JP6282522B2 - Electromagnetic operating switchgear and wipe amount adjustment method thereof - Google Patents

Electromagnetic operating switchgear and wipe amount adjustment method thereof Download PDF

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JP6282522B2
JP6282522B2 JP2014091303A JP2014091303A JP6282522B2 JP 6282522 B2 JP6282522 B2 JP 6282522B2 JP 2014091303 A JP2014091303 A JP 2014091303A JP 2014091303 A JP2014091303 A JP 2014091303A JP 6282522 B2 JP6282522 B2 JP 6282522B2
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main circuit
bolt
circuit side
insulating rod
side lever
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JP2015210926A (en
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鈴木 啓介
鈴木  啓介
雅人 藪
雅人 藪
博教 外崎
博教 外崎
伸介 飯塚
伸介 飯塚
達矢 吉成
達矢 吉成
正悟 宮田
正悟 宮田
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Hitachi Industrial Equipment Systems Co Ltd
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本発明は電磁操作式開閉装置及びそのワイプ量調整方法に係り、特に、真空遮断器などの開閉器を電磁操作装置の電磁力を利用して開閉するものに好適な電磁操作式開閉装置及びそのワイプ量調整方法に関する。 The present invention relates to wipe amount adjustment method for an electromagnetic-operated switchgear and its, in particular, suitable electromagnetic-operated opening and closing device operates to open or close the switch, such as a vacuum circuit breaker utilizing the electromagnetic force of the electromagnetic operating device and to wipe amount adjustment method for it.

本技術分野の電磁操作式開閉装置として、特許文献1に記載されたものがある。この特許文献1には、真空遮断器を構成要素とする受配電用スイッチギヤの奥行き寸法を、更に小さくできる真空遮断器を提供することを課題とし、操作部と遮断部を載せた台車と、スイッチギヤに接続する制御ケーブルのコネクタを挿脱可能な制御プラグとを備えた真空遮断器において、前記制御プラグは、その接続口部が垂直上方に向くように、前記操作部を収納するケースの天井板に設けられ、前記制御ケーブルのコネクタが、前記制御プラグの接続口部に垂直方向に挿脱可能であることが記載されている。   As an electromagnetically operated switchgear in this technical field, there is one described in Patent Document 1. This Patent Document 1 aims to provide a vacuum circuit breaker that can further reduce the depth dimension of a power receiving / distributing switch gear having a vacuum circuit breaker as a component, and a carriage on which an operation unit and a circuit breaker are mounted, A vacuum circuit breaker comprising a control plug in which a connector of a control cable connected to the switchgear can be inserted and removed, and the control plug has a case housing the operation unit so that the connection port portion faces vertically upward. It is described that the connector of the control cable provided on the ceiling board can be inserted into and removed from the connection port of the control plug in a vertical direction.

また、電磁操作式開閉装置の他の例として、特許文献2に記載されたものがある。この特許文献2には、操作機構部の機械的強度を分散させ、補強部材や連結リンクなどの部品点数の削減を図ることを課題とし、主回路を開閉する一対の接点を有する真空バルブと、真空バルブの可動軸の軸方向に連結された絶縁操作ロッドと、絶縁操作ロッドの軸方向に連結されると共に、接点間に接触荷重を加えるワイプバネと、ワイプバネに一方端が連結された回動自在の操作レバーと、操作レバーの他方端に連結された操作機構とを備えている真空遮断器が記載されている。   Another example of the electromagnetically operated switchgear is described in Patent Document 2. This Patent Document 2 aims to reduce the number of parts such as reinforcing members and connecting links by dispersing the mechanical strength of the operation mechanism unit, and a vacuum valve having a pair of contacts for opening and closing a main circuit; Insulating operating rod connected in the axial direction of the movable shaft of the vacuum valve, a wipe spring connected in the axial direction of the insulating operating rod and applying a contact load between the contacts, and a pivotable one end connected to the wipe spring There is described a vacuum circuit breaker provided with an operation lever and an operation mechanism connected to the other end of the operation lever.

特開2010−27486号公報JP 2010-27486 A 特開2012−221650号公報JP 2012-221650 A

上述した特許文献1及び2では、ワイプ量を調整する機構をワイプばねの前後に構成することにより、ワイプ量を調整している。   In Patent Documents 1 and 2 described above, the wipe amount is adjusted by configuring a mechanism for adjusting the wipe amount before and after the wipe spring.

しかしながら、近年、機器がコンパクト化されることにより、ワイプ量を調整する機構を配置する空間が少なくなる傾向にあり、一方で、ワイプ量は、主回路に直結する重要な調整値のため、少ない空間の中でも配置できる作業性の高いワイプ調整機構が必要であるが、特許文献1及び2は、必ずしも上記に対応する構成にはなっていなかった。   However, in recent years, due to the downsizing of devices, there is a tendency to reduce the space for arranging the mechanism for adjusting the wipe amount, while the wipe amount is small because of an important adjustment value directly connected to the main circuit. Although a highly adjustable wipe adjusting mechanism that can be arranged in a space is required, Patent Documents 1 and 2 are not necessarily configured to correspond to the above.

本発明は上述の点に鑑みなされたもので、その目的とするところは、機器がコンパクト化されたとしても、少ない空間で作業性の向上が図れる電磁操作式開閉装置及びそのワイプ量調整方法を提供することにある。 The present invention has been made in view of the above, it is an object of equipment even made compact, electromagnetic-operated switchgear and its wipe amount adjustment of the can be improved workability with less space It is to provide a method.

