley and a belt, the first pulley is fixedly connected to the outer wall of the rotating shaft, the reciprocating screw penetrates the upper surface of the support platform, the second pulley is fixedly connected to the outer wall of the reciprocating screw, and when the rotating shaft rotates, the transmission device is driven to rotate, and the transmission device drives the reciprocating screw to rotate. The first pulley and the second pulley are connected by belt transmission, the reciprocating screw penetrates the pressure plate, and the penetration point is threaded, and the rotation of the reciprocating screw drives the pressure plate to slide up and down.
[0009] According to the above technical solution, the first hinged rod is hinged at one end of the pressure plate away from the reciprocating screw rod, the second hinged rod is hinged at one end of the sorting plate away from the reciprocating screw rod, the first hinged rod is hinged at one end away from the pressure plate and the second hinged rod is hinged at one end away from the sorting plate, the pressure plate slides up and down to drive the first hinged rod and the second hinged rod to rotate, the connecting rod passes through the hinge of the first hinged rod and the second hinged rod, and the penetration point is rotatably connected, when the first hinged rod and the second hinged rod rotate, their hinge points drive the connecting rod to move.
[0010] According to the above technical solution, the connecting rod passes through the drying device and is slidably connected at the penetration point. When the connecting rod moves, it drives the drying device to move. A fixed rod is fixed to the front side of the sorting plate. The drying device passes through the fixed rod and is slidably connected at the penetration point. The drying device includes a fixed plate and a water-absorbing sponge. The water-absorbing sponge array is arranged on the upper surface of the fixed plate. The first spring is fixedly connected to the lower surface of the fixed rod. The water-absorbing plate is fixed to the end of the first spring away from the fixed rod.
[0011] According to the above technical solution, the organizing device includes a push block sliding plate, a sliding block, a limit column, a second spring, a limit plate, an arc spring rod and a paddle. The push block is fixedly connected to the upper surface of the organizing plate. There are two groups of push blocks, respectively on the left and right sides of the upper surface of the organizing plate, and the two groups of push blocks are triangles with parallel inclined surfaces. When the pressure plate slides up and down, the push block pushes the sliding plate to slide left and right.
[0012] According to the above technical solution, the sliding plate passes through the pressure plate and is slidably connected at the penetration point, the push block passes through the pressure plate and is slidably connected at the penetration point, the sliding block is slidably connected to the side wall of the sliding plate, and when the sliding plate slides left and right, it drives the sliding block to slide left and right, the limiting column passes through the sliding block and is fitted at the penetration point, and when the sliding block slides left and right, it drives the limiting column to move left and right, a roller is fixed on the end of the limiting column away from the sliding block, and the second spring is fixedly connected to the upper surface of the inner wall of the sliding block.
[0013] According to the above technical solution, the limit plate is fixedly connected to the bottom end of the second spring, driving the bottom surface of the limit plate to fit the outer wall of the limit column, and the second spring is always in a compressed state. The arc spring rod is fixedly connected to the side of the sliding block away from the second spring, and the end of the arc spring rod away from the sliding block is fixedly connected to the side wall of the paddle. The paddle is hinged to the bottom surface of the sliding block away from the second spring. When the sliding block slides left and right, it drives the paddle to move left and right.
[0014] According to the above technical solution, the scraping device includes a first connecting column, a third hinged rod, a sliding rod, a second connecting column, a third spring and a scraper. The first connecting column is fixedly connected to the upper surface of the sliding block. The sliding block slides left and right to drive the first connecting column to move left and right. The first connecting column passes through the third hinged rod and is rotatably connected at the penetration point. The left and right movement of the first connecting column drives the third hinged rod to rotate. The fixed rod passes through the sliding rod and is slidably connected at the penetration point.
[0015] According to the above technical solution, the second connecting column is fixedly connected to the upper surface of the sliding rod, the second connecting column passes through one end of the third hinged rod away from the first connecting column, and is rotatably connected at the penetration point, the rotation of the third hinged rod drives the sliding rod to slide back and forth, the third spring is fixedly connected to the bottom surface of the sliding rod, and the scraper is fixedly connected to the bottom end of the third spring.
