JP4751247B2 - Mounting structure of equipment to fuel tank - Google Patents

Mounting structure of equipment to fuel tank Download PDF

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JP4751247B2
JP4751247B2 JP2006174104A JP2006174104A JP4751247B2 JP 4751247 B2 JP4751247 B2 JP 4751247B2 JP 2006174104 A JP2006174104 A JP 2006174104A JP 2006174104 A JP2006174104 A JP 2006174104A JP 4751247 B2 JP4751247 B2 JP 4751247B2
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fuel tank
support base
fuel
opening
disc spring
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JP2008001283A (en
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裕 吉田
基弘 三島
潤一 下川
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Keihin Corp
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Keihin Corp
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Description

本発明は,自動車,自動二輪車,船外機等における主燃料タンクや副燃料タンクへ燃料供給モジュール等の機器を取り付ける構造に関し,特に,燃料タンクの開口部周辺に,該開口部から燃料タンク内に挿入される機器の合成樹脂製支持ベースを取り付けて該開口部を密閉する,燃料タンクへの機器の取り付け構造の改良に関する。   The present invention relates to a structure for attaching a device such as a fuel supply module to a main fuel tank and a sub fuel tank in an automobile, a motorcycle, an outboard motor, and the like, and in particular, around the opening of the fuel tank, The present invention relates to an improvement of a structure for mounting a device to a fuel tank, in which a synthetic resin support base of the device to be inserted is attached to seal the opening.

従来,燃料タンクの開口部周辺に合成樹脂製部材を取り付ける場合,該部材を燃料タンクに押さえる押さえ板をボルトにより燃料タンクに直接締結している(特許文献1参照)。
特開平10−246335号公報
Conventionally, when a synthetic resin member is attached around the opening of a fuel tank, a holding plate that presses the member against the fuel tank is directly fastened to the fuel tank with a bolt (see Patent Document 1).
Japanese Patent Laid-Open No. 10-246335

このような合成樹脂製部材の取り付け構造を,燃料タンクの開口部周辺に,該開口部から燃料タンク内に挿入される機器の合成樹脂製支持ベースを取り付けて該開口部を密閉する,燃料タンクへの機器の取り付け構造に利用すると,支持ベースには機器の重量及び振動が常時加わることや,支持ベース自体の経年変化により,支持ベースに肉厚の減少が生じ,これに伴ない押さえ板による支持ベースの押さえが不安定になるのみならず,開口部の密閉性が損なわれる虞がある。   Such a synthetic resin member mounting structure has a fuel tank in which a synthetic resin support base of a device inserted into the fuel tank is attached to the periphery of the fuel tank opening to seal the opening. When the equipment is used for the mounting structure of equipment, the weight and vibration of the equipment are constantly applied to the support base, and the thickness of the support base is reduced due to aging of the support base itself. Not only does the support base be unstable, but the sealing of the opening may be impaired.

本発明は,かゝる事情に鑑みてなされたもので,経年変化等により支持ベースの肉厚が減少しても,押さえ板による支持ベースの押さえを安定させると共に,開口部の密閉性を確保し得る,前記燃料タンクへの機器の取り付け構造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 even if the thickness of the support base is reduced due to aging, etc., the support base is held down by the holding plate and the opening is sealed. An object of the present invention is to provide a structure for mounting an apparatus to the fuel tank.

上記目的を達成するために,本発明は,燃料タンクの開口部周辺に,該開口部から燃料タンク内に挿入される機器の合成樹脂製支持ベースを取り付けて該開口部を密閉する,燃料タンクへの機器の取り付け構造において,燃料タンクの外面に,前記開口部を覆う前記支持ベースと,それを燃料タンク側に押さえる押さえ板とを順次重ね,これら支持ベース及び押さえ板を貫通して端面を押さえ板外に突出させる複数のボスを前記開口部を囲むようにして燃料タンクの外面に突設し,これらボスに締結されるボルトと前記押さえ板との間に,該押さえ板を前記燃料タンク側に弾発する皿ばねを介装したことを第1の特徴とする。   In order to achieve the above object, the present invention provides a fuel tank in which a synthetic resin support base of a device inserted into the fuel tank is attached to the periphery of the opening of the fuel tank to seal the opening. In the device mounting structure, the support base that covers the opening and the pressing plate that presses the opening toward the fuel tank are sequentially stacked on the outer surface of the fuel tank, and the end surface passes through the supporting base and the pressing plate. A plurality of bosses projecting out of the press plate are provided on the outer surface of the fuel tank so as to surround the opening, and the press plate is disposed on the fuel tank side between the bolts fastened to the bosses and the press plate. The first feature is that a resilient disc spring is interposed.