本発明の電磁操作式開閉装置は、上記目的を達成するために、相対向して配置された可動鉄心と固定鉄心及び電磁力に応じて前記可動鉄心と前記固定鉄心を離間又は接触させる電磁石コイルを有し、ケースで覆われている共に、前記ケースの中央部に配置された電磁石から成る電磁操作装置と、該電磁操作装置の電磁石で発生した電磁力に伴う駆動力が、前記電磁操作装置と操作プレートを介して接続されたシャフトの主軸の回転により主回路側レバー及び絶縁ロッドを介して伝達されると共に、相対向して配置された可動電極と固定電極が離間又は接触され、絶縁物で一体注型された絶縁物注型遮断部を有する真空遮断器とを備え、前記主回路側レバーは貫通穴が形成されたピンが、前記貫通穴の貫通方向と直交する方向に取り付けられ、かつ、前記絶縁ロッドの下部には雌ねじ部が形成されていると共に、前記ピンの貫通穴を介して前記絶縁ロッドの前記雌ねじ部にボルトを挿入し、該ボルトに通されているナットを締め付けることで、前記主回路側レバーと前記絶縁ロッドが接続され、前記主回路側レバーと前記絶縁ロッドの接続部を覆っている前記ケースに、前記ボルトの前記雌ねじ部への挿入寸法を調整するために前記ナットを回す工具を挿入するための孔が設けられていると共に、前記孔は、前記ボルトの下部と前記主回路側レバーの延長線上の前記ケースにそれぞれ設けられていることを特徴とする。 In order to achieve the above object, an electromagnetically operated switchgear according to the present invention is an electromagnetic coil that separates or contacts the movable iron core and the stationary iron core according to the movable iron core and the stationary iron core that are arranged opposite to each other and electromagnetic force. An electromagnetic operating device comprising an electromagnet disposed in the center of the case and a driving force associated with the electromagnetic force generated by the electromagnet of the electromagnetic operating device. Is transmitted through the main circuit side lever and the insulating rod by the rotation of the main shaft of the shaft connected through the operation plate, and the movable electrode and the fixed electrode arranged opposite to each other are separated or contacted, and the insulator And a vacuum circuit breaker having an insulator casting interrupting portion integrally cast with the pin on which the through hole is formed on the main circuit side lever is attached in a direction perpendicular to the penetrating direction of the through hole, In addition, a female screw portion is formed at the lower portion of the insulating rod, and a bolt is inserted into the female screw portion of the insulating rod through the through hole of the pin, and a nut passed through the bolt is tightened. In order to adjust the insertion dimension of the bolt into the female thread portion in the case where the main circuit side lever and the insulating rod are connected and the connecting portion of the main circuit side lever and the insulating rod is covered. A hole for inserting a tool for turning the nut is provided, and the hole is provided in the lower part of the bolt and the case on the extension line of the main circuit side lever, respectively .

また、本発明の電磁操作式開閉装置のワイプ量調整方法は、上記目的を達成するために、相対向して配置された可動鉄心と固定鉄心及び電磁力に応じて前記可動鉄心と前記固定鉄心を離間又は接触させる電磁石コイルを有し、ケースで覆われている共に、前記ケースの中央部に配置された電磁石から成る電磁操作装置と、該電磁操作装置の電磁石で発生した電磁力に伴う駆動力が、前記電磁操作装置と操作プレートを介して接続されたシャフトの主軸の回転により主回路側レバー及び絶縁ロッドを介して伝達されると共に、相対向して配置された可動電極と固定電極が離間又は接触され、絶縁物で一体注型された絶縁物注型遮断部を有する真空遮断器とを備え、前記主回路側レバーは貫通穴が形成されたピンが、前記貫通穴の貫通方向と直交する方向に取り付けられ、かつ、前記絶縁ロッドの下部には雌ねじ部が形成されていると共に、前記ピンの貫通穴を介して前記絶縁ロッドの前記雌ねじ部にボルトを挿入し、該ボルトに通されているナットを締め付けることで、前記主回路側レバーと前記絶縁ロッドが接続される電磁操作式開閉装置のワイプ量を調整するに当たり、前記主回路側レバーと前記絶縁ロッドの接続部を覆っている前記ケースには、前記ボルトの下部と前記主回路側レバーの延長線上のそれぞれに孔が設けられ、前記主回路側レバーの延長線上のケースに設けられた孔から工具を挿入して前記ナットを緩め、前記ボルトの下部に設けられた孔から工具を挿入して前記ボルトを回し、前記ボルトの前記雌ねじ部への挿入寸法を変化させることでワイプ量の調整を行うことを特徴とする。 In order to achieve the above object, the wipe amount adjustment method for an electromagnetically operated switchgear according to the present invention includes a movable iron core and a stationary iron core that are arranged opposite to each other, and the movable iron core and the stationary iron core according to electromagnetic force. And an electromagnetic operation device comprising an electromagnet disposed at the center of the case and driven by electromagnetic force generated by the electromagnet of the electromagnetic operation device The force is transmitted through the main circuit side lever and the insulating rod by the rotation of the main shaft of the shaft connected to the electromagnetic operating device via the operation plate, and the movable electrode and the fixed electrode arranged opposite to each other are transmitted. A vacuum circuit breaker having an insulator casting interrupting portion that is separated or contacted and is integrally cast with an insulator, and the pin on which the through hole is formed in the main circuit side lever has a through direction of the through hole. Orthogonal A female screw part is formed at the lower part of the insulating rod, and a bolt is inserted into the female screw part of the insulating rod through the through hole of the pin, and is passed through the bolt. When the wipe amount of the electromagnetically operated switchgear to which the main circuit side lever and the insulating rod are connected is adjusted by tightening the nut, the connection portion of the main circuit side lever and the insulating rod is covered. The case is provided with holes in the lower part of the bolt and on the extension line of the main circuit side lever, and a tool is inserted from the hole provided in the case on the extension line of the main circuit side lever to remove the nut. Loosen, by inserting a tool through a hole provided in the lower part of the bolt turning the bolt adjusts the wipe amount by changing the insertion length into the female screw portion of the bolt And wherein the door.

