Layered partition device for optical cable

By designing a layered partition device and utilizing structures such as clamps, limiting pins, and guide rings, the difficulties in management and maintenance caused by the laying and fixing of optical cables were solved, achieving a neat and orderly layout and stable connection of optical cables, and improving the service life and laying efficiency of optical cables.

CN223471178UActive Publication Date: 2025-10-24HEBEI ZHONGLIAN OPTICAL COMM CABLE CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423094778.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-10-24
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

The existing methods of laying optical cables result in fixed distribution and layout, making it difficult to make flexible adjustments according to actual needs. This leads to difficulties in the management and maintenance of optical cable systems and reduces overall practicality.

Method used

Design a layered partition device, including partitions, separation components and adjustment components. Through structures such as clamping plates, limiting pins and guide rings, the optical cable can be flexibly adjusted and securely fixed. The bending curvature of the optical cable can be controlled by the through holes and guide rings to adapt to different diameters and layout requirements.

Benefits of technology

This results in a more orderly and organized optical cable layout, facilitating subsequent maintenance and management, extending the service life of optical cables, improving the flexibility and efficiency of laying, reducing the risk of optical cable loosening and displacement, and enhancing connection stability.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223471178U_ABST
    Figure CN223471178U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of optical cables, in particular to a layered partition device for optical cables, which comprises a partition plate, a partition assembly and an adjusting assembly. The outer ends of the partition plates are provided with partition devices used for assisting in partition layered optical cable laying, the two partition plates are arranged in parallel, an adjusting assembly used for adjusting the partition distance is arranged between the two partition plates, and each partition device comprises a base plate, a clamping plate, a limiting plug pin, a supporting plate, a guide ring, a sleeve rod, a positioning sleeve and a telescopic rod; penetrating holes are formed in the two partition plates, a plurality of clamping plates are arranged on the surfaces of the partition plates, clamping grooves are formed in the sides, away from the clamping plates, of the partition plates, and the two partition plates are clamped and fixed through the clamping plates. According to the utility model, the clamping plate is connected with the partition plate to assist in clamping and fixing optical cables with different diameters, so that the partition plate can be flexibly adjusted, and the optical cables are separated in a layered manner through a plurality of groups of penetrating holes in the partition plate, so that the optical cables are arranged more orderly, and subsequent maintenance and management are facilitated.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to the field of optical cable, especially a layered partition device for optical cable. BACKGROUND

[0002] The optical cable is a communication cable assembly, mainly composed of optical fiber, plastic protective sleeve and plastic outer skin, and does not contain metals such as gold, silver, copper and aluminum, which uses one or more optical fibers placed in the cladding sheath as transmission medium and can be used individually or in groups to realize optical signal transmission.

[0003] The existing optical cable is usually laid in a specified position during laying, and since the distribution and layout of part of the cable need to be adjusted according to actual conditions, the ordinary laying method may fix the distribution and layout of the optical cable, making it difficult to adjust flexibly according to actual needs, leading to difficulties in management and maintenance of the optical cable system and reducing overall practicability.

[0004] Therefore, in view of the above-mentioned existing optical cable, since the distribution and layout of part of the cable need to be adjusted according to actual conditions, the ordinary laying method may fix the distribution and layout of the optical cable, making it difficult to adjust flexibly according to actual needs, leading to difficulties in management and maintenance of the optical cable system and reducing overall practicability, a layered partition device for optical cable can be designed to make the optical cable layout more orderly and facilitate subsequent maintenance and management. SUMMARY

[0005] In order to overcome the problem that the existing optical cable, since the distribution and layout of part of the cable need to be adjusted according to actual conditions, the ordinary laying method may fix the distribution and layout of the optical cable, making it difficult to adjust flexibly according to actual needs, leading to difficulties in management and maintenance of the optical cable system and reducing overall practicability.

[0006] The technical scheme of the utility model is: a layered partition device for optical cable, comprising a partition plate, a partition assembly and an adjusting assembly; the outer end of the partition plate is provided with a partition device for assisting in partitioning and laying the layered optical cable, the partition plate is provided in two groups in parallel, the adjusting assembly for adjusting the partition distance is installed between the two groups of partition plates, the partition device comprises a pad, a clamping plate, a limiting pin, a supporting plate, a guide ring, a sleeve rod, a positioning sleeve and an extension rod, the partition plate is divided into two groups of partition plates, penetrating holes are formed in the interior of the two groups of partition plates, a plurality of clamping plates are arranged on the surface of the partition plate, a clamping groove is formed on the side of the partition plate away from the clamping plate, and the two groups of partition plates are fixed by clamping through the clamping plates.

