CN205621981U - Connection structure of built on stilts optical phase conductor and conventional wire - Google Patents

Connection structure of built on stilts optical phase conductor and conventional wire Download PDF

Info

Publication number
CN205621981U
CN205621981U CN201620181048.1U CN201620181048U CN205621981U CN 205621981 U CN205621981 U CN 205621981U CN 201620181048 U CN201620181048 U CN 201620181048U CN 205621981 U CN205621981 U CN 205621981U
Authority
CN
China
Prior art keywords
built
oppc
stilts
conductor
conventional wires
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201620181048.1U
Other languages
Chinese (zh)
Inventor
齐道坤
刘湘莅
郭新菊
陈晨
席小娟
梁晟
杨敏
郭正位
王文峰
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
State Grid Corp of China SGCC
Economic and Technological Research Institute of State Grid Henan Electric Power Co Ltd
Original Assignee
State Grid Corp of China SGCC
Economic and Technological Research Institute of State Grid Henan Electric Power Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by State Grid Corp of China SGCC, Economic and Technological Research Institute of State Grid Henan Electric Power Co Ltd filed Critical State Grid Corp of China SGCC
Priority to CN201620181048.1U priority Critical patent/CN205621981U/en
Application granted granted Critical
Publication of CN205621981U publication Critical patent/CN205621981U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Mechanical Coupling Of Light Guides (AREA)

Abstract

The utility model relates to a connection structure of built on stilts optical phase conductor and conventional wire belongs to electric line technical field. The utility model discloses a make somebody a mere figurehead optical phase conductor photoelectric separation's circuit connection structure, when the wire that depends on is drawn to the optic fibre in built on stilts optical phase conductor, realize the electrical connection between built on stilts optical phase conductor and the conventional wire, the conductor part after -separating of optic fibre and place composite conductor among the built on stilts optical phase conductor of solve, optical phase conductor's conductor part and the electrical connection problem between the conventional wire.