本発明によれば、機器がコンパクト化されたとしても、少ない空間で作業性の向上図れる効果が得られる。   According to the present invention, even if the device is made compact, an effect of improving workability in a small space can be obtained.

本発明の電磁操作式開閉装置の実施例1を示す正面図である。It is a front view which shows Example 1 of the electromagnetically operated switchgear of the present invention. 本発明の電磁操作式開閉装置の実施例1における遮断部と操作機構部の関係を一部断面して示す図である。It is a figure which partially shows the relationship between the interruption | blocking part and operation mechanism part in Example 1 of the electromagnetically operated switchgear of this invention. 本発明の電磁操作式開閉装置の実施例1における遮断部と補助接点部の関係を一部断面して示す図である。It is a figure which partially shows the relationship between the interruption | blocking part and auxiliary contact part in Example 1 of the electromagnetically operated switchgear of this invention. 本発明の電磁操作式開閉装置の実施例1におけるワイプ構造の詳細を示す断面図である。It is sectional drawing which shows the detail of the wipe structure in Example 1 of the electromagnetically operated switchgear of this invention.

以下、図示した実施例に基づいて、本発明の電磁操作式開閉装置及びそのワイプ量調整方法を説明する。なお、各図において、同一構成部品には同符号を使用する。 Hereinafter, with reference to the embodiments shown, illustrating the wipe amount adjustment method the electromagnetic-operated switchgear and its of the present invention. In each figure, the same symbols are used for the same components.

図1乃至図4に、本発明の電磁操作式開閉装置の実施例1を示す。   1 to 4 show a first embodiment of an electromagnetically operated switchgear according to the present invention.

該図に示す如く、本実施例の電磁操作式開閉装置は、相対向して配置された図示しない可動鉄心と固定鉄心及び電磁力に応じて可動鉄心と固定鉄心を離間又は接触させる電磁石コイル24を有し、ケース49で覆われている共に、ケース49の中央部に配置された電磁石から成る電磁操作装置3と、この電磁操作装置3の電磁石で発生した電磁力に伴う駆動力が、電磁操作装置3と操作プレート29を介して接続されたシャフト2の主軸の回転により主回路側レバー15及び絶縁ロッド18を介して伝達されると共に、相対向して配置された図示しない可動電極と固定電極が離間又は接触され、絶縁物で一体注型された絶縁物注型遮断部48を有する真空遮断器60とから概略構成されている。   As shown in the figure, the electromagnetically operated switchgear according to this embodiment includes a movable iron core and a fixed iron core (not shown) arranged opposite to each other, and an electromagnetic coil 24 that separates or contacts the movable iron core and the fixed iron core according to electromagnetic force. The electromagnetic operating device 3 is made of an electromagnet disposed at the center of the case 49, and the driving force generated by the electromagnetic force generated by the electromagnet of the electromagnetic operating device 3 is It is transmitted through the main circuit side lever 15 and the insulating rod 18 by the rotation of the main shaft of the shaft 2 connected to the operation device 3 via the operation plate 29, and fixed to a movable electrode (not shown) arranged opposite to each other. A vacuum circuit breaker 60 having an insulator casting breaker 48 in which electrodes are separated or contacted and are integrally cast with an insulator.

更に、本実施例の電磁操作式開閉装置は、ケース49の中央に取り付けた駆動力を発生する電磁操作装置3と、電磁石コイル24の電流を充電するためのコンデンサ4と、電磁操作式開閉装置の動作回数や開閉状態をデジタル信号に変換する補助接点部1と、制御プラグ42若しくは入ボタン44、切ボタン45から出る開閉動作の指令や電磁操作装置3の動作をコントロールする制御基板41と、主回路を通電もしくは遮断の状態にする真空バルブ50を有する絶縁物注型遮断部48と、電磁操作装置3で発生した駆動力を絶縁物注型遮断部48へ連動するリンク機構を有するシャフト2を備えている。   Further, the electromagnetically operated switchgear according to the present embodiment includes an electromagnetically operated device 3 that generates a driving force attached to the center of the case 49, a capacitor 4 for charging the current of the electromagnet coil 24, and an electromagnetically operated switchgear. An auxiliary contact 1 for converting the number of operations and the open / closed state into a digital signal, a control board 41 for controlling an open / close operation command from the control plug 42 or the on button 44, and the off button 45 and the operation of the electromagnetic operating device 3; A shaft 2 having an insulator casting cutoff portion 48 having a vacuum valve 50 for energizing or shutting off the main circuit, and a link mechanism for linking the driving force generated by the electromagnetic operating device 3 to the insulator casting cutoff portion 48. It has.

以下、それぞれの構成について詳細に説明する。   Hereinafter, each configuration will be described in detail.

