JP2010281246A - Electromagnetic fuel injection valve - Google Patents

Electromagnetic fuel injection valve Download PDF

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JP2010281246A
JP2010281246A JP2009134355A JP2009134355A JP2010281246A JP 2010281246 A JP2010281246 A JP 2010281246A JP 2009134355 A JP2009134355 A JP 2009134355A JP 2009134355 A JP2009134355 A JP 2009134355A JP 2010281246 A JP2010281246 A JP 2010281246A
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fuel
small
diameter portion
fuel inlet
fuel injection
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JP5254131B2 (en
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Kenichi Saito
健一 斎藤
Kazuhiko Sato
和彦 佐藤
Akihiko Haramai
昭彦 原間井
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Keihin Corp
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Keihin Corp
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02TCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
    • Y02T10/00Road transport of goods or passengers
    • Y02T10/10Internal combustion engine [ICE] based vehicles
    • Y02T10/12Improving ICE efficiencies

Abstract

<P>PROBLEM TO BE SOLVED: To prevent deviation of groove width dimension of a sealing groove caused by shrinkage at the molding of a coating layer made of a synthetic resin, and strengthen the latching force with respect to the fuel inlet tube of a fuel filter, in an electromagnetic fuel injection valve. <P>SOLUTION: A fuel inlet tube 26 of a valve housing 2 is constituted by a large-diameter portion 26a coupled to a stationary core 5, and a small-diameter portion 26b continuing to the large diameter portion 26a via an annular shoulder portion 26c, facing backward. A rear-end portion 32a of a covering layer 32, formed on an outer periphery of a valve housing 2 so as to embed and seal a coil 30, is formed so that it is brought into intimate contact with a portion from the annular shoulder portion 26c to the small-diameter portion 26b. A small flange 40, protruding to the outer peripheral side, is formed at the small-diameter portion 26b, and an annular latching protrusion 49 that elastically engages with a front end surface 40a of the small flange 40 is formed on a mounting flange 47 of a fuel filter 43; and a sealing groove 50 for attaching an O-ring 51 is defined by the rear end portion 32a and the mounting flange 47, and the outer peripheral surface of the small diameter portion 26b exposed therebetween. <P>COPYRIGHT: (C)2011,JPO&INPIT

Description

本発明は,主として内燃機関の燃料供給系に使用される電磁式燃料噴射弁に関し,特に,前部に弁座部材,後部に燃料入口筒,中間部に固定コアを有していて内部を燃料で満たされる金属製の弁ハウジングと,前記固定コアの外周に配設されてその固定コアを励起するコイルと,前記固定コアの励起時,開弁作動して前記弁座部材からの燃料噴射を許容する弁体と,前記コイルを埋封するよう弁ハウジングの外周に形成される合成樹脂製の被覆層と,燃料入口筒の入口に装着される燃料フィルタとを備え,その燃料フィルタには,燃料入口筒の後端部を嵌合させる環状の嵌合凹部を有する合成樹脂製の取り付けフランジを設け,この取り付けフランジの前端面と,それに対向する前記被覆層の後端面とで燃料入口筒の外周にシール溝を画成し,このシール溝には,燃料入口筒の外周に嵌装される燃料供給キャップの内周面に密接するOリングを装着した電磁式燃料噴射弁の改良に関する。   The present invention relates to an electromagnetic fuel injection valve mainly used for a fuel supply system of an internal combustion engine, and in particular, has a valve seat member at a front portion, a fuel inlet cylinder at a rear portion, and a fixed core at an intermediate portion, and the inside is fueled. A metal valve housing that is filled with a coil, a coil that is disposed on an outer periphery of the fixed core and that excites the fixed core, and when the fixed core is excited, the valve is opened to inject fuel from the valve seat member. A permissible valve body, a synthetic resin coating layer formed on the outer periphery of the valve housing so as to embed the coil, and a fuel filter attached to the inlet of the fuel inlet cylinder. A synthetic resin mounting flange having an annular fitting recess for fitting the rear end portion of the fuel inlet tube is provided, and the front end surface of the mounting flange and the rear end surface of the coating layer facing the mounting flange are provided on the fuel inlet tube. A seal groove is defined on the outer periphery. The seal groove, an improvement of an electromagnetic fuel injection valve fitted with O-ring closely to the inner circumferential surface of the fuel supply cap which is fitted on the outer periphery of the fuel inlet tube.

かゝる電磁式燃料噴射弁は,例えば特許文献1に開示されるように知られている。   Such an electromagnetic fuel injection valve is known as disclosed in Patent Document 1, for example.

特開平6−323221号公報JP-A-6-323221

かゝる電磁式燃料噴射弁では,燃料入口筒の外周に燃料供給キャップを嵌装したとき,それらの対向周面間で圧縮されるOリングの変形量を一定にして,そのシール機能を安定させるために,燃料入口筒外周のシール溝の溝幅寸法を精度よく管理する必要があるところ,従来のものでは,合成樹脂の被覆層が成形時の引けにより,被覆層の後端面の位置が変化し,前記シール溝の溝幅寸法に狂いが生じることがある。また燃料フィルタは,その取り付けフランジと燃料入口筒と単なる凹凸係合により燃料入口筒に係止していたので,その係止力が弱い。このため,燃料フィルタ及び燃料供給キャビティの嵌合状態によっては,メンテナンスのため燃料供給キャップを燃料噴射弁から取り外すときに,燃料フィルタが燃料供給キャップに引きずられて燃料噴射弁から離脱してしまうことがある。   In such an electromagnetic fuel injection valve, when a fuel supply cap is fitted on the outer periphery of the fuel inlet cylinder, the amount of deformation of the O-ring compressed between the opposed peripheral surfaces is kept constant, and the sealing function is stabilized. Therefore, it is necessary to control the groove width dimension of the seal groove on the outer periphery of the fuel inlet cylinder with high accuracy. In the conventional case, the position of the rear end surface of the coating layer is reduced due to the shrinkage of the synthetic resin coating layer during molding. The groove width dimension of the seal groove may be changed. Further, since the fuel filter is locked to the fuel inlet cylinder by simple uneven engagement with the mounting flange and the fuel inlet cylinder, its locking force is weak. For this reason, depending on the fitting state of the fuel filter and the fuel supply cavity, when removing the fuel supply cap from the fuel injection valve for maintenance, the fuel filter may be dragged by the fuel supply cap and detached from the fuel injection valve. There is.

本発明は,かゝる事情に鑑みてなされたもので,合成樹脂製の被覆層の成形時の引けによるシール溝の溝幅寸法の狂いを防ぐと共に,燃料フィルタの燃料入口筒に対する係止力を強化し得るようにした電磁式燃料噴射弁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 prevents an irregularity of the groove width dimension of the seal groove due to shrinkage during molding of the synthetic resin coating layer, and the locking force of the fuel filter with respect to the fuel inlet cylinder. An object of the present invention is to provide an electromagnetic fuel injection valve capable of strengthening the above.

上記目的を達成するために,本発明は,前部に弁座部材,後部に燃料入口筒,中間部に固定コアを有していて内部を燃料で満たされる金属製の弁ハウジングと,前記固定コアの外周に配設されてその固定コアを励起するコイルと,前記固定コアの励起時,開弁作動して前記弁座部材からの燃料噴射を許容する弁体と,前記コイルを埋封するよう弁ハウジングの外周に形成される合成樹脂製の被覆層と,燃料入口筒の入口に装着される燃料フィルタとを備え,その燃料フィルタには,燃料入口筒の後端部を嵌合させる環状の嵌合凹部を有する合成樹脂製の取り付けフランジを設け,この取り付けフランジの前端面と,それに対向する前記被覆層の後端面とで燃料入口筒の外周にシール溝を画成し,このシール溝には,燃料入口筒の外周に嵌装される燃料供給キャップの内周面に密接するOリングを装着した電磁式燃料噴射弁において,前記燃料入口筒を,固定コアに連結する大径部と,この大径部に後向きの環状肩部を介して連なる小径部とで構成すると共に,前記被覆層の後端部を,これが前記環状肩部から小径部にかけて密着するように形成し,前記小径部の後端に,その外周側に突出する小フランジを形成すると共に,この小フランジの前端面に弾性的に係合する環状の係止突起を前記取り付けフランジに形成し,前記後端部及び取り付けフランジ間に露出した前記小径部の外周面を前記シール溝の溝底としたことを第1の特徴とする。   In order to achieve the above object, the present invention provides a valve seat member at the front, a fuel inlet tube at the rear, a fixed core at the middle, and a metal valve housing filled with fuel, and the fixed A coil disposed on the outer periphery of the core and energizing the fixed core; a valve element that opens when the stationary core is energized to permit fuel injection from the valve seat member; and the coil is embedded A synthetic resin coating layer formed on the outer periphery of the valve housing and a fuel filter attached to the inlet of the fuel inlet cylinder, and the fuel filter is an annular shape for fitting the rear end of the fuel inlet cylinder A synthetic resin mounting flange having a fitting recess is provided, and a seal groove is defined on the outer periphery of the fuel inlet cylinder by a front end surface of the mounting flange and a rear end surface of the coating layer facing the mounting flange. Fitted on the outer periphery of the fuel inlet cylinder In an electromagnetic fuel injection valve equipped with an O-ring that is in close contact with the inner peripheral surface of the fuel supply cap, a large-diameter portion that connects the fuel inlet cylinder to a fixed core, and a rear-facing annular shoulder on the large-diameter portion. And a rear end portion of the covering layer is formed so as to be in close contact from the annular shoulder portion to the small diameter portion, and protrudes outward from the rear end of the small diameter portion. An outer peripheral surface of the small-diameter portion that is formed between the rear end portion and the mounting flange is formed with a small flange and an annular locking projection that elastically engages the front end surface of the small flange on the mounting flange. The first feature is that is used as the groove bottom of the seal groove.

また本発明は,第1の特徴に加えて,前記小フランジの外周面及び前端面間の角をエッジ状に形成すべく,その前端面を前記燃料入口筒の軸線に対して直角に形成し,その前端面に連続する内側面を有する環状溝を前記小径部の外周に形成したことを第2の特徴とする。   According to the present invention, in addition to the first feature, the front end face is formed at right angles to the axis of the fuel inlet cylinder so as to form an edge between the outer peripheral face and the front end face of the small flange. The second feature is that an annular groove having an inner surface continuous with the front end surface is formed on the outer periphery of the small-diameter portion.

さらに本発明は,第1の特徴に加えて,前記燃料フィルタを,合成樹脂製の円筒状のフィルタ本体と,このフィルタ本体に開口する窓孔に張設される濾網と,フィルタ本体の後端に一体に連設される前記取り付けフランジとで構成し,前記フィルタ本体を前記燃料入口筒の内周面に圧入したことを第3の特徴とする。   In addition to the first feature of the present invention, the fuel filter includes a cylindrical filter body made of synthetic resin, a filter net stretched in a window hole opened in the filter body, and a rear of the filter body. The third feature is that the filter main body is press-fitted into the inner peripheral surface of the fuel inlet cylinder.

さらにまた本発明は,第1の特徴に加えて,前記固定コア及び燃料入口筒を同一素材により一体に形成したことを第4の特徴とする。   Furthermore, in addition to the first feature, the present invention has a fourth feature in which the fixed core and the fuel inlet tube are integrally formed of the same material.

本発明の第1の特徴によれば,被覆層の成形時,燃料入口筒の環状肩部が被覆層の後端部に対しアンカ効果を発揮し,被覆層の引けを効果的に抑制する。その結果,被覆層の後端面の位置変化がなくなり,その後端面と燃料フィルタの取り付けフランジの前端面とで決定されるシール溝の溝幅の狂いを殆ど無くすることができ,これによりシール溝におけるOリングの圧縮変形量の安定化,延いてはOリングの良好なシール機能を確保することができる。また上記環状肩部は,その前後の大径部及び小径部の外周面と協働してラビリンス効果を発揮し,燃料入口筒及び被覆層間への雨水等の浸入を効果的に防ぐことができる。   According to the first feature of the present invention, when the coating layer is formed, the annular shoulder portion of the fuel inlet cylinder exerts an anchor effect on the rear end portion of the coating layer, thereby effectively suppressing the shrinkage of the coating layer. As a result, there is no change in the position of the rear end face of the coating layer, and the deviation of the groove width of the seal groove determined by the rear end face and the front end face of the mounting flange of the fuel filter can be almost eliminated. It is possible to stabilize the amount of compressive deformation of the O-ring, and thus to ensure a good sealing function of the O-ring. In addition, the annular shoulder portion exerts a labyrinth effect in cooperation with the outer peripheral surfaces of the front and rear large-diameter portions and the small-diameter portion, and can effectively prevent rainwater and the like from entering the fuel inlet cylinder and the coating layer. .

また燃料入口筒の小フランジの前端面と,燃料フィルタの取り付けフランジに形成された係止突起との弾性的な係合により,取り付けフランジの燃料入口筒への係止力を高めることができる。したがって,仮令,燃料フィルタの取り付けフランジと,その外周に嵌装される燃料供給キャップとの間に摩擦が発生していても,メンテナンスのため燃料供給キャップを燃料噴射弁から取り外すときに,燃料フィルタが燃料供給キャップに引きずられて燃料噴射弁から外れることを確実に防ぐことができる。   Further, the elastic engagement between the front end face of the small flange of the fuel inlet tube and the locking protrusion formed on the mounting flange of the fuel filter can increase the locking force of the mounting flange to the fuel inlet tube. Therefore, even when friction is generated between the provisional flange of the fuel filter and the fuel supply cap fitted on the outer periphery of the fuel filter, when the fuel supply cap is removed from the fuel injection valve for maintenance, the fuel filter Can be reliably prevented from being pulled by the fuel supply cap and coming off the fuel injection valve.

本発明の第2の特徴によれば,小フランジの外周面及び前端面間の角をエッジ状に形成すべく,その前端面を前記燃料入口筒の軸線に対して直角に形成したので,燃料フィルタに引き抜き荷重が作用したときには,小フランジの外周面及び前端面間にできたエッジ状の角が取り付けフランジの係止突起に食い込むことになり,取り付けフランジの燃料入口筒への係止力を効果的に高めることになり,燃料フィルタの離脱を防ぐことができる。   According to the second feature of the present invention, the front end surface is formed at right angles to the axis of the fuel inlet cylinder so as to form an edge between the outer peripheral surface and the front end surface of the small flange. When a pulling load is applied to the filter, the edge-shaped corners formed between the outer peripheral surface and the front end surface of the small flange bite into the locking projections of the mounting flange, and the locking force of the mounting flange to the fuel inlet cylinder is reduced. This effectively increases the fuel filter and prevents the fuel filter from coming off.

しかも,小径部の外周には,小フランジの前端面に連続する内側面を有する環状溝を形成したので,小フランジの前端面を切削加工する際,同一の切削工具により前記前端面及び環状凹部を同時に切削することにより,小フランジの張り出し量が小さくとも,また切削工具の刃先に多少の丸みがあっても,小フランジの前端面を燃料入口筒の軸線に対して確実に直角に形成することができ,その結果,小フランジの外周面及び前端面間にエッジ状の角を容易,確実に形成することができるので,この小フランジ及び係止突起の係止力を一層高めることができる。   In addition, an annular groove having an inner surface continuous with the front end surface of the small flange is formed on the outer periphery of the small diameter portion. Therefore, when cutting the front end surface of the small flange, the front end surface and the annular recess are formed by the same cutting tool. Even if the overhang of the small flange is small and the cutting edge of the cutting tool is slightly rounded, the front end surface of the small flange is reliably formed at right angles to the axis of the fuel inlet cylinder. As a result, an edge-shaped corner can be easily and reliably formed between the outer peripheral surface and the front end surface of the small flange, so that the locking force of the small flange and the locking projection can be further increased. .

本発明の第3の特徴によれば,燃料フィルタのフィルタ本体を燃料入口筒の内周面に圧入したことで,燃料フィルタを燃料入口筒に強固に連結することができ,燃料フィルタの離脱を一層確実に防ぐことができる。   According to the third aspect of the present invention, the filter body of the fuel filter is press-fitted into the inner peripheral surface of the fuel inlet cylinder, so that the fuel filter can be firmly connected to the fuel inlet cylinder and the fuel filter can be detached. This can be prevented more reliably.

本発明の第4の特徴によれば,固定コア及び燃料入口筒の同一素材による一体化により,弁ハウジングの構成部品の削減のみならず,加工工数や組立工数の削減をも図ることができ,また燃料噴射弁の小型化にも寄与し得る。   According to the fourth feature of the present invention, the integration of the fixed core and the fuel inlet cylinder with the same material can not only reduce the components of the valve housing but also reduce the number of processing steps and assembly steps. It can also contribute to the miniaturization of the fuel injection valve.

本発明の実施例に係る電磁式燃料噴射弁をエンジンへの取り付け状態で示す縦断面図。The longitudinal cross-sectional view which shows the electromagnetic fuel injection valve which concerns on the Example of this invention in the attachment state to an engine. 図1の2部拡大図。FIG. 2 is an enlarged view of part 2 of FIG. 1. 図2の3部拡大図。FIG. 3 is an enlarged view of part 3 of FIG. 2.

本発明の実施の形態を,添付図面に示す本発明の好適な実施例に基づいて以下に説明する。尚,本発明の電磁式燃料噴射弁において,燃料噴射側を前方,燃料入口側を後方という。   Embodiments of the present invention will be described below on the basis of preferred embodiments of the present invention shown in the accompanying drawings. In the electromagnetic fuel injection valve of the present invention, the fuel injection side is referred to as the front, and the fuel inlet side is referred to as the rear.

図1において,エンジン用の電磁式燃料噴射弁Iの弁ハウジング2は,円筒状の弁座部材3と,この弁座部材3の後端部に嵌合して液密に溶接される磁性円筒体4と,この磁性円筒体4の後端に突き当てゝ液密に溶接される非磁性円筒体6と,この非磁性円筒体6の内周面に前端部を嵌合して液密に溶接される円筒状の固定コア5と,この固定コア5の後端に同一素材をもって一体に連設される燃料入口筒26とで構成される。固定コア5及び燃料入口筒26の同一素材による一体化により,弁ハウジング2の構成部品の削減のみならず,加工工数や組立工数の削減をも図ることができ,また電磁式燃料噴射弁Iの小型化にも寄与し得る。   In FIG. 1, a valve housing 2 of an electromagnetic fuel injection valve I for an engine includes a cylindrical valve seat member 3 and a magnetic cylinder that is fitted to a rear end portion of the valve seat member 3 and is liquid-tightly welded. A body 4, a nonmagnetic cylindrical body 6 that is liquid-tightly welded against the rear end of the magnetic cylindrical body 4, and a front end portion is fitted to the inner peripheral surface of the nonmagnetic cylindrical body 6 to be liquid-tight. A cylindrical fixed core 5 to be welded and a fuel inlet cylinder 26 integrally connected to the rear end of the fixed core 5 with the same material. By integrating the fixed core 5 and the fuel inlet cylinder 26 with the same material, not only can the components of the valve housing 2 be reduced, but also the processing man-hours and assembly man-hours can be reduced. It can also contribute to downsizing.

弁座部材3は,その前端面に開口する弁孔7と,この弁孔7の内端に連なる円錐状の弁座8と,この弁座8の大径部に連なる円筒状のガイド孔9とを備えている。弁座部材3の前端面には,上記弁孔7と連通する複数の燃料噴孔11を有する鋼板製のインジェクタプレート10が液密に溶接される。   The valve seat member 3 includes a valve hole 7 that opens to a front end surface thereof, a conical valve seat 8 that is continuous with the inner end of the valve hole 7, and a cylindrical guide hole 9 that is continuous with a large diameter portion of the valve seat 8. And. A steel plate injector plate 10 having a plurality of fuel injection holes 11 communicating with the valve hole 7 is welded to the front end surface of the valve seat member 3 in a liquid-tight manner.

非磁性円筒体6の前端部には,固定コア5と嵌合しない部分が残され,その部分から弁座部材3に至る弁ハウジング2内に弁組立体Vが収容される。   A portion that does not fit with the fixed core 5 remains at the front end portion of the nonmagnetic cylindrical body 6, and the valve assembly V is accommodated in the valve housing 2 that extends from the portion to the valve seat member 3.

弁組立体Vは,前記弁座8と協働して弁孔7を開閉するよう前記ガイド孔9を摺動し得る球状の弁体14と,この弁体14に溶接により結合される杆部13を一体に備えた可動コア12とで構成されるもので,その可動コア12は,磁性円筒体4の内周面に摺動自在に支承されて固定コア5に対置される。球状の弁体14の周囲には,燃料の通過を許容する複数の平坦面が形成される。   The valve assembly V includes a spherical valve body 14 that can slide in the guide hole 9 so as to open and close the valve hole 7 in cooperation with the valve seat 8, and a flange portion that is coupled to the valve body 14 by welding. The movable core 12 is slidably supported on the inner peripheral surface of the magnetic cylindrical body 4 and is opposed to the fixed core 5. A plurality of flat surfaces that allow the passage of fuel are formed around the spherical valve body 14.

弁組立体Vには,可動コア12の後端面から始まり杆部13の中間部で終わる縦孔19と,この縦孔19を杆部13の外周面に開放する横孔20とが設けられる。縦孔19の途中には,固定コア5側を向いた環状のばね座24が形成される。   The valve assembly V is provided with a vertical hole 19 that starts from the rear end surface of the movable core 12 and ends at the middle portion of the flange 13, and a horizontal hole 20 that opens the vertical hole 19 to the outer peripheral surface of the flange 13. An annular spring seat 24 facing the fixed core 5 is formed in the middle of the vertical hole 19.

固定コア5は,燃料入口筒26の中空部26dを固定コア5の前端面の連通させる縦孔21を有する。その縦孔21は,燃料入口筒26の中空部26dより小径になっており,可動コア12の縦孔19と連通する。   The fixed core 5 has a vertical hole 21 that allows the hollow portion 26 d of the fuel inlet cylinder 26 to communicate with the front end surface of the fixed core 5. The vertical hole 21 has a smaller diameter than the hollow portion 26 d of the fuel inlet cylinder 26 and communicates with the vertical hole 19 of the movable core 12.

この固定コア5の縦孔21にはすり割り付きパイプ状のリテーナ23が圧入され,このリテーナ23と前記ばね座24との間に可動コア12を弁体18の閉弁側に付勢する弁ばね22が縮設される。その際,リテーナ23の縦孔21への嵌合深さにより弁ばね22のセット荷重が調整される。   A pipe-shaped retainer 23 is press-fitted into the vertical hole 21 of the fixed core 5, and a valve that urges the movable core 12 toward the valve closing side of the valve body 18 between the retainer 23 and the spring seat 24. The spring 22 is contracted. At that time, the set load of the valve spring 22 is adjusted by the depth of fitting of the retainer 23 into the vertical hole 21.

可動コア12には,固定コア5に対向するその後端面より僅かに突出する非磁性材製でリング状のストッパ部材37が埋設される。このストッパ部材37は,固定及び可動コア5,12相互の吸引時,ストッパ部材37が固定コア5の前端面に当接することで,固定コア5及び可動コア12の対向端面間に所定のギャップを残存させるものである。   A ring-shaped stopper member 37 made of a non-magnetic material that slightly protrudes from the rear end surface facing the fixed core 5 is embedded in the movable core 12. The stopper member 37 has a predetermined gap between the opposed end surfaces of the fixed core 5 and the movable core 12 by contacting the front end surface of the fixed core 5 when the fixed and movable cores 5 and 12 are attracted to each other. It will be left.

弁ハウジング2の外周には,固定コア5及び可動コア12に対応してコイル組立体28が嵌装される。このコイル組立体28は,磁性円筒体4の後端部から固定コア5にかけてそれらの外周面に嵌合するボビン29と,これに巻装されるコイル30とからなっており,このコイル組立体28を囲繞する磁性体のコイルハウジング31の両端部が磁性円筒体4及び固定コア5の外周面に溶接される。   A coil assembly 28 is fitted to the outer periphery of the valve housing 2 so as to correspond to the fixed core 5 and the movable core 12. The coil assembly 28 includes a bobbin 29 fitted to the outer peripheral surface from the rear end portion of the magnetic cylindrical body 4 to the fixed core 5 and a coil 30 wound around the bobbin 29. Both end portions of a magnetic coil housing 31 that surrounds 28 are welded to the outer peripheral surfaces of the magnetic cylindrical body 4 and the fixed core 5.

磁性円筒体4の後半部から燃料入口筒26の前半部に亙りそれらの外周面には,コイル組立体28を埋封する合成樹脂製の被覆層32が射出成形により形成される。その際,被覆層32の中間部には,コイル30に連なる接続端子33を収容,保持するカプラ34が一体に連設される。   A synthetic resin coating layer 32 for embedding the coil assembly 28 is formed by injection molding from the rear half of the magnetic cylinder 4 to the front half of the fuel inlet cylinder 26. At that time, a coupler 34 that houses and holds the connection terminal 33 connected to the coil 30 is integrally connected to an intermediate portion of the coating layer 32.

