JPH0229676Y2 - - Google Patents
Info
- Publication number
- JPH0229676Y2 JPH0229676Y2 JP1983069521U JP6952183U JPH0229676Y2 JP H0229676 Y2 JPH0229676 Y2 JP H0229676Y2 JP 1983069521 U JP1983069521 U JP 1983069521U JP 6952183 U JP6952183 U JP 6952183U JP H0229676 Y2 JPH0229676 Y2 JP H0229676Y2
- Authority
- JP
- Japan
- Prior art keywords
- wire
- insulated wire
- current
- limiting element
- discharge
- 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
Links
- 239000002184 metal Substances 0.000 claims description 30
- 239000012212 insulator Substances 0.000 claims description 15
- 230000006378 damage Effects 0.000 claims description 12
- 239000000463 material Substances 0.000 claims description 4
- 239000011810 insulating material Substances 0.000 claims description 3
- 230000002265 prevention Effects 0.000 claims description 3
- 206010014357 Electric shock Diseases 0.000 description 3
- 239000010953 base metal Substances 0.000 description 3
- 230000015556 catabolic process Effects 0.000 description 3
- 238000009413 insulation Methods 0.000 description 2
- 230000035515 penetration Effects 0.000 description 2
- 230000015572 biosynthetic process Effects 0.000 description 1
- 239000011248 coating agent Substances 0.000 description 1
- 238000000576 coating method Methods 0.000 description 1
- 230000006866 deterioration Effects 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 229920001971 elastomer Polymers 0.000 description 1
- 238000009429 electrical wiring Methods 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 239000003566 sealing material Substances 0.000 description 1
- 229920002379 silicone rubber Polymers 0.000 description 1
- 239000004945 silicone rubber Substances 0.000 description 1
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 1
Landscapes
- Insulators (AREA)
- Suspension Of Electric Lines Or Cables (AREA)
Description
【考案の詳細な説明】
(産業上の利用分野)
本考案は電線路に侵入した雷サージを捕捉して
放出させるとともに続流を遮断して、続流アーク
による断線や碍子の破損を防止する雷害防止用絶
縁電線保護装置に関するものである。[Detailed description of the invention] (Field of industrial application) This invention captures and releases lightning surges that have entered the electrical line, and also blocks the following current to prevent wire breakage and damage to the insulator due to the following arc. This invention relates to an insulated wire protection device for preventing lightning damage.
(従来の技術)
電圧電流特性が非直線性の材料よりなる限流素
子を備えた限流要素ユニツトを使用することによ
つて雷害を防止するようにした雷害防止用絶縁電
線保護装置は既に提案されているが、従来のこの
種装置は碍子の頭部に絶縁電線を金属バインド線
をもつて支持させるとともに接地金物に限流要素
ユニツトを取付けて該限流要素ユニツトの課電側
にはアーキングホーンを前記絶縁電線との間に気
中間〓をおいて取付けたものであり、電線路に雷
サージが侵入し、雷インパルス電圧により絶縁電
線の被覆が貫通破壊されてアーキングホーンへフ
ラツシオーバする場合、被覆の絶縁絶力が電線路
の接地条件や稼動期間等による劣化や損傷の程度
によつて変化し、放電電圧特性の変動が大きくな
り他の機器との絶縁協調が不安定で変圧器ブツシ
ングやカツトアウトにおけるフラツシオーバ事故
を発生させ、また、一度被覆が貫通破壊されると
金属バインド線が電線路と略同電位に充電されて
線路の補修作業における直接の危険はもとより不
慮の感電事故や鳥害事故等を誘発する虞れがある
等の問題があつた。(Prior Art) An insulated wire protection device for lightning damage prevention uses a current-limiting element unit equipped with a current-limiting element made of a material with non-linear voltage-current characteristics to prevent lightning damage. Although it has already been proposed, in the conventional device of this type, an insulated wire is supported by a metal binding wire on the head of an insulator, a current limiting element unit is attached to a grounding metal fitting, and the current limiting element unit is connected to the energized side. The arcing horn is installed with an air gap between it and the insulated wire, and when a lightning surge enters the wire, the lightning impulse voltage breaks through the insulation wire's sheath and flashes over to the arcing horn. In this case, the dielectric strength of the sheathing changes depending on the grounding conditions of the electrical line and the degree of deterioration or damage due to the operating period, etc., and the fluctuation of the discharge voltage characteristics becomes large and the insulation coordination with other equipment becomes unstable and the transformer This can cause flashover accidents during bushing and cut-outs, and once the sheathing is penetrated and destroyed, the metal binding wire will be charged to approximately the same potential as the power line, causing not only direct danger during track repair work but also accidental electric shocks and bird damage. There were problems, such as the risk of causing harm or accidents.
