WO2023098488A1 - 一种光纤插头连接器集成装置 - Google Patents

一种光纤插头连接器集成装置 Download PDF

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Publication number
WO2023098488A1
WO2023098488A1 PCT/CN2022/132739 CN2022132739W WO2023098488A1 WO 2023098488 A1 WO2023098488 A1 WO 2023098488A1 CN 2022132739 W CN2022132739 W CN 2022132739W WO 2023098488 A1 WO2023098488 A1 WO 2023098488A1
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WIPO (PCT)
Prior art keywords
cable
groove
optical fiber
column
sleeve
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PCT/CN2022/132739
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English (en)
French (fr)
Inventor
张雷
饶海花
刘国斌
王嘉奇
林绍亭
周卫国
汪立
Original Assignee
广东电网有限责任公司东莞供电局
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Publication of WO2023098488A1 publication Critical patent/WO2023098488A1/zh

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    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/24Coupling light guides
    • G02B6/36Mechanical coupling means
    • G02B6/38Mechanical coupling means having fibre to fibre mating means
    • G02B6/3807Dismountable connectors, i.e. comprising plugs
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/24Coupling light guides
    • G02B6/36Mechanical coupling means
    • G02B6/38Mechanical coupling means having fibre to fibre mating means
    • G02B6/3807Dismountable connectors, i.e. comprising plugs
    • G02B6/3833Details of mounting fibres in ferrules; Assembly methods; Manufacture
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/24Coupling light guides
    • G02B6/36Mechanical coupling means
    • G02B6/38Mechanical coupling means having fibre to fibre mating means
    • G02B6/3807Dismountable connectors, i.e. comprising plugs
    • G02B6/3887Anchoring optical cables to connector housings, e.g. strain relief features

Definitions

  • the present application relates to the technical field of plug connectors, in particular to an integrated device for optical fiber plug connectors.
  • Optical fiber connector is a device for detachable (movable) connection between optical fiber and optical fiber. It precisely butts the two end faces of optical fiber so that the optical energy output by the transmitting optical fiber can be coupled to the receiving optical fiber to the maximum extent. And to minimize the impact on the system due to its intervention in the optical link, this is the basic requirement of the fiber optic connector. To a certain extent, fiber optic connectors affect the reliability and performance of optical transmission systems.
  • the above operation has limitations when there is a large bend in the cable at the end of the connector.
  • the cable is connected to the connector, once there is a large bend in the connection between the cable and the connector If the force is too high, the surface of the cable end is easily pulled and broken, and in severe cases, the cable end may even be broken, which greatly reduces the service life of the cable.
  • the optical fiber plug connector integration device in the related art cannot solve the problem that the service life of the cable is reduced due to large bending between the cable and the connector.
  • the purpose of the present application is to provide an integrated device for an optical fiber plug connector to solve the technical problem in the related art that the service life of the cable is reduced due to large bending between the cable and the connector.
  • An integrated device for optical fiber plug connectors comprising a guide shell for inserting cables, a cable jack is provided in the guide shell, a guide beam end mechanism is connected to the cable jack, and the guide The beam end mechanism is connected with a position-fixing mechanism;
  • the guiding beam end mechanism can wrap the cable end and guide and drive the cable end to deflect in the cable socket; the position fixing mechanism can perform real-time position fixing when the guiding beam end mechanism deflects;
  • one end of the guide beam end mechanism slides along the side wall of the cable until it wraps around the side wall of the cable end; when the cable inserted into the guide shell is pulled by the external pulling force
  • the guiding beam end mechanism takes the other end as the fulcrum to guide and drive the cable end to deflect along the direction of the pulling force until the guiding beam end mechanism deflects the cable end parallel to the external pulling force, Then the position is fixed by the position-fixing mechanism.
  • the guiding bundle end mechanism includes a deflection column sleeve used for clamping the end of the cable, one end of the deflection column sleeve is rotatably connected to the inner wall of the cable insertion hole, and the The other end of the deflection column sleeve is slidably connected with a sliding parcel rack, and the side wall of the deflection column sleeve is provided with a limited card slot. After the end is inserted into the deflection column sleeve, slide along the clamping slot until it wraps around the side wall of the cable end;
  • the sliding wrapping frame slides along the inner wall of the clamping slot until it wraps around the side wall of the cable end; when the cable is bent by an external pulling force, the deflection The column sleeve uses its own end as a fulcrum to guide and drive the end of the cable to deflect along the direction of the pulling force until the end of the cable deflects parallel to the external pulling force.
  • both ends of the cable socket are provided with inclined passage slots;
  • the position fixing mechanism includes a fixed clip connected to the inner wall of the inclined passage slot, and the fixed clip
  • a plurality of fixed-point elastic strips are connected to the sheet, and the fixed-point elastic strips can cling to the side wall of the deflection column sleeve and snap into the clamp-limiting groove after the sliding wrapping frame slides along the clamp-limiting groove to wrap around the end of the cable.
  • movable wires connected to the inner wall of the cable socket are provided in the guide housing, and hidden grooves are provided on the inner wall of the guide housing, and elastic blocks are installed in the hidden grooves, so that The elastic block can push the movable wire into the hidden groove, and the end of the movable wire is connected with the deflection column sleeve;
  • the deflection column sleeve drives the cable to deflect
  • the deflection column sleeve drives the movable wire to slide along the inner wall of the cable socket, and at the same time, the sliding movable wire pushes and squeezes the elastic block to make the movable wire
  • the length of the wire extending out of the cable socket is increased.
  • the movable wire includes an optical fiber channel, the side wall of the optical fiber channel is sleeved with a flexible sheath, and the outer wall of the flexible sheath is equipped with a drive ring connected to the elastic block, the The inner wall of the hidden groove is provided with a ring body chute, and the ring body chute can guide the movement of the driving ring to prevent the driving ring from sliding along the inner wall of the cable jack.
  • the traction sleeve connected to one end of the guide housing;
  • the fulcrum of the deflection column sleeve will gradually pull the traction sleeve to deflect, and the active traction sleeve will drive and straighten the optical fiber channel to increase the extension length of the optical fiber channel ;
  • the flexible wrapping sleeve will guide the driving ring along the chute of the ring body and push and compress the elastic block.
  • the deflection column sleeve includes a driving column whose end is rotatably connected to the inner wall of the inclined groove, the card limiting groove is arranged on the side wall of the driving column, and the optical fiber channel runs through the driving column and extends to In the driving column, the traction sleeve is installed at one end of the driving column close to the inclined passage groove, and a stepped groove is arranged in the card limiting groove, and the stepped groove can limit the position of the fixed elastic bar.
  • the sliding parcel rack includes a sliding bar connected to the card limiting slot, one end of the sliding bar is connected to the card limiting slot, and the sliding bar can seal and block
  • the card limiting slot is to prevent the fixed-point elastic bar from being embedded in the stepped groove.