尚,前記機器は,後述する本発明の実施例中の燃料供給モジュールMdに対応する。   The device corresponds to a fuel supply module Md in an embodiment of the present invention described later.

また本発明は,第1の特徴に加えて,前記皿ばねの内周端を,前記ボスの端面と前記ボルトの頭部との間に挟持したことを第2の特徴とする。   In addition to the first feature, the present invention is characterized in that the inner peripheral end of the disc spring is sandwiched between the end surface of the boss and the head of the bolt.

本発明の第1の特徴によれば,燃料タンク上の支持ベース及び押さえ板を貫通して端面を押さえ板外に突出させる複数のボスを燃料タンクの外面に突設し,このボスに締結されるボルトと押さえ板との間に,押さえ板を燃料タンク側に弾発する皿ばねを介装したので,支持ベースが,機器の重量や振動を受けることや,経年変化等により肉厚が減少することがあっても,皿ばねの弾発力が押さえ板を介して支持ベースを燃料タンク外面との密着状態に保持し続けることになり,したがって燃料タンク内の機器の支持を常に安定させると共に,燃料タンクの開口部の密閉状態を常に良好に保つことができる。特に,上記ボスは,支持ベース及び押さえ板を貫通して端面を押さえ板外に突出させることで,これに螺合するボルトの締結力は,押さえ板には直接伝達せず,皿ばねを介して伝達するので,押さえ板及び支持ベースに対する過剰押圧を回避して,支持ベースの経年変化による肉厚減少を緩和することができる。   According to the first feature of the present invention, a plurality of bosses are provided on the outer surface of the fuel tank so as to penetrate the support base and the holding plate on the fuel tank and project the end face outside the holding plate, and fastened to the boss. Since the disc spring that repels the presser plate toward the fuel tank is interposed between the bolt and the presser plate, the support base is subject to the weight and vibration of the equipment, and the wall thickness decreases due to aging, etc. Even if this happens, the elastic force of the disc spring will continue to hold the support base in close contact with the outer surface of the fuel tank via the holding plate, so that the support of the equipment in the fuel tank is always stabilized, The sealed state of the opening of the fuel tank can always be kept good. In particular, the boss penetrates the support base and the presser plate and projects the end face out of the presser plate, so that the fastening force of the bolts screwed to the boss is not transmitted directly to the presser plate but via the disc spring. Therefore, it is possible to avoid excessive pressing against the pressing plate and the support base, and to reduce the thickness reduction due to the aging of the support base.

本発明の第2の特徴によれば,皿ばねの内周端をボス及びボルト間で挟持することにより,皿ばねの妄動を防いで,皿ばねの押さえ板に対する押圧を常に安定させることができる   According to the second feature of the present invention, by holding the inner peripheral end of the disc spring between the boss and the bolt, it is possible to prevent the disc spring from moving and to constantly stabilize the press of the disc spring against the holding plate.

本発明の実施の形態を,添付図面に示す本発明の好適な実施例に基づいて以下に説明する。   Embodiments of the present invention will be described below on the basis of preferred embodiments of the present invention shown in the accompanying drawings.

図1は本発明を適用した副燃料タンクを備える自動二輪車の燃料供給系の側面図,図2は前記副燃料タンクの拡大側面図,図3は図2の3−3線断面図,図4は図3の4−4線断面図,図5は図3の5−5線断面図,図6は図4の6部拡大図である。   1 is a side view of a fuel supply system of a motorcycle equipped with a sub fuel tank to which the present invention is applied, FIG. 2 is an enlarged side view of the sub fuel tank, FIG. 3 is a cross-sectional view taken along line 3-3 of FIG. Is a cross-sectional view taken along line 4-4 of FIG. 3, FIG. 5 is a cross-sectional view taken along line 5-5 of FIG. 3, and FIG.

