JP4312058B2 - Gas container connection structure - Google Patents

Gas container connection structure Download PDF

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JP4312058B2
JP4312058B2 JP2004006744A JP2004006744A JP4312058B2 JP 4312058 B2 JP4312058 B2 JP 4312058B2 JP 2004006744 A JP2004006744 A JP 2004006744A JP 2004006744 A JP2004006744 A JP 2004006744A JP 4312058 B2 JP4312058 B2 JP 4312058B2
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bushing
gas
buried metal
gas container
female screw
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JP2005204382A (en
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多一 前田
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Mitsubishi Electric Corp
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Mitsubishi Electric Corp
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Priority to JP2004006744A priority Critical patent/JP4312058B2/en
Priority to TW94100134A priority patent/TWI294714B/en
Priority to CNB200510006223XA priority patent/CN100341215C/en
Publication of JP2005204382A publication Critical patent/JP2005204382A/en
Priority to HK05111732A priority patent/HK1080619A1/en
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Description

本発明は、各回線ユニットごとに各電気機器がガス容器中に収納されたガス絶縁スイッチギヤのように、内部に電気機器が収納された複数のガス容器を互いに接続するための構造に関する。   The present invention relates to a structure for connecting a plurality of gas containers each having an electrical device stored therein, such as a gas-insulated switchgear in which each electrical device is stored in a gas container for each line unit.

従来より、スイッチギヤにおいては、各ガス容器内に遮断器、断路器等の各種の電気機器を個別に収納するとともに、当該容器内に絶縁ガスを封入して各電気機器の耐電圧性能を高めることで装置全体の小型化を図るようにしたものがある。   Conventionally, in switchgear, various electric devices such as circuit breakers and disconnectors are individually housed in each gas container, and an insulating gas is enclosed in the container to increase the withstand voltage performance of each electric device. Some devices are designed to reduce the overall size of the apparatus.

このようなスイッチギヤにおいては、各ガス容器内に収納されている電気機器を電気的に当該容器の外部に引き出す必要があることから、各ガス容器の隔壁を内外に貫通して電気機器接続用の回路導体が設けられるとともに、ガス容器の隔壁と回路導体との間には両者間を電気的に絶縁するためのブッシングが介在されている。   In such a switchgear, it is necessary to electrically draw out the electric equipment stored in each gas container to the outside of the container. The circuit conductor is provided, and a bushing for electrically insulating between the partition wall of the gas container and the circuit conductor is interposed.

しかも、従来技術では、装置全体の高密度化を図る上で、ガス容器の互いに隣接する隔壁同士をブッシングに一体固定した構成を採用したものがある(例えば、特許文献1,2等参照)。このように、ガス容器の互いに隣接する隔壁をブッシングに固定した従来構成の一例を図5に示す。   Moreover, in the prior art, there is one that adopts a configuration in which the partition walls adjacent to each other in the gas container are integrally fixed to the bushing in order to increase the density of the entire apparatus (see, for example, Patent Documents 1 and 2). FIG. 5 shows an example of a conventional configuration in which the adjacent partition walls of the gas container are fixed to the bushing.

図5に示した例では、2つのガス容器51,52の互いに隣接する各隔壁51a,52aの間に合成樹脂等でできた絶縁性のブッシング53が設けられており、このブッシング53の厚さ方向の両側にそれぞれ雌ネジ部54aを有する埋金54が個別に埋設されている。この場合、ブッシング53と各埋金54とはインサートモールド等により一体注形されたものである。そして、各ガス容器51,52の隔壁51a,52aは、各埋金54の雌ネジ部54aにボルト56を螺合することによってブッシング53に一体的に結合されている。なお、符号58は各ガス容器51,52の隔壁51a,52aとブッシング53との間に設けられたガスシール用のOリングである。   In the example shown in FIG. 5, an insulating bushing 53 made of a synthetic resin or the like is provided between the partition walls 51 a and 52 a adjacent to each other of the two gas containers 51 and 52. A buried metal 54 having a female screw part 54a is embedded in each side of the direction. In this case, the bushing 53 and each buried metal 54 are integrally cast by an insert mold or the like. The partition walls 51 a and 52 a of the gas containers 51 and 52 are integrally coupled to the bushing 53 by screwing bolts 56 into the female screw portions 54 a of the buried metal 54. Reference numeral 58 denotes an O-ring for gas sealing provided between the partition walls 51 a and 52 a of the gas containers 51 and 52 and the bushing 53.