先ず、電磁操作装置3は、取り付けボルト20と取り付けプレート21、25によりケース49の中央に固定され、上下の取り付けプレート21、25間に取り付けられた永久磁石22、電磁石コイル24と、下部の取り付けプレート25下部の遮断ばね27と、電磁操作装置3の中心を貫通する操作ロッド26とにより構成される。永久磁石22と電磁石コイル24は、強い磁束を発生するため、強磁性体のケースに収納されている。電磁操作装置3は、永久磁石22の磁束による吸引力と電磁石コイル24に発生する電磁力及び遮断ばね27の弾性力を用いて、操作ロッド26に上下方向の駆動力を与える。   First, the electromagnetic operating device 3 is fixed to the center of the case 49 by the mounting bolt 20 and the mounting plates 21 and 25, and the permanent magnet 22 and the electromagnetic coil 24 mounted between the upper and lower mounting plates 21 and 25 and the lower mounting. It is comprised by the interruption | blocking spring 27 of the plate 25 lower part, and the operation rod 26 which penetrates the center of the electromagnetic operating device 3. FIG. The permanent magnet 22 and the electromagnet coil 24 are housed in a ferromagnetic case in order to generate a strong magnetic flux. The electromagnetic operating device 3 applies a driving force in the vertical direction to the operating rod 26 using the attractive force generated by the magnetic flux of the permanent magnet 22, the electromagnetic force generated in the electromagnet coil 24, and the elastic force of the cutoff spring 27.

一方、絶縁物注型遮断部48は、真空容器の内部で相対する可動電極と固定電極を接触又は引き離すことにより主回路を開閉する真空バルブ50と、下部導体46に接続される主回路導体52と、ばね力により真空バルブ50内の電極の接触圧力を調整するワイプばね53と、主回路と他の部品を電気的に絶縁する絶縁ロッド18とを備え、これらを絶縁物の樹脂で注型した構造である。   On the other hand, the insulator casting blocking section 48 includes a vacuum valve 50 that opens and closes a main circuit by contacting or separating a movable electrode and a fixed electrode facing each other inside the vacuum vessel, and a main circuit conductor 52 connected to the lower conductor 46. And a wipe spring 53 that adjusts the contact pressure of the electrode in the vacuum valve 50 by a spring force, and an insulating rod 18 that electrically insulates the main circuit from other components, and these are cast with an insulating resin. This is the structure.

また、シャフト2は、シャフト主軸14を中心にして、補助接点側レバー13と主回路側レバー15及び電磁操作器側レバー16が接続された構造である。シャフト2は、電磁操作装置3と操作プレート29を介して接続され、電磁操作装置3で発生した駆動力を、シャフト主軸14の回転により、主回路側レバー15を介して絶縁物注型遮断部48に伝達している。   The shaft 2 has a structure in which an auxiliary contact side lever 13, a main circuit side lever 15, and an electromagnetic actuator side lever 16 are connected around a shaft main shaft 14. The shaft 2 is connected to the electromagnetic operating device 3 via the operation plate 29, and the driving force generated by the electromagnetic operating device 3 is transmitted through the main circuit side lever 15 by the rotation of the shaft main shaft 14, and the insulator casting blocking portion. 48.

また、補助接点部1は、図3に示すように、補助接点側レバー13から伝達される駆動力により上下に可動する操作ロッド5と、補助接点レバー8を介して操作ロッド5に接続され、絶縁物注型遮断部48の開閉の状態をデジタル信号に変換する補助接点7と、カウンタレバー10及びカウンタ操作ばね9を介して操作ロッド5に接続され、絶縁物注型遮断部48の開閉回数を表示するカウンタ6とで構成される。   Further, as shown in FIG. 3, the auxiliary contact portion 1 is connected to the operation rod 5 via the operation rod 5 that is movable up and down by the driving force transmitted from the auxiliary contact side lever 13 and the auxiliary contact lever 8, Connected to the operating rod 5 via the auxiliary contact 7 for converting the opening / closing state of the insulator casting blocking part 48 into a digital signal, the counter lever 10 and the counter operating spring 9, and the number of times of opening and closing the insulator casting blocking part 48 And a counter 6 for displaying.

更に、補助接点部1は、シャフト2を介して電磁操作装置3に連動して動作し、制御基板41若しくは外部の制御装置に接続する制御プラグ42に、絶縁物注型遮断部48の開閉の状態を送信する。   Further, the auxiliary contact portion 1 operates in conjunction with the electromagnetic operating device 3 via the shaft 2, and opens and closes the insulator casting blocking portion 48 to the control plug 42 connected to the control board 41 or an external control device. Send status.

そして、本実施例では、主回路側レバー15には上下方向に貫通穴34Aが形成されたピン34が、貫通穴34Aの貫通方向と直交する方向(紙面と直角方向)に取り付けられ、かつ、絶縁ロッド18の下部には雌ねじ部40が形成されていると共に、ピン34の貫通穴34Aを介して絶縁ロッド18の雌ねじ部40にボルト33を挿入し、このボルト33に通されているナット35、36を締め付けることで、主回路側レバー15と絶縁ロッド18が接続されている。   In this embodiment, the pin 34 having a through hole 34A formed in the vertical direction is attached to the main circuit side lever 15 in a direction perpendicular to the through direction of the through hole 34A (perpendicular to the paper surface), and A female screw portion 40 is formed in the lower portion of the insulating rod 18, and a bolt 33 is inserted into the female screw portion 40 of the insulating rod 18 through the through hole 34 </ b> A of the pin 34, and a nut 35 passed through the bolt 33. The main circuit side lever 15 and the insulating rod 18 are connected by tightening.

また、本実施例では、後で詳述するが、主回路側レバー15と絶縁ロッド18の接続部を覆っているケース49に、ボルト33の雌ねじ部40への挿入寸法を調整するためにナット35、36を回す工具(例えばレンチ)を挿入するための孔54、55が設けられている。この孔54、55は、ボルト33の下部と主回路側レバー15の延長線上のケース49にそれぞれ設けられている。   In this embodiment, as will be described in detail later, a nut 49 is attached to the case 49 covering the connecting portion between the main circuit side lever 15 and the insulating rod 18 in order to adjust the insertion dimension of the bolt 33 into the female screw portion 40. Holes 54 and 55 for inserting a tool (for example, a wrench) for turning 35 and 36 are provided. The holes 54 and 55 are provided in the lower part of the bolt 33 and the case 49 on the extension line of the main circuit side lever 15, respectively.

なお、本実施例では、2つのナット35、36(ダブルナット)を用いた例を説明したが、1つのナット(シングルナット)を用いることもできる。   In the present embodiment, an example in which two nuts 35 and 36 (double nuts) are used has been described, but one nut (single nut) can also be used.

次に、本実施例の電磁操作式開閉装置の動作について説明する。   Next, the operation of the electromagnetically operated switchgear according to this embodiment will be described.

通常、電磁操作式開閉装置の運転時には、真空バルブ50内部の固定電極と可動電極が接触し、電流は、上部導体47から真空バルブ50と可動導体51及び主回路導体52を介して、下部導体46へ通電される。そして、電磁操作式開閉装置が接続される系統での故障又は点検などの際には、真空バルブ50内部の固定電極と可動電極を開離させ、主回路の通電を遮断する。以下、その動作を説明する。   Normally, when the electromagnetically operated switchgear is operated, the fixed electrode and the movable electrode in the vacuum valve 50 are in contact with each other, and the current flows from the upper conductor 47 through the vacuum valve 50, the movable conductor 51 and the main circuit conductor 52 to the lower conductor. 46 is energized. In the event of a failure or inspection in the system to which the electromagnetically operated switchgear is connected, the fixed electrode and the movable electrode inside the vacuum valve 50 are separated, and the energization of the main circuit is cut off. Hereinafter, the operation will be described.

即ち、制御プラグ42若しくは切ボタン45から出力された動作指令は、制御基板41に伝送される。制御基板41は、動作指令を受けてコンデンサ4に充電された電荷を、電磁石コイル24に通電する。操作ロッド26は、電磁石コイル24の電磁力と遮断ばね27の弾性力により、永久磁石22の吸引力から開放され上方向へ動作する。操作ロッド26に電磁操作器側レバー16を介して接続されるシャフト主軸14は、操作ロッド26に連動して回転動作する。このシャフト主軸14の回転動作により、主回路側レバー15の短部が上下方向に動作し、リンク機構を介して絶縁ロッド18とワイプばね53及び可動導体51が下方向に動作し、真空バルブ50内部の電極を開離するものである。   That is, the operation command output from the control plug 42 or the off button 45 is transmitted to the control board 41. The control board 41 energizes the electromagnet coil 24 with the electric charge charged in the capacitor 4 in response to the operation command. The operating rod 26 is released from the attractive force of the permanent magnet 22 and moves upward by the electromagnetic force of the electromagnet coil 24 and the elastic force of the cutoff spring 27. The shaft main shaft 14 connected to the operation rod 26 via the electromagnetic actuator side lever 16 rotates in conjunction with the operation rod 26. Due to the rotational operation of the shaft main shaft 14, the short part of the main circuit side lever 15 operates in the vertical direction, the insulating rod 18, the wipe spring 53 and the movable conductor 51 operate downward through the link mechanism, and the vacuum valve 50 The internal electrode is separated.

以上のような動作により、主回路の通電を遮断する。電磁操作式開閉装置の主回路の投入動作については、遮断動作の逆動作のため説明を省略する。   The main circuit is de-energized by the above operation. The operation of turning on the main circuit of the electromagnetically operated switchgear is omitted because it is the reverse operation of the shut-off operation.

次に、本実施例の電磁操作式開閉装置の組立方法とワイプ量調整方法を、図4を用いて説明する。   Next, an assembly method and a wipe amount adjustment method for the electromagnetically operated switchgear according to the present embodiment will be described with reference to FIG.

先ず、本実施例の電磁操作式開閉装置の組立方法、即ち、絶縁物注型遮断部48とシャフト2の組立方法を説明する。   First, an assembly method of the electromagnetically operated switchgear according to the present embodiment, that is, an assembly method of the insulator casting blocking part 48 and the shaft 2 will be described.