図2に明示するように,燃料入口筒26は,固定コア5に同径で連なる大径部26aと,この大径部26aに後向きの環状肩部26cを介して連なる小径部26bとで構成されており,前記被覆層32の後端部32aは,上記環状肩部26cと,小径部26bの前部とに密着するように且つ被覆層32の他の部分より厚肉に形成される。具体的には,その後端部32aは,環状肩部26cに係止する環状の鉤部35と,外周側に隆起する環状リブ36とを備えることになる。   As clearly shown in FIG. 2, the fuel inlet cylinder 26 includes a large-diameter portion 26a connected to the fixed core 5 with the same diameter, and a small-diameter portion 26b connected to the large-diameter portion 26a via a rearward annular shoulder portion 26c. The rear end portion 32a of the covering layer 32 is formed thicker than the other portions of the covering layer 32 so as to be in close contact with the annular shoulder portion 26c and the front portion of the small diameter portion 26b. Specifically, the rear end portion 32a includes an annular flange portion 35 that is engaged with the annular shoulder portion 26c, and an annular rib 36 that protrudes on the outer peripheral side.

図3に明示するように,また小径部26bの後端には,その外周側に突出する小フランジ40が形成される。この小フランジ40は,その半径方向張り出し量が前記環状肩部26cの半径方向張り出し量より小さい。この小フランジ40の外周面及び前端面40a間の角をエッジ状に形成すべく,その前端面40aは,燃料入口筒26の軸線Yに対して直角に形成される。その際,前端面40aに連続する内側面を有する環状溝41が小径部26bの外周に形成される。これら前端面40a及び環状溝41は同一の切削工具Bにより同時に加工される。   As clearly shown in FIG. 3, a small flange 40 is formed at the rear end of the small-diameter portion 26b. The small flange 40 has a radial projecting amount smaller than the radial projecting amount of the annular shoulder 26c. In order to form an edge between the outer peripheral surface of the small flange 40 and the front end surface 40 a in an edge shape, the front end surface 40 a is formed at right angles to the axis Y of the fuel inlet cylinder 26. At this time, an annular groove 41 having an inner surface continuous with the front end surface 40a is formed on the outer periphery of the small diameter portion 26b. The front end face 40a and the annular groove 41 are simultaneously processed by the same cutting tool B.

燃料入口筒26の入口には燃料フィルタ43が装着される。この燃料フィルタ43は,合成樹脂製で有底円筒状のフィルタ本体44と,このフィルタ本体44の周壁に開口する複数の窓孔45に張設される濾網46と,フィルタ本体44の後端に一体に連設される取り付けフランジ47とで構成され,フィルタ本体44は,燃料入口筒26の内周面に圧入されるようになっている。また取り付けフランジ47には,燃料入口筒26の後端部が嵌合する環状の嵌合凹部48が形成され,またその嵌合凹部48の内周面には,小フランジ40の前端面40aに弾性的に係合する環状の係止突起49が形成される。小フランジ40の外周面の後半部にはテーパ面40bが形成され,これにより小フランジ40の嵌合凹部48への嵌入が誘導される。   A fuel filter 43 is attached to the inlet of the fuel inlet cylinder 26. The fuel filter 43 includes a synthetic resin-made bottomed cylindrical filter body 44, a filter net 46 stretched in a plurality of window holes 45 opened in the peripheral wall of the filter body 44, and a rear end of the filter body 44. The filter main body 44 is press-fitted into the inner peripheral surface of the fuel inlet cylinder 26. The attachment flange 47 is formed with an annular fitting recess 48 into which the rear end portion of the fuel inlet cylinder 26 is fitted. The inner surface of the fitting recess 48 is formed on the front end surface 40 a of the small flange 40. An annular locking protrusion 49 that is elastically engaged is formed. A tapered surface 40b is formed in the rear half of the outer peripheral surface of the small flange 40, and thereby the insertion of the small flange 40 into the fitting recess 48 is induced.

而して,前記被覆層32の厚肉の後端部32aの後端面32bと,それに対向する取り付けフランジ47の前端面47aと,これらの間に露出する小径部26bの外周面とにより環状のシール溝50が画成され,このシール溝50にOリング51が装着される。   Thus, the rear end surface 32b of the thick rear end portion 32a of the covering layer 32, the front end surface 47a of the mounting flange 47 opposed thereto, and the outer peripheral surface of the small-diameter portion 26b exposed between them are annular. A seal groove 50 is defined, and an O-ring 51 is attached to the seal groove 50.

前記磁性円筒体4の外周には,被覆層32の前端面に密接するシール部材52が装着される。   A seal member 52 that is in close contact with the front end surface of the coating layer 32 is attached to the outer periphery of the magnetic cylindrical body 4.

この電磁式燃料噴射弁Iは,次のようにして単気筒エンジンに取り付けられる。再び図1において,符号Tは単気筒エンジンのスロットルボディであり,このスロットルボディTの下流側一側壁に取り付け孔53が設けられ,この取り付け孔53の外端開口部に環状凹部53aが形成される。電磁式燃料噴射弁Iの前端部は,シール部材52を環状凹部53aに押し込むようにして取り付け孔53に嵌装され,この電磁式燃料噴射弁Iの後端部は合成樹脂製の保持部材Rにより保持される。   The electromagnetic fuel injection valve I is attached to a single cylinder engine as follows. Referring again to FIG. 1, reference numeral T denotes a throttle body of a single cylinder engine. A mounting hole 53 is provided on one downstream side wall of the throttle body T, and an annular recess 53a is formed in an outer end opening of the mounting hole 53. The The front end portion of the electromagnetic fuel injection valve I is fitted into the mounting hole 53 so as to push the seal member 52 into the annular recess 53a, and the rear end portion of the electromagnetic fuel injection valve I is a holding member R made of synthetic resin. Held by.

この保持部材Rは,燃料供給キャップ54と,この燃料供給キャップ54の一側面に突設される支持腕55と,燃料供給キャップ54の他側に突設されてそれと内部を連通させる燃料ジョイント56とよりなっており,その燃料供給キャップ54は,その内周面に前記Oリング51を圧縮させつゝ燃料入口筒26の外周に嵌装され,支持腕55は,スロットルボディTの所定箇所に形成された取り付けボス57にボルト58で固着される。燃料ジョイント56には,図示しない燃料ポンプからの吐出燃料を誘導する燃料導管69が接続される。   The holding member R includes a fuel supply cap 54, a support arm 55 protruding from one side of the fuel supply cap 54, and a fuel joint 56 protruding from the other side of the fuel supply cap 54 and communicating with the inside thereof. The fuel supply cap 54 is fitted on the outer periphery of the fuel inlet cylinder 26 while the O-ring 51 is compressed on the inner peripheral surface thereof, and the support arm 55 is attached to a predetermined portion of the throttle body T. It is fixed to the formed mounting boss 57 with a bolt 58. A fuel conduit 69 that guides fuel discharged from a fuel pump (not shown) is connected to the fuel joint 56.