特開平06−014424号公報Japanese Patent Laid-Open No. 06-014424 特開平07−264754号公報JP 07-264754 A

しかしながら、図5に示した従来構成のものでは、ブッシング53を介して2つのガス容器51,52を接続する場合、使用するボルト56の数に対応した数量の埋金54が必要である。ブッシング53の成形材料として例えば熱硬化性樹脂などを使用する場合には、埋金54の高温箇所から次第に硬化していくため、埋金54の数が多い程、成形されるブッシング53に熱歪みや残留応力が発生し易くなる。そして、ブッシング53にこのような熱歪みや残留応力が生じると、割れやヒケ等の不良発生を引き起こし、ガス容器51,52内の気密性が失われる。   However, in the case of the conventional configuration shown in FIG. 5, when two gas containers 51, 52 are connected via the bushing 53, the amount of buried metal 54 corresponding to the number of bolts 56 to be used is necessary. When, for example, a thermosetting resin is used as a molding material for the bushing 53, the bushing 53 to be molded is thermally distorted as the number of the deposits 54 increases, because the bushing 53 is gradually cured from a high temperature portion. And residual stress is likely to occur. When such thermal strain and residual stress are generated in the bushing 53, defects such as cracks and sink marks are caused, and the gas tightness in the gas containers 51 and 52 is lost.

また、埋金54入りのブッシング53を成形する際には、埋金54を金型内に設置した上で樹脂モールドを行うため、埋金54の数が多い程、樹脂モールドする際の準備に手間と時間がかかることになる。   Further, when molding the bushing 53 containing the buried metal 54, resin molding is performed after the buried metal 54 is placed in the mold. Therefore, the larger the number of buried metals 54, the more preparation for resin molding is performed. It will take time and effort.

本発明は、上記の課題を解決するためになされたもので、ブッシングに埋設すべき埋金の数を削減してブッシングに熱歪みや残留応力が発生するのを抑制するとともに、樹脂モールドする際の準備に要する手間と時間とを削減することが可能なガス容器の接続構造を提供することを目的とする。   The present invention has been made in order to solve the above-described problems, and reduces the number of buried metal to be embedded in the bushing to suppress the occurrence of thermal distortion and residual stress in the bushing and at the time of resin molding. An object of the present invention is to provide a gas container connection structure capable of reducing labor and time required for preparation of the gas container.

上記の目的を達成するため、本発明にあっては、内部に電気機器が収納された2つのガス容器と、この2つのガス容器の隔壁に挟まれて上記電気機器と接続する回路導体が内部を貫通している絶縁性のブッシングと、両端面が上記ブッシングの外部に露出するように上記ブッシングに埋め込まれ上記両端面からそれぞれの内方に向けて雌ネジ部が互いに独立して形成された埋金と、上記雌ネジ部それぞれにガス容器の内面から各隔壁を貫通して螺合された締結具とによって互いに隣接する各隔壁が上記ブッシングに一体的に結合されていることを特徴としている。 In order to achieve the above object, according to the present invention, there are two gas containers in which an electric device is housed, and a circuit conductor sandwiched between partition walls of the two gas containers and connected to the electric device. And an insulating bushing penetrating through the bushing and embedded in the bushing so that both end surfaces are exposed to the outside of the bushing, and female screw portions are formed independently from each other from the both end surfaces toward the inside. The partition walls adjacent to each other are integrally coupled to the bushing by a buried metal and a fastener screwed through the partition walls from the inner surface of the gas container to each of the female screw portions . .

本発明によれば、ガス容器をブッシングに固定する場合、2つの締結具に対して一つの埋金を設ければよいので、ブッシングに埋設すべき埋金の数を従来に比べて半減することができる。このため、ブッシングに熱歪みや残留応力が発生するのを抑えることができ、割れやヒケ等の不良発生を低減することが可能になる。しかも、ブッシングに埋設すべき埋金の数が削減される分だけ、樹脂モールドする際の準備に要する手間と時間とを減らすことができる。   According to the present invention, when the gas container is fixed to the bushing, it is only necessary to provide one buried metal for the two fasteners. Can do. For this reason, it can suppress that a thermal distortion and a residual stress generate | occur | produce in a bushing, and it becomes possible to reduce generation | occurrence | production of defects, such as a crack and a sink. In addition, the labor and time required for preparation for resin molding can be reduced by the amount that the number of buried metal to be embedded in the bushing is reduced.