本実施例の電磁操作式開閉装置の組立方は、シャフト2の主回路側レバー15は貫通穴34Aが形成されたピン34が、貫通穴34Aの貫通方向(上下方向)と直交する方向(紙面と直角方向)に取り付けられ、かつ、絶縁ロッド18の下部には雌ねじ部40が形成されていると共に、ピン34の貫通穴34Aを介して絶縁ロッド18の雌ねじ部40にボルト33を挿入し、このボルト33に通されているナット35、36を締め付けることで、シャフト2の主回路側レバー15と絶縁物注型遮断部48の絶縁ロッド18を接続するに当たり、絶縁物注型遮断部48をケース49にモールド固定ボルト38、39で取り付けると共に、主回路側レバー15に貫通穴34Aの空いたピン34を取り付け、その後、シャフト2をケース49に固定し、かつ、ピン34の貫通穴34Aを通したボルト33を絶縁ロッド18の下部に形成されている雌ねじ部40に挿入した後、ボルト33に通されているナット35、36を締め付けることで、シャフト2と絶縁ロッド18が接続されるものである。   In the method of assembling the electromagnetically operated switchgear according to the present embodiment, the main circuit side lever 15 of the shaft 2 has a direction in which the pin 34 in which the through hole 34A is formed is orthogonal to the through direction (vertical direction) of the through hole 34A. And an internal thread portion 40 is formed in the lower portion of the insulating rod 18, and a bolt 33 is inserted into the internal thread portion 40 of the insulating rod 18 through the through hole 34A of the pin 34, When the nuts 35 and 36 passed through the bolts 33 are tightened, the insulator casting blocking part 48 is connected to the main circuit side lever 15 of the shaft 2 and the insulating rod 18 of the insulator casting blocking part 48. Attach to the case 49 with mold fixing bolts 38 and 39, and attach the pin 34 with the through hole 34A to the main circuit side lever 15, and then fix the shaft 2 to the case 49. And after inserting the bolt 33 that has passed through the through hole 34A of the pin 34 into the female thread portion 40 formed in the lower part of the insulating rod 18, the shaft 35 is tightened by tightening the nuts 35 and 36 that are passed through the bolt 33. 2 and the insulating rod 18 are connected.

つまり、初めに、絶縁物注型遮断部48をケース49にモールド固定ボルト38、39で取り付ける。主回路側レバー15に貫通穴34Aの空いたピン34を取り付け、シャフト主軸14の両端部をシャフト軸受12を介してケース49にボルト等で固定することで、シャフト2をケース49に固定する。そして、ピン34の貫通穴34Aを通したボルト33を絶縁ロッド18の下部に備えられている雌ねじ部40に挿入し、その後、ボルト33に通されているナット35及び36を締め付けることで、シャフト2と絶縁ロッド18を接続するものである。   That is, first, the insulator casting blocking part 48 is attached to the case 49 with the mold fixing bolts 38 and 39. The shaft 2 is fixed to the case 49 by attaching the pin 34 having the through hole 34 </ b> A to the main circuit side lever 15 and fixing both ends of the shaft main shaft 14 to the case 49 via the shaft bearing 12 with bolts or the like. Then, the bolt 33 passing through the through hole 34A of the pin 34 is inserted into the female screw portion 40 provided at the lower part of the insulating rod 18, and then the nuts 35 and 36 passed through the bolt 33 are tightened, whereby the shaft 2 and the insulating rod 18 are connected.

このような構造とすることで、シャフト2と絶縁物注型遮断部48を独立して取り付け(従来は、レバーを接続する際に中間板が必要であったが、その中間板が不要になったので、シャフト2と絶縁物注型遮断部48を独立して取り付けが可能になった)、その後に両者を接続する構造とすることできるので、機器がコンパクト化されたとしても、少ない空間で作業性を高めることができる。   By adopting such a structure, the shaft 2 and the insulator casting blocking portion 48 are independently attached (in the past, an intermediate plate was required when connecting the lever, but the intermediate plate is no longer necessary. As a result, the shaft 2 and the insulator casting blocking part 48 can be attached independently), and then the two can be connected to each other. Workability can be improved.

次に、本実施例の電磁操作式開閉装置のワイプ量調整方法を説明する。   Next, a wipe amount adjustment method for the electromagnetically operated switchgear according to the present embodiment will be described.

本実施例の電磁操作式開閉装置のワイプ量調整方は、主回路側レバー15は貫通穴34Aが形成されたピン34が、貫通穴34Aの貫通方向(上下方向)と直交する方向(紙面と直角方向)に取り付けられ、かつ、絶縁ロッド18の下部には雌ねじ部40が形成されていると共に、ピン34の貫通穴34Aを介して絶縁ロッド18の雌ねじ部40にボルト33を挿入し、このボルト33に通されているナット35、36を締め付けることで、主回路側レバー15と絶縁ロッド18が接続される電磁操作式開閉装置のワイプ量を調整するに当たり、主回路側レバー15と絶縁ロッド18の接続部を覆っているケース49に設けられている孔54及び55からナット35及び36を回す工具(例えばレンチ)を挿入し、このレンチを回してボルト33の雌ねじ部40への挿入寸法を調整してワイプ量の調整を行うものである。   In the method of adjusting the wipe amount of the electromagnetically operated switchgear according to the present embodiment, the main circuit side lever 15 has a pin 34 with a through hole 34A formed in a direction (vertical direction) perpendicular to the through direction (vertical direction) of the through hole 34A. The internal thread portion 40 is formed at the lower portion of the insulating rod 18 and the bolt 33 is inserted into the internal thread portion 40 of the insulating rod 18 through the through hole 34A of the pin 34. In adjusting the wipe amount of the electromagnetically operated switchgear to which the main circuit side lever 15 and the insulating rod 18 are connected by tightening the nuts 35 and 36 passed through the bolt 33, the main circuit side lever 15 and the insulating rod A tool (for example, a wrench) for turning the nuts 35 and 36 is inserted from the holes 54 and 55 provided in the case 49 covering the 18 connecting portions, and the bolt is turned by turning the wrench. By adjusting the insertion length of the third female threaded portion 40 is intended to adjust the wipe amount.

