JP4555413B2 - Fuel injection device for backbone type motorcycle - Google Patents

Fuel injection device for backbone type motorcycle Download PDF

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Publication number
JP4555413B2
JP4555413B2 JP05469599A JP5469599A JP4555413B2 JP 4555413 B2 JP4555413 B2 JP 4555413B2 JP 05469599 A JP05469599 A JP 05469599A JP 5469599 A JP5469599 A JP 5469599A JP 4555413 B2 JP4555413 B2 JP 4555413B2
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Japan
Prior art keywords
backbone
intake
fuel
valve
intake passage
Prior art date
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Expired - Fee Related
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JP05469599A
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Japanese (ja)
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JP2000249028A (en
JP2000249028A5 (en
Inventor
万仁 堀田
健一郎 池田
俊二 赤松
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Honda Motor Co Ltd
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Honda Motor Co Ltd
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Priority to JP05469599A priority Critical patent/JP4555413B2/en
Priority to ARP000100851A priority patent/AR017992A1/en
Priority to MYPI20000779A priority patent/MY130219A/en
Priority to BRPI0000984-9A priority patent/BR0000984B1/en
Priority to CO00015090A priority patent/CO5241338A1/en
Priority to IDP20000155A priority patent/ID24988A/en
Priority to CN00103687A priority patent/CN1121552C/en
Priority to KR1020000010488A priority patent/KR100359702B1/en
Publication of JP2000249028A publication Critical patent/JP2000249028A/en
Publication of JP2000249028A5 publication Critical patent/JP2000249028A5/ja
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Publication of JP4555413B2 publication Critical patent/JP4555413B2/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B62LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
    • B62KCYCLES; CYCLE FRAMES; CYCLE STEERING DEVICES; RIDER-OPERATED TERMINAL CONTROLS SPECIALLY ADAPTED FOR CYCLES; CYCLE AXLE SUSPENSIONS; CYCLE SIDE-CARS, FORECARS, OR THE LIKE
    • B62K11/00Motorcycles, engine-assisted cycles or motor scooters with one or two wheels
    • B62K11/02Frames
    • B62K11/04Frames characterised by the engine being between front and rear wheels
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02MSUPPLYING COMBUSTION ENGINES IN GENERAL WITH COMBUSTIBLE MIXTURES OR CONSTITUENTS THEREOF
    • F02M61/00Fuel-injectors not provided for in groups F02M39/00 - F02M57/00 or F02M67/00
    • F02M61/14Arrangements of injectors with respect to engines; Mounting of injectors
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02MSUPPLYING COMBUSTION ENGINES IN GENERAL WITH COMBUSTIBLE MIXTURES OR CONSTITUENTS THEREOF
    • F02M69/00Low-pressure fuel-injection apparatus ; Apparatus with both continuous and intermittent injection; Apparatus injecting different types of fuel
    • F02M69/04Injectors peculiar thereto
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02MSUPPLYING COMBUSTION ENGINES IN GENERAL WITH COMBUSTIBLE MIXTURES OR CONSTITUENTS THEREOF
    • F02M69/00Low-pressure fuel-injection apparatus ; Apparatus with both continuous and intermittent injection; Apparatus injecting different types of fuel
    • F02M69/14Low-pressure fuel-injection apparatus ; Apparatus with both continuous and intermittent injection; Apparatus injecting different types of fuel having cyclically-operated valves connecting injection nozzles to a source of fuel under pressure during the injection period

