CN216956456U - Tail sleeve assembling tool suitable for optical fiber jumper wire - Google Patents

Tail sleeve assembling tool suitable for optical fiber jumper wire Download PDF

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Publication number
CN216956456U
CN216956456U CN202123166698.9U CN202123166698U CN216956456U CN 216956456 U CN216956456 U CN 216956456U CN 202123166698 U CN202123166698 U CN 202123166698U CN 216956456 U CN216956456 U CN 216956456U
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China
Prior art keywords
optical fiber
fiber connector
pushing
tail sleeve
tail
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CN202123166698.9U
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Chinese (zh)
Inventor
孙伟雄
周巧林
葛几凡
马慧影
陈庆
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Jiangsu Fasten Optoelectronics Technology Co ltd
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Jiangsu Fasten Optoelectronics Technology Co ltd
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Abstract

The utility model relates to a tail sleeve assembling tool suitable for an optical fiber jumper wire, and belongs to the technical field of optical device production equipment. The optical fiber connector assembly device comprises a base, wherein an assembly module is arranged on the base, a tail sleeve and an optical fiber connector are arranged on the assembly module, and the tail sleeve and the optical fiber connector are coaxially arranged; the base side is equipped with the support, be equipped with on the support and bulldoze the unit, fiber connector one end is located and is bulldozed in the unit, bulldoze the unit and bulldoze fiber connector and remove to the tail cover, and then make the tail cover overlap on fiber connector. This application carries out the centre gripping through C type tapering die cavity to the tail cover, has not only realized the axial of cylindrical rubber tail cover from feeling relieved, has guaranteed that tail cover assembly direction is correct, and has realized the function of fixed tail cover. Simple structure, the simple operation, labour saving and time saving has improved assembly efficiency moreover.

