CN204631340U - A kind of cable configuration being applicable to high-altitude erection - Google Patents
A kind of cable configuration being applicable to high-altitude erection Download PDFInfo
- Publication number
- CN204631340U CN204631340U CN201520356187.9U CN201520356187U CN204631340U CN 204631340 U CN204631340 U CN 204631340U CN 201520356187 U CN201520356187 U CN 201520356187U CN 204631340 U CN204631340 U CN 204631340U
- Authority
- CN
- China
- Prior art keywords
- linkage section
- utility
- integument
- sheath
- applicable
- 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.)
- Expired - Fee Related
Links
Landscapes
- Light Guides In General And Applications Therefor (AREA)
Abstract
The utility model discloses a kind of cable configuration being applicable to high-altitude erection, comprise the optical cable body and weight body that be arranged in parallel, described optical cable body comprises integument and is embedded in the fiber body in integument, described weight body comprises sheath and is embedded in the head-rope in sheath, described sheath is connected by linkage section with integument, described linkage section is also provided with multiple convection current lacuna, described convection current lacuna distributes along the length direction of linkage section.The utility model windage is in use little; Meanwhile, air-flow through the vibrations that produce on the utility model during convection current lacuna, is beneficial to rain, disengaging that snow, fog weather descend to be attached to water droplet, ice crystal etc. on the utility model surface.
Description
Technical field
The utility model relates to a kind of communication cable structure, particularly relates to a kind of cable configuration being applicable to high-altitude erection.
Background technology
Light transmitting fiber, is called for short optical fiber, the light conduction instrument of the total reflection principle transmission in the fiber that to be a kind of light make at glass or plastics.Fine fibre-optic package, in plastic sheath, makes it to bend and is unlikely to fracture.The transmitter of one end of usual optical fiber uses light emitting diode or beam of laser that light pulse is sent to optical fiber, and the receiving equipment of the other end of optical fiber uses photosensitive components to detect pulse.The cable comprising optical fiber is called optical cable.Because light is more much lower in the loss of electric wire conduction than electricity in fibre-optic transmission loss, more because main production raw material is silicon, reserves are very big, more easily exploit, so low price, impel optical fiber to be used as the media of information of long distance.Along with further optimization or the development in optic fibre manufacture process field and manufacturing equipment field, existing fiber price reduces further, and optical fiber improves rapidly at the total proportion of signal and communication cable.
Self-support cable when built on stilts laying due to without the need to setting up steel strand wires and installing hook, thus have and lay easy, that construction cost is low characteristic, be widely adopted under long range propagation or high-altitude laying state, the structure optimizing existing self-support cable is further the important channel of widening self-support cable utilization, optimizing self-support cable duty.
Utility model content
Structure for the existing self-support cable of above-mentioned further optimization is the problem widened self-support cable utilization, optimize the important channel of self-support cable duty, and the utility model provides a kind of cable configuration being applicable to high-altitude erection.
For the problems referred to above, a kind of cable configuration being applicable to high-altitude erection that the utility model provides solves problem by following technical essential: a kind of cable configuration being applicable to high-altitude erection, comprise the optical cable body and weight body that be arranged in parallel, described optical cable body comprises integument and is embedded in the fiber body in integument, described weight body comprises sheath and is embedded in the head-rope in sheath, described sheath is connected by linkage section with integument, described linkage section is also provided with multiple convection current lacuna, described convection current lacuna distributes along the length direction of linkage section.
Concrete, weight body is as the load-supporting part of optical cable body, adopt the structure linkage section between weight body and optical cable body being arranged convection current lacuna, make the utility model after completing erection, when applying to high-altitude erection especially, strong air stream can pass through by convection current lacuna, is conducive to reducing the utility model windage size in use; Meanwhile, air-flow through the vibrations that produce on the utility model during convection current lacuna, is beneficial to rain, disengaging that snow, fog weather descend to be attached to water droplet, ice crystal etc. on the utility model surface.
