ITU-T HDBK CIJ-1994 Construction Installation Jointing and Protection of Optical Fibres Cables《光缆的建筑 安装 连接和保护》.pdf
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1、 Bs Y862591 0678835 549 m INTERNATIONAL TELECOMMUNICATION UNION ITU=T TELECOMMUNICATION STANDARDIZATION SECTOR OF ITU Construction, installation, jointing and protection of optical fibres cables (I 994 Edition) Geneva 1994 INTERNATIONAL TELECOMMUNICATION UNION ITU-T TELECOMMUNICATION STANDARDIZATION
2、 SECTOR OF ITU Construction, installation, jointing and protection of optical fibres cables (1 994 Edition) Geneva 1994 ISBN 92-61 -04901 -X 88 4862593 0678837 3LL R O ITU 1994 All rights reserved. No part of this publication may be reproduced or utilized in any form or by any means, electronic or m
3、echanical, including photocopying and microfilm, without permission in writing from the ITU. Chapter I . Cable construction 1 General . 1.1 Purpose of cable construction for optical fibre . 1.2 Advantages of Optical Fibre Cables . 1.3 Cable application and design factors Mechanical and environmental
4、 characteristics . 2 2.1 2.2 2.3 2.4 2.5 2.6 2.7 2.8 2.9 Residual fibre strain 2.1.1 Causes . 2.1.2 Effects . 2.1.3 Constructional Considerations Impulsive fibre strain 2.2.1 Causes . 2.2.2 Effects . 2.2.3 Constructional considerations . Fibre macrobending 2.3.1 Causes . 2.3.2 Effects . 2.3.3 Constr
5、uctional considerations . 2.4.1 Caus and afterwards a final A.3.2 A.3.3 A.3 Chapter VII . Cables inside buildings 1 Generai . 1.1 Purpose of Optical Fibre Cables Inside Buildings 1.2 Application of Optical Fibre Cables Mide Buildings 1.3 Extemal Factors 1.4 Types of Appmm . Environmental and Mechani
6、a Characteristics . 2.2 Appantus Cabinets, - climatic performance; 14 chap. I E 4862,493 0678857 T82 airtightness, moisture penetration resistance mechanical stability (bending, torsion, radiai pressure, tension, abrasion, etc.); chemical resistance; diameter; weight; fire resistance rodent resistan
7、ce GroaUe Coated fibre Gmd seconciary potectd fibre unii (1 to 10 fibres and 5b 10 sbis) sheathwrai strength- Fibre ribbon ctack to 18ribbons) (2to 12fbres andup Sbtted rod strenlmenber 2oFtwes (4 fibre ribbons x 5 ribbons) FIGURE 6/I Exampies of siqgle unit cable canstnxtions chap. I 15 4Bb259L Ob7
8、BBb0 iT4 sheaai opcal fire unit Optical fibre unit Cheath Tube coated Loose sacaidary protected fibre mit (2 to 12 fibres witti 1 to 20 tubes) fibre Ctrength member Groove FIGURE 7a/I Examples of dtiple unit cable cxmkwth 3.4.1 Cable Sheath Types Various kinds of cable sheath have been introduced fo
9、r opticai fibre cables applied to both external and internal installations. These are classified into the foliowing five types: - - plastic sheath only, - - - cable sheath with armour. metal/plastic sheath with metallic tapes or metallic layer, plastic sheath with strength members, plastic sheath wi
10、th embedded strength members with a metallic tape, Typical application of them is various environmental conditions is shown in Table 7/I. 16 chap. I I 4862591 Ob78861 b30 m FIGURE 7WI Examples of muiipe mit cable amsuc OIS 3.4.2 MeWplastic sheath with metallic tapes or metallic layer This type of ca
11、ble sheath has a metallic moisture barrier tape and in some of these constructions an impervious barrier is achieved. The metallic tape may be corrugated to improve the flexibility and crushing strength of the cable. 3.4.2.1 MetaVPlasic bonded sheath with coated duminium tape This type of sheath inc
12、orporates a tape of aluminium which is usually coated on one side with a thin film of polyolefin or copolymer. The coated aluminium tape is laid longitudinally over the cable core with the coated side outwards so as to form a tube with an overlap. A polyolefin sheath is then extruded over the tape a
13、nd the coating fuses to the extruded sheath to provide a firm bond between it and the aluminium tape. Aluminium tape coated on both sides may be used when it is necessary to seal the overlap to improve the moisture barrier or to avoid sheath circulating current. chap. I 17 W Y862591 0678862 577 W Ca
14、ble sheath types Metdplastic sheath with metallic tapes or metallic layer Plastic sheath only Plastic sheath with strength members Plastic sheath with embedded strength members with metallic tape 3.4.2.2 Metallplastic bonded sheath with coated steel tape This type of sheath incorporates a tape of st
15、eel coated on both sides with a thin film of copolymer. This tape is corrugated and laid longitudinally over the cable core as to fonn a tube with an overlap, along which the copolymer is fused to ensure a fixm bond. A plastic sheath such as polyethylene is then extruded over the tape. External cabl
16、es Aerial Buried Duct Tunnel A A A A A B A A A A A A A A A A TABLE 7A Typical application of cable sheath types in various environmental conditions Cable sheath with armour A A B B Underwater B B B B A Internal Building i AI i A = Typically applied type B = Rarely applied type 3.4.2.3 This type of s
17、heath includes a longitudinally applied aluminium tape formed into a tube over which is a similar tube of tinned-steel in contact with it. The edges of the tinned-steel tape are overlapped and soldered. For large cables both tapes are corrugated to improve flexibility. A layer of compound is applied
18、 over the tinned-steel tube before a plastic sheath is extruded over it for corrosion protection. This sheath forms an impervious moisture barrier. MetaYplastic sheath with aluminium tape and soldered hed-steel tape 3.4.2.4 This type of sheath includes a longitudinally applied steel tape formed into
19、 a tube with its edges continuously welded together. The tube is then corrugated down onto the cable core. A layer of compound is applied over the steel before a plastic sheath is extruded over it for corrosion protection. This sheath forms an impervious moisture barrier. Metallplastic sheath with a
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