先ず,図1において,主燃料タンクTmと,この主燃料タンクTmから第1導管1Aを通して燃料を導入する小容量の副燃料タンクTsと,この副燃料タンクTs内の燃料供給モジュールMdから第2導管1Bを通して燃料噴射弁Iに燃料を供給されるエンジンEとが図示しない自動二輪車の車体に搭載される。また副燃料タンクTsからは燃料蒸気を主燃料タンクTmに還流させる第3導管1Cが延びている。   First, in FIG. 1, a main fuel tank Tm, a small-capacity sub fuel tank Ts that introduces fuel from the main fuel tank Tm through the first conduit 1A, and a second fuel supply module Md in the sub fuel tank Ts. An engine E, which is supplied with fuel to the fuel injection valve I through the conduit 1B, is mounted on a motorcycle body (not shown). Further, a third conduit 1C for returning the fuel vapor to the main fuel tank Tm extends from the auxiliary fuel tank Ts.

図2〜図5に示すように,副燃料タンクTsはAl合金を素材とする鋳造製であって,その上部に開口部2と,その外周に張り出す取り付けフランジ3とが設けられ,燃料供給モジュールMdは,上記開口部2を通して副燃料タンクTs内に収められ,この燃料供給モジュールMdの支持ベース4が取り付けフランジ3に取り付けられることで,開口部2が密閉されるようになっている。   As shown in FIGS. 2 to 5, the auxiliary fuel tank Ts is made of cast aluminum alloy, and is provided with an opening 2 at the top and a mounting flange 3 projecting on the outer periphery thereof to supply fuel. The module Md is housed in the auxiliary fuel tank Ts through the opening 2 and the support base 4 of the fuel supply module Md is attached to the attachment flange 3 so that the opening 2 is sealed.

この支持ベース4の取り付けフランジ3への取り付け構造について,図4及び図6により説明する。副燃料タンクTsの取り付けフランジ3の上面には,その周方向に配列する複数のボス5,5…が一体に突設され,またこの取り付けフランジ3には,各ボス5に上端面に開口する複数のねじ孔6,6…が設けられる。   The attachment structure of the support base 4 to the attachment flange 3 will be described with reference to FIGS. A plurality of bosses 5, 5... Arranged in the circumferential direction are integrally projected on the upper surface of the attachment flange 3 of the auxiliary fuel tank Ts, and each boss 5 opens to the upper end surface of the attachment flange 3. A plurality of screw holes 6, 6... Are provided.

一方,支持ベース4は合成樹脂製であって,上記取り付けフランジ3上に重ねられる際,それらの間に前記ボス5,5…群の内側でOリング7Aが介装される。また支持ベース4には,副燃料タンクTsの開口部2内周面に嵌合する円筒部4aを一体に有しており,この円筒部4aと開口部2の内周面との間にOリング7Bが介装される。支持ベース4の上面には金属製で環状の押さえ板8が重ねられる。これら支持ベース4及び押さえ板8には,前記複数のボス5,5…に貫通される複数の透孔9,10が穿設されている。各ボス5は,支持ベース4及び押さえ板8を取り付けフランジ3に重ねたとき,透孔9,10を貫通したボス5の端面が押さえ板8の上面より突出する高さを有しており,このボス5の端面に皿ばね11の内周端部が,ねじ孔6に螺合するボルト12によって締結され,この皿ばね11には,その外周端部を押さえ板8に圧接させる弾性が付与されている。こうして,皿ばね11は,ボルト12の頭部と押さえ板8との間に介装され,その押さえ板8に対する弾発力により,支持ベース4は取り付けフランジ3との密着状態に保持される。その際,図示例のように,皿ばね11の内周端部がボルト12の頭部とボス5の端面との間で挟持されることは,皿ばね11の妄動を抑えて,皿ばね11の押さえ板8に対する押圧を常に安定させることができて,有益である
図2及び図3に示すように,副燃料タンクTsには,また,取り付けフランジ3の下側に隣接して,その一側に突出するブラケット51が一体に形成されており,このブラケット51は,自動二輪車の車体に付設される支持ステー52に弾性支持部材53を介してボルト54により取り付けられる。
On the other hand, the support base 4 is made of a synthetic resin. When the support base 4 is stacked on the mounting flange 3, an O-ring 7A is interposed between the bosses 5, 5,. Further, the support base 4 is integrally provided with a cylindrical portion 4a fitted to the inner peripheral surface of the opening 2 of the auxiliary fuel tank Ts, and between the cylindrical portion 4a and the inner peripheral surface of the opening 2, an O A ring 7B is interposed. On the upper surface of the support base 4, an annular pressure plate 8 made of metal is overlaid. The support base 4 and the pressing plate 8 are provided with a plurality of through holes 9 and 10 penetrating through the plurality of bosses 5, 5. Each boss 5 has a height at which the end surface of the boss 5 penetrating the through holes 9 and 10 protrudes from the upper surface of the pressing plate 8 when the support base 4 and the pressing plate 8 are stacked on the mounting flange 3. The inner peripheral end of the disc spring 11 is fastened to the end surface of the boss 5 by a bolt 12 that is screwed into the screw hole 6, and the disc spring 11 is given elasticity to press the outer peripheral end against the holding plate 8. Has been. Thus, the disc spring 11 is interposed between the head of the bolt 12 and the pressing plate 8, and the support base 4 is held in close contact with the mounting flange 3 by the elastic force against the pressing plate 8. At this time, as shown in the drawing, the inner peripheral end of the disc spring 11 is sandwiched between the head of the bolt 12 and the end surface of the boss 5, suppressing the loose movement of the disc spring 11, and the disc spring 11. As shown in FIGS. 2 and 3, the auxiliary fuel tank Ts is also adjacent to the lower side of the mounting flange 3. A bracket 51 projecting to the side is integrally formed, and this bracket 51 is attached to a support stay 52 attached to the motorcycle body by a bolt 54 via an elastic support member 53.

