JP2008075735A - Vibration absorbing device - Google Patents

Vibration absorbing device Download PDF

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JP2008075735A
JP2008075735A JP2006254943A JP2006254943A JP2008075735A JP 2008075735 A JP2008075735 A JP 2008075735A JP 2006254943 A JP2006254943 A JP 2006254943A JP 2006254943 A JP2006254943 A JP 2006254943A JP 2008075735 A JP2008075735 A JP 2008075735A
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rubber member
retainer plates
straight line
axially
axial direction
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JP4291347B2 (en
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Noritoshi Sakuma
紀利 佐久間
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Toyo Tire Corp
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Toyo Tire and Rubber Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a vibration absorbing device with a shock absorber whose piston rod is joined to a vehicle body, and which comprises rubber members improved in durability against large displacement to a bound side or to a rebound side. <P>SOLUTION: The vibration absorbing device comprises: the pair of rubber members 18, 20 arranged on the upper and lower sides of a body side member 16; and an upper and lower retainer plates 22, 24 for axially clamping the lower side rubber member 18. The retainer plates are curved into a sectional mountain shape in the direction of axially approaching their peripheral edges 22a, 24a each other. An outer peripheral face 18c of the lower side rubber member consists of: a recessed portion 38 depressed in the axial center into a curved shape; and upper and lower mountain portions 40 swollen on both sides into a curved shape. A bottom 38a of the recessed portion is located on an axially perpendicular inside Y1 of a line M connecting peaks 22b, 24b of the peripheral edges of the retainer plates during the maximum load on the rebound side, and it is located on an axially perpendicular outside Y2 of the line M in the maximum load on the bound side. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本発明は、自動車などの車両のサスペンション機構におけるショックアブソーバのピストンロッドを、車体に対して弾性的に結合するための防振装置に関するものである。   The present invention relates to a vibration isolator for elastically coupling a piston rod of a shock absorber in a suspension mechanism of a vehicle such as an automobile to a vehicle body.

車両のサスペンション機構と車体との間に介設される防振装置は、路面から車体に伝達される振動を減衰ないし低減するものである。従来、この種の防振装置として、ショックアブソーバのピストンロッドが貫通する開口部を備える車体側部材と、該車体側部材の上下に相対して前記開口部と同軸的に配された上下一対の環状のゴム部材と、これらゴム部材の上下に配されて両者の間で該ゴム部材を軸方向に圧縮した状態に保持する上下一対の環状のリテーナプレートとを備えるものが知られている(下記特許文献1〜3参照)。   A vibration isolator interposed between a vehicle suspension mechanism and a vehicle body attenuates or reduces vibration transmitted from the road surface to the vehicle body. Conventionally, as this type of vibration isolator, a vehicle body side member having an opening through which a piston rod of a shock absorber penetrates, and a pair of upper and lower sides arranged coaxially with the opening relative to the upper and lower sides of the vehicle body side member. It is known to include an annular rubber member and a pair of upper and lower annular retainer plates that are arranged above and below these rubber members and hold the rubber member in a compressed state in the axial direction between them (see below) Patent Literatures 1 to 3).

該防振装置は、車体側部材に対するピストンロッドの上方への変位(バウンド側変位)に対しては下側のゴム部材が軸方向に圧縮され、下方への変位(リバウンド側変位)に対しては上側のゴム部材が軸方向に圧縮されて、振動が吸収されるようになっている。
特開2002−266916号公報 特開平11−013825号公報 特開平08−261671号公報
In the vibration isolator, the lower rubber member is compressed in the axial direction with respect to the upward displacement (bound side displacement) of the piston rod relative to the vehicle body side member, and against the downward displacement (rebound side displacement). The upper rubber member is compressed in the axial direction to absorb vibration.
JP 2002-266916 A JP 11-013825 A JP 08-261671 A

上記のような構造を持つ防振装置において、ゴム部材を挟持するリテーナプレートの強度を向上させるためには、その周縁部をゴム部材側に向けて断面山形に湾曲形成することが有効である。   In the vibration isolator having the structure as described above, in order to improve the strength of the retainer plate that holds the rubber member, it is effective to form a curved portion with a cross-sectional angle toward the rubber member side.

図6はその構造を示したものであり、この比較例に係る防振装置100は、ショックアブソーバのピストンロッド102が貫通する開口部104を備える車体側部材106と、該車体側部材106の上下に相対して開口部104と同軸的に配された上下一対の環状のゴム部材108,110と、下側のゴム部材108の上面と下面にそれぞれ配されて両者の間で下側のゴム部材108を軸方向Xに圧縮した状態に保持する上下一対の環状の第1リテーナプレート112,114と、上側のゴム部材110の上面と下面にそれぞれ配されて両者の間で上側のゴム部材110を軸方向Xに圧縮した状態に保持する上下一対の環状の第2リテーナプレート116,118と、を備える。そして、上記一対のゴム部材108,110の中空部にピストンロッド102を貫挿させて、ピストンロッド102の先端部に配された締結部材120の締め付けにより、下側の第1リテーナプレート114と上側の第2リテーナプレート116との間に上記一対のゴム部材108,110を予圧縮状態に保持することで構成されている。   FIG. 6 shows the structure thereof. A vibration isolator 100 according to this comparative example includes a vehicle body side member 106 having an opening 104 through which a piston rod 102 of a shock absorber passes, and upper and lower parts of the vehicle body side member 106. A pair of upper and lower annular rubber members 108 and 110 arranged coaxially with the opening 104, and a lower rubber member disposed between the upper and lower surfaces of the lower rubber member 108, respectively. A pair of upper and lower annular first retainer plates 112 and 114 that hold the 108 in a compressed state in the axial direction X, and an upper rubber member 110 disposed between the upper and lower surfaces of the upper rubber member 110, respectively. A pair of upper and lower annular second retainer plates 116 and 118 that are held in a compressed state in the axial direction X. Then, the piston rod 102 is inserted through the hollow portions of the pair of rubber members 108 and 110, and the fastening member 120 disposed at the tip of the piston rod 102 is tightened, whereby the lower first retainer plate 114 and the upper retainer plate 114 are The pair of rubber members 108 and 110 are held in a pre-compressed state between the second retainer plate 116 and the second retainer plate 116.