  • the side wall of the driving column is sleeved with a push spring connected with the sliding bar.
  • the pushing spring can push the driving column to slide along the card limiting slot.
  • the driving column The other end is connected with a wrapping clamping ring; both ends of the fixed-point elastic bar are provided with inclined surfaces, and the driving column can push the fixed-point elastic bar out of the card-limiting slot along the inclined surface.
  • a curved embedding chute is provided on the side surface of the sliding bar close to the card limiting groove, and an elastic embedding column is connected inside the curved embedding chute, and the surface of the insertion guide shell is connected with the elastic
  • a stop hole is opened at the corresponding position of the clamping post, and the stop hole can limit the position of the elastic clamping post to fix the position of the sliding bar.
  • a push post is installed in the stop hole, and the push post The elastic embedding column can be pushed to slide along the curved embedding chute to release the restricted sliding bar.
  • an anti-shake groove is provided on the fixed clip, and an embedded strip is connected to the anti-shake groove, and one end of the embedded strip is connected to the inner wall of the anti-shake groove, and the embedded
  • the other end of the bar is equipped with a fixed body ring sleeved on the side wall of the driving column, and the fixed body ring can limit the position of the push spring;
  • the outer side wall of the flexible wrapping sleeve is equipped with a plurality of bosses, and the bosses It can prevent the flexible wrapping from bending.
  • the fixed-point elastic bar includes an elastic piece connected to the fixed card position piece
  • the fixed-point elastic bar includes an elastic piece connected to the fixed card position piece
  • the ladder groove embedding platform is installed on the elastic piece , the length value of the ladder groove embedding platform is not less than the sum of the depth values of the card limiting groove and the stepped groove, and the thickness value of the sliding bar is equal to the depth value of the card limiting groove.
  • This application can guide the bundle end mechanism to realize the homeopathic guidance of the bending direction, so as to reduce the damage of the bending force to the cable, thereby improving the service life of the equipment.
  • the guide bundle end mechanism uses the other end as a fulcrum to guide and drive the cable end to deflect along the direction of the pulling force until the guide bundle ends
  • the end mechanism deflects the end of the cable until it is parallel to the external pulling force, and then the position is fixed by the position-fixing mechanism.
  • Fig. 1 is the overall structure schematic diagram in the embodiment of the present application.
  • Fig. 2 is a schematic diagram of the side view longitudinal section of the sliding bar in the embodiment of the present application.
  • Fig. 3 is a schematic structural diagram of a fixed-point elastic bar in the embodiment of the present application.
  • Fig. 4 is a schematic diagram of the structure of the fixed card slot in the embodiment of the present application.
  • the present application provides an integrated device for optical fiber plug connectors, including a guide shell 1 for inserting cables, a cable jack 2 is provided in the guide shell 1, and a cable jack 2 is provided in the cable jack 2.
  • a guiding beam end mechanism 3 is connected, and a position fixing mechanism 4 is connected to the guiding beam end mechanism 3;
  • the guiding beam end mechanism 3 can wrap the cable end and guide and drive the cable end to deflect in the cable jack 2; the position fixed point mechanism 4 can perform real-time position fixing when the guiding beam end mechanism 3 deflects;
  • This application can use the guide beam end mechanism 3 to realize the homeopathic guidance of the bending direction, so as to reduce the damage of the bending force to the cable, thereby improving the service life of the equipment.
  • the guide beam One end of the end mechanism 3 slides along the side wall of the cable until it wraps around the side wall of the cable end;
  • the rotating fulcrum guides and drives the cable end to deflect along the direction of the pulling force until the guiding beam end mechanism 3 deflects the cable end parallel to the external pulling force, and then the position is fixed by the position fixing mechanism 4 .
  • This application is more related to the technology. It can be stored during use to ensure that the connected cables will not be broken due to the external force at the end, and at the same time, it can also ensure that the cables will not be broken during use. The situation where the fiber channel inside the connector is pulled and broken.
  • the guiding beam end mechanism 3 includes a deflection column sleeve 31 for clamping the end of the cable.
  • One end is slidably connected with a sliding parcel rack 32, and the side wall of the deflection column sleeve 31 is provided with a limited card slot 33, which can limit the position of the sliding parcel rack 32, and the sliding parcel rack 32 can be inserted into the deflection column sleeve 31 at the end of the cable Then slide along the clamping slot 33 until it wraps around the side wall of the cable end;
  • the sliding wrapping frame 32 slides along the inner wall of the clamping slot 33 until wrapped on the side wall of the cable end; when the cable is pulled and bent by an external pulling force, the deflection column sleeve 31
  • the end of the cable is used as the fulcrum to guide and drive the end of the cable to deflect along the direction of the pulling force until the end of the cable is deflected parallel to the external pulling force.
  • the guide beam end mechanism 3 can realize the wrapping of the cable end and the homeopathic guidance of the pulling force when the cable is subjected to an external force. Under the double protection, it can prevent the service life of the equipment from being reduced. Its specific implementation , after the cable is inserted into the deflection column sleeve 31, the sliding wrapping frame 32 will be triggered and slide along the inner wall of the clamping slot 33 until it wraps around the side wall of the cable end, thus realizing the wrapping protection of the cable end; When the cable is pulled and bent by an external pulling force, the deflection column sleeve 31 can use its end as a fulcrum to guide and drive the end of the cable to deflect along the direction of the pulling force until the deflection column sleeve 31 is deflected to be parallel to the direction of the pulling force. Such an operation can greatly reduce the stress on the end of the cable, so that the service life of the cable will not be reduced.
  • both ends of the cable jack 2 are provided with inclined passing grooves 21;
  • the position fixing mechanism 4 includes a fixed locking piece 41 connected to the inner side wall of the inclined passing groove 21, and the fixed locking piece 41 is connected with A plurality of fixed-point elastic bars 42 , the fixed-point elastic bars 42 can cling to the side wall of the deflection column sleeve 31 and snap into the card-limiting slot 33 after the sliding wrapping frame 32 slides along the card-limiting slot 33 to wrap around the end of the cable.
  • the position-fixing mechanism 4 can realize the real-time position fixation of the deflection column sleeve 31 and the cable end, thereby avoiding the phenomenon that the deflection column sleeve 31 can move freely.
  • the fixed clip 41 can limit the deflected deflection column sleeve 31, so that the deflection column sleeve 31 will not vibrate, and then the fixed-point elastic strip 42 will slide on the sliding parcel shelf 32 along the clamping slot 33 to wrap the line The end of the cable is snapped into the card-limiting slot 33 to position the deflection column sleeve 31 .
  • the movable wire 11 connected to the inner wall of the cable jack 2 is arranged in the insertion guide housing 1, and the inner wall of the insertion guide housing 1 is provided with a hidden groove 13, and an elastic block 12 (optional) is installed in the hidden groove 13.