(考案が解決しようとする課題)
本考案は前記のような問題点を解決して、雷サ
ージによる絶縁電線からの放電電圧特性を安定さ
せ、かつ金属バインド線への充電を阻止して電線
路の安定維持と安全確保を図ることができる雷害
防止用絶縁電線保護装置を提供するために完成さ
れたものである。(Problems to be solved by the invention) The invention solves the above-mentioned problems, stabilizes the discharge voltage characteristics from the insulated wire due to lightning surge, and prevents charging of the metal bound wire, thereby improving the electrical wiring. This was completed in order to provide an insulated wire protection device for lightning damage prevention that can maintain stability and ensure safety.
(課題を解決するための手段)
本考案は、碍子の頭部に絶縁電線を金属バイン
ド線をもつて支持させるとともに、この絶縁電線
の碍子から所要の距離を隔てた位置には電圧電流
特性が非直線性の材料よりなる限流素子と放電電
極と課電側電極とを絶縁材料よりなる外套体をも
つて被覆してなる限流要素ユニツトを絶縁電線と
平行して、かつ課電側電極をもつて前記絶縁電線
に電気的に接続させた状態でコネクタを介して取
付けてその放電電極を金属バインド線に対向さ
せ、この放電電極の放電端部と金属バインド線と
の間に所定の放電電圧特性を持つ気中間〓を形成
したことを特徴とするものである。(Means for Solving the Problems) The present invention supports an insulated wire with a metal binding wire on the head of an insulator, and has voltage-current characteristics at a position of the insulated wire at a required distance from the insulator. A current-limiting element unit consisting of a current-limiting element made of a non-linear material, a discharge electrode, and a charging side electrode covered with a jacket made of an insulating material is placed in parallel with the insulated wire and connected to the charging side electrode. is electrically connected to the insulated wire, and the discharge electrode is opposed to the metal binding wire, and a predetermined discharge is generated between the discharge end of the discharge electrode and the metal binding wire. It is characterized by the formation of an air gap with voltage characteristics.
(実施例)
次に本考案を図示の実施例について詳細に説明
すれば、1は限流要素ユニツトであつて、該限流
要素ユニツト1は放電電極1bと課電側電極1c
との間にZnOやSiCを主体とした電圧電流特性が
非直線性の材料よりなる限流素子1aを介在させ
て、ゴム等の弾力性に富む絶縁材料よりなる外套
体1dをもつて前記の放電電極1bと課電側電極
1cとを放電端部が露呈された状態に被套してな
るものである。2は絶縁電線を支持する碍子であ
つて、該碍子2の頭部には絶縁電線4が金属バイ
ンド線3をもつて支持されている。そして、この
絶縁電線4に沿つて前記碍子2から所要の距離を
隔てた位置にはコネクタ5をもつて前記した限流
要素ユニツト1が絶縁電線4と平行して電気的に
接続された状態で取付けられて該限流要素ユニツ
ト1の放電電極1bの放電端部を金属バインド線
3に対向させ、該金属バインド線3と放電電極1
b間に前記絶縁電線4の貫通破壊電圧に対して十
分に低い所定の放電電圧特性を持つ気中間〓l1を
形成している。なお、限流要素ユニツト1と絶縁
電線4との電気的接続は第2図に示すように、課
電側電極1cと被覆4bを剥ぎ取つた絶縁電線4
の芯線4aとを該課電側電極1cに連結させたコ
ネクタ5により該限流要素ユニツト1が絶縁電線
4と平行するよう支持固定し、また、コネクタ5
には絶縁被覆5aを施すとともにコネクタ5の被
覆剥ぎ取り部分にはシリコンゴム等の絶縁シール
材7を充填し、絶縁テープ8を巻廻して保護する
ことにより感電防止を図るとともに芯線4aより
漏洩電流が流れ出すのを防止している。また、限
流要素ユニツト1の放電電極1bを覆つている外
套体1dは放電電極1bの放電端部において開口
し、かつ汚損湿潤時に放電電極1bから流れる漏
洩電流を抑制するとともに降雨時における水切れ
をよくして漏洩電流を抑制できるよう外套体1d
にひだ部1eを設けてある。前記金属バインド線
3と接地金物である碍子2のベース金具2aある
いはアーキングホーン9との間には気中間〓l2が
形成される。(Embodiment) Next, the present invention will be described in detail with reference to the illustrated embodiment. Reference numeral 1 denotes a current-limiting element unit, and the current-limiting element unit 1 includes a discharge electrode 1b and a current-side electrode 1c.
