JP4372596B2 - breaker - Google Patents

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Publication number
JP4372596B2
JP4372596B2 JP2004102953A JP2004102953A JP4372596B2 JP 4372596 B2 JP4372596 B2 JP 4372596B2 JP 2004102953 A JP2004102953 A JP 2004102953A JP 2004102953 A JP2004102953 A JP 2004102953A JP 4372596 B2 JP4372596 B2 JP 4372596B2
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trip
opening
link
closing member
movable contact
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JP2005293870A (en
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同喬 祖
貞憲 堤
晃 久保
和人 米田
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Kyokuto Electric Co Ltd
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Kyokuto Electric Co Ltd
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本発明は、負荷回路の過負荷時、過電流時、漏電発生時などに当該負荷回路と電源とを接続する電気回路を開くブレーカに関する。   The present invention relates to a breaker that opens an electric circuit that connects the load circuit and a power source when the load circuit is overloaded, overcurrent, or when leakage occurs.

負荷回路と電源の間には、負荷回路に過負荷や、過電流や、漏電が発生した場合に電源や電源に接続されている他の負荷回路に影響を与えないようにするためにブレーカが接続される。   A breaker is installed between the load circuit and the power supply to prevent the load circuit from affecting the load circuit and other load circuits connected to the power supply if an overload, overcurrent, or electrical leakage occurs. Connected.

例えば漏電時に電気回路を開く漏電ブレーカが特許文献1に開示されている。   For example, Patent Literature 1 discloses an earth leakage breaker that opens an electric circuit at the time of earth leakage.

上記特許文献1に記載されている漏電ブレーカは、作業者が当該ブレーカ内に配線された電気回路の部分(以下、内部回路という。)を開閉するために、固定接触子と、可動接触子と、可動接触子を駆動して該可動接触子に支持させた可動接点を固定接触子に設けた固定接点に接離させる開閉機構を備える。   The earth leakage breaker described in Patent Document 1 includes a fixed contact, a movable contact, and an electric circuit for an operator to open and close a portion of an electric circuit (hereinafter referred to as an internal circuit) wired in the breaker. And an open / close mechanism that drives the movable contact so that the movable contact supported by the movable contact contacts and separates from the fixed contact provided on the fixed contact.

この開閉機構は、可動接触子を固定接触子から離隔させる付勢手段と、この付勢手段に抗して可動接触子を固定接触子に当接させるリンク機構とからなり、上記付勢手段には過負荷時に自己発熱により熱変形して可動接点を固定接点から離隔させるバイメタルからなる過負荷時トリップ駆動手段が兼用されている。   The opening / closing mechanism includes an urging means for separating the movable contact from the fixed contact, and a link mechanism for bringing the movable contact into contact with the fixed contact against the urging means. Is also used as an overload trip drive means made of bimetal that is thermally deformed by self-heating during overload and separates the movable contact from the fixed contact.

上記リンク機構には、作業者が所定の範囲で回転操作するハンドルと、該ブレーカのケースに移動可能に支持させたトリップバーと、基端部が上記ハンドルに該ハンドルの回転中心から離れた位置で回転自在に支持され、他端部が上記トリップバーに回転可能に受止められるリンクと、上記バイメタルに固定接点と反対側から当接し、上記ハンドルに上記リンクを介して連動して可動接点を固定接点に接離させる開閉部材と、上記トリップバーに牽制されて上記開閉部材を該開閉部材が可動接点を固定接点に当接させる位置に係止するラッチ部材とを備えている。   The link mechanism includes a handle that is rotated by an operator within a predetermined range, a trip bar that is movably supported by the case of the breaker, and a position where a base end portion is separated from the rotation center of the handle by the handle. A link that is rotatably supported at the other end and is rotatably received by the trip bar, abuts against the bimetal from the side opposite to the fixed contact, and moves the movable contact in conjunction with the handle via the link. An opening / closing member that contacts and separates from the fixed contact; and a latch member that is restrained by the trip bar and locks the opening / closing member at a position where the opening / closing member contacts the movable contact with the fixed contact.

そして、この漏電ブレーカでは、漏電発生時に上記トリップバーを駆動してラッチ部材の牽制を解除し、可動接点を固定接点から離隔するトリップ駆動手段が設けられる。
特開平8−203412号公報
The earth leakage breaker is provided with trip driving means for driving the trip bar to release the restraint of the latch member when the earth leakage occurs and separating the movable contact from the fixed contact.
JP-A-8-203212

上述したように、従来のリンク機構は開閉部材、ハンドル、リンク、ラッチ部材及びトリップバーの5点の部品を必要としているので、部品点数及び組立工数が多く、コスト高になり、ブレーカが高価になるという問題がある。   As described above, the conventional link mechanism requires five parts, that is, an opening / closing member, a handle, a link, a latch member, and a trip bar. Therefore, the number of parts and assembly man-hours are large, the cost is increased, and the breaker is expensive. There is a problem of becoming.

本発明は、この従来技術の課題を解消し、安価に製造できるブレーカを提供することを目的とする。   An object of the present invention is to provide a breaker that can solve the problems of the prior art and can be manufactured at low cost.

この目的を達成するため、本発明は、基端部がケースに回転自在に支持されると共に、先端部が可動接触子に固定接触子と反対側から当接される開閉部材と、上記可動接触子を開閉操作するためのハンドルと、基端部が上記ハンドルの回転軸心から離れた位置に回転自在に支持されると共に、先端部を上記開閉部材の中間部に可動接触子と反対側から接離可能に当接させるリンクと、上記開閉部材の回転軸心の回りに回転可能に上記ケースに支持され、先端が上記開閉部材に沿って移動する上記リンクの開閉部材先端側への移動を所定の位置で牽制するトリップ部材と、該トリップ部材を駆動して上記リンクに対する牽制を解除するトリップ駆動手段を備えるという技術的手段を採用する。   To achieve this object, the present invention provides an opening / closing member whose base end is rotatably supported by a case and whose distal end is in contact with the movable contact from the opposite side of the fixed contact, and the movable contact described above. A handle for opening and closing the child and a base end portion are rotatably supported at a position away from the rotation axis of the handle, and a distal end portion is provided at an intermediate portion of the opening and closing member from the side opposite to the movable contact. A link to be brought into contact with and disengageable from, and supported by the case so as to be rotatable about a rotation axis of the opening and closing member, and a movement of the link moving along the opening and closing member toward the opening and closing member leading side. A technical means including a trip member that checks at a predetermined position and trip driving means that drives the trip member to release the check on the link is adopted.

本発明によれば、機能的に見て、本発明の開閉部材、ハンドル、リンク及びトリップ駆動手段が従来技術の開閉部材、ハンドル、リンク及びトリップ駆動手段に対応し、従来技術のラッチ部材とトリップバーという2個の部品の代りに本発明ではトリップ部材という1個の部品が設けられる。即ち、部品点数が1点削減され、その結果、組立工程数及びコストが削減されるのである。   According to the present invention, in terms of function, the opening / closing member, handle, link and trip driving means of the present invention correspond to the prior art opening / closing member, handle, link and trip driving means, and the prior art latch member and trip. Instead of two parts called bars, the present invention provides one part called a trip member. That is, the number of parts is reduced by one, and as a result, the number of assembly steps and cost are reduced.

以上に説明したように、本発明によれば、従来技術のラッチ部材とトリップバーという2部品に代えてこれらの機能を兼備するトリップ部材という1部品を設けるので、部品点数、組立工程数及びコストを削減することができる。   As described above, according to the present invention, instead of the conventional two parts of the latch member and the trip bar, one part called the trip member having these functions is provided, so the number of parts, the number of assembly steps and the cost are increased. Can be reduced.

以下、本発明の一実施例に係るブレーカを図面に基づいて具体的に説明する。図面において、図1はオフ状態における本発明の一実施例に係るブレーカの側面図である。なお、図1において、前後方向は紙面の表裏方向であり、表側が前側であり、裏側が後側である。又、上下左右の方向は、図1に矢印で示す通りである。   Hereinafter, a breaker according to an embodiment of the present invention will be described in detail with reference to the drawings. In the drawings, FIG. 1 is a side view of a breaker according to an embodiment of the present invention in an off state. In FIG. 1, the front-rear direction is the front-back direction of the page, the front side is the front side, and the back side is the rear side. Also, the vertical and horizontal directions are as shown by arrows in FIG.

図1に示すように、このブレーカには、絶縁性合成樹脂からなるケース1の右端部に電源側の電線が接続される例えば2個の電源接続端子2が設けられ、ケース1内に設けた中子3の左端部の前後にそれぞれ負荷回路を接続する負荷接続端子4が設けられる。   As shown in FIG. 1, this breaker is provided with, for example, two power connection terminals 2 to which a power supply side electric wire is connected at the right end portion of the case 1 made of an insulating synthetic resin. Load connection terminals 4 for connecting a load circuit are provided before and after the left end of the core 3.

上記中子3の前後各側には、電源接続端子2と対応する負荷接続端子4とを接続する内部回路が配置され、各内部回路にはケース1に固定された固定接触子5と、固定接触子5に接離させる可動接触子6を介在させて、上記固定接触子5に可動接触子6を接触させることにより各内部回路が閉成され、固定接触子5から可動接触子6を上方に離隔させることにより各内部回路が開かれるようにしている。   An internal circuit for connecting the power connection terminal 2 and the corresponding load connection terminal 4 is arranged on each side of the core 3 before and after the core 3, and a fixed contact 5 fixed to the case 1 is fixed to each internal circuit. By interposing a movable contact 6 that is brought into contact with and away from the contact 5 and bringing the movable contact 6 into contact with the fixed contact 5, each internal circuit is closed, and the movable contact 6 is moved upward from the fixed contact 5. Each internal circuit is opened by being separated from each other.

又、このブレーカには、作業者が操作して各内部回路を同時に開閉する開閉機構7が設けられると共に、過負荷発生時に各内部回路を開くための過負荷時トリップ駆動手段8、過電流発生時に各内部回路を開くための過電流時トリップ駆動手段9、及び漏電発生時に各内部回路を開くための漏電時トリップ駆動手段10が設けられる。   In addition, the breaker is provided with an opening / closing mechanism 7 that is operated by an operator to open and close each internal circuit at the same time, and when the overload occurs, an overload trip driving means 8 for opening each internal circuit, overcurrent generation Sometimes, an overcurrent trip driving means 9 for opening each internal circuit and a leakage trip driving means 10 for opening each internal circuit when a leakage occurs are provided.

図2は各内部回路が開かれているオフ状態における上記開閉機構7の側面図である。   FIG. 2 is a side view of the opening / closing mechanism 7 in an off state in which each internal circuit is opened.

図2に示すように、上記固定接触子5は金属板材を打ち抜いて形成した支持部材11とこの支持部材11の右端に固定された固定接点12とを備え、該支持部材11の左端部に上記負荷接続端子4が固定される。   As shown in FIG. 2, the fixed contact 5 includes a support member 11 formed by punching a metal plate and a fixed contact 12 fixed to the right end of the support member 11. The load connection terminal 4 is fixed.

上記可動接触子6は、付勢手段13を介して上記中子3に弾性支持させた金属帯材からなる遊動部材14とこの遊動部材14の左端部に固定されている可動接点15とを備える。   The movable contact 6 includes a floating member 14 made of a metal strip elastically supported by the core 3 through an urging means 13 and a movable contact 15 fixed to the left end portion of the floating member 14. .

図2に示すオフ状態においては、上記付勢手段13に付勢された上記遊動部材14の右端部が上記中子3に設けた右牽制部3aにより所定の高さに牽制され、該遊動部材14の左端寄り中間部は開閉機構7の開閉部材16の先端部に上側から受止められる。   In the OFF state shown in FIG. 2, the right end portion of the floating member 14 biased by the biasing means 13 is restrained to a predetermined height by a right restraining portion 3 a provided in the core 3, and the floating member The intermediate portion near the left end of 14 is received from the top by the tip of the opening / closing member 16 of the opening / closing mechanism 7.

この開閉部材16は基端部が第1支点軸20を介してケース1及び中子3に支持され、オフ状態ではその先端部が中子3に設けた左牽制部3bに上側から牽制されている。これにより、上記付勢手段13により付勢された上記可動接触子6が固定接触子5の上方に離隔したオフ位置に保持される。   The opening / closing member 16 is supported by the case 1 and the core 3 at the base end portion via the first fulcrum shaft 20, and in the off state, the tip end portion is restrained from above by the left restraining portion 3 b provided on the core 3. Yes. As a result, the movable contact 6 biased by the biasing means 13 is held at an off position spaced above the fixed contact 5.

上記開閉機構7は上記付勢手段13と開閉部材16の他に、作業者が操作するハンドル17と、リンク18と、トリップ部材19を備える。   The opening / closing mechanism 7 includes a handle 17 operated by an operator, a link 18 and a trip member 19 in addition to the biasing means 13 and the opening / closing member 16.

上記ハンドル17は、第2支点軸21を介して上記ケース1及び中子3に回転可能に支持される円筒形のボス部22と、このボス部22の外周面から上記ケース1外まで突出させたレバー部23とを備え、ボス部22に形成した段落部24の周囲に巻きつけられ、一端が上記中子3に設けた係止部3cに係合され、他端が上記ボス部22に保持されたねじりコイルバネからなる戻しバネ25により反時計回り方向に付勢されている。   The handle 17 protrudes from the outer peripheral surface of the boss portion 22 to the outside of the case 1 through the second fulcrum shaft 21 and rotatably supported by the case 1 and the core 3. The lever portion 23 is wound around the paragraph portion 24 formed on the boss portion 22, one end is engaged with the locking portion 3 c provided on the core 3, and the other end is engaged with the boss portion 22. It is urged counterclockwise by a return spring 25 comprising a held torsion coil spring.

図1に示すように、上記ケース1には上記レバー部23を左側から受止めるオフ位置牽制面1aと、上記レバー部23を右側から受止めるオン位置牽制面1bが設けられ、上記レバー部23はオフ位置牽制面1aに受止められるオフ位置と、オン位置牽制面1bに受止められるオン位置との間で回転操作される。   As shown in FIG. 1, the case 1 is provided with an off-position restraining surface 1a for receiving the lever portion 23 from the left side and an on-position restraining surface 1b for receiving the lever portion 23 from the right side. Is rotated between an off position received by the off position check surface 1a and an on position received by the on position check surface 1b.

上記リンク18は円形断面を有する線材をコ字形に折り曲げた形状を有し、図2に示すように、その上辺部からなる基端部26が上記ハンドル17のボス部22の外周部に回転自在に支持される。又、このリンク18の先端部27、即ち、コ字形の下辺部は上記開閉部材16の上面、即ち、可動接触子6と反対側の面に当接させる。   The link 18 has a shape obtained by bending a wire having a circular cross section into a U-shape, and as shown in FIG. 2, a base end portion 26 composed of the upper side thereof is freely rotatable on the outer peripheral portion of the boss portion 22 of the handle 17. Supported by Further, the end portion 27 of the link 18, that is, the lower side portion of the U-shape is brought into contact with the upper surface of the opening / closing member 16, that is, the surface opposite to the movable contact 6.

上記トリップ部材19は、上記第1支点軸20を介して上記ケース1及び中子3に回転可能に支持される中心部28とこの中心部28から上記開閉部材16の上側に延出されたフック部29を備え、このフック部29の先端には開閉部材16に向かって突出する鈎先部30が形成され、通常にハンドル17を操作して上記内部回路を開閉する時には、この鈎先部30と中心部28の間で上記リンク18の先端部27が移動する。   The trip member 19 includes a central portion 28 that is rotatably supported by the case 1 and the core 3 via the first fulcrum shaft 20, and a hook that extends from the central portion 28 to the upper side of the opening / closing member 16. The hook portion 29 is provided with a tip portion 30 that protrudes toward the opening / closing member 16. When the handle 17 is normally operated to open and close the internal circuit, the tip portion 30 is provided. The tip portion 27 of the link 18 moves between the center portion 28 and the center portion 28.

図3はオン状態における本発明の一実施例に係るブレーカの側面図であり、図3における前後、上下、左右の方向は図1におけるそれらと同様である。   FIG. 3 is a side view of the breaker according to one embodiment of the present invention in the ON state, and the front and rear, top and bottom, and left and right directions in FIG. 3 are the same as those in FIG.

図1及び図2に示すオフ状態から図3に示すオン状態への切換えは作業者が上記ハンドル17をオフ位置からオン位置に回転させることにより実現される。   Switching from the off state shown in FIGS. 1 and 2 to the on state shown in FIG. 3 is realized by the operator rotating the handle 17 from the off position to the on position.

図2に示すように、オフ状態では、上記リンク18の基端部26が第2支点軸21と該リンク18の先端部27を結ぶ直線よりも右側に位置するので、オフ状態からハンドル17を右回り方向(時計回り方向)、即ち、オン位置の方向に回転させると、先ず、リンク18の先端部27が開閉部材16の上面を滑ってトリップ部材19の鈎先部30に向かって移動する。   As shown in FIG. 2, in the off state, the base end portion 26 of the link 18 is located on the right side of the straight line connecting the second fulcrum shaft 21 and the distal end portion 27 of the link 18. When rotated in the clockwise direction (clockwise direction), that is, in the direction of the ON position, first, the tip portion 27 of the link 18 slides on the upper surface of the opening / closing member 16 and moves toward the tip portion 30 of the trip member 19. .

上記リンク18の先端部27が鈎先部30に受止められた後、ハンドル17を更にオン位置の方向に移動させると、第2支点軸21と上記リンク18の基端部26及び先端部27が一直線に並ぶ臨界状態になるまで、ハンドル17の回転角が増大するに連れて第2支点軸21とリンク18の先端部27の距離が増大し、上記開閉部材16及びトリップ部材19が第1支点軸20を中心に左下がり方向(反時計回り方向)に回転し、可動接触子6が下方に押し下げられる。   After the distal end portion 27 of the link 18 is received by the tip portion 30, when the handle 17 is further moved in the direction of the on position, the second fulcrum shaft 21, the proximal end portion 26 and the distal end portion 27 of the link 18 are obtained. As the rotation angle of the handle 17 increases, the distance between the second fulcrum shaft 21 and the tip end portion 27 of the link 18 increases until the opening / closing member 16 and the trip member 19 are in the first state. The movable contact 6 rotates downward about the fulcrum shaft 20 in the left downward direction (counterclockwise direction), and is pushed downward.

開閉部材16により押し下げられる可動接触子6は、先ず右牽制部3aを支点にして可動接点15が固定接点12に受止められるまで左側が下方に下がり、可動接点15が固定接点12に受止められた後は固定接点12を支えにして右側が下がる。   The movable contact 6 pushed down by the opening / closing member 16 is first lowered downward with the right check portion 3a as a fulcrum until the movable contact 15 is received by the fixed contact 12, and the movable contact 15 is received by the fixed contact 12. After that, the right side is lowered with the fixed contact 12 as a support.

臨界状態では第2支点軸21とリンク18の先端部27の距離が最大となり、可動接触子6は最も低く押し下げられ、この臨界状態を越えると、リンク18の基端部26は第2支点軸21とリンク18の先端部27を結ぶ直線よりも左側に移動し、付勢手段13が可動接触子6、開閉部材16及びリンク18を上に押し戻し、戻しバネ25の付勢力に打ち勝ってハンドル17を時計回り方向に回転させる。   In the critical state, the distance between the second fulcrum shaft 21 and the distal end portion 27 of the link 18 is maximized, and the movable contact 6 is pushed down to the lowest. When this critical state is exceeded, the proximal end portion 26 of the link 18 is moved to the second fulcrum shaft. The biasing means 13 pushes back the movable contact 6, the opening / closing member 16 and the link 18 upward, and overcomes the biasing force of the return spring 25 to move the handle 17. Rotate clockwise.

そして、図3に示すように、上記可動接点15が固定接点12に支えられている状態で上記レバー部23が上記ケース1のオン位置牽制面1bに受止められるオン位置に移動すると、上記付勢手段13の付勢力により、上記ハンドル17がオン位置にロックされ、可動接点15が開閉部材16の先端を支点にして固定接点12に押付けられるオン状態が保持される。   As shown in FIG. 3, when the lever portion 23 is moved to the ON position received by the ON position restraining surface 1b of the case 1 with the movable contact 15 supported by the fixed contact 12, the attachment Due to the urging force of the urging means 13, the handle 17 is locked in the ON position, and the ON state in which the movable contact 15 is pressed against the fixed contact 12 with the tip of the opening / closing member 16 as a fulcrum is maintained.

又、作業者が上記ハンドル12を逆にオン位置からオフ位置に回転させると逆の順でオン状態からオフ状態に切換えられる。   On the other hand, when the operator rotates the handle 12 from the on position to the off position, it is switched from the on state to the off state in the reverse order.

ところで、上記ブレーカは、負荷回路に過負荷が発生した時には上記過負荷時トリップ駆動手段8が作動して、又、負荷回路に過電流が発生した時には過電流時トリップ駆動手段9が作動して、若しくは、負荷回路の漏電(短絡)が発生した時には漏電時トリップ駆動手段10が作動して、上記トリップ部材19によるリンク18の牽制が解除される。   By the way, the breaker operates when the overload trip driving means 8 operates when an overload occurs in the load circuit, and when the overcurrent occurs when the overcurrent occurs in the load circuit. Alternatively, when an electric leakage (short circuit) occurs in the load circuit, the trip driving means 10 at the time of electric leakage is activated, and the check of the link 18 by the trip member 19 is released.

このトリップ部材19によるリンク18の牽制が解除されることをトリップといい、トリップが実現すると、以下のようにしてブレーカが瞬時にオン状態からオフ状態に復帰する。   The release of the check of the link 18 by the trip member 19 is called a trip. When the trip is realized, the breaker instantaneously returns from the on state to the off state as follows.

図4は過負荷によりトリップした時の上記ブレーカの側面図である。図4における前後、上下、左右の方向は図1及び図3におけるそれらと同様である。   FIG. 4 is a side view of the breaker when tripped due to overload. The front and rear, top and bottom, and left and right directions in FIG. 4 are the same as those in FIGS. 1 and 3.

図4に示すように、上記過負荷時トリップ駆動手段8はバイメタルからなり、上記中子3に固定される基端部8aとこの基端部からL字形に立ち上げた作動部8bとを備え、上記基端部8aが一方の電源接続端子2に接続される。又、上記作動部8bの中間高さ部が上記可動接触子6及び固定接触子5を介して負荷接続端子4に接続される。   As shown in FIG. 4, the overload trip drive means 8 is made of bimetal, and includes a base end portion 8a fixed to the core 3 and an operation portion 8b raised from the base end portion in an L-shape. The base end portion 8a is connected to one power connection terminal 2. The intermediate height portion of the operating portion 8 b is connected to the load connection terminal 4 through the movable contact 6 and the fixed contact 5.

上記トリップ部材19には、中心部28から斜め右下方に連出された過負荷時受動部31が設けられ、通常時には、この過負荷時受動部31の右方に上記過負荷時トリップ駆動手段8の作動部8bの上端が所定の距離を置いて対向する。   The trip member 19 is provided with an overload passive portion 31 extending obliquely downward to the right from the center portion 28. In normal times, the overload trip drive means is located to the right of the overload passive portion 31. The upper ends of the eight operating portions 8b face each other with a predetermined distance.

負荷回路に過負荷が発生した時には上記作動部8bの可動接触子6への配線が接続されている点と基端部8a間の部分(通電部分)が自己発熱により熱変形して、上記過負荷時受動部31を左方に押え込み、トリップ部材19の鈎先部30を開閉部材16から浮き上らせる。   When an overload occurs in the load circuit, the portion between the point of connection of the actuating portion 8b to the movable contact 6 and the base end portion 8a (energized portion) is thermally deformed due to self-heating, and the overload occurs. When the load is applied, the passive portion 31 is pressed to the left, and the tip portion 30 of the trip member 19 is lifted from the opening / closing member 16.

上記鈎先部30がリンク18の線径の1/2よりも大きく開閉部材16から浮き上ると、トリップ部材19によるリンク18の牽制が解除され、以後、リンク18の先端部が開閉部材16の上面を滑ってトリップ部材19の鈎先方向に移動し、開閉部材16及び可動接触子6の上昇に対するリンク18及びハンドル17による牽制が解除される。この牽制が解除された開閉部材16及び可動接触子6は可動接触子6の右端が右牽制部3aに受止められ、開閉部材16の先端部が左牽制部3bに受止められるまで付勢手段13により上方に押し戻され、これにより内部回路が開かれる。   When the tip 30 is lifted from the opening / closing member 16 to be larger than ½ of the wire diameter of the link 18, the check of the link 18 by the trip member 19 is released, and thereafter, the tip of the link 18 is moved to the opening / closing member 16. The upper surface slides and moves in the tip direction of the trip member 19, and the restraint by the link 18 and the handle 17 against the lifting of the opening / closing member 16 and the movable contact 6 is released. The opening / closing member 16 and the movable contact 6 released from the restraint are biased until the right end of the movable contact 6 is received by the right restraint 3a and the tip of the opening / closing member 16 is received by the left restraint 3b. 13 is pushed back upward, thereby opening the internal circuit.

又、リンク18の先端部が開閉部材16の上面を滑ってトリップ部材19の鈎先方向に移動することにより、上記ハンドル17に対する付勢手段13の付勢が解除されるので、該ハンドル17は戻しバネ25によりオフ位置に移動する。このハンドル17のオフ位置への復帰に連動して、リンク18の先端部27は開閉部材16の基端部及びトリップ部材19の中心部28の方向に引戻される。   Further, when the tip of the link 18 slides on the upper surface of the opening / closing member 16 and moves toward the tip of the trip member 19, the urging force of the urging means 13 against the handle 17 is released. The return spring 25 moves to the off position. In conjunction with the return of the handle 17 to the OFF position, the distal end portion 27 of the link 18 is pulled back toward the proximal end portion of the opening / closing member 16 and the central portion 28 of the trip member 19.

上記過負荷時トリップ駆動手段8は内部回路が開かれると自己発熱を停止し、自然冷却されて形状をオフ時の形状に戻し、該過負荷時トリップ駆動手段8の作動部8bが右方に戻るにつれトリップ部材19が、上記漏電時トリップ駆動手段10に内蔵された戻しバネの弾発力により、その鈎先部30が開閉部材16に向かって下降する方向に回転し、鈎先部30と中心部28の間で開閉部材16とフック部29の間にリンク18の先端部27が位置するオフ状態に復帰する。   The overload trip drive means 8 stops self-heating when the internal circuit is opened, and is naturally cooled to return to the off-shape, and the operating portion 8b of the overload trip drive means 8 moves to the right. As it returns, the tripping member 19 rotates in a direction in which its tip part 30 descends toward the opening / closing member 16 by the elastic force of the return spring built in the trip drive means 10 at the time of electric leakage, The center portion 28 returns to the off state in which the end portion 27 of the link 18 is positioned between the opening / closing member 16 and the hook portion 29.

図5は過電流によりトリップが開始された状態における上記ブレーカの側面図であり、図5における前後、上下、左右の方向は図1、図3及び図4におけるそれらと同様である。   FIG. 5 is a side view of the breaker in a state where a trip is started due to overcurrent. The front, rear, top, bottom, left and right directions in FIG. 5 are the same as those in FIGS.

上記トリップ部材19は、上記中心部28から下方に連出した過負荷時受動部32を備え、負荷回路に過電流が流れた時には上記過電流時トリップ駆動手段9により、この過電流時受動部32を左方に押し込み、トリップ部材19によるリンク18の牽制を解除する。   The trip member 19 includes an overload passive portion 32 that extends downward from the central portion 28. When an overcurrent flows in the load circuit, the overcurrent trip drive means 9 causes the overcurrent passive portion to operate. 32 is pushed to the left, and the check of the link 18 by the trip member 19 is released.

図6は上記過電流時トリップ駆動手段9の分解斜視図である。図5と図6に示すように、この過電流時トリップ駆動手段9は上記中子3に支持させる電磁石33と、この電磁石33で駆動される駆動片34を備える。   FIG. 6 is an exploded perspective view of the overcurrent trip driving means 9. As shown in FIGS. 5 and 6, the overcurrent trip drive means 9 includes an electromagnet 33 supported by the core 3 and a drive piece 34 driven by the electromagnet 33.

図6に示すように、上記駆動片34は、1枚の金属板をプレス成形したものであり、上記電磁石33に磁気吸着させる被吸着部35と、この被吸着部35の上縁を部分的にく字形に折り曲げることにより形成されている係合部36と、上記被吸着部35の上縁を部分的に上方に面一状に延出した駆動部37を備える。   As shown in FIG. 6, the drive piece 34 is formed by press-molding a single metal plate, and a portion to be attracted 35 to be magnetically attracted to the electromagnet 33 and an upper edge of the attracted portion 35 are partially formed. The engaging portion 36 is formed by bending it into a square shape, and the drive portion 37 is formed by extending the upper edge of the attracted portion 35 partially upward.

上記電磁石33は、鉄、鋼などの強磁性金属板をU字溝形に曲げた吸着部材38を備え、この吸着部材38の長溝側壁の端面が駆動片34を吸着する吸着面38aを構成する。そして、この吸着部材38の内側に形成される溝38cに、例えば合成樹脂からなる絶縁チューブ39と、この絶縁チューブ39に挿通された内部回路の一部分が挿入される。   The electromagnet 33 includes an adsorption member 38 obtained by bending a ferromagnetic metal plate such as iron or steel into a U-shaped groove shape, and an end face of the long groove side wall of the adsorption member 38 constitutes an adsorption surface 38a that adsorbs the drive piece 34. . Then, an insulating tube 39 made of, for example, a synthetic resin and a part of an internal circuit inserted through the insulating tube 39 are inserted into the groove 38c formed inside the suction member 38.

なお、ここでは上記過負荷時トリップ駆動手段8と可動接触子6の右端部とを接続する内部回路の部分が挿入されている。   Here, an internal circuit portion for connecting the overload trip driving means 8 and the right end of the movable contact 6 is inserted.

上記電磁石33の吸着部材38は上記吸着面38aと例えば直角に交差する端面38bを備え、わずかに傾斜させたこれら吸着面38aと端面38bが交差する稜線40に上記駆動片34の被吸着部35と係合部36との屈曲部に形成される屈曲凹部41を係合することにより、上記駆動片34が上記稜線40を支点にして回転可能に吸着部材38に支持される。   The attracting member 38 of the electromagnet 33 includes an end surface 38b that intersects the attracting surface 38a, for example, at a right angle, and the attracted portion 35 of the drive piece 34 is on a ridge line 40 where the attracting surface 38a and the end surface 38b intersect slightly. By engaging a bent recess 41 formed in a bent portion between the engaging portion 36 and the engaging portion 36, the drive piece 34 is supported by the suction member 38 so as to be rotatable about the ridgeline 40 as a fulcrum.

図5に示すように、上記駆動片34はその係合部36を右下方に付勢する板バネからなる押えバネ42により、該駆動片34の下端部が上記中子3に設けた別の牽制部3dに受止められるまで時計回り方向、すなわち、駆動片34の被吸着部35を上記吸着面38aから離隔させる方向に付勢している。これにより、上記電磁石33が発生する磁力(駆動片34を吸着する力)が上記押えばね42の付勢力より小さい場合、すなわち、上記電磁石33の電流が一定値以下、あるいは、急激な電流変動がない場合に駆動片34の被吸着部35を上記吸着面38aから離隔させ、上記電磁石33が発生する磁力が上記押えばね42の付勢力より大きい場合、すなわち、上記一定値を超える過電流、あるいは、急激な電流変動が発生したときに被吸着部35を上記吸着面38aに吸着させるようにしている。   As shown in FIG. 5, the drive piece 34 has a lower end portion of the drive piece 34 provided on the core 3 by a presser spring 42 formed of a plate spring that urges the engaging portion 36 downward to the right. It is urged | biased in the clockwise direction, ie, the direction which separates the to-be-adsorbed part 35 of the drive piece 34 from the said adsorption surface 38a until it is received by the check part 3d. As a result, when the magnetic force generated by the electromagnet 33 (the force for attracting the drive piece 34) is smaller than the biasing force of the presser spring 42, that is, the current of the electromagnet 33 is less than a certain value or there is a sudden current fluctuation. If the attracted portion 35 of the drive piece 34 is separated from the attracting surface 38a when there is not, and the magnetic force generated by the electromagnet 33 is greater than the biasing force of the presser spring 42, that is, an overcurrent exceeding the certain value, or When the sudden current fluctuation occurs, the attracted portion 35 is attracted to the attracting surface 38a.

そして、駆動片34の被吸着部35が吸着面38aに吸着されると、駆動片34の駆動部37が上記トリップ部材19の過電流時受動部32を左方に押し、上記トリップ部材19によるリンク18の牽制が解除される。   When the attracted portion 35 of the driving piece 34 is attracted to the attracting surface 38a, the driving portion 37 of the driving piece 34 pushes the passive portion 32 in the overcurrent of the trip member 19 to the left, and the trip member 19 The check of the link 18 is released.

この後、このブレーカがオフ状態まで復帰する動作は内部回路が開かれることにより電磁石33の電磁吸着力が消失し、上記駆動片34が押えバネ42の付勢力によりオフ位置に復帰することを除けば過負荷時のそれと同様である。   Thereafter, the operation of returning the breaker to the OFF state is that the electromagnetic attracting force of the electromagnet 33 disappears when the internal circuit is opened, and the driving piece 34 is returned to the OFF position by the biasing force of the presser spring 42. It is the same as that at overload.

図7は漏電によりトリップが開始された状態における上記ブレーカの側面図である。   FIG. 7 is a side view of the breaker in a state in which a trip is started due to electric leakage.

上記トリップ部材19には、中央部29から右上方に連出された漏電時受動部43が設けられる。   The trip member 19 is provided with an earth leakage passive portion 43 that extends from the central portion 29 to the upper right.

上記漏電時トリップ駆動手段10は、ソレノイド44と該ソレノイド44により駆動されるプランジャ45を備え、このプランジャ45は上記漏電磁受動部43に進退可能に挿通される。又、このプランジャ45は、上記漏電磁受動部43を上記ソレノイド44と反対の左方から受止める頭部46を備え、図示しない戻しバネにより頭部46の方向に付勢されている。   The leakage trip driving means 10 includes a solenoid 44 and a plunger 45 driven by the solenoid 44, and the plunger 45 is inserted into the leakage electromagnetic passive unit 43 so as to advance and retreat. The plunger 45 includes a head 46 that receives the electromagnetic leakage passive portion 43 from the left side opposite to the solenoid 44, and is biased toward the head 46 by a return spring (not shown).

漏電は、電源接続端子2と上記過負荷時トリップ駆動手段8を接続する内部回路の部分の電流を電流検出手段47により検出し、この電流検出手段47が検出する電流に基づいて実装プリント配線基板48に形成された漏電判定回路が漏電の有無を判定する。漏電判定回路において漏電があると判定した時には上記ソレノイド44に通電し、このソレノイド44に吸引されたプランジャ45の頭部46が漏電時受動部43を右方に駆動することによりトリップ部材19によるリンク18の牽制が解除される。   The leakage is detected by the current detecting means 47 detecting the current in the internal circuit portion connecting the power connection terminal 2 and the overload trip driving means 8 and the mounted printed wiring board based on the current detected by the current detecting means 47. The leakage determination circuit formed in 48 determines the presence or absence of leakage. When the leakage determination circuit determines that there is a leakage, the solenoid 44 is energized, and the head portion 46 of the plunger 45 sucked by the solenoid 44 drives the passive portion 43 to the right when the leakage occurs, thereby linking the trip member 19. 18 checks are released.

この後、このブレーカがオフ状態まで復帰する動作は、内部回路が開かれることによりソレノイド44によるプランジャ45の吸引が停止され、漏電時トリップ駆動手段10に内蔵された戻しバネの弾発力によりプランジャ45が左方に押出されトリップ部材19がオフ状態の位置に復帰することを除けば、過負荷時や過電流時においてトリップからオフ状態に復帰する動作と同様である。   Thereafter, the operation of returning the breaker to the OFF state is performed by stopping the suction of the plunger 45 by the solenoid 44 by opening the internal circuit, and by the elastic force of the return spring built in the trip drive means 10 at the time of electric leakage. Except for the fact that 45 is pushed to the left and the trip member 19 returns to the off state, the operation is the same as the operation of returning from the trip to the off state during an overload or overcurrent.

以上に説明したように、このブレーカは、開閉機構7を付勢手段13、ハンドル17、リンク18及びトリップ部材19で構成しているので、ハンドル、リンク、ラッチ部材及びトリップバーを備える従来の開閉機構に比べて部品点数が1点少ない。その結果、このブレーカによれば、組立工数が削減でき、コストを削減できるなどの効果を得ることができる。   As described above, in this breaker, since the opening / closing mechanism 7 includes the urging means 13, the handle 17, the link 18, and the trip member 19, the conventional opening / closing mechanism including the handle, the link, the latch member, and the trip bar is provided. The number of parts is one less than that of the mechanism. As a result, according to this breaker, it is possible to reduce the number of assembling steps and to obtain effects such as cost reduction.

オフ状態における本発明の側面図である。It is a side view of this invention in an OFF state. オフ状態における本発明の開閉機構の側面図である。It is a side view of the opening-and-closing mechanism of the present invention in an OFF state. オン状態における本発明の側面図である。It is a side view of this invention in an ON state. 過負荷によるトリップ時における本発明の側面図である。It is a side view of this invention at the time of the trip by overload. 過電流によるトリップ時における本発明の側面図である。It is a side view of this invention at the time of the trip by an overcurrent. 本発明の過電流時トリップ駆動手段の分解斜視図である。It is a disassembled perspective view of the trip drive means at the time of overcurrent of this invention. 漏電によるトリップ時における本発明の側面図である。It is a side view of this invention at the time of the trip by electric leakage.

符号の説明Explanation of symbols

1 ケース
5 固定接触子
6 可動接触子
8 過負荷時トリップ駆動手段
9 過電流時トリップ駆動手段
10 漏電時トリップ駆動手段
16 開閉部材
17 ハンドル
18 リンク
19 トリップ部材
DESCRIPTION OF SYMBOLS 1 Case 5 Fixed contact 6 Movable contact 8 Trip drive means at the time of overload 9 Trip drive means at the time of overcurrent 10 Trip drive means at the time of earth leakage 16 Opening / closing member 17 Handle 18 Link 19 Trip member

Claims (1)

基端部がケースに回転自在に支持されると共に、先端が可動接触子に固定接触子と反対側から当接される開閉部材と、
上記可動接触子を開閉操作するためのハンドルと、
基端部が上記ハンドルの回転軸心から離れた位置に回転自在に支持されると共に、先端部を上記開閉部材の中間部に可動接触子と反対側から接離可能に当接されるリンクと、
上記開閉部材の回転軸心の回りに回転可能に上記ケースに支持され、先端が上記開閉部材に沿って移動する上記リンクの開閉部材先端側への移動を所定の位置で牽制するトリップ部材と、
該トリップ部材を駆動して上記リンクに対する牽制を解除するトリップ駆動手段を備えることを特徴とするブレーカ。
An opening / closing member whose base end is rotatably supported by the case and whose tip is in contact with the movable contact from the side opposite to the fixed contact;
A handle for opening and closing the movable contact;
A link whose base end is rotatably supported at a position away from the rotation axis of the handle, and whose tip is in contact with the middle part of the opening / closing member so as to be able to contact and separate from the opposite side of the movable contact; ,
A trip member that is supported by the case so as to be rotatable around a rotation axis of the opening / closing member, and that restrains the movement of the link that moves along the opening / closing member toward the opening / closing member tip side at a predetermined position;
A breaker comprising trip driving means for driving the trip member to release the restraint on the link.
JP2004102953A 2004-03-31 2004-03-31 breaker Expired - Fee Related JP4372596B2 (en)

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JP4700547B2 (en) * 2006-04-19 2011-06-15 パナソニック電工電路株式会社 Circuit breaker
JP5231833B2 (en) * 2008-02-21 2013-07-10 パナソニックエコソリューションズ電路株式会社 Circuit breaker

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