  • elastic materials such as rubber or sponge
  • the elastic block 12 can push the movable wire 11 into the hidden groove 13, and the end of the movable wire 11 is connected with the deflection column sleeve 31;
  • the deflection column sleeve 31 drives the cable deflection
  • the deflection column sleeve 31 drives the movable wire 11 to slide along the inner wall of the cable jack 2, and at the same time the sliding movable wire 11 pushes and squeezes the elastic block 12, so that the movable wire 11 extends out of the cable Jack 2 is increased in length.
  • the deflection column sleeve 31 can drive the movable wire 11 to slide along the inner wall of the cable insertion hole 2, and at the same time The active wire 11 pushes and squeezes the elastic block 12, so that the length of the active wire 11 extending out of the cable insertion hole 2 increases.
  • the movable wire 11 includes an optical fiber channel 111, the side wall of the optical fiber channel 111 is sleeved with a flexible sheath 112, and the outer wall of the flexible sheath 112 is equipped with a driving ring 113 connected with the elastic block 12, and the hidden groove 13
  • the inner wall of the inner wall is provided with a ring body chute 114, and the ring body chute 114 can guide the movement of the driving ring 113 to prevent the driving ring 113 from sliding along the inner wall of the cable jack 2.
  • the traction sleeve 115 connected to one end of the guide shell 1;
  • the rotation fulcrum of the deflection column sleeve 31 will gradually pull the traction sleeve 115 to deflect, and the fiber channel 111 will be straightened through the movable traction sleeve 115 to increase the extension of the fiber channel 111.
  • the flexible wrapping sleeve 112 will guide the driving ring 113 along the ring body chute 114 and push and compress the elastic block 12.
  • both ends of the guide housing 1 can be connected to ends of cables, and the cables here can be optical fiber cables.
  • the rotation fulcrum of the deflection column sleeve 31 will gradually pull
  • the traction sleeve 115 deflects, that is, the end of the traction sleeve 115 will be stressed, so that the flexible wrapping sleeve 112 will be gradually straightened under the force, but the optical fiber channel 111 will not be affected, so that it can be driven by the movable traction sleeve 115
  • Straighten the fiber channel 111 to increase the protruding length of the fiber channel 111 that is, the fiber channel 111 is passively straightened, and it will not be directly subjected to the straightening force, so that it can fully perform the stretching action
  • the flexible wrapper 112 will guide the driving ring 113 along the ring body chute 114
  • the deflection column sleeve 31 includes a driving column 311 whose end is rotatably connected to the inner wall of the inclined passage groove 21. Extending into the driving column 311, the traction pull sleeve 115 is installed on the end of the driving column 311 close to the inclined passage groove 21, and the card limiting groove 33 is provided with a stepped groove 312, which can limit the fixed point elastic bar 42.
  • the deflection angle of the deflection column sleeve 31 tilted through the groove 21 is controlled at 90 degrees clockwise and 90 degrees counterclockwise. There will be no inability to deflect when pulled by an oblique force, and the deflection premise of the deflection column sleeve 31 is that the end of the cable has been inserted into the driving column 311 .
  • the deflection column sleeve 31 can cooperate with the fixed-point spring bar 42 to carry out real-time position limitation.
  • the deflected drive column 311 will drive the traction sleeve 115 to move, and the movable traction sleeve 115 will pull the flexible wrapping sleeve 112, making the flexible wrapper 112 move.
  • the wrapper 112 is gradually straightened, and during the movement of the driving column 311, the stepped groove 312 will gradually contact the fixed-point elastic bars 42 at different positions, and the different fixed-point elastic bars 42 will be sequentially snapped into the stepped groove 312, taking Figure 1 as an example , when the driving column 311 deflects counterclockwise, the stepped groove 312 on the side wall of the driving column 311 will limit the multiple fixed-point elastic bars 42 in the counterclockwise direction.
  • the sliding parcel rack 32 includes a sliding bar 321 connected to the card limiting slot 33, one end of the sliding bar 321 is connected to the card limiting slot 33, and the sliding bar 321 can block the card limiting slot 33 to prevent the fixed-point elastic bar 42 from being embedded in the stepped groove 312, the side wall of the drive column 311 is sleeved with a push spring 322 connected with the sliding bar 321, and the push spring 322 can push the drive column 311 to slide along the card-limiting groove 33, driving the column
  • the other end of 311 is connected with a package clamping ring 323; both ends of the fixed-point elastic strip 42 are provided with inclined surfaces 421, and the driving column 311 can push the fixed-point elastic strip 42 out of the card-limiting groove 33 along the inclined surface 421.
  • the sliding wrapping frame 32 can move along the end of the cable after the cable is inserted, so that the force-bearing area of the cable end is delayed, and the force-bearing area is increased by sliding the wrapping frame 32, thereby reducing the external force
  • the driving column 311 can be regarded as a component of an optical fiber plug and a deflection column
  • the sliding bar 321 will be released limit
  • the pushing spring 322 will push the sliding bar 321 to slide along the card limiting groove 33 until the pushing spring 322 is fully released (when the cable is not inserted, the pushing spring 322 is in a compressed state)
  • the sliding bar 321 will push the wrapping clamping ring 323 to slide along the side wall of the cable.
  • the wrapping clamping ring 323 is wrapped around the sidewall of the cable end to fix the cable more firmly.
  • the point of force is delayed, and the sliding sliding bar 321 can also make the fixed-point elastic bar 42 no longer be blocked, that is, when the sliding sliding bar 321 is not working, it is stuck in the card-limiting groove 33 and blocks the fixed-point elastic bar 42, while the sliding bar 321 is not working.
  • the card limiting slot 33 is no longer blocked, and the fixed-point elastic bar 42 can be directly inserted into the card limiting slot 33 and inserted into the stepped slot 312 to achieve the purpose of positioning.
  • the sliding bar 321 will also be pushed, once the sliding bar 321 contacts the inclined surface 421, then the sliding bar 321 can move the fixed-point elastic bar 42 along the inclined surface 421
  • the card limiting slot 33 is pushed out, so that the driving column 311 can be reset quickly, and the cable can also be pulled out quickly.
  • a curved embedding chute 3211 is opened on the side surface of the sliding bar 321 close to the card limiting groove 33, and an elastic embedding column 3212 is connected in the curved embedding chute 3211, and the surface of the insertion guide shell 1 is connected to the
  • a gear hole 3213 is opened at the corresponding position of the elastic clamping column 3212, and the gear hole 3213 can limit the position of the elastic clamping column 3212 to fix the position of the sliding bar 321, and a pushing column 3214 is installed in the gear hole 3213, The pushing column 3214 can push the elastic clamping column 3212 to slide along the curved slot 3211 to release the restricted sliding bar 321 .