上下の第1リテーナプレート112,114は、両者の周縁部112a,114aが互いに軸方向Xに近づく方向に断面山形に湾曲形成され、また、上下の第2リテーナプレート116,118は、両者の周縁部116a,118aが互いに軸方向Xに近づく方向に断面山形に湾曲形成され、これにより各リテーナプレートの強度アップが図られている。   The upper and lower first retainer plates 112 and 114 are curved so that the peripheral portions 112a and 114a of each of the upper and lower peripheral portions 112a and 114a approach each other in the axial direction X, and the upper and lower second retainer plates 116 and 118 The portions 116a and 118a are curved in a mountain shape in the direction approaching the axial direction X, thereby increasing the strength of each retainer plate.

上下のゴム部材108,110は、図9に示すように、外径が軸方向Xに一定であるストレート状の外周面を持つように形成されている。このようなゴム部材108,110を具備する上記防振装置100では、バウンド側又はリバウンド側の最大負荷時に次のような問題を生じる。   As shown in FIG. 9, the upper and lower rubber members 108 and 110 are formed to have a straight outer peripheral surface whose outer diameter is constant in the axial direction X. In the vibration isolator 100 including the rubber members 108 and 110, the following problems occur at the maximum load on the bound side or the rebound side.

すなわち、図6に示す標準負荷状態(車体の分担荷重が負荷された非振動状態)からバウンド側に大変位したときに、図7に示すように、下側のゴム部材108において、その外周部は、上下の第1リテーナプレート112,114の山形の周縁部112a,114aに乗り上げるとともに、周縁部112a,114aの間隙を軸直角方向Yの外側に広がるような変形モードとなる。その際、上記山形の周縁部112a,114aで軸直角方向Yの外側への変形が止まるゴム部分108aと、その近傍において外側へ広がろうとするゴム部分108bとが別れるように変形することから、両者間の摩擦により耐久性が損なわれる。   That is, when a large displacement is made to the bounce side from the standard load state shown in FIG. 6 (non-vibration state in which the vehicle body's shared load is applied), as shown in FIG. Is a deformation mode that rides on the chevron-shaped peripheral portions 112a and 114a of the upper and lower first retainer plates 112 and 114, and spreads the gap between the peripheral portions 112a and 114a outward in the direction perpendicular to the axis Y. At that time, the rubber portion 108a that stops outward deformation in the axis-perpendicular direction Y at the peripheral portions 112a and 114a of the chevron and the rubber portion 108b that tries to spread outward in the vicinity thereof are deformed so as to be separated, Durability is impaired by friction between the two.

リバウンド側に大変位したときも同様であり、図8に示すように、上側のゴム部材110において、第2リテーナプレート116,118の山形の周縁部116a,118aで軸直角方向Yの外側への変形が止まるゴム部分110aと、その近傍において外側へ広がろうとするゴム部分110bとが別れるように変形することで、耐久性が損なわれる。   The same applies to the case of a large displacement on the rebound side. As shown in FIG. 8, in the upper rubber member 110, the outer peripheral portions 116 a and 118 a of the second retainer plates 116 and 118 are moved outward in the direction perpendicular to the axis Y. Durability is impaired by deforming the rubber portion 110a that stops deformation and the rubber portion 110b that tends to spread outward in the vicinity thereof.

なお、上記特許文献1や特許文献2には、ゴム部材の外周面に周方向に延びる凹部を設ける技術が開示されているが、これらの凹部は初期荷重に対するバネ特性を柔らかくするために深く形成されており、そのため、本発明のようにバウンド側又はリバウンド側への大変位時における耐久性の向上に寄与するものではない。   In addition, Patent Document 1 and Patent Document 2 disclose a technique of providing recesses extending in the circumferential direction on the outer peripheral surface of the rubber member, but these recesses are formed deep in order to soften the spring characteristics with respect to the initial load. Therefore, it does not contribute to improvement of durability at the time of large displacement to the bounce side or the rebound side as in the present invention.

本発明は、上記の点に鑑みてなされたものであり、バウンド側又はリバウンド側への大変位時におけるゴム部材の耐久性を向上することができる防振装置を提供することを目的とする。   This invention is made | formed in view of said point, and it aims at providing the vibration isolator which can improve the durability of the rubber member at the time of the large displacement to the bounce side or the rebound side.

本発明の第1の発明に係る防振装置は、車両のサスペンション機構におけるショックアブソーバのピストンロッドを車体に対して弾性的に結合するための防振装置であって、前記ピストンロッドが貫通する開口部を備える車体側部材と、前記車体側部材の上下に相対して前記開口部と同軸的に配された上下一対の環状のゴム部材と、前記下側のゴム部材の上面と下面にそれぞれ配されて両者の間で前記下側のゴム部材を軸方向に圧縮した状態に保持する上下一対の環状の第1リテーナプレートと、を備え、前記上下の第1リテーナプレートは、両者の周縁部が互いに軸方向に近づく方向に断面山形に湾曲形成され、前記下側のゴム部材の外周面が、軸方向中央部において軸直角方向内側に向かって湾曲状に陥没する凹部と、該凹部の軸方向両側において軸直角方向外側に向かって湾曲状に膨出する上下一対の山部とからなり、前記凹部の底が、軸方向に沿う断面において、リバウンド側最大負荷時には前記上下の第1リテーナプレートの前記周縁部の頂部同士を結ぶ直線上か又は該直線よりも軸直角方向内側に位置し、バウンド側最大負荷時には前記直線よりも軸直角方向外側に位置することを特徴とする。   A vibration isolator according to a first aspect of the present invention is a vibration isolator for elastically coupling a piston rod of a shock absorber in a vehicle suspension mechanism to a vehicle body, and an opening through which the piston rod passes. A vehicle body side member having a portion, a pair of upper and lower annular rubber members disposed coaxially with the opening relative to the upper and lower sides of the vehicle body side member, and an upper surface and a lower surface of the lower rubber member, respectively. And a pair of upper and lower annular first retainer plates that hold the lower rubber member in an axially compressed state between the two, and the upper and lower first retainer plates have peripheral edges of both. A concave portion in which the outer peripheral surface of the lower rubber member is curved in a curved shape toward the inner side perpendicular to the axial direction at the central portion in the axial direction, and the axial direction of the concave portion. Both And a pair of upper and lower ridges that bulge outwardly in the direction perpendicular to the axis, and the bottom of the recess has a cross section along the axial direction, and the upper and lower first retainer plates are It is located on the straight line connecting the apexes of the peripheral edges or on the inner side in the direction perpendicular to the axis from the straight line, and located on the outer side in the direction perpendicular to the axis from the straight line at the maximum load on the bounce side.