[0007] Preferably, the clamping and fixing of the clamping plate connected to the partition plate can adapt to optical cables of different diameters, so that the partition plate can be flexibly adjusted to adapt to optical cables of different diameters, prevent the optical cables from loosening in the layered partition device, and effectively utilize the space by layering the optical cables through the plurality of penetrating holes in the partition plate, so that the layout of the optical cables is more orderly, which is convenient for subsequent maintenance and management. The mat is laid on the contact surface between the partition plate and the optical cable to support the optical cable, effectively buffers the pressure of the partition plate on the optical cable, avoids damage to the optical cable due to direct pressure, prolongs the service life of the optical cable, and provides a stable support surface, which helps to stably fix the optical cable on the partition plate, reduces the risk of loosening or displacement of the optical cable, and ensures the stability of the layered partition of the optical cable. In addition, the guide ring is used to guide the optical cable to layer according to the predetermined path, control the bending radius of the optical cable, avoid confusion and intersection of the optical cable during laying, and improve the laying flexibility and efficiency of the optical cable.

[0008] Preferably, the partition plate is internally provided with a mat, and an adhesive strip is arranged between the mat and the partition plate. The mat is fixed to the partition plate by the adhesive strip. The mat is laid on the contact surface between the partition plate and the optical cable to support the optical cable, effectively buffers the pressure of the partition plate on the optical cable, avoids damage to the optical cable due to direct pressure, prolongs the service life of the optical cable, and provides a stable support surface, which helps to stably fix the optical cable on the partition plate, reduces the risk of loosening or displacement of the optical cable, and ensures the stability of the layered partition of the optical cable.

[0009] Preferably, the outer wall of the partition plate is provided with a plurality of limiting pins, the limiting pins extend to the inside of the partition plate, and the inside of the partition plate away from the limiting pins is provided with a slot for accommodating the limiting pins. After two partition plates are attached to the optical cable, the plurality of limiting pins are inserted and positioned to enhance the connection strength between the partition plates and the optical cable, reduce the phenomenon of sliding of the optical cable after laying, flexibly adjust the distance between the partition plates to adapt to different types of optical cables, and improve the versatility and flexibility of the device.

[0010] Preferably, the rear end of the partition plate is provided with a guide ring, and the guide rings are oppositely arranged through the partition plate. The guide ring is used to guide the optical cable to layer according to the predetermined path, control the bending radius of the optical cable, avoid confusion and intersection of the optical cable during laying, and improve the laying flexibility and efficiency of the optical cable.

[0011] Preferably, the adjusting assembly includes a sleeve rod, a positioning sleeve, a telescopic rod, and an insertion rod. The outer end of the partition plate is provided with a sleeve rod, and the end of the partition plate away from the sleeve rod is provided with a telescopic rod movably arranged along the inside of the sleeve rod. The sleeve rod is used to connect the telescopic rod to adjust the distance between the two partition plates, flexibly adjust according to actual needs, adapt to different scenes and optical cable layout, enhance the adaptability of the device, and make it can cope with various complex optical cable laying environments.

[0012] As preferred, the inside of the sleeve rod is provided with a plug rod, and the inside of the telescopic rod is provided with a slot for accommodating the plug rod, so that the plug rod is used for plug-in fixing after the telescopic rod adjusts the partition distance, thereby preventing the optical cable from sliding out of the connecting device after shaking under stress, improving the stability of the optical cable connection, and ensuring the stability of communication.

[0013] As preferred, the outer end of the partition plate is provided with a positioning sleeve, and the telescopic rod and the sleeve rod are provided with the positioning sleeve between the partition plate, so that the positioning sleeve is used for reinforcing the connection between the telescopic rod and the sleeve rod, thereby avoiding the fracture of the two groups of connecting parts, and improving the overall structural strength.

[0014] The utility model discloses the beneficial effect that:

[0015] 1、Compared with the traditional partition device, the clamping and fixing of the clamping plate connected with the partition plate can adapt to different diameter optical cables, so that the partition plate can be flexibly adjusted to adapt to different diameter optical cables, prevent the optical cable from loosening in the layered partition device, and effectively utilize the space by the layered partition of the optical cable through the plurality of penetrating holes in the partition plate, so that the optical cable layout is more orderly, which is convenient for subsequent maintenance and management. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 The overall structure of the layered partition device is shown.

[0017] Figure 2 The overall structure of the layered partition device is shown.

[0018] Figure 3 The rear end structure of the layered partition device is shown.

[0019] Figure 4 The adjustment assembly structure of the utility model is shown.

[0020] Mark explanation: 1, partition plate;201, pad;202, clamping plate;203, limit bolt;204, support plate;205, guide ring;301, sleeve rod;302, positioning sleeve;303, telescopic rod;304, plug rod. DETAILED DESCRIPTION

[0021] The utility model is further explained in connection with the drawings and embodiments.

