JP2010043703A - Parts attaching structure - Google Patents

Parts attaching structure Download PDF

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Publication number
JP2010043703A
JP2010043703A JP2008208336A JP2008208336A JP2010043703A JP 2010043703 A JP2010043703 A JP 2010043703A JP 2008208336 A JP2008208336 A JP 2008208336A JP 2008208336 A JP2008208336 A JP 2008208336A JP 2010043703 A JP2010043703 A JP 2010043703A
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Japan
Prior art keywords
component
resin
clip
resin component
flange portion
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JP2008208336A
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Japanese (ja)
Inventor
Masahiko Mochida
昌彦 持田
Yuuki Toyoshima
勇樹 豊嶋
Daisuke Akagi
大輔 赤城
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Nissan Motor Co Ltd
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Nissan Motor Co Ltd
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Priority to JP2008208336A priority Critical patent/JP2010043703A/en
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a parts attaching structure which can improve accuracy in attaching a part. <P>SOLUTION: A resin clip 3 is formed from a flexible material having hardness lower than that of a first resin part 1 and a second resin part 2. At the end of a leg 8 of the resin clip 3, a flange 10 is provided. The back surface 1a of the first resin part 1 is provided upright with an abutting rib 7 abutting on the flange 10, and the flange 10 is held by the abutting rib 7 and the second resin part 2. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本発明は、例えば、自動車の内装部品等をパネル部材等の被取り付け部品に固定するための部品取り付け構造の技術分野に属する。   The present invention belongs to the technical field of a component mounting structure for fixing, for example, automobile interior components and the like to mounted components such as panel members.

特許文献1には、部品の裏面に形成したボスにU字状の脚部を有するクリップを取り付け、このクリップを被取り付け部品に形成した取り付け孔と嵌合させて部品を被取り付け部品に固定する部品取り付け構造が開示されている。
特開2007−211918号公報
In Patent Document 1, a clip having a U-shaped leg is attached to a boss formed on the back surface of a component, and the clip is fitted to an attachment hole formed in the attached component to fix the component to the attached component. A component mounting structure is disclosed.
JP 2007-2111918 A

しかしながら、上記従来技術にあっては、クリップの脚部に形成したフランジ部を部品の裏面に突き当ててクリップの部品に対するボス軸方向の位置決めを行っているが、部品の裏面全体に亘って正確な寸法管理を行うことは困難であるため、部品に対するクリップのボス軸方向のばらつきが大きく、部品の組み付け精度悪化を招く。   However, in the above prior art, the flange portion formed on the leg portion of the clip is abutted against the back surface of the component to perform positioning in the boss axial direction with respect to the component of the clip. Since it is difficult to perform accurate dimensional management, there is a large variation in the boss axis direction of the clip with respect to the component, resulting in deterioration of the assembly accuracy of the component.

本発明は、上記問題に着目してなされたもので、その目的とするところは、部品の組み付け精度を高めることができる部品取り付け構造を提供することにある。   The present invention has been made paying attention to the above problems, and an object of the present invention is to provide a component mounting structure capable of increasing the accuracy of component assembly.

上記目的を達成するために、本発明の部品取り付け構造では、クリップを、部品および被取り付け部品よりも低硬度の可撓性素材で形成すると共に、クリップの脚部先端にフランジ部を設け、部品の裏面に、フランジ部と当接する当てリブを立設し、この当てリブと被取り付け部品とでフランジ部を挟持した。   In order to achieve the above object, in the component mounting structure of the present invention, the clip is formed of a flexible material having a hardness lower than that of the component and the mounted component, and a flange portion is provided at the tip of the leg of the clip. An abutment rib that abuts against the flange portion was erected on the back surface of the rim, and the flange portion was sandwiched between the abutment rib and the mounted part.

本発明では、当てリブの寸法精度によって部品とクリップ、および部品と被取り付け部品との距離を決めることができる。そして、当てリブは部品と比較して小さく、フランジ部当接面の寸法管理が容易であることから、部品の組み付け精度の向上を図ることができる。   In the present invention, the distance between the component and the clip and the component and the mounted component can be determined by the dimensional accuracy of the abutment rib. Since the abutment rib is smaller than the part and the dimension management of the flange contact surface is easy, the assembly accuracy of the part can be improved.

以下、本発明の部品取り付け構造を実施するために最良の形態を、図面に示す実施例に基づいて説明する。   Hereinafter, the best mode for carrying out the component mounting structure of the present invention will be described based on the embodiments shown in the drawings.

