Tail pushing sleeve mounting tool

Through the design of the push-tail sleeve installation tool, the sliding adapter and slide rail combination are used to achieve stable sliding and precise limits of the fiber tail sleeve, solving the problem of low fiber insertion efficiency and accuracy in the existing technology, and improving installation efficiency and accuracy.

CN223172876UActive Publication Date: 2025-08-01HONGYA CHUANGJIE COMM
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Patent Information

Application Number
CN202422479866.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-14
Publication Date
2025-08-01
Estimated Expiration
2034-10-14

AI Technical Summary

Technical Problem

During the operation of the existing fiber optic tail sleeve installation tool, the sliding direction and force of the two fingers control the sliding direction and force are not easy to meet the standards, which affects the insertion efficiency and accuracy.

Method used

The push-tail sleeve is used to install tooling, including the base plate, optical cable fixing block, tail sleeve positioning block and pushing assembly. Through the cooperation of the sliding adapter and the slide rail, the stable sliding of the pushing assembly is achieved, and the tail sleeve and optical cable are accurately limited and stable support.

Benefits of technology

It improves the plug-in efficiency and accuracy of the tail cover and optical fiber, reduces operational labor, and enhances the stability and accuracy of the installation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of optical fibers, and particularly discloses a tail sleeve pushing installation tool, which comprises a bottom plate, an optical cable fixing block, a tail sleeve positioning block, a pushing assembly for limiting a tail sleeve, and a sliding adapter for driving the tail sleeve to slide towards the optical cable fixing block by the pushing assembly, the sliding rail is horizontally and fixedly installed on the bottom plate, and the sliding adapter is installed on the sliding rail in a sliding mode; the pushing assembly and the sliding rail are located between the optical cable fixing block and the tail sleeve positioning block. According to the scheme, the sliding adapter can be matched with the sliding rail, so that the horizontal movement of the pushing assembly is more labor-saving and accurate, and the stability and accuracy of the tail sleeve and the optical fiber during insertion are improved; meanwhile, the optical cable fixing block can limit the optical cable, and shaking of the optical fiber in the installation process can be reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of optical fibers, in particular to an installation tool for a push tail sleeve. Background Art

[0002] The installation of an optical fiber push tail sleeve is a delicate process involving multiple steps and technical details. In the step of assembling the tail sleeve, the processed optical fiber is carefully inserted into the small hole of the connector body to ensure that the end face of the optical fiber does not touch the inner hole side or other parts. Generally, a special tool is used to push the connector body pin in the arrow direction to ensure that the optical fiber is correctly and firmly fixed in place.

[0003] Therefore, an installation tool for an optical fiber push tail sleeve is generally used for the insertion of the optical fiber. When the common installation tool for an optical fiber push tail sleeve is in use, a clamp is fixed on the tail sleeve positioning block, and then the tail sleeve is pushed by double fingers. During this process, the operator needs to control the sliding direction and force with double fingers for insertion, and the insertion efficiency is low. At the same time, the pushing distance of the double fingers holding the tail sleeve is not easy to reach the required standard. The pushing of the tail sleeve is relatively laborious, which will further affect the insertion efficiency and accuracy. Summary of the Utility Model

[0004] Aiming at the deficiencies in the prior art, the utility model provides an installation tool for a push tail sleeve to solve the problem that the operator controls the sliding direction and force with double fingers for insertion, which affects the insertion efficiency and accuracy.

[0005] To achieve the above object, the basic scheme of the utility model is as follows: The installation tool for a push tail sleeve includes a bottom plate, an optical cable fixing block, a tail sleeve positioning block, and a pushing component for limiting the tail sleeve, and further includes:

[0006] A sliding adapter for driving the tail sleeve to slide towards the optical cable fixing block by the pushing component;

[0007] A slide rail, which is horizontally and fixedly installed on the bottom plate, and the sliding adapter is slidably installed on the slide rail;

[0008] The pushing component and the slide rail are located between the optical cable fixing block and the tail sleeve positioning block.

[0009] The technical principle of the utility model is as follows: When connecting the optical fiber and the tail sleeve, first install the optical cable on the optical cable fixing block, pre-install the tail sleeve on the tail sleeve positioning block, then control the pushing component to approach the tail sleeve positioning block. The sliding adapter can support the pushing component to slide along the slide rail, so that the pushing component can be docked with the tail sleeve on the tail sleeve positioning block. Then the pushing component moves towards the optical cable fixing block again under the support of the sliding adapter, and the pushing component can drive the tail sleeve to approach the optical fiber synchronously and perform insertion synchronously.

