JP5734174B2 - Auto body structure - Google Patents

Auto body structure Download PDF

Info

Publication number
JP5734174B2
JP5734174B2 JP2011276707A JP2011276707A JP5734174B2 JP 5734174 B2 JP5734174 B2 JP 5734174B2 JP 2011276707 A JP2011276707 A JP 2011276707A JP 2011276707 A JP2011276707 A JP 2011276707A JP 5734174 B2 JP5734174 B2 JP 5734174B2
Authority
JP
Japan
Prior art keywords
fiber reinforced
reinforced resin
side sill
resin plate
woven fabric
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
JP2011276707A
Other languages
Japanese (ja)
Other versions
JP2013126811A (en
Inventor
紘 槙島
紘 槙島
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Honda Motor Co Ltd
Original Assignee
Honda Motor Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Honda Motor Co Ltd filed Critical Honda Motor Co Ltd
Priority to JP2011276707A priority Critical patent/JP5734174B2/en
Publication of JP2013126811A publication Critical patent/JP2013126811A/en
Application granted granted Critical
Publication of JP5734174B2 publication Critical patent/JP5734174B2/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Description

本発明は、左右一対のサイドシル部と、前記左右一対のサイドシル部のサイドシル下壁繊維強化樹脂板間を接続するフロアパネル繊維強化樹脂板とを繊維強化樹脂で成形し、前記繊維強化樹脂は、連続繊維を車体前後方向およびそれに直交する方向に配列した第1織布と、前記第1織布に対して連続繊維の方向を45°傾斜させた第2織布とを積層して樹脂に埋設してなる自動車の車体構造に関する。   The present invention forms a pair of left and right side sill portions and a floor panel fiber reinforced resin plate connecting between the side sill lower wall fiber reinforced resin plates of the pair of left and right side sill portions with a fiber reinforced resin, A first woven fabric in which continuous fibers are arranged in the longitudinal direction of the vehicle body and a direction perpendicular thereto and a second woven fabric in which the direction of the continuous fibers is inclined by 45 ° with respect to the first woven fabric are laminated and embedded in the resin. The present invention relates to a vehicle body structure.

CFRP(カーボン繊維強化樹脂)で構成したフロアパネルの車幅方向外端を、CFRPで構成したロッカ(サイドシル)の下端に形成した開口から内部に挿入して結合することで、側突に対する車体の強度を高めるものが、下記特許文献1により公知である。   By inserting the outer end in the vehicle width direction of the floor panel made of CFRP (carbon fiber reinforced resin) into the interior through the opening formed at the lower end of the rocker (side sill) made of CFRP, The thing which raises an intensity | strength is well-known by the following patent document 1. FIG.

またCFRPで閉断面に構成したフレームの内部に外周壁、リブおよび締結部を有する金属インサートを配置し、被締結部材をボルトで金属インサートの締結部に締結することで、フレームおよび被締結部材を一体に結合するものが、下記特許文献2により公知である。   Moreover, the metal insert which has an outer peripheral wall, a rib, and a fastening part is arrange | positioned inside the flame | frame comprised by CFRP in the closed cross section, and a frame and a to-be-fastened member are fastened by fastening a to-be-fastened member to a fastening part of a metal insert with a volt | bolt. What is integrally bonded is known from Patent Document 2 below.

特開2010−125870号公報JP 2010-125870 A 特開2009−255799号公報JP 2009-255799 A

ところで、上記特許文献1に記載されたものは、フロアパネルの一部がサイドシルの下部を構成しているため、繊維強化樹脂の織布の積層枚数や繊維の向きをフロアパネルおよびサイドシルの各々について別個に設定することができず、車体の剛性や衝突に対する強度と車体の軽量化とを両立させることが困難であるという問題があった。   By the way, since what was described in the said patent document 1 part of the floor panel comprises the lower part of a side sill, the lamination | stacking number of fiber reinforced resin woven fabrics and the direction of a fiber are set about each of a floor panel and a side sill. There is a problem that it cannot be set separately, and it is difficult to achieve both the rigidity of the vehicle body and the strength against collision and the weight reduction of the vehicle body.

また上記特許文献2に記載されたものは、金属インサートを用いているために重量が嵩むだけでなく、繊維強化樹脂を成形する際に金属インサートを埋め込む必要があるため、金型の構造が複雑化するだけでなく、金属インサートの位置精度を確保するのが難しいという問題があった。   Moreover, since the thing described in the said patent document 2 uses the metal insert, not only the weight increases, but also it is necessary to embed the metal insert when molding the fiber reinforced resin, so the structure of the mold is complicated. There is a problem that it is difficult to ensure the positional accuracy of the metal insert as well as the reduction in the size.

本発明は前述の事情に鑑みてなされたもので、繊維強化樹脂製の自動車の車体の軽量化を図りながら耐衝突性能を高めることを目的とする。   The present invention has been made in view of the above-described circumstances, and an object of the present invention is to improve collision resistance performance while reducing the weight of a vehicle body made of fiber reinforced resin.

上記目的を達成するために、請求項1に記載された発明によれば、左右一対のサイドシル部と、前記左右一対のサイドシル部のサイドシル下壁繊維強化樹脂板間を接続するフロアパネル繊維強化樹脂板とを繊維強化樹脂で成形し、前記繊維強化樹脂は、連続繊維を車体前後方向およびそれに直交する方向に配列した第1織布と、前記第1織布に対して連続繊維の方向を45°傾斜させた第2織布とを積層して樹脂に埋設してなる自動車の車体構造において、前記サイドシル部の下壁部を構成するサイドシル下壁繊維強化樹脂板と、前記フロアパネル繊維強化樹脂板とは、内層に前記第1織布を少なくとも2層以上備えるとともに、外層に前記第2織布を少なくとも2層以上備え、前記第1、第2織布は積層中心に対して繊維配向が対称になるように積層され、前記サイドシル下壁繊維強化樹脂板は前記フロアパネル繊維強化樹脂板よりも前記第1、第2織布のうちの何れか一方の数が多く、前記サイドシル部は、前記サイドシル下壁繊維強化樹脂板にサイドシル外壁繊維強化樹脂板、サイドシル内壁繊維強化樹脂板およびサイドシル上壁繊維強化樹脂板を接続して閉断面に構成され、前記サイドシル下壁繊維強化樹脂板、サイドシル外壁繊維強化樹脂板、サイドシル内壁繊維強化樹脂板およびサイドシル上壁繊維強化樹脂板の少なくとも一つは、他の一つに対して前記第1織布あるいは前記第2織布の数が異なることを特徴とする自動車の車体構造が提案される。 To achieve the above object, according to the first aspect of the present invention, a floor panel fiber reinforced resin that connects a pair of left and right side sill portions and a side sill lower wall fiber reinforced resin plate of the pair of left and right side sill portions. The fiber reinforced resin is formed of a first woven fabric in which continuous fibers are arranged in a longitudinal direction of the vehicle body and a direction perpendicular thereto, and the direction of the continuous fibers is 45 with respect to the first woven fabric. In the vehicle body structure of an automobile formed by laminating a second woven fabric inclined and embedded in a resin, a side sill lower wall fiber reinforced resin plate constituting the lower wall part of the side sill part, and the floor panel fiber reinforced resin The board includes at least two or more layers of the first woven fabric in the inner layer and at least two or more layers of the second woven fabric in the outer layer, and the first and second woven fabrics have fiber orientation with respect to the lamination center. Become symmetric Is urchin stacked, the side sill lower wall fiber reinforced resin plate the floor panel the first than the fiber-reinforced resin plate, one of the number of the second fabric is rather large, the door sill, the side sill lower Side sill outer wall fiber reinforced resin plate, side sill inner wall fiber reinforced resin plate and side sill upper wall fiber reinforced resin plate are connected to the wall fiber reinforced resin plate to form a closed cross section, and the side sill lower wall fiber reinforced resin plate and side sill outer wall fiber reinforced At least one of the resin plate, the side sill inner wall fiber reinforced resin plate, and the side sill upper wall fiber reinforced resin plate is characterized in that the number of the first woven fabric or the second woven fabric is different from the other one. A car body structure is proposed.

