JP6338181B2 - Fuel supply device - Google Patents

Fuel supply device Download PDF

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JP6338181B2
JP6338181B2 JP2014069877A JP2014069877A JP6338181B2 JP 6338181 B2 JP6338181 B2 JP 6338181B2 JP 2014069877 A JP2014069877 A JP 2014069877A JP 2014069877 A JP2014069877 A JP 2014069877A JP 6338181 B2 JP6338181 B2 JP 6338181B2
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fuel
cylinder
gap
regulator
pipe
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JP2015190424A (en
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敏彦 内藤
敏彦 内藤
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Keihin Corp
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本発明は,主としてエンジンの燃料噴射弁に燃料を供給する燃料供給装置に関し,特に,一端部に燃料取り出し管,他端部に燃料タンクに取り付けられる取り付けフランジを有して燃料タンクの開口部を閉鎖するベース部を備える合成樹脂製の第1ハウジングと,燃料ポンプを保持して燃料タンク内に配置される第2ハウジングとを互いに連結してなる燃料供給装置の改良に関する。   The present invention relates to a fuel supply device that mainly supplies fuel to a fuel injection valve of an engine, and in particular, has a fuel take-out pipe at one end and a mounting flange attached to a fuel tank at the other end, and has an opening in the fuel tank. The present invention relates to an improvement in a fuel supply apparatus in which a first housing made of a synthetic resin having a base portion to be closed and a second housing which is held in a fuel tank and holds a fuel pump are connected to each other.

かゝる燃料供給装置は,特許文献1に開示されるように既に知られている。   Such a fuel supply apparatus is already known as disclosed in Japanese Patent Application Laid-Open No. H10-228707.

特開2009−235942号公報JP 2009-235942 A

特許文献1に開示されるものでは,燃料タンクに取り付けられる第1ハウジングに,燃料ポンプの吐出ポートの外周に嵌合する吐出ポート受容筒と,それと平行に延びてプレッシャレギュレータを保持するレギュレータ保持筒と,このレギュレータ保持筒を,有底の空隙を介して囲繞する補強筒と,前記空隙を横切って前記レギュレータ保持筒及び補強筒間を連結する放射状配置の複数のリブとを一体に形成している。このものでは,レギュレータ保持筒のプレッシャレギュレータに対する保持力を,補強筒及びリブにより強化すると共に,プレッシャレギュレータで発生する弁体の開閉振動音を前記空隙で吸収することができる。   In the technique disclosed in Patent Document 1, a first housing attached to a fuel tank has a discharge port receiving cylinder fitted to the outer periphery of a discharge port of a fuel pump, and a regulator holding cylinder extending parallel to the pressure holding cylinder. And a reinforcing cylinder that surrounds the regulator holding cylinder via a bottomed gap, and a plurality of radially arranged ribs that connect the regulator holding cylinder and the reinforcing cylinder across the gap. Yes. In this configuration, the holding force of the regulator holding cylinder with respect to the pressure regulator can be strengthened by the reinforcing cylinder and the rib, and the opening / closing vibration sound of the valve body generated by the pressure regulator can be absorbed by the gap.

しかしながら,レギュレータ保持筒及び補強筒は,燃料タンクに取り付けられる第1ハウジングに形成される関係から,リブ相互間の前記空隙を,燃料の流通を許容する貫通孔とすることはできない。このため,前記空隙は有底となり,その底部側には,多くの駄肉が存在することになり,それは第1ハウジングに引けや巣等の成形不良を発生させる一因となる虞がある。   However, since the regulator holding cylinder and the reinforcing cylinder are formed in the first housing attached to the fuel tank, the gap between the ribs cannot be a through hole that allows fuel to flow. For this reason, the gap has a bottom, and a lot of meat is present on the bottom side, which may cause molding defects such as shrinkage and nest in the first housing.

本発明は,かゝる事情に鑑みてなされたもので,レギュレータ保持筒及び補強筒周りの駄肉を少なくして,ハウジングの成形不良を無くするようにした前記燃料供給装置を提供することを目的とする。   The present invention has been made in view of such circumstances, and provides the fuel supply device described above, in which the waste around the regulator holding cylinder and the reinforcing cylinder is reduced and the molding failure of the housing is eliminated. Objective.

上記目的を達成するために,本発明は,一端部に燃料取り出し管,他端部に燃料タンクに取り付けられる取り付けフランジを有して燃料タンクの開口部を閉鎖するベース部を備える合成樹脂製の第1ハウジングと,燃料ポンプを保持して燃料タンク内に配置される第2ハウジングとを互いに連結してなる燃料供給装置において,前記第2ハウジングには,前記燃料ポンプの吐出ポートの外周に嵌合する吐出ポート受容筒と,この吐出ポート受容筒と平行に延びてプレッシャレギュレータを保持するレギュレータ保持筒と,このレギュレータ保持筒を空隙を介して囲繞する補強筒と,該空隙を通って前記吐出ポート受容筒及びレギュレータ保持筒間を連通する連通燃料管と,前記空隙を横切って前記レギュレータ保持筒及び補強筒間を連結する複数のリブとを一体に形成し,前記空隙の,前記レギュレータ保持筒の両端面側を開放し,これら両端面側に向いた前記連通燃料管の周縁部にも前記空隙を配設したことを第1の特徴とする。 In order to achieve the above object, the present invention is made of a synthetic resin having a base for closing a fuel tank opening having a fuel take-out pipe at one end and a mounting flange attached to the fuel tank at the other end. In the fuel supply device in which the first housing and the second housing that holds the fuel pump and is disposed in the fuel tank are connected to each other, the second housing is fitted on the outer periphery of the discharge port of the fuel pump. A discharge port receiving cylinder, a regulator holding cylinder that extends parallel to the discharge port receiving cylinder and holds the pressure regulator, a reinforcing cylinder that surrounds the regulator holding cylinder via a gap, and the discharge cylinder through the gap. A communication fuel pipe that communicates between the port receiving cylinder and the regulator holding cylinder, and the regulator holding cylinder and the reinforcing cylinder are connected across the gap. And the number of ribs formed integrally, said air gap, said both end surface side of the regulator holding tube was opened and also disposing the air gap on the periphery of the communicating fuel pipe facing these both end faces Is the first feature.

