JP2008010159A - Power switching device - Google Patents

Power switching device Download PDF

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JP2008010159A
JP2008010159A JP2006176097A JP2006176097A JP2008010159A JP 2008010159 A JP2008010159 A JP 2008010159A JP 2006176097 A JP2006176097 A JP 2006176097A JP 2006176097 A JP2006176097 A JP 2006176097A JP 2008010159 A JP2008010159 A JP 2008010159A
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movable
disconnecting
side conductor
support member
unit
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JP4738266B2 (en
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Takeshi Komatsu
健 小松
Daiji Matsuda
大二 松田
Tomohito Mori
智仁 森
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Mitsubishi Electric Corp
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Mitsubishi Electric Corp
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  • Gas-Insulated Switchgears (AREA)
  • Driving Mechanisms And Operating Circuits Of Arc-Extinguishing High-Tension Switches (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To provide a power switching device which can reduce work time and manufacturing cost and has less limitations in transport and installation, through the miniaturization of the device body and an improvement in assembling efficiency. <P>SOLUTION: The power switching device includes cutoff units 1 each having a stationary contactor 5, a cutoff unit movable side conductor 4 on which a movable contactor 6 is fitted to be capable of contacting with and separating from the stationary contactor 5; and disconnection units 8 each of which has a cutoff unit stationary side conductor 9 and a disconnection unit movable side conductor 11 that are disposed to be isolated from each other, and a movable conductor 12 so fitted on the disconnection unit movable side conductor 11 as to be capable of contacting with and separating from the cutoff unit stationary side conductor 9. The cutoff units 1 and the disconnection units 8 are disposed on a support member 16 via support insulators 28 and 29, respectively, so that the main circuit axes of three phases are parallel with each other. In the support member 16, the movable contactors 6 of the cutoff units 1 and the movable conductors 12 of the disconnection units 8 are coupled together for three phases, respectively, and are driven in common by a set of operation devices 21 and 23. The support member 16 can be separated for each section for each phase. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

この発明は、電力用開閉装置、特に、発電プラントにおいて発電機と主変圧器の間に設置されるような主回路開閉装置に関するものである。   The present invention relates to a power switchgear, and more particularly to a main circuit switchgear that is installed between a generator and a main transformer in a power plant.

発電プラントにおいては、これまで主流であった高圧同期方式に代わって、低圧同期方式の採用が増加している。この場合、従来技術においても、この発明による実施の形態を示す図4と同様に、発電機Gに主回路開閉装置Aが設置される。
図4において、主回路開閉装置Aには、主回路遮断器B、主回路断路器C、遮断器側接地装置D、断路器側接地装置Eが設けられている。
ここで、主回路遮断器B、主回路断路器C、遮断器側および断路器側接地装置D,Eをそれぞれ個別の単体機器としてこれらを寄せ集めて構成するよりも、これら全てを一体化して構成するほうがトータルの据付面積を小さくでき、また製造コストが安くなるため積極的に採用される傾向にある(例えば、特許文献1参照)。
In power plants, the use of low-pressure synchronous systems is increasing in place of high-pressure synchronous systems that have been the mainstream. In this case, also in the prior art, the main circuit switching device A is installed in the generator G as in FIG. 4 showing the embodiment according to the present invention.
In FIG. 4, the main circuit switching device A is provided with a main circuit breaker B, a main circuit disconnector C, a breaker-side grounding device D, and a disconnector-side grounding device E.
Here, the main circuit breaker B, the main circuit disconnector C, the breaker side and the disconnector side grounding devices D and E are all integrated as a unit rather than as a single unit. Since the total installation area can be reduced and the manufacturing cost is reduced, the configuration tends to be actively employed (see, for example, Patent Document 1).