上記構成によれば、下側のゴム部材の外周面が、湾曲状の山部とその間の湾曲状の凹部とで構成され、該凹部の底が、バウンド側最大負荷時に、第1リテーナプレートの周縁部の頂部同士を結ぶ直線よりも軸直角方向外側に出てくるように、該凹部の深さが設定されている。これにより、バウンド側への大変位時に、下側のゴム部材は、その軸方向両端部に位置する上記湾曲状の山部の裾部が、第1リテーナプレートの周縁部に当たり、軸直角方向外側への変形が止まる。そして、軸方向中央部に位置する湾曲状の凹部が外側に広がるように変形するモードに変化する。そのため、上記周縁部で外側への変形が規制されるゴム部分とその近傍のゴム部分との間での摩擦が低減されて、バウンド側の大変位時における下側のゴム部材の耐久性を向上することができる。   According to the above configuration, the outer peripheral surface of the lower rubber member is configured by the curved peak portion and the curved concave portion therebetween, and the bottom of the concave portion has the first retainer plate at the time of maximum load on the bound side. The depth of the concave portion is set so as to come out outside in the direction perpendicular to the axis with respect to the straight line connecting the top portions of the peripheral edge portions. As a result, when the large displacement to the bounce side, the lower rubber member has the skirts of the curved ridges located at both ends in the axial direction hit the peripheral edge of the first retainer plate, and the outer side perpendicular to the axis. Deformation stops. And it changes to the mode which deform | transforms so that the curved recessed part located in the axial direction center part may spread outside. Therefore, the friction between the rubber part whose outward deformation is restricted at the peripheral part and the rubber part in the vicinity thereof is reduced, and the durability of the lower rubber member at the time of large displacement on the bounce side is improved. can do.

本発明の第2の発明に係る防振装置は、車両のサスペンション機構におけるショックアブソーバのピストンロッドを車体に対して弾性的に結合するための防振装置であって、前記ピストンロッドが貫通する開口部を備える車体側部材と、前記車体側部材の上下に相対して前記開口部と同軸的に配された上下一対の環状のゴム部材と、前記上側のゴム部材の上面と下面にそれぞれ配されて両者の間で前記上側のゴム部材を軸方向に圧縮した状態に保持する上下一対の環状の第2リテーナプレートと、を備え、前記上下の第2リテーナプレートは、両者の周縁部が互いに軸方向に近づく方向に断面山形に湾曲形成され、前記上側のゴム部材の外周面が、軸方向中央部において軸直角方向内側に向かって湾曲状に陥没する凹部と、該凹部の軸方向両側において軸直角方向外側に向かって湾曲状に膨出する上下一対の山部とからなり、前記凹部の底が、軸方向に沿う断面において、バウンド側最大負荷時には前記上下の第2リテーナプレートの前記周縁部の頂部同士を結ぶ直線上か又は該直線よりも軸直角方向内側に位置し、リバウンド側最大負荷時には前記直線よりも軸直角方向外側に位置することを特徴とする。この場合も、下側のゴム部材の場合と同様に、リバウンド側への大変位時における上側のゴム部材の耐久性を向上することができる。   A vibration isolator according to a second aspect of the present invention is a vibration isolator for elastically coupling a piston rod of a shock absorber in a vehicle suspension mechanism to a vehicle body, and an opening through which the piston rod penetrates. A vehicle body side member provided with a portion, a pair of upper and lower annular rubber members arranged coaxially with the opening relative to the upper and lower sides of the vehicle body side member, and an upper surface and a lower surface of the upper rubber member, respectively. A pair of upper and lower annular retainer plates that hold the upper rubber member compressed in the axial direction between the upper and lower second retainer plates. A concave portion that is curved in a mountain-shaped cross section in a direction approaching the direction, and the outer peripheral surface of the upper rubber member sinks in a curved shape toward the inner side in a direction perpendicular to the axis at the axial central portion, and both axial directions of the concave portion The bottom of the concave portion in the cross section along the axial direction at the bound side maximum load, the upper and lower second retainer plates of the upper and lower second retainer plates It is located on the straight line connecting the apexes of the peripheral edges or on the inner side in the direction perpendicular to the axis from the straight line, and located on the outer side in the direction perpendicular to the axis than the straight line at the time of maximum rebound load. In this case as well, as in the case of the lower rubber member, the durability of the upper rubber member at the time of large displacement toward the rebound side can be improved.

本発明の防振装置であると、バウンド側又はリバウンド側への大変位時におけるゴム部材の耐久性を向上することができる。   With the vibration isolator of the present invention, it is possible to improve the durability of the rubber member at the time of large displacement toward the bounce side or the rebound side.

以下に本発明の実施形態について図面に基づいて説明する。   Embodiments of the present invention will be described below with reference to the drawings.

図1は本発明の一実施形態に係る防振装置10の断面図である。同防振装置10は、車両のサスペンション機構におけるショックアブソーバのピストンロッドの上端部を車体に対して弾性的に結合するためのアッパーサポートであり、ピストンロッド12の軸方向Xを上下方向として設けられている。   FIG. 1 is a cross-sectional view of a vibration isolator 10 according to an embodiment of the present invention. The vibration isolator 10 is an upper support for elastically coupling an upper end portion of a piston rod of a shock absorber in a vehicle suspension mechanism to a vehicle body, and is provided with an axial direction X of the piston rod 12 as an up-down direction. ing.