また請求項2に記載された発明によれば、左右一対のサイドシル部と、前記左右一対のサイドシル部のサイドシル下壁繊維強化樹脂板間を接続するフロアパネル繊維強化樹脂板とを繊維強化樹脂で成形し、前記繊維強化樹脂は、連続繊維を車体前後方向およびそれに直交する方向に配列した第1織布と、前記第1織布に対して連続繊維の方向を45°傾斜させた第2織布とを積層して樹脂に埋設してなる自動車の車体構造において、前記サイドシル部の下壁部を構成するサイドシル下壁繊維強化樹脂板と、前記フロアパネル繊維強化樹脂板とは、内層に前記第1織布を少なくとも2層以上備えるとともに、外層に前記第2織布を少なくとも2層以上備え、前記第1、第2織布は積層中心に対して繊維配向が対称になるように積層され、前記サイドシル下壁繊維強化樹脂板は前記フロアパネル繊維強化樹脂板よりも前記第1、第2織布のうちの何れか一方の数が多く、前記サイドシル部の内部に締結部を有するブラケットを固定し、前記ブラケットを、前記サイドシル部の少なくとも前記サイドシル外壁繊維強化樹脂板および前記サイドシル内壁繊維強化樹脂板に接続したことを特徴とする自動車の車体構造が提案される。 According to the second aspect of the present invention, the pair of left and right side sill portions and the floor panel fiber reinforced resin plate connecting the side sill lower wall fiber reinforced resin plates of the pair of left and right side sill portions are made of fiber reinforced resin. The fiber reinforced resin is molded into a first woven fabric in which continuous fibers are arranged in a vehicle longitudinal direction and a direction orthogonal thereto, and a second woven fabric in which the direction of the continuous fibers is inclined by 45 ° with respect to the first woven fabric. In a vehicle body structure in which cloth is laminated and embedded in a resin, the side sill lower wall fiber reinforced resin plate constituting the lower wall portion of the side sill portion, and the floor panel fiber reinforced resin plate are arranged in the inner layer. At least two or more layers of the first woven fabric are provided, and at least two or more layers of the second woven fabric are provided on the outer layer, and the first and second woven fabrics are laminated so that the fiber orientation is symmetric with respect to the lamination center. , The Doshiru lower wall fiber reinforced resin plate fixing a bracket having a fastening part and the floor panel fiber-reinforced resin plate of the first than, either one of the number of the second fabric is rather large, the inside of the door sill Then, a vehicle body structure is proposed in which the bracket is connected to at least the side sill outer wall fiber reinforced resin plate and the side sill inner wall fiber reinforced resin plate of the side sill portion .

また請求項に記載された発明によれば、請求項1または請求項2の構成に加えて、前記サイドシル部の前記サイドシル下壁繊維強化樹脂板および前記サイドシル上壁繊維強化樹脂板の繊維強化樹脂の最外層および最内層を前記第2織布で構成し、その内層を前記第1織布で構成したことを特徴とする自動車の車体構造が提案される。 According to the invention described in claim 3 , in addition to the configuration of claim 1 or claim 2 , the fiber reinforcement of the side sill lower wall fiber reinforced resin plate and the side sill upper wall fiber reinforced resin plate of the side sill portion. A vehicle body structure is proposed in which an outermost layer and an innermost layer of resin are constituted by the second woven fabric, and an inner layer thereof is constituted by the first woven fabric.

尚、実施の形態のナット20は本発明の締結部に対応する。   In addition, the nut 20 of embodiment corresponds to the fastening part of this invention.

請求項1または請求項2の構成によれば、サイドシル部の下壁部を構成するサイドシル下壁繊維強化樹脂板と、フロアパネル繊維強化樹脂板とは、内層に第1織布を少なくとも2層以上備えるとともに、外層に第2織布を少なくとも2層以上備え、第1、第2織布は積層中心に対して繊維配向が対称になるように積層されるので、成形後に捩じれることがないだけでなく、サイドシル下壁繊維強化樹脂板はフロアパネル繊維強化樹脂板よりも第1、第2織布のうちの何れか一方の数が多いので、フロアパネル繊維強化樹脂板をサイドシル部まで延長してサイドシル部の下壁と積層する場合に比べて、積層枚数を減少させて重量の軽減と耐衝突性能・車体剛性などの車体性能とを両立させることができる。 According to the configuration of claim 1 or claim 2 , the side sill lower wall fiber reinforced resin plate and the floor panel fiber reinforced resin plate constituting the lower wall portion of the side sill portion have at least two layers of the first woven fabric as an inner layer. In addition to the above, at least two or more second woven fabrics are provided on the outer layer, and the first and second woven fabrics are laminated so that the fiber orientation is symmetric with respect to the lamination center, so that they are not twisted after molding. Not only that, the side sill lower wall fiber reinforced resin plate has more of either the first or second woven fabric than the floor panel fiber reinforced resin plate, so the floor panel fiber reinforced resin plate is extended to the side sill part. As compared with the case of stacking with the lower wall of the side sill portion, the number of stacked layers can be reduced to achieve both weight reduction and vehicle performance such as collision resistance and vehicle stiffness.