まず、実施例1の構成を説明する。
図1は実施例1の部品取り付け構造を示す分解斜視図、図2は実施例1の樹脂クリップの形状を示す縦断面図、図3は実施例1の部品取り付け構造を示す縦断面図である。
実施例1の部品取り付け構造は、第1樹脂部品(部品)1と、第2樹脂部品(被取り付け部品)2と、樹脂クリップ3とを主要な構成としている。
First, the configuration of the first embodiment will be described.
1 is an exploded perspective view showing a component mounting structure of Example 1, FIG. 2 is a longitudinal sectional view showing the shape of a resin clip of Example 1, and FIG. 3 is a longitudinal sectional view showing a component mounting structure of Example 1. .
The component mounting structure of the first embodiment includes a first resin component (component) 1, a second resin component (attached component) 2, and a resin clip 3 as main components.

実施例1の部品取り付け構造は、第1樹脂部品1に形成したボス4にU字状の脚部8を有する樹脂クリップ3を取り付け、この樹脂クリップ3を第2樹脂部品2に形成した取り付け孔2bと嵌合させて第1樹脂部品1を第2樹脂部品2に固定するものである。   In the component mounting structure of the first embodiment, the resin clip 3 having the U-shaped leg portion 8 is mounted on the boss 4 formed on the first resin component 1, and the resin clip 3 is mounted on the second resin component 2. The first resin component 1 is fixed to the second resin component 2 by fitting with 2b.

第1樹脂部品1は、例えば、車両のガーニッシュやトリムボード等であって、合成樹脂で形成している。第1樹脂部品1の裏面1aには、所定間隔で複数のボス4を立設している。ボス4は、矩形の平板状に形成し、その軸方向中央部分には、矩形状の係合孔5を設けている。また、ボス軸方向に沿った両側縁からは、一対の側壁6,6を立設している。これら側壁6,6は、ボス4に樹脂クリップ3を組み付けたとき、樹脂クリップ3の幅方向両側に位置し、樹脂クリップ3の組み付け位置の位置ずれを防止するものである。各側壁6,6は、基端6aから先端6bにかけて徐々に幅が狭くなるテーパ状を成し、先端6bは円弧状に形成している。   The first resin component 1 is, for example, a garnish or trim board of a vehicle, and is formed of a synthetic resin. On the back surface 1 a of the first resin component 1, a plurality of bosses 4 are erected at predetermined intervals. The boss 4 is formed in a rectangular flat plate shape, and a rectangular engagement hole 5 is provided in the central portion in the axial direction. A pair of side walls 6 and 6 are provided upright from both side edges along the boss axis direction. These side walls 6 and 6 are located on both sides of the resin clip 3 in the width direction when the resin clip 3 is assembled to the boss 4, and prevent displacement of the assembly position of the resin clip 3. Each of the side walls 6 and 6 has a tapered shape whose width gradually decreases from the proximal end 6a to the distal end 6b, and the distal end 6b is formed in an arc shape.

ボス4の基端4aには、ボス軸直交方向に延びる座面7aを有する矩形状の当てリブ7を、ボス4の両面に2つずつ、計4つ設けている。座面7aは、図3に示すように、第2樹脂部品2に第1樹脂部品1を固定した状態で、樹脂クリップ3のフランジ部10の表面10aに当接し、樹脂クリップ3の組み付け位置の位置ずれを防止する。   The base end 4 a of the boss 4 is provided with four rectangular abutment ribs 7 each having a seating surface 7 a extending in the direction perpendicular to the boss axis, two on each side of the boss 4. As shown in FIG. 3, the seat surface 7 a is in contact with the surface 10 a of the flange portion 10 of the resin clip 3 in a state where the first resin component 1 is fixed to the second resin component 2. Prevent misalignment.

第2樹脂部品2は、例えば、インストルメントパネル等の車体パネルであって、合成樹脂で形成している。第2樹脂部品2には、表面2a側から樹脂クリップ3を挿入する矩形状の取り付け孔2bを、ボス4と対応する位置に複数形成している。   The second resin component 2 is, for example, a vehicle body panel such as an instrument panel, and is formed of a synthetic resin. In the second resin component 2, a plurality of rectangular attachment holes 2 b into which the resin clips 3 are inserted from the surface 2 a side are formed at positions corresponding to the bosses 4.