[0016] The present invention provides a cooling and air-drying device for cable processing, which has the following beneficial effects:
[0017] (1) The present invention is provided with a fixing device. After the cable is water-cooled, the fan blades are driven to rotate by the rotation of the rotating shaft, thereby accelerating the air flow rate around the cable and improving the air-drying efficiency of the cable. At the same time, the reciprocating screw is driven to rotate by the rotating shaft in cooperation with the transmission device. The rotation of the reciprocating screw drives the pressure plate to slide up and down, and intermittently compresses the cable to avoid uneven force on the cable when the cable is processed, resulting in defects such as cracks in the cable, causing liquid to penetrate into the cable and reducing the service life of the cable. In addition, the pressure plate slides downward to press the cable, and cooperates with the first hinged rod and the second hinged rod to drive the connecting rod to move. When the connecting rod moves, it drives the drying device to move left and right, cooperates with the first spring and the water-absorbing plate to tighten the cable, and at the same time, the water-absorbing sponge wipes the cable after the air-drying treatment to avoid residual water vapor in the gaps of the cable.
[0018] (2) The present invention is provided with a tidying device. Before the cable is fixed, the push block and the sliding plate cooperate to drive the sliding block to slide left and right. The left and right sliding of the sliding block drives the limit column and the roller to move left and right, so as to flatten the cables piled up in one place and prevent the cables from being entangled and knotted. During the subsequent air drying, the water vapor is blocked and cannot contact the flowing air, resulting in the cable avoiding residual water vapor, which reduces the quality and service life of the cable. After the cable is fixed, the sliding block drives the paddle to move left and right, and cooperates with the arc spring rod to paddle the taut cable to make the cable vibrate, so as to shake off the water droplets on the outer wall of the cable, reduce the volume of water vapor that needs to be air-dried, and improve the air-drying efficiency.
[0019] (3) The present invention is provided with a scraping device. When the cable is fixed, the first connecting column is driven to move left and right by the sliding block. The first connecting column cooperates with the third hinged rod to drive the second connecting column to move forward and backward. The second connecting column moves forward and backward to drive the sliding rod to move forward and backward. The third spring drives the scraper to move forward and backward, so that the water vapor on the cable is scraped up and gathered together to form water droplets, which makes it convenient for the sorting device to shake off the water droplets while smoothing the cable, thereby further improving the air drying efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0021] Figure 2 It is a schematic diagram of the structure of the scraping device of the present invention;
[0022] Figure 3 For the present invention Figure 2 A schematic diagram of the local enlarged structure of area A;
[0023] Figure 4 It is a schematic diagram of the full cross-section structure of the present invention;
[0024] Figure 5 It is a schematic diagram of the structure of the fixing device of the present invention;
[0025] Figure 6 This is a schematic diagram of the structure of the arranging device of the present invention;
[0026] Figure 7 For the present invention Figure 6 Schematic diagram of the local enlarged structure of area B.
[0027] In the figure: 1. support table; 2. cooling device; 3. output device; 4. support column; 5. sorting plate; 6. fixing device; 61. rotating shaft; 62. transmission device; 63. reciprocating screw rod; 64. pressure plate; 65. first hinge rod; 66. second hinge rod; 67. connecting rod; 68. drying device; 69. first spring; 610. water absorption plate; 7. sorting device; 71. push block; 72. sliding plate; 73. sliding block; 74. limiting column; 75. second spring; 76. limiting plate; 77. arc spring rod; 78. paddle; 8. scraping device; 81. first connecting column; 82. third hinge rod; 83. sliding rod; 84. second connecting column; 85. third spring; 86. scraper. DETAILED DESCRIPTION
[0028] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0029] See also Figure 1-Figure 7 One embodiment of the present invention is: a cooling and air-drying device for cable processing includes a support table 1, a cooling device 2 is fixed on the upper surface of the support table 1, an output device 3 is fixed on the upper surface of the support table 1, a support column 4 is fixed on the upper surface of the support table 1, a sorting plate 5 is fixed on the top of the support column 4, and a fixing device 6 adapted to cables of different sizes is arranged on the upper surface of the sorting plate 5.
