JP2004119090A - Waterproofed type cable - Google Patents

Waterproofed type cable Download PDF

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Publication number
JP2004119090A
JP2004119090A JP2002278414A JP2002278414A JP2004119090A JP 2004119090 A JP2004119090 A JP 2004119090A JP 2002278414 A JP2002278414 A JP 2002278414A JP 2002278414 A JP2002278414 A JP 2002278414A JP 2004119090 A JP2004119090 A JP 2004119090A
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JP
Japan
Prior art keywords
cable
waterproof
water
waterproof layer
covering
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.)
Pending
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JP2002278414A
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Japanese (ja)
Inventor
Satoru Shiobara
塩原 悟
Ryoichi Tonerikawa
舎川 亮一
Osamu Koyasu
子安 修
Kazunaga Kobayashi
小林 和永
Keiji Ohashi
大橋 圭二
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Fujikura Ltd
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Fujikura Ltd
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Publication date
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Priority to JP2002278414A priority Critical patent/JP2004119090A/en
Publication of JP2004119090A publication Critical patent/JP2004119090A/en
Pending legal-status Critical Current

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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A30/00Adapting or protecting infrastructure or their operation
    • Y02A30/14Extreme weather resilient electric power supply systems, e.g. strengthening power lines or underground power cables

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  • Insulated Conductors (AREA)
  • Communication Cables (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To provide a waterproofed type cable in which waterproofing performance is improved by providing a waterproofing layer and an outer covering made of water absorption material on the outside of a shell (inner covering) of a non-shield twist-pair cable. <P>SOLUTION: This is a cable in which insulating conductors 10, 10 made of, for example, four pairs are gathered and covered by an inner covering 20 in one lot. The outer covering 40 is provided on the inner covering 20 by interposing the waterproofing layer 30 made of a water absorption material. By this construction, even if the thickness of the inner covering is thin, sufficient strength is obtained. Even if a part of the outer covering is damaged, good waterproofing effect is obtained by the action of the waterproofing layer. Since the waterproofing layer functions as a seat sheath when the outer covering is exposed, it gives damage prevention effect to the inner covering. <P>COPYRIGHT: (C)2004,JPO