[0010] In the above process, the sliding adapter and the slide rail can cooperate to make the horizontal movement of the pushing component more labor-saving and accurate, and facilitate improving the stability and accuracy of the tail sleeve and the optical fiber during insertion; at the same time, the optical cable fixing block can limit the optical cable, and can reduce the shaking of the optical fiber during the installation process.

[0011] Furthermore, the sliding adapter includes:

[0012] A guide rail slider, which is horizontally slidably installed on the slide rail;

[0013] An adapter block, which is fixedly installed on the guide rail slider, and the pushing component is detachably connected to the adapter block.

[0014] Through the above settings, the guide rail slider can provide stable sliding for the pushing component, and the guide rail slider and the adapter block can cooperate to provide stable support for the pushing component while providing sliding for the pushing component.

[0015] Furthermore, the pushing component includes:

[0016] A first push block;

[0017] A second push block, both the first push block and the second push block are detachably installed on the adapter block, and a first limiting gap for clamping and limiting the tail sleeve is provided between the first push block and the second push block.

[0018] Through the above settings, the first limiting gap between the first push block and the second push block can provide stable limitation for the tail sleeve, so that the tail sleeve can move in coordination with the first push block and the second push block, and then be accurately inserted with the optical fiber.

[0019] Furthermore, the horizontal width of the first limiting gap gradually decreases in the direction close to the optical cable fixing block.

[0020] Through the above settings, it is convenient to adapt to the structural shape of the tail sleeve and accurately clamp and limit the tail sleeve.

[0021] Furthermore, two limiting bosses are provided on the tail sleeve positioning block, and a first limiting groove for limiting the tail sleeve is formed between the two limiting bosses.

[0022] Through the above settings, the first limiting groove between the two limiting bosses can provide a limiting space for the pre-installation of the tail sleeve, and facilitate quickly transferring the tail sleeve to the first limiting gap.

[0023] Furthermore, a stop block is fixedly provided on the side of the limiting boss close to the pushing component, and a second limiting gap for limiting the clamp on the end of the tail sleeve is provided between the stop block and the limiting boss.

[0024] With the above settings, when the clamp on the tail sleeve can slightly lean against the second limiting gap, it indicates that the tail sleeve is properly installed between the first push block and the second push block, facilitating the accurate installation of the tail sleeve between the first push block and the second push block.

[0025] Furthermore, the optical cable limiting groove on the optical cable fixing block opposite to the first limiting groove has a length greater than that of the first limiting groove.

[0026] With the above settings, the optical cable fixing block can fully and stably limit the optical cable, minimizing the sway of the optical fiber during the installation process. Brief Description of the Drawings

[0027] Figure 1 It is a schematic structural diagram in the axonometric direction of the push tail sleeve installation tooling in the embodiment of the present utility model.

[0028] In the above drawings: bottom plate 10, optical cable fixing block 20, optical cable limiting groove 201, first push block 301, second push block 302, first limiting gap 303, tail sleeve positioning block 40, limiting boss 401, first limiting groove 402, stop block 403, second limiting gap 404, slide rail 50, guide rail slider 501, tail sleeve 60. Detailed Embodiment

[0029] The technical solutions in the present utility model will be further described below in conjunction with the drawings and embodiments.

[0030] This embodiment is basically as Figure 1 shown. The embodiment of the present utility model provides a push tail sleeve installation tooling, which includes a bottom plate 10, an optical cable fixing block 20, a tail sleeve positioning block 40, a pushing assembly for limiting the tail sleeve 60, a slide rail 50, and a sliding adapter for driving the tail sleeve 60 to slide towards the optical cable fixing block 20 by the pushing assembly. The pushing assembly and the slide rail 50 are located between the optical cable fixing block 20 and the tail sleeve positioning block 40.

[0031] As Figure 1 shown, the slide rail 50 is horizontally and fixedly installed on the bottom plate 10 by bolts. At the same time, the sliding adapter includes a guide rail slider 501 and an adapter block. The guide rail slider 501 is horizontally slidably installed on the slide rail 50; the adapter block is welded and installed on the guide rail slider 501.

[0032] As Figure 1As shown in the figure, the pushing component includes a first pushing block 301 and a second pushing block 302. The first pushing block 301 and the second pushing block 302 are symmetrically arranged along the central plane of the slide rail 50. Both the first pushing block 301 and the second pushing block 302 are detachably installed on the adapter block through bolts. A first limiting gap 303 for clamping and limiting the tail sleeve 60 is provided between the first pushing block 301 and the second pushing block 302. At the same time, the horizontal width of the first limiting gap 303 gradually decreases in the direction close to the optical cable fixing block 20, which is convenient for adapting to the structural shape of the tail sleeve 60 and accurately clamping and limiting the tail sleeve 60.