特許文献1には、3相分の遮断部1、断路部8、第一および第二の接地導体14,15が一体化され3相共通の支持架台16により支持された主回路開閉装置Aが開示されている。
特許第3243750号公報(3−5頁、図1−3)
Patent Document 1 discloses a main circuit switching device A in which a three-phase blocking portion 1, a disconnecting portion 8, and first and second ground conductors 14 and 15 are integrated and supported by a three-phase common support base 16. It is disclosed.
Japanese Patent No. 3243750 (page 3-5, Fig. 1-3)

上記のように構成された従来の一体形主回路開閉装置は、遮断器、断路器、接地装置をそれぞれ単体の機器で構成した場合よりも、据付面積の縮小や製造コストの低減の点で有利であるが、次のような問題がある。   The conventional integrated main circuit switchgear configured as described above is advantageous in terms of reducing the installation area and manufacturing cost, compared to the case where the circuit breaker, disconnector, and grounding device are each configured as a single device. However, there are the following problems.

遮断部、断路部あるいは接地導体をその上部に支持している支持部材が一体であるため、組立時あるいは輸送・据付時における区分が大きく、特に大容量化を達成する場合には大きな問題であった。特に輸送経路の制約、据付搬入口サイズや使用可能な重機の制約により適用できない場合もある。また、遮断部操作装置、断路部操作装置、および第一、第二の接地部操作装置が高剛性の構造体に取り付けられ、支持部材の外側に取り付けられているため、機器本体が大きくなる問題があった。   Since the support member that supports the interruption part, disconnection part, or ground conductor on the upper part is integrated, there is a large division during assembly, transportation, and installation, which is a big problem especially when achieving large capacity. It was. In particular, it may not be applicable due to restrictions on transportation routes, installation entrance size, and restrictions on usable heavy equipment. Moreover, since the interruption | blocking part operating device, the disconnection part operating device, and the 1st, 2nd grounding part operating device are attached to the highly rigid structure and are attached to the outer side of a support member, the problem that an apparatus main body becomes large was there.

この発明は、上記のような問題を解消するためになされたもので、機器本体の小形化と組立性を向上することにより作業時間を短縮して製造コストを低減できるとともに、輸送および据付時の制約低減を達成できる電力用開閉装置を得ようとするものである。   The present invention has been made to solve the above-described problems. By reducing the size and assembling of the main body of the apparatus, the work time can be shortened and the manufacturing cost can be reduced, and at the time of transportation and installation. An object of the present invention is to obtain a power switchgear that can achieve a constraint reduction.

この発明に係る電力用開閉装置では、固定接触子が固定された遮断部固定側導体、および前記固定接触子と接離可能に可動接触子が取り付けられた遮断部可動側導体を有する遮断部、ならびに、互いに離隔して設置された断路部固定側導体と断路部可動側導体および前記断路部固定側導体と接離可能に前記断路部可動側導体に取り付けられた可動導体を有する断路部を備え、前記遮断部と断路部とが支持絶縁物を介して支持部材上に3相各々の主回路軸線が並行となるように設置され、前記遮断部の可動接触子および前記断路部の可動導体それぞれが3相分連結されて一式の操作装置で共通に駆動されるように前記支持部材内に構成された電力用開閉装置において、前記支持部材が各相毎に分離可能とされたものである。   In the power switchgear according to the present invention, a blocking portion having a fixed contact, a blocking portion fixed-side conductor, and a blocking portion having a blocking portion movable-side conductor to which the movable contact is attached to and separated from the fixed contact, And a disconnecting portion having a disconnecting portion fixed side conductor and a disconnecting portion movable side conductor, and a disconnecting portion having a movable conductor attached to the disconnecting portion movable side conductor so as to be able to contact and separate from the disconnecting portion fixed side conductor. The interrupting part and the disconnecting part are installed on a supporting member via a support insulator so that the main circuit axes of the three phases are parallel to each other, and the movable contactor of the interrupting part and the movable conductor of the disconnecting part, respectively In the power switchgear configured in the support member so as to be connected in three phases and driven in common by a set of operation devices, the support member is separable for each phase.

この発明によれば、機器本体の小形化と組立性を向上することにより作業時間を短縮して製造コストを低減できるとともに、輸送および据付時の制約低減を達成できる電力用開閉装置を得ることができる。   According to the present invention, it is possible to obtain a power switchgear that can reduce the manufacturing time by reducing the working time by reducing the size and assembling of the equipment body, and can also reduce the restrictions during transportation and installation. it can.