A current-limiting element 1a made of a material with non-linear voltage-current characteristics mainly composed of ZnO or SiC is interposed between the casing 1d made of a highly elastic insulating material such as rubber, etc. It consists of a discharge electrode 1b and a voltage-applying side electrode 1c that are encased with their discharge ends exposed. Reference numeral 2 denotes an insulator for supporting an insulated wire, and an insulated wire 4 is supported with a metal binding wire 3 at the head of the insulator 2. The above-described current limiting element unit 1 with a connector 5 is electrically connected to the insulated wire 4 in parallel with the insulated wire 4 at a position separated from the insulator 2 by a required distance. When installed, the discharge end of the discharge electrode 1b of the current limiting element unit 1 is made to face the metal binding wire 3, and the metal binding wire 3 and the discharge electrode 1
An air gap l1 having a predetermined discharge voltage characteristic sufficiently lower than the penetration breakdown voltage of the insulated wire 4 is formed between the insulated wires 4 and 4b. The electrical connection between the current limiting element unit 1 and the insulated wire 4 is as shown in FIG.
The current limiting element unit 1 is supported and fixed in parallel with the insulated wire 4 by the connector 5 which connects the core wire 4a of
An insulating coating 5a is applied to the connector 5, and the stripped portion of the connector 5 is filled with an insulating sealing material 7 such as silicone rubber, and an insulating tape 8 is wrapped around the connector 5 to prevent electric shock and prevent leakage current from the core wire 4a. prevents it from flowing out. In addition, the jacket 1d covering the discharge electrode 1b of the current limiting element unit 1 opens at the discharge end of the discharge electrode 1b, and suppresses the leakage current flowing from the discharge electrode 1b when it is dirty or wet, and prevents water from running out during rain. The outer shell 1d is designed to suppress leakage current.
A pleated portion 1e is provided at the bottom. An air gap l2 is formed between the metal binding wire 3 and the base metal fitting 2a of the insulator 2 or the arcing horn 9 , which is a grounding metal fitting.
なおコネクタ5は第3図に示すように絶縁電線
4の被覆4bを貫通して芯線4aと電気的に接続
する尖端5bを有したものとし、限流素子1aと
一体に外套体1dをもつて被覆しておけば、芯線
4aとの電気的接続を得るために絶縁電線4の被
覆4bを剥ぎ取る必要がないので、限流要素ユニ
ツト1を絶縁電線4に取り付ける作業を簡略化で
きる。 As shown in FIG. 3, the connector 5 has a tip 5b that penetrates the sheath 4b of the insulated wire 4 and electrically connects with the core wire 4a, and has a jacket 1d integrally with the current limiting element 1a. If the insulated wire 4 is coated, there is no need to strip off the sheath 4b of the insulated wire 4 in order to obtain electrical connection with the core wire 4a, thereby simplifying the work of attaching the current limiting element unit 1 to the insulated wire 4.
(作用)
このように構成されたものは、碍子2の頭部に
金属バインド線3をもつて支持された絶縁電線4
に限流要素ユニツト1がその放電電極1bと金属
バインド線3間に所定の気中間〓l1を形成させる
とともに限流素子1aを絶縁電線4の芯線に電気
的に接続させて絶縁電線4の貫通破壊電圧に対し
て十分に低い電圧で放電できるように取付けられ
ているので、雷サージが電線路に侵入すると限流
要素ユニツト1の放電電極1bと金属バインド線
3との気中間〓l1および該金属バインド線3と碍
子2のベース金具2aまたはアーキングホーン9
との気中間〓l2の経路で雷インパルスフラツシオ
ーバするが、これに継続する続流は課電側電極1
cと放電電極1b間の限流素子1aの電圧電流非
直線性により遮断され、続流アークの発生が阻止
されるので続流アークによる断線や碍子破壊が防
止される。さらに、限流要素ユニツト1が絶縁電
線4に沿わせて支持されているので、電線が揺動
しても金属バインド線3にいたる気中間〓が殆ど
変動せず、したがつて放電特性が安定し、雷サー
ジが限流要素ユニツト1、金属バインド線3、ベ
ース金具2aあるいはアーキングホーン9の経路
で放電するので金属バインド線3と絶縁電線4の
芯線4aとはほぼ同電位になる。なお厳密にいえ
ば、この経路では限流要素ユニツト1により放電
時に限流要素ユニツト1および気中間〓l1におい
てわずかな電圧降下が発生するが、これによる金
属バインド線3と芯線4aとの間の電位差は絶縁
電線4の被覆4bが貫通破壊される電圧よりも小
さいものであるので、実質的には被覆4bの電圧
負担が著しく軽減されたものになくなる。このた
め絶縁電線4が貫通破壊せず、従つて被覆4bが
健全な時と貫通破壊を起こした時とで雷インパル
スフラツシオーバ電圧が変動する従来の問題点を
解消することができる。また、限流要素ユニツト
1の放電電極1bと金属バインド線3との間を気
中間〓l1で放電させるため、雷サージが消滅すれ
ば線路電圧によつて金属バインド線3が同電位に
充電されることがなく、金属バインド線3による
感電事故や鳥害等を招くおそれもない。さらに本
考案は前記気中間〓l1を電線路に沿わせて形成し
ているので、急峻な雷サージが発生しても所定外
の接地物への不慮の放電事故を招くことがなく、
放電経路を安定させることができる。(Function) In this structure, an insulated wire 4 is supported with a metal binding wire 3 on the head of an insulator 2.