Further technical scheme is:
For avoiding stress to concentrate, make annexation more reliable, the surface of described linkage section is shiny surface, and the smooth surface transition of the surface of linkage section and optical cable body and weight body.
For making optical fiber body itself have certain intensity and good waterproof ability, described fiber body is also arranged with strength layer and metal sleeve.
As a kind of lightweight, comparatively soft specific constructive form, described strength layer fibrous braid, described metal sleeve is aluminum foil pipe or Copper Foil pipe.
For ease of processing and manufacturing and overall intensity, described integument, linkage section and sheath are one-piece construction.Above one-piece construction can be aging-resistant rubber.
The utility model has following beneficial effect:
Adopt the structure linkage section between weight body and optical cable body being arranged convection current lacuna, make the utility model after completing erection, when applying to high-altitude erection especially, strong air stream can pass through by convection current lacuna, is conducive to reducing the utility model windage size in use; Meanwhile, air-flow through the vibrations that produce on the utility model during convection current lacuna, is beneficial to rain, disengaging that snow, fog weather descend to be attached to water droplet, ice crystal etc. on the utility model surface.
Accompanying drawing explanation
Fig. 1 is a kind of structural representation being applicable to a cable configuration specific embodiment of high-altitude erection described in the utility model.
Figure acceptance of the bid note is respectively: 1, integument, and 2, metal sleeve, 3, strength layer, 4, optical cable body, 5, linkage section, 6, head-rope, 7, sheath, 8, weight body, 9, convection current lacuna, 10, fiber body.
Embodiment
Below in conjunction with embodiment, the utility model is described in further detail, but structure of the present utility model is not limited only to following examples.
Embodiment 1:
As Fig. 1, a kind of cable configuration being applicable to high-altitude erection, comprise the optical cable body 4 and weight body 8 that be arranged in parallel, the fiber body 10 that described optical cable body 4 comprises integument 1 and is embedded in integument 1, the head-rope 6 that described weight body 8 comprises sheath 7 and is embedded in sheath 7, described sheath 7 is connected by link 5 with integument 1, and described link 5 is also provided with multiple convection current lacuna 9, and described convection current lacuna 9 distributes along the length direction of link 5.
In the present embodiment, weight body 8 is as the load-supporting part of optical cable body 4, adopt the structure link 5 between weight body 8 and optical cable body 4 being arranged convection current lacuna 9, make the utility model after completing erection, when applying to high-altitude erection especially, strong air stream can pass through by convection current lacuna 9, is conducive to reducing the utility model windage size in use; Meanwhile, air-flow through the vibrations that produce on the utility model during convection current lacuna 9, is beneficial to rain, disengaging that snow, fog weather descend to be attached to water droplet, ice crystal etc. on the utility model surface.
Embodiment 2:
The present embodiment is further qualified on the basis of embodiment 1, and as Fig. 1, for avoiding stress to concentrate, make annexation more reliable, the surface of described link 5 is shiny surface, and the smooth surface transition of the surface of link 5 and optical cable body 4 and weight body 8.
For making optical fiber body itself have certain intensity and good waterproof ability, described fiber body 10 is also arranged with strength layer 3 and metal sleeve 2.
As a kind of lightweight, comparatively soft specific constructive form, described strength layer 3 fibrous braid, described metal sleeve 2 is aluminum foil pipe or Copper Foil pipe.For further optimizing above-mentioned effect, in the present embodiment, head-rope 6 also adopts fibrous braid.
For ease of processing and manufacturing and overall intensity, described integument 1, link 5 and sheath 7 is one-piece construction.Above one-piece construction can be aging-resistant rubber.
Above content is the further description done the utility model in conjunction with concrete preferred implementation, can not assert that embodiment of the present utility model is confined to these explanations.For the utility model person of an ordinary skill in the technical field, not departing from other embodiments drawn under the technical solution of the utility model, all should be included in protection domain of the present utility model.