Description

【0001】
【発明の属する技術分野】
本発明は、吸水性材料からなる防水層により防水性能の向上を図った防水形ケーブルに関するものである。
【0002】
【従来の技術】
従来から、屋内配線用のケーブルとして、非シールドツイストペアケーブルが使用されている。その構造の一例を示すと、図4の如くである(特開平08−249944)。このケーブルC0 は、例えば4対の対よりされた絶縁導体10,10が集合されて、一括して外皮20により被覆されている。そして、外皮20内にあっては、各絶縁導体10間、より正確にはその絶縁体11間の空間部分に、必要により、種々の形の介在、例えば紐状や仕切り板形状などの介在を挿入させてある。
【0003】
近年、無線LANなどを利用した広帯域データ通信システムにおいては、屋外に設置したアンテナと屋内のルーターなどの通信機器を接続する場合、上記非シールドツイストペアケーブルを用いて、屋外のアンテナ側まで延長配線したという要求が高まっている。
【0004】
【発明が解決しようとする課題】
ところが、非シールドツイストペアケーブルの場合、その使用にあたって、通常端末にモジュラープラグなどの器具を取り付けることが多いため、外径が小さめに構成されている。このため、外皮20の被覆部分も薄く、屋外用として使用した場合、耐透湿性や耐外傷性に乏しく、吸湿や浸水による伝送特性の劣化が生じるという問題があった。
【0005】
本発明は、このような問題に鑑みてなされたもので、基本的には、従来のケーブルの外皮(内部被覆)の外側に、さらに、吸水性材料からなる防水層と外部被覆を設けて、上記従来の問題を解消せんとするものである。
【0006】
【課題を解決するための手段】
請求項1記載の本発明は、内部被覆内に絶縁導体が内蔵されたケーブルであって、前記内部被覆上に吸水性材料からなる防水層を介在させて外部被覆を設けたことを特徴とする防水形ケーブルにある。
【0007】
請求項2記載の本発明は、前記絶縁導体が、非シールドツイストペアケーブル用の導体であることを特徴とする請求項1記載の防水形ケーブルにある。
【0008】
請求項3記載の本発明は、前記防水層が吸水性テープからなることを特徴とする請求項1又は2記載の防水形ケーブルにある。
【0009】
請求項4記載の本発明は、前記防水層及び外部被覆が共に非金属体からなることを特徴とする請求項1、2又は3記載の防水形ケーブルにある。
【0010】
【発明の実施の形態】
図1は、本発明に係る防水形ケーブルの一例の形態を示したものである。このケーブルC1 において、10は絶縁導体、11はその絶縁体、20は内部被覆、30は内部被覆20の外側に設けた吸水性材料からなる防水層、40は防水層30の外側に設けた外部被覆である。ここで、内部被覆20内の構造は、特に限定されず、従来と同様の構造であってもよい。
【0011】
上記防水層30の吸水性材料としては、ポリアクリル酸塩系などの吸水性高分子からなるパウダが挙げられる。具体的には、このパウダを、例えばポリプロピレンなどのプラスチックテープに接着塗布した吸水性テープを製造し、これを、内部被覆20の外側に巻回し、又は縦添えするなどして使用すればよい。また、外部被覆40の被覆材料としては、耐候性や耐透湿性、耐外傷性に優れたポリエチレンなどが挙げられ、押出などにより被覆すればよい。さらに、必要により、図2に示すように、防水層30上の例えば長手方向に、外部被覆40を引き裂くための引裂紐50を介装させておくとよい。
【0012】
このケーブルC1 では、最外皮の外部被覆40の材料特性により、十分な強度が得られる一方、仮に外部被覆40の一部が損傷しても、防水層30の働きによって、外部からの吸湿や浸水が効果的に抑制される。
【0013】
つまり、外部から湿気が侵入した程度では、防水層30部分の吸水性材料により十分吸収されてしまう。また、水の浸水があっても、その量によってはやはり吸水性材料により吸収されてしまう。その量が多くとも、水の吸収により通常吸水性材料が膨張するため、吸水性材料自体が内部被覆20と外部被覆40との間に硬く充填される結果となるため、効果的な水止め機能が得られる。言い換えれば、あたかも止水ダムが形成されるため、水の侵入が阻止される。
【0014】
また、ケーブル使用時の端末加工時には、切り出し工具などによって、外部被覆40を口出し除去する訳であるが、その際、防水層30が座床として機能するため、内部被覆20側が損傷するのを効果的に防止することができる。さらに、防水層30及び外部被覆40が共に非金属体からなるため、被覆の接地が不要となる。即ち、楽な施工が可能となる。また、接地の不具合によるノイズ発生などの性能劣化も根本的に解消される。勿論、引裂紐50を介装させておけば、楽に外部被覆40を口出し除去することができる。
【0015】
因みに、以下の構成からなる本発明のケーブルを、サンプルとして製造し、防水試験を行ったところ、良好な結果が得られた。
【0016】
上記図1と同構造のケーブルとして、4対の対よりされた絶縁導体10の絶縁体11はポリエチレン、内部被覆20はPVC、防水層30はポリプロピレンテープにポリアクリル酸塩系などの吸水性高分子を接着塗布させた吸水性テープ、外部被覆40は黒色のポリエチレンとする一方、ケーブル全体の外径は7.5mmにまとめた。
【0017】
また、上記防水試験は、図3に示す方法(IEC60794−1−2)により行った。即ち、ケーブルの一部から、外部被覆40及び防水層30を除去して口出しし、この口出し部(幅25mm)を水頭高さ1mの水中に24時間浸漬させた。この浸漬中に一方の端面(図中右側の端面で口出し部の中心から3mの部分)から漏水がないことが確認できた。なお、伝送特性についても、従来の非シールドツイストペアケーブルと同等の性能が得られることが確認できた。
【0018】
なお、上記実施の形態では、絶縁導体10が非シールドツイストペアケーブル用のものであったが、本発明は、これに限定されるものではない。他の構造のケーブルであっても、その外皮(内部被覆)の外側に、本発明の吸水性材料からなる防水層と外部被覆を設ければ、ほぼ同様の作用、効果が得られる。
【0019】
【発明の効果】
以上の説明から明らかなように、本発明の防水形ケーブルによると、次のような優れた効果が得られる。
【0020】
(1)請求項1によると、内部被覆上に吸水性材料からなる防水層を介在させて外部被覆を設けてあるため、内部被覆の厚さが薄いものであっても、先ず、十分な強度が得られる。また、仮に外部被覆の一部が損傷しても、防水層の働きによって、良好な防水効果が得られる。また、外部被覆の口出し時、防水層が座床として機能するため、内部被覆の損傷防止効果も得られる。
【0021】
(2)請求項2によると、絶縁導体が非シールドツイストペアケーブル用の導体である場合、屋内配線からそのまま延長して屋外配線として使用することができる。したがって、例えばこのケーブルを、無線LANなどを利用した広帯域データ通信システムの屋内配線として使用する場合、別の屋外専用のケーブルと繋ぎ変えることなく、そのまま屋内のルーターなどの通信機器から屋外のアンテナなどの部分へ配線することができる。つまり、1本のケーブルで済み、大幅な使い勝手の向上が得られる。
【0022】
(3)請求項3によると、防水層が吸水性テープの場合、口出し時の剥離がし易いという利便が得られる。つまり、外部被覆の除去後テープを捲るのみで剥離することができる。また、製造時においても単に巻回し、又は縦添えするのみでよい。
【0023】
(4)請求項4によると、防水層及び外部被覆が共に非金属体からなる場合、被覆の接地が不要となり、楽な施工が可能となる。また、接地の不具合によるノイズ発生などの性能劣化も根本的に解消される利点もある。
【図面の簡単な説明】
【図1】本発明に係る防水形ケーブルの一例を示した断面図である。
【図2】本発明に係る防水形ケーブルの他の例を示した側面図である。
【図3】ケーブルの防水試験の方法を示した概略説明図である。
【図4】従来の非シールドツイストペアケーブルを示した断面図である。
【符号の説明】
10          絶縁導体
11          絶縁体
20          内部被覆
30          防水層
40          外部被覆
50          引裂紐
1           防水形ケーブル
[0001]
TECHNICAL FIELD OF THE INVENTION
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a waterproof cable whose waterproof performance is improved by a waterproof layer made of a water-absorbing material.
[0002]
[Prior art]
Conventionally, unshielded twisted pair cables have been used as cables for indoor wiring. An example of the structure is shown in FIG. 4 (Japanese Patent Application Laid-Open No. 08-249944). The cable C 0, for example 4 are collectively insulated conductors 10, 10 that are from a pair of pairs are covered by the outer skin 20 collectively. Then, in the outer cover 20, if necessary, various forms of interposition, for example, a string-like or partition-plate-like interposition, are provided between the insulated conductors 10, more precisely, in the space between the insulators 11. It has been inserted.
[0003]
In recent years, in a broadband data communication system using a wireless LAN or the like, when connecting an antenna installed outdoors and a communication device such as an indoor router, the above-mentioned unshielded twisted pair cable is used to extend the wiring to the outdoor antenna side. There is an increasing demand.