次に,図3〜図5により前記燃料供給モジュールMdについて説明する。   Next, the fuel supply module Md will be described with reference to FIGS.

燃料供給モジュールMは,上記支持ベース4と,この支持ベース4の直下に,軸方向を上下に向けて配置される電動ポンプMpと,支持ベース4に一体に形成される上部ポンプホルダ13Aと,この上部ポンプホルダ13Aと協働して電動ポンプMpを保持すべく,上部ポンプホルダ13Aに着脱可能に結合される,同じく合成樹脂製の下部ポンプホルダ13Bと,下部ポンプホルダ13Bの底壁を貫通して電動ポンプMpの下端部に取り付けられる燃料ストレーナSとで構成され,燃料ストレーナSは,副燃料タンクTsの底壁近傍に配置される。   The fuel supply module M includes the support base 4, an electric pump Mp arranged directly below the support base 4 with the axial direction directed up and down, an upper pump holder 13A formed integrally with the support base 4, In order to hold the electric pump Mp in cooperation with the upper pump holder 13A, the upper pump holder 13A is detachably coupled to the lower pump holder 13B, also made of synthetic resin, and penetrates the bottom wall of the lower pump holder 13B. The fuel strainer S is attached to the lower end of the electric pump Mp, and the fuel strainer S is disposed in the vicinity of the bottom wall of the auxiliary fuel tank Ts.

合成樹脂製の支持ベース4には,その上下方向に延びて下端を副燃料タンクTs内に深く突入される燃料取り入れ管14と,副燃料タンクTs内に連通して支持ベース4上に起立する燃料蒸気戻し管15と,電動ポンプMpの燃料吐出管30に連通して支持ベース4上に起立する燃料取り出し管16とが一体に形成されており,燃料取り入れ管14には,主燃料タンクTmの底部から延出する前記第1導管1Aが接続され,燃料取り出し管16には,エンジンEの燃料噴射弁Iに至る前記第2導管1Bが接続され,また燃料蒸気戻し管15には,主燃料タンクTm内の上部空間に開口する前記第3導管1Cが接続される。   The support base 4 made of synthetic resin extends vertically and has a lower end deeply inserted into the auxiliary fuel tank Ts, and communicates with the auxiliary fuel tank Ts to stand on the support base 4. A fuel vapor return pipe 15 and a fuel take-out pipe 16 that communicates with the fuel discharge pipe 30 of the electric pump Mp and stands on the support base 4 are integrally formed. The fuel intake pipe 14 includes a main fuel tank Tm. The first conduit 1A extending from the bottom of the engine is connected, the fuel take-out pipe 16 is connected to the second conduit 1B leading to the fuel injection valve I of the engine E, and the fuel vapor return pipe 15 is connected to the main The third conduit 1C that opens to the upper space in the fuel tank Tm is connected.