防振装置10は、ピストンロッド12が貫通する円形の開口部14を備える車体側部材16と、その上下に相対して配された上下一対の環状のゴム部材18,20と、下側のゴム部材18の上下に配された一対の第1リテーナプレート22,24と、上側のゴム部材20の上下に配された一対の第2リテーナプレート26,28と、を備えてなり、これらの上下のゴム部材18,20、一対の第1リテーナプレート22,24、及び一対の第2リテーナプレート26,28の各中空部にピストンロッド12を貫挿させて、ピストンロッド12の先端部12aに配された締結部材であるナット30の締め付けにより、上下のゴム部材18,20を軸方向Xにおいて予圧縮状態に保持することで構成されている。   The vibration isolator 10 includes a vehicle body side member 16 having a circular opening 14 through which a piston rod 12 penetrates, a pair of upper and lower annular rubber members 18 and 20 disposed opposite to each other, and a lower rubber. A pair of first retainer plates 22, 24 disposed above and below the member 18 and a pair of second retainer plates 26, 28 disposed above and below the upper rubber member 20 are provided. The piston rod 12 is inserted into the hollow portions of the rubber members 18, 20, the pair of first retainer plates 22, 24, and the pair of second retainer plates 26, 28, and is disposed at the tip 12 a of the piston rod 12. The upper and lower rubber members 18 and 20 are held in a pre-compressed state in the axial direction X by tightening the nut 30 which is a fastening member.

下側のゴム部材18は、ピストンロッド12が貫通する中空部32を有する環状のゴム状部材であり、上記開口部14と同軸的に配されている。この例では、図5(a)に示すように、下側のゴム部材18の中空部32は、円形ではなく、ピストンロッド12の外形に一致するよう、直径方向に相対する2箇所が弓形に切除された形状に形成されている。そして、これに対応させて、下側のゴム部材18の外形は、平面視で長円状に形成されている。   The lower rubber member 18 is an annular rubber-like member having a hollow portion 32 through which the piston rod 12 passes, and is disposed coaxially with the opening 14. In this example, as shown in FIG. 5A, the hollow portion 32 of the lower rubber member 18 is not circular, but two diametrically opposite locations are arcuate so as to match the outer shape of the piston rod 12. It is formed in a cut shape. Corresponding to this, the outer shape of the lower rubber member 18 is formed in an oval shape in plan view.

上側のゴム部材20は、ピストンロッド12が貫通する中空部34を有する環状のゴム状部材であり、上記開口部14と同軸的に配されている。この例では、図4(a)に示すように、上側のゴム部材20の外形及び中空部34の形状は円形に形成されている。   The upper rubber member 20 is an annular rubber-like member having a hollow portion 34 through which the piston rod 12 passes, and is disposed coaxially with the opening 14. In this example, as shown to Fig.4 (a), the external shape of the upper rubber member 20 and the shape of the hollow part 34 are formed circularly.

上下の第1リテーナプレート22,24は、下側のゴム部材18の上面18aと下面18bにそれぞれ当接配置されて、両者22,24の間で下側のゴム部材18を軸方向Xに圧縮した状態に保持する金属製の環状部材である。詳細には、この例では、図5(a)に示す下側のゴム部材18の外形形状に対応させて、平面視長円状に形成されている。   The upper and lower first retainer plates 22, 24 are disposed in contact with the upper surface 18 a and the lower surface 18 b of the lower rubber member 18, respectively, and compress the lower rubber member 18 in the axial direction X between both the 22, 24. This is an annular member made of metal that is held in the state. Specifically, in this example, it is formed in an oval shape in plan view corresponding to the outer shape of the lower rubber member 18 shown in FIG.

上下の第1リテーナプレート22,24は、両者の周縁部22a,24aが互いに軸方向Xに近づく方向に断面山形に湾曲形成されている。詳細には、上側の第1リテーナプレート22は、周縁部22aが下向きに突出する断面山形に湾曲形成され、下側の第1リテーナプレート24は、周縁部24aが上向きに突出する断面山形に湾曲形成されている。   The upper and lower first retainer plates 22 and 24 are curved and formed in a mountain shape in cross section in a direction in which the peripheral portions 22a and 24a approach each other in the axial direction X. Specifically, the upper first retainer plate 22 is curved and formed in a cross-sectional mountain shape with a peripheral edge portion 22a protruding downward, and the lower first retainer plate 24 is curved in a cross-sectional mountain shape with a peripheral edge portion 24a protruding upward. Is formed.

上側の第1リテーナプレート22は、ピストンロッド12が貫通する中央の貫通孔36において、その開口縁部36aが車体側部材16の開口部14に内嵌するように、上方にフランジ状に折曲形成されている。上側の第1リテーナプレート22と下側の第1リテーナプレート24とは、この開口縁部36aを除いて、外径及び上記周縁部22a,24aの形状を含む全体が同一に形成されている。   The upper first retainer plate 22 is bent upward in a flange shape so that the opening edge 36a of the central through hole 36 through which the piston rod 12 passes is fitted into the opening 14 of the vehicle body side member 16. Is formed. The upper first retainer plate 22 and the lower first retainer plate 24 are formed in the same shape including the outer diameter and the shapes of the peripheral edge portions 22a and 24a except for the opening edge 36a.

上下の第2リテーナプレート26,28は、上側のゴム部材20の上面20aと下面20bにそれぞれ当接配置されて、両者26,28の間で上側のゴム部材20を軸方向Xに圧縮した状態に保持する金属製の環状部材である。上下の第2リテーナプレート26,28は、両者の周縁部26a,28aが互いに軸方向Xに近づく方向に断面山形に湾曲形成されている。詳細には、上側の第2リテーナプレート26は、周縁部26aが下向きに突出する断面山形に湾曲形成され、下側の第2リテーナプレート28は、周縁部28aが上向きに突出する断面山形に湾曲形成されている。   The upper and lower second retainer plates 26, 28 are disposed in contact with the upper surface 20 a and the lower surface 20 b of the upper rubber member 20, respectively, and the upper rubber member 20 is compressed in the axial direction X between both the 26, 28. It is the metal annular member hold | maintained. The upper and lower second retainer plates 26, 28 are curved and formed in a mountain-shaped cross section in the direction in which the peripheral portions 26 a, 28 a approach the axial direction X. Specifically, the upper second retainer plate 26 is curved and formed into a cross-sectional mountain shape with a peripheral edge 26a protruding downward, and the lower second retainer plate 28 is curved into a cross-sectional mountain shape with a peripheral edge 28a protruding upward. Is formed.

