A communication insulator barrel

By introducing left and right protective shells, top and bottom protective shells, and inclined protective rings into the communication insulation cylinder, combined with spring and linkage groove rod structure, the problem of insufficient protection in the existing technology is solved, and multi-directional protection and effective buffering of impact force are achieved for communication cables.

CN224582787UActive Publication Date: 2026-07-31TIANJIN YUNXINTONG TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TIANJIN YUNXINTONG TECH CO LTD
Filing Date
2025-08-20
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Existing communication insulating cylinders have insufficient overall protection, especially in terms of protection against the sides and top and bottom of the cylinder.

Method used

The design incorporates left and right protective shells, top and bottom protective shells, and an inclined protective ring. These are connected by springs to achieve multi-directional protection, and the impact force is distributed synchronously through linkage grooves and linkage rods, enhancing the protective effect.

Benefits of technology

It achieves comprehensive protection for communication cables in multiple directions, enhances the buffering capacity of the protective shell when subjected to impact, and improves the comprehensiveness and synchronicity of protection.

✦ Generated by Eureka AI based on patent content.

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Abstract

A communication insulating cylinder includes a communication cable, an inclined protective ring, top and bottom protective shells, left and right protective shells, and an inner protective cylinder. The bottom of the inner protective cylinder has a mounting base, and the inside of the inner protective cylinder has a cable mounting groove adapted to the communication cable. The cable mounting groove is connected to the communication cable, and the communication cable is inserted into the cable mounting groove. Both ends of the inner protective cylinder have protective shell mounting plates, which together with the inner protective cylinder form a protective shell connecting groove. The protective shell connecting groove has a protective shell mounting sleeve inside. Left and right protective shells are provided on the left and right sides of the inner protective cylinder. The side of the left and right protective shells facing the inner protective cylinder has a protective shell mounting post, which is adapted to the protective shell mounting sleeve and connected to the protective shell mounting sleeve. The protective shell mounting post slides inside the protective shell mounting sleeve.
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Description

Technical Field

[0001] This utility model relates to the field of communication insulating cylinders, and more particularly to a communication insulating cylinder. Background Technology

[0002] An existing patent (publication number: CN220190367U) proposes a communication insulating cylinder, including an insulating cylinder body and insulating reinforcing plates integrally formed on the outer walls of the left and right ends of the insulating cylinder body. Insulating cable outlet cylinder A and insulating cable outlet cylinder B are respectively fixed on the insulating reinforcing plate on the right end of the insulating cylinder body. However, this device has a "thickened protective plate set on the outer side of the front outer wall of the insulating cylinder body, and the thickened protective plate is parallel to the front outer wall of the insulating cylinder body". The thickened protective plate can protect the side of the insulating cylinder body, but the protection effect on the top and bottom sides of the insulating cylinder body is limited, which affects the overall protection of this device. Summary of the Invention

[0003] This utility model addresses the aforementioned shortcomings of existing technologies by providing a communication insulation cylinder that, during protective operations, provides left and right protective shells, top and bottom protective shells, and inclined protective rings to protect communication cables from multiple directions. Simultaneously, the positioning grooves of the protective rings are connected to the mounting plates of the protective shells via springs, and the interiors of the mounting columns and the mounting sleeves of the protective shells are connected via springs. This allows the inclined protective rings, top and bottom protective shells, and left and right protective shells to receive partial cushioning when impacted, resulting in a more effective and comprehensive communication insulation cylinder.

[0004] The objective of this utility model is achieved through the following technical solution:

[0005] A communication insulating cylinder includes a communication cable, an inclined protective ring, top and bottom protective shells, left and right protective shells, and an inner protective cylinder. The bottom of the inner protective cylinder has a mounting base, and the inside of the inner protective cylinder has a cable mounting groove adapted to the communication cable. The cable mounting groove is connected to the communication cable, and the communication cable is inserted into the cable mounting groove. Both ends of the inner protective cylinder have protective shell mounting plates, which together with the inner protective cylinder form a protective shell connecting groove. The protective shell connecting groove has a protective shell mounting sleeve inside. Left and right protective shells are provided on the left and right sides of the inner protective cylinder. The side of the left and right protective shells facing the inner protective cylinder has a protective shell mounting post, which is adapted to the protective shell mounting sleeve. The protective shell mounting post is connected to the protective shell mounting sleeve and slides inside the protective shell mounting sleeve. The inside of the protective shell mounting post and the inside of the protective shell mounting sleeve are connected by a spring. Top and bottom protective shells are provided on the top and bottom sides of the left and right protective shells.

[0006] The top and bottom protective shells have protective shell docking grooves inside, which are adapted to the left and right protective shells. The protective shell docking grooves connect the left and right protective shells, and the left and right protective shells slide inside the protective shell docking grooves. The top and bottom protective shells are adapted to the protective shell connecting grooves, and the top and bottom protective shells are connected to the protective shell connecting grooves. The top and bottom protective shells slide inside the protective shell connecting grooves. There are protective shell linkage rods on both sides of the protective shell docking grooves, and there are protective shell linkage grooves on both sides of the top and bottom of the left and right protective shells. The protective shell linkage rods are adapted to the protective shell linkage grooves.

[0007] The protective shell linkage rod is connected to the protective shell linkage groove, and the protective shell linkage rod slides inside the protective shell linkage groove. Both ends of the inner protective cylinder have side protective ring mounting grooves. The protective shell mounting plate is provided with protective ring positioning posts on the side. Multiple sets of protective ring positioning posts are evenly arranged around the central axis of the inner protective cylinder. The protective shell mounting plate is provided with inclined protective rings on the side. The inclined protective rings have protective ring mounting sleeves in the middle. The protective ring mounting sleeves are compatible with the communication cable.

[0008] Beneficial effects: 1. When this device is used for the protection of communication insulating cylinders, the left and right protective shells, top and bottom protective shells, and inclined protective rings protect the communication cables from multiple directions. At the same time, the positioning groove of the protective ring is connected to the mounting plate of the protective shell by springs, and the inside of the mounting column of the protective shell is connected to the inside of the mounting sleeve of the protective shell by springs. When the inclined protective ring, top and bottom protective shells, and left and right protective shells are impacted, the springs will provide partial buffering, resulting in good protection and more comprehensive protection.

[0009] 2. The top and bottom protective shells of this utility model are connected to the left and right protective shells through protective shell linkage grooves and protective shell linkage rods, so that when one of the top and bottom protective shells or the left and right protective shells is impacted, all the top and bottom protective shells or the left and right protective shells will move synchronously to share the impact, thereby further increasing the protective effect of this device.

[0010] 3. The inclined protective ring of this utility model adopts an inclined surface design, which enables the inclined protective ring to effectively protect against impacts from both the side and the front, further increasing the comprehensive protection of this device. Attached Figure Description

[0011] Figure 1 This is a schematic diagram of a communication insulating cylinder structure according to the present invention.

[0012] Figure 2 This is a structural diagram of the internal structure of a communication insulating cylinder according to the present invention.

[0013] Figure 3 This is a top view of the communication insulating cylinder described in this utility model.

[0014] Figure 4 The present utility model Figure 3 Enlarged view of a specific area.

[0015] Figure 5 This is a front cross-sectional view of a communication insulating cylinder according to the present invention.

[0016] Figure 6 This is a schematic diagram of the inner protective cylinder structure described in this utility model.

[0017] Figure 7 This is a schematic diagram of the left and right protective shell structure described in this utility model.

[0018] Figure 8 This is a schematic diagram of the top and bottom protective shell structure of this utility model. Detailed Implementation

[0019] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments:

[0020] Example 1:

[0021] A communication insulating cylinder includes a communication cable 1, an inclined protective ring 2, a top and bottom protective shell 3, left and right protective shells 4, and an inner protective cylinder 5. The inner protective cylinder 5 has a mounting base 8 at its bottom and a cable mounting groove 21 inside. The cable mounting groove 21 is adapted to the communication cable 1 and connects to it. The communication cable 1 is inserted into the cable mounting groove 21. Protective shell mounting plates 12 are located at both ends of the inner protective cylinder 5. The protective shell mounting plates 12 and the inner protective cylinder 5 together form a protective shell connecting groove 13. A protective shell mounting sleeve 6 is located inside the protective shell connecting groove 13. Left and right protective shells 4 are provided on the left and right sides of the inner protective cylinder 5. A protective shell mounting post 7 is located on the side of the left and right protective shells facing the inner protective cylinder 5. The protective shell mounting post 7 is connected to the protective shell mounting sleeve. The sleeve 6 is adapted to the protective shell mounting post 7, which is connected to the protective shell mounting sleeve 6. The protective shell mounting post 7 slides inside the protective shell mounting sleeve 6. The inside of the protective shell mounting post 7 is connected to the inside of the protective shell mounting sleeve 6 by a spring. Top and bottom protective shells 3 are provided on the top and bottom sides of the left and right protective shells 4. When this device is used for the protection of the communication insulation cylinder, the left and right protective shells 4, the top and bottom protective shells 3, and the inclined protective ring 2 protect the communication cable 1 in multiple directions. At the same time, the protective ring positioning groove 15 is connected to the protective shell mounting plate 12 by a spring. The inside of the protective shell mounting post 7 is connected to the inside of the protective shell mounting sleeve 6 by a spring. When the inclined protective ring 2, the top and bottom protective shells 3, and the left and right protective shells 4 are impacted, the springs will provide partial buffering, resulting in good protection and more comprehensive protection.

[0022] Example 2:

[0023] The top and bottom protective shells 3 of this utility model have protective shell docking grooves 16 inside, which are adapted to the left and right protective shells 4. The protective shell docking grooves 16 connect the left and right protective shells 4, and the left and right protective shells 4 slide inside the protective shell docking grooves 16. The top and bottom protective shells 3 are adapted to the protective shell connecting grooves 13, and the top and bottom protective shells 3 are connected to the protective shell connecting grooves 13. The top and bottom protective shells 3 and the left and right protective shells 4 are connected through protective shell linkage grooves 17 and protective shell linkage rods 18, so that when one of the top and bottom protective shells 3 and the left and right protective shells 4 is impacted, all the top and bottom protective shells 3 and the left and right protective shells 4 will move synchronously to share the impact, thereby further increasing the protective effect of this device. The protective shell docking grooves 16 have protective shell linkage rods 18 on both sides, and the top and bottom sides of the left and right protective shells 4 have protective shell linkage grooves 17, and the protective shell linkage rods 18 are adapted to the protective shell linkage grooves 17.

[0024] Example 3:

[0025] The protective shell linkage rod 18 of this utility model is connected to the protective shell linkage groove 17. The protective shell linkage rod 18 slides inside the protective shell linkage groove 17. Both ends of the inner protective cylinder 5 have side protective ring mounting grooves 9. The protective shell mounting plate 12 is provided with protective ring positioning posts 14 on its side. Multiple sets of protective ring positioning posts 14 are evenly arranged around the central axis of the inner protective cylinder 5. The protective shell mounting plate 12 is provided with inclined protective rings 2 on its side. The inclined protective rings 2 adopt an inclined surface design, so that the inclined protective rings 2 can effectively protect against impacts from the side and the front, further increasing the protective comprehensiveness of this device. The inclined protective rings 2 have protective ring mounting sleeves 10 in the middle, and the protective ring mounting sleeves 10 are adapted to the communication cable 1.

[0026] Example 4:

[0027] The protective ring mounting sleeve 10 of this utility model is connected to the communication cable 1. The protective ring mounting sleeve 10 slides on the outside of the communication cable 1. The inner side of the inclined protective ring 2 has a protective ring positioning groove 15. The protective ring positioning groove 15 is adapted to the protective ring positioning post 14. The protective ring positioning groove 15 is connected to the protective ring positioning post 14. The protective ring positioning groove 15 slides on the outside of the protective ring positioning post 14. The protective ring positioning groove 15 is connected to the protective shell mounting plate 12 by a spring.

[0028] Example 5:

[0029] The protective ring mounting sleeve 10 of this utility model has a side protective ring mounting slide rod 11 on the side facing the inner protective cylinder 5. The side protective ring mounting slide rod 11 is adapted to the side protective ring mounting groove 9. The side protective ring mounting slide rod 11 is connected to the side protective ring mounting groove 9 and slides inside the side protective ring mounting groove 9.

[0030] Example 6:

[0031] The installation steps of this utility model are as follows: Insert the communication cable 1 into the cable mounting groove 21 of the inner protective cylinder 5; insert the protective shell mounting posts 7 of the left and right protective shells 4 into the protective shell mounting sleeves 6 of the inner protective cylinder 5; connect the protective shell mounting sleeves 6 of the inner protective cylinder 5 and the protective shell mounting posts 7 of the left and right protective shells 4 through a spring; fit the protective shell mating grooves 16 of the top and bottom protective shells 3 onto the outside of the left and right protective shells 4, so that the top and bottom protective shells 3 are inserted into the protective shell connecting grooves 13 of the inner protective cylinder 5, thus securing the top and bottom protective shells. The protective shell linkage rod 18 of the protective shell 3 is inserted into the protective shell linkage groove 17 of the left and right protective shells 4. The protective ring mounting sleeve 10 of the inclined protective ring 2 is placed on the outside of the communication cable 1. The side protective ring mounting slide rod 11 of the inclined protective ring 2 is inserted into the side protective ring mounting groove 9 of the inner protective cylinder 5. The protective ring positioning groove 15 of the inclined protective ring 2 is placed on the outside of the protective ring positioning post 14 of the inner protective cylinder 5. The protective ring positioning post 14 is connected to the protective shell mounting plate 12 of the inner protective cylinder 5 by a spring.