樹脂クリップ3は、第1樹脂部品1および第2樹脂部品2よりも低硬度の合成樹脂、例えば、POM(ポリアセタール)で形成している。樹脂クリップ3は、脚部8と、爪部9と、フランジ部10とを備える。   The resin clip 3 is formed of a synthetic resin having a lower hardness than the first resin component 1 and the second resin component 2, for example, POM (polyacetal). The resin clip 3 includes a leg portion 8, a claw portion 9, and a flange portion 10.

脚部8は、基端部8a、拡径部8b、先端部8cを有して略U字状に形成している。基端部8aおよび先端部8cの外形は、第2樹脂部品2の取り付け孔2bの開口幅よりも小さく、拡径部8bの外形は、取り付け孔2bの開口幅よりも大きく設定している。
爪部9は、樹脂クリップ3の内周面3a側であって、脚部8の先端部8cの部分から内方に突出し、樹脂クリップ3をボス4に取り付けたときに係合孔5と係合し、ボス4から樹脂クリップ3の脱落を防止する。
The leg portion 8 has a proximal end portion 8a, an enlarged diameter portion 8b, and a distal end portion 8c and is formed in a substantially U shape. The outer shapes of the base end portion 8a and the distal end portion 8c are set smaller than the opening width of the mounting hole 2b of the second resin component 2, and the outer shape of the enlarged diameter portion 8b is set larger than the opening width of the mounting hole 2b.
The claw portion 9 is on the inner peripheral surface 3 a side of the resin clip 3, protrudes inward from the tip 8 c portion of the leg portion 8, and engages with the engagement hole 5 when the resin clip 3 is attached to the boss 4. The resin clip 3 is prevented from falling off from the boss 4.

フランジ部10は、脚部8の基端部8aから樹脂クリップ軸直方向へ延び、第2樹脂部品2に第1樹脂部品1を固定した状態で、当てリブ7と第2樹脂部品2との間で挟持される。このとき、フランジ部10の表面10aは、当てリブ7の座面7aに当接し、裏面10bは、第2樹脂部品2の表面2aに当接する。
基端部8aとフランジ部10との角部3cであって、樹脂クリップ3の外周面3b側には、溝11を形成している。
The flange portion 10 extends from the base end portion 8 a of the leg portion 8 in the direction perpendicular to the resin clip axis, and the first resin component 1 is fixed to the second resin component 2. Sandwiched between. At this time, the front surface 10 a of the flange portion 10 abuts on the seating surface 7 a of the abutment rib 7, and the back surface 10 b abuts on the front surface 2 a of the second resin component 2.
A groove 11 is formed on the side of the outer peripheral surface 3 b of the resin clip 3, which is a corner 3 c between the base end portion 8 a and the flange portion 10.

次に、作用を説明する。
第1樹脂部品1の第2樹脂部品2への取り付け方法を説明する。
まず、第1樹脂部品1から突出したボス4に対して樹脂クリップ3を組み付けるべく、樹脂クリップ幅方向両側を、ボス4の左右側壁6,6の内側となるように整合させた状態で、樹脂クリップ3をボス4に対して押し込み、樹脂クリップ3の爪部9,9をボス4の係合孔5と係合させる。このとき、樹脂クリップ3のフランジ部10の表面10aは、第1樹脂部品1の裏面1aに設けた当てリブ7の座面7aと突き当て状態となるため、樹脂クリップ3の第1樹脂部品1側への移動を規制できる。
Next, the operation will be described.
A method for attaching the first resin component 1 to the second resin component 2 will be described.
First, in order to assemble the resin clip 3 to the boss 4 protruding from the first resin component 1, the resin clip in the width direction on both sides of the resin clip is aligned so as to be inside the left and right side walls 6, 6. The clip 3 is pushed into the boss 4, and the claw portions 9, 9 of the resin clip 3 are engaged with the engagement holes 5 of the boss 4. At this time, the surface 10a of the flange portion 10 of the resin clip 3 is in contact with the seating surface 7a of the abutment rib 7 provided on the back surface 1a of the first resin component 1, so that the first resin component 1 of the resin clip 3 is abutted. The movement to the side can be regulated.

