JP2017227164A - Ignitor of internal combustion engine - Google Patents

Ignitor of internal combustion engine Download PDF

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Publication number
JP2017227164A
JP2017227164A JP2016123345A JP2016123345A JP2017227164A JP 2017227164 A JP2017227164 A JP 2017227164A JP 2016123345 A JP2016123345 A JP 2016123345A JP 2016123345 A JP2016123345 A JP 2016123345A JP 2017227164 A JP2017227164 A JP 2017227164A
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Prior art keywords
piston
center electrode
cylinder
internal combustion
combustion engine
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Japanese (ja)
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素久 徳永
Motohisa Tokunaga
素久 徳永
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Isuzu Motors Ltd
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Isuzu Motors Ltd
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Priority to JP2016123345A priority Critical patent/JP2017227164A/en
Priority to PCT/JP2017/021105 priority patent/WO2017221705A1/en
Priority to CN201780037773.9A priority patent/CN109312709A/en
Publication of JP2017227164A publication Critical patent/JP2017227164A/en
Priority to PH12018502663A priority patent/PH12018502663A1/en
Pending legal-status Critical Current

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02FCYLINDERS, PISTONS OR CASINGS, FOR COMBUSTION ENGINES; ARRANGEMENTS OF SEALINGS IN COMBUSTION ENGINES
    • F02F3/00Pistons 
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02FCYLINDERS, PISTONS OR CASINGS, FOR COMBUSTION ENGINES; ARRANGEMENTS OF SEALINGS IN COMBUSTION ENGINES
    • F02F3/00Pistons 
    • F02F3/28Other pistons with specially-shaped head
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02PIGNITION, OTHER THAN COMPRESSION IGNITION, FOR INTERNAL-COMBUSTION ENGINES; TESTING OF IGNITION TIMING IN COMPRESSION-IGNITION ENGINES
    • F02P15/00Electric spark ignition having characteristics not provided for in, or of interest apart from, groups F02P1/00 - F02P13/00 and combined with layout of ignition circuits
    • F02P15/04Electric spark ignition having characteristics not provided for in, or of interest apart from, groups F02P1/00 - F02P13/00 and combined with layout of ignition circuits one of the spark electrodes being mounted on the engine working piston
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01TSPARK GAPS; OVERVOLTAGE ARRESTERS USING SPARK GAPS; SPARKING PLUGS; CORONA DEVICES; GENERATING IONS TO BE INTRODUCED INTO NON-ENCLOSED GASES
    • H01T13/00Sparking plugs
    • H01T13/20Sparking plugs characterised by features of the electrodes or insulation
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01TSPARK GAPS; OVERVOLTAGE ARRESTERS USING SPARK GAPS; SPARKING PLUGS; CORONA DEVICES; GENERATING IONS TO BE INTRODUCED INTO NON-ENCLOSED GASES
    • H01T13/00Sparking plugs
    • H01T13/54Sparking plugs having electrodes arranged in a partly-enclosed ignition chamber

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Spark Plugs (AREA)
  • Ignition Installations For Internal Combustion Engines (AREA)

Abstract

PROBLEM TO BE SOLVED: To effectively improve ignitability by suppressing the wear of a center electrode caused by a concentration of high power.SOLUTION: An ignitor of an internal combustion engine in which a piston 13 is reciprocally accommodated in a cylinder 12 of a cylinder block 11, and a cylinder head 14 is arranged at an upper part of the cylinder block 11 comprises: a housing 21 attached to the cylinder head 14; an insulation insulator 22 which is accommodated and held in the housing 21; a columnar center electrode 24 which is accommodated in the insulation insulator 22 at its upper end side, exposed from the insulation insulator 22 at its lower end side, and protruded into the cylinder 12; and a recessed hole 25 which is recessively formed in a piston axial direction from an apex face of the piston 13, receives at least a part of the center electrode 24 at a top dead point of the piston 13 with a prescribed air gap, and generates spark discharge between its internal face and an external face of the center electrode 24 when a voltage is applied to the center electrode 24.SELECTED DRAWING: Figure 2

Description

本発明は、内燃機関の点火装置に関し、特に、点火プラグを備えた内燃機関の点火装置に関する。   The present invention relates to an ignition device for an internal combustion engine, and more particularly to an ignition device for an internal combustion engine provided with an ignition plug.

一般的に、この種の点火プラグは、シリンダヘッドに取り付けられるハウジングと、ハウジングに収容保持された絶縁碍子と、絶縁碍子から突出する中心電極と、略L字状に屈曲形成されて中心電極の先端部と対向する接地電極とを備えている。   In general, this type of spark plug includes a housing attached to a cylinder head, an insulator accommodated and held in the housing, a center electrode protruding from the insulator, a bent shape formed in a substantially L shape, and a center electrode. A ground electrode facing the tip is provided.

