JP2009292175A - Structure for mounting towing hook - Google Patents

Structure for mounting towing hook Download PDF

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Publication number
JP2009292175A
JP2009292175A JP2008144779A JP2008144779A JP2009292175A JP 2009292175 A JP2009292175 A JP 2009292175A JP 2008144779 A JP2008144779 A JP 2008144779A JP 2008144779 A JP2008144779 A JP 2008144779A JP 2009292175 A JP2009292175 A JP 2009292175A
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Prior art keywords
bumper
vehicle body
vehicle
tow hook
hook
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JP2008144779A
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JP5104555B2 (en
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Fumihiko Hazama
文彦 硲
Hitoshi Morita
均 森田
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Toyota Motor Corp
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Toyota Motor Corp
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Abstract

<P>PROBLEM TO BE SOLVED: To obtain a structure for mounting a towing hook capable of suppressing deformation of a towing hook mounting member while suppressing an increase in weight. <P>SOLUTION: A front side member 12 is arranged on both sides of a vehicle 10, and a plate member 14 is arranged in the front end of the front side member 12. A bumper arm 26 is arranged on the vehicle rear side of a bumper reinforcement 24. A bracket 18 is sandwiched between the connected part 26C of the bumper arm 26 and the connected part 14A of the plate member 14, and the bumper arm 26 and the plate member 14 are co-fastened. In the bracket 18, a nut 20 is fixed along the vehicle longitudinal direction, and the towing hook 30 is passed through the through-holes 28A, 28B of the bumper reinforcement 24 and the through-hole 28C of the bumper arm 26. The male screw part 30C of the towing hook 30 is screwed in the female screw part 20C of the nut 20. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本発明は、車両の前端部又は後端部に牽引フックを取り付けるための牽引フック取付構造に関する。   The present invention relates to a tow hook attaching structure for attaching a tow hook to a front end portion or a rear end portion of a vehicle.

下記特許文献1には、バンパリインフォースの前壁と後壁に形成された穴内に管状のバンパステイが貫通され、管状のサイドメンバーとバンパステイとの間に牽引フックを取り付けるためのプレート状のフック取付部材を挟み込んだ着脱式牽引フックの取付構造が開示されている。
特開2008−37220号公報
In Patent Document 1 below, a plate-like hook attachment member for attaching a traction hook between a tubular side member and a bumper stay, with a tubular bumper stay penetrating through holes formed in the front and rear walls of the bumper reinforcement. An attachment structure of a detachable tow hook with a pinch interposed therebetween is disclosed.
JP 2008-37220 A

しかしながら、上記先行技術による場合、管状のバンパステイと管状のサイドメンバーがフック取付部材の外周部を挟み込んだ状態で、当該フック取付部材の外周縁部にてボルトで共締めする構造であるため、牽引フックを介して入力される荷重をサイドメンバーに伝達するためには、フック取付部材の中央部の強度が必要となり、板厚の増加等により重くなる。   However, in the case of the above prior art, the structure is such that the tubular bumper stay and the tubular side member sandwich the outer peripheral portion of the hook mounting member and are tightened with bolts at the outer peripheral edge of the hook mounting member. In order to transmit the load input through the hook to the side member, the strength of the central portion of the hook mounting member is required, which becomes heavier due to an increase in the plate thickness or the like.

本発明は上記事実を考慮し、重量増加を抑制しつつ、フック取付部材の変形を抑制することができる牽引フック取付構造を得ることが目的である。   An object of the present invention is to obtain a tow hook attachment structure that can suppress deformation of the hook attachment member while suppressing an increase in weight in consideration of the above fact.

請求項1の発明に係る牽引フック取付構造は、車体前部又は車体後部における車両幅方向の両側部に車両前後方向に沿って配置された左右一対の車体骨格部材の端部に設けられ、車体側接合面を備えた車体側取付部材と、前記左右一対の車体骨格部材の端部間に架け渡されたバンパ部材に備えられ、前記車体側接合面への固定部となるバンパ側接合面を備えたバンパ側取付部と、前記バンパ部材及び前記バンパ側取付部に同軸上に形成された貫通孔内へ車体外側から挿入され、挿入側端部の外周面に雄ねじが形成された牽引フックと、前記車体側接合面と前記バンパ側接合面との間に挟持された状態で前記車体側取付部材及び前記バンパ側取付部と共締めされる取付部と、車両前後方向に見て前記貫通孔と重なる位置に設けられると共に前記牽引フックの雄ねじが螺合されるナット部と、前記ナット部の周囲部を構成すると共に前記車体側取付部材及び前記バンパ側取付部間に挟持された状態で保持される荷重受部と、を含んで構成された牽引フック取付部材と、を有することを特徴とする。   The tow hook mounting structure according to the first aspect of the present invention is provided at the ends of a pair of left and right vehicle body skeleton members disposed along the vehicle front-rear direction on both sides in the vehicle width direction at the vehicle body front portion or vehicle body rear portion. A vehicle body side mounting member provided with a side joint surface and a bumper member spanned between the end portions of the pair of left and right body frame members, and a bumper side joint surface serving as a fixing portion to the vehicle body side joint surface A bumper side mounting portion provided, and a tow hook inserted from the outside of the vehicle body into a through hole formed coaxially in the bumper member and the bumper side mounting portion, and having an external thread formed on the outer peripheral surface of the insertion side end portion A mounting portion fastened together with the vehicle body side mounting member and the bumper side mounting portion while being sandwiched between the vehicle body side joint surface and the bumper side joint surface, and the through hole when viewed in the vehicle front-rear direction. And is provided at a position overlapping with A nut portion to which a male screw of a pull hook is screwed, and a load receiving portion that forms a peripheral portion of the nut portion and is held in a state of being sandwiched between the vehicle body side mounting member and the bumper side mounting portion. And a tow hook mounting member configured to include.

請求項2の発明は、請求項1記載の牽引フック取付構造において、前記牽引フック取付部材の取付状態では、前記ナット部が前記バンパ側接合面よりも前記車体側取付部材側に配置されていることを特徴とする。   According to a second aspect of the present invention, in the traction hook mounting structure according to the first aspect, in the mounted state of the traction hook mounting member, the nut portion is disposed closer to the vehicle body side mounting member than the bumper side joining surface. It is characterized by that.

請求項3の発明は、請求項1又は請求項2に記載の牽引フック取付構造において、前記貫通孔は、前記牽引フックの軸方向と交差する方向へ作用する荷重により前記牽引フックが接触可能な大きさとされていることを特徴とする。   According to a third aspect of the present invention, in the traction hook mounting structure according to the first or second aspect, the through hole can contact the traction hook by a load acting in a direction crossing an axial direction of the traction hook. It is characterized by its size.

請求項4の発明は、請求項1から請求項3までのいずれか1項に記載の牽引フック取付構造において、前記バンパ部材が車両幅方向に沿って配置されたバンパリインフォースであり、前記バンパ側取付部が前記バンパリインフォースの車両幅方向の両端部に設けられたバンパアームであることを特徴とする。   A fourth aspect of the present invention is the tow hook mounting structure according to any one of the first to third aspects, wherein the bumper member is arranged along a vehicle width direction, and the bumper side The attachment portions are bumper arms provided at both ends of the bumper reinforcement in the vehicle width direction.