次に、第2樹脂部品2の取り付け孔2bに対して、樹脂クリップ3を押し込んでいく。このとき、樹脂クリップ3の脚部8の拡径部8bは、取り付け孔2bの開口縁に押圧されて内側に撓み、第2樹脂部品2の裏面2c側で弾性復帰して取り付け孔2bの裏面2c側開口縁に係合する。これにより第2樹脂部品2の樹脂クリップ3からの抜けを規制でき、第1樹脂部品1を第2樹脂部品2に固定できる。   Next, the resin clip 3 is pushed into the mounting hole 2 b of the second resin component 2. At this time, the enlarged diameter portion 8b of the leg portion 8 of the resin clip 3 is pressed against the opening edge of the mounting hole 2b and bent inward, and is elastically restored on the back surface 2c side of the second resin component 2 so that the back surface of the mounting hole 2b. Engages with the opening edge on the 2c side. As a result, the second resin component 2 can be prevented from coming off from the resin clip 3, and the first resin component 1 can be fixed to the second resin component 2.

ここで、取り付け孔2bに樹脂クリップ3を押し込む際、樹脂クリップ3のボス4への組み付け位置と、第2樹脂部品2の取り付け孔2bの位置とが、取り付け孔高さ方向(図1の上下方向)にずれている場合がある。   Here, when the resin clip 3 is pushed into the mounting hole 2b, the assembly position of the resin clip 3 to the boss 4 and the position of the mounting hole 2b of the second resin component 2 are determined in the mounting hole height direction (up and down in FIG. 1). Direction).

実施例1では、樹脂クリップ3の脚部8とフランジ部10との角部3cに溝11を設けているため、脚部8の位置を取り付け孔高さ方向位置に合わせて調節できる。すなわち、樹脂クリップ3を弾性変形させることで、樹脂クリップ3と取り付け孔2bとの位置ずれを吸収し、第2樹脂部品2に対する第1樹脂部品1の面方向位置を適正化できる。   In Example 1, since the groove | channel 11 is provided in the corner | angular part 3c of the leg part 8 and the flange part 10 of the resin clip 3, the position of the leg part 8 can be adjusted according to the attachment hole height direction position. That is, by elastically deforming the resin clip 3, it is possible to absorb the positional deviation between the resin clip 3 and the attachment hole 2 b and to optimize the position in the surface direction of the first resin component 1 relative to the second resin component 2.

第1樹脂部品1を第2樹脂部品2に取り付けた状態で、第2樹脂部品2の表面2aは、樹脂クリップ3のフランジ部10の裏面10bと当接する。つまり、第1樹脂部品1と第2樹脂部品2との間に樹脂クリップ3のフランジ部10を挟持した状態となるため、樹脂クリップ3の第2樹脂部品2側の移動を規制できる。   In a state where the first resin component 1 is attached to the second resin component 2, the front surface 2 a of the second resin component 2 comes into contact with the back surface 10 b of the flange portion 10 of the resin clip 3. That is, since the flange portion 10 of the resin clip 3 is sandwiched between the first resin component 1 and the second resin component 2, the movement of the resin clip 3 on the second resin component 2 side can be restricted.

ここで、上記特許文献1に記載された技術では、クリップの脚部に形成したフランジ部を部品の裏面に突き当ててクリップの部品に対するボス軸方向の位置決めを行っているが、部品の裏面全体に亘って正確な寸法管理を行うことは困難であるため、部品に対するクリップのボス軸方向位置のばらつきが大きく、部品の組み付け精度低下を招く。   Here, in the technique described in Patent Document 1, the flange portion formed on the leg portion of the clip is abutted against the back surface of the component to perform positioning in the boss axial direction with respect to the clip component. Since it is difficult to perform accurate dimensional management over a long period of time, the variation in the position of the clip in the boss axis direction with respect to the part is large, and the assembly accuracy of the part is reduced.

これに対し、実施例1の部品取り付け構造では、樹脂クリップ3の脚部先端にフランジ部10を設けると共に、第1樹脂部品1の裏面1aに、フランジ部10と当接する当てリブ7を設け、この当てリブ7と第2樹脂部品2とでフランジ部10を挟持した。   On the other hand, in the component mounting structure of the first embodiment, the flange portion 10 is provided at the tip of the leg portion of the resin clip 3, and the contact rib 7 that contacts the flange portion 10 is provided on the back surface 1a of the first resin component 1. The flange portion 10 was sandwiched between the abutment rib 7 and the second resin component 2.