このような点火プラグにおいては、中心電極に電圧を印加して、中心電極と接地電極との空隙(以下、ギャップともいう)に火花放電を発生させることで、混合気に着火させている(例えば、特許文献1,2参照)。   In such a spark plug, a gas mixture is ignited by applying a voltage to the center electrode and generating a spark discharge in a gap (hereinafter also referred to as a gap) between the center electrode and the ground electrode (for example, Patent Documents 1 and 2).

特開2016−062865号公報JP 2006-062865 A 特開2014−175094号公報JP 2014-175094 A

ところで、上記点火プラグにおいて、混合気の着火性を向上させるには、ギャップに大きな火炎核の形成を促すために火花放電のアークエネルギを高める必要がある。また、排気エミッション性能の向上を図るべくEGR率を上昇させる際には、エンジンの失火を効果的に防止するために、中心電極に印加する電圧値を高める必要がある。   By the way, in the spark plug, in order to improve the ignitability of the air-fuel mixture, it is necessary to increase the arc energy of the spark discharge in order to promote the formation of a large flame nucleus in the gap. Further, when increasing the EGR rate in order to improve exhaust emission performance, it is necessary to increase the voltage value applied to the center electrode in order to effectively prevent engine misfire.

しかしながら、火花放電を発生させる中心電極の先端部は微小形状のため、このような先端部に高電力が集中すると、摩耗の進展によってギャップが拡張され、失火を生じやすくする課題がある。   However, since the tip of the center electrode that generates spark discharge is minute, if high power concentrates on such a tip, the gap expands due to the progress of wear, and there is a problem that misfire is likely to occur.

本開示の技術は、高電力の集中による中心電極の摩耗を抑制して、着火性を効果的に向上させることを目的とする。   An object of the technology of the present disclosure is to effectively improve ignitability by suppressing wear of the center electrode due to concentration of high power.

本開示の技術は、シリンダブロックのシリンダ内にピストンが往復移動可能に収容されると共に、前記シリンダブロックの上部にシリンダヘッドが配置された内燃機関の点火装置であって、前記シリンダヘッドに取り付けられるハウジングと、少なくともその一部を前記ハウジング内に収容保持された絶縁碍子と、その上端側を前記絶縁碍子に収容されると共に、その下端側を前記絶縁碍子から露出させて前記シリンダ内に突出させた柱状の中心電極と、前記ピストンの頂面からピストン軸方向に凹設されると共に、前記ピストンの上死点にて前記中心電極の少なくとも一部を所定の空隙を隔てて受容し、前記中心電極に電圧が印加されると、その内面と前記中心電極の外面との間に火花放電を生じさせる凹穴と、を備えることを特徴とする。   The technology of the present disclosure is an ignition device for an internal combustion engine in which a piston is housed in a cylinder of a cylinder block so as to be reciprocally movable and a cylinder head is disposed on an upper portion of the cylinder block, and is attached to the cylinder head. A housing, an insulator in which at least a part thereof is accommodated and held in the housing, and an upper end side thereof is accommodated in the insulator, and a lower end side thereof is exposed from the insulator and protrudes into the cylinder. A columnar center electrode, and recessed from the top surface of the piston in the axial direction of the piston, and receiving at least a part of the center electrode with a predetermined gap at the top dead center of the piston, A concave hole for generating a spark discharge between the inner surface of the electrode and the outer surface of the central electrode when a voltage is applied to the electrode.

また、前記凹穴は、前記ピストンの頂面からピストン軸方向に窪む筒穴部を含み、当該筒穴部は、前記ピストンが上死点よりも進角側の所定のクランク角度位置にある時に、前記中心電極の少なくとも一部を受容し、前記中心電極に電圧が印加されると、その内面と前記中心電極の外面との間に火花放電を生じさせることが好ましい。   The concave hole includes a cylindrical hole portion that is recessed from the top surface of the piston in the axial direction of the piston, and the cylindrical hole portion is located at a predetermined crank angle position on the advance side of the piston from the top dead center. Sometimes it is preferable to receive at least a portion of the center electrode and generate a spark discharge between the inner surface of the center electrode and the outer surface of the center electrode when a voltage is applied to the center electrode.