Description

Tail sleeve assembling tool suitable for optical fiber jumper wire
Technical Field
The utility model relates to a tail sleeve assembling tool suitable for an optical fiber jumper wire, and belongs to the technical field of optical device production equipment.
Background
At present, optical fiber jumpers are mostly used between communication equipment and terminals for signal transmission, and the optical fiber jumpers are popular among people due to the characteristics of low insertion loss, good repeatability, good temperature stability and the like, and the demand is very large. The production process of the optical fiber patch cord is deeply understood and found to be not complicated, and is roughly divided into four steps of fiber stripping, assembling, curing and grinding. In the assembly process, the tail sleeve and the optical fiber connector are combined to occupy more manpower, and the problem of wrong assembly direction is easy to occur. In addition, when the rubber tail sleeve is pushed and pressed each time, the finger is stressed greatly, and the finger is difficult to feel sore and endure after one day. If too much force is applied, it can cause the ferrule to become misaligned with the connector, thereby transferring the applied pushing force to the jacketed optical fiber and breaking the optical fiber. In view of the situation, a tail sleeve assembling tool is developed and designed, the problem of assembling direction errors is solved, dependence on people is reduced, and coaxiality of the tail sleeve and the connector is guaranteed.
SUMMERY OF THE UTILITY MODEL
The technical problem to be solved by the utility model is to provide a tail sleeve assembling tool suitable for an optical fiber jumper wire aiming at the prior art, the tail sleeve is stably, accurately and quickly assembled in a combining procedure, the direction error in the assembling process is avoided, the labor consumption is reduced, and the assembling efficiency is improved.
The technical scheme adopted by the utility model for solving the problems is as follows: a tail sleeve assembling tool suitable for an optical fiber jumper comprises a base, wherein an assembling module is arranged on the base, a tail sleeve and an optical fiber connector are arranged on the assembling module, and the tail sleeve and the optical fiber connector are coaxially arranged; the base side is equipped with the support, be equipped with on the support and bulldoze the unit, fiber connector one end is located and bulldozes in the unit, bulldoze the unit and bulldoze fiber connector and remove to the tail cover, and then make the tail cover overlap on fiber connector.
The pushing unit comprises a pushing shaft which is horizontally arranged, a support positioning hole is formed in the support, the pushing shaft penetrates through the support positioning hole, and the pushing shaft and the tail sleeve are coaxially arranged; one end of the pushing shaft is in threaded connection with a pushing plunger rod, a counter bore is formed in the center of one end face of the pushing plunger rod, and the inserting core of the optical fiber connector is arranged in the counter bore; connecting plates are symmetrically arranged on two sides of the other end of the push shaft, a handle is arranged between the two connecting plates, a handle hinge hole is formed in the end part of the handle, a rotating shaft penetrates through the handle hinge hole, and the rotating shaft penetrates through the two connecting plates; and rotating the handle, wherein the handle rotates around the rotating shaft to drive the connecting plate to synchronously rotate, and the pushing shaft moves along the support positioning hole, so that the pushing plunger rod is close to or far away from the assembly module.
The top surface of the base is provided with a groove, and the groove is matched with the assembling module, so that the assembling module is arranged in the groove.
One end of the pushing shaft is provided with an internal thread, the pushing plunger rod is provided with an external thread, and the pushing shaft is in threaded connection with the pushing plunger rod so as to adjust the sum of the lengths of the pushing shaft and the pushing plunger rod; the push plunger rod is sleeved with a stop ring, and the stop ring is in threaded connection with the push plunger rod.
The bore diameter of the counter bore is matched with the bore diameter of the inserting core of the optical fiber connector.
The assembly module is provided with a C-shaped taper die cavity, the tail sleeve is placed in the C-shaped taper die cavity, and an arc-shaped groove for placing the optical fiber connector is formed in one end of the C-shaped taper die cavity.
Compared with the prior art, the utility model has the advantages that: the utility model provides a tail cover assembly fixture for optic fibre wire jumper, carries out the centre gripping to the tail cover through C type tapering die cavity, has not only realized the axial of cylindrical rubber tail cover from feeling relieved, has guaranteed that the tail cover assembly direction is correct, and has realized the function of fixed tail cover. The arc-shaped groove at the front end of the C-shaped taper die cavity is used for bearing the optical fiber connector, the optical fiber connector and the tail sleeve are coaxially arranged, dislocation of the optical fiber connector and the tail sleeve is avoided, the pushing unit converts the rotating force into axial pushing force, and assembly of the optical fiber connector and the tail sleeve is completed. Not only simple structure, the simple operation, labour saving and time saving has improved assembly efficiency moreover.
Drawings
Fig. 1 is a schematic diagram of a boot assembly tool suitable for an optical fiber patch cord according to an embodiment of the present invention;
in the figure, 1 tail sleeve, 2 optical fiber connectors, 3 pushing plunger rods, 4 stop rings, 5 pushing shafts, 6 handle hinge holes, 7 connecting plates, 8 handles, 9 assembling modules, 10 bases, 11 support positioning holes and 12 supports are arranged.
Detailed Description
The utility model is described in further detail below with reference to the accompanying examples.
As shown in fig. 1, the tail sleeve assembling tool suitable for the optical fiber patch cord in this embodiment includes a base 10, an assembling module 9 is arranged on the base 10, a C-shaped taper die cavity is arranged on the assembling module 9, and a tail sleeve 1 is placed in the C-shaped taper die cavity, so that it is ensured that the assembling direction of the tail sleeve 1 is correct, and the tail sleeve 1 can be fixed. The front end of the C-shaped taper die cavity is provided with a semicircular arc-shaped groove, an optical fiber connector 2 is placed in the arc-shaped groove, and the tail sleeve 1 and the optical fiber connector 2 are coaxially arranged. A C type breach is seted up to base 10 side, and base 10 side is equipped with support 12, and support 12 imbeds in the C type breach for 12 terminal surfaces of support and the laminating of C type breach side, both pass through locating pin fixed connection. The top surface of the support 12 is provided with a support positioning hole 11, and the support positioning hole 11 and the C-shaped taper die cavity are coaxially arranged. The horizontally-arranged pushing shaft 5 penetrates through the support positioning hole 11, the pushing plunger rod 3 is arranged at one end of the pushing shaft 5, a counter bore is formed in the center of one end face of the pushing plunger rod 3, and the inserting core of the optical fiber connector 2 is arranged in the counter bore. The two sides of the other end of the pushing shaft 5 are symmetrically provided with connecting plates 7, and the pushing shaft 5 is connected with the connecting plates 7 through positioning pins. A handle 8 is arranged between the two connecting plates 7, a handle hinge hole 8 is formed in the end part of the handle 8, a rotating shaft penetrates through the handle hinge hole 8, and the rotating shaft penetrates through the two connecting plates 7. The other end of the connecting plate 7 is connected with a handle 8 through a positioning pin. Rotating handle 8, handle 8 rotates round the pivot, drives connecting plate 7 synchronous revolution and makes to push away the pressure shaft 5 and remove along support locating hole 11 for bulldoze plunger rod 3 and be close to or keep away from assembly module 9, when bulldozing plunger rod 3 and be close to assembly module 9, bulldoze fiber connector 2 and be close to tail sleeve 1, make fiber connector 2 bulldoze in tail sleeve 1, accomplish the assembly of tail sleeve and fiber connector.
The top surface of the base is provided with a groove, and the groove is matched with the size of the assembly module 9, so that the assembly module 9 is arranged in the groove and then fixedly connected through a bolt. According to different jumper wire tail sleeve structures, different assembly modules are replaced, and the jumper wire tail sleeve assembling device is suitable for assembling different jumper wire tail sleeves.
The diameter of the counter bore on the pushing plunger rod is matched with the diameter of the inserting core of the optical fiber connector.
Push away the pressing shaft one end and have the internal thread, push and have the external screw thread on the plunger rod, push away the pressing shaft and push away plunger rod threaded connection, not only can change and push away the plunger rod, can adjust moreover and push away the pressing shaft and push away the total length of plunger rod for fiber connector's lock pin is inserted and is 5mm in the degree of depth of counter bore. The push plunger rod is sleeved with a stop ring 4, and the stop ring 4 is in threaded connection with the push plunger rod. And rotating the stop ring, wherein the stop ring is stopped at the length of the pushing plunger rod screwed into the pushing shaft.
This application carries out the centre gripping through C type tapering die cavity to the tail cover, has not only realized the axial of cylindrical rubber tail cover from feeling relieved, has guaranteed that the tail cover assembly direction is correct, and has realized the function of fixed tail cover. The arc-shaped groove at the front end of the C-shaped taper die cavity is used for bearing the optical fiber connector, the optical fiber connector and the tail sleeve are coaxially arranged, dislocation of the optical fiber connector and the tail sleeve is avoided, the pushing unit converts the rotating force into axial pushing force, and assembly of the optical fiber connector and the tail sleeve is completed. Not only simple structure, the simple operation, labour saving and time saving has improved assembly efficiency moreover.
In addition to the above embodiments, the present invention also includes other embodiments, and any technical solutions formed by equivalent transformation or equivalent replacement should fall within the scope of the claims of the present invention.