よって、当てリブ7の寸法精度を管理することで、第1樹脂部品1と樹脂クリップ3、および第1樹脂部品1と第2樹脂部品2との距離を決めることができる。そして、当てリブ7の座面7aの寸法管理は、第1樹脂部品1の裏面1aの寸法管理と比較して容易であるため、第1樹脂部品1の組み付け精度向上を図ることができる。   Therefore, the distance between the first resin component 1 and the resin clip 3 and the first resin component 1 and the second resin component 2 can be determined by managing the dimensional accuracy of the abutment rib 7. Since the dimension management of the seating surface 7a of the abutment rib 7 is easier than the dimension management of the back surface 1a of the first resin component 1, the assembly accuracy of the first resin component 1 can be improved.

さらに、実施例1では、当てリブ7と第2樹脂部品2とに挟持される樹脂クリップ3を、第1樹脂部品1および第2樹脂部品2よりも低硬度の可撓性素材であるポリアセタールで形成した。   Furthermore, in Example 1, the resin clip 3 sandwiched between the contact rib 7 and the second resin component 2 is made of polyacetal, which is a flexible material having a lower hardness than the first resin component 1 and the second resin component 2. Formed.

走行時等、車両振動が第2樹脂部品2に入力されると、第2樹脂部品2と第1樹脂部品1は相対移動する。このとき、第1樹脂部品1および第2樹脂部品2は、それぞれ樹脂クリップ3と擦れることになる。従来は、このような部位に不織布等を貼着して異音の発生を抑制していたが、実施例1では、樹脂クリップ3を摺動性のよいポリアセタールとすることで、不織布等の追加無しに走行時における異音の発生を抑制できる。
すなわち、実施例1の部品取り付け構造では、第1樹脂部品1に設けた当てリブ7と第2樹脂部品2とに挟持されるフランジ部10を樹脂クリップ3に設けることで、従来品に対して部品点数の増加を招くことなく、部品の位置決め精度向上と異音の発生抑制とを共に実現できる。
When vehicle vibration is input to the second resin component 2 such as during traveling, the second resin component 2 and the first resin component 1 move relative to each other. At this time, the first resin component 1 and the second resin component 2 rub against the resin clip 3, respectively. Conventionally, the generation of abnormal noise was suppressed by attaching a nonwoven fabric or the like to such a part. However, in Example 1, the resin clip 3 is made of polyacetal having good slidability to add a nonwoven fabric or the like. It is possible to suppress the generation of abnormal noise during traveling.
That is, in the component mounting structure of the first embodiment, the flange portion 10 sandwiched between the abutment rib 7 provided in the first resin component 1 and the second resin component 2 is provided in the resin clip 3, so that Without increasing the number of parts, it is possible to improve both the positioning accuracy of parts and suppress the generation of abnormal noise.

次に、効果を説明する。
実施例1の部品取り付け構造にあっては、以下に列挙する効果を奏する。
Next, the effect will be described.
The component mounting structure according to the first embodiment has the following effects.

(1) 樹脂クリップ3を、第1樹脂部品1および第2樹脂部品2よりも低硬度の可撓性素材で形成すると共に、樹脂クリップ3の脚部8先端にフランジ部10を設け、第1樹脂部品1の裏面1aに、フランジ部10と当接する当てリブ7を立設し、この当てリブ7と第2樹脂部品2とでフランジ部10を挟持した。これにより、部品の組み付け精度の向上を図ることができると共に、走行時における異音の発生を防止できる。   (1) The resin clip 3 is formed of a flexible material having a lower hardness than the first resin component 1 and the second resin component 2, and a flange portion 10 is provided at the tip of the leg portion 8 of the resin clip 3. On the back surface 1 a of the resin component 1, a contact rib 7 that comes into contact with the flange portion 10 was erected, and the flange portion 10 was sandwiched between the contact rib 7 and the second resin component 2. As a result, it is possible to improve the assembly accuracy of the parts and to prevent the generation of abnormal noise during traveling.

(2) 脚部8とフランジ部10との角部3cに溝11を形成したため、樹脂クリップ3と取り付け孔2bとの寸法誤差を吸収でき、第2樹脂部品2に対する第1樹脂部品1の位置決めを適正に行うことができる。   (2) Since the groove 11 is formed in the corner 3c between the leg 8 and the flange 10, the dimensional error between the resin clip 3 and the mounting hole 2b can be absorbed, and the positioning of the first resin component 1 with respect to the second resin component 2 is achieved. Can be performed properly.