[0030] Among them, the fixing device 6 includes a rotating shaft 61, a transmission device 62, a reciprocating screw rod 63, a pressure plate 64, a first hinge rod 65, a second hinge rod 66, a connecting rod 67, a drying device 68, a first spring 69 and a water absorption plate 610. The rotating shaft 61 passes through the upper surface of the support platform 1 and is rotatably connected at the penetration point. A fan blade is fixed on the outer wall of the upper end of the rotating shaft 61. The transmission device 62 is fixedly connected to the upper surface of the support platform 1. The rotating shaft 61 is rotated by a motor. The transmission device 62 includes a first pulley, a second pulley and a belt. The first pulley is fixedly connected to the outer wall of the rotating shaft 61. When the rotating shaft 61 rotates, it drives the first pulley to rotate. The reciprocating screw rod 63 passes through the upper surface of the support platform 1. The second pulley is fixedly connected to the outer wall of the reciprocating screw rod 63. The first The pulley and the second pulley are connected by a belt transmission. When the first pulley rotates, it drives the belt covering its inner wall to rotate, and the belt drives the second pulley to rotate. When the second pulley rotates, it drives the reciprocating screw rod 63 to rotate. The reciprocating screw rod 63 penetrates the pressure plate 64 and is threaded at the penetration point. When the reciprocating screw rod 63 rotates, it drives the pressure plate 64 to slide up and down. When the pressure plate 64 slides downward, it presses the cable. The first hinged rod 65 is hinged at the end of the pressure plate 64 away from the reciprocating screw rod 63. When the pressure plate 64 slides downward, it drives the first hinged rod 65 to move downward and rotate around the hinge between the first hinged rod 65 and the pressure plate 64. The second hinged rod 66 is hinged at the end of the sorting plate 5 away from the reciprocating screw rod 63. The first hinged rod 65 is away from the pressure plate One end of 64 is hinged to one end of the second hinge rod 66 away from the sorting plate 5, the first hinge rod 65 rotates to push the second hinge rod 66 to rotate around the hinge of the second hinge rod 66 and the sorting plate 5, the connecting rod 67 penetrates the hinge of the first hinge rod 65 and the second hinge rod 66, and the penetration is rotatably connected, when the first hinge rod 65 and the second hinge rod 66 rotate together, the hinge point moves in the direction away from the pressure plate 64, driving the connecting rod 67 to move in the direction away from the pressure plate 64, the connecting rod 67 penetrates the drying device 68, and the penetration is slidably connected, a fixed rod is fixed on the front side of the sorting plate 5, the drying device 68 penetrates the fixed rod, and the penetration is slidably connected, the connecting rod 67 drives the drying device 68 to slide in the direction away from the fixed rod, and the drying device 68 includes The fixing plate 68 includes a fixing plate and a water-absorbing sponge. The water-absorbing sponge array is arranged on the upper surface of the fixing plate. The water-absorbing sponge in the drying device 68 wipes the water marks on the outer wall of the cable. The first spring 69 is fixedly connected to the lower surface of the fixing rod. The end of the first spring 69 away from the fixing rod is fixed with a water-absorbing plate 610. The water-absorbing plate 610 is squeezed by the first spring 69 to clamp the cable at the end, and cooperates with the front pressure plate 64 to tighten the cable to facilitate subsequent drying. After the cable is water-cooled, the fixing device 6 drives the fan blades to rotate through the rotation of the rotating shaft 61, accelerates the air flow rate around the cable, and improves the air drying efficiency of the cable. At the same time, the reciprocating screw rod 63 is driven to rotate through the rotating shaft 61 in cooperation with the transmission device 62, and the reciprocating screw rod 63 rotates to drive the pressure plate 64 to slide up and down.The cable is compressed intermittently to avoid uneven force on the cable during processing, which may cause defects such as cracks in the cable, and allow liquid to penetrate into the cable, thus reducing the service life of the cable. The pressure plate 64 slides downward to press the cable, while cooperating with the first hinge rod 65 and the second hinge rod 66 to drive the connecting rod 67 to move. When the connecting rod 67 moves, it drives the drying device 68 to move left and right. The first spring 69 and the water-absorbing plate 610 tighten the cable while allowing the water-absorbing sponge to wipe the air-dried cable again to avoid residual water vapor in the gaps of the cable.