The current-limiting element unit 1 forms a predetermined air gap l1 between the discharge electrode 1b and the metal binding wire 3, and electrically connects the current-limiting element 1a to the core wire of the insulated wire 4. Since it is installed so that it can discharge at a sufficiently low voltage with respect to the penetration breakdown voltage, when a lightning surge enters the power line, the air between the discharge electrode 1b of the current limiting element unit 1 and the metal binding wire 3 〓l 1 and the metal binding wire 3 and the base metal fitting 2a of the insulator 2 or the arcing horn 9
The lightning impulse flashes over along the path of 〓l 2 between the air and the current, but the follow-on current continues from the current to the voltage-applied side electrode 1.
The voltage and current non-linearity of the current limiting element 1a between the current limiting element 1a and the discharge electrode 1b interrupts the current and prevents the generation of follow-on arcs, thereby preventing wire breakage and insulator destruction due to follow-on arcs. Furthermore, since the current limiting element unit 1 is supported along the insulated wire 4, even if the wire swings, the air gap leading to the metal binding wire 3 hardly changes, and therefore the discharge characteristics are stable. However, since the lightning surge is discharged along the path of the current limiting element unit 1, the metal binding wire 3, the base metal fitting 2a, or the arcing horn 9, the metal binding wire 3 and the core wire 4a of the insulated wire 4 have approximately the same potential. Strictly speaking, in this path, a slight voltage drop occurs in the current-limiting element unit 1 and the air intermediate l1 during discharge due to the current-limiting element unit 1, but this causes a slight voltage drop between the metal binding wire 3 and the core wire 4a. Since the potential difference is smaller than the voltage at which the sheathing 4b of the insulated wire 4 is destroyed, the voltage burden on the sheathing 4b is substantially reduced. Therefore, the insulated wire 4 does not undergo through-breakage, and the conventional problem in which the lightning impulse flashover voltage fluctuates between when the sheathing 4b is healthy and when through-breakage occurs can be solved. In addition, since the discharge electrode 1b of the current limiting element unit 1 and the metal binding wire 3 are discharged in the air between the two, once the lightning surge disappears, the metal binding wire 3 is charged to the same potential by the line voltage. Therefore, there is no risk of electric shock or bird damage caused by the metal binding wire 3. Furthermore, in the present invention, the air gap l1 is formed along the electric line, so even if a sudden lightning surge occurs, there will be no accidental discharge accident to an unspecified grounded object.
The discharge path can be stabilized.
(考案の効果)
本考案は前記説明から明らかなように、限流要
素ユニツトを絶縁電線の芯線に電気的に接続させ
るとともに限流要素ユニツトの放電電極と碍子の
頭部に絶縁電線を接続させている金属バインド線
との間に所定の気中間〓を設けるようにしたの
で、雷サージに対して安定した放電特性で確実に
続流を遮断し、かつ金属バインド線の充電を阻止
するとともに、雷サージ発生時に絶縁電線の絶縁
破壊の原因となり易い金属バインド線を逆に利用
して絶縁電線を保護できるので、電線路の安定維
持と安全に効果が大きく、取付構造が簡単で安価
に実施できる利点と相俟ち実用的価値極めて大な
ものである。(Effect of the invention) As is clear from the above description, the present invention electrically connects the current limiting element unit to the core wire of the insulated wire, and connects the insulated wire to the discharge electrode of the current limiting element unit and the head of the insulator. Since a predetermined air gap is provided between the metal binding wire and the lightning surge, it has stable discharge characteristics to reliably block the following current from lightning surges, and prevents charging of the metal binding wire. The metal binding wire, which tends to cause dielectric breakdown of the insulated wire when a lightning surge occurs, can be used to protect the insulated wire, so it is highly effective in maintaining the stability and safety of the wire, and the installation structure is simple and can be implemented at low cost. Together with the advantages, the practical value is extremely great.