上側の第2リテーナプレート26と下側の第2リテーナプレート28とは、外径及び上記周縁部26a,28aの形状を含む全体が同一に形成されている。また、この上下の第2リテーナプレート26,28は、上記した上下の第1リテーナプレート22,24よりも外径が小さく設定されている。   The upper second retainer plate 26 and the lower second retainer plate 28 are formed in the same shape including the outer diameter and the shape of the peripheral edge portions 26a, 28a. The upper and lower second retainer plates 26 and 28 are set to have an outer diameter smaller than that of the upper and lower first retainer plates 22 and 24 described above.

下側のゴム部材18は、図5(b)に示すように、その外周面18cが、軸方向Xの中央部において軸直角方向内側Y1に向かって湾曲状に陥没する凹部38と、該凹部38の軸方向Xの両側において軸直角方向外側Y2に向かって湾曲状に膨出する上下一対の山部40,40とからなる。凹部38と山部40は、下側のゴム部材18の全周にわたって一定の断面形状に形成されている。   As shown in FIG. 5 (b), the lower rubber member 18 has a recess 38 whose outer peripheral surface 18c is bent in a curved shape toward the axially perpendicular inner side Y1 at the center in the axial direction X, and the recess It consists of a pair of upper and lower crests 40, 40 that bulge in a curved shape toward the outside Y2 in the direction perpendicular to the axis on both sides of the axial direction X of 38. The concave portion 38 and the peak portion 40 are formed in a constant cross-sectional shape over the entire circumference of the lower rubber member 18.

より詳細には、外周面18cは、図5(b)に示す軸方向に沿う断面において、上面18a及び下面18bからそれぞれ連なり外周面18cの上端部及び下端部をなす上下の第1円弧部42a,42aと、上下の山部40,40の頂部をそれぞれ構成する上下の第2円弧部42b,42bと、凹部38の底部を構成する第3円弧部42cと、を備えてなり、第1円弧部42aと第2円弧部42bとの間は、軸方向X中央側ほど軸直角方向外側Y2に位置するように傾斜したストレート部42dを介して連結されている。そして、凹部38の底(軸直角方向Yにおいて最も内側に位置する点)38aが、第1円弧部42aの上面18a側又は下面18b側の始点42a1よりも、軸直角方向外側Y2に位置している。   More specifically, the outer peripheral surface 18c is connected to the upper surface 18a and the lower surface 18b in the cross section along the axial direction shown in FIG. 5B, and the upper and lower first arc portions 42a forming the upper end portion and the lower end portion of the outer peripheral surface 18c. , 42a, upper and lower second arc portions 42b, 42b that respectively constitute the top portions of the upper and lower peaks 40, 40, and a third arc portion 42c that constitutes the bottom portion of the recess 38, and the first arc The portion 42a and the second arc portion 42b are connected via a straight portion 42d that is inclined so as to be positioned on the outer side Y2 in the direction perpendicular to the axial direction toward the center in the axial direction X. The bottom 38a of the recess 38 (the point located on the innermost side in the direction Y perpendicular to the axis) 38a is located on the outer side Y2 in the direction perpendicular to the axis from the starting point 42a1 on the upper surface 18a side or the lower surface 18b side of the first arc portion 42a. Yes.

そして、この下側のゴム部材18の外周面18cは、上下の第1リテーナプレート22,24の周縁部22a,24aとの関係で、次のように構成されている。   The outer peripheral surface 18c of the lower rubber member 18 is configured as follows in relation to the peripheral portions 22a and 24a of the upper and lower first retainer plates 22 and 24.

すなわち、軸方向Xに沿う断面において、上記凹部38の底38aが、図1に示す標準負荷時には、第1リテーナプレート22,24の周縁部22a,24aの頂部22b,24b同士を結ぶ直線M上に位置し、図3に示すリバウンド側最大負荷時には、該直線Mよりも軸直角方向内側Y1に位置し、図2に示すバウンド側最大負荷時には、該直線Mよりも軸直角方向外側Y2に位置するように設定されている。ここで、標準負荷時とは、車体の分担荷重が負荷された非振動状態であり、リバウンド側最大負荷時とは、車両に応じて定められたピストンロッド12の下方への最大荷重負荷時であり、バウンド側最大負荷時とは、車両に応じて定められたピストンロッド12の上方への最大荷重負荷時である。   That is, in the cross section along the axial direction X, the bottom 38a of the concave portion 38 is on the straight line M connecting the top portions 22b and 24b of the peripheral portions 22a and 24a of the first retainer plates 22 and 24 at the standard load shown in FIG. 3, when the maximum load on the rebound side shown in FIG. 3 is located on the inner side Y1 in the direction perpendicular to the straight line M, and on the outer side Y2 in the direction perpendicular to the axis with respect to the maximum load on the bounce side shown in FIG. It is set to be. Here, the standard load is a non-vibration state in which a shared load of the vehicle body is applied, and the rebound-side maximum load is a maximum load applied below the piston rod 12 determined according to the vehicle. Yes, the maximum load on the bounce side is the maximum load applied to the upper side of the piston rod 12 determined according to the vehicle.

上側のゴム部材20も、下側のゴム部材18と同様、図4(b)に示すように、その外周面20cが、軸方向Xの中央部において軸直角方向内側Y1に向かって湾曲状に陥没する凹部44と、該凹部44の軸方向Xの両側において軸直角方向外側Y2に向かって湾曲状に膨出する上下一対の山部46,46とで構成されている。   Similarly to the lower rubber member 18, the upper rubber member 20 also has an outer peripheral surface 20c that is curved toward the axially perpendicular inner side Y1 at the center in the axial direction X, as shown in FIG. The recessed portion 44 is depressed, and a pair of upper and lower ridge portions 46 and 46 bulge in a curved shape toward the outer side Y2 perpendicular to the axial direction on both sides in the axial direction X of the recessed portion 44.