以下、本発明におけるガス容器の接続構造を、スイッチギヤに適用した場合を例にとって説明する。   Hereinafter, the case where the gas container connection structure of the present invention is applied to a switchgear will be described as an example.

実施の形態1.
図1は本発明の実施の形態1におけるスイッチギヤのガス絶縁開閉装置を示す断面図、図2は図1のガス絶縁開閉装置を構成する2つの機器ユニットの接続部分を拡大して示す断面図、図3は図2において2つのガス容器の隔壁をブッシングに固定した部分のみを取り出して示す断面図である。
Embodiment 1 FIG.
1 is a cross-sectional view showing a gas-insulated switchgear of a switchgear according to Embodiment 1 of the present invention, and FIG. 2 is an enlarged cross-sectional view showing a connecting portion of two equipment units constituting the gas-insulated switchgear of FIG. 3 is a cross-sectional view showing only the portion where the partition walls of the two gas containers are fixed to the bushing in FIG.

この実施の形態1におけるスイッチギヤのガス絶縁開閉装置は、2つの機器ユニット1,2を備える。そして、一方の機器ユニット1はガス容器3の内部に遮断器4が収納され、また、他方の機器ユニット2はガス容器5の内部に断路器6が収納されている。また、各ガス容器3,5内には、各機器4,6の耐電圧性能を高めるために例えばSFガス等の絶縁ガスが封入されている。 The switchgear gas-insulated switchgear according to the first embodiment includes two device units 1 and 2. One device unit 1 contains a circuit breaker 4 inside a gas container 3, and the other device unit 2 contains a disconnector 6 inside a gas container 5. In addition, in each gas container 3, 5, for example, an insulating gas such as SF 6 gas is enclosed in order to enhance the withstand voltage performance of each device 4, 6 .

さらに、各ガス容器3,5内に収納されている遮断器4や断路器6に対しては、回路導体7a〜7gが順次接続されている。これらの回路導体7a〜7gには高電圧が加わるので、ガス容器3,5を内外に貫通する回路導体7a,7d,7gについては、ガス容器3,5と電気的に絶縁する必要がある。このため、これらの回路導体7a,7d,7gと各ガス容器3,5との間には、例えばエポキシ樹脂等の絶縁性材料を成形してなるブッシング8,9,10が介在されている。また、各ガス容器3,5は接地されている。   Furthermore, circuit conductors 7a to 7g are sequentially connected to the circuit breaker 4 and the disconnecting device 6 housed in the gas containers 3 and 5, respectively. Since a high voltage is applied to these circuit conductors 7a to 7g, the circuit conductors 7a, 7d and 7g penetrating the gas containers 3 and 5 need to be electrically insulated from the gas containers 3 and 5. Therefore, bushings 8, 9, and 10 formed by molding an insulating material such as an epoxy resin are interposed between the circuit conductors 7a, 7d, and 7g and the gas containers 3 and 5, for example. The gas containers 3 and 5 are grounded.

特に、この実施の形態1では、装置全体の高密度化を図る上で、ガス容器3,5の互いに隣接する隔壁3a,5aが共にブッシング9に固定されている。すなわち、このブッシング9は、回路導体7dが挿通された筒状部9aと、この筒状部9aから径方向外方に張り出したフランジ部9bとを有し、フランジ部9aにインサートモールド等によって埋金12が一体的に埋設されている。   In particular, in the first embodiment, the partition walls 3a and 5a adjacent to each other of the gas containers 3 and 5 are fixed to the bushing 9 in order to increase the density of the entire apparatus. That is, the bushing 9 has a cylindrical portion 9a through which the circuit conductor 7d is inserted, and a flange portion 9b projecting radially outward from the cylindrical portion 9a, and is embedded in the flange portion 9a by an insert mold or the like. Gold 12 is embedded in one piece.

この埋金12は、ブッシング9のフランジ部9bの厚さ方向においてその両端面が外部に露出した状態で埋設されている。つまり、埋金12の軸方向の長さはフランジ部9bの厚さと略同じになるように設定されている。そして、この埋金12の両端面からはそれぞれ内方に向けて雌ネジ部12a,12bが互いに独立して形成されている。   The buried metal 12 is buried with both end faces exposed to the outside in the thickness direction of the flange portion 9 b of the bushing 9. That is, the axial length of the buried metal 12 is set to be substantially the same as the thickness of the flange portion 9b. Then, female screw portions 12a and 12b are formed independently from each other from both end faces of the buried metal 12 toward the inside.