  • the sliding bar 321 can be composed of an elastic post (such as a spring) and a caliper stand.
  • the sliding bar 321 can realize the action of strengthening the cable insertion and assisting the fixing of the wrapping clamping ring 323.
  • the end of the cable will push up the push column 3214, so that the push column 3214 moves along the The gear hole 3213 slides until it touches the sliding bar 321, and then the sliding bar 321 will be pushed by the push column 3214 to slide along the inner wall of the curved slot 3211 and be compressed.
  • the curved slot The groove 3211 is inclined, and will be directly pushed into the curved groove 3211 after being stressed, and the height of the pushing column 3214 is not greater than the depth of the gear hole 3213, so that the movement of the sliding bar 321 is not affected.
  • an anti-shake groove 411 is provided on the fixed card position piece 41, the anti-shake groove 411 is connected with an embedded bar 412, and one end of the embedded bar 412 is connected with the inner wall of the anti-shake groove 411 , and the other end of the embedded strip 412 is equipped with a fixed body ring 413 sleeved on the side wall of the driving column 311, the fixed body ring 413 can limit the position of the push spring 322; the outer wall of the flexible wrapping sleeve 112 is equipped with a plurality of bosses 116. The boss 116 can prevent the flexible wrapper 112 from bending.
  • the driving column 311 When the driving column 311 deflects, it will directly drive the fixed body ring 413 to move (the fixed body ring 413 is fixedly installed on the driving column 311 to fix the embedded bar 412 and the push spring 322), and then the fixed body ring 413 will guide the embedded bar 412 slides along the anti-shake groove 411 to realize the action of anti-shake, and the setting of the boss 116 can prevent the bending of the flexible wrapping 112, that is, when the deflection of the driving column 311, the end of the flexible wrapping 112 will also bend, In order to prevent the optical fiber from being affected by excessive bending of the flexible sheath 112 , the degree of bending is limited by the boss 116 .
  • the fixed-point elastic strip 42 includes an elastic piece 421 connected with the fixed card position piece 41, and a ladder groove embedding platform 422 is installed on the elastic piece 421, and the length value of the ladder groove embedding platform 422 is not less than the limit card groove 33 and The sum of the depth values of the stepped grooves 312 and the thickness value of the sliding bar 321 is equal to the depth value of the card limiting groove 33 .
  • the elastic piece 421 is used to push the step groove insertion platform 422 to fully enter the step groove 312 without shaking, and the length of the step groove insertion platform 422 is set so that the step groove 312 can be fully filled, which can prevent the step groove from being embedded.