Description

【0001】
【発明の属する技術分野】
本発明は、フロントフォークを支持するヘッドパイプから後方下向きに傾斜して直線状に延びる前半直線部、この前半直線部より緩傾斜で後方下向きに直線状に延びる後半直線部及び両直線部間を連続的に連結する中間屈曲部からなるバックボーンと、このバックボーンの後端に一体に結合してリアフォークを支持するリアフレームとで車体フレームを構成し、そのリアフレームに、前記バックボーンの下方でシリンダブロック及びシリンダヘッドを前方に向かって略水平に突出させるエンジンを取付け、前記シリンダヘッドと、前記バックボーンの前端部に取付けたエアクリーナとの間を、前記バックボーンの下方に配置されて概ね後方下向きに傾斜する吸気通路を介して接続し、この吸気通路にスロットル弁を設けた、バックボーン型自動二輪車燃機関に関し、特に、前記吸気通路に燃料噴射弁を備えるようにした、バックボーン型自動二輪車における燃料噴射装置に関する。
【0002】
【従来の技術】
かゝるバックボーン型自動二輪車は、本出願人会社の製造に係る、商品名「スーパーカブ」の小型自動二輪車として、世界的に普及しており、それにおいては前記吸気通路の中間部に気化器が介裝されている(例えば実公昭62−39993号公報参照)。
【0003】
【発明が解決しようとする課題】
上記バックボーン型自動二輪車において、車体フレームやエンジンのレイアウトを変更せずに、前記気化器に代えて燃料噴射弁を前記吸気通路に取付けようとすると、該燃料噴射弁から噴射燃料をエンジンのシリンダヘッドの上面に開口する吸気ポートに確実に指向させるためには、どうしても前記吸気通路の上側壁に取付ける必要がある。しかしながら、前記吸気通路の上方にはフレームのバックボーンが比較的近接して配置されているので、燃料噴射弁は、このバックボーンと干渉し易く、前記吸気通路の上側壁に簡単には取付けることができない。
【0004】
そこで、本発明は、従来の車体フレームやエンジンのレイアウトを変更せずとも、車体フレームのバックボーンに干渉されずに、燃料噴射弁を前記吸気通路の上側壁に取付けることができて、該弁からシリンダヘッドの吸気ポートに向かって燃料を噴射し得るようにした、前記バックボーン型自動二輪車における燃料噴射装置を提供することを目的とする。
【0005】
【課題を解決するための手段】
上記目的を達成するために、本発明は、フロントフォークを支持するヘッドパイプから後方下向きに傾斜して直線状に延びる前半直線部、この前半直線部より緩傾斜で後方下向きに直線状に延びる後半直線部及び両直線部間を連続的に連結する車両側面視で円弧状の中間屈曲部からなるバックボーンと、このバックボーンの後端に一体に結合してリアフォークを支持するリアフレームとで車体フレームを構成し、そのリアフレームに、前記バックボーンの下方でシリンダブロック及びシリンダヘッドを前方に向かって略水平に突出させるエンジンを取付け、前記シリンダヘッドの上面に開口する吸気ポートと、前記バックボーンの前端部に取付けたエアクリーナとの間を、前記バックボーンの下方に配置されて概ね後方下向きに傾斜する吸気通路を介して接続し、この吸気通路の中間部にスロットル弁を回動可能に設けた、バックボーン型自動二輪車において、前記吸気通路が、前記スロットル弁により開閉されて前記前半直線部に沿って後下がりに傾斜して延びる吸気道を有するスロットルボディと、鈍角の屈曲部を有して前記吸気道及び吸気ポート間を接続する吸気管とを備えると共に、前記吸気通路のうちの吸気管部分と前記吸気道のスロットル弁の回動中心より下流側部分とを、車両側面視で前記前半直線部及び前記中間屈曲部の境界線の下方延長線と、前記後半直線部及び前記中間屈曲部の境界線の下方延長線とで挟まれた領域に配置し、前記バックボーンの中間屈曲部における外側曲線の中点が、前記シリンダブロック及びシリンダヘッドの合わせ面の上方延長面よりも前方側に位置しており、前記吸気管の前記屈曲部の上側壁には吸気ポート内に燃料を下向きに噴射し得る燃料噴射弁を立設すると共に、該弁が車両側面視で前記領域に収まり且つ該弁の上端が前記中点より前方に在って、前記上端部に嵌合した燃料供給管が前記中間屈曲部の下面と対向近接しており、該燃料噴射弁からシリンダヘッドの吸気ポートに向かって燃料を噴射するようにしたことを特徴とする。
【0006】
この特徴によれば、従来の車体フレームやエンジンのレイアウトを変更せずとも、車体フレームのバックボーン及び吸気通路間の狭小なスペースを合理的に利用して、該吸気通路(特に上記吸気管の屈曲部)の上側壁に燃料噴射弁を取付けることができ、したがって該弁からシリンダヘッドの吸気ポートに向かって燃料を噴射することが可能となり、燃料の管壁への付着によるロスを少なくすることができる。
【0007】
【発明の実施の形態】
本発明の実施の形態を、添付図面に示す本発明の実施例に基づいて以下に説明する。
【0008】
図1〜図4は本発明の第1実施例を示すもので、図1はバックボーン型自動二輪車の側面図、図2は同自動二輪車のエンジン及び吸気系周りの側面図、図3は図2の吸気系における燃料噴射装置周りの拡大側面図図、図4は図3の4矢視図、図5は本発明の第2実施例を示す、図3と同様の側面図である。
【0009】
先ず、図1〜図4により本発明の第1実施例について説明する。図1において、自動二輪車Mの車体フレームFは、前端のヘッドパイプ1の後側面に溶接されて、後方下向きに傾斜して延びる鋼管からなるバックボーンFfと、このバックボーンFfの後端に溶接される鋼板製のリアフレームFrとか構成される。ヘッドパイプ1には、前輪Wfを軸支するフロントフォーク2が操向可能に枢支され、リアフレームFrには、後輪Wrを軸支するリアフォーク3が枢支され、このリアフォーク3とリアフレームFr間にリアクッション4が連結される。またリアフレームFrの上面にサドル5が取付けられ、このサドル5の直下のリアフレームFr内に燃料タンク6が収納、保持される。さらにリアフレームFrの前端には、バックボーンFfとの結合点の下方において、エンジンEのクランクケース7が取付けられる。エンジンEは、クランクケース7の前面から突出して略水平に配置されるシリンダブロック8を有し、その前面にシリンダヘッド9が接合される。バックボーンFfの前端部にはエアクリーナ10が取付けられ、これとシリンダヘッド9の吸気ポート(図2参照)との間が、バックボーンFfの下方に配置される吸気通路12を介して接続される。
【0010】
上記バックボーンFf、シリンダブロック8、シリンダヘッド9、エアクリーナ10及び吸気通路12は、車体フレームFに取付けられるレッグシールド13により覆われる。
【0011】
図2及び図3に示すように、前記バックボーンFfは、ヘッドパイプ1に結合して後方下向きに傾斜して直線状に延びる前半直線部14aと、この前半直線部14aより緩傾斜で後方下向きに直線状に延びてリアフレームFrに結合する後半直線部14bと、これら両直線部14a,14b間を連続的に結合する、曲率半径Rの中間屈曲部14cとからなっている。その中間屈曲部14cの下方にシリンダヘッド9が位置しており、シリンダヘッド9の上面に吸気ポート11が開口している。この吸気ポート11の燃焼室16への開口端は吸気弁15により開閉される。
【0012】
前記エアクリーナ10は、バックボーンFfの前半直線部14aの直下に配置されて前面を開放したクリーナケース17と、このクリーナケース17に結合されてその開放面を閉じるケースカバー18と、これらクリーナケース17及びケースカバー18間に挟持されるクリーナエレメント19と、ケースカバー18の上端に連結される入口ダクト20とから構成され、クリーナケース17の底壁に吸気通路12の接続孔21が設けられている。そして入口ダクト20及びクリーナケース17がバックボーンFfの前半直線部14aにねじ止めされる。
【0013】
以上は、従来の小型自動二輪車のレイアウトと変わりがない。
【0014】
前記吸気通路12は、前記接続孔21に嵌着されてクリーナケース17内に突入したホーン管22と、前記吸気ポート11に連通すべくシリンダヘッド9の上面に結合される吸気管23と、これらホーン管22及び吸気管23の間を接続するスロットルボディ24とから構成される。ホーン管22は、中間に鈍角の屈曲部を持ち、下流側開口端を後方下向きした略L字状をなしており、また吸気管23も、中間に鈍角の屈曲部を持ち、上流側開口端を前方上向きにした略L字状をなしており、両管22,23を接続すべく傾斜して配置されるスロットルボディ24は、両管22,23の内部を連通する直線状の吸気道24aを有し、この吸気道24aを開閉するバタフライ型のスロットル弁25がスロットルボディ24に回動可能に軸支される。こうして、吸気通路12は、概ねバックボーンFfに沿ってその下方に配置される。そして、前記吸気通路12のうちの吸気管23部分燃料噴射弁30と前記吸気道24aのスロットル弁25の回動中心25aより下流側部分とは、図2に示されるように、車両側面視でバックボーンFfの前半直線部14a及び中間屈曲部14cの境界線の下方延長線と、後半直線部14b及び中間屈曲部14cの境界線の下方延長線とで挟まれた領域に配置される。
【0015】
略L字状の吸気管23の屈曲部の上側壁に電磁式の燃料噴射弁30が立設される。即ち、吸気管23の屈曲部の上側壁には、装着孔26を有するボス27が一体に形成され、その弁装着孔26に燃料噴射弁30の下端部がシール部材28を介して嵌装される。この燃料噴射弁30の上端面には燃料入口が、下端面には燃料噴孔がそれぞれ開口している。この燃料噴射弁30は、その燃料噴孔からの噴射燃料31が前記吸気ポート11の特に吸気弁15により開閉される下流端に向かい、且つ上端が前記バックボーンFfの中間屈曲部14cにおける外側曲線の中点32より前方にくるように、配置される。また前記中点32は、図2,図3に示されるようにシリンダブロック8及びシリンダヘッド9の合わせ面の上方延長面よりも前方側に位置している。
【0016】
図3及び図4に示すように、燃料噴射弁30の上端部には、燃料供給管34の側壁に開口する装着孔35がシール部材36を介して嵌合される。この燃料供給管34は、バックボーンFfの直下において、バックボーンFfの軸線Yと直交して水平に、即ち車体の左右方向に配置されており、しかもその燃料噴射弁30の上端部に嵌合した前記燃料供給管34が、図3及び図4に示すように、中間屈曲部14cの下面と対向近接している。この燃料供給管34に一端には、前記燃料タンク6内に配設される燃料ポンプ38(図1参照)の吐出ポートに連なる燃料導管39が接続され、またその他端には、噴射圧力レギュレータ40が連結される。
【0017】
図4に示すように、噴射圧力レギュレータ40は、燃料供給管34に連通する燃料室41を有するレギュレータボディ42と、ブースト負圧室43を有してレギュレータボディ42に結合されるキャップ44と、レギュレータボディ42及びキャップ44間に挟持されて上記燃料室41及びブースト負圧室43間を仕切るダイヤフラム45とを備える。レギュレータボディ42の中心部には、燃料戻し孔46が開口する弁座47が設けられ、この弁座47に着座し得る弁体48がダイヤフラム45の中心部に首振り可能に付設される。そしてこの弁体48をダイヤフラム45を介して弁座47側に付勢する弁ばね49が ブースト負圧室43に収容される。ブースト負圧室43は、負圧導管50を介して前記吸気管23内に連通し、燃料戻し孔46は、燃料戻し管51を介して前記燃料タンク6に連通する。さらに燃料室41には燃料フィルタ52が設けられる。
【0018】
次に、この第1実施例の作用について説明する。
【0019】
エンジンEの作動中、噴射圧力レギュレータ40の燃料室41には、燃料タンク6内の燃料が燃料ポンプ38により燃料導管39及び燃料供給管34を通して圧送され、その燃料圧力は弁体48を弁座47から離座する方向にダイヤフラム45に作用する。一方、ブースト負圧室43には、吸気管23内のブースト負圧が負圧導管50を通して導入され、このブースト負圧は、弁ばね49の荷重方向とは反対に、弁体48を弁座47から離座する方向にダイヤフラム45に作用する。したがって、エンジンEの負荷が小さくてブースト負圧が高い時は、燃料室41の燃料による弁体48の開弁圧力は低く、エンジンEの負荷が大きくてブースト負圧が低い時は、燃料室41の燃料による弁体48の開弁圧力は高くなり、弁体48の開弁時、燃料室41から燃料戻し孔46に流出した燃料戻し管51を通して燃料タンク6に還流する。こうして燃料供給管34内に燃料圧力は、エンジンEの負荷に応じて制御される。
【0020】
而して、エンジンEの吸気行程時、吸気弁15が開くと共に、燃料噴射弁30が励磁されて開弁すると、上記のように圧力制御された燃料が該弁30から噴射され、その噴射燃料31は吸気ポート11の、吸気弁15により開放された下流端に向かうので、エアクリーナ10で濾過されて吸気通路12を流下する吸入空気と共に効率良く燃料室41に吸入される。したがって、噴射燃料31の管壁への付着によるロスが少なく、燃費の低減に寄与し得る。またエアクリーナ10及び吸気ポート11間を結ぶ吸気通路12は、ホーン管22及び吸気管23が鈍角に屈曲するだけで、全体としては後方下向きに傾斜しているので、吸気抵抗が小さくなり、エンジンEの出力向上に寄与し得る。
【0021】
ところで、燃料噴射弁30は、吸気管23の屈曲部の上側壁に立設され、該弁30の少なくとも上端がバックボーンFfの中間屈曲部14cにおける外側曲線の中点32より前方にくるように配置されるので、従来の車体フレームFやエンジンEのレイアウトを変更せずとも、バックボーンFf及び吸気通路12間の狭小なスペースを合理的に利用して、該吸気通路12の上側壁に燃料噴射弁30を取付けることができ、したがって上述のように該弁30から吸気ポート11の特に下流端に向かって燃料を噴射することが可能となる。
【0022】
また燃料噴射弁30の上端に連結する燃料供給管34は、バックボーンFfの軸線と直交して水平に配置されるので、バックボーンFf及び燃料噴射弁30間の狭小な空間に燃料供給管34を、バックボーンFfに干渉されることなく容易に配置することができる。
【0023】
次に、図5により、本発明の第2実施例について説明する。
【0024】
この第2実施例では、燃料噴射弁30の上端に連結する燃料供給管34がバックボーンFfの下側面に沿って後方下向き傾斜に配置される点、この燃料供給管34の後端にバックボーンFfに沿って配置される燃料導管39が接続される点、及び燃料供給管34の前端に噴射圧力レギュレータ40のレギュレータボディ42が一体に連設される点を除けば、前実施例と同様構成であり、図中、前実施例との対応部分には、同一の参照符号を付して、その説明を省略する。
【0025】
而して、燃料供給管34がバックボーンFfの下側面に沿って後方下向き傾斜に配置されるので、この場合もバックボーンFf及び燃料噴射弁30間の狭小な空間に燃料供給管34を、バックボーンFfに干渉されることなく容易に配置することができる。またその燃料供給管34の後端に接続される燃料導管39がバックボーンFfに沿って配置されるので、燃料導管39がバックボーンFfから大きく食み出すこともなく、他物との干渉を容易に回避することができる。
【0026】
本発明は上記各実施例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。
【0027】
【発明の効果】
以上のように本発明の第1の特徴によれば、リアフレームに、バックボーンの下方でシリンダブロック及びシリンダヘッドを前方に向かって略水平に突出させるエンジンを取付け、シリンダヘッドの上面に開口する吸気ポートと、バックボーンの前端部に取付けたエアクリーナとの間を接続する吸気通路が、スロットル弁により開閉されてバックボーンの前半直線部に沿って後下がりに傾斜して延びる吸気道を有するスロットルボディと、鈍角の屈曲部を有して吸気道及び吸気ポート間を接続する吸気管とを備えると共に、前記吸気通路のうちの吸気管部分と前記吸気道のスロットル弁の回動中心より下流側部分とを、車両側面視で前記前半直線部及び前記中間屈曲部の境界線の下方延長線と、前記後半直線部及び前記中間屈曲部の境界線の下方延長線とで挟まれた領域に配置し、前記バックボーンの中間屈曲部における外側曲線の中点が、前記シリンダブロック及びシリンダヘッドの合わせ面の上方延長面よりも前方側に位置しており、前記吸気管の前記屈曲部の上側壁には吸気ポート内に燃料を下向きに噴射し得る燃料噴射弁を立設すると共に、該弁が車両側面視で前記領域に収まり且つ該弁の上端が前記中点より前方に在って、前記上端部に嵌合した燃料供給管が前記中間屈曲部の下面と対向近接しており、該燃料噴射弁からシリンダヘッドの吸気ポートに向かって燃料を噴射するようにしたので、従来の車体フレームやエンジンのレイアウトを変更せずとも、バックボーン及び吸気通路間の狭小なスペースを合理的に利用して、該吸気通路(特に前記吸気管の屈曲)の上側壁に燃料噴射弁を取付けることができ、したがって該燃料噴射弁からシリンダヘッドの吸気ポートに向かって燃料を噴射することが可能となり、燃料の管壁への付着によるロスを少なくすることができる。
【図面の簡単な説明】
【図1】 本発明の第1実施例を示すバックボーン型自動二輪車の側面図。
【図2】 同自動二輪車のエンジン及び吸気系周りの側面図。
【図3】 図2の吸気系における燃料噴射装置周りの拡大側面図図。
【図4】 図3の4矢視図。
【図5】 本発明の第2実施例を示す、図3と同様の側面図。
【符号の説明】
E・・・・・エンジン
F・・・・・車体フレーム
Ff・・・・バックボーン
Fr・・・・リアフレーム
Y・・・・・バックボーンの軸線
1・・・・・ヘッドパイプ
2・・・・・フロントフォーク
3・・・・・リアフォーク
8・・・・・シリンダブロック
9・・・・・シリンダヘッド
10・・・・エアクリーナ
11・・・・吸気ポート
12・・・・吸気通路
14a・・・前半直線部
14b・・・後半直線部
14c・・・中間屈曲部
23・・・・吸気管
24・・・・スロットルボディ
24a・・・吸気道
25・・・・スロットル弁
25a・・・スロットル弁の回動中心
30・・・・燃料噴射弁
32・・・・中間屈曲部における外側曲線の中点
34・・・・燃料供給管
39・・・・燃料導管
40・・・・噴射圧力レギュレータ
[0001]
BACKGROUND OF THE INVENTION
The present invention includes a front half straight portion that extends downward and straight from the head pipe that supports the front fork, a second half straight portion that extends more slowly and rearward downward than the front half straight portion, and a space between both straight portions. A body frame is composed of a backbone composed of intermediate bent portions that are continuously connected and a rear frame that is integrally coupled to the rear end of the backbone and supports a rear fork, and a cylinder is formed on the rear frame below the backbone. An engine is mounted to project the block and cylinder head substantially horizontally toward the front. Between the cylinder head and the air cleaner attached to the front end of the backbone, the engine is arranged below the backbone and tilted substantially rearward and downward. Connected via an intake passage that has a throttle valve in the intake passage. Relates motorcycle combustion engine, in particular, said so comprises a fuel injection valve into the intake passage, a fuel injection device in the backbone-type motorcycle.
[0002]
[Prior art]
Such a backbone type motorcycle is widely used worldwide as a small motorcycle with the trade name “Super Cub”, which is related to the manufacture of the applicant company. In this case, a vaporizer is installed in the middle of the intake passage. (See, for example, Japanese Utility Model Publication No. 62-39993).
[0003]
[Problems to be solved by the invention]
In the backbone type motorcycle, when a fuel injection valve is attached to the intake passage in place of the carburetor without changing the body frame or the engine layout, the injected fuel is supplied from the fuel injection valve to the cylinder head of the engine. In order to make sure that it is directed to the intake port that opens on the upper surface of the intake passage, it must be attached to the upper side wall of the intake passage. However, since the backbone of the frame is disposed relatively close above the intake passage, the fuel injection valve easily interferes with the backbone and cannot be easily attached to the upper side wall of the intake passage. .
[0004]
Accordingly, the present invention can attach the fuel injection valve to the upper side wall of the intake passage without interfering with the backbone of the vehicle body frame without changing the layout of the conventional vehicle body frame and engine. It is an object of the present invention to provide a fuel injection device for the backbone type motorcycle that can inject fuel toward an intake port of a cylinder head.
[0005]
[Means for Solving the Problems]
In order to achieve the above-described object, the present invention provides a front half straight portion that extends downward and straight from the head pipe that supports the front fork, and a rear half that extends linearly downward and rearward from the front half straight portion. A vehicle body frame comprising a backbone formed of an arc-shaped intermediate bent portion in a side view of the vehicle that continuously connects the linear portion and both linear portions, and a rear frame that is integrally coupled to the rear end of the backbone and supports a rear fork. An engine for projecting the cylinder block and the cylinder head substantially horizontally toward the front below the backbone, and an intake port opening on an upper surface of the cylinder head, and a front end portion of the backbone. Intake air that is disposed below the backbone and tilts backward and downward between the air cleaner attached to the Connected via road, it provided the throttle valve at an intermediate portion of the intake passage rotatably in the backbone-type motorcycle, the intake passage, after along the half straight line portion is opened and closed by the throttle valve A throttle body having an intake passage extending obliquely downward, and an intake pipe having an obtuse bend and connecting between the intake passage and the intake port, and an intake pipe portion of the intake passage and A portion of the intake passage downstream from the rotation center of the throttle valve , as viewed from the side of the vehicle, a downward extension line of a boundary line between the front half straight portion and the intermediate bent portion, and a boundary between the latter half straight portion and the intermediate bent portion The middle point of the outer curve at the intermediate bent portion of the backbone is located above the upper extension surface of the mating surfaces of the cylinder block and the cylinder head. Also located on the front side, wherein the upper wall of the bent portion of the intake pipe, the upright fuel injection valve capable of injecting fuel downwardly into the intake port, the valve is a side view of the vehicle The upper end of the valve is located in front of the middle point, and the fuel supply pipe fitted to the upper end is opposed to and close to the lower surface of the intermediate bent portion. The fuel is injected toward the intake port of the head.
[0006]
According to this feature, it is possible to rationally use the narrow space between the backbone of the vehicle body frame and the intake passage without changing the layout of the conventional vehicle body frame or engine, and to adjust the intake passage (particularly, the bending of the intake pipe). The fuel injection valve can be attached to the upper side wall of the fuel tank, so that fuel can be injected from the valve toward the intake port of the cylinder head, and loss due to the fuel adhering to the pipe wall can be reduced. it can.
[0007]
DETAILED DESCRIPTION OF THE INVENTION
DESCRIPTION OF THE PREFERRED EMBODIMENTS Embodiments of the present invention will be described below based on examples of the present invention shown in the accompanying drawings.
[0008]
1 to 4 show a first embodiment of the present invention. FIG. 1 is a side view of a backbone type motorcycle, FIG. 2 is a side view around an engine and an intake system of the motorcycle, and FIG. Fig. 4 is an enlarged side view around the fuel injection device in the intake system of Fig. 4, Fig. 4 is a view taken in the direction of arrow 4 in Fig. 3, and Fig. 5 is a side view similar to Fig. 3, showing a second embodiment of the present invention.
[0009]
First, a first embodiment of the present invention will be described with reference to FIGS. In FIG. 1, a vehicle body frame F of a motorcycle M is welded to a rear side surface of a head pipe 1 at a front end, and is welded to a backbone Ff made of a steel pipe extending obliquely rearwardly downward and a rear end of the backbone Ff. A rear frame Fr made of a steel plate is configured. A front fork 2 that pivotally supports the front wheel Wf is pivotally supported on the head pipe 1, and a rear fork 3 that pivotally supports the rear wheel Wr is pivotally supported on the rear frame Fr. The rear cushion 4 is connected between the rear frames Fr. A saddle 5 is attached to the upper surface of the rear frame Fr, and the fuel tank 6 is housed and held in the rear frame Fr immediately below the saddle 5. Further, the crankcase 7 of the engine E is attached to the front end of the rear frame Fr below the connection point with the backbone Ff. The engine E has a cylinder block 8 that protrudes from the front surface of the crankcase 7 and is arranged substantially horizontally, and a cylinder head 9 is joined to the front surface thereof. An air cleaner 10 is attached to the front end portion of the backbone Ff, and this is connected to an intake port (see FIG. 2) of the cylinder head 9 via an intake passage 12 disposed below the backbone Ff.
[0010]
The backbone Ff, the cylinder block 8, the cylinder head 9, the air cleaner 10, and the intake passage 12 are covered with a leg shield 13 attached to the vehicle body frame F.
[0011]
As shown in FIGS. 2 and 3, the backbone Ff is coupled to the head pipe 1 and is inclined rearward downward and extends linearly in the front half straight portion 14a, and the front half straight portion 14a is inclined more slowly than the front half straight portion 14a. The rear straight line portion 14b extends linearly and is coupled to the rear frame Fr, and the intermediate bent portion 14c having a radius of curvature R that continuously couples the straight line portions 14a and 14b. The cylinder head 9 is located below the intermediate bent portion 14c, and the intake port 11 is opened on the upper surface of the cylinder head 9. An opening end of the intake port 11 to the combustion chamber 16 is opened and closed by an intake valve 15.
[0012]
The air cleaner 10 is disposed directly below the front half straight portion 14a of the backbone Ff and has a cleaner case 17 whose front surface is opened, a case cover 18 which is coupled to the cleaner case 17 and closes its open surface, and the cleaner case 17 and The cleaner element 19 is sandwiched between the case covers 18 and an inlet duct 20 connected to the upper end of the case cover 18. A connection hole 21 for the intake passage 12 is provided in the bottom wall of the cleaner case 17. Then, the inlet duct 20 and the cleaner case 17 are screwed to the front half straight portion 14a of the backbone Ff.
[0013]
The above is no different from the layout of a conventional small motorcycle.
[0014]
The intake passage 12 includes a horn pipe 22 that is fitted into the connection hole 21 and enters the cleaner case 17, an intake pipe 23 that is coupled to the upper surface of the cylinder head 9 to communicate with the intake port 11, and A throttle body 24 is connected between the horn pipe 22 and the intake pipe 23. The horn tube 22 has an obtuse bend in the middle and has a substantially L shape with the downstream opening end facing backward and downward. The intake pipe 23 also has an obtuse bend in the middle and has an upstream opening end. The throttle body 24, which is substantially L-shaped with the pipe facing upward and inclined to connect the pipes 22 and 23, is a straight intake passage 24a that communicates the inside of the pipes 22 and 23. A butterfly throttle valve 25 that opens and closes the intake passage 24 a is pivotally supported by the throttle body 24. In this way, the intake passage 12 is disposed substantially along the backbone Ff. Then, an intake pipe 23 portion of the intake passage 12, a fuel injection valve 30, the intake passage 24a, and the downstream portion from the rotation center 25a of the throttle valve 25, as shown in FIG. 2, When viewed from the side of the vehicle, it is disposed in a region sandwiched between a downward extension of the boundary line of the front half straight portion 14a and the intermediate bent portion 14c of the backbone Ff and a lower extension line of the boundary line of the rear half straight portion 14b and the intermediate bent portion 14c. The
[0015]
An electromagnetic fuel injection valve 30 is erected on the upper side wall of the bent portion of the substantially L-shaped intake pipe 23. That is, a boss 27 having a mounting hole 26 is integrally formed on the upper side wall of the bent portion of the intake pipe 23, and the lower end portion of the fuel injection valve 30 is fitted into the valve mounting hole 26 via the seal member 28. The A fuel inlet is opened at the upper end surface of the fuel injection valve 30 and a fuel injection hole is opened at the lower end surface. The fuel injection valve 30, the outer curve in the injection fuel 31 from the fuel injection hole toward the downstream end that is specifically opened and closed by an intake valve 15 of the intake port 11, and the upper end portion is an intermediate bent portion 14c of the backbone Ff It arrange | positions so that it may come ahead from the midpoint 32. 2 and 3, the midpoint 32 is located on the front side of the upper extension surface of the mating surfaces of the cylinder block 8 and the cylinder head 9.
[0016]
As shown in FIGS. 3 and 4, a mounting hole 35 that opens to the side wall of the fuel supply pipe 34 is fitted to the upper end portion of the fuel injection valve 30 via a seal member 36. The fuel supply pipe 34 is disposed directly below the backbone Ff, perpendicular to the axis Y of the backbone Ff, horizontally, that is, in the left-right direction of the vehicle body , and fitted to the upper end of the fuel injection valve 30. As shown in FIGS. 3 and 4, the fuel supply pipe 34 is opposed to and close to the lower surface of the intermediate bent portion 14 c. A fuel conduit 39 connected to a discharge port of a fuel pump 38 (see FIG. 1) disposed in the fuel tank 6 is connected to one end of the fuel supply pipe 34, and an injection pressure regulator 40 is connected to the other end. Are concatenated.
[0017]
As shown in FIG. 4, the injection pressure regulator 40 includes a regulator body 42 having a fuel chamber 41 communicating with the fuel supply pipe 34, a cap 44 having a boost negative pressure chamber 43 and coupled to the regulator body 42, And a diaphragm 45 that is sandwiched between the regulator body 42 and the cap 44 and partitions the fuel chamber 41 and the boost negative pressure chamber 43. A valve seat 47 in which a fuel return hole 46 opens is provided at the center of the regulator body 42, and a valve body 48 that can be seated on the valve seat 47 is attached to the center of the diaphragm 45 so as to be able to swing. A valve spring 49 that urges the valve body 48 toward the valve seat 47 through the diaphragm 45 is accommodated in the boost negative pressure chamber 43. The boost negative pressure chamber 43 communicates with the intake pipe 23 via a negative pressure conduit 50, and the fuel return hole 46 communicates with the fuel tank 6 via a fuel return pipe 51. Further, a fuel filter 52 is provided in the fuel chamber 41.
[0018]
Next, the operation of the first embodiment will be described.
[0019]
During operation of the engine E, fuel in the fuel tank 6 is pumped into the fuel chamber 41 of the injection pressure regulator 40 through the fuel conduit 39 and the fuel supply pipe 34 by the fuel pump 38, and the fuel pressure causes the valve body 48 to be seated. Acts on the diaphragm 45 in a direction away from the diaphragm 47. On the other hand, the boost negative pressure in the intake pipe 23 is introduced into the boost negative pressure chamber 43 through the negative pressure conduit 50, and this boost negative pressure causes the valve body 48 to act as a valve seat, opposite to the load direction of the valve spring 49. Acts on the diaphragm 45 in a direction away from the diaphragm 47. Therefore, when the load on the engine E is small and the boost negative pressure is high, the valve opening pressure of the valve body 48 by the fuel in the fuel chamber 41 is low, and when the load on the engine E is large and the boost negative pressure is low, the fuel chamber The valve opening pressure of the valve body 48 due to the fuel 41 becomes high, and when the valve body 48 is opened, it returns to the fuel tank 6 through the fuel return pipe 51 that has flowed out of the fuel chamber 41 into the fuel return hole 46. Thus, the fuel pressure in the fuel supply pipe 34 is controlled according to the load of the engine E.
[0020]
Thus, during the intake stroke of the engine E, when the intake valve 15 is opened and the fuel injection valve 30 is excited and opened, the pressure-controlled fuel is injected from the valve 30 as described above. Since 31 is directed toward the downstream end of the intake port 11 opened by the intake valve 15, the intake port 11 is efficiently sucked into the fuel chamber 41 together with the intake air filtered by the air cleaner 10 and flowing down the intake passage 12. Therefore, there is little loss due to adhesion of the injected fuel 31 to the pipe wall, which can contribute to reduction in fuel consumption. In addition, the intake passage 12 connecting the air cleaner 10 and the intake port 11 is inclined backward and downward as a whole because the horn pipe 22 and the intake pipe 23 are bent at an obtuse angle. Can contribute to the improvement of the output.
[0021]
By the way, the fuel injection valve 30 is erected on the upper side wall of the bent portion of the intake pipe 23, and is arranged so that at least the upper end of the valve 30 is in front of the midpoint 32 of the outer curve at the intermediate bent portion 14c of the backbone Ff. Therefore, without changing the layout of the conventional vehicle body frame F and engine E, the fuel injection valve is provided on the upper wall of the intake passage 12 by rationally using the narrow space between the backbone Ff and the intake passage 12. 30 can be mounted, so that fuel can be injected from the valve 30 toward the intake port 11, particularly toward the downstream end, as described above.
[0022]
Further, since the fuel supply pipe 34 connected to the upper end of the fuel injection valve 30 is disposed horizontally and orthogonal to the axis of the backbone Ff, the fuel supply pipe 34 is disposed in a narrow space between the backbone Ff and the fuel injection valve 30. It can be easily arranged without being interfered by the backbone Ff.
[0023]
Next, a second embodiment of the present invention will be described with reference to FIG.
[0024]
In the second embodiment, the fuel supply pipe 34 connected to the upper end of the fuel injection valve 30 is arranged in a rearward downward slope along the lower side surface of the backbone Ff, and the backbone Ff is connected to the rear end of the fuel supply pipe 34. The configuration is the same as that of the previous embodiment except that the fuel conduit 39 arranged along the line and the regulator body 42 of the injection pressure regulator 40 are integrally connected to the front end of the fuel supply pipe 34. In the figure, parts corresponding to those of the previous embodiment are denoted by the same reference numerals, and description thereof is omitted.
[0025]
Thus, since the fuel supply pipe 34 is disposed rearwardly and downwardly along the lower side surface of the backbone Ff, the fuel supply pipe 34 is placed in a narrow space between the backbone Ff and the fuel injection valve 30 in this case as well. Can be easily arranged without being interfered by. Further, since the fuel conduit 39 connected to the rear end of the fuel supply pipe 34 is disposed along the backbone Ff, the fuel conduit 39 does not protrude greatly from the backbone Ff, and interference with other objects can be easily performed. It can be avoided.
[0026]
The present invention is not limited to the embodiments described above, and various design changes can be made without departing from the scope of the invention.
[0027]
【The invention's effect】
As described above, according to the first aspect of the present invention, the engine that causes the cylinder block and the cylinder head to protrude substantially horizontally toward the front is attached to the rear frame below the backbone, and the intake air that opens to the upper surface of the cylinder head. A throttle body having an intake passage that is connected to a port and an air cleaner attached to the front end portion of the backbone, and that is opened and closed by a throttle valve and extends obliquely downward and downward along the front half straight portion of the backbone; An intake pipe having an obtuse bend and connecting between the intake passage and the intake port; and an intake pipe portion of the intake passage and a portion of the intake passage downstream from the rotation center of the throttle valve; In the vehicle side view, a lower extension line of the boundary line of the front half straight part and the intermediate bending part, and a boundary line of the rear half straight part and the intermediate bending part It is arranged in a region sandwiched by a lower extension line, and the midpoint of the outer curve in the intermediate bending portion of the backbone is located on the front side of the upper extension surface of the mating surface of the cylinder block and the cylinder head, wherein the upper wall of the bent portion of the intake pipe, the upright fuel injection valve capable of injecting fuel downwardly into the intake port, the valve upper end portion of and valve fits into the area as viewed from the side of the vehicle Is located in front of the middle point, and a fuel supply pipe fitted to the upper end portion is opposed to and close to the lower surface of the intermediate bent portion, and fuel is supplied from the fuel injection valve toward the intake port of the cylinder head. since so as to injection, without changing the layout of a conventional vehicle body frame and the engine, reasonably utilize the narrow space between the backbone and the intake passage, the bent portion of the intake passage (in particular, the intake pipe A fuel injection valve can be attached to the upper side wall of the cylinder, and therefore fuel can be injected from the fuel injection valve toward the intake port of the cylinder head, thereby reducing loss due to fuel adhering to the pipe wall. it can.
[Brief description of the drawings]
FIG. 1 is a side view of a backbone type motorcycle showing a first embodiment of the present invention.
FIG. 2 is a side view around the engine and the intake system of the motorcycle.
FIG. 3 is an enlarged side view around a fuel injection device in the intake system of FIG. 2;
4 is a view taken in the direction of arrow 4 in FIG. 3;
FIG. 5 is a side view similar to FIG. 3, showing a second embodiment of the present invention.
[Explanation of symbols]
E ... Engine F ... Body frame Ff ... Backbone Fr ... Rear frame Y ... Backbone axis 1 ... Head pipe 2 ... Front fork 3 Rear fork 8 Cylinder block 9 Cylinder head 10 Air cleaner 11 Intake port 12 Intake passage 14a・ First half straight portion 14b ・ ・ ・ Second half straight portion 14c ・ ・ ・ Intermediate bent portion 23 ・ ・ ・ ・ ・ ・ Intake pipe 24 ・ ・ ・ ・ Throttle body 24a ・ ・ ・ Intake passage 25 ・ ・ ・ ・ Throttle valve
25a: Throttle valve rotation center 30 ... Fuel injection valve 32 ... Middle point 34 of the outer curve at the intermediate bend ... Fuel supply pipe 39 ... Fuel conduit 40 ... ..Injection pressure regulator

Claims (1)

フロントフォーク(2)を支持するヘッドパイプ(1)から後方下向きに傾斜して直線状に延びる前半直線部(14a)、この前半直線部(14a)より緩傾斜で後方下向きに直線状に延びる後半直線部(14b)及び両直線部(14a,14b)間を連続的に連結する車両側面視で円弧状の中間屈曲部(14c)からなるバックボーン(Ff)と、このバックボーン(Ff)の後端に一体に結合してリアフォーク(3)を支持するリアフレーム(Fr)とで車体フレーム(F)を構成し、そのリアフレーム(Fr)に、前記バックボーン(Ff)の下方でシリンダブロック(8)及びシリンダヘッド(9)を前方に向かって略水平に突出させるエンジン(E)を取付け、前記シリンダヘッド(9)の上面に開口する吸気ポート(11)と、前記バックボーン(Ff)の前端部に取付けたエアクリーナ(10)との間を、前記バックボーン(Ff)の下方に配置されて概ね後方下向きに傾斜する吸気通路(12)を介して接続し、この吸気通路(12)の中間部にスロットル弁(25)を回動可能に設けた、バックボーン型自動二輪車において、
前記吸気通路(12)が、前記スロットル弁(25)により開閉されて前記前半直線部(14a)に沿って後下がりに傾斜して直線状に延びる吸気道(24a)を有するスロットルボディ(24)と、鈍角の屈曲部を有して前記吸気道(24a)及び吸気ポート(11)間を接続する吸気管(23)とを備えると共に、前記吸気通路(12)のうちの吸気管(23)部分と前記吸気道(24a)のスロットル弁(25)の回動中心(25a)より下流側部分とを、車両側面視で前記前半直線部(14a)及び前記中間屈曲部(14c)の境界線の下方延長線と、前記後半直線部(14b)及び前記中間屈曲部(14c)の境界線の下方延長線とで挟まれた領域に配置し、
前記バックボーン(Ff)の中間屈曲部(14c)における外側曲線の中点(32)が、前記シリンダブロック(8)及びシリンダヘッド(9)の合わせ面の上方延長面よりも前方側に位置しており、
前記吸気管(23)の前記屈曲部の上側壁には吸気ポート(11)内に燃料を下向きに噴射し得る燃料噴射弁(30)を立設すると共に、該弁(30)が車両側面視で前記領域に収まり且つ該弁(30)の上端が前記中点(32)より前方に在って、前記上端部に嵌合した燃料供給管(34)が前記中間屈曲部(14c)の下面と対向近接しており、該燃料噴射弁(30)から前記シリンダヘッド(9)の吸気ポート(11)に向かって燃料を噴射するようにしたことを特徴とする、バックボーン型自動二輪車における燃料噴射装置。
A front half straight portion (14a) that extends downward and straight from the head pipe (1) that supports the front fork (2), and a second half that extends downward and straight downward from the front half straight portion (14a). A backbone (Ff) comprising an arcuate intermediate bent portion (14c) in a vehicle side view continuously connecting the straight portion (14b) and both straight portions (14a, 14b), and a rear end of the backbone (Ff) A vehicle body frame (F) is constituted by a rear frame (Fr) that is integrally coupled to the rear fork (3) and supports the rear fork (3). A cylinder block (8) is formed on the rear frame (Fr) below the backbone (Ff). ) And an engine (E) that causes the cylinder head (9) to protrude substantially horizontally toward the front, and an intake port (11) that opens to the upper surface of the cylinder head (9); The air cleaner (10) attached to the front end of the backbone (Ff) is connected via an intake passage (12) disposed below the backbone (Ff) and inclined substantially rearward and downward. In the backbone type motorcycle in which the throttle valve (25) is rotatably provided in the middle part of the passage (12),
The throttle body (24) having an intake passage (24a) that is opened and closed by the throttle valve (25) and is inclined downward and downward along the front half straight portion (14a) and extends linearly. And an intake pipe (23) having an obtuse bend and connecting the intake passage ( 24a) and the intake port (11), and an intake pipe (23) in the intake passage (12 ) A boundary between the front half straight portion (14a) and the intermediate bent portion (14c) between the portion and the downstream portion of the intake passage (24a) from the rotation center (25a ) of the throttle valve (25) in a vehicle side view Arranged in a region sandwiched between a lower extension line of the line and a lower extension line of the boundary line of the second half straight portion (14b) and the intermediate bent portion (14c),
The midpoint (32) of the outer curve of the intermediate bent portion (14c) of the backbone (Ff) is located in front of the upper extension surface of the mating surfaces of the cylinder block (8) and the cylinder head (9). And
Wherein the upper wall of the bent portion of the intake pipe (23), a fuel injection valve capable of injecting fuel into the downward (30) while standing on the intake port (11), the valve (30) is a vehicle side the upper end of and valve (30) fits into the area is in the front of the midpoint (32) in view, the fuel supply pipe fitted to the upper end (34) of the intermediate bent portion (14c) the lower surface faces close, characterized by being adapted to inject fuel toward the intake ports of the cylinder head (9) from the fuel injection valve (30) (11), in the backbone-type motorcycle Fuel injection device.
JP05469599A 1999-03-02 1999-03-02 Fuel injection device for backbone type motorcycle Expired - Fee Related JP4555413B2 (en)

Priority Applications (8)

Application Number Priority Date Filing Date Title
JP05469599A JP4555413B2 (en) 1999-03-02 1999-03-02 Fuel injection device for backbone type motorcycle
ARP000100851A AR017992A1 (en) 1999-03-02 2000-02-28 FUEL INJECTION DEVICE FOR MOTORCYCLE WITH DORSAL FRAME.
MYPI20000779A MY130219A (en) 1999-03-02 2000-02-29 Fuel injection device for motorcycle with backbone frame
BRPI0000984-9A BR0000984B1 (en) 1999-03-02 2000-03-01 Motorcycle fuel injection device with main support frame.
CO00015090A CO5241338A1 (en) 1999-03-02 2000-03-02 FUEL INJECTION DEVICE FOR MOTORCYCLE WITH DORSAL FRAME
IDP20000155A ID24988A (en) 1999-03-02 2000-03-02 FUEL INJECTION PIRANTI FOR MOTORCYCLE WITH BONE FRAME
CN00103687A CN1121552C (en) 1999-03-02 2000-03-02 Fuel injector for motorcycle
KR1020000010488A KR100359702B1 (en) 1999-03-02 2000-03-02 Fuel Injection Device for Backbone Type Autobicycle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP05469599A JP4555413B2 (en) 1999-03-02 1999-03-02 Fuel injection device for backbone type motorcycle

Related Child Applications (3)

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JP2007160730A Division JP4673870B2 (en) 2007-06-18 2007-06-18 Fuel injection device for backbone type motorcycle
JP2008144454A Division JP5180686B2 (en) 2008-06-02 2008-06-02 Fuel injection device for backbone type motorcycle
JP2010101240A Division JP5180988B2 (en) 2010-04-26 2010-04-26 Fuel injection device for backbone type motorcycle

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JP2000249028A JP2000249028A (en) 2000-09-12
JP2000249028A5 JP2000249028A5 (en) 2006-04-27
JP4555413B2 true JP4555413B2 (en) 2010-09-29

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MY130219A (en) 2007-06-29
BR0000984A (en) 2000-09-26
JP2000249028A (en) 2000-09-12
KR100359702B1 (en) 2002-11-04
CN1265449A (en) 2000-09-06
CN1121552C (en) 2003-09-17
ID24988A (en) 2000-09-07
CO5241338A1 (en) 2003-01-31

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