Quick winding equipment for cable pipeline

By designing a fast cable pipeline reeling device and using staggered air outlet meshes and blowing components, the problems of the inner layer being damp and the outer layer being over-dried when the cable is reeled are solved, achieving fast drying of the cable surface and efficient reeling.

CN223409127UActive Publication Date: 2025-10-03FUJIAN LIEN TECH CO LTD
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Patent Information

Application Number
CN202422108069.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-10-03
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

When existing cable reeling equipment is reeled in a humid environment, the inner layer of the cable dries slowly and the outer layer of the cable dries excessively, resulting in a decrease in cable utilization rate. Manual wiping operations are cumbersome and waste manpower.

Method used

A fast reeling device for cable pipelines is designed, which adopts symmetrically arranged load-bearing plates and reeling components, combined with a blowing device, and utilizes staggered air outlet holes and blowing components to achieve synchronous reeling and rapid air drying.

Benefits of technology

The cable surface can be quickly dried, which avoids the problems of inner cable moisture and outer cable excessive drying, improves cable utilization rate and reduces manual intervention.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223409127U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of cable pipeline winding, in particular to quick winding equipment for a cable pipeline. The device comprises a first bearing plate and a second bearing plate which are symmetrically arranged, a winding assembly penetrating through the inner side and the outer side of the second bearing plate, and an air blowing device penetrating through the inner side and the outer side of the first bearing plate. The winding assembly comprises a first driving motor fixedly arranged on the outer side of the first bearing plate and a winding drum arranged between the first bearing plate and the second bearing plate. The air blowing device comprises a second driving motor arranged on the outer side of the second bearing plate, an air outlet outer barrel arranged between the first bearing plate and the second bearing plate and arranged in the winding barrel in a sleeved mode, a fan inner net barrel fixedly arranged in the air outlet outer barrel and an air blowing assembly fixedly arranged in the fan inner net barrel. The purpose of the utility model is to provide a cable pipeline rapid winding device which solves the problems that the surface of a pipeline is wet, manual wiping operation is tedious, and the surface of an outer-layer cable is air-dried while the surface of an inner-layer cable is still wet during air drying.
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Description

Technical Field

[0001] The utility model relates to the technical field of cable pipeline reeling, in particular to a cable pipeline rapid reeling device. Background Art

[0002] Power cable is a cable product used to transmit and distribute high-power electrical energy in the trunk lines of the power system. The basic structure of power cable consists of four parts: core (conductor), insulation layer, shielding layer and protective layer. It is commonly used in urban underground power grids, power station lead-out lines, internal power supply of industrial and mining enterprises, and underwater transmission lines across rivers and seas. Cables need to be reeled in a cable reel before and after use and maintenance.

[0003] Currently, when reeling in underwater transmission lines in rivers and seas, or during rainy weather, the cable surface often becomes damp due to the presence of seawater or rainwater. After reeling, the cables are stacked and wrapped around the reel drum, where they are kept dry by either natural air drying or by workers wiping them. During natural air drying, the cables are tightly packed together, causing the seawater or rainwater on the inner cable surface to dry more slowly. Often, after the outer cable surface has dried, rainwater remains between the inner cables. Over time, this can lead to damage to the outer cable due to excessive air drying, while damage to the inner cable due to moisture remaining. This reduces cable utilization. Manually wiping the cable surface is time-consuming and wastes manpower.

[0004] Therefore, how to design a cable pipeline fast reeling device that can solve the above technical problems is a technical problem that needs to be solved. Utility Model Content

[0005] In order to solve the above problems, the purpose of this utility model is to provide a cable pipeline rapid winding device, which solves the problem that the pipeline surface is wet, manual wiping operation is cumbersome, and the outer cable surface is dry while the inner cable surface is still wet during air drying.