  • Insufficient embedding of the table 422 causes the driving column 311 to vibrate, and the thickness of the sliding bar 321 is set so that the card limiting groove 33 can be filled by the sliding bar 321 when the cable is not inserted, so that when the ladder groove is embedded in the table 422 and contacts , there will be no phenomenon of being scratched by the limited card slot 33.

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  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Mechanical Coupling Of Light Guides (AREA)

Abstract

一种光纤插头连接器集成装置,包括用于插入线缆的插导壳(1),插导壳(1)内设有线缆插孔(2),线缆插孔(2)内连接有引导束端机构(3),引导束端机构(3)上连接有位置定点机构(4),通过引导束端机构(3),实现弯曲方向的顺势引导,以降低弯曲力对线缆的损伤,从而提高设备使用寿命,具体实施时,当插入插导壳(1)内的线缆被外界拉扯力拉动弯曲后,引导束端机构(3)的一端沿着线缆滑动并包裹在线缆端部,且引导束端机构(3)以另一端为转动支点引导带动线缆端部顺着拉扯力方向偏转,直至引导束端机构(3)带着线缆端部偏转至平行于外界拉扯力为止,再通过位置定点机构(4)固定住位置。

Description

一种光纤插头连接器集成装置
本申请要求在2021年12月01日提交中国专利局、申请号为202111473819.6的中国专利申请的优先权,该申请的全部内容通过引用结合在本申请中。
技术领域
本申请涉及插头连接器技术领域,具体涉及一种光纤插头连接器集成装置。
背景技术
光纤连接器,是光纤与光纤之间进行可拆卸(活动)连接的器件,它把光纤的两个端面精密对接起来,以使发射光纤输出的光能量能最大限度地耦合到接收光纤中去,并使由于其介入光链路而对系统造成的影响减到最小,这是光纤连接器的基本要求。在一定程度上,光纤连接器影响了光传输系统的可靠性和各项性能。
相关技术,如申请号为CN202022166498.2的专利文献,其公开了一种光纤连接器,其通过卡钩对卡环施加的弹性拉力增加了光纤连接器壳体和插头壳体连接后的抗拉强度,简化了光纤连接器的操作步骤;同时设置的拉簧可根据实际需求进行更换,灵活性高;通过弹性胶套对光缆的束紧力,减小了光缆连接松动脱落的可能。
但上述操作在遇到连接器端部的线缆存在较大弯曲时却存在着局限性,例如当连接器连接好线缆时,一旦线缆与连接器之间的连接处存在较大的弯曲力,便极易使线缆端部表面被拉扯破裂,严重时甚至会使线缆端部断裂,极大地降低了线缆的使用寿命。
因此,相关技术中的光纤插头连接器集成装置,其无法解决线缆与连接器之间由于较大弯曲导致线缆使用寿命降低的问题。
发明内容
本申请的目的在于提供一种光纤插头连接器集成装置,以解决相关技术中线缆与连接器之间由于较大弯曲导致线缆使用寿命降低的技术问题。
为解决上述技术问题,本申请具体提供下述技术方案:
一种光纤插头连接器集成装置,包括用于插入线缆的插导壳,所述插导壳内设有线缆插孔,所述线缆插孔内连接有引导束端机构,所述引导束端机构上连接有位置定点机构;
所述引导束端机构能够包裹住线缆端部并引导带动线缆端部在线缆插孔内偏转;所述位置定点机构能够在所述引导束端机构偏转时进行实时位置固定;
在线缆插入插导壳内后,所述引导束端机构的一端沿着线缆侧壁滑动直至包裹在线缆端部侧壁为止;当插入插导壳内的线缆被外界拉扯力拉动弯曲时,所述引导束端机构以另一端为转动支点引导带动线缆端部顺着拉扯力方向偏转,直至所述引导束端机构带着线缆端部偏转至平行于外界拉扯力为止,再通过所述位置定点机构固定住位置。
作为本申请的一种方案,所述引导束端机构包括用于卡嵌住线缆端部的偏转柱套,所述偏转柱套的一端与所述线缆插孔内壁转动连接,且所述偏转柱套的另一端滑动连接有滑动包裹架,所述偏转柱套的侧壁开设有限卡槽,所述限卡槽能够对所述滑动包裹架限位,所述滑动包裹架能够在线缆端部插入偏转柱套后沿着限卡槽滑动直至包裹在线缆端部侧壁为止;
在线缆端部插入偏转柱套时,所述滑动包裹架沿着限卡槽内壁滑动直至包裹在线缆端部侧壁为止;在所述线缆被外界拉扯力拉动弯曲时,所述偏转柱套以自身端部为转动支点引导带动线缆端部顺着拉扯力方向偏转直至线缆端部偏转至平行于外界拉扯力为止。
作为本申请的一种方案,所述线缆插孔的两端均设置有倾斜通过槽;所述位置定点机构包括与所述倾斜通过槽内侧壁连接的固定卡位片,所述固定卡位片上连接有多个定点弹条,所述定点弹条能够紧贴偏转柱套侧壁并在所述滑动包裹架沿限卡槽滑动至包裹住线缆端部后卡入限卡槽。
作为本申请的一种方案,所述插导壳内设置有与线缆插孔内壁连接的活动导线,且所述插导壳内壁开设有隐藏槽,所述隐藏槽内安装有弹性块,所述弹性块能够推动活动导线进入所述隐藏槽,所述活动导线的端部与所述偏转柱套连接;
在所述偏转柱套带动线缆偏转时,所述偏转柱套带动所述活动导线沿所述线缆插孔内壁滑动,同时滑动的所述活动导线推动挤压所述弹性块,以使活动导线伸出所述线缆插孔的长度增大。
作为本申请的一种方案,所述活动导线包括光纤通道,所述光纤通道的侧壁套接有柔性包裹套,所述柔性包裹套的外侧壁安装有与弹性块连接的带动环,所述隐藏槽的内壁开设有环体滑槽,所述环体滑槽能够引导带动环活动以防止带动环沿线缆插孔内壁滑动,所述柔性包裹套的端部安装有与偏转柱套靠近插导壳一端连接的牵引拉套;
在所述偏转柱套带动线缆偏转时,偏转柱套的转动支点会逐渐拉动所述牵 引拉套偏转,并通过活动的牵引拉套带动拉直光纤通道,以增大光纤通道的伸出长度;在牵引拉套拉直的过程中,柔性包裹套会引导带动环沿环体滑槽并推动压缩弹性块。
作为本申请的一种方案,所述偏转柱套包括端部与倾斜通过槽内壁转动连接的带动柱,所述限卡槽设置在带动柱的侧壁,所述光纤通道贯穿带动柱并延伸至带动柱内,所述牵引拉套安装在带动柱靠近倾斜通过槽的一端,所述限卡槽内设置有阶梯槽,所述阶梯槽能对定点弹条进行限位。
作为本申请的一种方案,所述滑动包裹架包括与所述限卡槽连接的滑动移条,所述滑动移条的一端与所述限卡槽连接,且所述滑动移条能够封挡住限卡槽以预防定点弹条嵌入阶梯槽,所述带动柱的侧壁套接有与滑动移条连接的推移簧,所述推移簧能够推动带动柱沿着限卡槽滑动,所述带动柱的另一端连接有包裹夹紧环;所述定点弹条的两端均设置有倾斜面,所述带动柱能够沿着倾斜面将定点弹条推出限卡槽。
作为本申请的一种方案,所述滑动移条靠近限卡槽的一侧表面开设有曲嵌斜槽,所述曲嵌斜槽内连接有弹性嵌位柱,所述插导壳表面与弹性嵌位柱对应位置处开设有挡位孔,所述挡位孔能够对弹性嵌位柱进行限位以将滑动移条的位置固定,所述挡位孔内安装有推动柱,所述推动柱能够推动弹性嵌位柱沿曲嵌斜槽滑动将被限制住的滑动移条放开。