[0004]
[Problems to be solved by the invention]
However, in the case of an unshielded twisted pair cable, a device such as a modular plug is usually attached to the terminal when using the cable, and thus the outer diameter is configured to be small. For this reason, there is a problem that the covering portion of the outer skin 20 is thin, and when used for outdoor use, the transmission resistance is poor due to poor moisture permeability and trauma resistance, and moisture absorption or water infiltration occurs.
[0005]
The present invention has been made in view of such a problem, and basically, a waterproof layer made of a water-absorbing material and an outer coating are provided outside the outer jacket (inner coating) of a conventional cable, It is an object of the present invention to solve the above conventional problem.
[0006]
[Means for Solving the Problems]
The present invention according to claim 1 is a cable in which an insulated conductor is built in an inner coating, wherein an outer coating is provided on the inner coating with a waterproof layer made of a water-absorbing material interposed. In the waterproof type cable.
[0007]
According to a second aspect of the present invention, there is provided the waterproof cable according to the first aspect, wherein the insulated conductor is a conductor for an unshielded twisted pair cable.
[0008]
According to a third aspect of the present invention, there is provided the waterproof cable according to the first or second aspect, wherein the waterproof layer is made of a water-absorbing tape.
[0009]
According to a fourth aspect of the present invention, there is provided the waterproof cable according to the first, second or third aspect, wherein the waterproof layer and the outer coating are both made of a non-metallic body.
[0010]
BEST MODE FOR CARRYING OUT THE INVENTION
FIG. 1 shows a form of an example of a waterproof cable according to the present invention. In this cable C 1, 10 is insulated conductor, 11 is its insulator, 20 inner coating, 30 is a waterproof layer made of a water-absorbing material provided on the outer side of the inner sheath 20, 40 is provided outside of the waterproof layer 30 External coating. Here, the structure inside the inner coating 20 is not particularly limited, and may be the same as the conventional structure.
[0011]
Examples of the water-absorbing material of the waterproof layer 30 include a powder made of a water-absorbing polymer such as a polyacrylate. Specifically, the powder may be used by manufacturing a water-absorbing tape in which the powder is adhesively applied to a plastic tape such as polypropylene, for example, and wound around the outside of the inner coating 20 or vertically attached. Examples of the coating material for the outer coating 40 include polyethylene having excellent weather resistance, moisture permeability, and trauma resistance, and may be coated by extrusion or the like. Further, if necessary, as shown in FIG. 2, a tear string 50 for tearing the outer coating 40 may be interposed, for example, in the longitudinal direction on the waterproof layer 30.
[0012]
In the cable C 1, the material properties of the outer coating 40 of Saigaihi, while sufficient strength is obtained, even if a part of the outer coating 40 is damaged by the action of the waterproof layer 30, Ya moisture from the outside Inundation is effectively suppressed.
[0013]
That is, to the extent that moisture enters from the outside, the moisture is sufficiently absorbed by the water-absorbing material in the waterproof layer 30. Further, even if water is immersed, it is still absorbed by the water-absorbing material depending on its amount. Even if the amount is large, the water absorbing material usually expands due to the absorption of water, so that the water absorbing material itself is firmly filled between the inner coating 20 and the outer coating 40, so that an effective water stopping function is provided. Is obtained. In other words, as if a water stop dam is formed, water intrusion is prevented.
[0014]
Also, at the time of processing the terminal when using the cable, the outer coating 40 is cut out by a cutting tool or the like. At this time, since the waterproof layer 30 functions as a seat, it is effective to damage the inner coating 20 side. Can be prevented. Further, since the waterproof layer 30 and the outer coating 40 are both made of a non-metallic body, it is not necessary to ground the coating. That is, easy construction is possible. In addition, performance degradation such as generation of noise due to grounding problems is also basically eliminated. Of course, if the tear string 50 is interposed, the outer coating 40 can be easily removed and removed.
