CN209961959U - Optical fiber quick connector assembly with wire harness collecting mechanism - Google Patents

Optical fiber quick connector assembly with wire harness collecting mechanism Download PDF

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Publication number
CN209961959U
CN209961959U CN201920538554.5U CN201920538554U CN209961959U CN 209961959 U CN209961959 U CN 209961959U CN 201920538554 U CN201920538554 U CN 201920538554U CN 209961959 U CN209961959 U CN 209961959U
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CN
China
Prior art keywords
optical fiber
quick
quick connector
plate
connector
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Expired - Fee Related
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CN201920538554.5U
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Chinese (zh)
Inventor
沈嘉威
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Ningbo Yuneng Communication Equipment Co Ltd
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Ningbo Yuneng Communication Equipment Co Ltd
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Priority to CN201920538554.5U priority Critical patent/CN209961959U/en
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Abstract

The utility model relates to a take pencil to receive optic fibre quick-operation joint subassembly of tying up mechanism, including first quick-operation joint and second quick-operation joint, the one end middle part of first quick-operation joint is equipped with first optic fibre, and the one end middle part of second quick-operation joint is equipped with the second optic fibre, and first quick-operation joint and second quick-operation joint are connected through quick-operation joint mechanism, and many pencil are connected to first quick-operation joint, many pencil with first optical fiber connection, the outside card of many pencil is received and is tied up the subassembly. Can guarantee first optic fibre and the accurate and greatly reduced reflection loss of second optic fibre butt joint, the concentration that is fit for many pencil is received and is tied up, and the use is stable, can not cause the problem that pencil epidermis damage and pencil pine take off.