また、前記凹穴は、前記筒穴部の下端から半球状に窪む球状穴部をさらに含み、前記ピストンが上死点に達すると、前記中心電極の下端が前記筒穴部と前記球状穴部の境界に位置され、前記中心電極に電圧が印加されると、前記筒穴部又は前記球状穴部の少なくとも一方の内面と前記中心電極の外面との間に火花放電を生じさせることが好ましい。   The concave hole further includes a spherical hole portion that is recessed in a hemispherical shape from the lower end of the cylindrical hole portion, and when the piston reaches top dead center, the lower end of the center electrode is connected to the cylindrical hole portion and the spherical hole. When a voltage is applied to the center electrode, the spark discharge is preferably generated between at least one inner surface of the cylindrical hole portion or the spherical hole portion and the outer surface of the center electrode. .

また、前記シリンダに臨む前記シリンダヘッドの下面が平坦状に形成されると共に、前記ピストンの頂面の前記凹穴を除く他の部分に凹部が形成されてもよい。   In addition, the lower surface of the cylinder head facing the cylinder may be formed flat, and a recess may be formed in the other portion of the top surface of the piston except the recessed hole.

また、前記凹部が前記ピストンの頂面の周縁に環状に凹設されてもよい。   Moreover, the said recessed part may be recessedly provided in the annular | circular shape in the periphery of the top surface of the said piston.

本開示の技術によれば、高電力の集中による中心電極の摩耗を抑制して、着火性を効果的に向上させることができる。   According to the technology of the present disclosure, it is possible to effectively improve the ignitability by suppressing wear of the center electrode due to concentration of high power.

本発明の一実施形態に係る内燃機関の点火装置を示す模式的な部分断面図である。It is a typical fragmentary sectional view showing the ignition device of the internal-combustion engine concerning one embodiment of the present invention. 本発明の一実施形態に係る内燃機関の点火装置の要部を説明する模式的な部分断面図であるIt is a typical fragmentary sectional view explaining the principal part of the ignition device of the internal combustion engine which concerns on one Embodiment of this invention. 本発明の一実施形態に係る内燃機関の点火装置において、進角側の所定のクランク角度位置にて燃焼室内の混合気に着火する状態を説明する模式図である。In the ignition device for an internal combustion engine according to an embodiment of the present invention, it is a schematic diagram illustrating a state in which the air-fuel mixture in the combustion chamber is ignited at a predetermined crank angle position on the advance side. 本発明の一実施形態に係る内燃機関の点火装置において、ピストンの圧縮上死点近傍にて燃焼室内の混合気に着火する状態を説明する模式図である。In the ignition device for an internal combustion engine according to one embodiment of the present invention, it is a schematic diagram illustrating a state in which an air-fuel mixture in a combustion chamber is ignited near the compression top dead center of a piston. 他の実施形態に係る内燃機関の点火装置を示す模式的な部分断面図である。It is a typical fragmentary sectional view which shows the ignition device of the internal combustion engine which concerns on other embodiment. 他の実施形態に係る内燃機関の点火装置を示す模式的な部分断面図である。It is a typical fragmentary sectional view which shows the ignition device of the internal combustion engine which concerns on other embodiment.

以下、添付図面に基づいて、本発明の一実施形態に係る内燃機関の点火装置について説明する。同一の部品には同一の符号を付してあり、それらの名称および機能も同じである。したがって、それらについての詳細な説明は繰返さない。   Hereinafter, an ignition device for an internal combustion engine according to an embodiment of the present invention will be described with reference to the accompanying drawings. The same parts are denoted by the same reference numerals, and their names and functions are also the same. Therefore, detailed description thereof will not be repeated.

図1に示すように、エンジン10のシリンダブロック11には、シリンダ12内にピストン13が往復移動可能に収容されている。また、シリンダブロック11の上部には、シリンダヘッド14が図示しないヘッドボルトによって固定されている。   As shown in FIG. 1, in a cylinder block 11 of the engine 10, a piston 13 is accommodated in a cylinder 12 so as to be reciprocally movable. A cylinder head 14 is fixed to the upper part of the cylinder block 11 with a head bolt (not shown).

シリンダヘッド14には、吸気ポート15及び排気ポート16が設けられている。また、シリンダブロック14には、吸気ポート15内に燃料(ガソリン又は、LPG、LNG、CNG等の天然ガス)を噴射するインジェクタ30が設けられている。また、シリンダヘッド14には、開閉動作により吸気ポート15から混合気を燃焼室17内に導入する吸気バルブ18及び、開閉動作により燃焼室17内から排気ガスを排気ポート16内に導出する排気バルブ19が設けられている。また、燃焼室17の上壁を形成するシリンダヘッド14の下面は略平坦状とされ、その中心部には点火プラグ20を取り付けるための雌ネジ孔14Aが穿設されている。   The cylinder head 14 is provided with an intake port 15 and an exhaust port 16. The cylinder block 14 is provided with an injector 30 for injecting fuel (gasoline or natural gas such as LPG, LNG, CNG) into the intake port 15. The cylinder head 14 includes an intake valve 18 that introduces an air-fuel mixture from the intake port 15 into the combustion chamber 17 by an opening / closing operation, and an exhaust valve that extracts exhaust gas from the combustion chamber 17 into the exhaust port 16 by an opening / closing operation. 19 is provided. The lower surface of the cylinder head 14 that forms the upper wall of the combustion chamber 17 is substantially flat, and a female screw hole 14A for attaching the spark plug 20 is formed in the center thereof.

次に、図2に基づいて、点火プラグ20の詳細構成について説明する。本実施形態の点火プラグ20は、少なくとも、ハウジング21と、絶縁碍子22と、接続端子23と、中心電極24とを備えている。   Next, a detailed configuration of the spark plug 20 will be described with reference to FIG. The spark plug 20 of the present embodiment includes at least a housing 21, an insulator 22, a connection terminal 23, and a center electrode 24.

ハウジング21は、略円筒状に形成されており、その上端側にはシリンダヘッド14の雌ネジ孔14Aよりも大径の六角部21Aが設けられている。また、ハウジング21の下端側には、雌ネジ孔14Aと螺合される雄ネジ部21Bが設けられている。さらに、ハウジング21の六角部21Aと雄ネジ部21Bとの間には、シリンダヘッド14とハウジング21との隙間をシールする図示しないガスケットが設けられている。   The housing 21 is formed in a substantially cylindrical shape, and a hexagonal portion 21 </ b> A having a larger diameter than the female screw hole 14 </ b> A of the cylinder head 14 is provided on the upper end side thereof. Further, a male screw portion 21B that is screwed into the female screw hole 14A is provided on the lower end side of the housing 21. Further, a gasket (not shown) that seals the gap between the cylinder head 14 and the housing 21 is provided between the hexagonal portion 21 </ b> A and the male screw portion 21 </ b> B of the housing 21.

絶縁碍子22は、略円筒状に形成されており、その上端部22B及び下端部22Aをハウジング21から露出させた状態で、これら上端部22B及び下端部22Aを除く他の部分をハウジング21の筒内に収容保持されている。絶縁碍子22の下端部22Aは、燃焼室17内に突出している。また、絶縁碍子22の上端部22Bには、接続端子23が保持されている。   The insulator 22 is formed in a substantially cylindrical shape. With the upper end portion 22B and the lower end portion 22A exposed from the housing 21, the other portions excluding the upper end portion 22B and the lower end portion 22A are the cylinders of the housing 21. It is housed and held inside. A lower end 22 </ b> A of the insulator 22 protrudes into the combustion chamber 17. A connection terminal 23 is held at the upper end 22B of the insulator 22.

接続端子23は、その下端側を絶縁碍子22の筒内に収容されると共に、その上端側を絶縁碍子22から突出させている。接続端子23の上端側には、図示しないケーブルを介して外部電源が接続されている。また、接続端子23の下端側は、中心電極24の上端側に図示しない中軸等を介して電気的に接続されている。   The connection terminal 23 is housed in the cylinder of the insulator 22 at the lower end side and protrudes from the insulator 22 at the upper end side. An external power source is connected to the upper end side of the connection terminal 23 via a cable (not shown). Further, the lower end side of the connection terminal 23 is electrically connected to the upper end side of the center electrode 24 via a middle shaft (not shown).

中心電極24は、一般的な点火プラグの電極よりも大径の略円柱状に形成されており、その下端部24Aを除く他の部分を絶縁碍子22の筒内に収容保持されている。すなわち、中心電極24の下端部24Aは、絶縁碍子22の下端部22Aから、燃焼室17内のピストン13頂面の略中心部に向かってシリンダ12の軸方向に突出して設けられている。   The center electrode 24 is formed in a substantially cylindrical shape having a diameter larger than that of a general spark plug electrode, and other portions except for the lower end portion 24 </ b> A are accommodated and held in the cylinder of the insulator 22. That is, the lower end portion 24 </ b> A of the center electrode 24 is provided so as to protrude in the axial direction of the cylinder 12 from the lower end portion 22 </ b> A of the insulator 22 toward the substantially central portion of the top surface of the piston 13 in the combustion chamber 17.

本実施形態において、ピストン13には、その頂面の周縁を外側面に向って斜めに切り欠いて形成した環状凹部26が設けられている。さらに、ピストン13の略中心部には、燃焼室17内に突出する中心電極24の下端部24Aを受容可能な接地電極凹穴25が凹設されている。   In the present embodiment, the piston 13 is provided with an annular recess 26 formed by obliquely notching the peripheral edge of the top surface toward the outer surface. Further, a ground electrode concave hole 25 that can receive the lower end portion 24 </ b> A of the center electrode 24 protruding into the combustion chamber 17 is formed in a substantially central portion of the piston 13.