[0032] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A communication insulator barrel, characterized by The device includes a communication cable (1), an inclined protective ring (2), a top and bottom protective shell (3), left and right protective shells (4), and an inner protective cylinder (5). The bottom of the inner protective cylinder (5) has a mounting base (8), and the inside of the inner protective cylinder (5) has a cable mounting groove (21). The cable mounting groove (21) is adapted to the communication cable (1), and the cable mounting groove (21) is connected to the communication cable (1). The communication cable (1) is inserted into the inside of the cable mounting groove (21). The two ends of the inner protective cylinder (5) have protective shell mounting plates (12), and the protective shell mounting plates (12) and the inner protective cylinder (5) together form a protective shell connecting groove (13). The protective shell connecting groove (13) has a protective shell mounting sleeve (6) inside. The left and right protective shells (4) are provided on the left and right sides of the inner protective cylinder (5). The left and right protective shells (4) have a protective shell mounting post (7) on the side facing the inner protective cylinder (5). The protective shell mounting post (7) is adapted to the protective shell mounting sleeve (6). The protective shell mounting post (7) is connected to the protective shell mounting sleeve (6). The protective shell mounting post (7) slides inside the protective shell mounting sleeve (6). The inside of the protective shell mounting post (7) is connected to the inside of the protective shell mounting sleeve (6) by a spring. The top and bottom protective shells (3) are provided on the top and bottom sides of the left and right protective shells (4).

2. A communication insulating cylinder according to claim 1, characterized in that: The top and bottom protective shells (3) have protective shell docking grooves (16) inside. The protective shell docking grooves (16) are adapted to the left and right protective shells (4). The protective shell docking grooves (16) are connected to the left and right protective shells (4). The left and right protective shells (4) slide inside the protective shell docking grooves (16). The top and bottom protective shells (3) are adapted to the protective shell connecting grooves (13). The top and bottom protective shells (3) are connected to the protective shell connecting grooves (13). The top and bottom protective shells (3) slide inside the protective shell connecting grooves (13). There are protective shell linkage rods (18) on both sides of the protective shell docking grooves (16). There are protective shell linkage grooves (17) on both sides of the top and bottom of the left and right protective shells (4). The protective shell linkage rods (18) are adapted to the protective shell linkage grooves (17).

3. A communications insulator according to claim 2, wherein The protective shell linkage rod (18) is connected to the protective shell linkage groove (17). The protective shell linkage rod (18) slides inside the protective shell linkage groove (17). Both sides of the inner protective cylinder (5) have side protective ring mounting grooves (9). The protective shell mounting plate (12) has protective ring positioning posts (14) on its side. Multiple sets of protective ring positioning posts (14) are evenly arranged around the central axis of the inner protective cylinder (5). The protective shell mounting plate (12) has an inclined protective ring (2) on its side. The inclined protective ring (2) has a protective ring mounting sleeve (10) in the middle. The protective ring mounting sleeve (10) is compatible with the communication cable (1).

4. A communications insulator according to claim 3, wherein The protective ring mounting sleeve (10) is connected to the communication cable (1). The protective ring mounting sleeve (10) slides on the outside of the communication cable (1). The inner side of the inclined protective ring (2) has a protective ring positioning groove (15). The protective ring positioning groove (15) is adapted to the protective ring positioning post (14). The protective ring positioning groove (15) is connected to the protective ring positioning post (14). The protective ring positioning groove (15) slides on the outside of the protective ring positioning post (14). The protective ring positioning groove (15) is connected to the protective shell mounting plate (12) by a spring.

5. A communications insulator according to claim 3, wherein The protective ring mounting sleeve (10) has a side protective ring mounting slide (11) on the side facing the inner protective cylinder (5). The side protective ring mounting slide (11) is adapted to the side protective ring mounting groove (9). The side protective ring mounting slide (11) is connected to the side protective ring mounting groove (9). The side protective ring mounting slide (11) slides inside the side protective ring mounting groove (9).