Description

Built on stilts OPPC and the attachment structure of conventional wires
Technical field
The utility model relates to built on stilts OPPC and the attachment structure of conventional wires, belongs to Electric line technical field.
Background technology
Built on stilts OPPC be conventional wires internal layer strand preparative layer in utilize one built-in The sub-thread aluminium alloy wire of optical fiber substitutes the compound wire of conventional aluminum steel, in order to realize transmission and distribution line The electrical wiring on road needs, and makes somebody a mere figurehead the optical fiber unit in OPPC from composite guide at optical fiber After line is separated, need to realize optical fiber place wire (built on stilts OPPC) with often Electrical connection between rule wire, i.e. ensures while photodetachment that the normal of circuit electrically connects Connecing, owing to built on stilts OPPC is NEW TYPE OF COMPOSITE wire, circuit during this photodetachment connects Line method there is no precedent in conventional power transmission and distribution technical field.
Utility model content
The purpose of this utility model is to provide a kind of built on stilts OPPC and conventional wires Attachment structure, isolates in optical fiber unit to solve built on stilts OPPC from compound wire After Laiing, the connection of built on stilts electric circuit between OPPC and conventional wires, i.e. at light Ensure the normal electrical connection of circuit while electrically separated.
The technical solution of the utility model is:
A kind of built on stilts OPPC and the attachment structure of conventional wires, make somebody a mere figurehead optical fiber compound phase Set by insulator mounting frame between line and conventional wires;The end of described built on stilts OPPC Portion is stripped out conductor part and optical fiber, and conductor part is led by connecting gold utensil one section of connection of connection Body one end;The end of described conventional wires connects another of described connection conductor by connection gold utensil End.
Outside the conductor part that the end of described built on stilts OPPC is stripped out includes successively Layer strand preparative layer and internal layer strand preparative layer;Outer layer strand preparative layer is for being connected gold utensil connection, internal layer with described Strand preparative layer and optical fiber connect fiber optic closure.
Described connection conductor is the conventional wires set up.
Described connection gold utensil is parallel groove clamp.
Structure of the present utility model, what in built on stilts OPPC, optical fiber extraction was depended on leads While line, it is achieved built on stilts electrical connection between OPPC and conventional wires, solve After in built on stilts OPPC, optical fiber separates with the conductor part of place compound wire, optical fiber Electrical connection problem between the conductor part of composition phase conductor and conventional wires.Of the present utility model Method, implements convenient and swift, good connecting effect.
Brief description
Fig. 1 is step one design sketch of the utility model embodiment;
Fig. 2 is the step 2 design sketch of the utility model embodiment;
Fig. 3 is the step 3 design sketch of the utility model embodiment;
Fig. 4 is the step 4 design sketch of the utility model embodiment;
Fig. 5 is the step 5 design sketch of the utility model embodiment.
Detailed description of the invention
Below in conjunction with the accompanying drawings detailed description of the invention of the present utility model is further described.
The attachment structure being built on stilts OPPC as shown in Figure 5 with conventional wires completes After design sketch.The 11st, the end of built on stilts OPPC 1 is stripped out outer layer strand preparative layer Internal layer strand preparative layer 12 and optical fiber 13, outer layer strand preparative layer 11 is set up by connecting gold utensil 4 connection One end of wire 3;Wire 3 is set up by connecting gold utensil 5 connection in the end of conventional wires 2 The other end.
Internal layer strand preparative layer 12 and optical fiber 13 can also connect fiber optic closure, and fiber optic closure is drawn Optical fiber 7.Connect gold utensil and the 4th, 5 be folder ditch wire clamp.
After built on stilts OPPC completes with conventional wires installation erection, built on stilts optical fiber compound phase Thread end remains for photodetachment in advance and connects the length of conventional wires;Conventional wires end is reserved For connecting the length of built on stilts OPPC.
During connection, built on stilts OPPC is separated conductor part and optical fiber;Use one even Connect conductor so that it is one end connects described conductor part by connecting gold utensil, and the other end is by connecting Gold utensil connects the end of described conventional wires;Thus complete built on stilts OPPC photodetachment Connection with conventional wires afterwards.
After completion of the above process, the optical fiber that built on stilts OPPC separates can also be increased Connect the step of fiber optic closure.
Above-mentioned connection conductor generally uses a conventional wires set up, this root conventional wires Length satisfied electrical connection while should meet and around close between grounding body minimum The leakage distance not less than one times for the clearance, should be multiple with built on stilts optical fiber with the two ends of conventional wires Close same in satisfied electrical connection of the connected mode between the conventional wires that phase line and needs continue When, the optical fiber in built on stilts OPPC should not made to receive damage.
Particularly, whole connection procedure can be divided into five steps:
Step one, such as Fig. 1, first, the end at built on stilts OPPC completes to set up After installation retain certain length buttock line 1, buttock line length should meet built on stilts OPPC with It is electrically connected required connecting length, built on stilts OPPC between conventional wires 2 and continue The length sum that continues needed for regular length between Tou and fibre junction.
Step 2, such as Fig. 2, built on stilts OPPC buttock line 1 end is separated outer layer strand system Layer the 11st, internal layer strand preparative layer 12 and optical fiber 13;The length of the wire internal layer strand preparative layer 12 at optical fiber 13 place Degree and optical fiber 13 length, should meet the requirement that optical cable connecting box 6 installs respectively and meet optical cable and connect The fiber lengths needing when continuous.
Step 3, such as Fig. 3, need the conventional wires continuing should retain after completing to set up installation The buttock line 2 of certain length, the length of buttock line should meet the needs that continue of an attached conventional wires 3.
Step 4, such as Fig. 4, built on stilts OPPC and need the conventional wires that continues it Between an another attached conventional wires 3, the two ends of another attached conventional wires 3 are respectively by least one even The 4th, 5 connect gold utensil and (the present embodiment uses parallel groove clamps) and built on stilts OPPC and normal Rule wire realizes electrical connection.
Step 5, such as Fig. 5, described internal layer strand preparative layer 12 is connected fibre junction with optical fiber 13 Box 6.
It is presented herein below in implementation process with regard to concrete ins and outs in ground such as buttock line length, connected modes:
The buttock line length that the end of built on stilts OPPC retains after completing to set up installation should Meet and built on stilts between OPPC and conventional wires, be electrically connected required connecting length, frame Empty OPPC and the regular length continuing between head and the length that continues needed for fibre junction Degree sum, the end of a length of built on stilts OPPC of buttock line to pre-hinged strain clamp clamps Length between the stress point of built on stilts OPPC outer layer strand preparative layer.
The conductor outer layer being retained after separating the incidental optical fiber of built on stilts OPPC The length of strand preparative layer should meet the length required for electrical connection, and this length of built on stilts optical fiber is combined The truncated end of the outer layer strand preparative layer of phase conductor is multiple to the built on stilts optical fiber of pre-hinged strain clamp clamping Closing the length of built on stilts OPPC between the stress point of phase line outer layer strand preparative layer, this length is not The length of the connection gold utensil (parallel groove clamp) less than three times.
The wire internal layer strand preparative layer at the optical fiber place that built on stilts OPPC end separates Length should meet the requirement that optical cable connecting box is installed, this length for built on stilts OPPC with Continue the length sum that continues needed for the regular length between head and fibre junction.
The need when fiber lengths that built on stilts OPPC end separates should meet cable connection The length wanted, this length includes the weld length of optical fiber and necessary remaining cable length.
A separately attached conventional wires, its sectional area is led not less than built on stilts OPPC and routine The sectional area of line, the length of separately attached conventional wires should be according to built on stilts OPPC and routine Determining after range measurement between after wire erection, the length of separately attached conventional wires is not less than frame Empty OPPC peeling outer layer strand preparative layer end pre-hinged strain clamp side twice ditch line To the arc between the twice parallel groove clamp length of conventional wires end strain clamp side at folder length Line length, the sag of camber line should meet the requirement of associated specifications, and another attached conventional wires is installed After conductor part and around close on the minimum clearance between grounding body all no less than one Leakage distance again.
Connect gold utensil (parallel groove clamp) and answer the parallel groove clamp of form with bolts, it is impossible to adopt The connection side of damage may be caused with hydraulic pressure or detonation pressure etc. to optical fiber in built on stilts OPPC Formula.
(outer layer strand preparative layer blocks the buttock line length of parallel groove clamp built on stilts OPPC after installing End is to the length closed between the end of outer layer strand preparative layer truncated end parallel groove clamp) it is no less than one Parallel groove clamp length again, parallel groove clamp needs the buttock line length of the conventional wires continuing after installing (conventional wires end to be continued to close on conventional wires end parallel groove clamp end it Between length) be no less than the parallel groove clamp length of one times, parallel groove clamp is separately attached normal after installing The buttock line length of rule wire (end of another attached conventional wires to the parallel groove clamp end closed on it Between length) be no less than the external diameter of conventional wires of one times.