特に請求項の構成によれば、サイドシル部がサイドシル下壁繊維強化樹脂板にサイドシル外壁繊維強化樹脂板、サイドシル内壁繊維強化樹脂板およびサイドシル上壁繊維強化樹脂板を接続して閉断面に構成され、それら四つの繊維強化樹脂板の少なくとも一つは、他の一つに対して第1織布あるいは第2織布の数が異なるので、サイドシル部の各部の強度配分を任意に設定することができる。 In particular , according to the configuration of claim 1 , the side sill portion is configured to connect the side sill outer wall fiber reinforced resin plate, the side sill inner wall fiber reinforced resin plate, and the side sill upper wall fiber reinforced resin plate to the side sill lower wall fiber reinforced resin plate. Since at least one of the four fiber reinforced resin plates has a different number of first woven fabrics or second woven fabrics relative to the other, the strength distribution of each part of the side sill portion is arbitrarily set. Can do.

特に請求項の構成によれば、サイドシル部の内部に締結部を有するブラケットを固定したので、サイドシル部の繊維強化樹脂の内部に別部材のナットを固定した金属インサートを埋設する場合に比べて軽量化を図ることができ、しかもブラケットがバルクヘッドとして機能することで、特別の補強リブを必要とせずにサイドシル部の強度を高めることができる。更に、ブラケットをサイドシル部の少なくともサイドシル外壁繊維強化樹脂板およびサイドシル内壁繊維強化樹脂板に接続したので、側突に対する強度を更に高めることができる。 In particular , according to the configuration of the second aspect , since the bracket having the fastening portion is fixed inside the side sill portion, compared to a case where a metal insert in which a nut of another member is fixed is embedded in the fiber reinforced resin of the side sill portion. The weight can be reduced and the strength of the side sill portion can be increased without requiring special reinforcing ribs because the bracket functions as a bulkhead. Furthermore, since the bracket is connected to at least the side sill outer wall fiber reinforced resin plate and the side sill inner wall fiber reinforced resin plate of the side sill portion, the strength against side collision can be further increased.

また請求項の構成によれば、サイドシル部のサイドシル下壁繊維強化樹脂板およびサイドシル上壁繊維強化樹脂板の繊維強化樹脂の最外層および最内層を第2織布で構成し、その内層を第1織布で構成したので、第1、第2織布の組み合わせにより前突、後突および側突に対する強度を高めることができる。 Moreover, according to the structure of Claim 3 , the outermost layer and the innermost layer of the fiber reinforced resin of the side sill lower wall fiber reinforced resin plate and the side sill upper wall fiber reinforced resin plate of the side sill portion are configured by the second woven fabric, Since it comprised with the 1st woven fabric, the intensity | strength with respect to a front collision, a rear collision, and a side collision can be raised with the combination of a 1st, 2nd woven fabric.

繊維強化樹脂製の自動車のキャビンの斜視図。The perspective view of the cabin of the automobile made of fiber reinforced resin. 図1の2−2線断面図。FIG. 2 is a sectional view taken along line 2-2 in FIG. 1. 図2の3方向矢視図。FIG. 3 is a three-direction arrow view of FIG. 2. 第1織布および第2織布の積層状態を示す図。The figure which shows the lamination | stacking state of a 1st woven fabric and a 2nd woven fabric. サイドシル部の製造工程の説明図。Explanatory drawing of the manufacturing process of a side sill part.

以下、図1〜図5に基づいて本発明の実施の形態を説明する。   Hereinafter, embodiments of the present invention will be described with reference to FIGS.

図1に示すように、カーボン繊維強化樹脂で構成した自動車のキャビン11は、後部に一段高くなったキックアップ部12aが形成された概ね平板状のフロアパネル繊維強化樹脂板12と、フロアパネル繊維強化樹脂板12の左右両側縁に沿って前後方向に延びる一対のサイドシル部13,13と、左右のサイドシル部13,13の前端間を接続するようにフロアパネル繊維強化樹脂板12の前端から起立するフロント壁部14と、左右のサイドシル部13,13の後端間を接続するようにフロアパネル繊維強化樹脂板12の後端から起立するリヤ壁部15とを有し、全体としてバスタブ状に形成される。   As shown in FIG. 1, an automobile cabin 11 made of carbon fiber reinforced resin includes a substantially flat floor panel fiber reinforced resin plate 12 having a raised kick-up portion 12a at the rear, and floor panel fibers. Standing up from the front end of the floor panel fiber reinforced resin plate 12 so as to connect the pair of side sill portions 13 and 13 extending in the front-rear direction along the left and right side edges of the reinforced resin plate 12 and the front ends of the left and right side sill portions 13 and 13. And a rear wall 15 standing up from the rear end of the floor panel fiber reinforced resin plate 12 so as to connect between the rear ends of the left and right side sill portions 13, 13. It is formed.

図2および図3に示すように、フロアパネル繊維強化樹脂板12は1枚の繊維強化樹脂製のシートで構成され、サイドシル部13は各々が繊維強化樹脂製のシートからなるサイドシル下壁繊維強化樹脂板16、サイドシル外壁繊維強化樹脂板17、サイドシル内壁繊維強化樹脂板18およびサイドシル上壁繊維強化樹脂板19を結合して矩形状の閉断面に構成される。サイドシル部13の内部には、それに他部材を固定するための2個のナット20,20を埋設した繊維強化樹脂製のブラケット21が結合される。尚、ブラケット21は、2個のねじ孔を有する金属製のものであっても良い。   As shown in FIG. 2 and FIG. 3, the floor panel fiber reinforced resin plate 12 is composed of a single fiber reinforced resin sheet, and the side sill portion 13 is a side sill lower wall fiber reinforced each made of a fiber reinforced resin sheet. The resin plate 16, the side sill outer wall fiber reinforced resin plate 17, the side sill inner wall fiber reinforced resin plate 18, and the side sill upper wall fiber reinforced resin plate 19 are combined to form a rectangular closed cross section. Inside the side sill 13, a fiber reinforced resin bracket 21 in which two nuts 20, 20 for fixing other members are embedded is coupled. The bracket 21 may be made of metal having two screw holes.

サイドシル部13のサイドシル下壁繊維強化樹脂板16は、車幅方向外端から上向きに延びるフランジ16aを有するL字状断面の部材であって、例えば6層に積層したカーボン繊維の織布を埋設した6プライの繊維強化樹脂からなる。サイドシル部13のサイドシル外壁繊維強化樹脂板17は、I字状断面の部材であって、例えば10層に積層したカーボン繊維の織布を埋設した10プライの繊維強化樹脂からなる。サイドシル部13のサイドシル内壁繊維強化樹脂板18は、下端から車幅方向内向きに延びるフランジ18aを有するL字状断面の部材であって、例えば8層に積層したカーボン繊維の織布を埋設した8プライの繊維強化樹脂からなる。サイドシル部13のサイドシル上壁繊維強化樹脂板19は、車幅方向両端から下向きに延びる一対のフランジ19a,19bを有するコ字状断面の部材であって、例えば6層に積層したカーボン繊維の織布を埋設した6プライの繊維強化樹脂からなる。またフロアパネル繊維強化樹脂板12は、例えば4層に積層したカーボン繊維の織布を埋設した4プライの繊維強化樹脂からなる。   The side sill lower wall fiber reinforced resin plate 16 of the side sill portion 13 is an L-shaped cross-section member having a flange 16a extending upward from the outer end in the vehicle width direction. For example, a carbon fiber woven fabric laminated in six layers is embedded. Made of 6-ply fiber reinforced resin. The side sill outer wall fiber reinforced resin plate 17 of the side sill portion 13 is a member having an I-shaped cross section, and is made of, for example, a 10-ply fiber reinforced resin in which carbon fiber woven fabric laminated in 10 layers is embedded. The side sill inner wall fiber reinforced resin plate 18 of the side sill portion 13 is an L-shaped cross-section member having a flange 18a extending inward in the vehicle width direction from the lower end. For example, carbon fiber woven fabric laminated in eight layers is embedded. Made of 8-ply fiber reinforced resin. The side sill upper wall fiber reinforced resin plate 19 of the side sill portion 13 is a member having a U-shaped cross section having a pair of flanges 19a and 19b extending downward from both ends in the vehicle width direction. It consists of a 6-ply fiber reinforced resin with an embedded fabric. The floor panel fiber reinforced resin plate 12 is made of, for example, a four-ply fiber reinforced resin in which carbon fiber woven fabrics laminated in four layers are embedded.

ブラケット21は、底壁21a、縦壁21bおよび一対の側壁21c,21dを一体に有しており、車幅方向外側の側壁21cの外面には厚さを減少させた切欠き21eが形成されるとともに、底壁21aには2個のナット20,20が埋設される。   The bracket 21 integrally includes a bottom wall 21a, a vertical wall 21b, and a pair of side walls 21c and 21d, and a notch 21e having a reduced thickness is formed on the outer surface of the side wall 21c on the outer side in the vehicle width direction. At the same time, two nuts 20, 20 are embedded in the bottom wall 21a.

サイドシル下壁繊維強化樹脂板16の車幅方向内端部と、サイドシル内壁繊維強化樹脂板18の下端のフランジ18bと、フロアパネル繊維強化樹脂板12の車幅方向外端部とが下から上に順次重ね合わされ、接着およびリベット22…の併用で結合される。サイドシル下壁繊維強化樹脂板16の車幅方向外端のフランジ16aと、サイドシル外壁繊維強化樹脂板17の下端部とが車幅方向に重ね合わされ、接着およびリベット22…の併用で結合される。そしてサイドシル外壁繊維強化樹脂板17の上端部およびサイドシル内壁繊維強化樹脂板18の上端部に、サイドシル上壁繊維強化樹脂板19の車幅方向両端の一対のフランジ19a,19bが車幅方向に重ね合わされ、接着およびリベット22…の併用で結合される。その結果、サイドシル下壁繊維強化樹脂板16、サイドシル外壁繊維強化樹脂板17、サイドシル内壁繊維強化樹脂板18およびサイドシル上壁繊維強化樹脂板19によって閉断面のサイドシル部13が構成され、サイドシル部13の車幅方向内側にフロアパネル繊維強化樹脂板12が接続される。   The inner end of the side sill lower wall fiber reinforced resin plate 16 in the vehicle width direction, the flange 18b at the lower end of the side sill inner wall fiber reinforced resin plate 18, and the outer end of the floor panel fiber reinforced resin plate 12 in the vehicle width direction Are combined one after another and bonded together by using adhesives and rivets 22. The flange 16a at the outer end in the vehicle width direction of the side sill lower wall fiber reinforced resin plate 16 and the lower end portion of the side sill outer wall fiber reinforced resin plate 17 are overlapped in the vehicle width direction, and are bonded by a combination of adhesion and rivets 22. A pair of flanges 19a and 19b at both ends in the vehicle width direction of the side sill upper wall fiber reinforced resin plate 19 are overlapped in the vehicle width direction on the upper end portion of the side sill outer wall fiber reinforced resin plate 17 and the upper end portion of the side sill inner wall fiber reinforced resin plate 18. And are combined by a combination of bonding and rivets 22. As a result, the side sill portion 13 having a closed cross section is constituted by the side sill lower wall fiber reinforced resin plate 16, the side sill outer wall fiber reinforced resin plate 17, the side sill inner wall fiber reinforced resin plate 18 and the side sill upper wall fiber reinforced resin plate 19. The floor panel fiber reinforced resin plate 12 is connected to the inside in the vehicle width direction.

そしてブラケット21の底壁21aおよび一対の側壁21c,21dが、それぞれサイドシル部13のサイドシル下壁繊維強化樹脂板16、サイドシル外壁繊維強化樹脂板17およびサイドシル内壁繊維強化樹脂板18に接着により結合される。このとき、サイドシル外壁繊維強化樹脂板17にはサイドシル下壁繊維強化樹脂板16のフランジ16aによって段差が発生するが、ブラケット21の側壁21cに形成した切欠き21eによって前記フランジ16aとの干渉が回避される。ブラケット21をサイドシル部13の内部に装着した状態で、その縦壁21bはサイドシル部13の内部を前後に仕切るバルクヘッドとして機能する。尚、ブラケット21とサイドシル部13との接着部にリベットを併用することも可能である。   The bottom wall 21a and the pair of side walls 21c and 21d of the bracket 21 are bonded to the side sill lower wall fiber reinforced resin plate 16, the side sill outer wall fiber reinforced resin plate 17 and the side sill inner wall fiber reinforced resin plate 18 of the side sill portion 13, respectively. The At this time, a step is generated in the side sill outer wall fiber reinforced resin plate 17 by the flange 16a of the side sill lower wall fiber reinforced resin plate 16, but interference with the flange 16a is avoided by the notch 21e formed in the side wall 21c of the bracket 21. Is done. In a state where the bracket 21 is mounted inside the side sill portion 13, the vertical wall 21 b functions as a bulkhead that partitions the inside of the side sill portion 13 back and forth. It is also possible to use a rivet at the bonding portion between the bracket 21 and the side sill portion 13.

図4はサイドシル部13のサイドシル下壁繊維強化樹脂板16の繊維強化樹脂の層構造を示す模式図であって、各層は直交する二つの方向に配置された連続繊維を平織にした織布で構成される。本明細書では、連続繊維が配置される直交する二つの方向のうち、一方が車体前後方向であり、他方がそれに直交する方向である織布を第1織布23と呼び、第1織布23の連続繊維に対して45°傾斜した連続繊維からなる織布を第2織布24と呼ぶ。図3に示すサイドシル部13のサイドシル下壁繊維強化樹脂板16の繊維強化樹脂の層構造は、6プライの織布のうち、最外層の2プライが第2織布24で構成され、内側の4プライが第1織布23で構成され、サイドシル部13の側方からの荷重に対する曲げ強度を増加させている。   FIG. 4 is a schematic diagram showing the layer structure of the fiber reinforced resin of the side sill lower wall fiber reinforced resin plate 16 of the side sill portion 13, and each layer is a woven fabric obtained by plain weaving continuous fibers arranged in two orthogonal directions. Composed. In the present specification, a woven fabric in which one of the two orthogonal directions in which the continuous fibers are arranged is the vehicle body front-rear direction and the other is the direction orthogonal thereto is referred to as a first woven fabric 23. A woven fabric composed of continuous fibers inclined by 45 ° with respect to 23 continuous fibers is referred to as a second woven fabric 24. The layer structure of the fiber reinforced resin of the side sill lower wall fiber reinforced resin plate 16 of the side sill portion 13 shown in FIG. Four plies are composed of the first woven fabric 23, and the bending strength against the load from the side of the side sill portion 13 is increased.

しかもフロアパネル繊維強化樹脂板12、サイドシル下壁繊維強化樹脂板16、サイドシル外壁繊維強化樹脂板17、サイドシル内壁繊維強化樹脂板18およびサイドシル上壁繊維強化樹脂板19は、内層に前記第1織布23を少なくとも2層以上設けるとともに、外層に前記第2織布24を少なくとも2層以上設け、積層中心に対して積層方向に対する繊維配向を対称にすることで、成形後に捩じれることを防止している。   In addition, the floor panel fiber reinforced resin plate 12, the side sill lower wall fiber reinforced resin plate 16, the side sill outer wall fiber reinforced resin plate 17, the side sill inner wall fiber reinforced resin plate 18, and the side sill upper wall fiber reinforced resin plate 19 are formed in the first layer on the inner layer. At least two or more layers of cloth 23 are provided, and at least two or more layers of the second woven cloth 24 are provided on the outer layer, and the fiber orientation in the stacking direction is symmetric with respect to the stacking center to prevent twisting after molding. ing.

本実施の形態では、サイドシル部13の6プライのサイドシル下壁繊維強化樹脂板16、10プライのサイドシル外壁繊維強化樹脂板17、8プライのサイドシル内壁繊維強化樹脂板18および6プライのサイドシル上壁繊維強化樹脂板19の織布の層と、4プライのフロアパネル繊維強化樹脂板12の織布の層とは、何れも最外層の2プライが第2織布24で構成され、内側のプライが第1織布23で構成される。従って、サイドシル下壁繊維強化樹脂板16は4プライの第1織布23を備え、サイドシル外壁繊維強化樹脂板17は8プライの第1織布23を備え、サイドシル内壁繊維強化樹脂板18は6プライの第1織布23を備え、サイドシル上壁繊維強化樹脂板19は4プライの第1織布23を備え、フロアパネル繊維強化樹脂板12は2プライの第1織布23を備えることになる。   In this embodiment, the 6-ply side sill lower wall fiber reinforced resin plate 16 of the side sill 13, the 10 ply side sill outer wall fiber reinforced resin plate 17, the 8 ply side sill inner wall fiber reinforced resin plate 18 and the 6 ply side sill upper wall. Each of the woven fabric layer of the fiber reinforced resin plate 19 and the woven fabric layer of the four-ply floor panel fiber reinforced resin plate 12 is composed of the second woven fabric 24 of the outermost layer 2 plies. Is constituted by the first woven fabric 23. Accordingly, the side sill lower wall fiber reinforced resin plate 16 includes a 4-ply first woven fabric 23, the side sill outer wall fiber reinforced resin plate 17 includes an 8-ply first woven fabric 23, and the side sill inner wall fiber reinforced resin plate 18 includes 6 plies. The ply first woven fabric 23 is provided, the side sill upper wall fiber reinforced resin plate 19 includes a 4-ply first woven fabric 23, and the floor panel fiber reinforced resin plate 12 includes a two-ply first woven fabric 23. Become.

図5はサイドシル部13およびフロアパネル繊維強化樹脂板12を組み立てる工程を示すもので、先ずサイドシル部13のサイドシル下壁繊維強化樹脂板16およびサイドシル内壁繊維強化樹脂板18とフロアパネル繊維強化樹脂板12とを結合し(図5(A)参照)、続いてサイドシル部13のサイドシル下壁繊維強化樹脂板16にサイドシル外壁繊維強化樹脂板17を結合した後、上面開口部からブラケット21を挿入してサイドシル下壁繊維強化樹脂板16、サイドシル外壁繊維強化樹脂板17およびサイドシル内壁繊維強化樹脂板18に結合し(図5(B)参照)、最後にサイドシル部13のサイドシル外壁繊維強化樹脂板17およびサイドシル内壁繊維強化樹脂板18にサイドシル上壁繊維強化樹脂板19を結合する。上記工程により、閉断面を有するサイドシル部13の内部にブラケット21を容易に固定することができる。   FIG. 5 shows a process of assembling the side sill portion 13 and the floor panel fiber reinforced resin plate 12. First, the side sill lower wall fiber reinforced resin plate 16, the side sill inner wall fiber reinforced resin plate 18, and the floor panel fiber reinforced resin plate of the side sill portion 13. 12 (see FIG. 5A), and then the side sill outer wall fiber reinforced resin plate 17 is connected to the side sill lower wall fiber reinforced resin plate 16 of the side sill portion 13, and then the bracket 21 is inserted from the upper surface opening. The side sill lower wall fiber reinforced resin plate 16, the side sill outer wall fiber reinforced resin plate 17 and the side sill inner wall fiber reinforced resin plate 18 (see FIG. 5B), and finally the side sill outer wall fiber reinforced resin plate 17 of the side sill portion 13. The side sill inner wall fiber reinforced resin plate 18 is bonded to the side sill inner wall fiber reinforced resin plate 19. Through the above steps, the bracket 21 can be easily fixed inside the side sill portion 13 having a closed cross section.

以上のように、本実施の形態によれば、キャビン11のサイドシル部13をサイドシル下壁繊維強化樹脂板16、サイドシル外壁繊維強化樹脂板17、サイドシル内壁繊維強化樹脂板18およびサイドシル上壁繊維強化樹脂板19に分割し、かつサイドシル部13とフロアパネル繊維強化樹脂板12とを分割し、各々をカーボン繊維の織布の繊維配向および積層枚数が異なる繊維強化樹脂で構成したので、強度が必要な部分の繊維強化樹脂を厚くし、強度があまり必要でない部分の繊維強化樹脂を薄くすることで、強度の確保および軽量化の両立を図ることができる。   As described above, according to the present embodiment, the side sill portion 13 of the cabin 11 is reinforced with the side sill lower wall fiber reinforced resin plate 16, the side sill outer wall fiber reinforced resin plate 17, the side sill inner wall fiber reinforced resin plate 18, and the side sill upper wall fiber reinforced. Since it is divided into the resin plate 19 and the side sill portion 13 and the floor panel fiber reinforced resin plate 12 are divided, and each is made of fiber reinforced resin with different fiber orientation and number of laminated layers of carbon fiber woven fabric, strength is required. By increasing the thickness of the fiber reinforced resin in such a portion and by decreasing the thickness of the fiber reinforced resin in a portion that does not require much strength, it is possible to achieve both securing of strength and weight reduction.

具体的には、車両の前突、後突あるいは側突に耐える強度が必要なサイドシル部13の繊維強化樹脂は厚くされ、サイドシル部13に保護されてあまり強度が必要でないフロアパネル繊維強化樹脂板12の繊維強化樹脂は薄くされる。またサイドシル部13のうちでも、耐側突性能に大きな影響のあるサイドシル外壁繊維強化樹脂板17およびサイドシル内壁繊維強化樹脂板18の繊維強化樹脂は、あまり影響のないサイドシル下壁繊維強化樹脂板16およびサイドシル上壁繊維強化樹脂板19の繊維強化樹脂よりも厚くされる。   Specifically, the fiber reinforced resin of the side sill portion 13 that needs strength to withstand the frontal collision, rearward collision, or side collision of the vehicle is thickened, and is protected by the side sill portion 13 so that the floor panel fiber reinforced resin plate does not require much strength. Twelve fiber reinforced resins are thinned. Further, among the side sill portions 13, the side sill outer wall fiber reinforced resin plate 17 and the side sill inner wall fiber reinforced resin plate 18 which have a great influence on the side-crash resistance performance are less affected by the side sill lower wall fiber reinforced resin plate 16. The side sill upper wall fiber reinforced resin plate 19 is thicker than the fiber reinforced resin.

また第1織布23に対して連続繊維の向きが45°異なる第2織布24を組み合わせると繊維強化樹脂の強度が高められるが、その際に第2織布24を繊維強化樹脂の両面の最外層に用いると補強効果が顕著なものとなる。そのために、本実施の形態では、キャビン11のサイドシル部13およびフロアパネル繊維強化樹脂板12の全ての繊維強化樹脂の両面の最外層を第2織布24で構成し、他の層を第1織布23で構成している。   Further, when the second woven fabric 24 having a continuous fiber orientation of 45 ° different from the first woven fabric 23 is combined, the strength of the fiber reinforced resin is increased. At this time, the second woven fabric 24 is attached to both sides of the fiber reinforced resin. When used for the outermost layer, the reinforcing effect becomes remarkable. Therefore, in the present embodiment, the outermost layers on both sides of the side sill portion 13 of the cabin 11 and all the fiber reinforced resins of the floor panel fiber reinforced resin plate 12 are constituted by the second woven fabric 24, and the other layers are the first layers. A woven fabric 23 is used.

特に、サイドシル下壁繊維強化樹脂板16はフロアパネル繊維強化樹脂板12よりも第1織布23の枚数が2枚多いので、フロアパネル繊維強化樹脂板12をサイドシル部12まで延長してサイドシル下壁繊維強化樹脂板16と積層する場合に比べて、織布の積層枚数を減少させて重量の軽減と耐衝突性能・車体剛性などの車体性能とを両立させることができる。   In particular, since the side sill lower wall fiber reinforced resin plate 16 has two more first woven fabrics 23 than the floor panel fiber reinforced resin plate 12, the floor panel fiber reinforced resin plate 12 is extended to the side sill portion 12 to be below the side sill portion 12. Compared with the case of laminating with the wall fiber reinforced resin plate 16, the number of laminated woven fabrics can be reduced to achieve both weight reduction and vehicle body performance such as collision resistance and vehicle body rigidity.

またサイドシル部13の下面に他部材をボルトで固定するために、サイドシル部13のサイドシル下壁繊維強化樹脂板16の内面にナット20,20を設ける必要があるが、ナットを有する金属インサートをサイドシル下壁繊維強化樹脂板16に埋設すると重量が増加する問題がある。それに対し、本実施の形態では、予めナット20,20を固定した繊維強化樹脂製のブラケット21をサイドシル部13の内面に固定したので、ナットを有する金属インサートを用いる場合に比べて重量を軽減することができる。尚、ブラケット21を金属製とすれば、それに直接ねじ孔を設けてナットを省略することができる。   Further, in order to fix other members to the lower surface of the side sill portion 13 with bolts, it is necessary to provide the nuts 20 and 20 on the inner surface of the side sill lower wall fiber reinforced resin plate 16 of the side sill portion 13. When embedded in the lower wall fiber reinforced resin plate 16, there is a problem that the weight increases. On the other hand, in this embodiment, since the fiber reinforced resin bracket 21 to which the nuts 20 and 20 are fixed in advance is fixed to the inner surface of the side sill portion 13, the weight is reduced compared to the case where a metal insert having a nut is used. be able to. If the bracket 21 is made of metal, a screw hole can be directly provided in the bracket 21 and a nut can be omitted.

またブラケット21は、サイドシル部13のサイドシル下壁繊維強化樹脂板16、サイドシル外壁繊維強化樹脂板17およびサイドシル内壁繊維強化樹脂板18に接続されるので、ブラケット21自体をサイドシル部13のバルクヘッドとして機能させ、特別の補強部材を追加することなくサイドシル部13の強度を高め、耐衝突性能を向上させることができる。しかもブラケット21はサイドシル部13を組み立てる過程でサイドシル上壁繊維強化樹脂板19が取り付けられる上面開口部から装着することができるので、その取り付けが極めて容易である。   Since the bracket 21 is connected to the side sill lower wall fiber reinforced resin plate 16, the side sill outer wall fiber reinforced resin plate 17 and the side sill inner wall fiber reinforced resin plate 18 of the side sill portion 13, the bracket 21 itself is used as a bulkhead of the side sill portion 13. It is possible to increase the strength of the side sill portion 13 and improve the collision resistance without adding a special reinforcing member. Moreover, since the bracket 21 can be mounted from the upper surface opening portion to which the side sill upper wall fiber reinforced resin plate 19 is attached in the process of assembling the side sill portion 13, its attachment is extremely easy.

以上、本発明の実施の形態を説明したが、本発明はその要旨を逸脱しない範囲で種々の設計変更を行うことが可能である。   The embodiments of the present invention have been described above, but various design changes can be made without departing from the scope of the present invention.

例えば、サイドシル部13のサイドシル下壁繊維強化樹脂板16、サイドシル外壁繊維強化樹脂板17、サイドシル内壁繊維強化樹脂板18およびサイドシル上壁繊維強化樹脂板19の繊維強化樹脂の織布の積層枚数や、フロアパネル繊維強化樹脂板12の繊維強化樹脂の織布の積層枚数は、実施の形態に限定されるものではない。   For example, the number of laminated layers of fiber reinforced resin woven fabrics of the side sill lower wall fiber reinforced resin plate 16, the side sill outer wall fiber reinforced resin plate 17, the side sill inner wall fiber reinforced resin plate 18, and the side sill upper wall fiber reinforced resin plate 19 The number of laminated woven fabrics of the fiber reinforced resin of the floor panel fiber reinforced resin plate 12 is not limited to the embodiment.

また繊維強化樹脂製の各部材を接着により結合する代わりに、溶着により結合しても良く、またリベット22は必ずしも併用する必要はない。   Further, instead of bonding the members made of fiber reinforced resin by bonding, they may be bonded by welding, and the rivet 22 is not necessarily used together.

また繊維強化樹脂はカーボン繊維強化樹脂に限定されるものではない。   The fiber reinforced resin is not limited to the carbon fiber reinforced resin.

また実施の形態のブラケット21は繊維強化樹脂製であるが、それを金属板材で構成することができる。   Moreover, although the bracket 21 of embodiment is a product made from fiber reinforced resin, it can be comprised with a metal plate material.

また実施の形態のブラケット21はサイドシル上壁繊維強化樹脂板19に接続されていないが、それをサイドシル上壁繊維強化樹脂板19に接続すればサイドシル部13の強度を更に高めることができる。   Moreover, although the bracket 21 of embodiment is not connected to the side sill upper wall fiber reinforced resin plate 19, if it is connected to the side sill upper wall fiber reinforced resin plate 19, the strength of the side sill portion 13 can be further increased.

12 フロアパネル繊維強化樹脂板
13 サイドシル部
16 サイドシル下壁繊維強化樹脂板
17 サイドシル外壁繊維強化樹脂板
18 サイドシル内壁繊維強化樹脂板
19 サイドシル上壁繊維強化樹脂板
20 ナット(締結部)
21 ブラケット
23 第1織布
24 第2織布
12 Floor panel fiber reinforced resin plate 13 Side sill portion 16 Side sill lower wall fiber reinforced resin plate 17 Side sill outer wall fiber reinforced resin plate 18 Side sill inner wall fiber reinforced resin plate 19 Side sill upper wall fiber reinforced resin plate 20 Nut (fastening portion)
21 Bracket 23 First woven fabric 24 Second woven fabric

Claims (3)

左右一対のサイドシル部(13)と、前記左右一対のサイドシル部(13)のサイドシル下壁繊維強化樹脂板(16)間を接続するフロアパネル繊維強化樹脂板(12)とを繊維強化樹脂で成形し、前記繊維強化樹脂は、連続繊維を車体前後方向およびそれに直交する方向に配列した第1織布(23)と、前記第1織布(23)に対して連続繊維の方向を45°傾斜させた第2織布(24)とを積層して樹脂に埋設してなる自動車の車体構造において、
前記サイドシル部(13)の下壁部を構成するサイドシル下壁繊維強化樹脂板(16)と、前記フロアパネル繊維強化樹脂板(12)とは、内層に前記第1織布(23)を少なくとも2層以上備えるとともに、外層に前記第2織布(24)を少なくとも2層以上備え、前記第1、第2織布(23,24)は積層中心に対して繊維配向が対称になるように積層され、前記サイドシル下壁繊維強化樹脂板(16)は前記フロアパネル繊維強化樹脂板(12)よりも前記第1、第2織布(23,24)のうちの何れか一方の数が多く、
前記サイドシル部(13)は、前記サイドシル下壁繊維強化樹脂板(16)にサイドシル外壁繊維強化樹脂板(17)、サイドシル内壁繊維強化樹脂板(18)およびサイドシル上壁繊維強化樹脂板(19)を接続して閉断面に構成され、前記サイドシル下壁繊維強化樹脂板(16)、サイドシル外壁繊維強化樹脂板(17)、サイドシル内壁繊維強化樹脂板(18)およびサイドシル上壁繊維強化樹脂板(19)の少なくとも一つは、他の一つに対して前記第1織布(23)あるいは前記第2織布(24)の数が異なることを特徴とする自動車の車体構造。
A pair of left and right side sill portions (13) and a floor panel fiber reinforced resin plate (12) connecting between the side sill lower wall fiber reinforced resin plates (16) of the pair of left and right side sill portions (13) are molded with fiber reinforced resin. The fiber reinforced resin includes a first woven fabric (23) in which continuous fibers are arranged in the longitudinal direction of the vehicle body and a direction perpendicular thereto, and the direction of the continuous fibers is inclined by 45 ° with respect to the first woven fabric (23). In the vehicle body structure of an automobile in which the second woven fabric (24) is laminated and embedded in a resin,
The side sill lower wall fiber reinforced resin plate (16) constituting the lower wall portion of the side sill portion (13) and the floor panel fiber reinforced resin plate (12) include at least the first woven fabric (23) as an inner layer. Provided with two or more layers, and at least two or more layers of the second woven fabric (24) on the outer layer, and the first and second woven fabrics (23, 24) are symmetrical in fiber orientation with respect to the lamination center. The side sill lower wall fiber reinforced resin plate (16) has a larger number of any one of the first and second woven fabrics (23, 24) than the floor panel fiber reinforced resin plate (12). The
The side sill portion (13) includes a side sill outer wall fiber reinforced resin plate (17), a side sill inner wall fiber reinforced resin plate (18), and a side sill upper wall fiber reinforced resin plate (19). Are connected to each other, and the side sill lower wall fiber reinforced resin plate (16), side sill outer wall fiber reinforced resin plate (17), side sill inner wall fiber reinforced resin plate (18), and side sill upper wall fiber reinforced resin plate ( At least one of 19) is different from the other in that the number of the first woven fabric (23) or the second woven fabric (24) is different .
左右一対のサイドシル部(13)と、前記左右一対のサイドシル部(13)のサイドシル下壁繊維強化樹脂板(16)間を接続するフロアパネル繊維強化樹脂板(12)とを繊維強化樹脂で成形し、前記繊維強化樹脂は、連続繊維を車体前後方向およびそれに直交する方向に配列した第1織布(23)と、前記第1織布(23)に対して連続繊維の方向を45°傾斜させた第2織布(24)とを積層して樹脂に埋設してなる自動車の車体構造において、
前記サイドシル部(13)の下壁部を構成するサイドシル下壁繊維強化樹脂板(16)と、前記フロアパネル繊維強化樹脂板(12)とは、内層に前記第1織布(23)を少なくとも2層以上備えるとともに、外層に前記第2織布(24)を少なくとも2層以上備え、前記第1、第2織布(23,24)は積層中心に対して繊維配向が対称になるように積層され、前記サイドシル下壁繊維強化樹脂板(16)は前記フロアパネル繊維強化樹脂板(12)よりも前記第1、第2織布(23,24)のうちの何れか一方の数が多く、
前記サイドシル部(13)の内部に締結部(20)を有するブラケット(21)を固定し、前記ブラケット(21)を、前記サイドシル部(13)の少なくとも前記サイドシル外壁繊維強化樹脂板(17)および前記サイドシル内壁繊維強化樹脂板(18)に接続したことを特徴とする自動車の車体構造。
A pair of left and right side sill portions (13) and a floor panel fiber reinforced resin plate (12) connecting between the side sill lower wall fiber reinforced resin plates (16) of the pair of left and right side sill portions (13) are molded with fiber reinforced resin. The fiber reinforced resin includes a first woven fabric (23) in which continuous fibers are arranged in the longitudinal direction of the vehicle body and a direction perpendicular thereto, and the direction of the continuous fibers is inclined by 45 ° with respect to the first woven fabric (23). In the vehicle body structure of an automobile in which the second woven fabric (24) is laminated and embedded in a resin,
The side sill lower wall fiber reinforced resin plate (16) constituting the lower wall portion of the side sill portion (13) and the floor panel fiber reinforced resin plate (12) include at least the first woven fabric (23) as an inner layer. Provided with two or more layers, and at least two or more layers of the second woven fabric (24) on the outer layer, and the first and second woven fabrics (23, 24) are symmetrical in fiber orientation with respect to the lamination center. The side sill lower wall fiber reinforced resin plate (16) has a larger number of any one of the first and second woven fabrics (23, 24) than the floor panel fiber reinforced resin plate (12). The
A bracket (21) having a fastening portion (20) is fixed inside the side sill portion (13), and the bracket (21) is fixed to at least the side sill outer wall fiber reinforced resin plate (17) of the side sill portion (13) and A vehicle body structure for an automobile, wherein the vehicle body structure is connected to the side sill inner wall fiber reinforced resin plate (18) .
記サイドシル部(13)の前記サイドシル下壁繊維強化樹脂板(16)および前記サイドシル上壁繊維強化樹脂板(19)の繊維強化樹脂の最外層および最内層を前記第2織布(24)で構成し、その内層を前記第1織布(23)で構成したことを特徴とする、請求項1または請求項2に記載の自動車の車体構造。 Before SL sill said side sill lower wall fiber reinforced resin plate (13) (16) and the side sill top wall fiber reinforced resin plate wherein the outermost layer and the innermost layer of the fiber reinforced resin (19) second woven fabric (24) The vehicle body structure according to claim 1 or 2 , wherein the inner layer is made of the first woven fabric (23).
JP2011276707A 2011-12-19 2011-12-19 Auto body structure Expired - Fee Related JP5734174B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2011276707A JP5734174B2 (en) 2011-12-19 2011-12-19 Auto body structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2011276707A JP5734174B2 (en) 2011-12-19 2011-12-19 Auto body structure