実施の形態1.
この発明による実施の形態を図1から図4までについて説明する。図1は、この発明による実施の形態における一体形の主回路開閉装置の構成を示す側面図で、一部を断面図で示している。図2は、この発明による実施の形態における一体形の主回路開閉装置の構成を示す端面図である。図3は、この発明による実施の形態における一体形の主回路開閉装置の構成を示す平面図である。図4は、この発明による実施の形態における発電プラントの低圧同期方式採用時における主回路開閉装置の単線結線図である。
Embodiment 1 FIG.
An embodiment according to the present invention will be described with reference to FIGS. FIG. 1 is a side view showing a configuration of an integrated main circuit switchgear according to an embodiment of the present invention, and a part thereof is shown in a sectional view. FIG. 2 is an end view showing a configuration of an integral main circuit switchgear according to the embodiment of the present invention. FIG. 3 is a plan view showing the configuration of an integral main circuit switchgear according to the embodiment of the present invention. FIG. 4 is a single-line connection diagram of the main circuit switchgear when the low-voltage synchronous system is adopted in the power plant according to the embodiment of the present invention.

図1において、電流を遮断するための遮断部1には、エポキシ樹脂等で製作された絶縁筒2、絶縁筒2の一端に固定された遮断部固定側導体3、絶縁筒2の他端に固定された遮断部可動側導体4、遮断部固定側導体3に固定された固定接触子5、固定接触子5との接触部を有する可動接触子6が設けられている。可動接触子6は、固定接触子5と接離可能に遮断部可動側導体4に取り付けられている。これら絶縁筒2、遮断部固定側導体3、遮断部可動側導体4、固定接触子5および可動接触子6で遮断部1を構成している。   In FIG. 1, a blocking portion 1 for blocking current includes an insulating tube 2 made of epoxy resin or the like, a blocking portion fixing side conductor 3 fixed to one end of the insulating tube 2, and the other end of the insulating tube 2. A fixed interrupting part movable side conductor 4, a fixed contact 5 fixed to the interrupting part fixed side conductor 3, and a movable contact 6 having a contact part with the fixed contact 5 are provided. The movable contact 6 is attached to the blocking portion movable-side conductor 4 so as to be able to contact and separate from the fixed contact 5. The insulating tube 2, the blocking portion fixed side conductor 3, the blocking portion movable side conductor 4, the fixed contact 5 and the movable contact 6 constitute the blocking portion 1.

電圧を切るための断路部8に設けられた断路部固定側導体9は、遮断部1に設けられた遮断部可動側導体4と電気的および機械的に一体構成されている。断路部固定側導体9と遮断部可動側導体4との間には隔壁10が設けられ、遮断部1側には六フッ化硫黄などの絶縁ガスが封入されている。断路部可動側導体11は断路部固定側導体9と離隔して設置されている。可動導体12は、移動可能なように断路部可動側導体11に取り付けられている。これら断路部固定側導体9、断路部可動側導体11および可動導体12で断路部8を構成している。
また、遮断部固定側導体3を接地する第一の接地導体14および断路部可動側導体11を接地する第二の接地導体15が設けられ、必要に応じて主回路装置内に配置構成する。
The disconnecting portion fixed side conductor 9 provided in the disconnecting portion 8 for cutting off the voltage is integrally configured electrically and mechanically with the interrupting portion movable side conductor 4 provided in the interrupting portion 1. A partition wall 10 is provided between the disconnecting portion fixed side conductor 9 and the blocking portion movable side conductor 4, and an insulating gas such as sulfur hexafluoride is sealed on the blocking portion 1 side. The disconnecting part movable side conductor 11 is installed separately from the disconnecting part fixed side conductor 9. The movable conductor 12 is attached to the disconnection portion movable side conductor 11 so as to be movable. The disconnecting portion fixed side conductor 9, the disconnecting portion movable side conductor 11 and the movable conductor 12 constitute a disconnecting portion 8.
In addition, a first ground conductor 14 for grounding the blocking portion fixed side conductor 3 and a second ground conductor 15 for grounding the disconnecting portion movable side conductor 11 are provided, and are arranged and configured in the main circuit device as necessary.