第1図は本考案の実施例を示す一部切欠正面
図、第2図は同じく要部の一部切欠正面図、第3
図は本考案の他の実施例を示す要部の一部切欠正
面図である。
1:限流要素ユニツト、1a:限流素子、1
b:放電電極、1c:課電側電極、1d:外套
体、2:碍子、3:金属バインド線、4:絶縁電
線、4a:芯線、5:コネクタ、5b:尖端、
l1:気中間〓。
Fig. 1 is a partially cutaway front view showing an embodiment of the present invention, Fig. 2 is a partially cutaway front view of the main part, and Fig.
The figure is a partially cutaway front view of the main part showing another embodiment of the present invention. 1: Current-limiting element unit, 1a: Current-limiting element, 1
b: discharge electrode, 1c: power supply side electrode, 1d: mantle, 2: insulator, 3: metal binding wire, 4: insulated wire, 4a: core wire, 5: connector, 5b: tip,
l 1 : Ki middle =.
Claims (1)
3をもつて支持させるとともに、この絶縁電線
4の碍子2から所要の距離を隔てた位置には電
圧電流特性が非直線性の材料よりなる限流素子
1aと放電電極1bと課電側電極1cとを絶縁
材料よりなる外套体1dをもつて被覆してなる
限流要素ユニツト1を絶縁電線4と平行して、
かつ課電側電極1cをもつて前記絶縁電線4に
電気的に接続させた状態でコネクタ5を介して
取付けてその放電電極1bを金属バインド線3
に対向させ、この放電電極1bの放電端部と金
属バインド線3との間に所定の放電電圧特性を
持つ気中間〓l1を形成したことを特徴とする雷
害防止用絶縁電線保護装置。 2 コネクタ5が絶縁電線4の被覆を貫通して芯
線4aに接触する尖端5bを有するものである
実用新案登録請求の範囲第1項記載の雷害防止
用絶縁電線保護装置。[Claims for Utility Model Registration] 1. An insulated wire 4 is supported with a metal bind wire 3 on the head of the insulator 2, and a voltage-current characteristic is provided at a position of the insulated wire 4 at a required distance from the insulator 2. A current-limiting element unit 1 consisting of a current-limiting element 1a made of a non-linear material, a discharge electrode 1b, and a voltage-applying side electrode 1c covered with a jacket 1d made of an insulating material is arranged in parallel with the insulated wire 4. hand,
In addition, the discharge electrode 1b is connected to the metal binding wire 3 by attaching it via the connector 5 while electrically connected to the insulated wire 4 with the energizing side electrode 1c.
An insulated wire protection device for preventing lightning damage, characterized in that an air gap L1 having predetermined discharge voltage characteristics is formed between the discharge end of the discharge electrode 1b and the metal binding wire 3, facing each other. 2. The insulated wire protection device for lightning damage prevention according to claim 1, wherein the connector 5 has a tip 5b that penetrates the sheath of the insulated wire 4 and contacts the core wire 4a.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP6952183U JPS59173989U (en) | 1983-05-10 | 1983-05-10 | Insulated wire protection device for lightning damage prevention |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP6952183U JPS59173989U (en) | 1983-05-10 | 1983-05-10 | Insulated wire protection device for lightning damage prevention |
Publications (2)
Publication Number | Publication Date |
---|---|
JPS59173989U JPS59173989U (en) | 1984-11-20 |
JPH0229676Y2 true JPH0229676Y2 (en) | 1990-08-09 |
Family
ID=30199672
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP6952183U Granted JPS59173989U (en) | 1983-05-10 | 1983-05-10 | Insulated wire protection device for lightning damage prevention |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPS59173989U (en) |
Families Citing this family (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH0664956B2 (en) * | 1984-02-03 | 1994-08-22 | 日本高圧電気株式会社 | Insulated wire disconnection prevention device |
JPS60141625U (en) * | 1985-01-23 | 1985-09-19 | 日本高圧電気株式会社 | Disconnection prevention device for insulated wires |
Family Cites Families (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS6344956Y2 (en) * | 1981-06-22 | 1988-11-22 |
-
1983
- 1983-05-10 JP JP6952183U patent/JPS59173989U/en active Granted
Also Published As
Publication number | Publication date |
---|---|
JPS59173989U (en) | 1984-11-20 |
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