この埋金12の各雌ネジ部12a,12bに対して締結具としてのボルト14が隔壁3a,5aおよびワッシャ15を介して螺合されることによって、ガス容器3,5がブッシング9に一体的に結合されている。なお、符号16,17は各ガス容器3,5の隔壁3a,5aとブッシング9との間に設けられたガスシール用のOリングである。   The bolts 14 as fasteners are screwed to the female screw portions 12a and 12b of the buried metal 12 via the partition walls 3a and 5a and the washer 15, so that the gas containers 3 and 5 are integrated with the bushing 9. Is bound to. Reference numerals 16 and 17 denote gas seal O-rings provided between the partition walls 3 a and 5 a of the gas containers 3 and 5 and the bushing 9.

このように、この実施の形態1では、ガス容器3,5をブッシング9に固定する際、2つのボルト14に対して一つの埋金12を設ければよいので、ブッシング9に埋設すべき埋金12の数を従来に比べて半減することができる。このため、ブッシング9に熱歪みや残留応力が発生するのを抑えることができ、割れやヒケ等の不良発生を低減することが可能になる。しかも、ブッシング9に埋設すべき埋金12の数が削減される分だけ、樹脂モールドする際の準備に要する手間と時間とを減らすことができる。   As described above, in the first embodiment, when the gas containers 3 and 5 are fixed to the bushing 9, it is only necessary to provide one buried metal 12 for the two bolts 14. The number of gold 12 can be halved compared to the conventional case. For this reason, it can suppress that a thermal distortion and a residual stress generate | occur | produce in the bushing 9, and it becomes possible to reduce generation | occurrence | production of defects, such as a crack and a sink. In addition, the labor and time required for preparation for resin molding can be reduced by the amount corresponding to the reduction in the number of buried metal 12 to be embedded in the bushing 9.

実施の形態2.
図4は本発明の実施の形態2において、2つのガス容器の隔壁をブッシングに固定した部分のみを取り出して示す断面図であり、図1ないし図3に示した実施の形態1と対応する構成部分には同一の符号を付す。
Embodiment 2. FIG.
FIG. 4 is a cross-sectional view showing only the portion in which the partition walls of the two gas containers are fixed to the bushing in the second embodiment of the present invention, and corresponds to the first embodiment shown in FIGS. Parts are denoted by the same reference numerals.

この実施の形態2における特徴は、ブッシング9のフランジ部9bに埋設されている埋金13の両端面からそれぞれ内方に向けて形成されている各雌ネジ部13a,13bが、互いに対向することなく埋金13の厚さ方向と直交する方向に位置をずらせた状態で形成されていることである。その他の構成は実施の形態1の場合と同様であるから、ここでは詳しい説明は省略する。   The feature of the second embodiment is that the female screw portions 13a and 13b formed inward from the both end faces of the buried metal 13 embedded in the flange portion 9b of the bushing 9 are opposed to each other. In other words, it is formed in a state in which the position is shifted in a direction orthogonal to the thickness direction of the buried metal 13. Since other configurations are the same as those in the first embodiment, detailed description thereof is omitted here.

この実施の形態2のような構成にすれば、ブッシング9のフランジ部9bの厚さをより薄くできるので、上記の実施の形態1の作用、効果に加えて、装置全体の高密度化を図る上で一層有利となる。   If the configuration as in the second embodiment is adopted, the thickness of the flange portion 9b of the bushing 9 can be further reduced. Therefore, in addition to the operation and effect of the first embodiment, the density of the entire apparatus is increased. This is even more advantageous.

なお、上記の実施の形態1,2では、本発明をスイッチギヤに適用した場合について説明したが、本発明はこれに限定されるものではなく、互いに隣接する2つのガス容器をブッシングに固定する構成のものであれば広く適用することが可能である。また、締結具としては、ボルト14に代えてネジ等で締結することも可能である。   In the first and second embodiments, the case where the present invention is applied to the switch gear has been described. However, the present invention is not limited to this, and two gas containers adjacent to each other are fixed to the bushing. Any structure can be applied widely. Moreover, as a fastener, it can replace with the volt | bolt 14 and can also be fastened with a screw | thread etc. As shown in FIG.