図4に示すように,前記上部ポンプホルダ13Aは,電動ポンプMpの上半部外周面に嵌合するよう円筒状をなしており,この上部ポンプホルダ13Aには,下端を開放したT字状の係止溝21mが周方向等間隔置きに複数設けられる。一方,前記下部ポンプホルダ13Bは,電動ポンプMpの下半部を収容,保持するよう,合成樹脂により円筒状に成形される。その際,その上端から突出するT字状の係止爪21fが複数一体に形成される。この係止爪21fを前記係止溝21mに係合することにより,上部ポンプホルダ13Aに下部ポンプホルダ13Bが結合される。こうして電動ポンプMpは上部ポンプホルダ13A及び下部ポンプホルダ13B間に収容保持される。   As shown in FIG. 4, the upper pump holder 13A has a cylindrical shape so as to be fitted to the outer peripheral surface of the upper half of the electric pump Mp. The upper pump holder 13A has a T-shape with a lower end opened. A plurality of locking grooves 21m are provided at equal intervals in the circumferential direction. On the other hand, the lower pump holder 13B is formed in a cylindrical shape with a synthetic resin so as to accommodate and hold the lower half of the electric pump Mp. At that time, a plurality of T-shaped locking claws 21f protruding from the upper end are integrally formed. By engaging the locking claw 21f with the locking groove 21m, the lower pump holder 13B is coupled to the upper pump holder 13A. Thus, the electric pump Mp is housed and held between the upper pump holder 13A and the lower pump holder 13B.

図5に示すように,電動ポンプMpは,ロータ20を鉛直方向に向けたモータMと,このモータMにより駆動される燃料ポンプPとからなっている。モータMは,内周面に周方向に並ぶ複数の磁石17aを固設した円筒状のステータ17と,このステータ17の上端にカシメ結合される上部軸受ブラケット18と,同下端部に結合される下部軸受ブラケット19と,上部及び下部軸受ブラケット18,19によりロータ軸20aが支承されるロータ20とから構成される。   As shown in FIG. 5, the electric pump Mp includes a motor M with the rotor 20 oriented in the vertical direction and a fuel pump P driven by the motor M. The motor M is coupled to a cylindrical stator 17 having a plurality of magnets 17a arranged in the circumferential direction on the inner circumferential surface, an upper bearing bracket 18 that is caulked and coupled to the upper end of the stator 17, and the lower end of the motor M. The lower bearing bracket 19 and the rotor 20 on which the rotor shaft 20a is supported by the upper and lower bearing brackets 18 and 19 are configured.

燃料ポンプPは,下部軸受ブラケット19下面との間にポンプ室22を画成すべく下部軸受ブラケット19と共にステータ17にカシメ結合されるポンプケース23と,ポンプ室22に回転自在に収容されてロータ軸20aの下端部に連結されるポンプインペラ24とで,ウエスコ型に構成される。   The fuel pump P includes a pump case 23 that is caulked to the stator 17 together with the lower bearing bracket 19 so as to define a pump chamber 22 between the lower surface of the lower bearing bracket 19 and a rotor shaft that is rotatably accommodated in the pump chamber 22. The pump impeller 24 connected to the lower end of 20a is configured in a Wesco type.

ポンプケース23には,ポンプ室22に開口する吸入ポート25が設けられ,この吸入ポート25に,前記燃料ストレーナSが接続される。また前記下部軸受ブラケット19には,ポンプ室22及びステータ17内を連通する吐出ポート27が設けられる。   The pump case 23 is provided with a suction port 25 that opens to the pump chamber 22, and the fuel strainer S is connected to the suction port 25. The lower bearing bracket 19 is provided with a discharge port 27 that communicates between the pump chamber 22 and the stator 17.

前記上部軸受ブラケット18には,その上方に突出すると共に,ステータ17内と連通した最終吐出ポート34を有する燃料吐出管30が一体に形成され,その内部には最終吐出ポート34への燃料の逆流を阻止する逆止弁31が設けられる。この燃料吐出管30は,支持ベース4の下面に一体に突設される連結筒29の内周面にシール部材32を介して下方から嵌合される。   The upper bearing bracket 18 is integrally formed with a fuel discharge pipe 30 that protrudes upward and has a final discharge port 34 that communicates with the interior of the stator 17, and in which the fuel flows backward to the final discharge port 34. A check valve 31 is provided to prevent this. The fuel discharge pipe 30 is fitted from below to the inner peripheral surface of a connecting cylinder 29 projecting integrally with the lower surface of the support base 4 via a seal member 32.