Description

Optical fiber quick connector assembly with wire harness collecting mechanism
Technical Field
The utility model belongs to the technical field of communication and specifically relates to a take pencil to receive fast joint subassembly of optic fibre of binding up mechanism.
Background
The optical fiber connector is a device for detachable (movable) connection between optical fibers, and precisely butt-joints two end faces of the optical fibers so as to maximally couple light energy output by a transmitting optical fiber into a receiving optical fiber and minimize the influence on a system caused by the optical fiber connector intervening in an optical link, which is the basic requirement of the optical fiber connector. The method for stably inserting the field optical fiber into the optical fiber connector to be precisely butted with the preset optical fiber is crucial, the existing optical fiber connector is connected in a mode that the field optical fiber extends into an insertion opening of the optical fiber connector to be butted with the preset optical fiber in the optical fiber connector, in order to ensure the butting quality, the butting position of the field optical fiber and the preset optical fiber needs to be filled with optical fiber matching fluid, the existing optical fiber matching fluid is guided into the optical fiber connector through the insertion opening of the optical fiber connector, the optical fiber matching fluid is inconvenient to guide, the butting position of the field optical fiber and the preset optical fiber cannot be precisely reached, and the actual using effect is poor;
and many optical cable wiring harnesses on fiber connector need be received through the part centre gripping similar to the buckle before the reposition of redundant personnel access apparatus and tie up, in order to conveniently concentrate many optical cable wiring harnesses, prevent that mixed and disorderly condition from appearing in the optical cable wiring harness, be convenient for centralized management, the buckle that is similar to miniature clip is generally used commonly now, the optical cable wiring harness quantity of this kind of buckle centre gripping is less, and optical cable wiring harness takes off from the buckle easily, this kind of buckle clamping time overlength causes the epidermis damage of optical cable wiring harness easily, the result of use is not too good.
Disclosure of Invention
The utility model aims at solving the defect that prior art exists, provide a take pencil and receive fast joint subassembly of optic fibre of tying up mechanism.
In order to realize the purpose, the utility model discloses a technical scheme as follows:
an optical fiber quick joint assembly with a wiring harness binding mechanism comprises a first quick joint and a second quick joint, wherein a first optical fiber is arranged in the middle of one end of the first quick joint, a second optical fiber is arranged in the middle of one end of the second quick joint, the first quick joint and the second quick joint are connected through the quick joint mechanism, the first quick joint is connected with a plurality of wiring harnesses, the plurality of wiring harnesses are connected with the first optical fiber, and the binding assembly is clamped and received on the outer sides of the plurality of wiring harnesses;
the quick connection mechanism comprises two fixed claws fixedly connected with the end part of the first quick connector, the free ends of the fixed claws are provided with conical bulges, the conical bulges are provided with conical insertion surfaces, the end part of the second quick connector is fixedly connected with two clamping claws corresponding to the fixed claws, the free ends of the clamping claws are provided with stop bulges, the stop bulges are provided with extrusion surfaces and stop surfaces corresponding to the conical insertion surfaces, and the fixed claws and the clamping claws are clamped with each other through the conical bulges and the stop bulges;
the collecting assembly comprises a collecting shell, two ends of the collecting shell are opened, an assembly mounting opening corresponding to the wiring harness is formed in the collecting shell, a lower clamping plate and an upper clamping plate are arranged in the assembly mounting opening, and an upper clamping opening and a lower clamping opening are respectively formed in opposite surfaces of the lower clamping plate and the upper clamping plate;
the lower clamping plate is fixed at the bottom of the component mounting opening, the bottom of the upper clamping plate is connected with a bottom plate, the top of the component mounting opening is provided with a placement groove, the bottom plate is positioned in the placement groove and is connected with the inner wall of the placement groove through a spring, a connecting opening communicated with the placement groove is formed in the binding shell, a longitudinal connecting plate is fixedly connected to the bottom plate, and the longitudinal connecting plate extends out of the connecting opening;
the vertical connecting plate connected with the bottom plate of the upper clamping plate in the component mounting port is fixedly connected with the horizontal connecting plate, and the horizontal connecting plate and the vertical connecting plate form an upper clamping plate handle.
According to the optical fiber quick joint assembly with the wire harness bundling mechanism, the middle part of the side surface of the second quick joint is provided with the connecting sleeve, the middle part of the connecting sleeve is provided with the connecting port, the connecting port faces the end part of the first optical fiber, and the free end of the second optical fiber extends into the connecting sleeve and corresponds to the free end of the first optical fiber; and an optical fiber matching fluid injection port is arranged on the outer side of the connecting sleeve and is communicated with a connecting port in the middle of the connecting sleeve.
According to the optical fiber quick-joint assembly with the harness winding mechanism, the centers of the first quick joint and the second quick joint are coaxial, and the first optical fiber and the second optical fiber are located on the same straight line.