より詳細には、外周面20cは、図4(b)に示す軸方向に沿う断面において、上面20a及び下面20bからそれぞれ連なり外周面20cの上端部及び下端部をなす上下の第1円弧部48a,48aと、上下の山部46,46の頂部をそれぞれ構成する上下の第2円弧部48b,48bと、凹部44の底部を構成する第3円弧部48cと、を備えてなる。そして、凹部44の底(軸直角方向Yにおいて最も内側に位置する点)44aが、第1円弧部48aの上面20a側又は下面20b側の始点48a1と、軸直角方向Yにおいて同じ位置に設定されている。   More specifically, the outer peripheral surface 20c is connected to the upper surface 20a and the lower surface 20b in the cross section along the axial direction shown in FIG. 4B, and the upper and lower first arc portions 48a forming the upper end portion and the lower end portion of the outer peripheral surface 20c. , 48a, upper and lower second arc portions 48b and 48b constituting the top portions of the upper and lower peaks 46 and 46, and a third arc portion 48c constituting the bottom portion of the recess 44, respectively. Then, the bottom 44a of the concave portion 44 (a point located on the innermost side in the direction perpendicular to the axis Y) 44a is set at the same position in the direction perpendicular to the axis Y as the starting point 48a1 on the upper surface 20a side or the lower surface 20b side of the first arc portion 48a. ing.

そして、この上側のゴム部材20の外周面20cは、上下の第2リテーナプレート26,28の周縁部26a,28aとの関係で、次のように構成されている。   The outer peripheral surface 20c of the upper rubber member 20 is configured as follows in relation to the peripheral portions 26a and 28a of the upper and lower second retainer plates 26 and 28.

すなわち、軸方向Xに沿う断面において、上記凹部44の底44aが、図1に示す標準負荷時には、第2リテーナプレート26,28の周縁部26a,28aの頂部26b,28b同士を結ぶ直線N上に位置し、図2に示すバウンド側最大負荷時には、該直線Nよりも軸直角方向内側Y1に位置し、図3に示すリバウンド側最大負荷時には、該直線Nよりも軸直角方向外側Y2に位置するように設定されている。   That is, in the cross section along the axial direction X, the bottom 44a of the concave portion 44 is on a straight line N connecting the top portions 26b, 28b of the peripheral portions 26a, 28a of the second retainer plates 26, 28 at the time of standard load shown in FIG. 2, at the maximum load on the bounce side shown in FIG. 2, it is positioned on the inner side Y1 in the direction perpendicular to the straight line N, and at the maximum load on the rebound side shown in FIG. It is set to be.

以上よりなる本実施形態の防振装置10であると、図2に示すバウンド側への大変位時に、下側のゴム部材18は、軸方向Xに圧縮されるが、その際、ゴム部材18の軸方向両端部に位置する上記湾曲状の山部40の裾部40aが、第1リテーナプレート22,24の山形の周縁部22a,24aに当接して軸直角方向外側Y2への変形が止まり、次いで、軸方向中央部に位置する湾曲状の凹部38が外側に広がるように変形するモードに変化する。そのため、上記周縁部22a,24aで外側への変形が規制される軸方向両端のゴム部分40a,40aとその軸方向内側近傍のゴム部分との間での摩擦が低減されるので、バウンド側の大変位時における下側のゴム部材18の耐久性が向上する。   In the case of the vibration isolator 10 of the present embodiment configured as described above, the lower rubber member 18 is compressed in the axial direction X at the time of large displacement toward the bound side shown in FIG. The skirt portions 40a of the curved ridge portions 40 located at both ends in the axial direction abut against the mountain-shaped peripheral portions 22a and 24a of the first retainer plates 22 and 24, and the deformation to the outer side perpendicular to the axis Y2 stops. Then, the mode changes to a mode in which the curved concave portion 38 located at the central portion in the axial direction is deformed so as to spread outward. Therefore, the friction between the rubber portions 40a, 40a at both ends in the axial direction and the rubber portions near the inner side in the axial direction, which are restricted from being deformed outward by the peripheral portions 22a, 24a, is reduced. The durability of the lower rubber member 18 at the time of large displacement is improved.

また、上側のゴム部材20については、図3に示すリバウンド側への大変位時に、その軸方向両端部に位置する上記湾曲状の山部46の裾部46aが、第2リテーナプレート26,28の山形の周縁部26a,28aに当接して軸直角方向外側Y2への変形が止まり、そして、軸方向中央部に位置する湾曲状の凹部44が軸直角方向外側Y2に広がるといったモードに変形する。そのため、上記周縁部26a,28aで外側への変形が規制される軸方向両端のゴム部分46a,46aとその軸方向X内側のゴム部分との間での摩擦が低減されるので、リバウンド側の大変位時における上側のゴム部材20の耐久性が向上する。   Further, with respect to the upper rubber member 20, when the large displacement toward the rebound side shown in FIG. 3, the skirt portions 46 a of the curved peak portions 46 located at both ends in the axial direction are the second retainer plates 26, 28. In a mode in which the deformation to the axially perpendicular outer side Y2 stops by abutting against the chevron-shaped peripheral edge portions 26a and 28a, and the curved concave portion 44 located at the axially central portion extends to the axially perpendicular outer side Y2. . Therefore, the friction between the rubber portions 46a, 46a at both ends in the axial direction and the rubber portions at the inner side in the axial direction X that are restricted from being deformed outward by the peripheral edge portions 26a, 28a is reduced. The durability of the upper rubber member 20 at the time of large displacement is improved.

また、本実施形態であると、ゴム部材18,20の外周面18c,20cの凹部38,44を、その底38a,44aが第1円弧部42a,48aの始点42a1,48a1に対し軸直角方向Yで同位置か又はこれよりも外側Y2に位置するようにして、該凹部38,44を浅く設定しているので、適切な撓み量を確保しながら、上記バウンド側又はリバウンド側への大変位時における耐久性向上効果を発揮することができる。   In the present embodiment, the recesses 38 and 44 of the outer peripheral surfaces 18c and 20c of the rubber members 18 and 20 are perpendicular to the start points 42a1 and 48a1 of the bottom arcs 42a and 48a. Since the recesses 38 and 44 are set shallowly so that they are placed at the same position on the outer side Y or on the outer side Y2, a large displacement toward the bound side or the rebound side while securing an appropriate amount of deflection. The effect of improving durability at the time can be exhibited.