そして、例えば通常はボルト等で締結されているが、必要に応じて3相に分割可能な支持フレームからなる支持部材16、ならびに、遮断部1と断路部固定側導体9が一体となった部分を支持部材16の上に支持する第一の支持絶縁物28、および、断路部可動側導体11を支持部材16上に支持する第二の支持絶縁物29が設けられている。   And, for example, a support member 16 composed of a support frame that is normally fastened with bolts or the like but can be divided into three phases as required, and a portion in which the blocking portion 1 and the disconnecting portion fixing side conductor 9 are integrated. Are provided on the support member 16, and a second support insulator 29 is provided on the support member 16 to support the disconnectable portion movable side conductor 11.

遮断部1を操作する遮断部操作装置21は、第一の支持絶縁物28の中空部を通って遮断部可動側導体4中のレバーにつながった第一の絶縁操作ロッド22を動かすことにより可動接触子6を駆動して遮断部1を作動させる。
断路部8を操作する断路部操作装置23は、断路部可動側導体11中のレバーにつながった第二の絶縁操作ロッド24を有し、この第二の絶縁ロッド24を動かすことにより可動導体12を駆動して断路部8を作動させる。
The shut-off unit operating device 21 for operating the shut-off unit 1 is movable by moving the first insulating operation rod 22 connected to the lever in the shut-off unit movable side conductor 4 through the hollow portion of the first support insulator 28. The contact 6 is driven to operate the blocking unit 1.
The disconnecting section operating device 23 for operating the disconnecting section 8 has a second insulating operation rod 24 connected to a lever in the disconnecting section movable side conductor 11, and the movable conductor 12 is moved by moving the second insulating rod 24. Is operated to operate the disconnecting portion 8.

第一と第二の接地部操作装置25,26で、それぞれ第一と第二の接地導体14,15を駆動して操作する。遮断部1と断路部8は支持部材16上に配置され、全体が外被32で被われており、支持部材16を締結しているボルトなどの締結部材を外すことにより3相に分割できる。   The first and second grounding unit operating devices 25 and 26 drive and operate the first and second grounding conductors 14 and 15, respectively. The blocking portion 1 and the disconnecting portion 8 are disposed on the support member 16 and are entirely covered with a jacket 32, and can be divided into three phases by removing a fastening member such as a bolt fastening the support member 16.

図2において、左端に示した相は外被32を取り除いた内部を示す。また、図3においては、操作装置を配置している側の相の外被32を取り除いた内部を示す。
遮断部1、断路部8、第一と第二の接地導体14,15は各3個設置して3相分としているが、遮断部操作装置21、断路部操作装置23、および、第一と第二の接地部操作装置25,26は3相分共通であり、各操作装置を1台づつ設置している。これらの操作装置は高剛性の構造物、例えば厚板34に取り付けられ、この厚板34は端相の支持部材16の内部において部材の一部として、端相のフレームサイズに収まるように構成されている。連結ロッド35は、各操作装置からの駆動力を遮断部などに伝達する。また、例えば遮断部操作装置21が液圧式である場合などにその駆動源となるアキュムレータ17や油圧ポンプP等の補器が設けられているが、これらの補器類についても、いずれかの端相を支持する支持部材16内に収まるように配置している。
以上により、遮断部1を含む遮断装置,断路部8を含む断路装置,第一と第二の接地導体14,15を含む第一と第二の接地装置が一体化された主回路開閉装置Aが構成されている。
そして、3相分の遮断部1および断路部8をそれぞれ支持絶縁物28,29(図1参照)を介して支持し接地する支持部材16は、図2および図3の分割面SAおよびSBで示す個所で各相毎に分割可能に構成されている。支持部材16は通常状態では分割面SAおよびSBが互いにボルト等からなる締結部材FM(図2参照)によって一体に締結され、分割時には分割面SAおよびSBにおける締結部材FMによる締結が解かれて分割状態となる。
In FIG. 2, the phase shown at the left end shows the inside from which the jacket 32 is removed. Further, FIG. 3 shows the inside from which the outer casing 32 of the phase where the operating device is arranged is removed.
The blocking unit 1, the disconnecting unit 8, the first and second grounding conductors 14 and 15 are each provided for three phases, but the blocking unit operating device 21, the disconnecting unit operating device 23, The second grounding unit operating devices 25 and 26 are common to the three phases, and each operating device is installed one by one. These operating devices are attached to a highly rigid structure, for example, a thick plate 34, and this thick plate 34 is configured to fit within the end phase frame size as a part of the member inside the end phase support member 16. ing. The connecting rod 35 transmits the driving force from each operating device to a blocking portion or the like. Further, for example, when the shut-off unit operating device 21 is of a hydraulic type, auxiliary devices such as an accumulator 17 and a hydraulic pump P are provided as a driving source thereof. It arrange | positions so that it may fit in the support member 16 which supports a phase.
As described above, the main circuit switching device A in which the breaking device including the breaking portion 1, the breaking device including the breaking portion 8, and the first and second grounding devices including the first and second ground conductors 14 and 15 are integrated. Is configured.
The supporting member 16 that supports and grounds the three-phase blocking portion 1 and the disconnecting portion 8 via supporting insulators 28 and 29 (see FIG. 1) is divided by the divided surfaces SA and SB of FIGS. It can be divided for each phase at the indicated locations. In the normal state, the support member 16 is integrally fastened by a fastening member FM (see FIG. 2) having bolts or the like on the split surfaces SA and SB. At the time of splitting, the fastening by the fastening member FM on the split surfaces SA and SB is released. It becomes a state.