[0031] When the present embodiment is working, the rotating shaft 61 is driven to rotate by the motor, and the rotating shaft 61 drives the fan blades to rotate when rotating, thereby accelerating the flow speed of the air above. When the rotating shaft 61 rotates, the reciprocating screw rod 63 is driven to rotate through the transmission device 62. When the reciprocating screw rod 63 rotates, it drives the pressure plate 64 to slide up and down, so that the pressure plate 64 performs intermittent compression operation on the cable. When the pressure plate 64 slides downward, it drives the first hinged rod 65 to move downward and rotates around the hinge of the first hinged rod 65 and the pressure plate 64. The first hinged rod 65 rotates to drive the second hinged rod 66 to rotate around the hinge of the second hinged rod 66 and the sorting plate 5. When the first hinged rod 65 and the second hinged rod 66 rotate together, the hinge point moves away from the hinge. The cable is then wiped clean by the drying device 68. The first spring 69 pushes the drying device 68 to move away from the pressing plate 64, and the first spring 69 pushes the drying device 68 to move away from the pressing plate 64. The first spring 69 pushes the drying device 68 to move away from the pressing plate 64, and the first spring 69 pushes the drying device 68 to move toward the pressing plate 64, so that the cable is wiped clean by the drying device 68. The first spring 69 pushes the drying device 68 to move toward the pressing plate 64, and the cable is wiped clean by the drying device 68.
[0032] See also Figure 1-Figure 7On the basis of the above embodiment, in another embodiment of the present invention, a tidying device 7 for facilitating the straightening of the cable is arranged above the fixing device 6, and the tidying device 7 comprises a push block 71, a sliding plate 72, a sliding block 73, a limiting column 74, a second spring 75, a limiting plate 76, an arc spring rod 77 and a paddle 78. The push block 71 is fixedly connected to the upper surface of the tidying plate 5. The push block 71 is provided with two groups, respectively on the left and right sides of the upper surface of the tidying plate 5, and the two groups of push blocks 71 are triangles with mutually parallel inclined surfaces. The sliding plate 72 penetrates the pressing plate 64 and is slidably connected at the penetration point. The push block 71 penetrates the pressing plate 64 and is slidably connected at the penetration point. When the pressing plate 64 slides downward, the sliding plate 72 sliding on the inner wall of the pressing plate 64 contacts the push block 71 and is pressed by the push block When the locking cam 73 is in the unlocked position, the locking cam 73 is in the unlocked position, and the locking cam 73 is in the unlocked position, so that the locking cam 73 can be unlocked easily. The spring 75 is always in a compressed state, and the second spring 75 applies pressure to the limit plate 76 to limit the limit post 74 and the roller. When the sizes of the cables are different, the roller can be pushed upward, driving the limit post 74 to slide upward, further compressing the second spring 75. At the same time, the second spring 75 also further applies pressure to the limit post 74. The arc spring rod 77 is fixedly connected to the side of the sliding block 73 away from the second spring 75. The end of the arc spring rod 77 away from the sliding block 73 is fixedly connected to the side wall of the paddle 78. The paddle 78 is hinged to the bottom surface of the sliding block 73 away from the second spring 75. When the sliding block 73 slides left and right, it drives the paddle 78 to move left and right. When the paddle 78 contacts the cable, it is hindered from rotating, stretching or compressing. The arc-shaped spring rod 77 is retracted, and the paddle 78 moves the cable to vibrate and shake off the accumulated water vapor. Before the cable is fixed, the tidying device 7 drives the sliding block 73 to slide left and right through the cooperation of the push block 71 and the sliding plate 72. The sliding block 73 slides left and right to drive the limit column 74 and the roller to move left and right, so as to flatten the cables accumulated in one place and avoid the cables from being entangled and knotted. During the subsequent air drying, the water vapor is blocked and cannot contact the flowing air, resulting in the cable avoiding residual water vapor, reducing the quality and service life of the cable; after the cable is fixed, the sliding block 73 drives the paddle 78 to move left and right, and cooperates with the arc-shaped spring rod 77 to paddle the taut cable to make the cable vibrate, shake off the water droplets, reduce the volume of water vapor that needs to be air-dried, and improve the air-drying efficiency.
[0033] A scraping device 8 for concentrating water vapor is provided on the upper surface of the sorting device 7. The scraping device 8 includes a first connecting column 81, a third hinged rod 82, a sliding rod 83, a second connecting column 84, a third spring 85 and a scraper 86. The first connecting column 81 is fixedly connected to the upper surface of the sliding block 73. When the sliding block 73 slides left and right, it drives the first connecting column 81 to move left and right. The first connecting column 81 penetrates the third hinged rod 82 and is rotatably connected at the penetration point. When the first connecting column 81 moves left and right, it drives the third hinged rod 82 to rotate. The fixed rod penetrates the sliding rod 83 and is slidably connected at the penetration point. The second connecting column 84 is fixedly connected to the upper surface of the sliding rod 83. The second connecting column 84 penetrates one end of the third hinged rod 82 away from the first connecting column 81 and is rotatably connected at the penetration point. When the third hinged rod 82 rotates, it drives the second connecting column 84 to move forward and backward. The second connecting column 84 moves forward and backward, driving the sliding rod 83 to slide forward and backward. The third spring 85 is fixedly connected to the bottom surface of the sliding rod 83. The sliding rod 83 slides forward and backward, driving the third spring 85 to move forward and backward. The scraper 86 is fixedly connected to the bottom end of the third spring 85. The third spring 85 moves forward and backward, driving the scraper 86 to move forward and backward to scrape the water vapor on the cable surface together. When the cable is fixed, the scraping device 8 drives the first connecting column 81 to move left and right through the sliding block 73. The first connecting column 81 cooperates with the third hinged rod 82 to drive the second connecting column 84 to move forward and backward. The second connecting column 84 moves forward and backward, driving the sliding rod 83 to move forward and backward, and cooperating with the third spring 85 to drive the scraper 86 to move forward and backward, scraping up the water vapor on the cable and gathering it together to form water droplets, making it convenient for the sorting device 7 to shake off the water droplets while smoothing the cable, further improving the air drying efficiency.
[0034] When this embodiment is working: when the pressure plate 64 slides downward, the sliding plate 72 sliding on the inner wall of the pressure plate 64 contacts the push block 71 and slides left and right along the inclined surface of the push block 71, and the sliding plate 72 drives the sliding block 73 to slide left and right. The sliding block 73 slides left and right to drive the limit column 74 to move left and right. The limit column 74 moves left and right to drive the roller to move left and right, flattening the piled cables and snapping them into the groove of the sorting plate 5. The second spring 75 applies pressure to the limit plate 76 to fix the limit column 74 and the roller. When the sliding block 73 slides left and right, it drives the paddle 78 to move left and right. When the paddle 78 contacts the cable, it is hindered and rotates, stretching or compressing the arc spring rod 77. The paddle 78 pokes the cable to vibrate and shake off the water droplets on the outer wall of the cable.
[0035] When the sliding block 73 slides left and right, it drives the first connecting column 81 to move left and right. When the first connecting column 81 moves left and right, it drives one end of the third hinged rod 82 to move left and right. The second connecting column 84 does not move left and right with the sliding block 73. Therefore, the third hinged rod 82 is driven to rotate when the sliding block 73 slides left and right. When the third hinged rod 82 rotates, it drives the second connecting column 84 to move forward and backward. The second connecting column 84 drives the sliding rod 83 to slide forward and backward. The sliding rod 83 drives the third spring 85 to move forward and backward. The third spring 85 drives the scraper 86 to move forward and backward to scrape the water vapor on the cable together.
[0036] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A cooling and air-drying device for cable processing, comprising a support table (1), characterized in that: A cooling device (2) is fixed on the upper surface of the support platform (1), an output device (3) is fixed on the upper surface of the support platform (1), a support column (4) is fixed on the upper surface of the support platform (1), a tidying plate (5) is fixed on the top of the support column (4), a fixing device (6) adapted to cables of different sizes is arranged on the upper surface of the tidying plate (5), a tidying device (7) for facilitating straightening of the cables is arranged above the fixing device (6), and a scraping device (8) for concentrating water vapor is arranged on the upper surface of the tidying device (7); The fixing device (6) comprises a rotating shaft (61), a transmission device (62), a reciprocating screw rod (63), a pressure plate (64), a first hinge rod (65), a second hinge rod (66), a connecting rod (67), a drying device (68), a first spring (69) and a water absorption plate (610); the rotating shaft (61) passes through the upper surface of the support platform (1) and is rotatably connected at the penetration point; a fan blade is fixed to the outer wall of the upper end of the rotating shaft (61); and the transmission device (62) is fixedly connected to the upper surface of the support platform (1).