The optical fiber quick connector assembly with the wire harness binding mechanism is characterized in that an annular supporting plate is arranged in the second quick connector and connected with the second quick connector through a spring.
According to the optical fiber quick-joint assembly with the wire harness collecting mechanism, a gap is formed between the two clamping claws, and the port of the optical fiber matching liquid injection port is located between the gaps of the two clamping claws.
According to the optical fiber quick connector assembly with the harness collecting mechanism, the free end of the harness is connected with the optical fiber plug connector.
The utility model has the advantages that: when the first optical fiber and the second optical fiber are connected quickly, the first quick connector and the second quick connector are connected through a quick connection mechanism, a fixing claw of the first quick connector extends into the inner side of the second quick connector, the fixing claw contacts with an extrusion surface of a locking protrusion of the locking claw through a conical insertion surface of the conical protrusion of the fixing claw and supports the two locking claws, and after the fixing claw and the locking claw are further extended into the first quick connector, the fixing claw and the locking claw are mutually clamped through the conical protrusion and the locking protrusion, so that the first quick connector and the second quick connector are connected quickly, and the first quick connector and the second quick connector are connected conveniently;
after the first quick connector and the second quick connector are quickly connected, the free end of the first optical fiber extends into the connecting sleeve and corresponds to the free end of the second optical fiber, in order to ensure that the first optical fiber and the second optical fiber are fully contacted, an optical fiber matching fluid injection port is arranged on the outer side of the connecting sleeve and is communicated with a connecting port in the middle of the connecting sleeve, after the first optical fiber and the second optical fiber are butted in the connecting sleeve, optical fiber matching fluid is injected into the connecting port of the connecting sleeve through the optical fiber matching fluid injection port, the connecting port is filled with the optical fiber matching fluid, the first optical fiber and the second optical fiber can be ensured to be butted accurately, and the reflection loss is greatly reduced;
in addition, when needing the many pencil on the first quick-operation joint of constraint, exert the pulling force to last grip block handle, the spring is compressed, the intraoral last grip block of unit mount pulls open for lower grip block, at this moment, the free end of pencil passes the unit mount mouth, the pencil is located between grip block mouth and the lower grip block, after loosening the grip block handle, under the spring action of spring, the pencil is fixed by last grip block mouth and the centre block mouth centre gripping down and can accomplish the concentrated receipts of many pencil and tie, when mentioning the grip block handle once more, go up the grip block and the pencil after the separation, whole receipts are tied up the mechanism and can be removed wantonly in the outside of pencil, conveniently receive and tie up the pencil in the different positions of pencil, this receipts are tied up the mechanism and can be carried a plurality of unit mount mouths simultaneously, be fit for the concentrated receipts of many pencil and tie, stable in use, can not cause the problem that the pencil epidermis.
Drawings
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic connection diagram of the first quick coupling and the second quick coupling of the present invention;
FIG. 3 is a schematic view of a second quick connector according to the present invention;
FIG. 4 is an enlarged view of area A in FIG. 2;
figure 5 is a schematic cross-sectional view of the retraction assembly of the present invention;
figure 6 is a schematic view of the utility model when the assembly is held to retain a wire harness.
Detailed Description
As shown in fig. 1 to 6, an optical fiber quick connector assembly with a harness winding mechanism includes a first quick connector 1 and a second quick connector 2, a first optical fiber 3 is arranged in the middle of one end of the first quick connector 1, a second optical fiber 4 is arranged in the middle of one end of the second quick connector 2, and the first quick connector 1 and the second quick connector 2 are connected through a quick connection mechanism;
the quick connection mechanism comprises two fixed claws 5 fixedly connected with the end part of the first quick connector 1, the free ends of the fixed claws 5 are provided with conical bulges 6, the conical bulges 6 are provided with conical insertion surfaces 7, the end part of the second quick connector 2 is fixedly connected with two clamping claws 8 corresponding to the fixed claws 5, the free ends of the clamping claws 8 are provided with stop bulges 9, the stop bulges 9 are provided with extrusion surfaces 10 corresponding to the conical insertion surfaces 7 and stop surfaces 11, and the fixed claws 5 and the clamping claws 8 are clamped with each other through the conical bulges 6 and the stop bulges 9;
furthermore, a connecting sleeve 12 is arranged in the middle of the side surface of the second quick connector 2, a connecting port 13 is arranged in the middle of the connecting sleeve 12, the connecting port 13 faces the end part of the first optical fiber 3, and the free end of the second optical fiber 4 extends into the connecting sleeve 12 and corresponds to the free end of the first optical fiber 3;
an optical fiber matching fluid injection port 14 is arranged on the outer side of the connecting sleeve 12, and the optical fiber matching fluid injection port 14 is communicated with a connecting port 13 in the middle of the connecting sleeve 12.
The utility model discloses in, first quick-operation joint 1 is coaxial with the center of second quick-operation joint 2, and first optic fibre 3 and second optic fibre 4 are located same straight line.