本発明の実施の形態1におけるスイッチギヤのガス絶縁開閉装置を示す断面図である。It is sectional drawing which shows the gas insulated switchgear of the switchgear in Embodiment 1 of this invention. 図1のガス絶縁開閉装置を構成する2つの機器ユニットの接続部分を拡大して示す断面図である。It is sectional drawing which expands and shows the connection part of two apparatus units which comprise the gas insulated switchgear of FIG. 図2において2つのガス容器の隔壁をブッシングに固定した部分のみを取り出して示す断面図である。It is sectional drawing which takes out only the part which fixed the partition of the two gas containers to the bushing in FIG. 本発明の実施の形態2において、2つのガス容器の隔壁をブッシングに固定した部分のみを取り出して示す断面図である。In Embodiment 2 of this invention, it is sectional drawing which takes out and shows only the part which fixed the partition of the two gas containers to the bushing. 互いに隣接するガス容器の各隔壁同士をブッシングを介して互いに固定した従来構成の一例を示す断面図である。It is sectional drawing which shows an example of the conventional structure which fixed each partition of the gas container adjacent to each other via the bushing.

符号の説明Explanation of symbols

3 ガス容器、3a 隔壁、4 遮断器(電気機器)、5 ガス容器、5a 隔壁、
6 断路器(電気機器)、7a〜7g 回路導体、9 ブッシング、12 埋金、
12a,12b 雌ネジ部、13 埋金、13a,13b 雌ネジ部、
14 ボルト(締結具)。
3 Gas container, 3a partition, 4 Circuit breaker (electrical equipment), 5 Gas container, 5a Partition,
6 disconnector (electrical equipment), 7a-7g circuit conductor, 9 bushing, 12 buried metal,
12a, 12b female thread, 13 buried, 13a, 13b female thread,
14 bolts (fasteners).

Claims (2)

内部に電気機器が収納された2つのガス容器と、この2つのガス容器の隔壁に挟まれて上記電気機器と接続する回路導体が内部を貫通している絶縁性のブッシングと、両端面が上記ブッシングの外部に露出するように上記ブッシングに埋め込まれ上記両端面からそれぞれの内方に向けて雌ネジ部が互いに独立して形成された埋金と、上記雌ネジ部それぞれにガス容器の内面から各隔壁を貫通して螺合された締結具とによって互いに隣接する各隔壁が上記ブッシングに一体的に結合されていることを特徴とするガス容器の接続構造。 Two gas containers in which electrical equipment is housed , an insulating bushing that is sandwiched between partition walls of the two gas containers and connected to the electrical equipment, and both end faces are A buried metal embedded in the bushing so as to be exposed to the outside of the bushing and having female screw portions formed independently from each other inward from the both end faces, and an internal surface of the gas container in each of the female screw portions. A connecting structure for a gas container, wherein each partition wall adjacent to each other is integrally coupled to the bushing by a fastener screwed through the partition wall . 上記埋金に形成されている各雌ネジ部は、互いに対向することなく上記埋金の厚さ方向と直交する方向に位置をずらせて形成されていることを特徴とする請求項1記載のガス容器の接続構造。 2. The gas according to claim 1, wherein the female screw portions formed in the buried metal are formed so as to be shifted in a direction perpendicular to the thickness direction of the buried metal without facing each other. Container connection structure.
JP2004006744A 2004-01-14 2004-01-14 Gas container connection structure Expired - Fee Related JP4312058B2 (en)

Priority Applications (4)

Application Number Priority Date Filing Date Title
JP2004006744A JP4312058B2 (en) 2004-01-14 2004-01-14 Gas container connection structure
TW94100134A TWI294714B (en) 2004-01-14 2005-01-04 Structure for joining gas enclosures
CNB200510006223XA CN100341215C (en) 2004-01-14 2005-01-14 Connection structure of gas container
HK05111732A HK1080619A1 (en) 2004-01-14 2005-12-20 Structure for joining gas enclosures

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Application Number Priority Date Filing Date Title
JP2004006744A JP4312058B2 (en) 2004-01-14 2004-01-14 Gas container connection structure

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JP2005204382A JP2005204382A (en) 2005-07-28
JP4312058B2 true JP4312058B2 (en) 2009-08-12

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CN104124010A (en) * 2013-04-26 2014-10-29 西门子公司 Insulator and gas insulated metal-enclosed switchgear
CN104121437A (en) * 2013-04-26 2014-10-29 西门子公司 Sealing connection structure for through hole and metal closed gas insulating switch device thereof
CN108256136B (en) * 2016-12-29 2021-07-16 北京金风科创风电设备有限公司 Thread tooth optimization method and device, connecting piece and manufacturing method thereof

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TW200527790A (en) 2005-08-16
JP2005204382A (en) 2005-07-28

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