また本発明は,第1の特徴に加えて,前記リブ相互間の前記空隙を,前記レギュレータ保持筒の軸方向に沿う貫通孔としたことを第2の特徴とする。   In addition to the first feature, the second feature of the present invention is that the gap between the ribs is a through hole along the axial direction of the regulator holding cylinder.

本発明の第1の特徴によれば,第2ハウジングに,互いに平行な吐出ポート受容筒,レギュレータ保持筒,補強筒及びリブを一体に形成したことで,これらを二つ割りの金型により容易に成形することができる。またレギュレータ保持筒及び補強筒間の空隙は,レギュレータ保持筒の両端面側を開放し,これら両端面側に向いた前記連通燃料管の周縁部にも空隙を配設しているので,レギュレータ保持筒,補強筒及び連通燃料管周りの駄肉が減少し,第2ハウジングの成形不良を無くすることができる。しかもレギュレータ保持筒のプレッシャレギュレータに対する保持力は,補強筒及びリブにより強化される。またレギュレータ保持筒は,その略全長にわたり空隙により覆われることになるので,プレッシャレギュレータにおける弁体の開閉振動音を,上記空隙により効果的に吸収することができる。 According to the first aspect of the present invention, the discharge port receiving cylinder, the regulator holding cylinder, the reinforcing cylinder and the rib which are parallel to each other are integrally formed on the second housing, so that these can be easily formed by a split mold. can do. In addition, the gap between the regulator holding cylinder and the reinforcing cylinder is open at both end faces of the regulator holding cylinder, and a gap is also provided at the peripheral edge of the communication fuel pipe facing the both end faces. The waste around the cylinder, the reinforcing cylinder and the communication fuel pipe is reduced, and the molding failure of the second housing can be eliminated. Moreover, the holding force of the regulator holding cylinder with respect to the pressure regulator is reinforced by the reinforcing cylinder and the rib. Further, since the regulator holding cylinder is covered with a gap over substantially the entire length thereof, the opening / closing vibration sound of the valve body in the pressure regulator can be effectively absorbed by the gap.

本発明の第2の特徴によれば,リブ及び空隙の成形が容易となるのみならず,第2ハウジングの成形後の目視検査において視線が空隙の内面全体に及び,成形不良を容易に発見することができる。   According to the second feature of the present invention, not only the molding of the rib and the gap is facilitated, but also the visual line inspection after the molding of the second housing covers the entire inner surface of the gap and easily finds a molding defect. be able to.

本発明の実施形態に係る燃料供給装置の斜視図。The perspective view of the fuel supply apparatus which concerns on embodiment of this invention. 同燃料供給装置の分解斜視図。The disassembled perspective view of the fuel supply apparatus. 図1の3矢視図。FIG. 3 is a view taken in the direction of arrow 3 in FIG. 図3の4−4断面図。4-4 sectional drawing of FIG. 図3の5−5線断面図。FIG. 5 is a sectional view taken along line 5-5 of FIG. 図1の6−6線断面図。FIG. 6 is a sectional view taken along line 6-6 in FIG. 図4の7−7線断面図。FIG. 7 is a cross-sectional view taken along line 7-7 in FIG. 燃料タンク底板の開口部への燃料供給装置の挿入要領説明図。Explanatory drawing of the insertion procedure of the fuel supply apparatus to the opening part of a fuel tank bottom plate.

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

先ず,図1〜図6において,車両に搭載される燃料タンクTの底板Ta(図4参照)には,燃料タンクT内の燃料をエンジンの燃料噴射弁(図示せず)に供給する本発明の燃料供給装置Dが取り付けられる。   First, in FIG. 1 to FIG. 6, the present invention supplies the fuel in the fuel tank T to the fuel injection valve (not shown) of the engine on the bottom plate Ta (see FIG. 4) of the fuel tank T mounted on the vehicle. The fuel supply device D is attached.

この燃料供給装置Dは,燃料タンクTの底板Taに取り付けられる合成樹脂製の第1ハウジング1と,この第1ハウジング1に連結されて燃料タンクT内に配置される合成樹脂製の第2ハウジング2と,この両ハウジング1,2間で保持される燃料ポンプ4とよりなっている。   The fuel supply device D includes a first housing 1 made of synthetic resin attached to a bottom plate Ta of a fuel tank T, and a second housing made of synthetic resin connected to the first housing 1 and disposed in the fuel tank T. 2 and a fuel pump 4 held between the housings 1 and 2.

第1ハウジング1には,下部に燃料取り出し管5,上部に燃料タンクTの底板Taの開口部Tb周りに取り付けられる取り付けフランジ6を有して上記開口部Tbを閉鎖する有底円筒状のベース部7と,このベース部7の底部より起立する断面円弧状の一対のポンプ保持壁8と,これらポンプ保持壁8の下部を囲むように取り付けフランジ6の内周縁部より起立して,ポンプ保持壁8との間に燃料貯留部9を画成する囲い壁10と,前記燃料取り出し管5と連通しながらベース部7の底部より起立する下部下降燃料管11とが一体に成形され,下部下降燃料管11は,囲い壁10の内周部に一体に接続される。燃料貯留部9は,囲い壁10の切欠き12(図1及び第2参照)を通して燃料タンクT内の燃料を受け入れるようになっている。燃料取り出し管5は,図示しないエンジンの燃料噴射弁に燃料を供給することができる。   The first housing 1 has a bottomed cylindrical base having a fuel take-out pipe 5 at the bottom and a mounting flange 6 attached around the opening Tb of the bottom plate Ta of the fuel tank T at the top to close the opening Tb. And a pair of arc-shaped pump holding walls 8 rising from the bottom of the base 7, and an inner peripheral edge of the mounting flange 6 so as to surround the lower part of the pump holding walls 8 to hold the pump An enclosure wall 10 that defines a fuel reservoir 9 between the wall 8 and a lower descending fuel pipe 11 that is in communication with the fuel take-out pipe 5 and rises from the bottom of the base part 7 are formed integrally. The fuel pipe 11 is integrally connected to the inner peripheral portion of the enclosure wall 10. The fuel reservoir 9 receives the fuel in the fuel tank T through the notch 12 (see FIGS. 1 and 2) of the enclosure wall 10. The fuel take-out pipe 5 can supply fuel to a fuel injection valve of an engine (not shown).

一対のポンプ保持壁8は,円筒体の互いに対向する側壁を構成するように配置され,これらポンプ保持壁8の内周に燃料ポンプ4が上方より嵌装される。一方のポンプ保持壁8の下部内側面には,ベース部7の底部より起立して燃料ポンプ4の底部を支承する底部ストッパ13(図6参照)が連設される。   The pair of pump holding walls 8 are arranged so as to constitute mutually opposite side walls of the cylindrical body, and the fuel pump 4 is fitted on the inner periphery of these pump holding walls 8 from above. A bottom stopper 13 (see FIG. 6) that stands from the bottom of the base portion 7 and supports the bottom of the fuel pump 4 is continuously provided on the lower inner surface of the one pump holding wall 8.

燃料ポンプ4は,その下端面より吸入ポート15を突出させており,この吸入ポート15にT字状の吸入管16が接続され,この吸入管16の入口には,前記燃料貯留部9に収容される断面円弧状のフィルタ17が接続される。   The fuel pump 4 has a suction port 15 projecting from its lower end surface, and a T-shaped suction pipe 16 is connected to the suction port 15. The inlet of the suction pipe 16 is accommodated in the fuel reservoir 9. A filter 17 having a circular arc cross section is connected.

図5において,燃料ポンプ4の下端面には,燃料ポンプ4内で発生するベーパを排出するベーパ排出管18が接続される。このベーパ排出管18は,燃料ポンプ4の側面に沿って上方に延びており,その上端部には,上端を開放した筒状フィルタ19が付設される。またベーパ排出管18は,筒状フィルタ19の下方に大径部18aを一体に備えており,この大径部18aにはオリフィス20が設けられている。   In FIG. 5, a vapor discharge pipe 18 that discharges vapor generated in the fuel pump 4 is connected to the lower end surface of the fuel pump 4. The vapor discharge pipe 18 extends upward along the side surface of the fuel pump 4, and a cylindrical filter 19 having an open upper end is attached to an upper end portion thereof. The vapor discharge pipe 18 is integrally provided with a large diameter portion 18a below the cylindrical filter 19, and an orifice 20 is provided in the large diameter portion 18a.

図3,図4及び図6において,前記第2ハウジング2には,断面円弧状の一対の嵌合壁22と,その両嵌合壁22の一側部同士を接続する吐出ポート受容筒23と,円筒状のレギュレータ保持筒24と,このレギュレータ保持筒24を,その略全長にわたり空隙25を介して囲繞しながら両嵌合壁22の他側部同士を接続する円筒状の補強筒26と,前記空隙25を横切ってレギュレータ保持筒24及び補強筒26間を連結する放射状配置の複数のリブ27と,吐出ポート受容筒23の一側部に接続される上部下降燃料管28と,この上部下降燃料管28の一側部に接続されるカバー筒29とが一体に形成される。上部下降燃料管28及びレギュレータ保持筒24は,吐出ポート受容筒23の両側に配置され,これら三者23,24,28を接続するように直線状に且つ水平に配置される連通燃料管30が第2ハウジング2に一体に形成される。この連通燃料管30の,レギュレータ保持筒24側の端部には,補強筒26に連結した,水平方向に長辺を向けた長方形のボス31が連設されており,このボス31から挿入される中子ピンによって,レギュレータ保持筒24,吐出ポート受容筒23及び上部下降燃料管28の三者の内部を連通させる連通孔30aが連通燃料管30の内部に形成される。   3, 4, and 6, the second housing 2 includes a pair of fitting walls 22 having a circular arc cross section, and a discharge port receiving cylinder 23 that connects one side portions of both the fitting walls 22. A cylindrical regulator holding cylinder 24, and a cylindrical reinforcing cylinder 26 that connects the other side portions of the fitting walls 22 while enclosing the regulator holding cylinder 24 through a gap 25 over substantially the entire length thereof; A plurality of radially arranged ribs 27 connecting the regulator holding cylinder 24 and the reinforcing cylinder 26 across the gap 25, an upper descending fuel pipe 28 connected to one side of the discharge port receiving cylinder 23, and the upper descending A cover cylinder 29 connected to one side portion of the fuel pipe 28 is integrally formed. The upper descending fuel pipe 28 and the regulator holding cylinder 24 are arranged on both sides of the discharge port receiving cylinder 23, and a communication fuel pipe 30 arranged linearly and horizontally so as to connect these three members 23, 24, 28 is provided. It is formed integrally with the second housing 2. A rectangular boss 31, which is connected to the reinforcing cylinder 26 and has a long side in the horizontal direction, is connected to the end of the communication fuel pipe 30 on the regulator holding cylinder 24 side, and is inserted from the boss 31. A communication hole 30 a is formed in the communication fuel pipe 30 for communicating the inside of the regulator holding cylinder 24, the discharge port receiving cylinder 23, and the upper descending fuel pipe 28.

上記中子ピンが引き出された連通孔30aの,前記ボス31における開口部は,外周にシール部材33を装着した合成樹脂製の栓体32により閉鎖される。   The opening in the boss 31 of the communication hole 30a from which the core pin is drawn out is closed by a synthetic resin plug body 32 having a seal member 33 mounted on the outer periphery.

図7に示すように,この栓体32の頭部には支持板35が形成されており,この支持板35の両端から,栓体32と平行に延びて栓体32の両側に配置される一対の弾性フック36が延出している。一方,前記ボス31には,前記一対の弾性フック36が貫通し得る一対の通孔37と,これら通孔37の奥に位置していて前記弾性フック36が係合し得る係止爪38とが設けられる。   As shown in FIG. 7, a support plate 35 is formed on the head of the plug body 32, and extends from both ends of the support plate 35 in parallel with the plug body 32 and arranged on both sides of the plug body 32. A pair of elastic hooks 36 extend. On the other hand, the boss 31 has a pair of through-holes 37 through which the pair of elastic hooks 36 can pass, and a locking claw 38 that is located at the back of the through-holes 37 and can be engaged with the elastic hooks 36. Is provided.

而して,栓体32を連通孔30aの開口部に嵌合すると共に,弾性フック36を通孔37に挿入して栓体32を押し込むと,弾性フック36が係止爪38に係合することにより,栓体32はボス31に固定され,シール部材33を連通孔30aの内周面に密接させた状態に保持される。上記弾性フック36及び係止爪38により第2スナップフィット機構55が構成される。   Thus, when the plug body 32 is fitted into the opening of the communication hole 30 a and the elastic hook 36 is inserted into the through hole 37 and the plug body 32 is pushed in, the elastic hook 36 engages with the locking claw 38. Thus, the plug body 32 is fixed to the boss 31 and is held in a state in which the seal member 33 is in close contact with the inner peripheral surface of the communication hole 30a. The elastic hook 36 and the locking claw 38 constitute a second snap fit mechanism 55.

図3及び図6に示すように,一対の嵌合壁22は,円筒体の互いに対向する側壁を構成するように配置され,その下部を燃料ポンプ4の上部の小径部4aの外周に嵌合すると共に,前記ポンプ保持壁8の内周に嵌合する。そしてポンプ保持壁8及び嵌合壁22は,協働して燃料ポンプ4を保持する。   As shown in FIGS. 3 and 6, the pair of fitting walls 22 are arranged so as to constitute mutually opposite side walls of the cylindrical body, and the lower part thereof is fitted to the outer periphery of the small diameter part 4 a of the upper part of the fuel pump 4. At the same time, it is fitted to the inner periphery of the pump holding wall 8. The pump holding wall 8 and the fitting wall 22 hold the fuel pump 4 in cooperation.

図4に示すように,燃料ポンプ4は,その上端面より吐出ポート43を突出させており,この吐出ポート43が前記吐出ポート受容筒23の内周にシール部材44を介して嵌合される。また上部下降燃料管28は,前記下部下降燃料管11の上端部にシール部材45を介して嵌合される。したがって,燃料ポンプ4の吐出ポート43から吐出される燃料は,連通孔30aから上部下降燃料管28及び下部下降燃料管11を通して燃料取り出し管5へと供給される。   As shown in FIG. 4, the fuel pump 4 has a discharge port 43 protruding from its upper end surface, and this discharge port 43 is fitted to the inner periphery of the discharge port receiving cylinder 23 via a seal member 44. . The upper descending fuel pipe 28 is fitted to the upper end of the lower descending fuel pipe 11 via a seal member 45. Therefore, the fuel discharged from the discharge port 43 of the fuel pump 4 is supplied to the fuel take-out pipe 5 through the upper down fuel pipe 28 and the lower down fuel pipe 11 from the communication hole 30a.

またレギュレータ保持筒24の内周には,プレッシャレギュレータ48の外筒48aが圧入され,そしてレギュレータ保持筒24の下端部を内方にかしめることにより,その外筒48aは固定される。このプレッシャレギュレータ48は,燃料ポンプ4の吐出ポート43から連通孔30aに吐出された燃料の余剰圧力分を燃料タンクT内に放出して,燃料取り出し管5から燃料噴射弁に供給する燃料圧力を所定値に調整するようになっている。   An outer cylinder 48a of the pressure regulator 48 is press-fitted into the inner circumference of the regulator holding cylinder 24, and the lower cylinder 48a is fixed by caulking the lower end portion of the regulator holding cylinder 24 inward. The pressure regulator 48 releases the excess pressure of the fuel discharged from the discharge port 43 of the fuel pump 4 into the communication hole 30a into the fuel tank T, and supplies the fuel pressure supplied from the fuel take-out pipe 5 to the fuel injection valve. It is adjusted to a predetermined value.

図3及び図5に示すように,カバー筒29は,前記ベーパ排出管18の筒状フィルタ19を覆いながら大径部18aの外周に嵌合される。而して,燃料ポンプ4からベーパ排出管18に排出されたベーパは,筒状フィルタ19又はその上方開口部からカバー筒29に移り,大径部18aのオリフィス20を通して燃料タンクT内に排出される。ベーパ排出管18内が負圧になった場合には,燃料タンクT内の燃料がオリフィス20からカバー筒29内に或るレベルまで流入し,筒状フィルタ19で濾過されて燃料ポンプ4に吸入されることになる。   As shown in FIGS. 3 and 5, the cover cylinder 29 is fitted to the outer periphery of the large diameter portion 18 a while covering the cylindrical filter 19 of the vapor discharge pipe 18. Thus, the vapor discharged from the fuel pump 4 to the vapor discharge pipe 18 moves from the cylindrical filter 19 or its upper opening to the cover cylinder 29 and is discharged into the fuel tank T through the orifice 20 of the large diameter portion 18a. The When the pressure in the vapor discharge pipe 18 becomes negative, the fuel in the fuel tank T flows from the orifice 20 into the cover cylinder 29 to a certain level, is filtered by the cylindrical filter 19 and is sucked into the fuel pump 4. Will be.

図1〜図3に示すように,前記補強筒26の一側からは,前記ボス31の一側に隣接するセンサ支持腕49が水平に張り出している。このセンサ支持腕49の先端部には液面センサ50が取り付けられ,この液面センサ50のロータ50aには,燃料タンクT内の燃料液面に浮かべるフロート51を先端部で支持する揺動アーム52が連結される。而して,燃料タンクTへの燃料補給やエンジンでの燃料消費により,燃料タンクT内の燃料液面が昇降すると,それに応じてフロート51が昇降するので,燃料液面のレベル変化が揺動アーム52の揺動角度として液面センサ50に伝達され,液面センサ50は,液面レベル信号を図示しない表示部に出力する。   As shown in FIGS. 1 to 3, a sensor support arm 49 adjacent to one side of the boss 31 projects horizontally from one side of the reinforcing cylinder 26. A liquid level sensor 50 is attached to the tip of the sensor support arm 49, and a swing arm that supports the float 51 floating on the fuel liquid level in the fuel tank T at the tip of the rotor 50a of the liquid level sensor 50. 52 are connected. Thus, when the fuel level in the fuel tank T rises and falls due to fuel replenishment to the fuel tank T and fuel consumption in the engine, the float 51 rises and lowers accordingly, so that the level change of the fuel level fluctuates. The swing angle of the arm 52 is transmitted to the liquid level sensor 50, and the liquid level sensor 50 outputs a liquid level signal to a display unit (not shown).

前記吐出ポート受容筒23,レギュレータ保持筒24,補強筒26,上部下降燃料管28及びカバー筒29は,嵌合壁22と平行に配置される。これにより,嵌合壁22,吐出ポート受容筒23,レギュレータ保持筒24,補強筒26,上部下降燃料管28,カバー筒29及びリブ27は,二つ割りの金型により容易に成形することが可能となる。   The discharge port receiving cylinder 23, the regulator holding cylinder 24, the reinforcing cylinder 26, the upper descending fuel pipe 28 and the cover cylinder 29 are arranged in parallel with the fitting wall 22. As a result, the fitting wall 22, the discharge port receiving cylinder 23, the regulator holding cylinder 24, the reinforcing cylinder 26, the upper descending fuel pipe 28, the cover cylinder 29 and the rib 27 can be easily formed by a split mold. Become.

また図3及び図4に示すように,前記レギュレータ保持筒24及び補強筒26間の空隙25は,レギュレータ保持筒24の両端面側を開放し,これら両端面側に向いた前記連通燃料管30の周縁部にも空隙25を配設している。こうすることで,レギュレータ保持筒24,補強筒26及び連通燃料管30周りの駄肉が減少し,第2ハウジング2の成形不良を無くすることができる。しかもレギュレータ保持筒24のプレッシャレギュレータ48に対する保持力は,補強筒26及びリブ27により強化され,またプレッシャレギュレータ48における弁体の開閉振動音は,レギュレータ保持筒24をその略全長にわたり覆う空隙25により効果的に吸収される。また,その空隙25は,燃料タンクT内の燃料の流通を許容する。 As shown in FIGS. 3 and 4, the gap 25 between the regulator holding cylinder 24 and the reinforcing cylinder 26 opens both ends of the regulator holding cylinder 24, and the communication fuel pipe 30 faces the both ends. An air gap 25 is also provided at the peripheral edge of each. By doing so, the waste around the regulator holding cylinder 24, the reinforcing cylinder 26 and the communication fuel pipe 30 is reduced, and the molding failure of the second housing 2 can be eliminated. Moreover, the holding force of the regulator holding cylinder 24 against the pressure regulator 48 is reinforced by the reinforcing cylinder 26 and the rib 27, and the opening / closing vibration sound of the valve body in the pressure regulator 48 is generated by the gap 25 covering the regulator holding cylinder 24 over substantially the entire length. Effectively absorbed. Further, the air gap 25 allows the fuel in the fuel tank T to flow.

また複数のリブ27相互間の空隙25は,レギュレータ保持筒24の軸方向に沿う貫通孔とされる。したがって,リブ27及び空隙25の成形が容易となるのみならず,第2ハウジング2の成形後の目視検査において視線が空隙25の内面全体に及び,成形不良を容易に発見することができる。   The gaps 25 between the plurality of ribs 27 are through holes along the axial direction of the regulator holding cylinder 24. Therefore, not only the rib 27 and the gap 25 can be easily molded, but also the visual line after the molding of the second housing 2 reaches the entire inner surface of the gap 25 and a molding defect can be easily found.

前記ポンプ保持壁8と前記嵌合壁22とは,複数のスナップフィット機構55を介して相互に連結される。そのスナップフィット機構55について図1〜図3及び図6を参照しながら次に説明する。   The pump holding wall 8 and the fitting wall 22 are connected to each other via a plurality of snap fit mechanisms 55. Next, the snap-fit mechanism 55 will be described with reference to FIGS.

一対のポンプ保持壁8の上端部には,嵌合壁22の外側面に接しながら,嵌合壁22より上方に延びる複数(図示例では一対)の弾性片56がそれぞれ一体に連設される。したがって,二組の弾性片56が燃料ポンプ4の中心軸線を挟んで対向配置されることになり,各弾性片56の上端部には係止孔57が設けられる。各弾性片56は,自己の弾性力に抗して半径方向外方へ撓み得るようになっている。一方,嵌合壁22の外側面には,上記複数の係止孔57に係合し得る複数の係止爪58が一体に突設される。各係止爪58の下面58aは,上方に向かって嵌合壁22の外側面から離れる方向に傾斜する斜面となっており,またその上面58bは水平面となっている。以上によりスナップフィット機構55が構成される。   A plurality (a pair in the illustrated example) of elastic pieces 56 that extend upward from the fitting wall 22 while being in contact with the outer surface of the fitting wall 22 are integrally connected to the upper ends of the pair of pump holding walls 8. . Therefore, the two sets of elastic pieces 56 are arranged opposite to each other with the central axis of the fuel pump 4 interposed therebetween, and a locking hole 57 is provided at the upper end portion of each elastic piece 56. Each elastic piece 56 can be bent radially outward against its own elastic force. On the other hand, a plurality of locking claws 58 that can engage with the plurality of locking holes 57 are integrally projected on the outer surface of the fitting wall 22. The lower surface 58a of each locking claw 58 is an inclined surface that is inclined upward in a direction away from the outer surface of the fitting wall 22, and the upper surface 58b is a horizontal surface. The snap fit mechanism 55 is comprised by the above.

而して,嵌合壁22をポンプ保持壁8の内周及び燃料ポンプ4の外周に嵌合すると共に,吐出ポート受容筒23を燃料ポンプ4の吐出ポート43の外周に嵌合し,また上部下降燃料管28を下部下降燃料管11に嵌合し,さらにカバー筒29をベーパ排出管18の大径部18aに嵌合していくと,各弾性片56は,その上端部を係止爪58の斜面58aに沿って半径方向外方に撓み,嵌合壁22とポンプ保持壁8とで燃料ポンプ4を保持するようになると,係止爪58及び係止孔57が一致し,弾性片56がその弾性力により嵌合壁22の外側面に接するように復帰することで,係止爪58及び係止孔57が自動的に相互に係合することができる。そして,係止孔57の上縁部が係止爪58の水平面に当接することで,係止孔57の係止爪58からの離脱が阻止される。こうして,第1ハウジング1及び第2ハウジング2は,複数のスナップフィット機構55を介して連結される。   Thus, the fitting wall 22 is fitted to the inner circumference of the pump holding wall 8 and the outer circumference of the fuel pump 4, and the discharge port receiving cylinder 23 is fitted to the outer circumference of the discharge port 43 of the fuel pump 4. When the descending fuel pipe 28 is fitted to the lower descending fuel pipe 11 and the cover cylinder 29 is further fitted to the large diameter portion 18a of the vapor discharge pipe 18, each elastic piece 56 has a claw at its upper end. When the fuel pump 4 is held by the fitting wall 22 and the pump holding wall 8 when the fuel pump 4 is bent radially outward along the inclined surface 58a of the 58, the elastic claw 58 and the locking hole 57 are aligned. By returning 56 so as to be in contact with the outer surface of the fitting wall 22 by its elastic force, the locking claw 58 and the locking hole 57 can be automatically engaged with each other. Then, the upper edge portion of the locking hole 57 contacts the horizontal surface of the locking claw 58, so that the locking hole 57 is prevented from being detached from the locking claw 58. Thus, the first housing 1 and the second housing 2 are connected via the plurality of snap fit mechanisms 55.

スナップフィット機構55の係合を解除するには,全ての弾性片56を一斉に半径方向外方へ撓ませて,係止孔57を係止爪58から離脱させればよく,両ハウジング1,2を分離することができる。   In order to release the engagement of the snap-fit mechanism 55, all the elastic pieces 56 may be bent simultaneously outward in the radial direction to disengage the locking holes 57 from the locking claws 58. 2 can be separated.

弾性片56の半径方向外方への撓みを規制すべく,弾性片56の中間部外側面に接する円弧状の一対の規制壁60が第2ハウジング2に一体に形成される。弾性片56の中間部外側面に接する規制壁60は,係止爪58から下方に離間することになるから,弾性片56の半径方向外方への撓みを許容し,スナップフィット機構55の解除を可能にする。その際,一方の規制壁60では,その両端部が前記センサ支持腕49及びカバー筒29に一体に接続され,その中間部がリブ61を介して一方の嵌合壁22に一体に接続される。また他方の規制壁60では,その両端部が前記補強筒26及び上部下降燃料管28に一体に接続され,その中間部がリブ61を介して他方の嵌合壁22に一体に接続される。各規制壁60の内側面60aは,上方に向かって半径方向外方へ行くように傾斜した斜面に形成される。   A pair of arc-shaped regulating walls 60 that are in contact with the outer surface of the intermediate portion of the elastic piece 56 are formed integrally with the second housing 2 in order to restrict the bending of the elastic piece 56 in the radially outward direction. Since the regulating wall 60 in contact with the outer surface of the intermediate portion of the elastic piece 56 is separated downward from the locking claw 58, the elastic piece 56 is allowed to bend outward in the radial direction, and the snap fit mechanism 55 is released. Enable. At that time, one end of the restriction wall 60 is integrally connected to the sensor support arm 49 and the cover tube 29, and an intermediate portion thereof is integrally connected to the one fitting wall 22 via the rib 61. . In the other regulating wall 60, both end portions thereof are integrally connected to the reinforcing cylinder 26 and the upper descending fuel pipe 28, and an intermediate portion thereof is integrally connected to the other fitting wall 22 via a rib 61. The inner side surface 60a of each regulating wall 60 is formed as a slope inclined so as to go outward in the radial direction.

このように,第2ハウジング2に形成した規制壁60により,弾性片56の半径方向外方への撓みを規制するようにしたので,エンジン等から振動を受けても,弾性片56が濫りに半径方向外方に撓むことを抑制し,スナップフィット機構55の係合状態を維持することができる。またスナップフィット機構55の係合を解除すべく,弾性片56を半径方向外方へ撓ませるとき,斜面の無い場合に比して,弾性片56は,規制壁60の傾斜した内側面に沿って滑らかに撓むことになり,弾性片56が規制壁60から受ける応力を分散させて,その耐久性を確保することができると共に,弾性片56を撓ませる操作荷重を低減することができる。   As described above, the restriction wall 60 formed in the second housing 2 restricts the elastic piece 56 from bending outward in the radial direction. Therefore, even if the elastic piece 56 receives vibration from the engine or the like, the elastic piece 56 overflows. Therefore, the snap fit mechanism 55 can be maintained in an engaged state. Further, when the elastic piece 56 is bent radially outward in order to release the engagement of the snap fit mechanism 55, the elastic piece 56 follows the inclined inner surface of the regulating wall 60 as compared with the case where there is no inclined surface. Thus, the stress received by the elastic piece 56 from the regulating wall 60 can be dispersed to ensure the durability thereof, and the operation load for bending the elastic piece 56 can be reduced.

以上のように構成される複数のスナップフィット機構55は,フィルタ17の外周を覆う囲い壁10の上方に,且つ平面視で囲い壁10の内側に配置される。こうすることで,スナップフィット機構55は,径方向に比較的大なる厚みを有するにも拘らず,燃料供給装置Dを大径化させず,その小径化を図ることができる。したがって燃料タンクTの底板Taの開口部Tbが比較的小径であっても,その開口部Tbへの燃料供給装置Dの挿入が可能となる。   The plurality of snap fit mechanisms 55 configured as described above are disposed above the enclosure wall 10 that covers the outer periphery of the filter 17 and inside the enclosure wall 10 in plan view. By doing so, the snap fit mechanism 55 can be reduced in diameter without increasing the diameter of the fuel supply device D despite having a relatively large thickness in the radial direction. Therefore, even if the opening Tb of the bottom plate Ta of the fuel tank T has a relatively small diameter, the fuel supply device D can be inserted into the opening Tb.

特に,スナップフィット機構55は,ポンプ保持壁8の上端より延出する複数の弾性片56と,これら弾性片56及び嵌合壁22にそれぞれ形成され,弾性片56の弾性力により互いに係合する係止孔57及び係止爪58とで構成されるので,燃料供給装置Dの上部においても,スナップフィット機構55による大径化を抑制することができると共に,スナップフィット機構55の係合及び解除を,囲い壁10や取り付けフランジ6に邪魔されることなく容易に行うことができる。   In particular, the snap fit mechanism 55 is formed on each of the elastic pieces 56 extending from the upper end of the pump holding wall 8, the elastic pieces 56 and the fitting wall 22, and engages with each other by the elastic force of the elastic pieces 56. Since the engaging hole 57 and the engaging claw 58 are configured, the snap fit mechanism 55 can be prevented from increasing in diameter even at the upper part of the fuel supply device D, and the snap fit mechanism 55 can be engaged and released. Can be easily performed without being obstructed by the surrounding wall 10 or the mounting flange 6.

前記上部下降燃料管28及びカバー筒29は,前記二組の弾性片56の一側間に配置され,また前記レギュレータ保持筒24は,同二組の弾性片56の他側間に配置される。こうすることで,二組の弾性片56間のデッドスペースを上部下降燃料管28,カバー筒29及びレギュレータ保持筒24の配置に利用することができ,燃料供給装置Dの上部の小径化を図ることができる。また上部下降燃料管28,カバー筒29及びレギュレータ保持筒24は,前記規制壁60を介して相互に一体に接続されるので,第2ハウジング2の強度を高めることができる。   The upper descending fuel pipe 28 and the cover cylinder 29 are arranged between one side of the two sets of elastic pieces 56, and the regulator holding cylinder 24 is arranged between the other side of the two sets of elastic pieces 56. . By doing so, the dead space between the two sets of elastic pieces 56 can be used for the arrangement of the upper descending fuel pipe 28, the cover cylinder 29, and the regulator holding cylinder 24, and the diameter of the upper part of the fuel supply device D can be reduced. be able to. Further, since the upper descending fuel pipe 28, the cover cylinder 29, and the regulator holding cylinder 24 are integrally connected to each other via the restriction wall 60, the strength of the second housing 2 can be increased.

上部下降燃料管28及びカバー筒29が二組の弾性片56の一端間に配置されることから,上部下降燃料管28及びカバー筒29にそれぞれ対応する前記下部下降燃料管11及びベーパ排出管18は,一対のポンプ保持壁8の一側間において,燃料ポンプ4と囲い壁10との間に配置される。こうすることで,燃料ポンプ4及び囲い壁10間のデッドスペースを下部下降燃料管11及びベーパ排出管18の配置に利用することができ,燃料供給装置Dの下部の大径化を抑制することができる。   Since the upper descending fuel pipe 28 and the cover cylinder 29 are disposed between one ends of the two sets of elastic pieces 56, the lower descending fuel pipe 11 and the vapor discharge pipe 18 corresponding to the upper descending fuel pipe 28 and the cover cylinder 29, respectively. Is disposed between the fuel pump 4 and the surrounding wall 10 between one side of the pair of pump holding walls 8. In this way, the dead space between the fuel pump 4 and the enclosure wall 10 can be used for the arrangement of the lower descending fuel pipe 11 and the vapor discharge pipe 18, and an increase in the diameter of the lower part of the fuel supply device D can be suppressed. Can do.

図1,図4及び図8に示すように,一方,一対のポンプ保持壁8の他側間からは,燃料ポンプ4の外周面の一部が食み出ており,その食み出し部4bの上方に前記補強筒26及びセンサ支持腕49が配置される。而して,燃料供給装置Dを燃料タンクTの底板Taに取り付けるに当たっては,図8に示すように,先ず燃料供給装置Dを傾けてセンサ支持腕49側を,底板Taの開口部Tbに挿入してから,燃料ポンプ4の前記食み出し部4bを開口部Tbの内周縁の一側に当接させ,その当接部を支点と燃料供給装置Dを垂直に起こし,その後,燃料供給装置Dを押し上げて,取り付けフランジ6を底板Taの下面に重ね,結合する。   As shown in FIGS. 1, 4 and 8, on the other hand, a part of the outer peripheral surface of the fuel pump 4 protrudes from the other side of the pair of pump holding walls 8, and the protruding portion 4b The reinforcing cylinder 26 and the sensor support arm 49 are disposed above the sensor. Thus, when attaching the fuel supply device D to the bottom plate Ta of the fuel tank T, first, as shown in FIG. 8, the fuel supply device D is tilted and the sensor support arm 49 side is inserted into the opening Tb of the bottom plate Ta. Then, the protruding portion 4b of the fuel pump 4 is brought into contact with one side of the inner peripheral edge of the opening Tb, and the contact portion raises the fulcrum and the fuel supply device D vertically, and then the fuel supply device. D is pushed up, and the mounting flange 6 is overlapped with the lower surface of the bottom plate Ta and joined.

このように,燃料供給装置Dを傾斜姿勢から起立姿勢に回動するとき,燃料ポンプ4の,一対のポンプ保持壁8間からの食み出し部4bを,開口部Tbの内周縁の一側に接する支点とすることで,燃料供給装置Dの中心を開口部Tbの一側に極力近づけることができ,開口部Tbが比較的小さい場合でも,燃料供給装置Dの挿入が容易となる。   As described above, when the fuel supply device D is rotated from the inclined posture to the standing posture, the protruding portion 4b of the fuel pump 4 from between the pair of pump holding walls 8 is arranged on one side of the inner peripheral edge of the opening Tb. The center of the fuel supply device D can be brought as close as possible to one side of the opening Tb, and the fuel supply device D can be easily inserted even when the opening Tb is relatively small.

またセンサ支持腕49の根元に隣接して,前記ボス31と,このボス31に前記栓体32を固定する第2スナップフィット機構55とが配置されるので,これらボス31及び第2スナップフィット機構55が,前記開口部Tbへの燃料供給装置Dの挿入の妨げとなることはない。   Further, the boss 31 and the second snap fit mechanism 55 for fixing the plug body 32 to the boss 31 are arranged adjacent to the base of the sensor support arm 49, so that the boss 31 and the second snap fit mechanism are arranged. 55 does not hinder the insertion of the fuel supply device D into the opening Tb.

また燃料供給装置Dの中心を挟んで,燃料ポンプ4の食み出し部4bと反対側には,前記上部下降燃料管28及びカバー筒29が配置されており,これら上部下降燃料管28及びカバー筒29の上端部の,センサ支持腕49の張り出し方向と反対側の角部には,面取り62が形成される。このような面取り62の存在により,前述のように燃料供給装置Dを傾斜姿勢から起立姿勢に回動するとき,前記支点と反対側で,上部下降燃料管28及びカバー筒29が開口部Tbの内周縁と干渉するのを回避することが容易となり,開口部Tbが比較的小さい場合でも,燃料供給装置Dの挿入が一層容易となる。   Further, the upper descending fuel pipe 28 and the cover cylinder 29 are arranged on the opposite side of the fuel pump 4 from the protruding portion 4b with the center of the fuel supply device D interposed therebetween. A chamfer 62 is formed at the corner of the upper end portion of the cylinder 29 opposite to the protruding direction of the sensor support arm 49. Due to the presence of the chamfer 62, when the fuel supply device D is rotated from the inclined posture to the standing posture as described above, the upper descending fuel pipe 28 and the cover cylinder 29 are located on the opening Tb on the side opposite to the fulcrum. It becomes easy to avoid interference with the inner peripheral edge, and even when the opening Tb is relatively small, the fuel supply device D can be more easily inserted.

前記ベース部7の下部には,その側方に突出するカプラ63が一体に形成され,このカプラ63により前記燃料ポンプ4用の端子64と,前記液面センサ50用の端子65とが保持される。   A coupler 63 protruding to the side of the base portion 7 is formed integrally with the lower portion of the base portion 7, and the coupler 63 holds the terminal 64 for the fuel pump 4 and the terminal 65 for the liquid level sensor 50. The

本発明は上記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。例えば,第1ハウジング1のベース部7を燃料タンクTの天井板に取り付けることもできる。またスナップフィット機構55の係止孔57は,貫通孔ではなく,有底孔とすることもできる。   The present invention is not limited to the above embodiment, and various design changes can be made without departing from the scope of the invention. For example, the base portion 7 of the first housing 1 can be attached to the ceiling plate of the fuel tank T. Further, the locking hole 57 of the snap-fit mechanism 55 can be a bottomed hole instead of a through hole.

D・・・・・燃料供給装置
T・・・・・燃料タンク
Tb・・・・開口部
1・・・・・第1ハウジング
2・・・・・第2ハウジング
4・・・・・燃料ポンプ
5・・・・・燃料取り出し管
6・・・・・取り付けフランジ
7・・・・・ベース部
23・・・・吐出ポート受容筒
24・・・・レギュレータ保持筒
25・・・・空隙
26・・・・補強筒
27・・・・リブ
30・・・・連通燃料管
43・・・・吐出ポート
48・・・・プレッシャレギュレータ
D ... Fuel supply device T ... Fuel tank Tb ... Opening 1 ... First housing 2 ... Second housing 4 ... Fuel pump 5 ... Fuel take-out pipe 6 ... Mounting flange 7 ... Base part 23 ... Discharge port receiving cylinder 24 ... Regulator holding cylinder 25 ... Air gap 26 ... ... Reinforcing cylinder 27 ... Rib 30 ... Communication fuel pipe 43 ... Discharge port 48 ... Pressure regulator

Claims (2)

一端部に燃料取り出し管(5),他端部に燃料タンク(T)に取り付けられる取り付けフランジ(6)を有して燃料タンク(T)の開口部(Tb)を閉鎖するベース部(7)を備える合成樹脂製の第1ハウジング(1)と,燃料ポンプ(4)を保持して燃料タンク(T)内に配置される第2ハウジング(2)とを互いに連結してなる燃料供給装置において,
前記第2ハウジング(2)には,前記燃料ポンプ(4)の吐出ポート(43)の外周に嵌合する吐出ポート受容筒(23)と,この吐出ポート受容筒(23)と平行に延びてプレッシャレギュレータ(48)を保持するレギュレータ保持筒(24)と,このレギュレータ保持筒(24)を空隙(25)を介して囲繞する補強筒(26)と,該空隙(25)を通って前記吐出ポート受容筒(23)及びレギュレータ保持筒(24)間を連通する連通燃料管(30)と,前記空隙(25)を横切って前記レギュレータ保持筒(24)及び補強筒(26)間を連結する複数のリブ(27)とを一体に形成し,前記空隙(25)の,前記レギュレータ保持筒(24)の両端面側を開放し,これら両端面側に向いた前記連通燃料管(30)の周縁部にも前記空隙(25)を配設したことを特徴とする燃料供給装置。
A base part (7) having a fuel take-off pipe (5) at one end and a mounting flange (6) attached to the fuel tank (T) at the other end to close the opening (Tb) of the fuel tank (T) A fuel supply apparatus comprising a first housing (1) made of synthetic resin and a second housing (2) that holds the fuel pump (4) and is disposed in the fuel tank (T). ,
The second housing (2) has a discharge port receiving cylinder (23) fitted to the outer periphery of the discharge port (43) of the fuel pump (4), and extends in parallel with the discharge port receiving cylinder (23). A regulator holding cylinder (24) holding the pressure regulator (48), a reinforcing cylinder (26) surrounding the regulator holding cylinder (24) via a gap (25), and the discharge through the gap (25). The connecting fuel pipe (30) communicating between the port receiving cylinder (23) and the regulator holding cylinder (24) and the regulator holding cylinder (24) and the reinforcing cylinder (26) are connected across the gap (25). A plurality of ribs (27) are formed integrally, and both end surfaces of the regulator holding cylinder (24) of the gap (25) are opened, and the communication fuel pipe (30) facing the both end surfaces is opened . Also at the periphery The fuel supply apparatus being characterized in that disposed the serial gap (25).
請求項1記載の燃料供給装置において,
前記リブ(27)相互間の前記空隙(25)を,前記レギュレータ保持筒(24)の軸方向に沿う貫通孔としたことを特徴とする,燃料供給装置。
The fuel supply device according to claim 1,
The fuel supply device according to claim 1, wherein the gap (25) between the ribs (27) is a through hole along the axial direction of the regulator holding cylinder (24).
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