[0015]
Incidentally, when the cable of the present invention having the following constitution was manufactured as a sample and subjected to a waterproof test, good results were obtained.
[0016]
As a cable having the same structure as that of FIG. 1, the insulator 11 of the insulated conductor 10 made of four pairs is made of polyethylene, the inner coating 20 is made of PVC, the waterproof layer 30 is made of polypropylene tape, and the water absorption of polyacrylate is used. The water-absorbing tape to which the molecules were adhesively applied, the outer coating 40 was black polyethylene, and the outer diameter of the entire cable was 7.5 mm.
[0017]
Moreover, the said waterproof test was performed by the method (IEC60794-1-2) shown in FIG. That is, the outer coating 40 and the waterproof layer 30 were removed from a part of the cable, and the cable was exposed, and the exposed part (width: 25 mm) was immersed in water having a head height of 1 m for 24 hours. During this immersion, it was confirmed that there was no water leakage from one end face (the right end face in the figure, 3 m from the center of the outlet). Regarding the transmission characteristics, it was confirmed that the same performance as that of the conventional unshielded twisted pair cable was obtained.
[0018]
In the above embodiment, the insulated conductor 10 is for an unshielded twisted pair cable, but the present invention is not limited to this. Even if the cable has another structure, if the waterproof layer and the outer cover made of the water-absorbing material of the present invention are provided outside the outer cover (inner cover), substantially the same operation and effect can be obtained.
[0019]
【The invention's effect】
As is clear from the above description, the following excellent effects can be obtained according to the waterproof cable of the present invention.
[0020]
(1) According to the first aspect, since the outer coating is provided on the inner coating with the waterproof layer made of a water-absorbing material interposed therebetween, first, even if the thickness of the inner coating is thin, sufficient strength is required. Is obtained. Even if a part of the outer coating is damaged, a good waterproof effect can be obtained by the function of the waterproof layer. In addition, when the outer coating is exposed, the waterproof layer functions as a seat, so that an effect of preventing the inner coating from being damaged can be obtained.
[0021]
(2) According to the second aspect, when the insulated conductor is a conductor for an unshielded twisted pair cable, the insulated conductor can be directly extended from indoor wiring and used as outdoor wiring. Therefore, for example, when this cable is used for indoor wiring of a broadband data communication system using a wireless LAN or the like, it is not necessary to reconnect with another outdoor-dedicated cable, and the communication device such as an indoor router or the like can be used as an outdoor antenna. Can be wired. That is, only one cable is required, and a great improvement in usability is obtained.
[0022]
(3) According to the third aspect, when the waterproof layer is a water-absorbing tape, there is obtained the convenience that the waterproof layer is easily peeled at the time of tapping. In other words, it can be peeled off only by turning the tape after removing the outer coating. Also, at the time of manufacture, it is only necessary to simply wind or vertically attach.
[0023]
(4) According to the fourth aspect, when the waterproof layer and the outer coating are both made of a non-metallic body, the coating does not need to be grounded, and easy installation is possible. In addition, there is an advantage that performance degradation such as generation of noise due to a failure in grounding can be fundamentally eliminated.
[Brief description of the drawings]
FIG. 1 is a sectional view showing an example of a waterproof cable according to the present invention.
FIG. 2 is a side view showing another example of the waterproof cable according to the present invention.
FIG. 3 is a schematic explanatory view showing a method of a waterproof test of a cable.
FIG. 4 is a sectional view showing a conventional unshielded twisted pair cable.
[Explanation of symbols]
10 insulated conductor 11 insulator 20 inner coating 30 waterproof layer 40 outer coating 50 tear cord C 1 Waterproof Cables