こうしてスロットルボディTに取り付けられた電磁式燃料噴射弁Iは,図示しない燃料ポンプから圧送される燃料を燃料供給キャップ54から燃料入口筒26に供給され,そして燃料フィルタ43で濾過された燃料によって弁ハウジング2の内部は満たされる。   In this way, the electromagnetic fuel injection valve I attached to the throttle body T is supplied with fuel pumped from a fuel pump (not shown) from the fuel supply cap 54 to the fuel inlet cylinder 26 and is filtered by the fuel filtered by the fuel filter 43. The interior of the housing 2 is filled.

一方,シール溝50に装着されたOリング51は,燃料供給キャップ54の内周面による圧縮により,自由状態の円形断面形状(図2の鎖線示参照)から楕円形断面形状に変形し,燃料入口筒26の小径部外周面と燃料供給キャップ54の内周面とに所定の圧力で密接すると共に,被覆層32の後端面32bと燃料フィルタ43の取り付けフランジ47の前端面47aとで軸方向の動きが的確に規制されることになり,燃料入口筒26及び燃料供給キャップ54間で良好なシール機能を発揮することができる。   On the other hand, the O-ring 51 mounted in the seal groove 50 is deformed from a circular cross-sectional shape in a free state (see the chain line in FIG. 2) to an elliptical cross-sectional shape by compression by the inner peripheral surface of the fuel supply cap 54. The outer peripheral surface of the small diameter portion of the inlet cylinder 26 and the inner peripheral surface of the fuel supply cap 54 are in close contact with each other with a predetermined pressure, and the axial direction between the rear end surface 32b of the coating layer 32 and the front end surface 47a of the mounting flange 47 of the fuel filter 43 Therefore, a good sealing function can be exhibited between the fuel inlet tube 26 and the fuel supply cap 54.

而して,コイル30を消磁した状態では,弁ばね22の付勢力で弁組立体Vは前方に押圧され,弁体18を弁座8に着座させている。コイル30を通電により励磁すると,それにより生ずる磁束がコイルハウジング31,磁性円筒体4,可動コア12,固定コア5を順次走り,両コア5,12間に発生する磁力による吸引力により可動コア12が弁ばね22のセット荷重に抗して固定コア5に吸引され,弁体18が弁座8から離座するので,弁孔7が開放され,弁座部材3内の高圧燃料が弁孔7を出て,インジェクタプレート10の燃料噴孔11からスロットルボディTの吸気道に噴射される。   Thus, when the coil 30 is demagnetized, the valve assembly V is pressed forward by the urging force of the valve spring 22, and the valve body 18 is seated on the valve seat 8. When the coil 30 is energized by energization, the magnetic flux generated by the coil 30 sequentially travels through the coil housing 31, the magnetic cylindrical body 4, the movable core 12, and the fixed core 5. Is attracted to the fixed core 5 against the set load of the valve spring 22 and the valve body 18 is separated from the valve seat 8, so that the valve hole 7 is opened, and the high-pressure fuel in the valve seat member 3 is removed from the valve hole 7. And is injected from the fuel injection hole 11 of the injector plate 10 into the intake passage of the throttle body T.

ところで,燃料入口筒26を,固定コア5に連結する大径部26aと,この大径部26aに後向きの環状肩部26cを介して連なる小径部26bとで構成すると共に,コイル組立体28を埋封する被覆層32の後端部32aを,これが環状肩部26cから小径部26bにかけて密着するように形成したので,被覆層32の成形時,環状肩部26cは被覆層32の後端部32aに対してアンカ効果を発揮し,被覆層32の引けを効果的に抑制する。その結果,被覆層32の後端面32bの位置変化がなくなり,その後端面32bと燃料フィルタ43の取り付けフランジ47の前端面47aとで決定されるシール溝50の溝幅の狂いを殆ど無くすることができ,これによりシール溝50におけるOリング51の圧縮変形量の安定化,延いてはOリング51の良好なシール機能を確保することができる。しかも被覆層32の後端部32aは,その外周の環状リブ36により補強されるので,前記環状肩部26cのアンカ効果を一層高めることができると共に,その環状リブ36によりシール溝50の深さを充分に確保することができる。   By the way, the fuel inlet cylinder 26 is constituted by a large diameter portion 26a connected to the fixed core 5 and a small diameter portion 26b connected to the large diameter portion 26a via a rearward annular shoulder portion 26c, and a coil assembly 28 is formed. Since the rear end portion 32a of the covering layer 32 to be embedded is formed so as to be in close contact from the annular shoulder portion 26c to the small diameter portion 26b, the annular shoulder portion 26c becomes the rear end portion of the covering layer 32 when the covering layer 32 is formed. An anchor effect is demonstrated with respect to 32a, and the shrinkage | contraction of the coating layer 32 is suppressed effectively. As a result, the position change of the rear end surface 32b of the coating layer 32 is eliminated, and the deviation of the groove width of the seal groove 50 determined by the rear end surface 32b and the front end surface 47a of the mounting flange 47 of the fuel filter 43 can be almost eliminated. Accordingly, the amount of compressive deformation of the O-ring 51 in the seal groove 50 can be stabilized, and hence a good sealing function of the O-ring 51 can be ensured. In addition, since the rear end portion 32a of the covering layer 32 is reinforced by the annular rib 36 on the outer periphery thereof, the anchor effect of the annular shoulder portion 26c can be further enhanced, and the depth of the seal groove 50 can be increased by the annular rib 36. Can be secured sufficiently.

また上記環状肩部26cは,その前後の大径部26a及び小径部26bの外周面と協働してラビリンス効果を発揮し,燃料入口筒26及び被覆層32間への雨水等の浸入を効果的に防ぐことができる。   The annular shoulder 26c exhibits a labyrinth effect in cooperation with the outer peripheral surfaces of the large-diameter portion 26a and the small-diameter portion 26b before and after the annular shoulder portion 26c, and effectively infiltrates rainwater and the like between the fuel inlet cylinder 26 and the coating layer 32. Can be prevented.

また燃料入口筒26の小径部26bの後端に,その外周側に突出する小フランジ40を形成すると共に,この小フランジ40の前端面40aに弾性的に係合する環状の係止突起49を前記取り付けフランジ47に形成したので,取り付けフランジ47の燃料入口筒26への係止力を高めることができる。   Further, a small flange 40 protruding outward is formed at the rear end of the small diameter portion 26b of the fuel inlet cylinder 26, and an annular locking protrusion 49 that elastically engages the front end surface 40a of the small flange 40 is formed. Since the mounting flange 47 is formed, the locking force of the mounting flange 47 to the fuel inlet tube 26 can be increased.