Be equipped with annular support plate 15 in the second quick-operation joint 2, annular support plate 15 passes through spring 16 and is connected with second quick-operation joint 2, and first quick-operation joint 1 connects the back with second quick-operation joint 2 soon, and annular support plate 15 plays the effect that the buffering was supported to first quick-operation joint 1 with the tip contact of stationary dog 5.
Further, a gap is provided between the two engaging claws 8, and the port of the optical fiber matching fluid injection port 14 is located between the gaps of the two engaging claws 8.
When the first optical fiber 3 and the second optical fiber 4 are connected quickly, the first quick connector 1 and the second quick connector 2 are connected through a quick connection mechanism, the fixing claw 5 of the first quick connector 1 extends into the inner side of the second quick connector 2, the fixing claw 5 and the clamping claw 8 are in contact with the extrusion surface 10 of the locking protrusion 9 of the clamping claw 8 through the conical insertion surface 7 of the conical protrusion 6 of the fixing claw 5 and support the two clamping claws 8, and after the fixing claw 5 and the clamping claw 8 further extend into the first quick connector 1, the fixing claw 5 and the clamping claw 8 are clamped with each other through the conical protrusion 6 and the locking protrusion 9, so that the quick connection of the first quick connector 1 and the second quick connector 2 is realized, and the first quick connector 1 and the second quick connector 2 are convenient to connect; first quick-operation joint 1 and second quick-operation joint 2 meet the back soon, and the free end of first optic fibre 3 stretches into in the adapter sleeve 12 and corresponds with the free end of second optic fibre 4, and in order to guarantee that first optic fibre 3 and second optic fibre 4 contact fully, the outside of adapter sleeve 12 is equipped with optic fibre matching liquid filling opening 14, optic fibre matching liquid filling opening 14 with the connector 13 intercommunication at adapter sleeve 12 middle part, first optic fibre 3 and second optic fibre 4 dock the back in adapter sleeve 12, inject optic fibre matching liquid 17 into through optic fibre matching liquid filling opening 14 towards the connector 13 of adapter sleeve 12, and optic fibre matching liquid 17 fills connector 13, can guarantee that first optic fibre 3 and second optic fibre 4 dock accurate and greatly reduced reflection loss.
Further, the first quick connector 1 is connected with a plurality of wire harnesses 20, the plurality of wire harnesses 20 are connected with the first optical fiber 3, the outer sides of the plurality of wire harnesses 20 are clamped and received with a binding assembly 200, the binding assembly 200 comprises a binding shell 203, two ends of the binding shell 203 are open, an assembly mounting port 204 corresponding to the wire harnesses is arranged in the binding shell 203, a lower clamping plate 205 and an upper clamping plate 206 are arranged in the assembly mounting port 204, and an upper clamping port 207 and a lower clamping port 208 are respectively arranged on the opposite surfaces of the lower clamping plate 205 and the upper clamping plate 206;
the lower clamping plate 205 is fixed at the bottom of the component mounting port 204, the bottom of the upper clamping plate 206 is connected with a bottom plate 209, the top of the component mounting port 204 is provided with a placement groove 210, the bottom plate 209 is positioned in the placement groove 210, the bottom plate 209 is connected with the inner wall of the placement groove 210 through a spring 211, a connecting port communicated with the placement groove 210 is arranged on the collection and binding shell 203, a longitudinal connecting plate 212 is fixedly connected to the bottom plate 209, and the longitudinal connecting plate 212 extends out of the connecting port;
the longitudinal connecting plate 212 connected with the bottom plate 209 of the upper clamping plate 206 in the component mounting opening 204 is fixedly connected with the transverse connecting plate 213, and the transverse connecting plate 213 and the longitudinal connecting plate 212 form an upper clamping plate handle 214.
The utility model discloses in, the quantity of unit mount mouth 204 is unanimous with the quantity of pencil 20, and pencil 20 stretches into unit mount mouth 204 and by last centre gripping mouth 207 and centre gripping mouth 208 centre gripping down, and optic fibre bayonet joint 215 is connected to the free end of pencil 20.
The width of the bottom plate 209 is larger than that of the component mounting opening 204, the bottom plate 209 and the upper clamping plate 206 are integrally formed, and the upper clamping opening 207 and the lower clamping opening 208 are both semicircular notches.
When a plurality of wiring harnesses 20 on the first quick connector 1 are bound, tension is applied to the upper clamping plate handle 214, the spring 211 is compressed, the upper clamping plate 206 in the component mounting opening 204 is pulled relative to the lower clamping plate 205, at the moment, the free end of the wiring harness 20 passes through the component mounting opening 204, the wiring harness 20 is positioned between the upper clamping opening 207 and the lower clamping opening 208, after the upper clamping plate handle 214 is released, under the action of the elastic force of the spring 211, the wiring harness 20 is clamped and fixed by the upper clamping opening 207 and the lower clamping opening 208, so that the concentrated collection of a plurality of wiring harnesses 20 can be completed, when the upper clamping plate handle 214 is lifted up again, after the upper clamping plate 206 is separated from the wire harness 20, the entire restraining mechanism can be moved freely outside the wire harness 20, facilitating the restraint of the wire harness at different positions of the wire harness 20, this receipts are tied up mechanism and can be carried a plurality of subassembly installing ports 204 simultaneously, and the concentration that is fit for many pencil is tied up, and is used stably, can not cause the problem that pencil epidermis damage and pencil pine take off.
The foregoing shows and describes the general principles, essential features, and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the principles of the present invention may be applied to any other embodiment without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (6)