前述のような構造とすることにより、遮断部操作装置21、断路部操作装置23、および、第一,第二の接地部操作装置25,26が厚板34からなる高剛性の構造体に取り付けられ、操作装置21,22,25,26を取り付けている厚板34からなる構造体は、いずれか端相の支持部材16内にその部材の一部として構成されているため、機器本体の小形化が可能となるうえ、遮断部1および断路部8あるいは接地導体14,15をその上部に支持している支持部材16を各相毎に分割可能な構造としたことにより、組立時あるいは輸送・据付時における区分を小さくすることができるため、特に大容量化機器を構成する場合には有利となる。
また、いずれか端相の支持部材16内に収まるように全ての操作装置および補器類を配置することにより、各相の分離後の大きさを同一とすることが可能となり、輸送および据付の簡素化・共通化が可能となる。操作装置および補器類を各相毎に分離された支持部材16のいずれかに支持部材16から突出して取り付けられると、操作装置および補器類が取り付けられた支持部材16と他の相の支持部材16とは大きさが異なることになり、各相の分離後の大きさを同一とすることができないのに対し、この実施の形態においては、全ての操作装置および補器類を各相毎に分離されたいずれか端相の支持部材16の内部に収まるように配置されているので、各相の分離後の大きさを同一とすることができる。
主回路開閉装置の端面構成を示す図2において、各相に分割されている支持部材16の端面から見た各相の寸法WとWとは同一であり、全ての操作装置および補器類を内部に配置した図示右端における端相としての支持部材16の端面寸法Wは他の相の端面寸法W,Wと同一であって、支持部材16を含む各相構成体の高さHおよび図示奥行寸法D(図3参照)は同一なので、支持部材16を含む各相構成体の大きさは同一となる。
With the above-described structure, the blocking unit operating device 21, the disconnecting unit operating device 23, and the first and second grounding unit operating devices 25 and 26 are attached to a highly rigid structure made of a thick plate 34. The structure comprising the thick plate 34 to which the operating devices 21, 22, 25, and 26 are attached is configured as a part of the member in the support member 16 of either end phase, so that the small size of the device body In addition, the support member 16 supporting the blocking portion 1 and the disconnecting portion 8 or the ground conductors 14 and 15 on the upper portion thereof can be divided for each phase, so that it can be assembled or transported. Since the division at the time of installation can be made small, it is advantageous particularly when configuring a large capacity device.
In addition, by arranging all the operation devices and auxiliary equipment so that they can be accommodated in the support member 16 of either end phase, it becomes possible to make the size of each phase separated after the transportation and installation. Simplification and commonization are possible. When the operation device and the auxiliary devices are attached to one of the support members 16 separated for each phase so as to protrude from the support member 16, the support member 16 to which the operation device and the auxiliary devices are attached and the other phases are supported. In contrast to the member 16, the size is different, and the size after separation of each phase cannot be made the same, whereas in this embodiment, all the operation devices and auxiliary devices are arranged for each phase. Since these are arranged so as to be accommodated in the support member 16 of any one of the separated phases, the sizes of the phases after separation can be made the same.
In FIG. 2 showing the end face configuration of the main circuit switchgear, the dimensions W 1 and W 2 of each phase viewed from the end face of the support member 16 divided into each phase are the same, and all the operating devices and auxiliary devices The end face dimension W 3 of the support member 16 as the end phase at the right end of the figure in which the kind is disposed inside is the same as the end face dimensions W 1 and W 2 of the other phases, and the height of each phase structure including the support member 16 is high. Since the height H 0 and the illustrated depth dimension D 0 (see FIG. 3) are the same, the size of each phase structure including the support member 16 is the same.