請求項1記載の本発明によれば、左右一対の車体骨格部材の端部に、車体側接合面を備えた車体側取付部材が設けられており、左右一対の車体骨格部材の端部間に架け渡されたバンパ部材に、バンパ側接合面を備えたバンパ側取付部が設けられている。牽引フック取付部材が車体側接合面とバンパ側接合面との間に挟持された状態で牽引フック取付部材の取付部が車体側取付部材及びバンパ側取付部と共締めされており、牽引フック取付部材に設けられたナット部の周囲部を構成する荷重受部が車体側取付部材及びバンパ側取付部間に挟持された状態で保持されている。さらに、牽引フックが、バンパ部材及びバンパ側取付部に同軸上に形成された貫通孔内へ車体外側から挿入され、牽引フックの挿入側端部の外周面に形成された雄ねじが貫通孔と重なる位置に設けられたナット部に螺合されている。これにより、牽引フックの使用時に牽引フックの軸方向の入力(引張、圧縮)が入る場合、牽引フック取付部材が車体側接合面とバンパ側接合面との間に挟持された状態で取付部が車体側取付部材及びバンパ側取付部と共締めされているため、圧縮荷重の入力時には牽引フック取付部材は車体側取付部材に支持され、引張荷重の入力時には牽引フック取付部材はバンパ側取付部に支持される。このため、牽引フック取付部材の変形を抑制することができると共に、共締めされたバンパ側取付部の締結部分を介してバンパ部材を通じて、車両幅方向の反対側の車体側取付部材へも荷重を伝達することができる。従って、牽引フック取付部材の重量増加を抑制しつつ、牽引フック取付部材の変形を抑制することができる。特に、車体側取付部材や車体骨格部材がアルミニウムや複合材等の素材強度が低い材料で構成されている場合、荷重を分散して伝達することができ、牽引フック取付部材の強度を確保するために有効である。   According to the first aspect of the present invention, the vehicle body side mounting member provided with the vehicle body side joint surface is provided at the ends of the pair of left and right vehicle body skeleton members, and between the ends of the pair of left and right vehicle body skeleton members. A bumper-side mounting portion having a bumper-side joint surface is provided on the bumper member that is bridged. With the tow hook mounting member sandwiched between the vehicle body side joint surface and the bumper side joint surface, the mounting portion of the tow hook mounting member is fastened together with the vehicle body side mounting member and the bumper side mounting portion. A load receiving portion constituting a peripheral portion of the nut portion provided on the member is held in a state of being sandwiched between the vehicle body side mounting member and the bumper side mounting portion. Further, the tow hook is inserted from the outside of the vehicle body into a through hole formed coaxially in the bumper member and the bumper side mounting portion, and the male screw formed on the outer peripheral surface of the insertion side end portion of the tow hook overlaps with the through hole. It is screwed into a nut portion provided at the position. As a result, when an input (tension or compression) in the axial direction of the traction hook is entered when the traction hook is used, the attachment portion is held in a state where the traction hook attachment member is sandwiched between the vehicle body side joint surface and the bumper side joint surface. Since it is fastened together with the vehicle body side mounting member and the bumper side mounting portion, the traction hook mounting member is supported by the vehicle body side mounting member when a compression load is input, and the traction hook mounting member is attached to the bumper side mounting portion when a tensile load is input. Supported. Therefore, the deformation of the tow hook mounting member can be suppressed, and a load is also applied to the vehicle body side mounting member on the opposite side in the vehicle width direction through the bumper member through the fastening portion of the jointed bumper side mounting portion. Can communicate. Therefore, deformation of the tow hook mounting member can be suppressed while suppressing an increase in the weight of the tow hook mounting member. In particular, when the vehicle body side mounting member or the vehicle body skeleton member is made of a material with low material strength such as aluminum or a composite material, the load can be distributed and transmitted to secure the strength of the tow hook mounting member. It is effective for.

請求項2記載の本発明によれば、牽引フック取付部材の取付状態では、ナット部がバンパ側接合面よりも車体側取付部材側に配置されているので、車両の衝突時にバンパ部材の変形を阻害することを抑制することができる。すなわち、車両の衝突時にバンパ部材の変形ストロークを確保することができる。   According to the second aspect of the present invention, when the tow hook mounting member is mounted, the nut portion is disposed closer to the vehicle body side mounting member than the bumper side joint surface. Inhibiting can be suppressed. That is, the deformation stroke of the bumper member can be ensured when the vehicle collides.

請求項3記載の本発明によれば、バンパ部材及びバンパ側取付部に設けられた貫通孔は、牽引フックの軸方向と交差する方向へ作用する荷重により牽引フックが接触可能な大きさとされているので、牽引フックの使用時に牽引フックの軸方向と交差する方向へ作用する荷重により牽引フックが荷重作用方向へ変形すると、牽引フックがバンパ部材及びバンパ側取付部に設けられた貫通孔の縁部と接触する。これにより、牽引フックの先端側の変形量を低減することができる共に、バンパ部材及びバンパ側取付部により荷重を分散させることができる。   According to the third aspect of the present invention, the through-holes provided in the bumper member and the bumper-side mounting portion are sized so that the traction hook can be contacted by a load acting in a direction intersecting the axial direction of the traction hook. Therefore, when the tow hook is deformed in the load acting direction due to a load acting in a direction intersecting the axial direction of the tow hook when the tow hook is used, the tow hook becomes an edge of the through hole provided in the bumper member and the bumper side mounting portion. Contact the part. Thereby, while being able to reduce the deformation amount of the front end side of a tow hook, a load can be disperse | distributed by a bumper member and a bumper side attaching part.

請求項4記載の本発明によれば、バンパ部材が車両幅方向に沿って配置されたバンパリインフォースで、バンパ側取付部がバンパリインフォースの車両幅方向の両端部に設けられたバンパアームであるので、例えば、バンパリインフォースが車両幅方向の両側で曲線形状に形成されている場合でも、車体側取付部材の車体側接合面とバンパアームのバンパ側接合面との間に牽引フック取付部材を挟持した状態で車体側取付部材及びバンパアームと共締めすることができる。   According to the fourth aspect of the present invention, the bumper member is a bumper reinforcement arranged along the vehicle width direction, and the bumper-side mounting portions are bumper arms provided at both ends of the bumper reinforcement in the vehicle width direction. For example, even when the bumper reinforcement is formed in a curved shape on both sides in the vehicle width direction, the tow hook mounting member is sandwiched between the vehicle body side joint surface of the vehicle body side mounting member and the bumper side joint surface of the bumper arm. It can be fastened together with the vehicle body side mounting member and the bumper arm.

以上説明したように、請求項1記載の本発明に係る牽引フック取付構造は、重量増加を抑制しつつ、牽引フック取付部材の変形を抑制することができるという優れた効果を有する。   As described above, the tow hook mounting structure according to the first aspect of the present invention has an excellent effect of suppressing deformation of the tow hook mounting member while suppressing an increase in weight.

請求項2記載の本発明に係る牽引フック取付構造は、車両の衝突時にバンパ部材の変形を阻害することを抑制することができるという優れた効果を有する。   The tow hook mounting structure according to the second aspect of the present invention has an excellent effect that it is possible to suppress the deformation of the bumper member during a vehicle collision.

請求項3記載の本発明に係る牽引フック取付構造は、牽引フックの先端側の変形量を低減することができる共に、バンパ部材及びバンパ側取付部を利用して荷重を分散させることができるという優れた効果を有する。   The tow hook mounting structure according to the third aspect of the present invention can reduce the amount of deformation on the tip side of the tow hook and can also distribute the load using the bumper member and the bumper side mounting portion. Has an excellent effect.

請求項4記載の本発明に係る牽引フック取付構造は、バンパリインフォースが車両幅方向の両側で曲線形状に形成されている場合でも、車体側取付部材の車体側接合面とバンパアームのバンパ側接合面との間に牽引フック取付部材を挟持して取り付けることができ、適用の自由度を高めることができるという優れた効果を有する。   According to a fourth aspect of the present invention, there is provided the tow hook mounting structure according to the present invention, even when the bumper reinforcement is formed in a curved shape on both sides in the vehicle width direction, the vehicle body side joint surface of the vehicle body side mounting member and the bumper side joint surface of the bumper arm. The tow hook attaching member can be sandwiched and attached between the two, and it has an excellent effect that the degree of freedom of application can be increased.

〔第1実施形態〕
以下、図1〜図5を用いて、本発明に係る牽引フック取付構造の第1実施形態について説明する。なお、これらの図において適宜示される矢印FRは車両前方側を示しており、矢印UPは車両上方側を示しており、矢印OUTは車両幅方向外側を示している。
[First Embodiment]
Hereinafter, a first embodiment of a tow hook mounting structure according to the present invention will be described with reference to FIGS. In these drawings, an arrow FR appropriately shown indicates the vehicle front side, an arrow UP indicates the vehicle upper side, and an arrow OUT indicates the vehicle width direction outer side.

図1には、本実施形態に係る牽引フック取付構造の全体構成の縦断面図が示されており、図2には、牽引フック取付構造の全体構成の横断面図が示されている。また、図3には、牽引フック取付構造の全体構成の分解斜視図が示されている。これらの図に示されるように、車両10の前部(車体前部)の両サイドには、車両前後方向に沿って延在するフロントサイドメンバ12が配設されている(なお、図1〜3では、車両幅方向の一方の端部のみが図示されている)。フロントサイドメンバ12は、筒状の車体骨格部材であり、車両幅方向に沿った断面が略矩形状に形成されている。フロントサイドメンバ12の前端部12Aの車両前方側には、車体側取付部材としてのプレート部材14が溶接等によって接合されている。プレート部材14は、車両上下方向及び車両幅方向に沿って平面状に形成された車体側接合面としての接合部14Aを備えている。さらにプレート部材14は、接合部14Aの上端部にフロントサイドメンバ12の前端部12A側(車両後方側)に折り曲げられた折曲部14Bと、接合部14Aの中間部からフロントサイドメンバ12の前端部12A側(車両後方側)に延びた横壁部14Cと、横壁部14Cの端部から接合部14Aの下端部に斜め方向に配置された斜面部14Dと、を備えている。プレート部材14は、折曲部14Bがフロントサイドメンバ12の前端部12Aの上部に面接触されると共に、横壁部14Cがフロントサイドメンバ12の前端部12Aの下部に面接触された状態で、フロントサイドメンバ12の前端部12Aに接合されている。接合部14Aには、フロントサイドメンバ12で囲まれた部分の内側に長円状の開口部16が形成されている。開口部16は、長辺が車両上下方向に沿って配置されている。   FIG. 1 shows a longitudinal sectional view of the entire configuration of the tow hook mounting structure according to the present embodiment, and FIG. 2 shows a transverse sectional view of the entire structure of the tow hook mounting structure. FIG. 3 shows an exploded perspective view of the overall structure of the tow hook mounting structure. As shown in these drawings, front side members 12 extending along the vehicle front-rear direction are disposed on both sides of the front portion (the front portion of the vehicle body) of the vehicle 10 (FIGS. 1 to 1). 3 shows only one end in the vehicle width direction). The front side member 12 is a cylindrical body frame member, and a cross section along the vehicle width direction is formed in a substantially rectangular shape. A plate member 14 as a vehicle body side attachment member is joined to the front side of the front end portion 12A of the front side member 12 by welding or the like. The plate member 14 includes a joint portion 14A as a vehicle body side joint surface formed in a planar shape along the vehicle vertical direction and the vehicle width direction. Further, the plate member 14 includes a bent portion 14B bent to the front end portion 12A side (vehicle rear side) of the front side member 12 at the upper end portion of the joint portion 14A, and the front end of the front side member 12 from an intermediate portion of the joint portion 14A. A horizontal wall portion 14C extending toward the portion 12A (vehicle rear side), and a slope portion 14D disposed obliquely from the end of the horizontal wall portion 14C to the lower end portion of the joint portion 14A. The plate member 14 has the bent portion 14B in surface contact with the upper portion of the front end portion 12A of the front side member 12, and the lateral wall portion 14C in surface contact with the lower portion of the front end portion 12A of the front side member 12. It is joined to the front end portion 12 </ b> A of the side member 12. An oval opening 16 is formed in the joint portion 14 </ b> A inside the portion surrounded by the front side member 12. The long side of the opening 16 is arranged along the vehicle vertical direction.

プレート部材14の車両前方側には、後述する牽引フック取付部材としてのブラケット18を挟んでバンパ側取付部としてのバンパアーム26が配置されており、さらにバンパアーム26の車両前方側にバンパ部材としてのバンパリインフォース24が配設されている。バンパリインフォース24は、車両前端部に配置されて車両幅方向に沿って延在されている。バンパアーム26は、バンパリインフォース24の車両後方側の車両幅方向両端部に設けられている。なお、バンパリインフォース24の車両前方側には、バンパーアブソーバ及びフロントバンパカバーが配設されている。バンパリインフォース24は、車両前後方向における縦方向(車両上下方向)に沿った断面が略「日」の字状に形成されており、車両前後方向に離間して配置された前壁24Aと後壁24Bが車両幅方向の中央部側に突出するように曲面形状に形成されている(図3参照)。バンパアーム26は、横方向(車両幅方向)に沿った断面の周囲が略台形状に形成されており、その内側に車両前後方向に沿って2枚の縦壁26Aが架け渡されている(図2参照)。バンパアーム26は、前端部にバンパリインフォース24の後壁24Bに沿って斜め方向に配置された縦壁部26Bと、後端部に車両上下方向に沿って配置されたバンパ側接合面としての平面状の接合部26Cと、を備えており、縦壁部26Bは車両幅方向両側に延設されている。バンパリインフォース24の前壁24Aと後壁24B、及びバンパアーム26の縦壁部26Bと接合部26Cには、車両前後方向に沿った位置に、牽引フック30が貫通される貫通孔28A、28B、28C、28Dが形成されている。バンパリインフォース24とバンパアーム26は、アルミニウム合金製の押出材で形成されており、これらはボルト又は溶接等で予め一体化されている。   A bumper arm 26 as a bumper side mounting portion is disposed on the vehicle front side of the plate member 14 with a bracket 18 as a traction hook mounting member to be described later interposed therebetween. Further, a bumper as a bumper member is disposed on the vehicle front side of the bumper arm 26. Reinforce 24 is provided. The bumper reinforcement 24 is disposed at the front end of the vehicle and extends along the vehicle width direction. The bumper arms 26 are provided at both ends of the bumper reinforcement 24 on the vehicle rear side in the vehicle width direction. A bumper absorber and a front bumper cover are disposed on the front side of the bumper reinforcement 24. The bumper reinforcement 24 has a cross section along the longitudinal direction (vehicle up-down direction) in the vehicle front-rear direction formed in a substantially “day” shape, and the front wall 24A and the rear wall that are spaced apart from each other in the vehicle front-rear direction. 24B is formed in a curved surface shape so as to protrude toward the center in the vehicle width direction (see FIG. 3). The bumper arm 26 is formed in a substantially trapezoidal shape around the cross section along the lateral direction (vehicle width direction), and two vertical walls 26A are bridged along the vehicle longitudinal direction inside the bumper arm 26 (FIG. 2). The bumper arm 26 has a vertical wall portion 26B disposed obliquely along the rear wall 24B of the bumper reinforcement 24 at the front end portion, and a planar shape as a bumper side joint surface disposed along the vehicle vertical direction at the rear end portion. 26C, and the vertical wall portion 26B extends on both sides in the vehicle width direction. Through holes 28A, 28B, and 28C through which the traction hook 30 passes are formed in the front wall 24A and the rear wall 24B of the bumper reinforcement 24 and the vertical wall portion 26B and the joint portion 26C of the bumper arm 26 at positions along the vehicle longitudinal direction. , 28D are formed. The bumper reinforcement 24 and the bumper arm 26 are formed of an extruded material made of aluminum alloy, and these are integrated in advance by bolts or welding.

牽引フック30は、車両前後方向に沿って配置された断面円形の棒状部材からなり、前端部には環状の引掛け部30Aが形成されている。牽引フック30の後端部には、前端部側の軸径よりも小径の小径部30Bが形成されており、小径部30Bの後端部の外周面には雄ねじ部30Cが設けられている。すなわち、牽引フック30は、雄ねじ部30Cを後述するナット20に螺合することによって取り付けるねじ込み式のフックである。   The tow hook 30 is composed of a rod-like member having a circular cross section disposed along the vehicle front-rear direction, and an annular hook portion 30A is formed at the front end portion. A small diameter portion 30B having a smaller diameter than the shaft diameter on the front end side is formed at the rear end portion of the pulling hook 30, and a male screw portion 30C is provided on the outer peripheral surface of the rear end portion of the small diameter portion 30B. That is, the traction hook 30 is a screw-in type hook that is attached by screwing the male screw portion 30C to a nut 20 described later.

