A cooling and drying apparatus for cable processing

By designing an automatic clamping and limiting winding assembly, the problems of low efficiency and safety risks associated with manual pre-fixation in cable processing equipment have been solved, realizing automated winding and a safe cable processing process.

CN224400144UActive Publication Date: 2026-06-23JIA XING SHI WU FENG DIAN LAN YOU XIAN GONG SI
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIA XING SHI WU FENG DIAN LAN YOU XIAN GONG SI
Filing Date
2025-05-22
Publication Date
2026-06-23

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Abstract

This utility model relates to the field of cable processing technology and discloses a cooling and drying device for cable processing, including a cooling water tank. The surface of the cooling water tank is provided with a winding assembly and a limiting assembly. In this cooling and drying device for cable processing, by rotating the winding assembly, turning the first knob forward, through the second screw, the second rack, the gear, the gear ring, and the first rack, can drive the clamping plate away from the winding drum, and the cable is placed between the winding drum and the clamping plate. Turning the first knob in reverse, the clamping plate clamps the cable, eliminating the need for manual pre-fixing and pre-winding to avoid danger. At this time, the motor can be started normally for winding. Rotating the baffle, the first screw disengages from the first threaded groove, releasing the limiting position on the winding drum. At this time, the winding drum can be taken out normally. During installation, the installation cylinder is placed on the surface of the sleeve rod. Through the baffle, the first threaded groove, and the first screw, the winding drum can be limited, and the winding can be started normally. The motor can be started to begin winding.
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Description

Technical Field

[0001] This utility model relates to the field of cable processing technology, specifically to a cooling and drying device for cable processing. Background Technology

[0002] Cables are wire products used to transmit electrical energy, electrical signals, and convert electromagnetic energy. Cables typically consist of a core that transmits power or electrical signals and a sheath that provides protection and insulation.

[0003] According to a public notice regarding a high-efficiency cable processing cooling and drying device (publication number: CN216014948U), the cable is wound using a take-up roller. At the start of winding, operators need to manually pre-fix the cable end onto the roller surface and perform initial winding to ensure the cable can smoothly enter the automatic winding process. This process is not only inefficient but also increases the operator's workload. Due to the cable's tension and inertia, operators' fingers are easily squeezed or caught in the equipment when manually fixing the cable, posing a significant safety risk. Utility Model Content

[0004] The purpose of this invention is to provide a cooling and drying device for cable 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 cooling and drying device for cable processing, comprising a cooling water tank, wherein a winding assembly and a limiting assembly are provided on the surface of the cooling water tank;

[0006] The winding assembly includes:

[0007] A mounting bracket is used to stabilize the surface mechanism.

[0008] A winding drum is used to wind up cables.

[0009] Fasteners are used to pre-secure cables.

[0010] Preferably, the fixing frame is fixed to the surface of the cooling water pool. A motor is fixed to the outer surface of the fixing frame, and the output shaft of the motor passes through the fixing frame. A fixing plate is rotatably connected to the side of the fixing frame away from the motor. The output shaft of the motor is fixed to the right side of the fixing plate. A sleeve rod is fixed to the left side of the fixing plate. A threaded groove is opened at the left end of the sleeve rod. A screw rod is threaded to the inner wall of the threaded groove. A baffle is fixed to the left end of the screw rod. A winding drum is fitted on the outer surface of the sleeve rod. Rotating the baffle causes the screw rod to disengage from the threaded groove, releasing the restriction on the winding drum. At this time, the winding drum can be taken out normally. During installation, the mounting cylinder is fitted onto the surface of the sleeve rod. The winding drum can be restricted by the baffle, the threaded groove, and the screw rod, and the winding operation can be carried out normally. Turning on the motor allows the winding operation to begin.