上述したケース49に設けられている孔54及び55は、ボルト33の下部と主回路側レバー15の延長線上のそれぞれに設けられ、主回路側レバー15の延長線上のケース49に設けられた孔54からレンチを挿入してナット36を緩め、ボルト33の下部に設けられた孔55からレンチを挿入してボルト33を回し、ボルト33の雌ねじ部40への挿入寸法を変化させることでワイプ量の調整を行うようにしている。これにより、容易にワイプ量の調整を行うことができる。   The holes 54 and 55 provided in the case 49 described above are provided in the lower part of the bolt 33 and the extension line of the main circuit side lever 15, respectively, and the holes provided in the case 49 on the extension line of the main circuit side lever 15. 54, the wrench is inserted to loosen the nut 36, the wrench is inserted from the hole 55 provided in the lower portion of the bolt 33, the bolt 33 is turned, and the insertion size of the bolt 33 into the female thread portion 40 is changed to thereby change the wipe amount. I am trying to make adjustments. Thereby, the wipe amount can be easily adjusted.

なお、本発明は上記した実施例に限定されるものではなく、様々な変形例が含まれる。例えば、上記した実施例は本発明を分かりやすく説明するために詳細に説明したものであり、必ずしも説明した全ての構成を備えるものに限定されるものではない。実施例の構成の一部について、構成の追加・削除・置換をすることが可能である。   In addition, this invention is not limited to an above-described Example, Various modifications are included. For example, the above-described embodiments have been described in detail for easy understanding of the present invention, and are not necessarily limited to those having all the configurations described. It is possible to add, delete, and replace the configuration of a part of the configuration of the embodiment.

1…補助接点部、2…シャフト、3…電磁操作装置、4…コンデンサ、5…操作ロッド、6…カウンタ、7…補助接点、8…補助接点レバー、9…カウンタ操作ばね、10…カウンタレバー、11…下部プレート、12…シャフト軸受、13…補助接点側レバー、14…シャフト主軸、15…主回路側レバー、16…電磁操作器側レバー、17…接続ボルト、18…絶縁ロッド、19…固定ロッド、20…取り付けボルト、21、25…取り付けプレート、22…永久磁石、23、28…プレート、24…電磁石コイル、26…操作ロッド、27…遮断ばね、29…操作プレート、30…固定ベルト、31…下部プレート、32…コンデンサ端子、33…ボルト、34…ピン、34A…貫通穴、35、36…ナット、37…ワッシャー、38、39…モールド固定ボルト、40…雌ねじ部、41…制御基板、42…制御プラグ、43…移動台車、44…入ボタン、45…切ボタン、46…下部導体、47…上部導体、48…絶縁物注形遮断部、49…ケース、50…真空バルブ、51…可動導体、52…主回路導体、53…ワイプばね、54、55…孔、60…真空遮断器。   DESCRIPTION OF SYMBOLS 1 ... Auxiliary contact part, 2 ... Shaft, 3 ... Electromagnetic operation device, 4 ... Condenser, 5 ... Operation rod, 6 ... Counter, 7 ... Auxiliary contact, 8 ... Auxiliary contact lever, 9 ... Counter operation spring, 10 ... Counter lever 11 ... Lower plate, 12 ... Shaft bearing, 13 ... Auxiliary contact side lever, 14 ... Shaft main shaft, 15 ... Main circuit side lever, 16 ... Electromagnetic actuator side lever, 17 ... Connection bolt, 18 ... Insulating rod, 19 ... Fixed rod, 20 ... Mounting bolt, 21, 25 ... Mounting plate, 22 ... Permanent magnet, 23, 28 ... Plate, 24 ... Electromagnetic coil, 26 ... Operating rod, 27 ... Shut-off spring, 29 ... Operating plate, 30 ... Fixed belt 31 ... Lower plate, 32 ... Capacitor terminal, 33 ... Bolt, 34 ... Pin, 34A ... Through hole, 35, 36 ... Nut, 37 ... Washer, 38 DESCRIPTION OF SYMBOLS 39 ... Mold fixing bolt, 40 ... Female thread part, 41 ... Control board, 42 ... Control plug, 43 ... Moving cart, 44 ... On button, 45 ... Off button, 46 ... Lower conductor, 47 ... Upper conductor, 48 ... Insulator Casting block, 49 ... case, 50 ... vacuum valve, 51 ... movable conductor, 52 ... main circuit conductor, 53 ... wipe spring, 54,55 ... hole, 60 ... vacuum breaker.

Claims (3)