先述したブラケット18は、車両上下方向に配置された板状部材からなり、ブラケット18の中央部に形成された開口を貫通するように車両前後方向に沿って牽引フック取付用のナット20が設けられている。ナット20は、円筒状の筒状部20Aと、筒状部20Aの中間部から半径方向外側に環状に突出する突出部20Bと、を備えており、突出部20Bがブラケット18の車両後方側の壁面に溶接等により接合されている。ナット20の筒状部20Aには、ブラケット18に接合された位置よりも車両後方側に、牽引フック30の雄ねじ部30Cが螺合されるナット部としての雌ねじ部20Cが形成されている。また、ナット20の筒状部20Aには、ブラケット18に接合された位置よりも車両前方側に雌ねじ部は形成されていない。ナット20は、ブラケット18に接合された位置よりも車両前方側の筒状部20Aの内径が牽引フック30の小径部30Bの外径よりも若干大きく形成されており、この筒状部20Aに牽引フック30の雄ねじ部30C及び小径部30Bが挿入可能となっている。ブラケット18に接合された位置よりも車両前方側の筒状部20Aは、牽引フック30の取付状態で牽引フック30の小径部30Bをガイドするガイド部となっている。   The bracket 18 described above is made of a plate-like member arranged in the vehicle vertical direction, and a nut 20 for attaching a tow hook is provided along the vehicle front-rear direction so as to penetrate an opening formed in the central portion of the bracket 18. ing. The nut 20 includes a cylindrical tubular portion 20A, and a protruding portion 20B that protrudes annularly radially outward from an intermediate portion of the cylindrical portion 20A. The protruding portion 20B is located on the vehicle rear side of the bracket 18. It is joined to the wall surface by welding or the like. The cylindrical portion 20A of the nut 20 is formed with a female screw portion 20C as a nut portion to which the male screw portion 30C of the traction hook 30 is screwed, on the vehicle rear side with respect to the position joined to the bracket 18. Further, the cylindrical portion 20 </ b> A of the nut 20 is not formed with a female screw portion on the front side of the vehicle from the position joined to the bracket 18. The nut 20 is formed such that the inner diameter of the cylindrical portion 20A on the front side of the vehicle from the position joined to the bracket 18 is slightly larger than the outer diameter of the small-diameter portion 30B of the traction hook 30, and the nut 20 is pulled by this cylindrical portion 20A. The male screw portion 30C and the small diameter portion 30B of the hook 30 can be inserted. The cylindrical portion 20 </ b> A on the front side of the vehicle with respect to the position joined to the bracket 18 is a guide portion that guides the small-diameter portion 30 </ b> B of the traction hook 30 when the traction hook 30 is attached.

ブラケット18は、ナット20をプレート部材14の開口部16に挿入すると共に、ブラケット18をプレート部材14の接合部14Aとバンパアーム26の接合部26Cとの間に挟み込んだ状態で、プレート部材14及びバンパアーム26と共締めされている。具体的には、ブラケット18の車両後方側壁面とプレート部材14の接合部14Aの車両前方側壁面とが面接触状態で配置されると共に、ブラケット18の車両前方側壁面とバンパアーム26の接合部26Cの車両後方側壁面とが面接触状態で配置され、この状態でプレート部材14とブラケット18とバンパアーム26とが複数のボルトとナットにより締結固定されている。本実施形態では、プレート部材14及びバンパアーム26の接合部26Cの車両下部側に設けられたボルト貫通孔14E、26Dに接合部26Cの側からボルト34が貫通されてプレート部材14の側からナット36が螺合されている(図1参照)。さらに、プレート部材14及びバンパアーム26の接合部26Cの車両幅方向内側に設けられたボルト貫通孔14F、26Eに接合部26Cの側からボルト38が貫通されてプレート部材14の側からナット40が螺合されており、プレート部材14とブラケット18とバンパアーム26の接合部26Cの車両幅方向外側に設けられたボルト貫通孔14G、18A、26Fにプレート部材14の側からボルト42が貫通されて接合部26Cの側からナット44が螺合されている(図2参照)。なお、ブラケット18をプレート部材14及びバンパアーム26の接合部26Cに共締めするボルトとナットは複数設けられているが、他のボルトとナットについては図示を省略する。本実施形態では、板状のブラケット18のナット20の周囲部が、プレート部材14の接合部14Aとバンパアーム26の接合部26Cとの間に挟持された状態で保持される荷重受部となっており、ブラケット18の荷重受部の周囲におけるボルト貫通孔18A等が設けられた部分が取付部となっている。   The bracket 18 inserts the nut 20 into the opening 16 of the plate member 14, and the plate member 14 and the bumper arm in a state where the bracket 18 is sandwiched between the joint portion 14 </ b> A of the plate member 14 and the joint portion 26 </ b> C of the bumper arm 26. 26 and tightened together. Specifically, the vehicle rear side wall surface of the bracket 18 and the vehicle front side wall surface of the joint portion 14 </ b> A of the plate member 14 are arranged in a surface contact state, and the joint portion 26 </ b> C of the vehicle front side wall surface of the bracket 18 and the bumper arm 26. The plate member 14, the bracket 18, and the bumper arm 26 are fastened and fixed by a plurality of bolts and nuts in this state. In this embodiment, the bolt 34 is penetrated from the joint portion 26C side into the bolt through holes 14E and 26D provided on the vehicle lower side of the joint portion 26C of the plate member 14 and the bumper arm 26, and the nut 36 from the plate member 14 side. Are screwed together (see FIG. 1). Further, the bolt 38 is penetrated from the joint portion 26C side into the bolt through holes 14F and 26E provided on the inner side in the vehicle width direction of the joint portion 26C of the plate member 14 and the bumper arm 26, and the nut 40 is screwed from the plate member 14 side. The bolt 42 is penetrated from the side of the plate member 14 into the bolt through holes 14G, 18A, 26F provided on the outer side in the vehicle width direction of the joint portion 26C of the plate member 14, the bracket 18, and the bumper arm 26. A nut 44 is screwed from the 26C side (see FIG. 2). A plurality of bolts and nuts that fasten the bracket 18 to the plate member 14 and the joint portion 26C of the bumper arm 26 are provided, but the other bolts and nuts are not shown. In the present embodiment, the peripheral portion of the nut 20 of the plate-like bracket 18 is a load receiving portion that is held in a state of being sandwiched between the joint portion 14A of the plate member 14 and the joint portion 26C of the bumper arm 26. In addition, the portion provided with the bolt through hole 18A and the like around the load receiving portion of the bracket 18 is an attachment portion.

そして、車両前方側から牽引フック30の雄ねじ部30Cをバンパリインフォース24の貫通孔28A、28B及びバンパアーム26の貫通孔28Dに貫通させると共に、ナット20の筒状部20Aに貫通させてナット20の雌ねじ部20Cに螺合させる。これによって、牽引フック30が車両前後方向に沿って配置されて、ブラケット18に固定されたナット20に取り付けられる。ナット20の雌ねじ部20Cは、ブラケット18をプレート部材14の接合部14Aとバンパアーム26の接合部26Cとの間に挟み込んでプレート部材14及びバンパアーム26と共締めされた状態で、バンパアーム26の接合部26Cよりもフロントサイドメンバ12の側に配置されている。言い換えると、ナット20の雌ねじ部20Cは、ブラケット18と接合されるバンパアーム26の接合部26Cを挟んでバンパリインフォース24と反対側に設けられている。   Then, the male screw portion 30C of the tow hook 30 is passed through the through holes 28A and 28B of the bumper reinforcement 24 and the through hole 28D of the bumper arm 26 from the front side of the vehicle, and is passed through the cylindrical portion 20A of the nut 20 and the female screw of the nut 20 Screwed into the portion 20C. As a result, the tow hook 30 is disposed along the vehicle front-rear direction and attached to the nut 20 fixed to the bracket 18. The female screw portion 20C of the nut 20 is a joint portion of the bumper arm 26 in a state where the bracket 18 is sandwiched between the joint portion 14A of the plate member 14 and the joint portion 26C of the bumper arm 26 and is fastened together with the plate member 14 and the bumper arm 26. It is arranged closer to the front side member 12 than 26C. In other words, the female screw portion 20 </ b> C of the nut 20 is provided on the opposite side of the bumper reinforcement 24 across the joint portion 26 </ b> C of the bumper arm 26 joined to the bracket 18.