Publications (2)

Publication Number Publication Date
JP2013126811A JP2013126811A (en) 2013-06-27
JP5734174B2 true JP5734174B2 (en) 2015-06-10

Family

ID=48777611

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2011276707A Expired - Fee Related JP5734174B2 (en) 2011-12-19 2011-12-19 Auto body structure

Country Status (1)

Country Link
JP (1) JP5734174B2 (en)

Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6035654B2 (en) * 2013-09-18 2016-11-30 本田技研工業株式会社 Auto body structure
WO2015129110A1 (en) * 2014-02-25 2015-09-03 本田技研工業株式会社 Body structure of automobile and method for manufacturing body floor
JP6195166B2 (en) * 2014-03-24 2017-09-13 本田技研工業株式会社 Auto body structure
JP6112672B2 (en) * 2014-03-25 2017-04-12 本田技研工業株式会社 Auto body structure
DE102016204731A1 (en) * 2015-04-22 2016-10-27 Bayerische Motoren Werke Aktiengesellschaft motor vehicle
DE102015207376A1 (en) * 2015-04-22 2016-10-27 Bayerische Motoren Werke Aktiengesellschaft motor vehicle

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2004209717A (en) * 2002-12-27 2004-07-29 Toray Ind Inc Fiber reinforced molded product
JP2009255799A (en) * 2008-04-18 2009-11-05 Toyota Motor Corp Insert, and insert structure
JP2010125870A (en) * 2008-11-25 2010-06-10 Toyota Motor Corp Lower vehicle body structure

Also Published As

Publication number Publication date
JP2013126811A (en) 2013-06-27

Similar Documents

Publication Publication Date Title
JP5734174B2 (en) Auto body structure
US9764770B2 (en) Structure for upper part of vehicle body
JP5690358B2 (en) Body structure
JP5768838B2 (en) Vehicle skeleton structure
JP5904393B2 (en) Rear seat mounting structure
JP6032629B2 (en) Automobile center pillar structure
JP5988167B2 (en) Auto body structure
JP2014121955A (en) Vehicular body structure
JP6228256B2 (en) Auto body structure
US20160137226A1 (en) Body center module
JP5802598B2 (en) vehicle
JP6113863B2 (en) Car body rear structure
JP5722648B2 (en) Body structure
JP5630694B2 (en) Electric vehicle floor structure
JP7416657B2 (en) composite structure
JP7251435B2 (en) vehicle body structure
KR20230090717A (en) Vehicle body front structure
JP7035906B2 (en) Manufacturing method of roof reinforcement and resin hollow skeleton member
WO2015076125A1 (en) Vehicle body rear structure
US9840285B2 (en) Front vehicle body and method of fabricating front vehicle body
JP6122968B2 (en) Child anchor structure
JP2014189248A (en) Vehicle body rear part structure of automobile
JPWO2018174037A1 (en) Inclined vehicle
JP5936266B2 (en) Car FRP cabin
CN109606475B (en) Vehicle roof structure and vehicle that has it

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20131128

A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20141030

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20141105

A521 Written amendment

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20141202

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20150318

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20150414

R150 Certificate of patent or registration of utility model

Ref document number: 5734174

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

LAPS Cancellation because of no payment of annual fees