作为本申请的一种方案,所述固定卡位片上开设有防抖动槽,所述防抖动槽连接有嵌入条,所述嵌入条的一端与防抖动槽内壁连接,且所述嵌入条的另一端安装有套接在带动柱侧壁的定体环,所述定体环能够对推移簧进行限位;所述柔性包裹套的外侧壁安装有多个凸台,所述凸台能够预防柔性包裹套弯折。
作为本申请的一种方案,所述定点弹条包括与固定卡位片连接的弹性片,所述定点弹条包括与固定卡位片连接的弹性片,所述弹性片上安装有梯槽嵌入台,所述梯槽嵌入台的长度数值不小于限卡槽与阶梯槽的深度数值之和,所述滑动移条的厚度数值等于限卡槽的深度数值。
本申请与相关技术相比较具有如下有益效果:
本申请可通过引导束端机构,实现弯曲方向的顺势引导,以降低弯曲力对线缆的损伤,从而提高设备使用寿命,其具体实施时,当插入插导壳内的线缆被外界拉扯力拉动弯曲后,引导束端机构的一端沿着线缆滑动并包裹在线缆端部,且引导束端机构以另一端为转动支点引导带动线缆端部顺着拉扯力方向偏转,直至引导束端机构带着线缆端部偏转至平行于外界拉扯力为止,再通过位置定点机构固定住位置。
附图说明
图1为本申请实施例中整体结构示意图;
图2为本申请实施例中滑动移条侧视纵截面结构示意图;
图3为本申请实施例中定点弹条结构示意图;
图4为本申请实施例中固定卡位片结构示意图。
图中的标号分别表示如下:
1-插导壳;2-线缆插孔;3-引导束端机构;4-位置定点机构;
11-活动导线;12-弹性块;13-隐藏槽;
111-光纤通道;112-柔性包裹套;113-带动环;114-环体滑槽;115-牵引拉套;116-凸台;21-倾斜通过槽;
31-偏转柱套;32-滑动包裹架;33-限卡槽;
311-带动柱;312-阶梯槽;
321-滑动移条;322-推移簧;323-包裹夹紧环;
3211-曲嵌斜槽;3212-弹性嵌位柱;3213-挡位孔;3214-推动柱;
41-固定卡位片;42-定点弹条;
411-防抖动槽;412-嵌入条;413-定体环;421-弹性片;422-梯槽嵌入台。
具体实施方式
为使得本申请的申请目的、特征、优点能够更加的明显和易懂,下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,下面所描述的实施例仅仅是本申请一部分实施例,而非全部的实施例。
下面结合附图并通过具体实施方式来进一步说明本申请的技术方案。
在本申请的描述中,需要理解的是,术语“上”、“下”、“顶”、“底”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请的限制。
如图1所示,本申请提供了一种光纤插头连接器集成装置,包括用于插入线缆的插导壳1,插导壳1内设有线缆插孔2,线缆插孔2内连接有引导束端机构3,引导束端机构3上连接有位置定点机构4;
引导束端机构3能够包裹住线缆端部并引导带动线缆端部在线缆插孔2内偏转;位置定点机构4能够在引导束端机构3偏转时进行实时位置固定;
本申请可通过引导束端机构3,实现弯曲方向的顺势引导,以降低弯曲力对线缆的损伤,从而提高设备使用寿命,其实施时,在线缆插入插导壳1内后,引导束端机构3的一端沿着线缆侧壁滑动直至包裹在线缆端部侧壁为止;当插入插导壳1内的线缆被外界拉扯力拉动弯曲时,引导束端机构3以另一端为转动支点引导带动线缆端部顺着拉扯力方向偏转,直至引导束端机构3带着线缆端部偏转至平行于外界拉扯力为止,再通过位置定点机构4固定住位置。
本申请较相关技术,在使用过程中能存放保证连接的线缆在使用时不会出现端部被外界力作用从而出现断裂现象,同时在使用时还能确保线缆在使用时不会出现将连接器内部光纤通道拉扯断裂的情况。
如图1所示,引导束端机构3包括用于卡嵌住线缆端部的偏转柱套31,偏转柱套31的一端与线缆插孔2内壁转动连接,且偏转柱套31的另一端滑动连接有滑动包裹架32,偏转柱套31的侧壁开设有限卡槽33,限卡槽33能够对滑动包裹架32限位,滑动包裹架32能够在线缆端部插入偏转柱套31后沿着限卡槽33滑动直至包裹在线缆端部侧壁为止;
在线缆端部插入偏转柱套31时,滑动包裹架32沿着限卡槽33内壁滑动直至包裹在线缆端部侧壁为止;在线缆被外界拉扯力拉动弯曲时,偏转柱套31以自身端部为转动支点引导带动线缆端部顺着拉扯力方向偏转直至线缆端部偏转至平行于外界拉扯力为止。
该引导束端机构3能够实现线缆受到外界力作用时,实现线缆端部的包裹以及拉扯力的顺势引导,在两重防护下,以预防设备使用寿命降低的情况发生,其具体实施时,在线缆插入偏转柱套31后,滑动包裹架32会被触发并沿着限卡槽33内壁滑动直至包裹在线缆端部侧壁为止,如此便实现了线缆端部的包裹防护;而在线缆被外界拉扯力拉动弯曲时,偏转柱套31能够以自身端部为转动支点引导带动线缆端部顺着拉扯力方向偏转,直至偏转柱套31偏转至平行于拉扯力方向,如此操作可以极大地降低线缆端部的受力,使得线缆的使用寿命不会降低。
如图1所示,线缆插孔2的两端均设置有倾斜通过槽21;位置定点机构4包括与倾斜通过槽21内侧壁连接的固定卡位片41,固定卡位片41上连接有多个定点弹条42,定点弹条42能够紧贴偏转柱套31侧壁并在滑动包裹架32沿限卡槽33滑动至包裹住线缆端部后卡入限卡槽33。
该位置定点机构4能够实现对偏转柱套31和线缆端部就行实时位置固定,从 而避免出现偏转柱套31能随意活动的现象,其具体实施时,一旦偏转柱套31发生偏转,之后,固定卡位片41可对偏转的偏转柱套31进行限位,以使偏转柱套31不会出现抖动现象,之后定点弹条42会在滑动包裹架32沿限卡槽33滑动至包裹住线缆端部后卡入限卡槽33,以对偏转柱套31定位。
如图1所示,插导壳1内设置有与线缆插孔2内壁连接的活动导线11,且插导壳1内壁开设有隐藏槽13,隐藏槽13内安装有弹性块12(可选择橡胶或者海绵等弹性材料),弹性块12能够推动活动导线11进入隐藏槽13,活动导线11的端部与偏转柱套31连接;
在偏转柱套31带动线缆偏转时,偏转柱套31带动活动导线11沿线缆插孔2内壁滑动,同时滑动的活动导线11推动挤压弹性块12,以使活动导线11伸出线缆插孔2的长度增大。
为了避免再偏转柱套31偏转过程中出现光纤连接不正常的现象,故在偏转柱套31带动线缆偏转时,偏转柱套31可带动活动导线11沿线缆插孔2内壁滑动,同时滑动的活动导线11推动挤压弹性块12,以使活动导线11伸出线缆插孔2的长度增大。
如图1所示,活动导线11包括光纤通道111,光纤通道111的侧壁套接有柔性包裹套112,柔性包裹套112的外侧壁安装有与弹性块12连接的带动环113,隐藏槽13的内壁开设有环体滑槽114,环体滑槽114能够引导带动环113活动以防止带动环113沿线缆插孔2内壁滑动,柔性包裹套112的端部安装有与偏转柱套31靠近插导壳1一端连接的牵引拉套115;
在偏转柱套31带动线缆偏转时,偏转柱套31的转动支点会逐渐拉动牵引拉套115偏转,并通过活动的牵引拉套115带动拉直光纤通道111,以增大光纤通道111的伸出长度;在牵引拉套115拉直的过程中,柔性包裹套112会引导带动环113沿环体滑槽114并推动压缩弹性块12。
本实施例中,插导壳1的两端均可连接线缆端部,此处的线缆可以是光纤线缆。