(他の実施例)
以上、本発明の部品取り付け構造を実施例に基づき説明してきたが、具体的な構成については、実施例に限られるものではなく、特許請求の範囲の各請求項に係る発明の要旨を逸脱しない限り、設計の変更や追加等は許容される。
(Other examples)
As mentioned above, although the component attachment structure of this invention was demonstrated based on the Example, about a concrete structure, it is not restricted to an Example and does not deviate from the summary of the invention which concerns on each claim of a claim As long as the design is changed or added, it is allowed.

例えば、実施例1では、部品を車両のガーニッシュやトリムボード等とし、被取り付け部品をインストルメントパネル等の車体パネルとした例を示したが、部品および被取り付け部品は任意である。
また、樹脂クリップは、部品および被取り付け部品よりも低硬度の可撓性樹脂であればよい。
For example, in the first embodiment, an example is shown in which the parts are vehicle garnishes, trim boards, and the like, and the attached parts are vehicle body panels such as instrument panels, but the parts and attached parts are arbitrary.
Moreover, the resin clip should just be flexible resin of lower hardness than components and to-be-attached components.

実施例1の部品取り付け構造を示す分解斜視図である。FIG. 3 is an exploded perspective view illustrating a component mounting structure according to the first embodiment. 実施例1の樹脂クリップの形状を示す縦断面図である。It is a longitudinal cross-sectional view which shows the shape of the resin clip of Example 1. 実施例1の部品取り付け構造を示す縦断面図である。It is a longitudinal cross-sectional view which shows the component attachment structure of Example 1. FIG.

符号の説明Explanation of symbols

1 第1樹脂部品(部品)
1a 裏面
2 第2樹脂部品(被取り付け部品)
3 樹脂クリップ(クリップ)
3c 角部
7 当てリブ
8 脚部
10 フランジ部
11 溝
1 First resin component (component)
1a Back 2 Second resin part (attached part)
3 Resin clips (clips)
3c Corner portion 7 Abutment rib 8 Leg portion 10 Flange portion 11 Groove

Claims (2)

部品の裏面に形成したボスにクリップを取り付け、このクリップを被取り付け部品に形成した取り付け孔と嵌合させて前記部品を前記被取り付け部品に固定する部品取り付け構造において、
前記クリップを、前記部品および前記被取り付け部品よりも低硬度の可撓性素材で形成すると共に、前記クリップの脚部先端にフランジ部を設け、
前記部品の裏面に、前記フランジ部と当接する当てリブを立設し、
この当てリブと前記被取り付け部品とで前記フランジ部を挟持したことを特徴とする部品取り付け構造。
In the component mounting structure for attaching the clip to the boss formed on the back surface of the component, and fitting the clip to the mounting hole formed in the mounted component and fixing the component to the mounted component,
The clip is formed of a flexible material having a hardness lower than that of the component and the mounted component, and a flange portion is provided at a leg end of the clip.
On the back surface of the component, a support rib that comes into contact with the flange portion is erected,
A component mounting structure in which the flange portion is sandwiched between the abutting rib and the mounted component.
請求項1に記載の部品取り付け構造において、
前記脚部と前記フランジ部との角部近傍に、溝を形成したことを特徴とする部品取り付け構造。
In the component mounting structure according to claim 1,
A component mounting structure in which a groove is formed in the vicinity of a corner portion between the leg portion and the flange portion.
JP2008208336A 2008-08-13 2008-08-13 Parts attaching structure Pending JP2010043703A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2008208336A JP2010043703A (en) 2008-08-13 2008-08-13 Parts attaching structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2008208336A JP2010043703A (en) 2008-08-13 2008-08-13 Parts attaching structure

Publications (1)

Publication Number Publication Date
JP2010043703A true JP2010043703A (en) 2010-02-25

Family

ID=42015247

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2008208336A Pending JP2010043703A (en) 2008-08-13 2008-08-13 Parts attaching structure

Country Status (1)

Country Link
JP (1) JP2010043703A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013083294A (en) * 2011-10-07 2013-05-09 Kojima Press Industry Co Ltd Installing structure of member to be attached
CN112392811A (en) * 2019-08-16 2021-02-23 特迈驰有限责任公司 Arrow head fastening clip with barb

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013083294A (en) * 2011-10-07 2013-05-09 Kojima Press Industry Co Ltd Installing structure of member to be attached
CN112392811A (en) * 2019-08-16 2021-02-23 特迈驰有限责任公司 Arrow head fastening clip with barb

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