そして、以上に説明した電力用開閉装置としての主回路開閉装置は、これまでの高圧同期方式に代わり採用が増加している図4に示す低圧同期方式において、主回路開閉装置Aとして示されるように発電機Gと主変圧器M.Trとの間に接続されるものである。主回路開閉装置Aには、主回路遮断器B、主回路断路器C、遮断器側接地装置D、断路器側接地装置Eが構成されているものである。   The main circuit switchgear as the power switchgear described above is shown as the main circuit switchgear A in the low voltage synchronization system shown in FIG. 4 which is increasingly used instead of the conventional high voltage synchronization system. Generator G and main transformer M. It is connected between Tr. The main circuit switch A includes a main circuit breaker B, a main circuit disconnector C, a breaker-side grounding device D, and a disconnector-side grounding device E.

この発明による実施の形態によれば、固定接触子5が固定された遮断部固定側導体3、および、前記固定接触子5と接離可能に可動接触子6が取り付けられた遮断部可動側導体4を有する遮断部1、ならびに、互いに離隔して設置された断路部固定側導体9と断路部可動側導体11および前記断路部固定側導体9と接離可能に前記断路部可動側導体11に取り付けられた可動導体12を有する断路部8を備え、前記遮断部1と断路部8とが支持絶縁物28,29を介して支持部材16上に3相各々の主回路軸線が並行となるように設置され、前記遮断部1の可動接触子6および前記断路部8の可動導体12それぞれが3相分連結されて一式の操作装置21,23で共通に駆動されるように前記支持部材16内に構成された電力用開閉機器において、前記支持部材16が各相毎に分離可能とされたので、機器本体の小形化と組立性を向上することにより作業時間を短縮して製造コストを低減できるとともに、輸送および据付時の制約低減を達成できる電力用開閉装置を得ることができる。   According to the embodiment of the present invention, the blocking portion fixed side conductor 3 to which the fixed contact 5 is fixed, and the blocking portion movable side conductor to which the movable contact 6 is attached so as to be able to come into contact with and separate from the fixed contact 5. 4 and the disconnecting portion fixed side conductor 9 and the disconnecting portion movable side conductor 11 and the disconnecting portion fixed side conductor 9 which are spaced apart from each other. A disconnecting portion 8 having a movable conductor 12 attached thereto is provided, and the interrupting portion 1 and the disconnecting portion 8 are arranged on the support member 16 through support insulators 28 and 29 so that the main circuit axes of the three phases are parallel to each other. The movable contact 6 of the blocking section 1 and the movable conductor 12 of the disconnecting section 8 are connected to each other for three phases and are driven in common by the set of operating devices 21 and 23. Power switchgear configured in Since the support member 16 is separable for each phase, it is possible to reduce the manufacturing time by reducing the size and assembling of the main body of the device, and to restrict the transportation and installation. A power switchgear that can achieve reduction can be obtained.

また、この発明による実施の形態によれば、前項の構成において、前記遮断部操作装置21とその遮断部操作装置21に含まれる補器類、および、前記断路部操作装置23とその断路部操作装置23に含まれる補器類の全てがいずれか端相の主回路開閉部を支持する支持部材16内部に配置され、3相を同一の大きさで分離できるように構成したので、機器本体の小形化と組立性をより向上することにより作業時間を短縮して製造コストを低減できるとともに、輸送および据付時の制約低減を達成できる電力用開閉装置を得ることができる。   Further, according to the embodiment of the present invention, in the configuration of the preceding paragraph, the blocking unit operating device 21 and the auxiliary devices included in the blocking unit operating device 21, and the disconnecting unit operating device 23 and the disconnecting unit operation thereof are provided. Since all of the auxiliary devices included in the device 23 are arranged inside the support member 16 that supports the main circuit opening / closing section of any one of the end phases, the three phases can be separated by the same size. By reducing the size and assembling more, the working time can be shortened to reduce the manufacturing cost, and the power switchgear that can achieve the reduction of restrictions during transportation and installation can be obtained.