特に,小フランジ40の外周面及び前端面40a間の角をエッジ状に形成すべく,その前端面40aを前記燃料入口筒26の軸線Yに対して直角に形成したので,燃料フィルタ43に引き抜き荷重が作用したときには,小フランジ40の外周面及び前端面40a間にできたエッジ状の角が取り付けフランジの係止突起49に食い込むことになり,取り付けフランジ47の燃料入口筒26への係止力を効果的に高め,燃料フィルタ43の離脱を防ぐことができる。   In particular, since the front end face 40a is formed at right angles to the axis Y of the fuel inlet cylinder 26 in order to form an edge between the outer peripheral surface of the small flange 40 and the front end face 40a, the fuel filter 43 is pulled out. When a load is applied, an edge-shaped corner formed between the outer peripheral surface of the small flange 40 and the front end surface 40a bites into the locking projection 49 of the mounting flange, and the locking of the mounting flange 47 to the fuel inlet tube 26 is performed. It is possible to effectively increase the force and prevent the fuel filter 43 from being detached.

しかも,小径部26bの外周には,小フランジ40の前端面に連続する内側面を有する環状溝を形成したので,小フランジ40の前端面40aを切削加工する際,同一の切削工具B(図3参照)により前記前端面40a及び環状溝41を同時に切削することにより,小フランジ40の張り出し量Hが小さくとも,また切削工具Bの刃先に多少の丸みがあっても,小フランジ40の前端面を燃料入口筒26の軸線Yに対して確実に直角に形成することができ,その結果,小フランジ40の外周面及び前端面40a間にエッジ状の角を容易に形成することができ,小フランジ40及び係止突起49の係止力を一層高めることができる。また小フランジ40の張り出し量Hを小さくすることに伴ない,係止突起49の突出量を小さくすることで,フィルタ本体44及び取り付けフランジ47の合成樹脂による成形を容易に行うことができる。因みに,小フランジ40の実際の張り出し量Hは,0.2〜0.5mmである。   In addition, since an annular groove having an inner surface continuous with the front end surface of the small flange 40 is formed on the outer periphery of the small diameter portion 26b, when the front end surface 40a of the small flange 40 is cut, the same cutting tool B (see FIG. 3), the front end face 40a and the annular groove 41 are simultaneously cut, so that the front end of the small flange 40 can be obtained even if the protruding amount H of the small flange 40 is small or the cutting edge of the cutting tool B is slightly rounded. The surface can be surely formed at right angles to the axis Y of the fuel inlet cylinder 26. As a result, an edge-shaped corner can be easily formed between the outer peripheral surface of the small flange 40 and the front end surface 40a. The locking force of the small flange 40 and the locking projection 49 can be further increased. In addition, the filter body 44 and the mounting flange 47 can be easily molded with synthetic resin by reducing the protrusion amount of the locking projection 49 in accordance with the reduction amount H of the small flange 40. Incidentally, the actual overhang amount H of the small flange 40 is 0.2 to 0.5 mm.

さらにまた燃料フィルタ43の合成樹脂製で円筒状のフィルタ本体44を燃料入口筒26の内周面に圧入したので,燃料フィルタ43を燃料入口筒26に強固に連結することができ,燃料フィルタ43の離脱を一層確実に防ぐことができる。   Further, since the cylindrical filter main body 44 made of synthetic resin of the fuel filter 43 is press-fitted into the inner peripheral surface of the fuel inlet cylinder 26, the fuel filter 43 can be firmly connected to the fuel inlet cylinder 26, and the fuel filter 43 Can be prevented more reliably.

以上,本発明の実施例について説明したが,本発明はそれに限定されることなく,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。   As mentioned above, although the Example of this invention was described, this invention is not limited to it, A various design change is possible in the range which does not deviate from the summary.

I・・・・・電磁式燃料噴射弁
Y・・・・・燃料入口筒の軸線 2・・・・・弁ハウジング
3・・・・・弁座部材
5・・・・・固定コア
14・・・・弁体
26・・・・燃料入口筒
26a・・・燃料入口筒の大径部
26b・・・燃料入口筒の小径部
26c・・・後向きの肩部
30・・・・コイル
32・・・・被覆層
32a・・・被覆層の後端部
32b・・・被覆層の後端面
40・・・・小フランジ
40a・・・小フランジの前端面
41・・・・環状溝
43・・・・燃料フィルタ
44・・・・フィルタ本体
45・・・・窓孔
46・・・・濾網
47・・・・取り付けフランジ
47a・・・取り付けフランジの前端面
48・・・・嵌合凹部
49・・・・係止突起
50・・・・シール溝
51・・・・Oリング
54・・・・燃料供給キャップ
I ... Electromagnetic fuel injection valve Y ... Fuel inlet cylinder axis 2 ... Valve housing 3 ... Valve seat member 5 ... Fixed core 14 ... ··· Valve body 26 ··· Fuel inlet tube 26a · · · Large diameter portion 26b of the fuel inlet tube · · · Small diameter portion 26c of the fuel inlet tube · · · Shoulder 30 facing backward · · · Coil 32 ··· ··· Coating layer 32a ··· Rear end portion 32b of coating layer ··· Rear end surface 40 of coating layer ··· Small flange 40a · · · Front end surface 41 of small flange ··· Annular groove 43 ··· · Fuel filter 44 ··· Filter body 45 ··· Window hole 46 ··· Filter net 47 ··· Mounting flange 47a · Mounting flange front end surface 48 · · · Fitting recess 49 · ... Locking protrusion 50 ... Seal groove 51 ... O-ring 54 ... Fuel supply cap

Claims (4)

前部に弁座部材(3),後部に燃料入口筒(26),中間部に固定コア(5)を有していて内部を燃料で満たされる金属製の弁ハウジング(2)と,前記固定コア(5)の外周に配設されてその固定コア(5)を励起するコイル(30)と,前記固定コア(5)の励起時,開弁作動して前記弁座部材(3)からの燃料噴射を許容する弁体(14)と,前記コイル(30)を埋封するよう弁ハウジング(2)の外周に形成される合成樹脂製の被覆層(32)と,燃料入口筒(26)の入口に装着される燃料フィルタ(43)とを備え,その燃料フィルタ(43)には,燃料入口筒(26)の後端部を嵌合させる環状の嵌合凹部(48)を有する合成樹脂製の取り付けフランジ(47)を設け,この取り付けフランジ(47)の前端面(47a)と,それに対向する前記被覆層(32)の後端面(32b)とで燃料入口筒(26)の外周にシール溝(50)を画成し,このシール溝(50)には,燃料入口筒(26)の外周に嵌装される燃料供給キャップ(54)の内周面に密接するOリング(51)を装着した電磁式燃料噴射弁において,
前記燃料入口筒(26)を,固定コア(5)に連結する大径部(26a)と,この大径部(26a)に後向きの環状肩部(26c)を介して連なる小径部(26b)とで構成すると共に,前記被覆層(32)の後端部(32a)を,これが前記環状肩部(26c)から小径部(26b)にかけて密着するように形成し,
前記小径部(26b)の後端に,その外周側に突出する小フランジ(40)を形成すると共に,この小フランジ(40)の前端面(40a)に弾性的に係合する環状の係止突起(49)を前記取り付けフランジ(47)に形成し,
前記後端部(32a)及び取り付けフランジ(47)間に露出した前記小径部(26b)の外周面を前記シール溝(50)の溝底としたことを特徴とする電磁式燃料噴射弁。
A metal valve housing (2) having a valve seat member (3) at the front, a fuel inlet tube (26) at the rear, and a fixed core (5) at the middle and filled with fuel, and the fixed A coil (30) disposed on the outer periphery of the core (5) to excite the fixed core (5), and when the fixed core (5) is excited, the valve is opened to release the valve seat member (3) A valve body (14) that allows fuel injection, a synthetic resin coating layer (32) formed on the outer periphery of the valve housing (2) so as to embed the coil (30), and a fuel inlet cylinder (26) And a fuel filter (43) attached to the inlet of the fuel, and the fuel filter (43) has an annular fitting recess (48) into which the rear end portion of the fuel inlet tube (26) is fitted. A mounting flange (47) is provided, and the front end face (47a) of the mounting flange (47) A seal groove (50) is defined on the outer periphery of the fuel inlet cylinder (26) by the rear end face (32b) of the coating layer (32) facing the fuel inlet cylinder (26). 26) In an electromagnetic fuel injection valve equipped with an O-ring (51) in close contact with the inner peripheral surface of a fuel supply cap (54) fitted on the outer periphery of
A large-diameter portion (26a) for connecting the fuel inlet cylinder (26) to the fixed core (5), and a small-diameter portion (26b) connected to the large-diameter portion (26a) via a rear-facing annular shoulder portion (26c). And the rear end portion (32a) of the covering layer (32) is formed so as to be in close contact from the annular shoulder portion (26c) to the small diameter portion (26b),
At the rear end of the small-diameter portion (26b), a small flange (40) protruding outward is formed, and an annular lock that elastically engages the front end surface (40a) of the small flange (40). A protrusion (49) is formed on the mounting flange (47);
An electromagnetic fuel injection valve characterized in that an outer peripheral surface of the small diameter portion (26b) exposed between the rear end portion (32a) and the mounting flange (47) is a groove bottom of the seal groove (50).
請求項1記載の電磁式燃料噴射弁において,
前記小フランジ(40)の外周面及び前端面(40a)間の角をエッジ状に形成すべく,その前端面(40a)を前記燃料入口筒(26)の軸線(Y)に対して直角に形成し,その前端面(40a)に連続する内側面を有する環状溝(41)を前記小径部(26b)の外周に形成したことを特徴とする電磁式燃料噴射弁。
The electromagnetic fuel injection valve according to claim 1,
In order to form an edge between the outer peripheral surface and the front end surface (40a) of the small flange (40), the front end surface (40a) is perpendicular to the axis (Y) of the fuel inlet tube (26). An electromagnetic fuel injection valve characterized in that an annular groove (41) formed and having an inner side continuous with the front end face (40a) is formed on the outer periphery of the small diameter part (26b).
請求項1記載の電磁式燃料噴射弁において,
前記燃料フィルタ(43)を,合成樹脂製の円筒状のフィルタ本体(43)と,このフィルタ本体(43)に開口する窓孔(45)に張設される濾網(46)と,フィルタ本体(43)の後端に一体に連設される前記取り付けフランジ(47)とで構成し,前記フィルタ本体(43)を前記燃料入口筒(26)の内周面に圧入したことを特徴とする電磁式燃料噴射弁。
The electromagnetic fuel injection valve according to claim 1,
The fuel filter (43) includes a cylindrical filter body (43) made of synthetic resin, a filter net (46) stretched in a window hole (45) opened in the filter body (43), and a filter body. (43) The mounting flange (47) is integrally connected to the rear end of the fuel inlet cylinder (43), and the filter body (43) is press-fitted into the inner peripheral surface of the fuel inlet cylinder (26). Electromagnetic fuel injection valve.
請求項1記載の電磁式燃料噴射弁において,
前記固定コア(5)及び燃料入口筒(26)を同一素材により一体に形成したことを特徴とする電磁式燃料噴射弁。
The electromagnetic fuel injection valve according to claim 1,
The electromagnetic fuel injection valve, wherein the fixed core (5) and the fuel inlet tube (26) are integrally formed of the same material.
JP2009134355A 2009-06-03 2009-06-03 Electromagnetic fuel injection valve Expired - Fee Related JP5254131B2 (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2014092060A (en) * 2012-11-02 2014-05-19 Keihin Corp Electromagnetic fuel injection valve

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06323221A (en) * 1993-05-13 1994-11-22 Nippon Injector Kk Fuel injection valve
JPH0771346A (en) * 1993-07-31 1995-03-14 Robert Bosch Gmbh Fuel injection valve
JPH08510305A (en) * 1993-05-03 1996-10-29 シーメンス オートモーティヴ コーポレイション Filter cartridge mounting mechanism for top feed type fuel injectors
JP2000505863A (en) * 1996-12-24 2000-05-16 ローベルト ボツシユ ゲゼルシヤフト ミツト ベシユレンクテル ハフツング Solenoid operated valve

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH08510305A (en) * 1993-05-03 1996-10-29 シーメンス オートモーティヴ コーポレイション Filter cartridge mounting mechanism for top feed type fuel injectors
JPH06323221A (en) * 1993-05-13 1994-11-22 Nippon Injector Kk Fuel injection valve
JPH0771346A (en) * 1993-07-31 1995-03-14 Robert Bosch Gmbh Fuel injection valve
JP2000505863A (en) * 1996-12-24 2000-05-16 ローベルト ボツシユ ゲゼルシヤフト ミツト ベシユレンクテル ハフツング Solenoid operated valve

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2014092060A (en) * 2012-11-02 2014-05-19 Keihin Corp Electromagnetic fuel injection valve

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