JP3745921B2 - Optical fiber cable for aerial installation - Google Patents

Optical fiber cable for aerial installation Download PDF

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Publication number
JP3745921B2
JP3745921B2 JP20645499A JP20645499A JP3745921B2 JP 3745921 B2 JP3745921 B2 JP 3745921B2 JP 20645499 A JP20645499 A JP 20645499A JP 20645499 A JP20645499 A JP 20645499A JP 3745921 B2 JP3745921 B2 JP 3745921B2
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JP
Japan
Prior art keywords
optical fiber
layer
groove
spacer
fiber cable
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
Application number
JP20645499A
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Japanese (ja)
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JP2001033669A (en
Inventor
浩 谷田部
裕一 関井
隆一 松岡
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.)
THE FURUKAW ELECTRIC CO., LTD.
Original Assignee
THE FURUKAW ELECTRIC 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 THE FURUKAW ELECTRIC CO., LTD. filed Critical THE FURUKAW ELECTRIC CO., LTD.
Priority to JP20645499A priority Critical patent/JP3745921B2/en
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Description

【0001】
【発明の属する技術分野】
本発明は、架空布設用光ファイバケーブルに関し、特に光ファイバ心線の高密度収容と中間後分岐を可能にした光ファイバケーブルに関するものである。
【0002】
【従来の技術】
光ファイバ心線を高密度に収容した光ファイバケーブルとしては、特開平8−211262号公報に記載されているようなケーブルが公知である。この光ファイバケーブルは、中心に抗張力体を有し、外周に多数本のSZらせん溝を有する内層溝付きスペーサの前記SZらせん溝にテープ状多心光ファイバ心線の積層体を収容し、その外側に、多数本のセグメント型溝部材を溝を外側に向けてSZ撚りすることにより外層溝付きスペーサを形成し、前記セグメント型溝部材の溝の中にテープ状多心光ファイバ心線を収容し、その外側にシースを設けたものである。
【0003】
このように光ファイバ心線を高密度に収容するには、内層溝付きスペーサと外層溝付きスペーサを設けて、各スペーサの溝に光ファイバ心線を収容する構成にすることが効果的である。しかし架空布設される光ファイバケーブルの場合は、内層溝付きスペーサの中心に配置した抗張力体のみでは、布設張力に耐えられない場合がある。このため従来から、外層溝付きスペーサの外側に抗張力体の層を設けることや、ケーブル本体と平行に吊り線を設け、それらを共通シースで一体化して自己支持型にすることが提案されている。
【0004】
一方、架空布設用光ファイバケーブルの場合は、必要に応じ任意の位置で中間後分岐(架空布設後に光ファイバケーブルの任意の位置から光ファイバ心線を取り出して分岐すること)ができる構造であることが要求される。そのためには外層溝付きスペーサの溝をSZらせん溝にして、中間でシースを剥げば、外層溝付きスペーサから光ファイバ心線を取り出せる構造にすることが好ましい。
【0005】
【発明が解決しようとする課題】
しかし前述のように、外層溝付きスペーサの外側に抗張力体の層を設けた構造では、中間でシースを剥いでも抗張力体があるために光ファイバ心線を取り出すことができず、また自己支持型の場合も、吊り線が邪魔で光ファイバ心線が取り出しにくいという問題がある。
【0006】
したがって本発明の目的は、内層溝付きスペーサと外層溝付きスペーサを有する高密度型のケーブル構造で、架空布設張力に耐えうる引張強度を持たせ、中間後分岐を容易に行えるようにした架空布設用光ファイバケーブルを提供することにある。
【0007】
【課題を解決するための手段】
この目的を達成するため、本発明の架空布設用光ファイバケーブルは、外周に一方向らせん溝またはSZらせん溝を有する内層溝付きスペーサの前記溝内に光ファイバ心線を収容し、その外側に架空布設時の張力を受け持つ抗張力体の中間層を設け、その外側に、外周にSZらせん溝を有する外層溝付きスペーサを設けて、そのSZらせん溝内に光ファイバ心線を収容し、その外側に抗張力体の層を設けることなくシースを設けたことを特徴とするものである。
【0008】
【発明の実施の形態】
以下、本発明の実施形態を図面を参照して詳細に説明する。
図1は本発明の一実施形態を示す。図において、1は内層溝付きスペーサ、2は外層溝付きスペーサである。内層溝付きスペーサ1は中心に抗張力体3を有し、外周に所要本数の一方向らせん溝4(SZらせん溝でも可)を有しており、各一方向らせん溝4内にはテープ状光ファイバ心線5が複数枚積層された状態で収容されている。内層溝付きスペーサ1の外側にはテープによる押さえ巻き6が施され、その外側に抗張力体7の中間層が設けられている。
【0009】
中間層の抗張力体7としては光ケーブルの軽量化が望まれている場合にはポリアラミド繊維(商品名ケブラー等)、ガラスFRP、PBO繊維のような高抗張力繊維を用いることが好ましいが、鋼線を用いることも可能である。高抗張力繊維又は鋼線を撚り合わせる場合は、張力がかかったときにトルクが発生しないように撚り方向を変えて2層に撚り合わせることが好ましい。抗張力体7の中間層の厚さは高抗張力繊維を用いた場合で、0.1 〜2.0 mm程度、通常は1.0 〜2.0 mm程度である。抗張力体7に鋼線を用いるときは、その内側にプラスチックの内部シースを設けることが、内層溝付きスペーサ1内のテープ状光ファイバ心線5の損傷を防止する上で好ましい。抗張力体7の中間層の外側には引き裂き紐8が縦添えされている。
【0010】
外層溝付きスペーサ2は、抗張力体7の中間層の外側に設けられる。外層溝付きスペーサ2は、外周に所要本数のSZらせん溝9を有しており、各SZらせん溝9にはテープ状光ファイバ心線10が複数枚積層された状態で収容されている。外層溝付きスペーサ2は樹脂の押出成形により形成することもできるし、セグメント型溝部材をSZ撚りすることにより形成することもできる。外層溝付きスペーサ2の外側にはテープによる押さえ巻き11が施され、その外側にプラスチックシース12が被覆されている。
このケーブルの内層溝付きスペーサ1の外径は250 mm程度、外層溝付きスペーサ2の外径は300 mm程度、SZらせん溝9のピッチは50〜1000mm(通常は250 〜300 mm)程度である。
【0011】
この実施形態の光ファイバケーブルは以上のように、内層溝付きスペーサ1の外側に外層溝付きスペーサ2を設けた構造であるので、光ファイバ心線を高密度で収容することができる。また内層溝付きスペーサ1と外層溝付きスペーサ2の間に抗張力体7の中間層を設けたので、架空布設張力に十分耐えうる引張強度を持たせることができると共に、外層溝付きスペーサ2の外側に抗張力体の層がないため、中間でシース12を剥げば、外層溝付きスペーサ2のSZらせん溝9からテープ状光ファイバ心線10を容易に取り出すことができ、中間後分岐作業を効率よく行うことができる。なお内層溝付きスペーサ1の溝4には中間後分岐を行う必要のないテープ状光ファイバ心線5が収容される。
【0012】
【発明の効果】
以上説明したように本発明に係る架空布設用光ファイバケーブルは、光ファイバ心線を高密度で収容できると共に、抗張力体の中間層を設けたことにより架空布設張力に耐えうる引張強度を持たせることができ、しかも外層溝付きスペーサの外側に抗張力体の層や吊り線がないため中間後分岐を容易に行えるという利点がある。
【図面の簡単な説明】
【図1】 本発明に係る架空布設用光ファイバケーブルの一実施形態を示す断面図。
【符号の説明】
1:内層溝付きスペーサ
2:外層溝付きスペーサ
3:中心抗張力体
4:一方向らせん溝
5:テープ状光ファイバ心線
7:抗張力体
9:SZらせん溝
10:テープ状光ファイバ心線
12:シース