Claims (5)
1. one kind is applicable to the cable configuration of high-altitude erection, comprise the optical cable body (4) and weight body (8) that be arranged in parallel, described optical cable body (4) comprises integument (1) and is embedded in the fiber body (10) in integument (1), described weight body (8) comprises sheath (7) and is embedded in the head-rope (6) in sheath (7), described sheath (7) is connected by linkage section (5) with integument (1), it is characterized in that, described linkage section (5) is also provided with multiple convection current lacuna (9), described convection current lacuna (9) distributes along the length direction of linkage section (5).
2. a kind of cable configuration being applicable to high-altitude erection according to claim 1, it is characterized in that, the surface of described linkage section (5) is shiny surface, and the smooth surface transition of the surface of linkage section (5) and optical cable body (4) and weight body (8).
3. a kind of cable configuration being applicable to high-altitude erection according to claim 1, is characterized in that, described fiber body (10) is also arranged with strength layer (3) and metal sleeve (2).
4. a kind of cable configuration being applicable to high-altitude erection according to claim 3, it is characterized in that, described strength layer (3) fibrous braid, described metal sleeve (2) is aluminum foil pipe or Copper Foil pipe.
5., according to a kind of cable configuration being applicable to high-altitude erection in Claims 1-4 described in any one, it is characterized in that, described integument (1), linkage section (5) and sheath (7) are one-piece construction.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201520356187.9U CN204631340U (en) | 2015-05-29 | 2015-05-29 | A kind of cable configuration being applicable to high-altitude erection |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201520356187.9U CN204631340U (en) | 2015-05-29 | 2015-05-29 | A kind of cable configuration being applicable to high-altitude erection |
Publications (1)
Publication Number | Publication Date |
---|---|
CN204631340U true CN204631340U (en) | 2015-09-09 |
Family
ID=54050356
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201520356187.9U Expired - Fee Related CN204631340U (en) | 2015-05-29 | 2015-05-29 | A kind of cable configuration being applicable to high-altitude erection |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN204631340U (en) |
-
2015
- 2015-05-29 CN CN201520356187.9U patent/CN204631340U/en not_active Expired - Fee Related
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN204631340U (en) | A kind of cable configuration being applicable to high-altitude erection | |
CN204631327U (en) | A kind of self-support cable structure | |
CN104898225A (en) | Optical cable structure enabling convenience in optical fiber protection in cable stripping process | |
CN104898228A (en) | Optical cable structure convenient to erect | |
CN201548732U (en) | Small-sized nonmetal optical fiber ribbon optical cable used for FTTX | |
CN206833981U (en) | A kind of optoelectronic composite cable component | |
CN202711818U (en) | Photoelectric composite transmission cable | |
CN104898223A (en) | Optical cable structure | |
CN104409160A (en) | Opto-electric composite cable for AOC | |
CN201364407Y (en) | High-performance optical fiber unit | |
CN104898224A (en) | Self-supporting optical cable | |
CN201607554U (en) | Open-slot type air-blown optical fiber unit | |
CN202494816U (en) | All Dielectric Self-supporting Aerial Cable | |
CN204732223U (en) | A kind of central beam tube type optoelectronic composite cable of termite-resistant rodent-resistant | |
CN208969290U (en) | Reinforced flat optical cable | |
CN204143014U (en) | A kind of two sheath twin-core circular optical cable | |
CN204857283U (en) | Control of wisdom energy highway high definition is with synthesizing power cable | |
CN204270677U (en) | A kind of anti-extrusion pattern synthesis flat cable | |
CN104898230A (en) | Optical communication line with high flexibility | |
CN209446853U (en) | A kind of optical cable with flexible cover sheet | |
CN104898233A (en) | Optical cable with excellent anti-electromagnetic performance | |
CN204631326U (en) | Be convenient in wire stripping process the cable configuration that optical fiber is protected | |
CN104898222A (en) | Optical cable with high adaptability to conditions of application regions | |
CN203786365U (en) | Nonmetallic central tubular outdoor optical fiber cable | |
CN104538106A (en) | Photoelectric double-guide transmission wire |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20150909 Termination date: 20160529 |