为了使活动导线11再活动过程中不会出现被拉断导致光纤连接不正常的现象,其实施时,在偏转柱套31带动线缆偏转的过程中,偏转柱套31的转动支点会逐渐拉动牵引拉套115偏转,即牵引拉套115的端部会受力,使得柔性包裹套112受力逐渐被拉直,而光纤通道111却不会受到影响,如此便可通过活动的牵引拉套115带动拉直光纤通道111,以增大光纤通道111的伸出长度(即光纤通道111是被动拉直的,其不会直接受到拉直力,如此可以充分的进行伸缩动作);而在牵引拉套115拉直的过程中,柔性包裹套112会引导带动环113沿环体滑槽114 并推动压缩弹性块12,如此便可以使柔性包裹套112具备复位能力,使得弹性块12再不受压的情况下可以快速复位并推动柔性包裹套112弯曲收缩。
如图1和图3所示,偏转柱套31包括端部与倾斜通过槽21内壁转动连接的带动柱311,限卡槽33设置在带动柱311的侧壁,光纤通道111贯穿带动柱311并延伸至带动柱311内,牵引拉套115安装在带动柱311靠近倾斜通过槽21的一端,限卡槽33内设置有阶梯槽312,阶梯槽312能对定点弹条42进行限位。
本实施例中,以图1为例,偏转柱套31再倾斜通过槽21内的偏转角度控制在顺时针90度和逆时针90度,如此设置能充分保证偏转柱套31再受到较大的斜向力的拉扯时不会出现无法偏转的现象,且偏转柱套31的偏转前提是线缆端部已插入了带动柱311内。
该偏转柱套31能配合定点弹条42进行实时位置限制,其具体实施时,偏转的带动柱311会带动牵引拉套115活动,而活动的牵引拉套115会拉动柔性包裹套112,使得柔性包裹套112逐渐拉直,而在带动柱311活动过程中,阶梯槽312会逐渐接触不同位置的定点弹条42,并将不同的定点弹条42依次卡入阶梯槽312,以图1为例,当带动柱311逆时针偏转时,带动柱311侧壁的阶梯槽312会对逆时针方向的多个定点弹条42进行限位。
如图1和图2所示,滑动包裹架32包括与限卡槽33连接的滑动移条321,滑动移条321的一端与限卡槽33连接,且滑动移条321能够封挡住限卡槽33以预防定点弹条42嵌入阶梯槽312,带动柱311的侧壁套接有与滑动移条321连接的推移簧322,推移簧322能够推动带动柱311沿着限卡槽33滑动,带动柱311的另一端连接有包裹夹紧环323;定点弹条42的两端均设置有倾斜面421,带动柱311能够沿着倾斜面421将定点弹条42推出限卡槽33。
该滑动包裹架32能够再线缆插入后沿着线缆端部活动,使得线缆端部的受力区域延后,并通过滑动包裹架32来增大受力区域,由此来降低外界力对线缆的影响,其具体实施时,一旦线缆端部插入带动柱311内(该带动柱311可看作是一个光纤插头和偏转柱的组成部件),则滑动移条321会被放开限制,则推移簧322会推着滑动移条321沿限卡槽33滑动,直至推移簧322充分被松开为止(再未插入线缆时,推移簧322处于压缩状态),之后,滑动移条321会推着包裹夹紧环323沿着线缆的侧壁滑动,此时包裹夹紧环323包裹在线缆端部侧壁,对线缆进行更牢固的固定,同时将线缆端部的受力点延后,且滑动的滑动移条321还能使定点弹条42不再受到阻挡,即滑动移条321不工作时,是卡在限卡槽33内并挡住定点弹条42,而一旦滑动移条321工作,则限卡槽33不再被封挡,定点弹条42可直接嵌入限卡槽33并卡嵌入阶梯槽312已实现定位的目的。
而当操作者推动包裹夹紧环323复位时,滑动移条321也会被推动,一旦滑 动移条321接触了倾斜面421,则滑动移条321便能沿着倾斜面421将定点弹条42推出限卡槽33,使得带动柱311可快速复位,同时线缆也可快速拔出。
如图1和图2所示,滑动移条321靠近限卡槽33的一侧表面开设有曲嵌斜槽3211,曲嵌斜槽3211内连接有弹性嵌位柱3212,插导壳1表面与弹性嵌位柱3212对应位置处开设有挡位孔3213,挡位孔3213能够对弹性嵌位柱3212进行限位以将滑动移条321的位置固定,挡位孔3213内安装有推动柱3214,推动柱3214能够推动弹性嵌位柱3212沿曲嵌斜槽3211滑动将被限制住的滑动移条321放开。
滑动移条321可由弹性柱(如弹簧)和卡钳台组成。
该滑动移条321可实现加固线缆插接以及辅助包裹夹紧环323固定的动作,其实施时,一旦线缆插入,之后,线缆端部会顶起推动柱3214,使得推动柱3214沿着挡位孔3213滑动,直至接触滑动移条321,然后滑动移条321便会受到来自推动柱3214的推力从而沿着曲嵌斜槽3211内壁滑动,并被压缩,本实施例中,曲嵌斜槽3211呈倾斜状,受力后会直接被推入曲嵌斜槽3211内部,而推动柱3214的高度不大于挡位孔3213的深度,使得滑动移条321的移动不受影响。
如图1、图3和图4所示,固定卡位片41上开设有防抖动槽411,防抖动槽411连接有嵌入条412,嵌入条412的一端与防抖动槽411内壁连接,且嵌入条412的另一端安装有套接在带动柱311侧壁的定体环413,定体环413能够对推移簧322进行限位;柔性包裹套112的外侧壁安装有多个凸台116,凸台116能够预防柔性包裹套112弯折。
当带动柱311偏转时,会直接带动定体环413活动(该定体环413固定安装再带动柱311上,用以固定嵌入条412和推移簧322),之后定体环413会引导嵌入条412沿着防抖动槽411滑动以实现防抖动的动作,而凸台116的设置能够预防柔性包裹套112弯折,即带动柱311偏转时,柔性包裹套112的端部也会弯曲,为了防止柔性包裹套112弯曲过度导致光纤受到影响,故通过凸台116对弯曲程度进行限制。
如图3所示,定点弹条42包括与固定卡位片41连接的弹性片421,弹性片421上安装有梯槽嵌入台422,梯槽嵌入台422的长度数值不小于限卡槽33与阶梯槽312的深度数值之和,滑动移条321的厚度数值等于限卡槽33的深度数值。
弹性片421用以推着梯槽嵌入台422能够充分进入阶梯槽312且不会出现晃动现象,而设置梯槽嵌入台422的长度是为了使阶梯槽312能被充分充满,能够预防梯槽嵌入台422嵌入不充分导致带动柱311抖动,而设置滑动移条321的厚度是为了使限卡槽33能够再线缆不插入时,会被滑动移条321填充,使得梯槽嵌入台422接触时,不会出现被限卡槽33剐蹭现象。
需要说明的是,在本文中,诸如第一和第二等之类的关系术语仅仅用来将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者设备所固有的要素。

Claims (10)

  1. 一种光纤插头连接器集成装置,包括用于插入线缆的插导壳(1),所述插导壳(1)内设有线缆插孔(2),所述线缆插孔(2)内连接有引导束端机构(3),所述引导束端机构(3)上连接有位置定点机构(4);
    所述引导束端机构(3)能够包裹住线缆端部并引导带动线缆端部在线缆插孔(2)内偏转;所述位置定点机构(4)能够在所述引导束端机构(3)偏转时进行实时位置固定;
    在线缆插入插导壳(1)内后,所述引导束端机构(3)的一端沿着线缆侧壁滑动直至包裹在线缆端部侧壁为止;当插入插导壳(1)内的线缆被外界拉扯力拉动弯曲时,所述引导束端机构(3)以另一端为转动支点引导带动线缆端部顺着拉扯力方向偏转,直至所述引导束端机构(3)带着线缆端部偏转至平行于外界拉扯力为止,再通过所述位置定点机构(4)固定住位置。