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to an aerial laying optical fiber cable, and more particularly to an optical fiber cable that enables high-density accommodation of optical fiber core wires and intermediate rear branching.
[0002]
[Prior art]
As an optical fiber cable containing an optical fiber core wire at a high density, a cable as described in Japanese Patent Application Laid-Open No. 8-21162 is known. This optical fiber cable accommodates a laminated body of tape-shaped multi-core optical fibers in the SZ spiral groove of the inner groove groove spacer having a tensile body at the center and a plurality of SZ spiral grooves on the outer periphery. Outside, a plurality of segment-type groove members are SZ twisted with the grooves facing outward to form a spacer with an outer layer groove, and a tape-shaped multi-core optical fiber is accommodated in the groove of the segment-type groove member However, a sheath is provided on the outside.
[0003]
Thus, in order to accommodate the optical fiber cores at high density, it is effective to provide a spacer with inner layer grooves and spacers with outer layer grooves so that the optical fiber cores are accommodated in the grooves of each spacer. . However, in the case of an optical fiber cable laid overhead, there are cases in which the laying tension cannot be withstood only by the tension member disposed at the center of the inner layer grooved spacer. For this reason, conventionally, it has been proposed to provide a layer of tensile strength on the outer side of the outer grooved spacer, or to provide a suspension line in parallel with the cable body and to integrate them with a common sheath to be a self-supporting type. .
[0004]
On the other hand, in the case of an aerial laying optical fiber cable, it is a structure capable of intermediate post-branching at any position as needed (taken off an optical fiber core wire from an arbitrary position of the optical fiber cable after aerial laying). Is required. For that purpose, it is preferable that the outer-layer grooved spacer is formed as an SZ spiral groove and the optical fiber core wire can be taken out from the outer-layer grooved spacer by peeling the sheath in the middle.
[0005]
[Problems to be solved by the invention]
However, as described above, in the structure in which the tensile strength layer is provided outside the outer layer grooved spacer, the optical fiber core wire cannot be taken out even if the sheath is peeled off in the middle, and the self-supporting type Also in this case, there is a problem that it is difficult to take out the optical fiber core wire because the suspension wire is in the way.
[0006]
Accordingly, an object of the present invention is a high-density cable structure having a spacer with an inner layer groove and a spacer with an outer layer groove, which has a tensile strength that can withstand the aerial installation tension and can easily perform branching after intermediate. It is to provide an optical fiber cable for use.
[0007]
[Means for Solving the Problems]
In order to achieve this object, an aerial laying optical fiber cable according to the present invention accommodates an optical fiber core wire in the groove of an inner-layer grooved spacer having a unidirectional spiral groove or SZ spiral groove on the outer periphery, and on the outside thereof. An intermediate layer of strength members that handle the tension at the time of aerial laying is provided, an outer layer grooved spacer having an SZ spiral groove is provided on the outer periphery thereof, and an optical fiber core wire is accommodated in the SZ spiral groove, and the outer side thereof. A sheath is provided without a layer of tensile strength.
[0008]
DETAILED DESCRIPTION OF THE INVENTION
Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings.