[0033] As Figure 1 shown in the figure, two limiting bosses 401 are provided on the tail sleeve positioning block 40, and a first limiting groove 402 for limiting the tail sleeve 60 is formed between the two limiting bosses 401; at the same time, a stop block 403 is fixedly arranged on the side of the limiting boss 401 close to the pushing component, and a second limiting gap 404 for limiting the clamp on the end of the tail sleeve 60 is provided between the stop block 403 and the limiting boss 401.

[0034] As Figure 1 shown in the figure, an optical cable limiting groove 201 opposite to the first limiting groove 402 is provided on the optical cable fixing block 20. The length of the optical cable limiting groove 201 is greater than the length of the first limiting groove 402. The optical cable fixing block 20 can fully and stably limit the optical cable, minimizing the shaking of the optical fiber during the installation process.

[0035] When the pushing and tail sleeve installation tooling in this embodiment is used, first, the end of the optical cable is limited and installed at the optical cable limiting groove 201 of the optical cable fixing block 20. At the same time, the tail sleeve 60 is installed in the first limiting groove 402 between the two limiting bosses 401 of the tail sleeve positioning block 40 to realize the preliminary limiting of the tail sleeve 60.

[0036] Then, push the first pushing block 301 or the second pushing block 302 to move along the slide rail 50. Under the action of the thrust, the guide rail slider 501 moves along the slide rail 50, so that the first pushing block 301 and the second pushing block 302 approach the limiting boss 401. The first limiting gap 303 between the first pushing block 301 and the second pushing block 302 is docked with the first limiting groove 402 between the two limiting bosses 401. At this time, slide the tail sleeve 60 horizontally into the first limiting gap 303. When the clamp on the tail sleeve 60 can slightly lean against the second limiting gap 404, it means that the tail sleeve 60 is installed in place between the first pushing block 301 and the second pushing block 302.

[0037] Then, push the first pushing block 301 or the second pushing block 302 to move along the slide rail 50 in the direction close to the optical cable fixing block 20 under the support of the guide rail slider 501 and the adapter block, and the optical fiber can be stably inserted into the tail sleeve 60.

[0038] During this process, it is possible to quickly and stably control the horizontal movement of the first pushing block 301, the second pushing block 302 and the tail sleeve 60 along the slide rail 50, realizing the pushing and loading between the tail sleeve 60 and the optical fiber, and improving the fitting accuracy between the tail sleeve 60 and the optical fiber during installation. At the same time, with the cooperation of the guide rail slider 501, the adapter block and the slide rail 50, the horizontal movement of the first pushing block 301, the second pushing block 302 and the tail sleeve 60 is more labor-saving and accurate, and it is also convenient to control the force during pushing and loading, improving the efficiency and accuracy of pushing and loading.

[0039] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and not to limit them. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the purpose and scope of the technical solutions of the present invention, and they should all be covered by the scope of the claims of the present invention.

Claims

1. Tail sleeve installation tooling, including a bottom plate, an optical cable fixing block, a tail sleeve positioning block, and a pushing component for limiting the tail sleeve, characterized in that, Further comprising: A sliding adapter for driving the tail sleeve to slide towards the optical cable fixing block by a pushing component; A slide rail, which is horizontally and fixedly installed on the bottom plate, and the sliding adapter is slidably installed on the slide rail; The pushing component and the slide rail are located between the optical cable fixing block and the tail sleeve positioning block.

2. The tail-pushing sleeve installation tooling according to claim 1, wherein The sliding adapter includes: A guide rail slider, which is horizontally slidably installed on the slide rail; An adapter block, which is fixedly installed on the guide rail slider, and the pushing component is detachably connected to the adapter block.

3. The push-tail sleeve installation tooling according to claim 2, characterized in that, The pushing component includes: A first push block; A second push block, both the first push block and the second push block are detachably installed on the adapter block, and a first limiting gap for clamping and limiting the tail sleeve is provided between the first push block and the second push block.

4. The tail-pushing sleeve installation tooling according to claim 3, wherein The horizontal width of the first limiting gap decreases successively in the direction close to the optical cable fixing block.

5. The tail-pushing sleeve installation tooling according to claim 4, characterized in that Two limiting bosses are provided on the tail sleeve positioning block, and a first limiting groove for limiting the tail sleeve is formed between the two limiting bosses.

6. The tail-pushing sleeve installation tooling according to claim 5, characterized in that A stop block is fixedly arranged on one side of the limiting boss close to the pushing component, and a second limiting gap for limiting the clamp on the end of the tail sleeve is provided between the stop block and the limiting boss.

7. The push-tail sleeve installation tooling according to claim 6, characterized in that, An optical cable limiting groove opposite to the first limiting groove is provided on the optical cable fixing block, and the length of the optical cable limiting groove is greater than the length of the first limiting groove.