[0011] Preferably, the fixing member includes a cavity, a gear ring is rotatably connected to the inner wall of the cavity, a gear is rotatably connected to the inner wall of the cavity, a rack is slidably connected to the side of the inner wall of the cavity away from the gear ring, the rack meshes with the gear, the gear meshes with the gear ring, a rack is slidably connected to the inner wall of the cavity away from the gear ring, a clamping plate is fixed to the outer surface of the rack, the end of the clamping plate away from the rack penetrates the winding drum, the clamping plate is slidably connected to the winding drum, and two sets of clamping plates, rack one, and gear are provided. A set of racks is engaged, and a knob is rotatably connected to the outer surface of the winding drum. The output shaft of the knob passes through the winding drum, and a screw is fixed to the output shaft of the knob. The end of the screw away from the knob passes through the rack, and the screw and the rack are threadedly connected. Rotating the knob forward causes the clamp to move away from the winding drum through the screw, the rack, the gear, the gear ring, and the rack. At this time, the cable is placed between the winding drum and the clamp. Reversing the knob causes the clamp to clamp the cable. The motor can then be turned on to wind the cable.

[0012] Preferably, a stabilizing plate is fixed to the outer surface of the winding drum, and a second knob is rotatably connected to the outer surface of the stabilizing plate. The output shaft of the second knob passes through the stabilizing plate, and a third screw is fixed to the outer surface of the output shaft of the second knob. A rubber column is slidably connected to the outer surface of the winding drum. A threaded groove is provided at one end of the rubber column near the second knob, and the end of the third screw away from the second knob is threadedly connected to the inner wall of the threaded groove. When the second knob is rotated in reverse, the surface of the rubber column abuts against the surface of the first knob, thereby limiting the position of the first knob.

[0013] Preferably, a tensioning roller is rotatably connected to the inner wall of the cooling water tank, a transfer roller is installed on the inner wall of the cooling water tank, and a semiconductor cooling chip is installed on the left side surface of the cooling water tank to facilitate preliminary cooling of the cable.

[0014] Preferably, a box is fixed to the bottom of the inner wall of the cooling water tank, a fan is fixed to the top of the box, a T-pipe is fixed to the output end of the fan, an air outlet is installed on the outer surface of the T-pipe, the air outlet penetrates the box, a cylinder is fixed to the top of the box, the output end of the cylinder penetrates the box, a fixing frame is fixed to the bottom of the output end of the cylinder, a wiping roller is rotatably connected to the inner side of the fixing frame, and a wiping roller is rotatably mounted on the inner wall of the box. When the fan is turned on, air is circulated through the air outlet to cool the surface of the cable. When the cylinder is turned on, the fixing frame moves the wiping roller down to fit against the surface of the cable, thus wiping away excess cooling water.

[0015] Compared with the prior art, this utility model provides a cooling and drying device for cable processing, which has the following beneficial effects:

[0016] 1. This cable processing cooling and drying equipment, through its winding assembly, allows the clamping plate to move away from the winding drum by rotating knob one in the forward direction, via screw two, rack two, gear, gear ring, and rack one. The cable is placed between the winding drum and the clamping plate. Reversing knob one clamps the cable, eliminating the need for manual pre-fixing and pre-winding to avoid danger. At this point, the motor can be started normally for winding. Rotating the baffle disengages screw one from threaded groove one, releasing the limit on the winding drum, allowing it to be removed normally. During installation, the installation sleeve is placed on the surface of the sleeve rod. The winding drum is limited by the baffle, threaded groove one, and screw one, allowing normal winding. Starting the motor allows for winding.

[0017] 2. The cooling and drying equipment for cable processing uses a limiting component to limit the knob by having the surface of the rubber column contact the surface of the knob, thus preventing the knob from loosening during the winding process and affecting the clamping and fixing of the cable. Attached Figure Description

[0018] Figure 1 This is a front view structural diagram of the present invention;

[0019] Figure 2 This is a side view of the structure of this utility model;

[0020] Figure 3 This is a schematic cross-sectional view of the box body of this utility model;

[0021] Figure 4 This is a front view structural diagram of part of the winding assembly of this utility model;

[0022] Figure 5 This is an exploded view of part of the winding assembly of this utility model;

[0023] Figure 6 This is an exploded front view of part of the winding assembly of this utility model;

[0024] Figure 7 This is a schematic diagram of the internal structure of the winding assembly and the limiting assembly of this utility model;

[0025] Figure 8 This is a cross-sectional front view of the winding and limiting components of this utility model.