なお、ナット20は、牽引フック30の雄ねじ部30Cが螺合されたときのガイドとして、車両前方側の筒状部20Aを長くしてもよいし、軽量化等により必要最小限の長さとしてもよい。   Note that the nut 20 may have a long cylindrical portion 20A on the front side of the vehicle as a guide when the male screw portion 30C of the traction hook 30 is screwed together, or may have a minimum necessary length due to weight reduction or the like. Also good.

バンパリインフォース24の貫通孔28A、28Bとバンパアーム26の貫通孔28Dの内径は、牽引フック30の外径より若干大きく形成されている。言い換えると、バンパリインフォース24の貫通孔28A、28Bとバンパアーム26の貫通孔28Dは、牽引フック30の軸方向と交差する方向へ作用する荷重により、変形した牽引フック30が接触可能な大きさに形成されている。   The inner diameters of the through holes 28 </ b> A and 28 </ b> B of the bumper reinforcement 24 and the through holes 28 </ b> D of the bumper arm 26 are slightly larger than the outer diameter of the traction hook 30. In other words, the through holes 28 </ b> A and 28 </ b> B of the bumper reinforcement 24 and the through holes 28 </ b> D of the bumper arm 26 are formed in such a size that the deformed traction hook 30 can be contacted by a load acting in a direction crossing the axial direction of the traction hook 30. Has been.

なお、バンパリインフォース24の前壁24Aと後壁24B、及びバンパアーム26の縦壁部26Bには、それぞれ車両前後方向に沿って複数の円形の開口部46A、46B、46Cが形成されている。   A plurality of circular openings 46A, 46B, and 46C are formed in the front wall 24A and the rear wall 24B of the bumper reinforcement 24 and the vertical wall portion 26B of the bumper arm 26, respectively, along the vehicle front-rear direction.

また、牽引フック30は、他車の牽引、被牽引に使用されるほか、船舶等で車両10を運搬するときに車両10を拘束するタイダウンフックとして使用することもできる。牽引フック30の使用時には、押し引き方向の入力、又は船舶等で運送する場合の車両幅方向や車両下方側方向の入力が牽引フック30に入る。   The tow hook 30 can be used as a tie-down hook for restraining the vehicle 10 when the vehicle 10 is transported by a ship or the like, in addition to being used for towing and towing other vehicles. When the tow hook 30 is used, an input in the push / pull direction or an input in the vehicle width direction or the vehicle lower side direction when transporting by ship or the like enters the tow hook 30.

次に、本実施形態の作用並びに効果について説明する。   Next, the operation and effect of this embodiment will be described.

ナット20が固定されたブラケット18が、フロントサイドメンバ12の前端部に接合されたプレート部材14に締結固定されており、牽引フック30からの荷重をバンパアーム26及びバンパリインフォース24を介してではなく、車体側のフロントサイドメンバ12に直接伝達することができる。その際、ナット20が車体側のフロントサイドメンバ12やプレート部材14に直接固定されておらず、ブラケット18に固定されているため、ブラケット18を通じて荷重を分散して伝達することができる。以下、牽引フック30の使用による入力時の力の伝達経路を場合分けして説明する。   The bracket 18 to which the nut 20 is fixed is fastened and fixed to the plate member 14 joined to the front end portion of the front side member 12, and the load from the traction hook 30 is not transmitted via the bumper arm 26 and the bumper reinforcement 24. It can be directly transmitted to the front side member 12 on the vehicle body side. At this time, since the nut 20 is not directly fixed to the front side member 12 or the plate member 14 on the vehicle body side but is fixed to the bracket 18, the load can be distributed and transmitted through the bracket 18. Hereinafter, the transmission path of the force at the time of input by using the tow hook 30 will be described for each case.

(1)牽引フック30から引っ張り側の入力が入る場合、すなわち、図4中の矢印Aに示されるような入力が入る場合、牽引フック30からの入力はナット20を介してブラケット18に入力される。この荷重は、ブラケット18とプレート部材14との締結部を介してフロントサイドメンバ12側へと伝達される。このとき、ブラケット18とバンパアーム26の接合部26Cも面接触状態で配置されているため、ブラケット18の変形を抑制することができる。また、プレート部材14の接合部14Aとブラケット18とバンパアーム26の接合部26Cとを締結固定している締結部を介し、バンパアーム26、バンパリインフォース24を通じて車両幅方向反対側のプレート部材14との締結部(フロントサイドメンバ12への取付部)へも荷重を伝達することができる。このため、ブラケット18の重量増加を抑制しつつ、ブラケット18の変形を抑制することができる。   (1) When an input on the pulling side is input from the pulling hook 30, that is, when an input as indicated by an arrow A in FIG. 4 is input, the input from the pulling hook 30 is input to the bracket 18 via the nut 20. The This load is transmitted to the front side member 12 side through the fastening portion between the bracket 18 and the plate member 14. At this time, since the joint portion 26C between the bracket 18 and the bumper arm 26 is also arranged in a surface contact state, the deformation of the bracket 18 can be suppressed. Further, the plate member 14 is fastened to the plate member 14 on the opposite side in the vehicle width direction through the bumper arm 26 and the bumper reinforcement 24 via a fastening portion that fastens and fixes the joint portion 14A of the plate member 14, the bracket 18 and the joint portion 26C of the bumper arm 26. The load can also be transmitted to the portion (attachment portion to the front side member 12). For this reason, deformation of the bracket 18 can be suppressed while suppressing an increase in the weight of the bracket 18.

(2)牽引フック30から圧縮側の入力が入る場合、すなわち、図4中の矢印Bに示されるような入力が入る場合、牽引フック30からの入力は、ナット20を介してブラケット18へ入力される。この荷重は、ブラケット18とプレート部材14の接合部14Aとの接合面を介して、フロントサイドメンバ12側へと伝達される。その際、ブラケット18とプレート部材14の接合部14Aとは面接触状態で配置されているので、ブラケット18の変形を抑制することができる。   (2) When an input on the compression side is input from the tow hook 30, that is, when an input as indicated by an arrow B in FIG. 4 is input, the input from the tow hook 30 is input to the bracket 18 through the nut 20. Is done. This load is transmitted to the front side member 12 side through the joint surface between the bracket 18 and the joint portion 14A of the plate member 14. At this time, since the bracket 18 and the joint portion 14A of the plate member 14 are arranged in a surface contact state, deformation of the bracket 18 can be suppressed.

(3)牽引フック30から横向き(車両幅方向と平行な方向)の入力が入る場合、すなわち、図4中の矢印Cに示されるような入力が入る場合、牽引フック30の先端部(車両前端部)が車両幅方向の荷重入力方向に撓み変形すると共に、牽引フック30からの入力は、ナット20を介してブラケット18へ入力され、上記(1)、(2)と同様に荷重が伝達される。その際、牽引フック30が貫通されたバンパリインフォース24等の貫通孔28A、28B、28Cが必要最小限の径に設定されているので、変形が生じた牽引フック30が貫通孔28A、28B、28Cの少なくとも1つの縁部(孔コバ)に当たり、牽引フック30の先端部の変形量を低減することができると共に、バンパリインフォース24を介して荷重を分散させることができる。すなわち、変形が生じた牽引フック30が貫通孔28A、28B、28Cの縁部に当たることで、バンパアーム26、バンパリインフォース24を介して、車両幅方向反対側のプレート部材14との締結部(フロントサイドメンバ12への取付部)へも荷重が分散され、負担を軽減することができる。   (3) When a lateral input (direction parallel to the vehicle width direction) is input from the tow hook 30, that is, when an input as indicated by an arrow C in FIG. 4 is input, the front end portion of the tow hook 30 (the front end of the vehicle) Part) bends and deforms in the load input direction in the vehicle width direction, and the input from the tow hook 30 is input to the bracket 18 via the nut 20, and the load is transmitted in the same manner as in the above (1) and (2). The At that time, since the through holes 28A, 28B, 28C such as the bumper reinforcement 24 through which the tow hook 30 is penetrated are set to the minimum necessary diameter, the deformed tow hook 30 has the through holes 28A, 28B, 28C. It is possible to reduce the amount of deformation of the tip of the tow hook 30 and to distribute the load via the bumper reinforcement 24 when hitting at least one edge (hole edge). That is, when the deformed traction hook 30 hits the edge of the through holes 28A, 28B, 28C, the fastening portion (front side) with the plate member 14 on the opposite side in the vehicle width direction via the bumper arm 26 and the bumper reinforcement 24. The load is also distributed to the attachment portion to the member 12, and the burden can be reduced.

(4)牽引フック30から車両下向きの入力が入る場合、すなわち、図5中の矢印Dに示されるような入力が入る場合、牽引フック30の先端部(車両前端部)が車両下方側に撓み変形すると共に、牽引フック30からの入力は、ナット20を介してブラケット18へ入力され、上記(3)と同じ考え方で荷重が伝達される。その際、牽引フック30が貫通されたバンパリインフォース24等の貫通孔28A、28B、28Cが必要最小限の径に設定されているので、変形が生じた牽引フック30が貫通孔28A、28B、28Cの少なくとも1つの縁部(孔コバ)に当たり、牽引フック30の先端部の変形量を低減することができると共に、バンパリインフォース24を介して荷重を分散させることができる。   (4) When a vehicle downward input is input from the tow hook 30, that is, when an input as indicated by an arrow D in FIG. 5 is input, the tip end portion (vehicle front end portion) of the tow hook 30 bends to the vehicle lower side. In addition to the deformation, the input from the tow hook 30 is input to the bracket 18 via the nut 20 and the load is transmitted in the same way as the above (3). At that time, since the through holes 28A, 28B, 28C such as the bumper reinforcement 24 through which the tow hook 30 is penetrated are set to the minimum necessary diameter, the deformed tow hook 30 has the through holes 28A, 28B, 28C. It is possible to reduce the amount of deformation of the tip of the tow hook 30 and to distribute the load via the bumper reinforcement 24 when hitting at least one edge (hole edge).

上記のように、本実施形態の牽引フック取付構造では、牽引フック30からの各方向の入力に対し、効果的に荷重を伝達することができる。さらに、牽引フック30が螺合されるブラケット18をプレート部材14の接合部14Aとバンパアーム26の接合部26Cとの間に挟んでプレート部材14及びバンパアーム26と共締めしているので、牽引フックを固定するための専用の締結部品や補強部品等が必要でなく、低コスト化が可能である。   As described above, in the tow hook mounting structure of the present embodiment, a load can be effectively transmitted in response to input in each direction from the tow hook 30. Further, since the bracket 18 to which the traction hook 30 is screwed is sandwiched between the joint portion 14A of the plate member 14 and the joint portion 26C of the bumper arm 26, the plate member 14 and the bumper arm 26 are fastened together. Dedicated fastening parts and reinforcing parts for fixing are not necessary, and the cost can be reduced.

また、ナット20の雌ねじ部20Cは、ブラケット18をプレート部材14の接合部14Aとバンパアーム26の接合部26Cとの間に挟んでプレート部材14及びバンパアーム26と共締めした状態で、バンパアーム26の接合部26Cよりフロントサイドメンバ12の側に配置されているので、車両10の衝突時にバンパリインフォース24及びバンパアーム26の変形を阻害することを抑制することができる。   The female screw portion 20C of the nut 20 is joined to the bumper arm 26 in a state where the bracket 18 is sandwiched between the joint portion 14A of the plate member 14 and the joint portion 26C of the bumper arm 26 and fastened together with the plate member 14 and the bumper arm 26. Since it is arranged closer to the front side member 12 than the portion 26C, it is possible to suppress the deformation of the bumper reinforcement 24 and the bumper arm 26 when the vehicle 10 collides.

さらに、本実施形態の牽引フック取付構造は、車両10の車体側取付部材や車体骨格部材がアルミニウム合金や複合材料などの素材強度が低い材料で構成されている場合、荷重を分散して伝達することができるため、車体側取付部材や車体骨格部材にかかる負担を軽減することができる。   Furthermore, the tow hook mounting structure of the present embodiment distributes and transmits the load when the vehicle body side mounting member and the vehicle body frame member of the vehicle 10 are made of a material with low material strength such as an aluminum alloy or a composite material. Therefore, the burden on the vehicle body side mounting member and the vehicle body skeleton member can be reduced.

〔第2実施形態〕
以下、図6を用いて、本発明に係る牽引フック取付構造の第2実施形態について説明する。なお、前述した第1実施形態と同一構成部分については、同一番号を付してその説明を省略する。
[Second Embodiment]
Hereinafter, the second embodiment of the tow hook mounting structure according to the present invention will be described with reference to FIG. In addition, about the same component as 1st Embodiment mentioned above, the same number is attached | subjected and the description is abbreviate | omitted.

図6に示されるように、車両50の前部には、フロントサイドメンバ12の前端部にはプレート部材56が溶接等により接合されており、バンパアーム26の接合部26Cとプレート部材56の接合部56Aとの間に箱状のブラケット52が配設されている。ブラケット52の前壁52Aがバンパアーム26の接合部26Cに面接触状態で配置されると共に、ブラケット52の後壁52Bがプレート部材56の接合部56Aに面接触状態で配置されており、ブラケット52が図示しない複数のボルトとナットによりプレート部材56及びバンパアーム26と共締めされている。なお、図6に示される一点鎖線Pはボルト締結線を現している。ブラケット52には、前壁52Aと後壁52Bを貫通するナット54が設けられている。ナット54とブラケット52とは、鋳造、鍛造等で一体に形成されている。バンパアーム26の接合部26Cには、ナット54が設けられた位置に貫通孔58が形成されており、プレート部材56の接合部56Aには、ナット54が設けられた位置に貫通孔60が形成されている。   As shown in FIG. 6, a plate member 56 is joined to the front end portion of the front side member 12 at the front portion of the vehicle 50 by welding or the like, and the joint portion 26 </ b> C of the bumper arm 26 and the joint portion of the plate member 56. A box-shaped bracket 52 is disposed between the bracket 56A. The front wall 52A of the bracket 52 is disposed in surface contact with the joint portion 26C of the bumper arm 26, and the rear wall 52B of the bracket 52 is disposed in surface contact with the joint portion 56A of the plate member 56. The plate member 56 and the bumper arm 26 are fastened together by a plurality of bolts and nuts (not shown). In addition, the dashed-dotted line P shown by FIG. 6 represents the bolt fastening line. The bracket 52 is provided with a nut 54 that passes through the front wall 52A and the rear wall 52B. The nut 54 and the bracket 52 are integrally formed by casting, forging or the like. A through hole 58 is formed in the joint portion 26C of the bumper arm 26 at a position where the nut 54 is provided, and a through hole 60 is formed in the joint portion 56A of the plate member 56 at a position where the nut 54 is provided. ing.

牽引フック30の雄ねじ部30Cを車両前方側からバンパリインフォース24の貫通孔28A、28Bに貫通させると共に、バンパアーム26の貫通孔28Dに貫通させ、ナット54に螺合させることで、牽引フック30がブラケット52に取り付けられている。   The male threaded portion 30C of the tow hook 30 is passed through the through holes 28A and 28B of the bumper reinforcement 24 from the front side of the vehicle, and is also passed through the through holes 28D of the bumper arm 26 and screwed into the nut 54, whereby the tow hook 30 is bracketed. 52 is attached.