[0006] To achieve the above-mentioned purpose, the utility model adopts the following technical scheme: it includes a first load-bearing plate and a second load-bearing plate arranged symmetrically, a reeling assembly passing through the inner and outer sides of the second load-bearing plate, and a blowing device passing through the inner and outer sides of the first load-bearing plate and arranged in the reeling assembly; the reeling assembly includes a first driving motor fixedly arranged on the outer side of the first load-bearing plate and a reeling drum arranged between the first load-bearing plate and the second load-bearing plate; the output end of the first driving motor passes through the first load-bearing plate and is fixedly connected to the end face of one end of the reeling drum, and the reeling drum is rotatably connected to the second load-bearing plate at one end away from the first driving motor ; The blowing device includes a second driving motor arranged on the outside of the second load-bearing plate, an air outlet outer cylinder arranged between the first load-bearing plate and the second load-bearing plate and sleeved in the winding drum, a fan inner mesh cylinder fixed in the air outlet outer cylinder, and a blowing component fixed in the fan inner mesh cylinder; the blowing component includes a motor fixed on the inner wall of the fan inner mesh cylinder and a fan blade arranged at the output end of the motor; a plurality of first air outlet mesh holes are equidistantly provided on the outer peripheral wall of the winding drum, a plurality of second air outlet mesh holes are equidistantly provided on the outer peripheral wall of the air outlet outer cylinder, and the first air outlet mesh holes and the second air outlet mesh holes are staggered.

[0007] Furthermore, a load-bearing frame is fixedly provided at the bottom of each of the first load-bearing plate and the second load-bearing plate.

[0008] Furthermore, the outer side of the second air outlet mesh is covered with a selective permeable membrane.

[0009] Furthermore, the aperture of the second air outlet mesh is much smaller than the aperture of the first air outlet mesh.

[0010] The utility model has the following beneficial effects:

[0011] 1-The utility model is provided with a blowing assembly. When winding, the first driving motor and the second driving motor drive the winding drum and the air outlet outer drum to rotate synchronously, and the cable pipeline is wound around the outer peripheral wall of the winding drum. The first air outlet mesh holes and the second air outlet mesh holes are staggered to avoid a large number of raindrops entering the winding drum when winding on rainy days; when drying, the second driving motor drives the air outlet outer drum to rotate, so that the first air outlet mesh holes and the second air outlet mesh holes are aligned, thereby improving the air outlet efficiency. The blowing assembly works and continuously discharges air to dry the outer surface of the cable pipeline. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 It is a schematic diagram of the utility model;

[0013] Figure 2 It is a schematic diagram of the utility model;

[0014] Figure 3 It is a schematic diagram of the utility model.

[0015] Description of reference numerals:

[0016] 1- first load-bearing plate;

[0017] 2- Second load-bearing plate;

[0018] 3-rewinding assembly, 31-first drive motor, 32-rewinding drum, 321-first air outlet mesh;

[0019] 4-blowing device, 41-second driving motor, 42-outlet outer cylinder, 421-second outlet mesh, 43-inner outlet mesh cylinder, 44-blowing assembly, 441-motor, 442-fan blades;

[0020] 5-Load-bearing frame. DETAILED DESCRIPTION

[0021] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments:

[0022] See also Figure 1-3 As shown, the scheme includes a first load-bearing plate 1 and a second load-bearing plate 2 symmetrically arranged, a reeling assembly 3 penetrating the inner and outer sides of the second load-bearing plate 2, and a blowing device 4 penetrating the inner and outer sides of the first load-bearing plate 1 and arranged in the reeling assembly 3;

[0023] The winding assembly 3 includes a first drive motor 31 fixedly arranged on the outside of the first bearing plate 1 and a winding drum 32 arranged between the first bearing plate 1 and the second bearing plate 2; the output end of the first drive motor 31 passes through the first bearing plate 1 and is fixedly connected to the end face of one end of the winding drum 32, and the end of the winding drum 32 away from the first drive motor 31 is rotatably connected to the second bearing plate 2;

[0024] The blowing device 4 includes a second driving motor 41 provided on the outside of the second bearing plate 2, an air outlet outer cylinder 42 provided between the first bearing plate 1 and the second bearing plate 2 and sleeved in the winding cylinder 32, an air outlet inner net cylinder 43 fixed in the air outlet outer cylinder 42, and a blowing assembly 44 fixed in the air outlet inner net cylinder 43; the blowing assembly 44 includes a motor 441 fixed on the inner side wall of the air outlet inner net cylinder 43 and a fan blade 442 provided at the output end of the motor 441;

[0025] A plurality of first air outlet mesh holes 321 are equidistantly formed on the outer peripheral wall of the winding drum 32 , and a plurality of second air outlet mesh holes 421 are equidistantly formed on the outer peripheral wall of the air outlet outer drum 42 . The first air outlet mesh holes 321 and the second air outlet mesh holes 421 are staggered.