[0026] In the diagram: 1. Cooling water tank; 2. Semiconductor refrigeration chip; 3. Tensioning roller; 4. Transfer roller; 5. Housing; 6. Fan; 7. T-pipe; 10. Cylinder; 11. Fixing frame; 12. Wiping roller one; 13. Wiping roller two; 8. Rewinding assembly; 80. Fixing frame; 81. Motor; 82. Fixing plate; 83. Sleeve rod; 84. Threaded groove one; 85. Screw one; 86. Baffle; 87. Rewinding drum; 88. Fixing component; 880. Cavity; 881. Gear ring; 882. Gear; 883. Rack one; 884. Clamping plate; 885. Rack two; 886. Knob one; 887. Screw two; 9. Limiting assembly; 90. Stabilizing plate; 91. Knob two; 92. Rubber column; 93. Threaded groove two; 94. Screw three. Detailed Implementation

[0027] like Figures 1-8 As shown, this utility model provides a technical solution: a cooling and drying device for cable processing, including a cooling water tank 1, the surface of which is provided with a winding assembly 8 and a limiting assembly 9; the winding assembly 8 includes: a fixing frame 80, a motor 81, a fixing plate 82, a sleeve rod 83, a threaded groove 84, a screw 85, a baffle 86, a winding drum 87, a fixing member 88, a cavity 880, a toothed ring 881, a gear 882, a rack 883, a clamping plate 884, a rack 885, a knob 886, and a screw 887.

[0028] A mounting bracket 80 is fixed to the surface of the cooling water tank 1. A motor 81 is fixed to the outer surface of the mounting bracket 80. The output shaft of the motor 81 passes through the mounting bracket 80. A mounting plate 82 is rotatably connected to the side of the mounting bracket 80 away from the motor 81. The output shaft of the motor 81 is fixed to the right side of the mounting plate 82. A sleeve rod 83 is fixed to the left side of the mounting plate 82. A threaded groove 84 is opened at the left end of the sleeve rod 83. A screw rod 85 is threaded to the inner wall of the threaded groove 84. A baffle 86 is fixed to the left end of the screw rod 85. The outer surface of the sleeve rod 83 is fitted with... The device includes a winding drum 87 and a fixing member 88 comprising a cavity 880. A gear ring 881 is rotatably connected to the inner wall of the cavity 880, and a gear 882 is rotatably connected to the inner wall of the cavity 880. A rack 883 is slidably connected to the inner wall of the cavity 880 away from the gear ring 881, and the rack 883 meshes with the gear 882. The gear 882 meshes with the gear ring 881. A second rack 885 is slidably connected to the inner wall of the cavity 880 away from the gear ring 881. A clamping plate 884 is fixed to the outer surface of the rack 883, and the clamping plate 884 is located away from the rack. One end of rack 883 passes through take-up drum 87. Clamping plate 884 is slidably connected to take-up drum 87. Clamping plate 884, rack 883, and gear 882 are each provided in two sets. Rack 885 meshes with one set of rack 883. Knob 886 is rotatably connected to the outer surface of take-up drum 87. The output shaft of knob 886 passes through take-up drum 87, and screw 887 is fixed to the output shaft of knob 886. The end of screw 887 away from knob 886 passes through rack 885, and screw 887 and rack 885 are connected. With an 85 threaded connection, turning the knob 886 forward moves the rack 885, which in turn drives the gear ring 881 to rotate and the rack 883 to move. Through the gear ring 881, the rack 883 moves synchronously, which moves the clamping plate 884 away from the winding drum 87. At this point, the cable is placed between the winding drum 87 and the clamping plate 884. Then, turning the knob 886 in reverse causes the clamping plate 884 to clamp the cable. The motor 81 can then be turned on to wind up the cable. No manual pre-fixing or pre-winding is required, thus avoiding potential dangers.