なお、上記実施形態では、下側のゴム部材18の凹部38の底38aが、リバウンド側最大負荷時に、上記直線Mよりも軸直角方向内側Y1に位置するように設定したが、リバウンド側最大負荷時に、該底38aが直線M上に位置するように設定してもよい。同様に、上記実施形態では、上側のゴム部材20の凹部44の底44aが、バウンド側最大負荷時に、上記直線Nよりも軸直角方向内側Y1に位置するように設定したが、バウンド側最大負荷時に、該底44aが直線N上に位置するように設定してもよい。   In the above embodiment, the bottom 38a of the recess 38 of the lower rubber member 18 is set to be located on the inner side Y1 in the direction perpendicular to the straight line M from the straight line M when the rebound side maximum load is applied. Sometimes, the bottom 38a may be set on the straight line M. Similarly, in the above-described embodiment, the bottom 44a of the concave portion 44 of the upper rubber member 20 is set to be positioned on the inner side Y1 in the direction perpendicular to the straight line N with respect to the straight line N when the bound side maximum load is applied. Sometimes, the bottom 44a may be set on the straight line N.

また、上記実施形態では、上側の第1リテーナプレート22と下側の第2リテーナプレート28をともに車体側部材16と別体に設けているが、いずれか一方を車体側部材16と一体に設けてもよい。   In the above embodiment, the upper first retainer plate 22 and the lower second retainer plate 28 are both provided separately from the vehicle body side member 16, but either one is provided integrally with the vehicle body side member 16. May be.

本発明の一実施形態に係る防振装置の標準負荷時における断面図である。It is sectional drawing at the time of standard load of the vibration isolator which concerns on one Embodiment of this invention. 同防振装置のバウンド側最大負荷時の断面図である。It is sectional drawing at the time of the bound side maximum load of the vibration isolator. 同防振装置のリバウンド側最大負荷時の断面図である。It is sectional drawing at the time of the rebound side maximum load of the vibration isolator. (a)は同防振装置の上側のゴム部材の平面図であり、(b)はそのA−A線断面図である。(A) is a top view of the rubber member of the upper side of the vibration isolator, (b) is the AA sectional view taken on the line. (a)は同防振装置の下側のゴム部材の平面図であり、(b)はそのB−B線断面図である。(A) is a top view of the rubber member of the lower side of the vibration isolator, (b) is the BB sectional drawing. 比較例に係る防振装置の標準負荷時における断面図である。It is sectional drawing at the time of standard load of the vibration isolator which concerns on a comparative example. 比較例に係る防振装置のバウンド側最大負荷時の断面図である。It is sectional drawing at the time of the bound side maximum load of the vibration isolator which concerns on a comparative example. 比較例に係る防振装置のリバウンド側最大負荷時の断面図である。It is sectional drawing at the time of the rebound side maximum load of the vibration isolator which concerns on a comparative example. (a)は比較例に係る防振装置の上側のゴム部材の断面図であり、(b)は下側のゴム部材の断面図である。(A) is sectional drawing of the upper rubber member of the vibration isolator which concerns on a comparative example, (b) is sectional drawing of the lower rubber member.

符号の説明Explanation of symbols

10…防振装置
12…ショックアブソーバのピストンロッド
14…開口部
16…車体側部材
18…下側のゴム部材、18a…上面、18b…下面、18c…外周面
20…上側のゴム部材、20a…上面、20b…下面、20c…外周面
22…上側の第1リテーナプレート、22a…周縁部、22b…頂部
24…下側の第1リテーナプレート、24a…周縁部、24b…頂部
26…上側の第2リテーナプレート、26a…周縁部、26b…頂部
28…下側の第2リテーナプレート、28a…周縁部、28b…頂部
38…下側のゴム部材の凹部、38a…底
40…下側のゴム部材の山部
44…上側のゴム部材の凹部、44a…底
46…上側のゴム部材の山部
X…軸方向、Y…軸直角方向、Y1…軸直角方向内側、Y2…軸直角方向外側
M…上下の第1リテーナプレートの周縁部の頂部同士を結ぶ直線
N…上下の第2リテーナプレートの周縁部の頂部同士を結ぶ直線
DESCRIPTION OF SYMBOLS 10 ... Vibration isolator 12 ... Shock absorber piston rod 14 ... Opening part 16 ... Car body side member 18 ... Lower rubber member, 18a ... Upper surface, 18b ... Lower surface, 18c ... Outer peripheral surface 20 ... Upper rubber member, 20a ... Upper surface, 20b ... Lower surface, 20c ... Outer peripheral surface 22 ... Upper first retainer plate, 22a ... Perimeter, 22b ... Top 24 ... Lower first retainer plate, 24a ... Perimeter, 24b ... Top 26 ... Upper first 2 retainer plates, 26a ... peripheral edge, 26b ... top 28 ... lower second retainer plate, 28a ... peripheral edge, 28b ... top 38 ... concave portion of lower rubber member, 38a ... bottom 40 ... lower rubber member Of the upper rubber member, 44a ... the bottom 46 ... the crest of the upper rubber member X ... the axial direction, Y ... the axis perpendicular direction, Y1 ... the axis perpendicular direction, Y2 ... the axis perpendicular direction M ... Up and down A straight line connecting the top portions of the peripheral edge portion of the linear N ... and below the second retainer plate connecting the top portions of the periphery of one retainer plate

Claims (3)