さらに、この発明による実施の形態によれば、前項の構成において、前記遮断部固定側導体3と断路部可動側導体11をそれぞれ接地する第一と第二の接地導体14,15、前記第一と第二の接地導体14,15をそれぞれ操作するため前記支持部材16内部に配置された第一と第二の接地部操作装置25,26を備え、前記遮断部1を操作する遮断部操作装置21とその遮断部操作装置21に含まれる補器類、前記断路部8を操作する断路部操作装置23とその断路部操作装置23に含まれる補器類、および、第一と第二の接地部操作装置25,26とその接地部操作装置25,26に含まれる補器類の全てがいずれか端相の主回路開閉部を支持する支持部材16内部に設置され、3相を同一の大きさで分離できるように構成されたので、接地装置を含めた機器本体の小形化と組立性をさらに向上することにより作業時間を短縮して製造コストを低減できるとともに、輸送および据付時の制約低減を達成できる電力用開閉装置を得ることができる。   Furthermore, according to the embodiment of the present invention, in the configuration of the preceding paragraph, the first and second ground conductors 14 and 15 for grounding the blocking portion fixed side conductor 3 and the disconnecting portion movable side conductor 11, respectively, And the second grounding conductors 14 and 15 are respectively provided with first and second grounding unit operating devices 25 and 26 disposed inside the support member 16, and the blocking unit operating device for operating the blocking unit 1. 21 and auxiliary devices included in the disconnecting unit operating device 21, disconnecting unit operating device 23 for operating the disconnecting unit 8, auxiliary devices included in the disconnecting unit operating device 23, and first and second grounding All the operation devices 25 and 26 and the auxiliary devices included in the grounding unit operation devices 25 and 26 are installed inside the support member 16 that supports the main circuit opening / closing unit of either end phase, and the three phases are the same size. Because it was configured to be separable, It is possible to obtain a power switchgear that can reduce the manufacturing cost by reducing the working time by reducing the size and assembling of the equipment body including the ground device and reducing the restrictions during transportation and installation. it can.

この発明による実施の形態における主回路開閉装置の構成を示す側面図である。It is a side view which shows the structure of the main circuit switchgear in embodiment by this invention. この発明による実施の形態における主回路開閉装置の構成を示す端面図である。It is an end view which shows the structure of the main circuit switchgear in embodiment by this invention. この発明による実施の形態における主回路開閉装置の構成を示す平面図である。It is a top view which shows the structure of the main circuit switchgear in embodiment by this invention. 発電プラントの低圧同期方式採用時における主回路開閉装置の単線結線図である。It is a single line connection diagram of the main circuit switchgear at the time of low voltage synchronous system adoption of a power plant.

符号の説明Explanation of symbols

1 遮断部、2 絶縁筒、3 遮断部固定側導体、4 遮断部可動側導体、5 固定接触子、6 可動接触子、8 断路部、9 断路部固定側導体、10 隔壁、11 断路部可動側導体、12 可動導体、14 第一の接地導体、15 第二の接地導体、16 支持部材、17 アキュムレータ、21 遮断部操作装置、22 第一の絶縁操作ロッド、23 断路部操作装置、24 第二の絶縁ロッド、25 第一の接地部操作装置、26 第二の接地部操作装置、32 外被、34 厚板。
DESCRIPTION OF SYMBOLS 1 interruption | blocking part, 2 insulation cylinder, 3 interruption | blocking part fixed side conductor, 4 interruption | blocking part movable side conductor, 5 fixed contactor, 6 movable contactor, 8 disconnection part, 9 disconnection part fixed side conductor, 10 partition, 11 disconnection part movable Side conductor, 12 Movable conductor, 14 First ground conductor, 15 Second ground conductor, 16 Support member, 17 Accumulator, 21 Breaking unit operating device, 22 First insulation operating rod, 23 Disconnecting unit operating device, 24 2 insulation rods, 25 1st grounding part operating device, 26 2nd grounding part operating device, 32 outer jacket, 34 thick plate.