支持ベース4には,燃料取り出し管16及び連結筒29の内部を走って燃料吐出管30の内部に連通する一連の燃料通路28と,この燃料通路28のから分岐して下流端を副燃料タンクTs内に開放する調圧路35とが形成される。この調圧路35には,燃料通路28内の圧力を,前記燃料噴射弁Iからの燃料噴射に適した所定圧力に調整するためのレギュレータ弁Rが設けられる。   The support base 4 includes a series of fuel passages 28 that run inside the fuel take-out pipe 16 and the connecting cylinder 29 and communicate with the inside of the fuel discharge pipe 30, and branch from the fuel passage 28 and have a downstream end at the sub fuel tank. A pressure regulating path 35 is formed in Ts. The pressure adjusting passage 35 is provided with a regulator valve R for adjusting the pressure in the fuel passage 28 to a predetermined pressure suitable for fuel injection from the fuel injection valve I.

このレギュレータ弁Rは,支持ベース4とは別個に形成された有底円筒状の弁ハウジング36を備えており,この弁ハウジング36の端壁に,それを貫通する弁孔37と,この弁孔37の内端に連なる円錐状の弁座38とが形成される。弁ハウジング36内の弁室42には,弁座38に着座し得るボール型の弁体39と,この弁体39を弁座38との着座方向に所定のセット荷重をもって付勢する調圧ばね40と,この調圧ばね40の固定端を支持する環状のリテーナ41とが収容され,このリテーナ41は,弁室42の内周面に圧入固定されると共に,弁室42の開口部に係止される止環46により抜け止め保持される。   The regulator valve R includes a bottomed cylindrical valve housing 36 formed separately from the support base 4. A valve hole 37 penetrating the valve housing 36 is formed in an end wall of the valve housing 36. A conical valve seat 38 connected to the inner end of 37 is formed. In the valve chamber 42 in the valve housing 36, a ball-type valve body 39 that can be seated on the valve seat 38, and a pressure regulating spring that biases the valve body 39 in a seating direction with the valve seat 38 with a predetermined set load. 40 and an annular retainer 41 that supports the fixed end of the pressure adjusting spring 40 are accommodated. The retainer 41 is press-fitted and fixed to the inner peripheral surface of the valve chamber 42 and is engaged with the opening of the valve chamber 42. The retaining ring 46 is retained by the retaining ring 46.

弁ハウジング36は,支持ベース4にその下面に開口するように設けられる保持孔43に,弁孔37を上向きにして嵌合,固着され,その弁孔37は前記調圧路35と連通する。   The valve housing 36 is fitted and fixed to a holding hole 43 provided in the support base 4 so as to open on the lower surface thereof with the valve hole 37 facing upward, and the valve hole 37 communicates with the pressure regulating path 35.

前記燃料吐出管30は上部軸受ブラケット18の上端面片側に配置され,他方の片側には,モータMの給電端子47が突設され,この給電端子47に接続されるコネクタ50に連なるカプラ端子49を保持するカプラ48が支持ベース4の上面に一体に突設される。   The fuel discharge pipe 30 is disposed on one side of the upper end surface of the upper bearing bracket 18, and a power supply terminal 47 of the motor M is projected on the other side, and a coupler terminal 49 connected to the connector 50 connected to the power supply terminal 47. The coupler 48 that holds is integrally projected on the upper surface of the support base 4.

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

副燃料タンクTsの内部は,主燃料タンクTmから第1導管1Aを下る燃料によって常に満たされている。したがって,副燃料タンクTs内の燃料供給モジュールMdにおいて,モータMを作動すれば,そのロータ軸20aの駆動によるポンプインペラ24の回転に伴い副燃料タンクTs内の燃料が燃料ストレーナSで濾過されながら吸入ポート25からポンプ室22に吸入され,ポンプインペラ24により昇圧されて吐出ポート27からステータ17内へ圧送され,最終吐出ポート34から燃料吐出管30,燃料取り出し管16及び第2導管1Bを経て燃料噴射弁Iに供給され,該弁IからエンジンEの吸気路に噴射される。   The inside of the auxiliary fuel tank Ts is always filled with fuel that goes down from the main fuel tank Tm through the first conduit 1A. Accordingly, if the motor M is operated in the fuel supply module Md in the auxiliary fuel tank Ts, the fuel in the auxiliary fuel tank Ts is filtered by the fuel strainer S as the pump impeller 24 is driven by driving the rotor shaft 20a. The air is sucked into the pump chamber 22 from the suction port 25, is pressurized by the pump impeller 24, is pumped into the stator 17 from the discharge port 27, and passes from the final discharge port 34 through the fuel discharge pipe 30, the fuel take-out pipe 16 and the second conduit 1B. The fuel is supplied to the fuel injection valve I and injected from the valve I into the intake passage of the engine E.

その間,燃料通路28の圧力,即ち電動ポンプMpの吐出圧力は調圧路35からレギュレータ弁Rの弁体39に作用するので,電動ポンプMpの吐出圧力が所定値を超えると,弁体39が調圧ばね40のセット荷重に抗して開弁し,燃料通路28内の燃料の一部を副燃料タンクTsに排出し,燃料通路28の圧力が所定値に戻ると,弁体39は調圧ばね40のセット荷重により再び閉弁する。こうして燃料通路28の圧力は所定値に自動的に調整されるので,燃料噴射弁Iからの燃料の噴射圧力が適正に制御される。   Meanwhile, the pressure of the fuel passage 28, that is, the discharge pressure of the electric pump Mp acts on the valve body 39 of the regulator valve R from the pressure adjusting passage 35. Therefore, when the discharge pressure of the electric pump Mp exceeds a predetermined value, the valve body 39 is When the pressure regulating spring 40 is opened against the set load, a part of the fuel in the fuel passage 28 is discharged to the auxiliary fuel tank Ts, and when the pressure in the fuel passage 28 returns to a predetermined value, the valve body 39 is adjusted. The valve is closed again by the set load of the pressure spring 40. Thus, the pressure in the fuel passage 28 is automatically adjusted to a predetermined value, so that the fuel injection pressure from the fuel injection valve I is properly controlled.

副燃料タンクTs内に燃料蒸気が発生すると,それは第3導管1Cを上って主燃料タンクTmの上部空間に還流し,冷却,液化後,再び主燃料タンクTmに貯留されることになる。   When fuel vapor is generated in the auxiliary fuel tank Ts, it goes up through the third conduit 1C and returns to the upper space of the main fuel tank Tm. After cooling and liquefaction, it is stored again in the main fuel tank Tm.

ところで,副燃料タンクTsの取り付けフランジ3上に重ねられる,燃料供給モジュールMdの合成樹脂製支持ベース4の上面には押さえ板8が重ねられ,これら支持ベース4及び押さえ板8を貫通して端面を押さえ板8の外方に突出させる,取り付けフランジ3の複数のボス5にボルト12を締結し,このボルト12と押さえ板8との間に皿ばね11を介装して,この皿ばね11の弾発力により押さえ板8を介して支持ベース4を取り付けフランジ3との密着状態に保持するので,支持ベース4が,電動ポンプMpその他の重量及び振動を受けることや,経年変化等により肉厚が減少しても,皿ばね11の弾発力が押さえ板8を介して支持ベース4を取り付けフランジ3との密着状態に保持し続けることになり,したがって燃料供給モジュールMdの支持を常に安定させると共に,副燃料タンクTsの開口部2の密閉状態を常に良好に保つことができる。   By the way, a pressing plate 8 is stacked on the upper surface of the synthetic resin support base 4 of the fuel supply module Md, which is stacked on the mounting flange 3 of the sub fuel tank Ts, and the end surface penetrates through the support base 4 and the pressing plate 8. Bolts 12 are fastened to a plurality of bosses 5 of the mounting flange 3, and a disc spring 11 is interposed between the bolts 12 and the press plate 8. Since the support base 4 is held in close contact with the mounting flange 3 through the holding plate 8 by the elastic force of the power, the support base 4 is subjected to the weight and vibration of the electric pump Mp and other parts, and is subject to change due to secular change. Even if the thickness is reduced, the elastic force of the disc spring 11 continues to hold the support base 4 in close contact with the mounting flange 3 via the presser plate 8, and therefore the fuel supply module. With always stabilize the support of Le Md, it is possible to maintain the sealed state of the opening 2 of the auxiliary fuel tank Ts always good.