FIG. 1 shows an embodiment of the present invention. In the figure, 1 is a spacer with an inner layer groove, and 2 is a spacer with an outer layer groove. The inner-layer grooved spacer 1 has a strength member 3 in the center and a required number of unidirectional spiral grooves 4 (or SZ spiral grooves) on the outer periphery, and each unidirectional spiral groove 4 has a tape-like light. A plurality of fiber core wires 5 are accommodated in a stacked state. A presser winding 6 is applied to the outer side of the inner layer grooved spacer 1, and an intermediate layer of the strength member 7 is provided on the outer side thereof.
[0009]
If the optical cable is desired to be lightened, it is preferable to use a high-strength fiber such as polyaramid fiber (trade name Kevlar, etc.), glass FRP, PBO fiber, etc. It is also possible to use it. When twisting high tensile strength fibers or steel wires, it is preferable to twist the two layers by changing the twist direction so that torque is not generated when tension is applied. The thickness of the intermediate layer of the strength member 7 is about 0.1 to 2.0 mm, usually about 1.0 to 2.0 mm, when a high strength fiber is used. When a steel wire is used for the strength member 7, it is preferable to provide a plastic inner sheath on the inner side in order to prevent damage to the tape-shaped optical fiber 5 in the inner grooved spacer 1. A tear string 8 is vertically attached to the outer side of the intermediate layer of the strength member 7.
[0010]
The outer layer grooved spacer 2 is provided outside the intermediate layer of the strength member 7. The outer-layer grooved spacer 2 has a required number of SZ helical grooves 9 on the outer periphery, and a plurality of tape-shaped optical fiber cores 10 are accommodated in each SZ helical groove 9. The outer grooved spacer 2 can be formed by extrusion molding of a resin, or can be formed by SZ twisting a segment type groove member. A presser winding 11 is applied to the outside of the outer grooved spacer 2, and a plastic sheath 12 is coated on the outside.
The outer diameter of the inner grooved spacer 1 of this cable is about 250 mm, the outer diameter of the outer grooved spacer 2 is about 300 mm, and the pitch of the SZ spiral groove 9 is about 50 to 1000 mm (usually 250 to 300 mm). .
[0011]
Since the optical fiber cable of this embodiment has a structure in which the outer layer grooved spacer 2 is provided outside the inner layer grooved spacer 1 as described above, the optical fiber core wire can be accommodated at a high density. Further, since the intermediate layer of the strength member 7 is provided between the spacer 1 with the inner layer groove and the spacer 2 with the outer layer groove, the tensile strength that can sufficiently withstand the aerial laying tension can be provided and the outer side of the spacer 2 with the outer layer groove is provided. Therefore, if the sheath 12 is peeled off in the middle, the tape-shaped optical fiber core wire 10 can be easily taken out from the SZ spiral groove 9 of the outer-layer grooved spacer 2, and the intermediate post-branching operation can be performed efficiently. It can be carried out. The groove 4 of the spacer 1 with the inner layer groove accommodates a tape-shaped optical fiber core wire 5 that does not need to be branched after intermediate.
[0012]
【The invention's effect】
As described above, the aerial laying optical fiber cable according to the present invention can accommodate optical fiber core wires at high density and has a tensile strength that can withstand aerial laying tension by providing an intermediate layer of a tensile strength body. In addition, there is an advantage that the intermediate post-branch can be easily performed because there is no tensile strength layer or suspension line outside the outer grooved spacer.
[Brief description of the drawings]
FIG. 1 is a cross-sectional view showing an embodiment of an aerial laying optical fiber cable according to the present invention.
[Explanation of symbols]
1: Spacer with inner layer groove 2: Spacer with outer layer groove 3: Central tensile member 4: Unidirectional helical groove 5: Tape-shaped optical fiber core wire 7: Tensile member 9: SZ helical groove
10: Tape optical fiber core
12: Sheath