[0022] Please refer to Figures 1-4 The utility model provides a kind of embodiment: a layered partition device for optical cable, including baffle 1, partition subassembly and adjusting subassembly;Baffle 1 is equipped with the partition device for assisting partition layered optical cable laying of outer end, baffle 1 is two groups parallel arrangement, adjusting subassembly for adjusting partition spacing is installed between two groups of baffle 1, partition device includes backing plate 201, clamping plate 202, limiting bolt 203, support plate 204, guide ring 205, sleeve rod 301, positioning sleeve 302, telescopic rod 303, baffle 1 is divided into two groups of partition plate, and penetrating hole is set in the inside of two groups of partition plate, and multiple clamping plates 202 are equipped on the surface of partition plate, and clamping groove is set on the side of partition plate away from clamping plate 202, and two groups of partition plate are fixed by clamping plate 202.

[0023] Please refer to Figures 1-2 In the embodiment, the inside of partition plate is equipped with backing plate 201, and adhesive strip is between backing plate 201 and partition plate, and backing plate 201 is fixed by sticking with partition plate, and backing plate 201 is laid on the contact surface of partition plate and optical cable, effectively buffers the pressure of partition plate to optical cable, avoids optical cable from being damaged due to direct pressure, prolongs the service life of optical cable, and backing plate 201 provides stable support surface, helps the stable fixation of optical cable on partition plate, reduces the risk of optical cable loosening or displacement, guarantees the stability of layered partition of optical cable, and the outer wall of partition plate is equipped with multiple limiting bolts 203, and limiting bolt 203 extends to the inside through partition plate, and the inside of partition plate away from limiting bolt 203 is equipped with the insertion slot of containing limiting bolt 203, after two groups of partition plate are pasted to optical cable, multiple limiting bolts 203 are inserted and positioned, the connection strength between partition plate and optical cable is enhanced, the phenomenon that optical cable is slipped after laying is reduced, the spacing between partition plate is flexibly adjusted to adapt to different models of optical cable, the versatility and flexibility of device are improved.

[0024] Please refer to Figures 1-3In the embodiment, the rear end of the partition plate is provided with a guide ring 205, and the guide ring 205 is arranged opposite to the partition plate. The guide ring 205 guides the optical cable to layer according to a predetermined path, controls the bending curvature of the optical cable, avoids the disorder and intersection of the optical cable in the laying process, improves the laying flexibility and efficiency of the optical cable, and adjusts the assembly including a sleeve rod 301, a positioning sleeve 302, an extension rod 303 and a plug rod 304. The outer end of the partition plate is provided with the sleeve rod 301, and the end of the partition plate away from the sleeve rod 301 is provided with the extension rod 303. The extension rod 303 is movably arranged along the inside of the sleeve rod 301. The sleeve rod 301 is used to connect the extension rod 303 to adjust the distance between the two groups of partition plates. The distance can be flexibly adjusted according to actual needs, adapt to different scenes and optical cable layout, and enhance the adaptability of the device so that it can cope with various complex optical cable laying environments.

[0025] Please refer to Figures 2-4 In the embodiment, the inside of the sleeve rod 301 is provided with the plug rod 304, and the inside of the extension rod 303 is provided with a slot for accommodating the plug rod 304. After the extension rod 303 adjusts the partition distance, the plug rod 304 is used for plug-in fixing to prevent the optical cable from sliding out of the connecting device after being shaken by force, improve the stability of the optical cable connection, and protect the communication stability. The outer end of the partition plate is provided with the positioning sleeve 302, and the positioning sleeve 302 is arranged between the extension rod 303, the sleeve rod 301 and the partition plate. The positioning sleeve 302 is used to reinforce the connection between the extension rod 303 and the sleeve rod 301 to avoid the fracture of the two groups of connecting parts and improve the overall structural strength.

[0026] When working, first, the guide ring 205 is used to guide the optical cable to insert into the outer end of the penetrating hole, layer according to a predetermined path, control the bending curvature of the optical cable, avoid the disorder and intersection of the optical cable in the laying process, make the optical cable layout more orderly, and facilitate subsequent maintenance and management. When the optical cable passes through the penetrating hole, the clamping plate 202 is used to connect the partition plate to assist in clamping and fixing of different diameter optical cables, so that the partition plate can be flexibly adjusted to adapt to optical cables of different diameters, prevent the optical cable from loosening in the layered partition device, and support the mat 201 on the contact surface between the partition plate and the optical cable. The mat 201 effectively buffers the pressure of the partition plate on the optical cable, avoids damage to the optical cable due to direct pressure, prolongs the service life of the optical cable, and provides a stable support surface for the mat 201, which helps to firmly fix the optical cable on the partition plate, reduces the risk of loosening or displacement of the optical cable. When the two groups of partition plates are attached to the optical cable, a plurality of limit pins 203 are used for plug-in positioning to enhance the connection strength between the partition plate and the optical cable, reduce the sliding phenomenon of the optical cable after laying, flexibly adjust the distance between the partition plates to adapt to different types of optical cables, and ensure the stable layered partition of the optical cable.