車両のサスペンション機構におけるショックアブソーバのピストンロッドを車体に対して弾性的に結合するための防振装置であって、
前記ピストンロッドが貫通する開口部を備える車体側部材と、
前記車体側部材の上下に相対して前記開口部と同軸的に配された上下一対の環状のゴム部材と、
前記下側のゴム部材の上面と下面にそれぞれ配されて両者の間で前記下側のゴム部材を軸方向に圧縮した状態に保持する上下一対の環状の第1リテーナプレートと、を備え、
前記上下の第1リテーナプレートは、両者の周縁部が互いに軸方向に近づく方向に断面山形に湾曲形成され、
前記下側のゴム部材の外周面が、軸方向中央部において軸直角方向内側に向かって湾曲状に陥没する凹部と、該凹部の軸方向両側において軸直角方向外側に向かって湾曲状に膨出する上下一対の山部とからなり、
前記凹部の底が、軸方向に沿う断面において、リバウンド側最大負荷時には前記上下の第1リテーナプレートの前記周縁部の頂部同士を結ぶ直線上か又は該直線よりも軸直角方向内側に位置し、バウンド側最大負荷時には前記直線よりも軸直角方向外側に位置する
ことを特徴とする防振装置。
A vibration isolator for elastically coupling a piston rod of a shock absorber in a vehicle suspension mechanism to a vehicle body,
A vehicle body side member having an opening through which the piston rod penetrates;
A pair of upper and lower annular rubber members disposed coaxially with the opening relative to the upper and lower sides of the vehicle body side member;
A pair of upper and lower annular first retainer plates disposed on the upper surface and the lower surface of the lower rubber member and holding the lower rubber member in an axially compressed state between the two,
The upper and lower first retainer plates are curved and formed in a cross-sectional mountain shape in the direction in which the peripheral portions of both are closer to each other in the axial direction,
The outer peripheral surface of the lower rubber member bulges in a concave shape recessed inward in the axially perpendicular direction at the axially central portion, and curved outwardly in the axially perpendicular direction on both sides in the axial direction. It consists of a pair of upper and lower mountain parts that
In the cross section along the axial direction, the bottom of the concave portion is located on the straight line connecting the tops of the peripheral portions of the upper and lower first retainer plates at the time of rebound side maximum load or on the inner side perpendicular to the axis from the straight line, The anti-vibration device is located on the outer side in the direction perpendicular to the axis from the straight line at the maximum load on the bound side.
前記上側のゴム部材の上面と下面にそれぞれ配されて両者の間で前記上側のゴム部材を軸方向に圧縮した状態に保持する上下一対の環状の第2リテーナプレートを備え、
前記上下の第2リテーナプレートは、両者の周縁部が互いに軸方向に近づく方向に断面山形に湾曲形成され、
前記上側のゴム部材の外周面が、軸方向中央部において軸直角方向内側に向かって湾曲状に陥没する凹部と、該凹部の軸方向両側において軸直角方向外側に向かって湾曲状に膨出する上下一対の山部とからなり、
前記上側のゴム部材の前記凹部の底が、軸方向に沿う断面において、バウンド側最大負荷時には前記上下の第2リテーナプレートの前記周縁部の頂部同士を結ぶ直線上か又は該直線よりも軸直角方向内側に位置し、リバウンド側最大負荷時には前記直線よりも軸直角方向外側に位置する
ことを特徴とする請求項1記載の防振装置。
A pair of upper and lower annular retainer plates disposed on the upper and lower surfaces of the upper rubber member and holding the upper rubber member in an axially compressed state between the two;
The upper and lower second retainer plates are curved and formed in a cross-sectional mountain shape in the direction in which the peripheral portions of the two approach the axial direction.
The outer peripheral surface of the upper rubber member bulges in a curved shape recessed inward in the axially perpendicular direction at the axially central portion and outwardly in the axially perpendicular direction on both axial sides of the recessed part. It consists of a pair of upper and lower mountain parts,
In the cross section along the axial direction, the bottom of the concave portion of the upper rubber member is on a straight line connecting the tops of the peripheral portions of the upper and lower second retainer plates at the time of maximum load on the bounce side or perpendicular to the straight line. The vibration isolator according to claim 1, wherein the vibration isolator is located on an inner side in a direction and located on an outer side in a direction perpendicular to the axis with respect to the straight line when the rebound-side maximum load is applied.
車両のサスペンション機構におけるショックアブソーバのピストンロッドを車体に対して弾性的に結合するための防振装置であって、
前記ピストンロッドが貫通する開口部を備える車体側部材と、
前記車体側部材の上下に相対して前記開口部と同軸的に配された上下一対の環状のゴム部材と、
前記上側のゴム部材の上面と下面にそれぞれ配されて両者の間で前記上側のゴム部材を軸方向に圧縮した状態に保持する上下一対の環状の第2リテーナプレートと、を備え、
前記上下の第2リテーナプレートは、両者の周縁部が互いに軸方向に近づく方向に断面山形に湾曲形成され、
前記上側のゴム部材の外周面が、軸方向中央部において軸直角方向内側に向かって湾曲状に陥没する凹部と、該凹部の軸方向両側において軸直角方向外側に向かって湾曲状に膨出する上下一対の山部とからなり、
前記凹部の底が、軸方向に沿う断面において、バウンド側最大負荷時には前記上下の第2リテーナプレートの前記周縁部の頂部同士を結ぶ直線上か又は該直線よりも軸直角方向内側に位置し、リバウンド側最大負荷時には前記直線よりも軸直角方向外側に位置する
ことを特徴とする防振装置。
A vibration isolator for elastically coupling a piston rod of a shock absorber in a vehicle suspension mechanism to a vehicle body,
A vehicle body side member having an opening through which the piston rod penetrates;
A pair of upper and lower annular rubber members disposed coaxially with the opening relative to the upper and lower sides of the vehicle body side member;
A pair of upper and lower annular second retainer plates disposed on the upper and lower surfaces of the upper rubber member and holding the upper rubber member in an axially compressed state between the two,
The upper and lower second retainer plates are curved and formed in a cross-sectional mountain shape in the direction in which the peripheral portions of the two approach the axial direction.
The outer peripheral surface of the upper rubber member bulges in a curved shape recessed inward in the axially perpendicular direction at the axially central portion and outwardly in the axially perpendicular direction on both axial sides of the recessed part. It consists of a pair of upper and lower mountain parts,
In the cross section along the axial direction, the bottom of the concave portion is located on the straight line connecting the tops of the peripheral portions of the upper and lower second retainer plates at the bound side maximum load or on the inner side perpendicular to the straight line from the straight line, The anti-vibration device is located outside the straight line in the direction perpendicular to the axis when the rebound-side maximum load is applied.
JP2006254943A 2006-09-20 2006-09-20 Vibration isolator Expired - Fee Related JP4291347B2 (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2012035907A1 (en) * 2010-09-14 2012-03-22 本田技研工業株式会社 Damper mounting structure
JP2013228066A (en) * 2012-04-26 2013-11-07 Toyota Motor Corp Bush and suspension device having the same

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2012035907A1 (en) * 2010-09-14 2012-03-22 本田技研工業株式会社 Damper mounting structure
US8668213B2 (en) 2010-09-14 2014-03-11 Honda Motor Co., Ltd. Damper mounting structure
JP5521048B2 (en) * 2010-09-14 2014-06-11 本田技研工業株式会社 Damper mount structure
JP2013228066A (en) * 2012-04-26 2013-11-07 Toyota Motor Corp Bush and suspension device having the same

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