ナット54は、ブラケット52がバンパアーム26の接合部26Cとプレート部材56の接合部56Aとの間に挟まれてバンパアーム26の接合部26C及びプレート部材56の接合部56Aと共締めされた状態で、バンパアーム26の接合部26Cより車体側のプレート部材56側に配置されている。すなわち、この構成では、ナット54からバンパアーム26側に突出する牽引フック30のガイドは設けられていない。   The nut 54 is sandwiched between the joint portion 26C of the bumper arm 26 and the joint portion 56A of the plate member 56 so that the nut 52 is fastened together with the joint portion 26C of the bumper arm 26 and the joint portion 56A of the plate member 56. The bumper arm 26 is disposed closer to the plate member 56 side of the vehicle body than the joint portion 26C. That is, in this configuration, the guide of the pulling hook 30 that protrudes from the nut 54 toward the bumper arm 26 is not provided.

このような牽引フック取付構造では、ナット54が一体に形成されたブラケット52がフロントサイドメンバ12の前端部に接合されたプレート部材56に締結固定されており、牽引フック30からの荷重をバンパアーム26及びバンパリインフォース24を介してではなく、車体側のプレート部材56及びフロントサイドメンバ12に直接伝達することができる。その際、ナット20が車体側のフロントサイドメンバ12やプレート部材56に直接固定されておらず、ナット20がブラケット52に固定されているため、ブラケット52を通じて荷重を分散して伝達することができる。   In such a tow hook mounting structure, the bracket 52 integrally formed with the nut 54 is fastened and fixed to the plate member 56 joined to the front end portion of the front side member 12, and the load from the tow hook 30 is applied to the bumper arm 26. And it can be transmitted directly to the plate member 56 and the front side member 12 on the vehicle body side, not via the bumper reinforcement 24. At this time, the nut 20 is not directly fixed to the front side member 12 or the plate member 56 on the vehicle body side, and the nut 20 is fixed to the bracket 52, so that the load can be distributed and transmitted through the bracket 52. .

また、ナット54は、ブラケット52がバンパアーム26の接合部26Cとプレート部材56の接合部56Aとの間に挟まれてバンパアーム26の接合部26C及びプレート部材56の接合部56Aと共締めされた状態で、バンパアーム26の接合部26Cより車体側のプレート部材56側に配置されているので、車両50の衝突時にバンパリインフォース24及びバンパアーム26の変形を阻害することを防止できる。   The nut 54 is a state in which the bracket 52 is sandwiched between the joint portion 26C of the bumper arm 26 and the joint portion 56A of the plate member 56 and is fastened together with the joint portion 26C of the bumper arm 26 and the joint portion 56A of the plate member 56. Since the bumper arm 26 is disposed closer to the plate member 56 on the vehicle body side than the joint portion 26C of the bumper arm 26, it is possible to prevent the deformation of the bumper reinforcement 24 and the bumper arm 26 during the collision of the vehicle 50.

〔実施形態の補足説明〕
上述した第1実施形態及び第2実施形態では、バンパリインフォース24は、車両幅方向中央部が車両前方側に突出するように湾曲形状に形成されているが、バンパリインフォース24を直線形状に形成してもよい。バンパリインフォース24が直線形状の場合は、バンパアーム26は不要である。この場合、バンパリインフォース24の車両幅方向両端部が本発明のバンパ側取付部に相当する。
[Supplementary explanation of the embodiment]
In the first embodiment and the second embodiment described above, the bumper reinforcement 24 is formed in a curved shape so that the central portion in the vehicle width direction protrudes toward the vehicle front side, but the bumper reinforcement 24 is formed in a linear shape. May be. When the bumper reinforcement 24 is linear, the bumper arm 26 is not necessary. In this case, both end portions in the vehicle width direction of the bumper reinforcement 24 correspond to the bumper side mounting portions of the present invention.

また、鋼板をプレス成形することにより構成されたフロントサイドメンバ及びバンパリインフォースに対して本発明を適用してもよい。   Moreover, you may apply this invention with respect to the front side member and bumper reinforcement comprised by press-molding a steel plate.

上述した第1実施形態及び第2実施形態では、ナット20、54が固定されたブラケット18、52をフロントサイドメンバ12の前端部に固定されたプレート部材14、56に締結したが、これに限定されず、他の車体側取付部材に締結固定してもよい。   In the first embodiment and the second embodiment described above, the brackets 18 and 52 to which the nuts 20 and 54 are fixed are fastened to the plate members 14 and 56 that are fixed to the front end portion of the front side member 12. Instead, it may be fastened and fixed to another vehicle body side mounting member.

上述した第1実施形態では、ブラケット18に固定されたナット20の筒状部20Aが車両前後方向に沿って配置されると共に、ナット20の雌ねじ部20Cが、ブラケット18と締結固定されるバンパアーム26の接合部26Cより車体側取付部材側に配置されているが、これに限定されず、ブラケット18よりも車両前方側の筒状部20A(牽引フック30のガイド)の長さを短くし、又は、ブラケット18よりも車両前方側の筒状部20A(牽引フック30のガイド部)を設けない構成としてもよい。ブラケット18よりも車両前方側の筒状部20Aの長さを短くし、又は、ブラケット18よりも車両前方側の筒状部20Aを設けない方が、車両の衝突時にバンパリインフォース24及びバンパアーム26の変形を阻害しにくい。   In the first embodiment described above, the cylindrical portion 20A of the nut 20 fixed to the bracket 18 is arranged along the vehicle front-rear direction, and the female screw portion 20C of the nut 20 is fastened and fixed to the bracket 18. However, the present invention is not limited to this, and the length of the cylindrical portion 20A (guide of the tow hook 30) on the vehicle front side relative to the bracket 18 is shortened, or The cylindrical portion 20A (the guide portion of the tow hook 30) on the front side of the vehicle with respect to the bracket 18 may not be provided. The length of the cylindrical portion 20A on the front side of the vehicle relative to the bracket 18 or the case where the cylindrical portion 20A on the front side of the vehicle relative to the bracket 18 is not provided is greater than that of the bumper reinforcement 24 and the bumper arm 26 when the vehicle collides. It is difficult to prevent deformation.

上述した第1実施形態及び第2実施形態では、車両10の前端部に牽引フック30が取り付けられているが、これに限定されず、車両10の後端部に牽引フック30を取り付ける場合にも本発明を適用可能である。   In the first embodiment and the second embodiment described above, the traction hook 30 is attached to the front end portion of the vehicle 10, but the present invention is not limited to this, and also when the traction hook 30 is attached to the rear end portion of the vehicle 10. The present invention is applicable.

第1実施形態に係る牽引フック取付構造の全体構成を示す縦断面図である。It is a longitudinal section showing the whole pull hook attachment structure concerning a 1st embodiment. 第1実施形態に係る牽引フック取付構造の全体構成を示す横断面図である。It is a cross-sectional view which shows the whole structure of the pulling hook attachment structure which concerns on 1st Embodiment. 第1実施形態に係る牽引フック取付構造を示す分解斜視図である。It is a disassembled perspective view which shows the tow hook attachment structure which concerns on 1st Embodiment. 牽引フックから入る入力の方向を示す横断面図である。It is a cross-sectional view showing the direction of input entering from the tow hook. 牽引フックから入る入力の方向を示す縦断面図である。It is a longitudinal cross-sectional view which shows the direction of the input which enters from a tow hook. 第2実施形態に係る牽引フック取付構造の全体構成を示す横断面図である。It is a cross-sectional view which shows the whole structure of the tow hook attachment structure which concerns on 2nd Embodiment.