Claims (4)

内部被覆内に絶縁導体が内蔵されたケーブルであって、前記内部被覆上に吸水性材料からなる防水層を介在させて外部被覆を設けたことを特徴とする防水形ケーブル。What is claimed is: 1. A waterproof cable comprising an inner cover having an insulated conductor built therein, wherein an outer cover is provided on said inner cover with a waterproof layer made of a water-absorbing material interposed therebetween. 前記絶縁導体が、非シールドツイストペアケーブル用の導体であることを特徴とする請求項1記載の防水形ケーブル。The waterproof cable according to claim 1, wherein the insulated conductor is a conductor for an unshielded twisted pair cable. 前記防水層が吸水性テープからなることを特徴とする請求項1又は2記載の防水形ケーブル。3. The waterproof cable according to claim 1, wherein the waterproof layer is made of a water-absorbing tape. 前記防水層及び外部被覆が共に非金属体からなることを特徴とする請求項1、2又は3記載の防水形ケーブル。4. The waterproof cable according to claim 1, wherein both the waterproof layer and the outer cover are made of a non-metallic body.
JP2002278414A 2002-09-25 2002-09-25 Waterproofed type cable Pending JP2004119090A (en)

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CN104361947A (en) * 2014-11-26 2015-02-18 安徽弘博电缆集团有限公司 Cross linked polyethylene insulated marine direct-current motor cable
WO2016123961A1 (en) * 2015-02-03 2016-08-11 江苏永鼎股份有限公司 Waterproof shielded network cable
CN106205802A (en) * 2016-08-30 2016-12-07 无锡江南电缆有限公司 A kind of copper core cross-linked polyethylene insulated steel wire armored Anti-termite power cable
EP3799080A1 (en) * 2019-09-24 2021-03-31 Siemens Aktiengesellschaft Data transmission cable which can be assembled

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010287355A (en) * 2009-06-10 2010-12-24 Yazaki Corp High-speed transmission cable
KR101241538B1 (en) 2012-12-21 2013-03-11 (주)캔텔 Telecommunicaion cable with enhanced isolation and waterproof
CN104361947A (en) * 2014-11-26 2015-02-18 安徽弘博电缆集团有限公司 Cross linked polyethylene insulated marine direct-current motor cable
WO2016123961A1 (en) * 2015-02-03 2016-08-11 江苏永鼎股份有限公司 Waterproof shielded network cable
CN106205802A (en) * 2016-08-30 2016-12-07 无锡江南电缆有限公司 A kind of copper core cross-linked polyethylene insulated steel wire armored Anti-termite power cable
EP3799080A1 (en) * 2019-09-24 2021-03-31 Siemens Aktiengesellschaft Data transmission cable which can be assembled

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