Claims (3)

固定接触子が固定された遮断部固定側導体および前記固定接触子と接離可能に可動接触子が取り付けられた遮断部可動側導体を有する遮断部、互いに離隔して設置された断路部固定側導体と断路部可動側導体および前記断路部固定側導体と接離可能に前記断路部可動側導体に取り付けられた可動導体を有する断路部を備え、前記遮断部と断路部とが支持絶縁物を介して支持部材上に3相各々の主回路軸線が並行となるように設置され、前記遮断部の可動接触子および前記断路部の可動導体それぞれが3相分連結されて一式の操作装置で共通に駆動されるように前記支持部材内に構成された電力用開閉装置において、前記支持部材が各相毎に分離可能とされたことを特徴とする電力用開閉装置。   A blocking section fixed side conductor to which a fixed contact is fixed, a blocking section having a blocking section movable side conductor to which a movable contact is attached so as to be able to come in contact with and away from the fixed contact, and a disconnecting section fixed side installed separately from each other A disconnecting portion having a movable conductor attached to the disconnecting portion movable side conductor so as to be capable of coming into contact with and separating from the conductor, the disconnecting portion movable side conductor, and the disconnecting portion fixed side conductor; Are installed on the support member so that the main circuit axes of the three phases are parallel to each other, and the movable contact of the blocking part and the movable conductor of the disconnecting part are connected for three phases, and are shared by a set of operating devices. A power switchgear configured in the support member so as to be driven by the power member, wherein the support member is separable for each phase. 前記遮断部を操作する遮断部操作装置および前記断路部を操作する断路部操作装置がいずれか端相の前記支持部材内部に配置され、3相を同一の大きさで分離できるように構成されたことを特徴とする請求項1に記載の電力用開閉装置。   A blocking unit operating device for operating the blocking unit and a disconnecting unit operating device for operating the disconnecting unit are arranged inside the support member of either end phase, and are configured to be able to separate three phases with the same size. The power switchgear according to claim 1. 前記遮断部固定側導体と断路部可動側導体をそれぞれ接地する第一と第二の接地導体、前記第一と第二の接地導体をそれぞれ操作するため前記支持部材内部に配置された第一と第二の接地部操作装置を備え、前記遮断部を操作する遮断部操作装置および前記断路部を操作する断路部操作装置ならびに前記第一と第二の接地部操作装置がいずれか端相の前記支持部材内部に設置され、3相を同一の大きさで分離できるように構成されたことを特徴とする請求項1に記載の電力用開閉装置。
First and second ground conductors for grounding the blocking portion fixed-side conductor and the disconnecting portion movable-side conductor, respectively, and first and second members disposed inside the support member for operating the first and second ground conductors, respectively. A second grounding unit operating device, and a shutoff unit operating device for operating the shutting unit, a disconnecting unit operating device for operating the disconnecting unit, and the first and second grounding unit operating devices are in either phase. The power switchgear according to claim 1, wherein the power switchgear is installed inside the support member and configured to be able to separate the three phases into the same size.
JP2006176097A 2006-06-27 2006-06-27 Power switchgear Active JP4738266B2 (en)

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0425409A (en) * 1990-05-22 1992-01-29 Japan Steel Works Ltd:The Device for granulating plastic
JP2000308222A (en) * 1999-04-19 2000-11-02 Mitsubishi Electric Corp Main circuit switching device
JP2002186126A (en) * 2000-12-15 2002-06-28 Mitsubishi Electric Corp Main circuit switchgear

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0425409A (en) * 1990-05-22 1992-01-29 Japan Steel Works Ltd:The Device for granulating plastic
JP2000308222A (en) * 1999-04-19 2000-11-02 Mitsubishi Electric Corp Main circuit switching device
JP2002186126A (en) * 2000-12-15 2002-06-28 Mitsubishi Electric Corp Main circuit switchgear

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