[0026] The first load-bearing plate 1 and the second load-bearing plate 2 are both provided with a load-bearing frame 5 at the bottom to facilitate supporting the first load-bearing plate 1 and the second load-bearing plate 2 .

[0027] The outer side of the second air outlet mesh 421 is also covered with a selective permeable membrane. The selective permeable membrane is made of a microporous material that is larger than gas molecules and smaller than the diameter of liquid droplets, so that raindrops cannot pass through and enter the air outlet outer cylinder 42.

[0028] Furthermore, the aperture of the second air outlet mesh hole 421 is much smaller than the aperture of the first air outlet mesh hole 321 .

[0029] The working principle is roughly as follows:

[0030] In the initial state, the first air outlet mesh holes 321 and the second air outlet mesh holes 421 are staggered. During operation, the first drive motor 31 and the second drive motor 41 drive the take-up drum 32 and the air outlet outer drum 42 to rotate synchronously to reel in the cable. At the same time, the motor 441 drives the fan blades 442 to rotate and discharge air. The air passes through the air outlet inner mesh drum 43, the air outlet outer drum 42 and the take-up drum 32 in sequence, blowing air onto the cable wound on the outer peripheral wall of the take-up drum 32.

[0031] When blowing, the second driving motor 41 is driven to drive the air outlet outer cylinder 42 to rotate, so that the second air outlet mesh 421 is aligned with the first air outlet mesh 321, as shown in FIG. Figure 3 As shown, the blowing assembly 44 is convenient for blowing air out of the reel 32 quickly, thereby increasing the drying speed of the outer surface of the cable.

[0032] The above description is only a specific embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural transformation made using the contents of the description and drawings of the present invention, or directly or indirectly applied in other related technical fields, is also included in the patent protection scope of the present invention.

Claims

1. A cable pipeline rapid reeling device, characterized by: It comprises a first load-bearing plate (1) and a second load-bearing plate (2) that are symmetrically arranged, a reeling assembly (3) that passes through both inner and outer sides of the second load-bearing plate (2), and a blowing device (4) that passes through both inner and outer sides of the first load-bearing plate (1) and is arranged in the reeling assembly (3); The winding assembly (3) comprises a first drive motor (31) fixedly arranged on the outside of the first bearing plate (1) and a winding drum (32) arranged between the first bearing plate (1) and the second bearing plate (2); the output end of the first drive motor (31) passes through the first bearing plate (1) and is fixedly connected to an end face of one end of the winding drum (32); the end of the winding drum (32) away from the first drive motor (31) is rotatably connected to the second bearing plate (2); The blowing device (4) comprises a second driving motor (41) arranged outside the second bearing plate (2), an air outlet outer cylinder (42) arranged between the first bearing plate (1) and the second bearing plate (2) and sleeved inside the winding cylinder (32), an air outlet inner net cylinder (43) fixed inside the air outlet outer cylinder (42), and a blowing assembly (44) fixed inside the air outlet inner net cylinder (43); the blowing assembly (44) comprises a motor (441) fixed on the inner side wall of the air outlet inner net cylinder (43) and a fan blade (442) arranged at the output end of the motor (441); A plurality of first air outlet mesh holes (321) are equidistantly provided on the outer peripheral wall of the winding drum (32), and a plurality of second air outlet mesh holes (421) are equidistantly provided on the outer peripheral wall of the air outlet outer drum (42), wherein the first air outlet mesh holes (321) and the second air outlet mesh holes (421) are arranged in an alternating manner.

2. The cable pipeline rapid reeling device according to claim 1, characterized in that: A load-bearing frame (5) is fixedly provided at the bottom of each of the first load-bearing plate (1) and the second load-bearing plate (2).

3. The cable pipeline rapid reeling device according to claim 1, characterized in that: The outer side of the second air outlet mesh hole (421) is also covered with a selective permeable membrane.

4. The cable pipeline rapid reeling device according to claim 1, characterized in that: The aperture of the second air outlet mesh hole (421) is much smaller than the aperture of the first air outlet mesh hole (321).