符号の説明Explanation of symbols

10 車両(車体前部)
12 フロントサイドメンバ(車体骨格部材)
12A 前端部(端部)
14 プレート部材(車体側取付部材)
14A 接合部(車体側接合面)
18 ブラケット(牽引フック取付部材)
20 ナット(ナット部)
20C 雌ねじ部(ナット部)
24 バンパリインフォース(バンパ部材)
26 バンパアーム(バンパ側取付部)
26C 接合部(バンパ側接合面)
28A 貫通孔
28C 貫通孔
28D 貫通孔
30 牽引フック
30C 雄ねじ部(雄ねじ)
50 車両(車体前部)
52 ブラケット(牽引フック取付部材)
54 ナット(ナット部)
56 プレート部材(車体側取付部材)
56A 接合部(車体側接合面)
10 Vehicle (front of vehicle body)
12 Front side member (body frame member)
12A Front end (end)
14 Plate member (vehicle body side mounting member)
14A Joint (Body side joint surface)
18 Bracket (Towing hook mounting member)
20 Nut (Nut part)
20C Female thread part (nut part)
24 Bumper reinforcement (bumper material)
26 Bumper arm (bumper side mounting part)
26C joint (bumper side joint surface)
28A Through-hole 28C Through-hole 28D Through-hole 30 Towing hook 30C Male thread part (Male thread)
50 vehicle (front of vehicle body)
52 Bracket (Towing hook mounting member)
54 Nut (Nut)
56 Plate member (vehicle body side mounting member)
56A Joint (Body side joint surface)

Claims (4)

車体前部又は車体後部における車両幅方向の両側部に車両前後方向に沿って配置された左右一対の車体骨格部材の端部に設けられ、車体側接合面を備えた車体側取付部材と、
前記左右一対の車体骨格部材の端部間に架け渡されたバンパ部材に備えられ、前記車体側接合面への固定部となるバンパ側接合面を備えたバンパ側取付部と、
前記バンパ部材及び前記バンパ側取付部に同軸上に形成された貫通孔内へ車体外側から挿入され、挿入側端部の外周面に雄ねじが形成された牽引フックと、
前記車体側接合面と前記バンパ側接合面との間に挟持された状態で前記車体側取付部材及び前記バンパ側取付部と共締めされる取付部と、車両前後方向に見て前記貫通孔と重なる位置に設けられると共に前記牽引フックの雄ねじが螺合されるナット部と、前記ナット部の周囲部を構成すると共に前記車体側取付部材及び前記バンパ側取付部間に挟持された状態で保持される荷重受部と、を含んで構成された牽引フック取付部材と、
を有することを特徴とする牽引フック取付構造。
A vehicle body side mounting member provided at the ends of a pair of left and right vehicle body skeleton members arranged along the vehicle longitudinal direction on both sides in the vehicle width direction at the vehicle body front part or vehicle body rear part, and having a vehicle body side joint surface;
A bumper side mounting portion provided on a bumper member spanned between the ends of the pair of left and right vehicle body skeleton members, and provided with a bumper side joint surface serving as a fixing portion to the vehicle body side joint surface;
A tow hook inserted from the outside of the vehicle body into a through hole formed coaxially in the bumper member and the bumper side mounting portion, and having an external thread formed on the outer peripheral surface of the insertion side end;
An attachment portion that is fastened together with the vehicle body side attachment member and the bumper side attachment portion in a state of being sandwiched between the vehicle body side joint surface and the bumper side joint surface, and the through hole as viewed in the vehicle front-rear direction. A nut portion that is provided at an overlapping position and that is screwed with a male screw of the traction hook, and constitutes a peripheral portion of the nut portion and is held in a state of being sandwiched between the vehicle body side mounting member and the bumper side mounting portion. A tow hook mounting member configured to include a load receiving portion,
A tow hook mounting structure characterized by comprising:
前記牽引フック取付部材の取付状態では、前記ナット部が前記バンパ側接合面よりも前記車体側取付部材側に配置されていることを特徴とする請求項1に記載の牽引フック取付構造。   The tow hook mounting structure according to claim 1, wherein the nut portion is disposed closer to the vehicle body side mounting member than the bumper side joining surface in the mounted state of the tow hook mounting member. 前記貫通孔は、前記牽引フックの軸方向と交差する方向へ作用する荷重により前記牽引フックが接触可能な大きさとされていることを特徴とする請求項1又は請求項2に記載の牽引フック取付構造。   The tow hook attachment according to claim 1 or 2, wherein the through hole is sized so that the tow hook can be contacted by a load acting in a direction crossing an axial direction of the tow hook. Construction. 前記バンパ部材が車両幅方向に沿って配置されたバンパリインフォースであり、
前記バンパ側取付部が前記バンパリインフォースの車両幅方向の両端部に設けられたバンパアームであることを特徴とする請求項1から請求項3までのいずれか1項に記載の牽引フック取付構造。
The bumper reinforcement is disposed along the vehicle width direction of the bumper member,
The tow hook mounting structure according to any one of claims 1 to 3, wherein the bumper side mounting portions are bumper arms provided at both ends of the bumper reinforcement in the vehicle width direction.
JP2008144779A 2008-06-02 2008-06-02 Tow hook mounting structure Expired - Fee Related JP5104555B2 (en)

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Cited By (9)

* Cited by examiner, † Cited by third party
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JP2012140026A (en) * 2010-12-28 2012-07-26 Showa Denko Kk Shock absorbing member for vehicle
WO2012131855A1 (en) 2011-03-25 2012-10-04 トヨタ自動車株式会社 Structure of vehicle end section
CN103660817A (en) * 2012-09-13 2014-03-26 理研精工股份有限公司 Traction hook
KR20150109172A (en) * 2014-03-19 2015-10-01 주식회사 성우하이텍 Bumper beam unit for vehicle
CN106274322A (en) * 2015-05-28 2017-01-04 长城汽车股份有限公司 A kind of car puller hook assembly, vehicle frame and automobile
US9604513B2 (en) 2013-11-21 2017-03-28 Hyundai Motor Company Cap having expanded pad and towing pipe mounted to said cap
JP2017171133A (en) * 2016-03-24 2017-09-28 本田技研工業株式会社 Bumper structure for vehicle
US10179489B2 (en) * 2017-02-13 2019-01-15 Ford Global Technologies, Llc Tow-hook assembly
FR3074750A1 (en) * 2017-12-11 2019-06-14 Compagnie Plastic Omnium IMPACT ABSORPTION SYSTEM FOR MOTOR VEHICLE

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JP2002053065A (en) * 2000-08-09 2002-02-19 Fuji Heavy Ind Ltd Installing structure for traction hook
JP2008013157A (en) * 2006-07-10 2008-01-24 Nissan Motor Co Ltd Bumper structure for automobile
JP2008037220A (en) * 2006-08-04 2008-02-21 Kobe Steel Ltd Mounting structure for attachable/detachable traction hook

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2012140026A (en) * 2010-12-28 2012-07-26 Showa Denko Kk Shock absorbing member for vehicle
WO2012131855A1 (en) 2011-03-25 2012-10-04 トヨタ自動車株式会社 Structure of vehicle end section
US8820804B2 (en) 2011-03-25 2014-09-02 Toyota Jidosha Kabushiki Kaisha Vehicle end section structure
CN103660817A (en) * 2012-09-13 2014-03-26 理研精工股份有限公司 Traction hook
US9604513B2 (en) 2013-11-21 2017-03-28 Hyundai Motor Company Cap having expanded pad and towing pipe mounted to said cap
KR20150109172A (en) * 2014-03-19 2015-10-01 주식회사 성우하이텍 Bumper beam unit for vehicle
KR101650775B1 (en) 2014-03-19 2016-08-24 주식회사 성우하이텍 Bumper beam unit for vehicle
CN106274322A (en) * 2015-05-28 2017-01-04 长城汽车股份有限公司 A kind of car puller hook assembly, vehicle frame and automobile
JP2017171133A (en) * 2016-03-24 2017-09-28 本田技研工業株式会社 Bumper structure for vehicle
US10179489B2 (en) * 2017-02-13 2019-01-15 Ford Global Technologies, Llc Tow-hook assembly
FR3074750A1 (en) * 2017-12-11 2019-06-14 Compagnie Plastic Omnium IMPACT ABSORPTION SYSTEM FOR MOTOR VEHICLE
WO2019115552A1 (en) * 2017-12-11 2019-06-20 Compagnie Plastic Omnium Impact-absorbing system for a motor vehicle

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