より詳しくは、接地電極凹穴25は、ピストン13頂面の略中心部からピストン軸方向に円筒状に所定の深さで窪む筒穴部25Aと、筒穴部25Aの下端から半球状に窪む球状穴部25Bとを備えている。   More specifically, the ground electrode concave hole 25 has a cylindrical hole portion 25A that is recessed in a cylindrical shape at a predetermined depth from the substantially central portion of the top surface of the piston 13 and a hemispherical shape from the lower end of the cylindrical hole portion 25A. And a hollow spherical hole 25B.

筒穴部25Aの穴径(直径)Dは、ピストン13が上死点に位置する際に、その内部に絶縁碍子22の下端部22A及び中心電極24の下端部24Aを受容しつつ、その内周面と中心電極24の下端部24A外周面との間に微小な空隙Gが確保されるように、当該下端部24Aの外径よりも僅かに大きく形成されている。空隙Gは、好ましくは、一般的な点火プラグのギャップ(中心電極と接地電極との空隙)と略同等の値で設定されている。球状穴部25Bの半径Rは、好ましくは、筒穴部25Aの穴径Dの半分(1/2)の値で設定されている。   When the piston 13 is located at the top dead center, the hole diameter (diameter) D of the cylindrical hole portion 25A is such that the lower end portion 22A of the insulator 22 and the lower end portion 24A of the center electrode 24 are received therein, It is formed slightly larger than the outer diameter of the lower end portion 24A so that a minute gap G is secured between the peripheral surface and the outer peripheral surface of the lower end portion 24A of the center electrode 24. The gap G is preferably set to a value approximately equal to a gap of a general spark plug (gap between the center electrode and the ground electrode). The radius R of the spherical hole portion 25B is preferably set to a value that is half (1/2) the hole diameter D of the cylindrical hole portion 25A.

筒穴部25Aの深さLは、ピストン13が上死点に達する前の進角側の所定のクランク角度位置(例えば、約25〜30度)にある時に、中心電極24の下端部24Aが筒穴部25Aの上端側に受容され(図3参照)、さらに、ピストン13が上死点に達した時に、中心電極24の下端部24A先端が筒穴部25Aと球状穴部25Bとの境界に位置される長さで設定されている(図4参照)。すなわち、ピストン13の上死点前後の所定のクランク角度範囲に亘って、中心電極24の下端部24Aが接地電極凹穴25内に確実に受容されるようになっている。   The depth L of the cylindrical hole portion 25A is such that the lower end portion 24A of the center electrode 24 is at a predetermined crank angle position (for example, about 25 to 30 degrees) on the advance side before the piston 13 reaches the top dead center. When the piston 13 reaches the top dead center, the tip of the lower end 24A of the center electrode 24 is the boundary between the cylindrical hole 25A and the spherical hole 25B when received at the upper end of the cylindrical hole 25A (see FIG. 3). (See FIG. 4). That is, the lower end 24A of the center electrode 24 is reliably received in the ground electrode recess 25 over a predetermined crank angle range before and after the top dead center of the piston 13.

次に、図3,4に基づいて、本実施形態に係る内燃機関の点火装置による作用効果を説明する。   Next, based on FIG.3, 4, the effect by the ignition device of the internal combustion engine which concerns on this embodiment is demonstrated.

図3は、エンジン10の高負荷運転時等、着火タイミングを早める場合に、進角側の所定のクランク角度位置(例えば、約25〜30度)で燃焼室17内の混合気に着火する状態を説明する図である。ピストン13が上死点よりも進角側の所定のクランク角度位置(例えば、約25〜30度)に達すると、中心電極24の下端部24Aは、接地電極凹穴25の筒穴部25A内の上端側に受容された状態になる。この状態で図示しない外部電源から接続端子23を介して中心電極24に高電圧を印加すると、中心電極24の外周面と筒穴部25Aの内周面との間に複数の火花放電を生じさせて、混合気が効果的に着火されるようになっている。   FIG. 3 shows a state in which the air-fuel mixture in the combustion chamber 17 is ignited at a predetermined crank angle position (for example, about 25 to 30 degrees) on the advance side when the ignition timing is advanced, such as during high-load operation of the engine 10. FIG. When the piston 13 reaches a predetermined crank angle position (for example, about 25 to 30 degrees) on the advance side with respect to the top dead center, the lower end portion 24A of the center electrode 24 is in the cylindrical hole portion 25A of the ground electrode concave hole 25. It will be in the state received by the upper end side. When a high voltage is applied to the center electrode 24 from an external power source (not shown) through the connection terminal 23 in this state, a plurality of spark discharges are generated between the outer peripheral surface of the center electrode 24 and the inner peripheral surface of the cylindrical hole portion 25A. Thus, the air-fuel mixture is effectively ignited.

このように、面積の広い中心電極24の外周面と、これを取り囲む筒穴部25Aの内周面との間で複数の花火放電を生じさせることで、中心電極24の極部的な電力集中が防止されるようになる。これにより、中心電極24の摩耗によるギャップ拡大が効果的に抑止されるようになり、進角時の着火性能を確実に向上することができる。   In this way, by generating a plurality of fireworks discharges between the outer peripheral surface of the center electrode 24 having a large area and the inner peripheral surface of the cylindrical hole portion 25A that surrounds the central electrode 24, the electric power concentration at the extreme portion of the center electrode 24 is achieved. Will be prevented. Thereby, the gap expansion due to wear of the center electrode 24 is effectively suppressed, and the ignition performance at the time of advance can be reliably improved.

図4は、ピストン13の圧縮上死点近傍にて、燃焼室17内の混合気に着火する状態を説明する図である。ピストン13が圧縮上死点近傍に達すると、中心電極24の下端部24Aは、その全体が接地電極凹穴25内に受容された状態になる。この状態で図示しない外部電源から接続端子23を介して中心電極24に高電圧を印加すると、中心電極24の外周面と接地電極凹穴25(筒穴部25A及び球状穴部25B)の内周面との間に複数の火花放電を生じさせて、混合気が効果的に着火されるようになっている。   FIG. 4 is a diagram illustrating a state in which the air-fuel mixture in the combustion chamber 17 is ignited near the compression top dead center of the piston 13. When the piston 13 reaches the vicinity of the compression top dead center, the lower end portion 24 </ b> A of the center electrode 24 is entirely received in the ground electrode recess 25. When a high voltage is applied to the center electrode 24 from an external power source (not shown) through the connection terminal 23 in this state, the outer peripheral surface of the center electrode 24 and the inner periphery of the ground electrode concave hole 25 (the cylindrical hole portion 25A and the spherical hole portion 25B). A plurality of spark discharges are generated between the surface and the air-fuel mixture to be ignited effectively.

このように、面積の広い中心電極24の外周面と、これを取り囲む接地電極凹穴25(筒穴部25A及び球状穴部25B)の内周面との間で複数の火花放電を生じさせることで、上述の進角時と同様に中心電極24の極部的な電力集中が防止されて、中心電極24の摩耗によるギャップ拡大を効果的に抑止することが可能となり、圧縮上死点の着火性能も確実に向上することができる。   As described above, a plurality of spark discharges are generated between the outer peripheral surface of the center electrode 24 having a large area and the inner peripheral surface of the ground electrode concave hole 25 (the cylindrical hole portion 25A and the spherical hole portion 25B) surrounding the central electrode 24. Thus, as in the above-described advance angle, the power concentration at the center electrode 24 is prevented from being concentrated, and gap expansion due to wear of the center electrode 24 can be effectively suppressed, and compression top dead center is ignited. The performance can also be improved reliably.

また、ピストン13の頂面周縁に環状凹部26を設けたことで、ピストン13が圧縮上死点に近づくと、混合気の一部は環状凹部26内に流れ込むようになる。これにより、天井面が平坦状の燃焼室17においても、圧縮比の過度な上昇が抑止されるようになり、ノッキングの発生を効果的に防止することができる。   Further, since the annular recess 26 is provided on the peripheral edge of the top surface of the piston 13, when the piston 13 approaches the compression top dead center, a part of the air-fuel mixture flows into the annular recess 26. Thereby, even in the combustion chamber 17 having a flat ceiling surface, an excessive increase in the compression ratio is suppressed, and the occurrence of knocking can be effectively prevented.

なお、本発明は、上記実施形態に限定されるものではなく、本発明の趣旨を逸脱しない範囲で、適宜変形して実施することが可能である。   In addition, this invention is not limited to the said embodiment, In the range which does not deviate from the meaning of this invention, it can change suitably and can implement.

例えば、環状凹部26の形状は上記実施形態に限定されず、図5に示すように、ピストン13頂面の周縁と接地電極凹穴25との間に設けられてもよい。また、その形状も環状に限定されず、複数の凹部を個別に設けるものであってもよい。   For example, the shape of the annular recess 26 is not limited to the above embodiment, and may be provided between the peripheral edge of the top surface of the piston 13 and the ground electrode recess 25 as shown in FIG. Moreover, the shape is not limited to an annular shape, and a plurality of recesses may be provided individually.

また、図6に示すように、中心電極23の先端側を球状穴部25Bの形状に沿うように半球状に突出させてもよい。このように構成することで、中心電極23と接地電極凹穴25との空隙が全体的に均一化されて、着火性をより安定さることができる。   In addition, as shown in FIG. 6, the tip side of the center electrode 23 may be projected in a hemispherical shape so as to follow the shape of the spherical hole 25B. By comprising in this way, the space | gap of the center electrode 23 and the ground electrode recessed hole 25 is equalize | homogenized as a whole, and ignitability can be stabilized more.

また、燃焼室17の形状は上記実施形態に限定されず、ペントルーフ型等の他の形状の燃焼室であってもよい。   Further, the shape of the combustion chamber 17 is not limited to the above embodiment, and may be a combustion chamber having another shape such as a pent roof type.

また、燃料噴射形式は吸気ポート15内に噴射する予混合形式に限定されず、燃焼室17内に噴射する直噴式であってもよい。   Further, the fuel injection type is not limited to the premixing type injected into the intake port 15, and may be a direct injection type injected into the combustion chamber 17.

また、エンジン10は、ガソリンエンジンやガスエンジンに限定されず、上記実施形態の点火プラグ20によって着火可能な燃料を用いる他の内燃機関にも広く適用することが可能である。   The engine 10 is not limited to a gasoline engine or a gas engine, and can be widely applied to other internal combustion engines that use fuel that can be ignited by the spark plug 20 of the above-described embodiment.

10 エンジン
11 シリンダブロック
12 シリンダ
13 ピストン
14 シリンダヘッド
15 吸気ポート
16 排気ポート
17 燃焼室
18 吸気バルブ
19 排気バルブ
20 点火プラグ
21 ハウジング
22 絶縁碍子
23 接続端子
24 中心電極
25 接地電極凹穴
25A 筒穴部
25B 球状穴部
26 環状凹部
30 インジェクタ
DESCRIPTION OF SYMBOLS 10 Engine 11 Cylinder block 12 Cylinder 13 Piston 14 Cylinder head 15 Intake port 16 Exhaust port 17 Combustion chamber 18 Intake valve 19 Exhaust valve 20 Spark plug 21 Housing 22 Insulator 23 Connection terminal 24 Center electrode 25 Ground electrode concave hole 25A Cylindrical hole part 25B Spherical hole 26 Annular recess 30 Injector

Claims (5)

シリンダブロックのシリンダ内にピストンが往復移動可能に収容されると共に、前記シリンダブロックの上部にシリンダヘッドが配置された内燃機関の点火装置であって、
前記シリンダヘッドに取り付けられるハウジングと、
少なくともその一部を前記ハウジング内に収容保持された絶縁碍子と、
その上端側を前記絶縁碍子に収容されると共に、その下端側を前記絶縁碍子から露出させて前記シリンダ内に突出させた柱状の中心電極と、
前記ピストンの頂面からピストン軸方向に凹設されると共に、前記ピストンの上死点にて前記中心電極の少なくとも一部を所定の空隙を隔てて受容し、前記中心電極に電圧が印加されると、その内面と前記中心電極の外面との間に火花放電を生じさせる凹穴と、を備える
ことを特徴とする内燃機関の点火装置。
An internal combustion engine ignition device in which a piston is housed in a cylinder of a cylinder block so as to be capable of reciprocating movement, and a cylinder head is disposed above the cylinder block,
A housing attached to the cylinder head;
An insulator in which at least a part thereof is accommodated and held in the housing;
A columnar center electrode whose upper end is accommodated in the insulator and whose lower end is exposed from the insulator and protrudes into the cylinder;
The piston is recessed from the top surface of the piston in the piston axial direction, and at least a part of the center electrode is received with a predetermined gap at the top dead center of the piston, and a voltage is applied to the center electrode. An internal combustion engine ignition device characterized by comprising: and a concave hole for generating a spark discharge between an inner surface thereof and an outer surface of the central electrode.
前記凹穴は、前記ピストンの頂面からピストン軸方向に窪む筒穴部を含み、当該筒穴部は、前記ピストンが上死点よりも進角側の所定のクランク角度位置にある時に、前記中心電極の少なくとも一部を受容し、前記中心電極に電圧が印加されると、その内面と前記中心電極の外面との間に火花放電を生じさせる
請求項1に記載の内燃機関の点火装置。
The concave hole includes a cylindrical hole portion that is recessed in the piston axial direction from the top surface of the piston, and the cylindrical hole portion is located at a predetermined crank angle position on the advance side of the top dead center. The ignition device for an internal combustion engine according to claim 1, wherein at least a part of the center electrode is received, and when a voltage is applied to the center electrode, a spark discharge is generated between an inner surface of the center electrode and an outer surface of the center electrode. .
前記凹穴は、前記筒穴部の下端から半球状に窪む球状穴部をさらに含み、前記ピストンが上死点に達すると、前記中心電極の下端が前記筒穴部と前記球状穴部の境界に位置され、前記中心電極に電圧が印加されると、前記筒穴部又は前記球状穴部の少なくとも一方の内面と前記中心電極の外面との間に火花放電を生じさせる
請求項2に記載の内燃機関の点火装置。
The concave hole further includes a spherical hole portion that is recessed in a hemispherical shape from the lower end of the cylindrical hole portion, and when the piston reaches top dead center, the lower end of the center electrode is formed between the cylindrical hole portion and the spherical hole portion. The spark discharge is generated between at least one inner surface of the cylindrical hole portion or the spherical hole portion and an outer surface of the central electrode when a voltage is applied to the central electrode, which is positioned at the boundary. Ignition device for internal combustion engine.
前記シリンダに臨む前記シリンダヘッドの下面が平坦状に形成されると共に、前記ピストンの頂面の前記凹穴を除く他の部分に凹部が形成された
請求項1〜3の何れか一項に記載内燃機関の点火装置。
The lower surface of the cylinder head that faces the cylinder is formed in a flat shape, and a recess is formed in the other portion of the top surface of the piston except for the recessed hole. Ignition device for internal combustion engine.
前記凹部が前記ピストンの頂面の周縁に環状に凹設された
請求項4に記載の内燃機関の点火装置。
The ignition device for an internal combustion engine according to claim 4, wherein the recess is annularly provided in a periphery of the top surface of the piston.
JP2016123345A 2016-06-22 2016-06-22 Ignitor of internal combustion engine Pending JP2017227164A (en)