1. An optical fiber quick connector assembly with a wire harness binding mechanism comprises a first quick connector and a second quick connector, wherein a first optical fiber is arranged in the middle of one end of the first quick connector, and a second optical fiber is arranged in the middle of one end of the second quick connector;
the quick connection mechanism comprises two fixed claws fixedly connected with the end part of the first quick connector, the free ends of the fixed claws are provided with conical bulges, the conical bulges are provided with conical insertion surfaces, the end part of the second quick connector is fixedly connected with two clamping claws corresponding to the fixed claws, the free ends of the clamping claws are provided with stop bulges, the stop bulges are provided with extrusion surfaces and stop surfaces corresponding to the conical insertion surfaces, and the fixed claws and the clamping claws are clamped with each other through the conical bulges and the stop bulges;
the collecting assembly comprises a collecting shell, two ends of the collecting shell are opened, an assembly mounting opening corresponding to the wiring harness is formed in the collecting shell, a lower clamping plate and an upper clamping plate are arranged in the assembly mounting opening, and an upper clamping opening and a lower clamping opening are respectively formed in opposite surfaces of the lower clamping plate and the upper clamping plate;
the lower clamping plate is fixed at the bottom of the component mounting opening, the bottom of the upper clamping plate is connected with a bottom plate, the top of the component mounting opening is provided with a placement groove, the bottom plate is positioned in the placement groove and is connected with the inner wall of the placement groove through a spring, a connecting opening communicated with the placement groove is formed in the binding shell, a longitudinal connecting plate is fixedly connected to the bottom plate, and the longitudinal connecting plate extends out of the connecting opening;
the vertical connecting plate connected with the bottom plate of the upper clamping plate in the component mounting port is fixedly connected with the horizontal connecting plate, and the horizontal connecting plate and the vertical connecting plate form an upper clamping plate handle.
2. The optical fiber quick-joint assembly with the harness-tying mechanism as claimed in claim 1, wherein a connecting sleeve is arranged in the middle of the side surface of the second quick joint, a connecting port is arranged in the middle of the connecting sleeve, the connecting port faces the end of the first optical fiber, and the free end of the second optical fiber extends into the connecting sleeve and corresponds to the free end of the first optical fiber; and an optical fiber matching fluid injection port is arranged on the outer side of the connecting sleeve and is communicated with a connecting port in the middle of the connecting sleeve.
3. The optical fiber quick connector assembly with a harness cord mechanism of claim 1, wherein the first quick connector and the second quick connector are concentric, and the first optical fiber and the second optical fiber are located on the same line.
4. The quick optical fiber connector assembly with the harness retracting mechanism as claimed in claim 2 or 3, wherein a ring-shaped support plate is provided in the second quick connector, and the ring-shaped support plate is connected to the second quick connector through a spring.
5. The optical fiber quick-connector assembly with the harness cord mechanism as claimed in claim 2, wherein a gap is provided between the two engagement claws, and the port of the optical fiber matching fluid injection port is located between the gaps of the two engagement claws.
6. The quick optical fiber connector assembly with a harness retention mechanism as in claim 1, wherein the free end of the harness is connected to an optical fiber connector.
CN201920538554.5U 2019-04-19 2019-04-19 Optical fiber quick connector assembly with wire harness collecting mechanism Expired - Fee Related CN209961959U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920538554.5U CN209961959U (en) 2019-04-19 2019-04-19 Optical fiber quick connector assembly with wire harness collecting mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920538554.5U CN209961959U (en) 2019-04-19 2019-04-19 Optical fiber quick connector assembly with wire harness collecting mechanism

Publications (1)

Publication Number Publication Date
CN209961959U true CN209961959U (en) 2020-01-17

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920538554.5U Expired - Fee Related CN209961959U (en) 2019-04-19 2019-04-19 Optical fiber quick connector assembly with wire harness collecting mechanism

Country Status (1)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116643194A (en) * 2023-06-20 2023-08-25 深圳市贵航电子有限公司 Battery detection platform and battery health state analysis equipment
WO2024119633A1 (en) * 2022-12-06 2024-06-13 浙江优亿医疗器械股份有限公司 Optical fiber transfer structure

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2024119633A1 (en) * 2022-12-06 2024-06-13 浙江优亿医疗器械股份有限公司 Optical fiber transfer structure
CN116643194A (en) * 2023-06-20 2023-08-25 深圳市贵航电子有限公司 Battery detection platform and battery health state analysis equipment
CN116643194B (en) * 2023-06-20 2024-03-26 深圳市贵航电子有限公司 Battery detection platform and battery health state analysis equipment

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GR01 Patent grant
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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20200117

Termination date: 20210419

CF01 Termination of patent right due to non-payment of annual fee