[0027] When the optical cable is clamped and positioned by the partition plate, the sleeve rod 301 is used to connect the telescopic rod 303 to adjust the distance between the two groups of partition plates, and flexible adjustment is carried out according to actual needs, different scenes and optical cable layout are adapted to, various complex optical cable laying environments can be coped with, after the partition distance is adjusted by the telescopic rod 303, the plug rod 304 is used for plug-in fixing to prevent the optical cable from sliding out of the connecting device after being shaken under stress, and the positioning sleeve 302 is used to reinforce the connection between the telescopic rod 303 and the sleeve rod 301, so as to avoid the fracture of the two groups of connecting parts and ensure the stable transmission of optical cable information.

[0028] Through the above steps, the clamping and fixing of the optical cable of different diameters are assisted by the clamping plate 202 connected to the partition plate, so that the partition plate can be flexibly adjusted to adapt to optical cables of different diameters, prevent the optical cable from loosening in the layered partition device, and the optical cable is layered and partitioned by the multiple penetrating holes in the partition plate, so that the optical cable layout is more orderly, which is convenient for subsequent maintenance and management. The mat 201 is laid on the contact surface between the partition plate and the optical cable to support and effectively buffer the pressure of the partition plate on the optical cable, so as to avoid damage to the optical cable due to direct pressure and prolong the service life of the optical cable. At the same time, the mat 201 provides a stable support surface, which helps to firmly fix the optical cable on the partition plate, reduces the risk of loosening or displacement of the optical cable, and ensures the stability of the layered partition of the optical cable. Secondly, the guide ring 205 is used to guide the optical cable to layer according to the predetermined path, control the bending radius of the optical cable, avoid the confusion and intersection of the optical cable in the laying process, and improve the laying flexibility and efficiency of the optical cable.

Claims

1. A layered partitioning device for optical cables comprising a partition (1); characterized in that: Also include the partition assembly and adjusting assembly; the outer end of the partition (1) is provided with a partition device for assisting the partition layered cable laying, the partition (1) is provided with two groups of parallel, the adjusting assembly is installed between the two groups of partition (1) for adjusting the partition interval, the partition device includes a backing plate (201), a clamping plate (202), a limiting bolt (203), a support plate (204), a guide ring (205), a sleeve rod (301), a positioning sleeve (302), a telescopic rod (303), the partition (1) is divided into two groups of partition plates, the inside of the two groups of partition plates is provided with a through hole, the surface of the partition plate is provided with a plurality of clamping plates (202), the side of the partition plate away from the clamping plate (202) is provided with a clamping groove, and the two groups of partition plates are clamped and fixed through the clamping plate (202).

2. A layered separator device for optical cables according to claim 1, characterized in that: The inside of the partition plate is provided with a backing plate (201), and the backing plate (201) is adhered to the partition plate.

3. A layered separator device for an optical cable according to claim 2, wherein: The outer wall of the partition plate is provided with a plurality of limiting bolts (203), the limiting bolt (203) extends to the inside through the partition plate, and the inside of the partition plate away from the limiting bolt (203) is provided with a limiting bolt (203).

4. A layered separator device for optical cables according to claim 1, characterized in that: The rear end of the partition plate is provided with a symmetric guide ring (205), and the guide ring (205) is oppositely arranged through the partition plate.

5. A layered separator device for optical cables according to claim 1, characterized in that: The adjusting assembly includes a sleeve rod (301), a positioning sleeve (302), a telescopic rod (303) and a plug rod (304), the outer end of the partition plate is provided with a sleeve rod (301), the end of the partition plate away from the sleeve rod (301) is provided with a telescopic rod (303), and the telescopic rod (303) is movably arranged along the inside of the sleeve rod (301).

6. A layered separator device for an optical cable according to claim 5, wherein: The inside of the sleeve rod (301) is provided with a plug rod (304), and the inside of the telescopic rod (303) is provided with a plug slot for accommodating the plug rod (304).

7. A layered separator device for an optical cable according to claim 5, wherein: The outer end of the partition plate is provided with a positioning sleeve (302), and the telescopic rod (303) and the sleeve rod (301) are provided with the positioning sleeve (302) between the partition plate.