相対向して配置された可動鉄心と固定鉄心及び電磁力に応じて前記可動鉄心と前記固定鉄心を離間又は接触させる電磁石コイルを有し、ケースで覆われている共に、前記ケースの中央部に配置された電磁石から成る電磁操作装置と、該電磁操作装置の電磁石で発生した電磁力に伴う駆動力が、前記電磁操作装置と操作プレートを介して接続されたシャフトの主軸の回転により主回路側レバー及び絶縁ロッドを介して伝達されると共に、相対向して配置された可動電極と固定電極が離間又は接触され、絶縁物で一体注型された絶縁物注型遮断部を有する真空遮断器とを備え、
前記主回路側レバーは貫通穴が形成されたピンが、前記貫通穴の貫通方向と直交する方向に取り付けられ、かつ、前記絶縁ロッドの下部には雌ねじ部が形成されていると共に、前記ピンの貫通穴を介して前記絶縁ロッドの前記雌ねじ部にボルトを挿入し、該ボルトに通されているナットを締め付けることで、前記主回路側レバーと前記絶縁ロッドが接続され
前記主回路側レバーと前記絶縁ロッドの接続部を覆っている前記ケースに、前記ボルトの前記雌ねじ部への挿入寸法を調整するために前記ナットを回す工具を挿入するための孔が設けられていると共に、前記孔は、前記ボルトの下部と前記主回路側レバーの延長線上の前記ケースにそれぞれ設けられていることを特徴とする電磁操作式開閉装置。
A movable iron core and a stationary iron core arranged opposite to each other and an electromagnetic coil for separating or contacting the movable iron core and the stationary iron core in accordance with electromagnetic force are covered with a case, and at the center of the case An electromagnetic operating device composed of arranged electromagnets, and a driving force accompanying an electromagnetic force generated by the electromagnet of the electromagnetic operating device is driven by the main circuit side by rotation of a main shaft of a shaft connected to the electromagnetic operating device via an operating plate. A vacuum circuit breaker having an insulator casting interrupting portion which is transmitted through a lever and an insulating rod, and which has a movable electrode and a fixed electrode which are arranged opposite to each other and spaced apart from or in contact with each other, and is integrally cast with an insulator; With
The main circuit side lever has a pin in which a through hole is formed, and is attached in a direction perpendicular to the through direction of the through hole, and a female screw portion is formed in a lower portion of the insulating rod. By inserting a bolt into the female thread portion of the insulating rod through a through hole and tightening a nut passed through the bolt, the main circuit side lever and the insulating rod are connected ,
The case covering the connecting portion between the main circuit side lever and the insulating rod is provided with a hole for inserting a tool for turning the nut to adjust the insertion dimension of the bolt into the female screw portion. And the holes are provided in the case on the lower part of the bolt and the extension line of the main circuit side lever, respectively .
請求項1に記載の電磁操作式開閉装置において、
前記ナットは、シングルナット又はダブルナットであることを特徴とする電磁操作式開閉装置。
The electromagnetically operated switchgear according to claim 1,
The electromagnetically operated switchgear, wherein the nut is a single nut or a double nut.
相対向して配置された可動鉄心と固定鉄心及び電磁力に応じて前記可動鉄心と前記固定鉄心を離間又は接触させる電磁石コイルを有し、ケースで覆われている共に、前記ケースの中央部に配置された電磁石から成る電磁操作装置と、該電磁操作装置の電磁石で発生した電磁力に伴う駆動力が、前記電磁操作装置と操作プレートを介して接続されたシャフトの主軸の回転により主回路側レバー及び絶縁ロッドを介して伝達されると共に、相対向して配置された可動電極と固定電極が離間又は接触され、絶縁物で一体注型された絶縁物注型遮断部を有する真空遮断器とを備え、
前記主回路側レバーは貫通穴が形成されたピンが、前記貫通穴の貫通方向と直交する方向に取り付けられ、かつ、前記絶縁ロッドの下部には雌ねじ部が形成されていると共に、前記ピンの貫通穴を介して前記絶縁ロッドの前記雌ねじ部にボルトを挿入し、該ボルトに通されているナットを締め付けることで、前記主回路側レバーと前記絶縁ロッドが接続される電磁操作式開閉装置のワイプ量を調整するに当たり、
前記主回路側レバーと前記絶縁ロッドの接続部を覆っている前記ケースには、前記ボルトの下部と前記主回路側レバーの延長線上のそれぞれに孔が設けられ、前記主回路側レバーの延長線上のケースに設けられた孔から工具を挿入して前記ナットを緩め、前記ボルトの下部に設けられた孔から工具を挿入して前記ボルトを回し、前記ボルトの前記雌ねじ部への挿入寸法を変化させることでワイプ量の調整を行うことを特徴とする電磁操作式開閉装置のワイプ量調整方法。
A movable iron core and a stationary iron core arranged opposite to each other and an electromagnetic coil for separating or contacting the movable iron core and the stationary iron core in accordance with electromagnetic force are covered with a case, and at the center of the case An electromagnetic operating device composed of arranged electromagnets, and a driving force accompanying an electromagnetic force generated by the electromagnet of the electromagnetic operating device is driven by the main circuit side by rotation of a main shaft of a shaft connected to the electromagnetic operating device via an operating plate. A vacuum circuit breaker having an insulator casting interrupting portion which is transmitted through a lever and an insulating rod, and which has a movable electrode and a fixed electrode which are arranged opposite to each other and spaced apart from or in contact with each other, and is integrally cast with an insulator; With
The main circuit side lever has a pin in which a through hole is formed, and is attached in a direction perpendicular to the through direction of the through hole, and a female screw portion is formed in a lower portion of the insulating rod. An electromagnetically operated switchgear in which the main circuit side lever and the insulating rod are connected by inserting a bolt into the female thread portion of the insulating rod through a through hole and tightening a nut passed through the bolt. When adjusting the wipe amount,
The case covering the connecting portion of the main circuit side lever and the insulating rod is provided with holes in the lower part of the bolt and on the extension line of the main circuit side lever, and on the extension line of the main circuit side lever. Insert a tool from the hole provided in the case to loosen the nut, insert the tool from the hole provided in the lower part of the bolt, rotate the bolt, and change the insertion dimension of the bolt into the female thread portion. A method for adjusting the wipe amount of an electromagnetically operated switchgear, wherein the wipe amount is adjusted.
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