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CN201780037773.9A CN109312709A (en) 2016-06-22 2017-06-07 The igniter of internal combustion engine
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Families Citing this family (2)

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Publication number Priority date Publication date Assignee Title
CN112377322B (en) * 2020-05-26 2021-10-22 北京礴德恒激光科技有限公司 Piston discharge structure for plasma cloud excitation homogeneous uniform combustion engine
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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5528789U (en) * 1978-08-17 1980-02-25
JP2000297734A (en) * 1999-04-14 2000-10-24 Bayerische Motoren Werke Ag Ignition device for piston type internal combustion engine
JP2007077910A (en) * 2005-09-15 2007-03-29 Mazda Motor Corp Structure of combustion chamber of spark ignition engine
JP2009036125A (en) * 2007-08-02 2009-02-19 Nissan Motor Co Ltd Non-equilibrium plasma discharge ignition device and ignition control device
JP2011052596A (en) * 2009-09-02 2011-03-17 Mitsubishi Motors Corp Reciprocating internal combustion engine
WO2011043399A1 (en) * 2009-10-06 2011-04-14 イマジニアリング株式会社 Internal combustion engine
JP2016089651A (en) * 2014-10-30 2016-05-23 本田技研工業株式会社 Internal combustion engine

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19708154C2 (en) * 1997-02-28 1998-12-17 Daimler Benz Ag Otto engine
DE10149661A1 (en) * 2001-10-09 2003-04-10 Mtu Friedrichshafen Gmbh IC engine e.g. diesel engine, has porous body secured in recess on side of engine piston facing combustion space
DE10243379A1 (en) * 2002-09-18 2004-04-01 Volkswagen Ag Spark-to-piston ignition device for piston internal combustion engines has piston electrode formed in piston starting from fuel basin formed in piston so as to be curved at least in one section
JP2010150969A (en) * 2008-12-24 2010-07-08 Mazda Motor Corp Spark-ignition direct-injection engine

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5528789U (en) * 1978-08-17 1980-02-25
JP2000297734A (en) * 1999-04-14 2000-10-24 Bayerische Motoren Werke Ag Ignition device for piston type internal combustion engine
JP2007077910A (en) * 2005-09-15 2007-03-29 Mazda Motor Corp Structure of combustion chamber of spark ignition engine
JP2009036125A (en) * 2007-08-02 2009-02-19 Nissan Motor Co Ltd Non-equilibrium plasma discharge ignition device and ignition control device
JP2011052596A (en) * 2009-09-02 2011-03-17 Mitsubishi Motors Corp Reciprocating internal combustion engine
WO2011043399A1 (en) * 2009-10-06 2011-04-14 イマジニアリング株式会社 Internal combustion engine
JP2016089651A (en) * 2014-10-30 2016-05-23 本田技研工業株式会社 Internal combustion engine

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