[0029] A stabilizing plate 90 is fixed to the outer surface of the winding drum 87. A knob 91 is rotatably connected to the outer surface of the stabilizing plate 90. The output shaft of the knob 91 passes through the stabilizing plate 90. A screw 94 is fixed to the outer surface of the output shaft of the knob 91. A rubber column 92 is slidably connected to the outer surface of the winding drum 87. A threaded groove 93 is opened at the end of the rubber column 92 near the knob 91. The end of the screw 94 away from the knob 91 is threadedly connected to the inner wall of the threaded groove 93. Reversing the knob 91 causes the surface of the rubber column 92 to abut against the surface of the knob 886, which limits the knob 886 and prevents it from loosening during winding, thus affecting the clamping and fixing of the cable.

[0030] A tension roller 3 is rotatably connected to the inner wall of the cooling water tank 1. A transfer roller 4 is installed on the inner wall of the cooling water tank 1. A semiconductor cooling chip 2 is installed on the left side surface of the cooling water tank 1. A box 5 is fixed to the bottom of the inner wall of the cooling water tank 1. A fan 6 is fixed to the top of the box 5. A three-way pipe 7 is fixed to the output end of the fan 6. An air outlet is installed on the outer surface of the three-way pipe 7 and passes through the box 5. A cylinder 10 is fixed to the top of the box 5. The output end of the cylinder 10 passes through the box 5. A fixing frame 11 is fixed to the bottom of the output end of the cylinder 10. Wiping roller 12 is rotatably connected to the inner side of the fixed frame 11, and wiping roller 23 is rotatably connected to the inner wall of the housing 5. The transmission roller 4 transmits the cable and passes it through the surface of the tension roller 3 and through the housing 5. At the same time, the fan 6 is turned on so that the air can be cooled on the surface of the cable through the air outlet. At the same time, the cylinder 10 is turned on so that the fixed frame 11 drives the wiping roller 12 to move down and stick to the surface of the cable, so as to wipe away the excess cooling water. The excess cooling water is discharged into the cooling water pool 1 through the housing 5 again.

[0031] When cable cooling is required, the cable is transported via the transfer roller 4, passing through the tension roller 3 and the housing 5. Simultaneously, the fan 6 is activated, allowing air to cool the cable surface through the outlet. At the same time, the cylinder 10 is activated, causing the fixing frame 11 to move the wiping roller 12 down to contact the cable surface, wiping away excess cooling water. Rotating the knob 2 91 forward causes the screw 3 94 to rotate, disengaging the rubber column 92 from the knob 1 886. The knob 1 886 can then be rotated normally. Rotating the knob 1 886 forward moves the rack 2 885, causing the gear 882 to rotate, driving the gear ring 881 to rotate and the rack 1 883 to move. Through the gear ring 881, the rack 1 883 moves synchronously, moving the clamping plate 884 away from the winding drum 87. The cable is then placed between the winding drum 87 and the clamping plate 884. Reversing the rotation... Turning knob 886 causes rack 885 to drive gear 882 in reverse. Through rack 883 and gear ring 881, clamping plate 884 clamps the cable. Simultaneously, turning knob 91 in reverse causes the surface of rubber column 92 to contact the surface of knob 886, thus limiting knob 886 and preventing it from loosening during winding, which would affect the clamping and fixing of the cable. At this time, motor 81 can be turned on to wind the cable without manual pre-fixing or pre-winding, avoiding danger. When it is necessary to remove the winding drum 87, turn baffle 86 to disengage screw 85 from thread groove 84, releasing the limitation on winding drum 87. At this time, winding drum 87 can be removed normally. During installation, the installation sleeve is placed on the surface of sleeve rod 83. Through baffle 86, thread groove 84, and screw 85, winding drum 87 is limited, and winding can be carried out normally.

[0032] The present invention has been described in detail above. However, modifications or improvements can be made to it, which will be obvious to those skilled in the art. Therefore, any modifications or improvements that do not depart from the spirit of the present invention are within the protection scope of the present invention.