Claims (1)

外周に一方向らせん溝またはSZらせん溝を有する内層溝付きスペーサの前記溝内に光ファイバ心線を収容し、その外側に架空布設時の張力を受け持つ抗張力体の中間層を設け、その外側に、外周にSZらせん溝を有する外層溝付きスペーサを設けて、そのSZらせん溝内に光ファイバ心線を収容し、その外側に抗張力体の層を設けることなくシースを設けたことを特徴とする架空布設用光ファイバケーブル。An optical fiber core wire is accommodated in the groove of the inner-layer grooved spacer having a unidirectional spiral groove or SZ spiral groove on the outer periphery, and an intermediate layer of a tensile body that handles the tension at the time of aerial installation is provided on the outer side. An outer layer grooved spacer having an SZ spiral groove is provided on the outer periphery, an optical fiber core wire is accommodated in the SZ spiral groove, and a sheath is provided without providing a layer of tensile strength on the outer side. Optical fiber cable for aerial installation.
JP20645499A 1999-07-21 1999-07-21 Optical fiber cable for aerial installation Expired - Fee Related JP3745921B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP20645499A JP3745921B2 (en) 1999-07-21 1999-07-21 Optical fiber cable for aerial installation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP20645499A JP3745921B2 (en) 1999-07-21 1999-07-21 Optical fiber cable for aerial installation

Publications (2)

Publication Number Publication Date
JP2001033669A JP2001033669A (en) 2001-02-09
JP3745921B2 true JP3745921B2 (en) 2006-02-15

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Family Applications (1)

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Country Status (1)

Country Link
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105785527A (en) * 2014-07-21 2016-07-20 蔡洪祥 Microgroove optical cable

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4982053B2 (en) * 2005-06-21 2012-07-25 矢崎総業株式会社 Presser winding member for branch cable
CN109597176A (en) * 2019-01-22 2019-04-09 深圳市特发信息股份有限公司 Circular trough slotted core cable

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105785527A (en) * 2014-07-21 2016-07-20 蔡洪祥 Microgroove optical cable
CN105785527B (en) * 2014-07-21 2018-08-21 深圳市特发信息股份有限公司 A kind of microflute optical cable

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