Claims (4)

1. the attachment structure of a built on stilts OPPC and conventional wires, it is characterised in that Make somebody a mere figurehead and set by insulator mounting frame between OPPC and conventional wires;Described aerial optical The end of fine composition phase conductor is stripped out conductor part and optical fiber, and conductor part is by connecting gold utensil Connect one section and connect conductor one end;The end of described conventional wires connects described by connecting gold utensil Connect the other end of conductor.
2. the company of a kind of built on stilts OPPC according to claim 1 and conventional wires Access node structure, it is characterised in that the conductor that the end of described built on stilts OPPC is stripped out Part includes outer layer strand preparative layer and internal layer strand preparative layer successively;Outer layer strand preparative layer is for being connected with described Gold utensil connects, and internal layer strand preparative layer and optical fiber connect fiber optic closure.
3. one according to claim 1 and 2 makes somebody a mere figurehead OPPC and conventional wires Attachment structure, it is characterised in that described connection conductor is the conventional wires set up.
4. one according to claim 1 and 2 makes somebody a mere figurehead OPPC and conventional wires Attachment structure, it is characterised in that described connection gold utensil is parallel groove clamp.
CN201620181048.1U 2016-03-09 2016-03-09 Connection structure of built on stilts optical phase conductor and conventional wire Active CN205621981U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620181048.1U CN205621981U (en) 2016-03-09 2016-03-09 Connection structure of built on stilts optical phase conductor and conventional wire

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620181048.1U CN205621981U (en) 2016-03-09 2016-03-09 Connection structure of built on stilts optical phase conductor and conventional wire

Publications (1)

Publication Number Publication Date
CN205621981U true CN205621981U (en) 2016-10-05

Family

ID=57034335

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620181048.1U Active CN205621981U (en) 2016-03-09 2016-03-09 Connection structure of built on stilts optical phase conductor and conventional wire

Country Status (1)

Country Link
CN (1) CN205621981U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105680262A (en) * 2016-03-09 2016-06-15 国家电网公司 Connection structure for aerial optical fiber composite phase line and conventional wire and circuit connection method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105680262A (en) * 2016-03-09 2016-06-15 国家电网公司 Connection structure for aerial optical fiber composite phase line and conventional wire and circuit connection method

Similar Documents

Publication Publication Date Title
CN102810837B (en) Intermediate splicing closure and splicing method for optical fiber composite power cable
US10094998B2 (en) Structure for directly leading down optical unit of OPPC optical fiber cable and construction method therefor
CN106486958B (en) Insulate terminal assembly
CN102656754A (en) Electrical connector with collapsible coupler
CN105680262A (en) Connection structure for aerial optical fiber composite phase line and conventional wire and circuit connection method
CN102163830B (en) Linear interconnection method and device for optical fiber composite power cable
CN103208770B (en) 110kV cable intermediate head accessory and attaching method thereof
CN205621981U (en) Connection structure of built on stilts optical phase conductor and conventional wire
CN202474798U (en) Intermediate splicing box for optical fiber composite power cable
CN105785532A (en) Large-capacity armored undersea optical fiber cable quick connecting joint box and connecting method thereof
CN2864718Y (en) Middle joint case for optical fiber composite phase wire
CN209418186U (en) Novel seabed cable filler strip
CN202121265U (en) Optical phase conductor photoelectric separating apparatus used for live-line work
CN209072035U (en) A kind of waterproof and grease proofing Wiring nose
CN2864716Y (en) Terminal joint case for optical fiber composite phase wire
CN205583173U (en) Cable connector
CN206211485U (en) A kind of roof high voltage cable plug-in and pull-off device of electric locomotive or EMUs high-voltaghe compartment
CN204030541U (en) A kind of cable built-in optical fiber transition joint
CN207517909U (en) A kind of earthing clamp
CN201069826Y (en) Connection pipe of carbon fiber compound core lead
CN203289056U (en) 110kV cable middle joint accessory
CN203983938U (en) A kind of cable intermediate joint
CN106329457A (en) Wiring fixing device for cable
CN201656385U (en) Photoelectric separation device of optical fiber composite phase line
CN105337244B (en) Attachment means

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant