JP6484377B2 - Electromagnetic device - Google Patents

Electromagnetic device Download PDF

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JP6484377B2
JP6484377B2 JP2018176200A JP2018176200A JP6484377B2 JP 6484377 B2 JP6484377 B2 JP 6484377B2 JP 2018176200 A JP2018176200 A JP 2018176200A JP 2018176200 A JP2018176200 A JP 2018176200A JP 6484377 B2 JP6484377 B2 JP 6484377B2
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yoke
bobbin
movable core
core
plate
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JP2019021928A (en
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直樹 及川
直樹 及川
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Keihin Corp
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Description

本発明は、側板、この側板の一端より直角に屈曲して延びる第1端板、及び前記側板の他端より直角に屈曲して延びる第2端板よりなり、縦断面がコ字状をなすヨークと、前記第1及び第2端板間に配置されるボビンにコイルを巻装してなるコイル組立体と、前記第1端板にかしめ固定されて前記ボビンの中空部に配置される固定コアと、前記第2端板を貫通して前記ボビンの中空部で前記固定コアに軸方向で対向するように配置される可動コアと、この可動コアを前記固定コアから離間する方向に付勢する戻しばねと、前記ヨーク及びコイル組立体を被覆する合成樹脂製の被覆層と、この被覆層に一体に連設されて前記コイルに連なる給電端子を保持するカプラとを備え、前記コイルへの通電時、前記可動コアが前記固定コアに吸引される電磁装置の改良に関する。   The present invention comprises a side plate, a first end plate that is bent and extended at a right angle from one end of the side plate, and a second end plate that is bent and extended at a right angle from the other end of the side plate, and has a U-shaped longitudinal section. A yoke, a coil assembly in which a coil is wound around a bobbin disposed between the first and second end plates, and a fixed member that is caulked and fixed to the first end plate and disposed in the hollow portion of the bobbin. A core, a movable core that passes through the second end plate and is disposed so as to face the fixed core in the hollow portion of the bobbin in an axial direction, and biases the movable core in a direction away from the fixed core A return spring, a synthetic resin coating layer that covers the yoke and the coil assembly, and a coupler that is integrally connected to the coating layer and holds a power feeding terminal that is connected to the coil. When energized, the movable core is attracted to the fixed core It relates to an improvement of the magnetic devices.

かゝる電磁装置は、特許文献1に開示されるように、既に知られている。   Such an electromagnetic device is already known as disclosed in Patent Document 1.

特開2012−21562号公報JP 2012-21562 A

従来のかゝる電磁装置においては、ヨークを、1枚の磁性鋼板の両端を直角に折り曲げて縦断面コ字状に形成していたので、ヨークの側板は平板状になっている。このため、側板は、幅方向中心部から外側に向かってコイルから離れることにより、コイルへの通電時、ヨークに生じる磁束密度がヨークの中央部と外側部とで不均一になり、磁気特性に多少とも悪影響を及ぼす。またコイルから大きく離れた側板の両外側部が、電磁装置の外径を略決定するので、電磁装置が大型化する傾向となり、その小型化を困難にしている。   In the conventional electromagnetic device, since the yoke is formed in a U-shaped longitudinal section by bending both ends of one magnetic steel plate at a right angle, the side plate of the yoke has a flat plate shape. For this reason, the side plate is separated from the coil outward from the center in the width direction, so that when the coil is energized, the magnetic flux density generated in the yoke becomes non-uniform between the central and outer portions of the yoke, resulting in magnetic properties. It has a slight adverse effect. Further, both outer side portions of the side plate far away from the coil substantially determine the outer diameter of the electromagnetic device, so that the size of the electromagnetic device tends to increase, making it difficult to reduce the size.

本発明は、かゝる事情に鑑みてなされたもので、磁気特性が良好で、しかも小型化を可能にした前記電磁装置を提供することを目的とする。   The present invention has been made in view of such circumstances, and an object of the present invention is to provide the electromagnetic device that has good magnetic characteristics and can be miniaturized.

上記目的を達成するために、本発明は、側板、この側板の一端より直角に屈曲して延びる第1端板、及び前記側板の他端より直角に屈曲して延びる第2端板よりなり、縦断面がコ字状をなすヨークと、前記第1及び第2端板間に配置されるボビンにコイルを巻装してなるコイル組立体と、前記第1端板にかしめ固定されて前記ボビンの中空部に配置される固定コアと、前記第2端板を貫通して前記ボビンの中空部で前記固定コアに軸方向で対向するように配置される可動コアと、この可動コアを前記固定コアから離間する方向に付勢する戻しばねと、前記ヨーク及びコイル組立体を被覆する合成樹脂製の被覆層と、この被覆層に一体に連設されて前記コイルに連なる給電端子を保持するカプラとを備え、前記コイルへの通電時、前記可動コアが前記固定コアに吸引される電磁装置において、前記ヨークは、1枚の磁性鋼板よりなるプレス成形品であって、前記側板が前記ボビンと同心の円弧状をなすと共に、前記第1及び第2端板が前記ボビンと同軸の円板状をなすように形成され、前記可動コアが貫通するように前記第2端板に穿設された透孔に、第2端板の板厚よりも軸方向長さが長く形成されて前記可動コアを囲繞する補助ヨークを圧入固定し、前記可動コアの前記ボビンから突出する部分を収容して可動コアの脱落を防ぐ非磁性のセットカラーの内端に、前記ボビンと前記補助ヨークの内端部との間で保持される支持フランジを設ける一方、前記補助ヨークの外端には、補助ヨークが前記支持フランジをボビンに押圧することを回避すべく、前記第2端板の外端面に当接して補助ヨークの前記透孔への圧入深さを規制するストッパフランジを設けたことを第1の特徴とする。   In order to achieve the above object, the present invention comprises a side plate, a first end plate extending at a right angle from one end of the side plate, and a second end plate extending at a right angle from the other end of the side plate, A yoke having a U-shaped longitudinal section, a coil assembly in which a coil is wound around a bobbin disposed between the first and second end plates, and the bobbin fixed by caulking to the first end plate A fixed core disposed in the hollow portion, a movable core disposed through the second end plate so as to face the fixed core in the hollow portion of the bobbin, and the fixed core. A return spring that biases in a direction away from the core, a synthetic resin coating layer that covers the yoke and the coil assembly, and a coupler that is integrally connected to the coating layer and holds a power supply terminal that is connected to the coil And the movable core when energized to the coil In the electromagnetic device attracted to the fixed core, the yoke is a press-formed product made of one magnetic steel plate, and the side plate has an arc shape concentric with the bobbin, and the first and second ends A plate is formed so as to have a disk shape coaxial with the bobbin, and a through-hole formed in the second end plate so that the movable core penetrates is more axial than the thickness of the second end plate. At the inner end of the non-magnetic set collar which is formed with a long length and press fits and fixes the auxiliary yoke surrounding the movable core, and accommodates the portion protruding from the bobbin of the movable core to prevent the movable core from falling off. While providing a support flange held between the bobbin and the inner end of the auxiliary yoke, the outer end of the auxiliary yoke has an auxiliary yoke to avoid pressing the support flange against the bobbin. In contact with the outer end surface of the second end plate In that a stopper flange for restricting the press-fitting depth into the through hole of the auxiliary yoke and the first features.

また本発明は、第1の特徴に加えて、前記側板と、前記第1及び第2端板との各間に切欠きを設けたことを第2の特徴とする。   In addition to the first feature, the present invention has a second feature in that a notch is provided between each of the side plate and the first and second end plates.

本発明の第1の特徴によれば、ヨークの側板が、ボビンと同心の円弧状をなしているので、側板の各部は、コイルまでの距離が一定となる。したがって、ヨークにおいて、磁束が第1端板、側板及び第2端板を流れる際、側板の各部における磁束密度が一様となることから、ヨークの固定コア及び可動コアに対する磁気特性が改善し、固定コアの可動コアに対する吸引力を増加させ、可動コアの吸引応答性の向上を図ることができる。   According to the first feature of the present invention, since the side plate of the yoke has an arc shape concentric with the bobbin, each portion of the side plate has a constant distance to the coil. Therefore, in the yoke, when the magnetic flux flows through the first end plate, the side plate, and the second end plate, the magnetic flux density in each part of the side plate becomes uniform, so the magnetic characteristics of the yoke with respect to the fixed core and the movable core are improved, The suction force of the fixed core with respect to the movable core can be increased, and the suction responsiveness of the movable core can be improved.

また第1及び第2端板は、ボビンと同軸の円板状をなしているので、側板が円弧状をなすことゝ相まって、ヨークの周囲には側板の外径よりも大きな突起部が存在せず、したがってヨーク及びコイル組立体の周囲を被覆する被覆層の各部の肉厚に大きな差が生じることがなく、これにより電磁装置の小型化、特に小径化を図ることができる。   In addition, since the first and second end plates have a disk shape coaxial with the bobbin, the side plate has an arc shape, and there is no protrusion around the yoke that is larger than the outer diameter of the side plate. Therefore, there is no great difference in the thickness of each part of the coating layer covering the periphery of the yoke and the coil assembly, and this makes it possible to reduce the size of the electromagnetic device, particularly the diameter.

また、ヨークの第2端板の透孔に、第2端板の板厚よりも軸方向長さが長く形成されて可動コアを囲繞する補助ヨークを圧入固定するので、第2端板から可動コアへ向かう磁束は、補助ヨークの軸方向及び周方向に分散され、これより可動コアがヨーク側に引き寄せられるサイドフォースが減少し、可動コアの吸引応答性の更なる向上を図ることができる。   In addition, the auxiliary yoke surrounding the movable core is press-fitted and fixed in the through hole of the second end plate of the yoke so as to be longer in the axial direction than the thickness of the second end plate, so that it can be moved from the second end plate. The magnetic flux directed toward the core is dispersed in the axial direction and the circumferential direction of the auxiliary yoke, thereby reducing the side force with which the movable core is attracted toward the yoke, thereby further improving the suction responsiveness of the movable core.

また更に、可動コアの前記ボビンから突出する部分を収容して可動コアの脱落を防ぐ非磁性のセットカラーの内端に、ボビンと補助ヨークの内端部との間で保持される支持フランジを設ける一方、補助ヨークの外端には、補助ヨークが前記支持フランジをボビンに押圧することを回避すべく、第2端板の外端面に当接して補助ヨークの透孔への圧入深さを規制するストッパフランジを設けたので、補助ヨークを透孔に圧入した際、その圧入荷重が補助ヨークから、支持フランジを介してボビンに伝達することを回避でき、合成樹脂製のボビンの破損を防ぐことができる。   Still further, a support flange that is held between the bobbin and the inner end of the auxiliary yoke is provided on the inner end of the non-magnetic set collar that accommodates the portion of the movable core that protrudes from the bobbin and prevents the movable core from falling off. On the other hand, at the outer end of the auxiliary yoke, in order to prevent the auxiliary yoke from pressing the support flange against the bobbin, the outer end surface of the second end plate is brought into contact with the outer end surface of the auxiliary yoke so as to have a press-fitting depth into the through hole of the auxiliary yoke. Since the stopper flange is provided, when the auxiliary yoke is press-fitted into the through-hole, it is possible to prevent the press-fitting load from being transmitted from the auxiliary yoke to the bobbin via the support flange, thereby preventing damage to the bobbin made of synthetic resin. be able to.

本発明の第2の特徴によれば、側板と、第1及び第2端板との各間に切欠き31が設けられるので、この切欠き31により、ヨークのプレス成形時に第1及び第2端板に発生する皺を吸収して、平坦な第1及び第2端板を得ることができる。   According to the second feature of the present invention, the notch 31 is provided between the side plate and each of the first and second end plates. Therefore, the notch 31 allows the first and second to be formed during press forming of the yoke. By absorbing wrinkles generated on the end plate, flat first and second end plates can be obtained.

本発明の実施形態に係る電磁装置の平面図。The top view of the electromagnetic device which concerns on embodiment of this invention. 図1の2−2線拡大断面図。FIG. 2 is an enlarged sectional view taken along line 2-2 in FIG. 1. 電磁装置のヨークの斜視図及び断面図。The perspective view and sectional drawing of the yoke of an electromagnetic device. 電磁装置の被覆層の射出成形時におけるヨークの支持要領説明図。The support point explanatory drawing of the yoke at the time of injection molding of the coating layer of an electromagnetic device.

本発明の実施の形態を添付図面に基づいて以下に説明する。   Embodiments of the present invention will be described below with reference to the accompanying drawings.

先ず図1及び図2において、油路1を有する制御基体Bに、その油路1を開閉する電磁装置Sの一対のブラケット2がボルト3により締結される。   First, in FIG. 1 and FIG. 2, a pair of brackets 2 of an electromagnetic device S that opens and closes the oil passage 1 is fastened to a control base B having the oil passage 1 by bolts 3.

電磁装置Sは、側板4c、この側板4cの一端より直角に屈曲して延びる第1端板4a、及び前記側板4cの他端より直角に屈曲して延びる第2端板4bよりなり、縦断面がコ字状をなすヨーク4と、第1及び第2端板4a,4b間に配置されるボビン6にコイル7を巻装してなるコイル組立体5と、第1端板4aにかしめ固定されてボビン6の中空部6aに配置される固定コア8と、第2端板4bを貫通してボビン6の中空部6aで固定コア8に軸方向で対向するように配置される可動コア9と、この可動コア9を固定コア8から離間する方向に付勢する戻しばね10と、ヨーク4及びコイル組立体5を被覆する合成樹脂製の被覆層11と、この被覆層11に一体に連設されてコイル7に連なる給電端子12を保持するカプラ13と、同じく被覆層11に一体に連設される一対の前記ブラケット2を備える。前記戻しばね10はコイルばねよりなっていて、その大部分は、固定コア8の中心部に設けられる凹部14に収容される。   The electromagnetic device S includes a side plate 4c, a first end plate 4a extending at a right angle from one end of the side plate 4c, and a second end plate 4b extending at a right angle from the other end of the side plate 4c. And a coil assembly 5 formed by winding a coil 7 around a bobbin 6 disposed between the first and second end plates 4a and 4b, and a first end plate 4a. The fixed core 8 disposed in the hollow portion 6a of the bobbin 6 and the movable core 9 disposed so as to pass through the second end plate 4b and face the fixed core 8 in the hollow portion 6a of the bobbin 6 in the axial direction. A return spring 10 that urges the movable core 9 in a direction away from the fixed core 8, a synthetic resin coating layer 11 that covers the yoke 4 and the coil assembly 5, and a continuous connection with the coating layer 11. Same as the coupler 13 provided and holding the power supply terminal 12 connected to the coil 7 The covering layer 11 comprising a pair of brackets 2 that are integrally connected to. The return spring 10 is a coil spring, and most of the return spring 10 is accommodated in a recess 14 provided in the center of the fixed core 8.

前記可動コア9は、その内端面より突出した短軸9aを一体に有しており、この短軸9aによって戻しばね10の可動端が位置決めされる。また短軸9aには、可動コア9の内端面、即ち固定コア8との対向面を覆う非磁性のワッシャ15が嵌装され、そして戻しばね10により保持される。   The movable core 9 integrally has a short shaft 9a protruding from the inner end surface thereof, and the movable end of the return spring 10 is positioned by the short shaft 9a. The short shaft 9 a is fitted with a non-magnetic washer 15 that covers the inner end surface of the movable core 9, that is, the surface facing the fixed core 8, and is held by the return spring 10.

可動コア9の先端には円錐状の弁体17が一体に連設される。一方、制御基体Bの油路1には、弁体17と協働して油路1を開閉する弁座部材18が介装される。   A conical valve body 17 is integrally connected to the tip of the movable core 9. On the other hand, a valve seat member 18 that opens and closes the oil passage 1 in cooperation with the valve body 17 is interposed in the oil passage 1 of the control base B.

可動コア9が貫通するように第2端板4bに穿設された透孔19には、第2端板4bの板厚よりも軸方向長さが長く形成されて可動コア9を囲繞する補助ヨーク20が圧入固定される。また可動コア9のボビン6から突出する部分を、可動コア9の脱落を防ぐ非磁性のセットカラー21が収容する。このセットカラー21の内端には、ボビン6と上記補助ヨーク20の内端部との間で保持される支持フランジ21aが設けられると共に、セットカラー21の外端には、可動コア9の脱落を阻止する内向き鍔21bが設けられ、こうしてセットカラー21及び可動コア9はセットされる。上記内向き鍔21bは、弁体17の弁座部材18への着座を阻害しないように配置される。   The through hole 19 formed in the second end plate 4b so that the movable core 9 penetrates has an axial length longer than the thickness of the second end plate 4b, and surrounds the movable core 9. The yoke 20 is press-fitted and fixed. In addition, the non-magnetic set collar 21 that prevents the movable core 9 from falling off accommodates the portion of the movable core 9 that protrudes from the bobbin 6. A support flange 21 a that is held between the bobbin 6 and the inner end of the auxiliary yoke 20 is provided at the inner end of the set collar 21, and the movable core 9 is dropped at the outer end of the set collar 21. An inward flange 21b is provided, and thus the set collar 21 and the movable core 9 are set. The inward flange 21b is disposed so as not to hinder the seating of the valve body 17 on the valve seat member 18.

一方、補助ヨーク20の外端には、第2端板4bの外端面に当接して補助ヨーク20の前記透孔19への圧入深さを規制するストッパフランジ20aが設けられ、これによって補助ヨーク20が前記支持フランジ21aをボビン6に押圧することを回避する。したがって、補助ヨーク20を前記透孔19に圧入した際、その圧入荷重が補助ヨーク20から支持フランジ21aを介してボビン6に伝達することを回避して、合成樹脂製のボビン6の破損を防ぐことができる。   On the other hand, the outer end of the auxiliary yoke 20 is provided with a stopper flange 20a that abuts the outer end surface of the second end plate 4b and restricts the press-fitting depth of the auxiliary yoke 20 into the through hole 19, and thereby the auxiliary yoke 20 is provided. 20 avoids pressing the support flange 21 a against the bobbin 6. Therefore, when the auxiliary yoke 20 is press-fitted into the through-hole 19, the press-fitting load is prevented from being transmitted from the auxiliary yoke 20 to the bobbin 6 via the support flange 21a, thereby preventing the bobbin 6 made of synthetic resin from being damaged. be able to.

また第1端板4aの外面には、被覆層11の射出成形時に使用する位置決め突起23が形成される。即ち、図4に示すように、被覆層11の射出成形時には、成形金型24の上面の複数の支持突起25上に第1端板4aを載置するのであるが、1個の支持突起25には位置決め孔26が設けられており、この位置決め孔26に上記位置決め突起23を嵌合することにより、ヨーク4のセット位置を決めると共に、溶融樹脂の流れによるヨーク4の移動を防ぐようになっている。被覆層11の成形後、被覆層11にできた支持突起25の跡の凹部33はポッティング剤34により埋められる。尚、前記複数の支持突起25のうち、位置決め孔26を持たない支持突起25は、位置決め孔26を持つ支持突起25よりも小径に形成することができ、そうすると、被覆層11にできる凹部33も小径となり、それを埋めるポッティング剤34の使用量を少なくすることができる。   In addition, a positioning projection 23 used at the time of injection molding of the covering layer 11 is formed on the outer surface of the first end plate 4a. That is, as shown in FIG. 4, during the injection molding of the coating layer 11, the first end plate 4 a is placed on the plurality of support protrusions 25 on the upper surface of the molding die 24. Is provided with a positioning hole 26. By fitting the positioning projection 23 into the positioning hole 26, the setting position of the yoke 4 is determined and the movement of the yoke 4 due to the flow of the molten resin is prevented. ing. After the molding of the coating layer 11, the recess 33 of the trace of the support protrusion 25 formed on the coating layer 11 is filled with the potting agent 34. Of the plurality of support protrusions 25, the support protrusion 25 that does not have the positioning hole 26 can be formed to have a smaller diameter than the support protrusion 25 that has the positioning hole 26. The diameter becomes small, and the amount of potting agent 34 used to fill it can be reduced.

図1及び図2より明らかなように、コイル7の外周面から被覆層11の外周面までの被覆層11の肉厚は、ヨーク4の側板4cが存在しない部分では、側板4cが存在する部分よりも薄く設定され、その薄く設定された箇所において、軸方向をボビン6と平行にした前記カプラ13が被覆層11に一体に連設される。その際、カプラ13と、被覆層11の肉厚が薄い部分との間には、カプラ13の外周に嵌合接続される雌カプラ(図示せず)を受容し得る最小限の間隙27が設けられる。こうすることにより、電磁装置Sの中心からカプラ13までの距離を極力狭めて、電磁装置Sの小型化を図ることができる。   As is clear from FIGS. 1 and 2, the thickness of the coating layer 11 from the outer peripheral surface of the coil 7 to the outer peripheral surface of the coating layer 11 is the portion where the side plate 4c is present in the portion where the side plate 4c of the yoke 4 is not present. The coupler 13 is set so as to be thinner, and the coupler 13 whose axial direction is parallel to the bobbin 6 is integrally connected to the coating layer 11 at the thinned portion. At that time, a minimum gap 27 that can receive a female coupler (not shown) fitted and connected to the outer periphery of the coupler 13 is provided between the coupler 13 and the thin portion of the coating layer 11. It is done. By doing so, the distance from the center of the electromagnetic device S to the coupler 13 can be reduced as much as possible, and the electromagnetic device S can be downsized.

図3に明示するように、前記ヨーク4は、1枚の磁性鋼板よりなるプレス成形品、具体的には深絞り成形品であって、側板4cがボビン6と同心の円弧状をなすと共に、第1及び第2端板4a,4bがボビン6と同軸の円板状をなすように形成されている。また円弧状の側板4cの周方向中央部には、この側板4cの軸方向に延びる長孔30が穿設される。この長孔30によれば、ヨーク4のプレス成形時、側板4cのスプリングバックを緩和し、側板4cに所望の円弧形状を精度よく付与することができる。また長孔30には、被覆層11の樹脂が充填されることになるから、アンカ効果を発揮して被覆層11とヨーク4との結合を強化する機能をも有する。さらに側板4cと、前記第1及び第2端板4a,4bとの各間には切欠き31が設けられる。この切欠き31によれば、ヨーク4のプレス成形時、第1及び第2端板4a,4bに発生する皺を吸収して、平坦な第1及び第2端板4a,4bを得ることができる。   As shown in FIG. 3, the yoke 4 is a press-formed product made of a single magnetic steel plate, specifically a deep-drawn product, and the side plate 4c has a circular arc shape concentric with the bobbin 6, The first and second end plates 4 a and 4 b are formed so as to form a disk shape coaxial with the bobbin 6. Further, a long hole 30 extending in the axial direction of the side plate 4c is formed in the center portion in the circumferential direction of the arc-shaped side plate 4c. According to this long hole 30, when the yoke 4 is press-molded, the spring back of the side plate 4c can be relaxed and a desired arc shape can be given to the side plate 4c with high accuracy. Further, since the long hole 30 is filled with the resin of the coating layer 11, it also has a function of enhancing the bond between the coating layer 11 and the yoke 4 by exhibiting an anchor effect. Further, a notch 31 is provided between each of the side plate 4c and the first and second end plates 4a and 4b. According to the notch 31, it is possible to absorb the wrinkles generated in the first and second end plates 4a and 4b during the press molding of the yoke 4 to obtain flat first and second end plates 4a and 4b. it can.

次に、この実施形態の作用について説明する。   Next, the operation of this embodiment will be described.

コイル7の非通電時には、戻しばね10の付勢力により可動コア9が固定コア8から離間して弁体17を弁座部材18に着座させ、油路1を閉じている。コイル7に通電すると、それによって発生する磁束fが、固定コア8、ヨーク4、補助ヨーク20、可動コア9及び固定コア8へと順次流れ、固定コア8及び可動コア9間に発生する磁力により、可動コア9が戻しばね10の付勢力に抗して固定コア8に吸引され、そして非磁性のワッシャ15を介して吸着され、弁体17が開弁、即ち弁座部材18から離座することにより、油路1が開放される。   When the coil 7 is not energized, the movable core 9 is separated from the fixed core 8 by the urging force of the return spring 10 to seat the valve element 17 on the valve seat member 18 and close the oil passage 1. When the coil 7 is energized, the magnetic flux f generated thereby flows sequentially to the fixed core 8, the yoke 4, the auxiliary yoke 20, the movable core 9 and the fixed core 8, and is generated by the magnetic force generated between the fixed core 8 and the movable core 9. The movable core 9 is attracted to the fixed core 8 against the urging force of the return spring 10 and is attracted via the non-magnetic washer 15, and the valve body 17 is opened, that is, separated from the valve seat member 18. As a result, the oil passage 1 is opened.

その際、ヨーク4では、磁束fが第1端板4a、側板4c及び第2端板4bを流れるのであるが、側板4cが、ボビン6と同心の円弧状をなしているので、側板4cの各部は、コイル7までの距離が一定となり、これにより側板4cの各部における磁束密度が一様となることから、ヨーク4の両コア8,9に対する磁気特性が改善し、固定コア8の可動コア9に対する吸引力を増加させ、可動コア9の吸引応答性、延いては弁体17の開弁応答性の向上を図ることができる。   At that time, in the yoke 4, the magnetic flux f flows through the first end plate 4a, the side plate 4c, and the second end plate 4b. However, since the side plate 4c has an arc shape concentric with the bobbin 6, Each part has a constant distance to the coil 7, thereby making the magnetic flux density uniform in each part of the side plate 4 c, improving the magnetic characteristics of the yoke 4 with respect to both the cores 8 and 9, and the movable core of the fixed core 8. The suction force with respect to 9 can be increased, and the suction responsiveness of the movable core 9 and thus the valve opening response of the valve body 17 can be improved.

また第2端板4bの透孔19には、第2端板4bの板厚よりも軸方向長さが長く形成されて可動コア9を囲繞する補助ヨーク20が圧入固定されるので、第2端板4bから可動コア9へ向かう磁束fは、補助ヨーク20の軸方向及び周方向に分散し、これより可動コア9がヨーク4側に引き寄せられるサイドフォースが減少し、可動コア9の吸引応答性の更なる向上を図ることができる。尚、補助ヨーク20は、ヨーク4よりも硬質であることが望ましい。補助ヨーク20が硬質であると、これをヨーク4の透孔19に圧入したとき、透孔19の粗い内周面が補助ヨーク20の外周面により調整されて両者4,20が良好に密着し、両者4,20間の磁気抵抗を減少させることができる。   In addition, since the auxiliary yoke 20 surrounding the movable core 9 is press-fitted and fixed in the through hole 19 of the second end plate 4b, the axial length is longer than the plate thickness of the second end plate 4b. The magnetic flux f directed from the end plate 4b to the movable core 9 is dispersed in the axial direction and the circumferential direction of the auxiliary yoke 20, thereby reducing the side force with which the movable core 9 is drawn toward the yoke 4 and reducing the attractive response of the movable core 9. Further improvement in sex can be achieved. The auxiliary yoke 20 is preferably harder than the yoke 4. If the auxiliary yoke 20 is rigid, when the auxiliary yoke 20 is press-fitted into the through hole 19 of the yoke 4, the rough inner peripheral surface of the through hole 19 is adjusted by the outer peripheral surface of the auxiliary yoke 20, so that the both 4 and 20 are in good contact. , The magnetic resistance between the both 4 and 20 can be reduced.

また第1及び第2端板4a,4bは、ボビン6と同軸の円板状をなしているので、側板4cが円弧状をなすことゝ相まって、ヨーク4の周囲には側板4cの外径よりも大きな突起部が存在せず、したがってヨーク及びコイル組立体5の周囲を被覆する被覆層11の各部の肉厚に大きな差が生じることがなく、これにより電磁装置Sの小型化、特に小径化を図ることができる。   Further, since the first and second end plates 4a and 4b are in the shape of a disk coaxial with the bobbin 6, the side plate 4c is combined with an arc shape so that the yoke 4 is surrounded by the outer diameter of the side plate 4c. Therefore, there is no large difference in the thickness of each part of the coating layer 11 covering the periphery of the yoke and the coil assembly 5, thereby reducing the size of the electromagnetic device S, especially the diameter. Can be achieved.

またヨーク4の周囲には側板4cの外径よりも大きな突起部が存在しないことから、その周囲の被覆層11からブラケット2を延出する場合でも、ブラケット2の延出位置の自由度が増し、しかもブラケット2を特に大きく延出させずに済む。   Further, since there is no protrusion larger than the outer diameter of the side plate 4c around the yoke 4, even when the bracket 2 is extended from the surrounding coating layer 11, the degree of freedom of the extension position of the bracket 2 is increased. Moreover, it is not necessary to extend the bracket 2 particularly greatly.

コイル7への通電を絶つと、可動コア9は、戻しばね10の反発力により固定コア8から離間して、弁体17を閉弁状態に戻す。その際、可動コア9の、固定コア8との対向面に設けた非磁性のワッシャ15が両コア8,9間の残留磁気を解消して、可動コア9の戻り応答性の向上を図ることができる。しかも上記ワッシャ15は、戻しばね10を利用して可動コア9に保持されるので、その保持構造が簡単である。   When the coil 7 is de-energized, the movable core 9 is separated from the fixed core 8 by the repulsive force of the return spring 10 to return the valve body 17 to the closed state. At that time, the nonmagnetic washer 15 provided on the surface of the movable core 9 facing the fixed core 8 eliminates the residual magnetism between the two cores 8 and 9 and improves the return response of the movable core 9. Can do. Moreover, since the washer 15 is held by the movable core 9 using the return spring 10, the holding structure is simple.

本発明は上記実施形態に限定されるものではなく、その要旨を逸脱しない範囲で種々の設計変更が可能である。例えば、電磁装置Sは、弁以外の作動部材の駆動にも使用することができる。   The present invention is not limited to the above-described embodiment, and various design changes can be made without departing from the gist thereof. For example, the electromagnetic device S can be used to drive an operating member other than a valve.

S・・・・電磁装置
4・・・・ヨーク
4a・・・第1端板
4b・・・第2端板
4c・・・側板
5・・・・コイル組立体
6・・・・ボビン
6a・・・中空部
7・・・・コイル
8・・・・固定コア
9・・・・可動コア
10・・・戻しばね
11・・・被覆層
12・・・給電端子
13・・・カプラ
19・・・透孔
20・・・補助ヨーク
20a・・ストッパフランジ
21・・・セットカラー
21a・・支持フランジ
30・・・長孔
31・・・切欠き
S ... Electromagnetic device 4 ... Yoke 4a ... First end plate 4b ... Second end plate 4c ... Side plate 5 ... Coil assembly 6 ... Bobbin 6a ... ··· hollow portion 7 ··· coil 8 ··· fixed core 9 ··· movable core 10 ··· return spring 11 ··· coating layer 12 ··· feed terminal 13 ··· coupler 19 ···・ Through hole 20... Auxiliary yoke 20 a ..Stopper flange 21... Set collar 21 a ..Support flange 30.

Claims (2)

側板(4c)、この側板(4c)の一端より直角に屈曲して延びる第1端板(4a)、及び前記側板(4c)の他端より直角に屈曲して延びる第2端板(4b)よりなり、縦断面がコ字状をなすヨーク(4)と、前記第1及び第2端板(4a、4b)間に配置されるボビン(6)にコイル(7)を巻装してなるコイル組立体(5)と、前記第1端板(4a)にかしめ固定されて前記ボビン(6)の中空部(6a)に配置される固定コア(8)と、前記第2端板(4b)を貫通して前記ボビン(6)の中空部(6a)で前記固定コア(8)に軸方向で対向するように配置される可動コア(9)と、この可動コア(9)を前記固定コア(8)から離間する方向に付勢する戻しばね(10)と、前記ヨーク(4)及びコイル組立体(5)を被覆する合成樹脂製の被覆層(11)と、この被覆層(11)に一体に連設されて前記コイル(7)に連なる給電端子(12)を保持するカプラ(13)とを備え、前記コイル(7)への通電時、前記可動コア(9)が前記固定コア(8)に吸引される電磁装置において、
前記ヨーク(4)は、1枚の磁性鋼板よりなるプレス成形品であって、前記側板(4c)が前記ボビン(6)と同心の円弧状をなすと共に、前記第1及び第2端板(4a、4b)が前記ボビン(6)と同軸の円板状をなすように形成され、
前記可動コア(9)が貫通するように前記第2端板(4b)に穿設された透孔(19)に、第2端板(4b)の板厚よりも軸方向長さが長く形成されて前記可動コア(9)を囲繞する補助ヨーク(20)が圧入固定され、前記可動コア(9)の前記ボビン(6)から突出する部分を収容して可動コア(9)の脱落を防ぐ非磁性のセットカラー(21)の内端に、前記ボビン(6)と前記補助ヨーク(20)の内端部との間で保持される支持フランジ(21a)が設けられる一方、前記補助ヨーク(20)の外端には、補助ヨーク(20)が前記支持フランジ(21a)をボビン(6)に押圧することを回避すべく、前記第2端板(4b)の外端面に当接して補助ヨーク(20)の前記透孔(19)への圧入深さを規制するストッパフランジ(20a)が設けられることを特徴とする電磁装置。
A side plate (4c), a first end plate (4a) extending at a right angle from one end of the side plate (4c), and a second end plate (4b) extending at a right angle from the other end of the side plate (4c) A coil (7) is wound around a yoke (4) having a U-shaped longitudinal section and a bobbin (6) disposed between the first and second end plates (4a, 4b). A coil assembly (5), a fixed core (8) that is caulked and fixed to the first end plate (4a) and disposed in a hollow portion (6a) of the bobbin (6), and the second end plate (4b) ) Through the hollow core (6a) of the bobbin (6) so as to face the fixed core (8) in the axial direction, and the movable core (9) is fixed. A return spring (10) biased in a direction away from the core (8), and the yoke (4) and the coil assembly (5) are covered. A synthetic resin coating layer (11), and a coupler (13) that is integrally connected to the coating layer (11) and that holds a power supply terminal (12) connected to the coil (7). 7) In the electromagnetic device in which the movable core (9) is attracted to the fixed core (8) during energization to 7)
The yoke (4) is a press-formed product made of a single magnetic steel plate, and the side plate (4c) forms an arc concentric with the bobbin (6), and the first and second end plates ( 4a, 4b) are formed so as to form a disk shape coaxial with the bobbin (6),
In the through hole (19) drilled in the second end plate (4b) so that the movable core (9) penetrates, the axial length is longer than the plate thickness of the second end plate (4b). The auxiliary yoke (20) surrounding the movable core (9) is press-fitted and fixed, and the portion protruding from the bobbin (6) of the movable core (9) is accommodated to prevent the movable core (9) from falling off. A support flange (21a) that is held between the bobbin (6) and the inner end of the auxiliary yoke (20) is provided at the inner end of the nonmagnetic set collar (21), while the auxiliary yoke ( 20), the auxiliary yoke (20) is in contact with the outer end surface of the second end plate (4b) to prevent the auxiliary yoke (20) from pressing the support flange (21a) against the bobbin (6). Stopper flange for restricting the press-fitting depth of the yoke (20) into the through hole (19) 0a) electromagnetic device, characterized in that is provided.
請求項1に記載の電磁装置において、
前記側板(4c)と、前記第1及び第2端板(4a,4b)との各間に切欠き(31)を設けたことを特徴とする電磁装置。
The electromagnetic device according to claim 1,
An electromagnetic device comprising a notch (31) provided between each of the side plate (4c) and the first and second end plates (4a, 4b).
JP2018176200A 2018-09-20 2018-09-20 Electromagnetic device Expired - Fee Related JP6484377B2 (en)

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