Claims

1. A cooling and drying apparatus for cable processing, comprising a cooling water tank (1), characterized in that: The surface of the cooling water tank (1) is provided with a winding assembly (8) and a limiting assembly (9); The winding assembly (8) includes: A mounting bracket (80) is used to stabilize its surface mechanism; The winding drum (87) is used to wind up the cable; The fastener (88) is used to pre-fix the cable.

2. The cooling and drying apparatus for processing a cable according to claim 1, characterized by: The fixing frame (80) is fixed on the surface of the cooling water pool (1). A motor (81) is fixed on the outer surface of the fixing frame (80). The output shaft of the motor (81) passes through the fixing frame (80). A fixing plate (82) is rotatably connected to the side of the fixing frame (80) away from the motor (81). The output shaft of the motor (81) is fixed on the right side of the fixing plate (82). A sleeve rod (83) is fixed on the left side of the fixing plate (82). A threaded groove (84) is opened at the left end of the sleeve rod (83). A screw rod (85) is threadedly connected to the inner wall of the threaded groove (84). A baffle (86) is fixed at the left end of the screw rod (85). A winding drum (87) is sleeved on the outer surface of the sleeve rod (83).

3. The cooling and drying apparatus for processing a cable according to claim 1, wherein: The fixing member (88) includes a cavity (880), a gear ring (881) rotatably connected to the inner wall of the cavity (880), a gear (882) rotatably connected to the inner wall of the cavity (880), a rack (883) slidably connected to the side of the inner wall of the cavity (880) away from the gear ring (881), the rack (883) meshing with the gear (882), the gear (882) meshing with the gear ring (881), a rack (885) slidably connected to the inner wall of the cavity (880) away from the gear ring (881), and a clamping plate (884) fixed to the outer surface of the rack (883), the clamping plate (884) being away from the rack (883). One end of the winding drum (87) is slidably connected to the winding drum (87). The clamp (884), rack one (883), and gear (882) are each provided with two sets. The rack two (885) meshes with one set of rack one (883). The outer surface of the winding drum (87) is rotatably connected to the knob one (886). The output shaft of the knob one (886) is slid through the winding drum (87), and the output shaft of the knob one (886) is fixed with the screw two (887). The end of the screw two (887) away from the knob one (886) is slid through the rack two (885), and the screw two (887) is threadedly connected to the rack two (885).

4. The cooling and drying apparatus for processing a cable according to claim 1, wherein: A stabilizing plate (90) is fixed to the outer surface of the winding drum (87). A knob (91) is rotatably connected to the outer surface of the stabilizing plate (90). The output shaft of the knob (91) passes through the stabilizing plate (90). A screw (94) is fixed to the outer surface of the output shaft of the knob (91). A rubber column (92) is slidably connected to the outer surface of the winding drum (87). A threaded groove (93) is provided at one end of the rubber column (92) near the knob (91). The screw (94) is threaded to the inner wall of the threaded groove (93) at one end away from the knob (91).

5. The cooling and drying apparatus for processing a cable according to claim 1, wherein: The inner wall of the cooling water tank (1) is rotatably connected to a tension roller (3), the inner wall of the cooling water tank (1) is equipped with a transmission roller (4), and the left side surface of the cooling water tank (1) is equipped with a semiconductor cooling chip (2).

6. The cooling and drying apparatus for processing a cable according to claim 1, wherein: The bottom of the inner wall of the cooling water pool (1) is fixed with a box (5), the top of the box (5) is fixed with a fan (6), the output end of the fan (6) is fixed with a three-way pipe (7), the outer surface of the three-way pipe (7) is equipped with an air outlet, the air outlet passes through the box (5), the top of the box (5) is fixed with a cylinder (10), the output end of the cylinder (10) passes through the box (5), the bottom of the output end of the cylinder (10) is fixed with a fixing frame (11), the inner side of the fixing frame (11) is rotatably connected with a wiping roller (12), and the inner wall of the box (5) is rotatably connected with a wiping roller (2) (13).

Citation Information

Patent Citations

  • CN216014948U