2. The cooling and air-drying equipment for cable processing according to claim 1, characterized in that: The transmission device (62) includes a first pulley, a second pulley and a belt, the first pulley is fixedly connected to the outer wall of the rotating shaft (61), the reciprocating screw rod (63) passes through the upper surface of the support platform (1), the second pulley is fixedly connected to the outer wall of the reciprocating screw rod (63), the first pulley and the second pulley are connected by belt transmission, the reciprocating screw rod (63) passes through the pressure plate (64), and is threadedly connected at the penetration point.
3. The cooling and air-drying equipment for cable processing according to claim 2, characterized in that: The first hinged rod (65) is hinged to one end of the pressure plate (64) away from the reciprocating screw rod (63), and the second hinged rod (66) is hinged to one end of the sorting plate (5) away from the reciprocating screw rod (63). One end of the first hinged rod (65) away from the pressure plate (64) and one end of the second hinged rod (66) away from the sorting plate (5) are hinged, and the connecting rod (67) passes through the hinge of the first hinged rod (65) and the second hinged rod (66), and is rotatably connected at the hinge.
4. The cooling and air-drying equipment for cable processing according to claim 3, characterized in that: The connecting rod (67) passes through the drying device (68) and is slidably connected at the penetration point. A fixing rod is fixed to the front side of the finishing plate (5). The drying device (68) passes through the fixing rod and is slidably connected at the penetration point. The drying device (68) includes a fixing plate and a water-absorbing sponge. The water-absorbing sponge array is arranged on the upper surface of the fixing plate. The first spring (69) is fixedly connected to the lower surface of the fixing rod. An absorbent plate (610) is fixed to the end of the first spring (69) away from the fixing rod.
5. The cooling and air-drying equipment for cable processing according to claim 1, characterized in that: The arranging device (7) comprises a push block (71), a sliding plate (72), a sliding block (73), a limiting column (74), a second spring (75), a limiting plate (76), an arc spring rod (77) and a paddle (78); the push block (71) is fixedly connected to the upper surface of the arranging plate (5); two groups of the push blocks (71) are arranged, respectively on the left and right sides of the upper surface of the arranging plate (5); and the two groups of push blocks (71) are triangles with mutually parallel inclined surfaces.
6. The cooling and air-drying equipment for cable processing according to claim 5, characterized in that: The sliding plate (72) penetrates the pressure plate (64) and is slidably connected at the penetration point. The push block (71) penetrates the pressure plate (64) and is slidably connected at the penetration point. The sliding block (73) is slidably connected to the side wall of the sliding plate (72). The limiting column (74) penetrates the sliding block (73) and is fitted at the penetration point. A roller is fixed to the end of the limiting column (74) away from the sliding block (73). The second spring (75) is fixedly connected to the upper surface of the inner wall of the sliding block (73).
7. The cooling and air-drying equipment for cable processing according to claim 6, characterized in that: The limiting plate (76) is fixedly connected to the bottom end of the second spring (75), driving the bottom surface of the limiting plate (76) to fit the outer wall of the limiting column (74); the arc spring rod (77) is fixedly connected to the side of the sliding block (73) away from the second spring (75); one end of the arc spring rod (77) away from the sliding block (73) is fixedly connected to the side wall of the paddle (78); and the paddle (78) is hinged to the bottom surface of the sliding block (73) away from the second spring (75).
8. The cooling and air-drying equipment for cable processing according to claim 1, characterized in that: The scraping device (8) comprises a first connecting column (81), a third hinged rod (82), a sliding rod (83), a second connecting column (84), a third spring (85) and a scraper (86), wherein the first connecting column (81) is fixedly connected to the upper surface of the sliding block (73), the first connecting column (81) passes through the third hinged rod (82) and is rotatably connected at the passing point, and the fixed rod passes through the sliding rod (83) and is slidably connected at the passing point.
9. The cooling and air-drying equipment for cable processing according to claim 8, characterized in that: The second connecting column (84) is fixedly connected to the upper surface of the sliding rod (83), and the second connecting column (84) passes through one end of the third hinged rod (82) away from the first connecting column (81), and is rotatably connected at the penetration point. The third spring (85) is fixedly connected to the bottom surface of the sliding rod (83), and the scraper (86) is fixedly connected to the bottom end of the third spring (85).
Citation Information
Patent Citations
Efficient cooling and air-drying equipment for cable processing
CN208954706U