  2. 根据权利要求1所述的一种光纤插头连接器集成装置,其中,所述引导束端机构(3)包括用于卡嵌住线缆端部的偏转柱套(31),所述偏转柱套(31)的一端与所述线缆插孔(2)内壁转动连接,且所述偏转柱套(31)的另一端滑动连接有滑动包裹架(32),所述偏转柱套(31)的侧壁开设有限卡槽(33),所述限卡槽(33)能够对所述滑动包裹架(32)限位,所述滑动包裹架(32)能够在线缆端部插入偏转柱套(31)后沿着限卡槽(33)滑动直至包裹在线缆端部侧壁为止;
    在线缆端部插入偏转柱套(31)时,所述滑动包裹架(32)沿着限卡槽(33)内壁滑动直至包裹在线缆端部侧壁为止;在所述线缆被外界拉扯力拉动弯曲时,所述偏转柱套(31)以自身端部为转动支点引导带动线缆端部顺着拉扯力方向偏转直至线缆端部偏转至平行于外界拉扯力为止。
  3. 根据权利要求2所述的一种光纤插头连接器集成装置,其中,所述线缆插孔(2)的两端均设置有倾斜通过槽(21);所述位置定点机构(4)包括与所述倾斜通过槽(21)内侧壁连接的固定卡位片(41),所述固定卡位片(41)上连接有多个定点弹条(42),所述定点弹条(42)能够紧贴偏转柱套(31)侧壁并在所述滑动包裹架(32)沿限卡槽(33)滑动至包裹住线缆端部后卡入限卡槽(33)。
  4. 根据权利要求3所述的一种光纤插头连接器集成装置,其中,所述插导壳(1)内设置有与线缆插孔(2)内壁连接的活动导线(11),且所述插导壳(1)内壁开设有隐藏槽(13),所述隐藏槽(13)内安装有弹性块(12),所述弹性块(12)能够推动活动导线(11)进入所述隐藏槽(13),所述活动导线(11)的端部与所述偏转柱套(31)连接;
    在所述偏转柱套(31)带动线缆偏转时,所述偏转柱套(31)带动所述活动导线(11)沿所述线缆插孔(2)内壁滑动,同时滑动的所述活动导线(11)推动挤压所述弹性块(12),以使活动导线(11)伸出所述线缆插孔(2)的长度增大。
  5. 根据权利要求4所述的一种光纤插头连接器集成装置,其中,所述活动导线(11)包括光纤通道(111),所述光纤通道(111)的侧壁套接有柔性包裹套(112),所述柔性包裹套(112)的外侧壁安装有与弹性块(12)连接的带动环(113),所述隐藏槽(13)的内壁开设有环体滑槽(114),所述环体滑槽(114)能够引导带动环(113)活动以防止带动环(113)沿线缆插孔(2)内壁滑动,所述柔性包裹套(112)的端部安装有与偏转柱套(31)靠近插导壳(1)一端连接的牵引拉套(115);
    在所述偏转柱套(31)带动线缆偏转时,偏转柱套(31)的转动支点会逐渐拉动所述牵引拉套(115)偏转,并通过活动的牵引拉套(115)带动拉直光纤通道(111),以增大光纤通道(111)的伸出长度;在牵引拉套(115)拉直的过程中,柔性包裹套(112)会引导带动环(113)沿环体滑槽(114)并推动压缩弹性块(12)。
  6. 根据权利要求5所述的一种光纤插头连接器集成装置,其中,所述偏转柱套(31)包括端部与倾斜通过槽(21)内壁转动连接的带动柱(311),所述限卡槽(33)设置在带动柱(311)的侧壁,所述光纤通道(111)贯穿带动柱(311)并延伸至带动柱(311)内,所述牵引拉套(115)安装在带动柱(311)靠近倾斜通过槽(21)的一端,所述限卡槽(33)内设置有阶梯槽(312),所述阶梯槽(312)能对定点弹条(42)进行限位。
  7. 根据权利要求6所述的一种光纤插头连接器集成装置,其中,所述滑动包裹架(32)包括与所述限卡槽(33)连接的滑动移条(321),所述滑动移条(321)的一端与所述限卡槽(33)连接,且所述滑动移条(321)能够封挡住限卡槽(33)以预防定点弹条(42)嵌入阶梯槽(312),所述带动柱(311)的侧壁套接有与滑动移条(321)连接的推移簧(322),所述推移簧(322)能够推动带动柱(311)沿着限卡槽(33)滑动,所述带动柱(311)的另一端连接有包裹夹紧环(323);所述定点弹条(42)的两端均设置有倾斜面(421),所述带动柱(311)能够沿着倾斜面(421)将定点弹条(42)推出限卡槽(33)。
  8. 根据权利要求7所述的一种光纤插头连接器集成装置,其中,所述滑动移条(321)靠近限卡槽(33)的一侧表面开设有曲嵌斜槽(3211),所述曲嵌斜槽(3211)内连接有弹性嵌位柱(3212),所述插导壳(1)表面与弹性嵌位柱(3212)对应位置处开设有挡位孔(3213),所述挡位孔(3213)能够对弹 性嵌位柱(3212)进行限位以将滑动移条(321)的位置固定,所述挡位孔(3213)内安装有推动柱(3214),所述推动柱(3214)能够推动弹性嵌位柱(3212)沿曲嵌斜槽(3211)滑动将被限制住的滑动移条(321)放开。
  9. 根据权利要求7所述的一种光纤插头连接器集成装置,其中,所述固定卡位片(41)上开设有防抖动槽(411),所述防抖动槽(411)连接有嵌入条(412),所述嵌入条(412)的一端与防抖动槽(411)内壁连接,且所述嵌入条(412)的另一端安装有套接在带动柱(311)侧壁的定体环(413),所述定体环(413)能够对推移簧(322)进行限位;所述柔性包裹套(112)的外侧壁安装有多个凸台(116),所述凸台(116)能够预防柔性包裹套(112)弯折。
  10. 根据权利要求9所述的一种光纤插头连接器集成装置,其中,所述定点弹条(42)包括与固定卡位片(41)连接的弹性片(421),所述弹性片(421)上安装有梯槽嵌入台(422),所述梯槽嵌入台(422)的长度数值不小于限卡槽(33)与阶梯槽(312)的深度数值之和,所述滑动移条(321)的厚度数值等于限卡槽(33)的深度数值。
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CN113597573A (zh) * 2019-03-26 2021-11-02 3M创新有限公司 光学连接器组件
CN111679374A (zh) * 2020-06-12 2020-09-18 苏州光卓通信技术有限公司 一种可弯折光纤连接器
CN112051645A (zh) * 2020-10-12 2020-12-08 南京华脉科技股份有限公司 一种光纤活动连接器
CN113064237A (zh) * 2021-04-03 2021-07-02 张东林 光纤光缆集束连接器
CN113885139A (zh) * 2021-12-01 2022-01-04 广东电网有限责任公司东莞供电局 一种光纤插头连接器集成装置

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CN117629429A (zh) * 2023-11-30 2024-03-01 北京锦驰泰达科技有限公司 一种配电用的智能测温端子
CN117629429B (zh) * 2023-11-30 2024-05-03 北京锦驰泰达科技有限公司 一种配电用的智能测温端子

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