Claims (6)

1. The utility model provides a tail cover assembly fixture suitable for optical fiber jumper wire which characterized in that: the optical fiber connector assembly device comprises a base, wherein an assembly module is arranged on the base, a tail sleeve and an optical fiber connector are arranged on the assembly module, and the tail sleeve and the optical fiber connector are coaxially arranged; the base side is equipped with the support, be equipped with on the support and bulldoze the unit, fiber connector's lock pin is located and bulldozes in the unit, bulldoze the unit and bulldoze fiber connector and remove to the tail cover, and then make the tail cover overlap on fiber connector.
2. The tail sleeve assembling tool suitable for the optical fiber jumper wire according to claim 1, characterized in that: the pushing unit comprises a pushing shaft which is horizontally arranged, a support positioning hole is formed in the support, the pushing shaft penetrates through the support positioning hole, and the pushing shaft and the tail sleeve are coaxially arranged; one end of the pushing shaft is in threaded connection with a pushing plunger rod, a counter bore is formed in the center of one end face of the pushing plunger rod, and the inserting core of the optical fiber connector is arranged in the counter bore; connecting plates are symmetrically arranged on two sides of the other end of the push shaft, a handle is arranged between the two connecting plates, a handle hinge hole is formed in the end part of the handle, a rotating shaft penetrates through the handle hinge hole, and the rotating shaft penetrates through the two connecting plates; and rotating the handle, wherein the handle rotates around the rotating shaft to drive the connecting plate to synchronously rotate, and the pushing shaft moves along the support positioning hole, so that the pushing plunger rod is close to or far away from the assembly module.
3. The tail sleeve assembling tool suitable for the optical fiber jumper wire according to claim 1, characterized in that: the top surface of the base is provided with a groove, and the groove is matched with the assembling module, so that the assembling module is arranged in the groove.
4. The tail sleeve assembling tool suitable for the optical fiber jumper wire according to claim 2, characterized in that: one end of the pushing shaft is provided with an internal thread, the pushing plunger rod is provided with an external thread, and the pushing shaft is in threaded connection with the pushing plunger rod so as to adjust the sum of the lengths of the pushing shaft and the pushing plunger rod; the pushing plunger rod is sleeved with a stop ring, and the stop ring is in threaded connection with the pushing plunger rod.
5. The tail sleeve assembling tool suitable for the optical fiber jumper wire according to claim 2, characterized in that: the bore diameter of the counter bore is matched with the bore diameter of the inserting core of the optical fiber connector.
6. The tail sleeve assembling tool suitable for the optical fiber jumper wire according to claim 1, characterized in that: the assembly module is provided with a C-shaped taper die cavity, a tail sleeve is placed in the C-shaped taper die cavity, and one end of the C-shaped taper die cavity is provided with an arc-shaped groove for placing the optical fiber connector.
CN202123166698.9U 2021-12-14 2021-12-14 Tail sleeve assembling tool suitable for optical fiber jumper wire Active CN216956456U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123166698.9U CN216956456U (en) 2021-12-14 2021-12-14 Tail sleeve assembling tool suitable for optical fiber jumper wire

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123166698.9U CN216956456U (en) 2021-12-14 2021-12-14 Tail sleeve assembling tool suitable for optical fiber jumper wire

Publications (1)

Publication Number Publication Date
CN216956456U true CN216956456U (en) 2022-07-12

Family

ID=82311432

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123166698.9U Active CN216956456U (en) 2021-12-14 2021-12-14 Tail sleeve assembling tool suitable for optical fiber jumper wire

Country Status (1)

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CN (1) CN216956456U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116329909A (en) * 2023-03-23 2023-06-27 深圳市爱德泰科技有限公司 Automatic assembly equipment for optical fiber jumper wires

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116329909A (en) * 2023-03-23 2023-06-27 深圳市爱德泰科技有限公司 Automatic assembly equipment for optical fiber jumper wires
CN116329909B (en) * 2023-03-23 2023-11-03 深圳市爱德泰科技有限公司 Automatic assembly equipment for optical fiber jumper wires

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