特に,上記ボス5は,支持ベース4及び押さえ板8を貫通して端面を押さえ板8外に突出させることで,これに螺合するボルト12の締結力は,押さえ板8には直接伝達せず,皿ばね11を介して伝達するので,押さえ板8及び支持ベース4に対する過剰押圧を回避して,支持ベース4の経年変化による肉厚減少を緩和することができる。   In particular, the boss 5 penetrates through the support base 4 and the pressing plate 8 so that the end surface protrudes outside the pressing plate 8, so that the fastening force of the bolt 12 screwed to the boss 5 can be directly transmitted to the pressing plate 8. However, since transmission is performed via the disc spring 11, excessive press against the presser plate 8 and the support base 4 can be avoided, and thickness reduction due to aging of the support base 4 can be mitigated.

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,本発明に従い,燃料供給モジュールMdを主燃料タンクTmに取り付けることもできる。   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, according to the present invention, the fuel supply module Md can be attached to the main fuel tank Tm.

本発明を適用した副燃料タンクを備える自動二輪車の燃料供給系の側面図。1 is a side view of a fuel supply system of a motorcycle including an auxiliary fuel tank to which the present invention is applied. 前記副燃料タンクの拡大側面図。The enlarged side view of the said auxiliary fuel tank. 図2の3−3線断面図3-3 sectional view of FIG. 図3の4−4線断面図。FIG. 4 is a sectional view taken along line 4-4 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4の6部拡大図。FIG. 6 is an enlarged view of 6 parts in FIG. 4.

符号の説明Explanation of symbols

Ts・・・・燃料タンク
Md・・・・機器(燃料供給モジュール) 2・・・・・開口部
3・・・・・取り付けフランジ
4・・・・・支持ベース
5・・・・・ボス
8・・・・・押さえ板
9・・・・・透孔
10・・・・透孔
11・・・・皿ばね
12・・・・ボルト
Ts ... Fuel tank Md ... Equipment (fuel supply module) 2 ... Opening 3 ... Mounting flange 4 ... Support base 5 ... Boss 8 ... Presser plate 9 ... Through hole 10 ... Through hole 11 ... Belleville spring 12 ... Bolt

Claims (2)

燃料タンク(Ts)の開口部(2)周辺に,該開口部(2)から燃料タンク(Ts)内に挿入される機器(Md)の合成樹脂製支持ベース(4)を取り付けて該開口部(2)を密閉する,燃料タンクへの機器の取り付け構造において,
燃料タンク(Ts)の外面に,前記開口部(2)を覆う前記支持ベース(4)と,それを燃料タンク(Ts)側に押さえる押さえ板(8)とを順次重ね,これら支持ベース(4)及び押さえ板(8)を貫通して端面を押さえ板(8)外に突出させる複数のボス(5)を前記開口部(2)を囲むようにして燃料タンク(Ts)の外面に突設し,これらボス(5)に締結されるボルト(12)と前記押さえ板(8)との間に,該押さえ板(8)を前記燃料タンク(Ts)側に弾発する皿ばね(11)を介装したことを特徴とする,燃料タンクへの機器の取り付け構造。
A synthetic resin support base (4) of a device (Md) inserted into the fuel tank (Ts) from the opening (2) is attached around the opening (2) of the fuel tank (Ts). (2) In the structure for mounting the equipment to the fuel tank,
On the outer surface of the fuel tank (Ts), the support base (4) that covers the opening (2) and a pressing plate (8) that holds the support base (4) on the fuel tank (Ts) side are sequentially stacked. ) And a plurality of bosses (5) penetrating the holding plate (8) and projecting the end face out of the holding plate (8) projecting from the outer surface of the fuel tank (Ts) so as to surround the opening (2), Between the bolt (12) fastened to these bosses (5) and the pressing plate (8), a disc spring (11) is provided for repelling the pressing plate (8) toward the fuel tank (Ts). A structure for mounting equipment to a fuel tank.
請求項1記載の燃料タンクへの機器の取り付け構造において,
前記皿ばね(11)の内周端を,前記ボス(5)の端面と前記ボルト(12)の頭部との間に挟持したことを特徴とする,燃料タンクへの機器の取り付け構造。
In the structure for attaching the device to the fuel tank according to claim 1,
A structure for attaching a device to a fuel tank, characterized in that an inner peripheral end of the disc spring (11) is sandwiched between an end face of the boss (5) and a head of the bolt (12).
JP2006174104A 2006-06-23 2006-06-23 Mounting structure of equipment to fuel tank Expired - Fee Related JP4751247B2 (en)

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