JP5178485B2 - Anti-vibration rubber bush - Google Patents

Anti-vibration rubber bush Download PDF

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JP5178485B2
JP5178485B2 JP2008313740A JP2008313740A JP5178485B2 JP 5178485 B2 JP5178485 B2 JP 5178485B2 JP 2008313740 A JP2008313740 A JP 2008313740A JP 2008313740 A JP2008313740 A JP 2008313740A JP 5178485 B2 JP5178485 B2 JP 5178485B2
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peripheral surface
outer cylinder
engaging
engagement
mating member
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JP2010138949A (en
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達哉 伊藤
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Sumitomo Riko Co Ltd
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16FSPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
    • F16F1/00Springs
    • F16F1/36Springs made of rubber or other material having high internal friction, e.g. thermoplastic elastomers
    • F16F1/38Springs made of rubber or other material having high internal friction, e.g. thermoplastic elastomers with a sleeve of elastic material between a rigid outer sleeve and a rigid inner sleeve or pin, i.e. bushing-type
    • F16F1/3863Springs made of rubber or other material having high internal friction, e.g. thermoplastic elastomers with a sleeve of elastic material between a rigid outer sleeve and a rigid inner sleeve or pin, i.e. bushing-type characterised by the rigid sleeves or pin, e.g. of non-circular cross-section
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16FSPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
    • F16F1/00Springs
    • F16F1/36Springs made of rubber or other material having high internal friction, e.g. thermoplastic elastomers
    • F16F1/38Springs made of rubber or other material having high internal friction, e.g. thermoplastic elastomers with a sleeve of elastic material between a rigid outer sleeve and a rigid inner sleeve or pin, i.e. bushing-type
    • F16F1/3842Method of assembly, production or treatment; Mounting thereof
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16FSPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
    • F16F2230/00Purpose; Design features
    • F16F2230/0041Locking; Fixing in position

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Manufacturing & Machinery (AREA)
  • Springs (AREA)

Description

この発明は防振ゴムブッシュに関し、詳しくは金属製の筒形の相手部材に対して圧入により組み付けられた後において、相手部材からの防振ゴムブッシュの抜けを防止するための技術手段に特徴を有するものに関する。   The present invention relates to an anti-vibration rubber bush, and more particularly to a technical means for preventing the anti-vibration rubber bush from coming off from the mating member after being assembled by press-fitting into a metal cylindrical mating member. It relates to what you have.

従来より、円筒状の剛性の外筒と内筒、及びそれら外筒と内筒とを弾性連結する状態に一体に加硫接着されたゴム弾性体とを有し、外筒の外周面において円形の内周面を有する筒形の金属製の相手部材に圧入にて組み付けられ、ゴム弾性体の弾性変形に基づいて防振作用する防振ゴムブッシュが自動車のトレーリングアームブッシュ,トルクロッドブッシュ等として広く用いられている。   Conventionally, it has a cylindrical rigid outer cylinder and an inner cylinder, and a rubber elastic body integrally vulcanized and bonded to elastically connect the outer cylinder and the inner cylinder, and is circular on the outer peripheral surface of the outer cylinder. Anti-vibration rubber bushes that are assembled by press-fitting into a cylindrical metal mating member having an inner peripheral surface, and that act as anti-vibration action based on elastic deformation of the rubber elastic body. Is widely used.

従来において、この防振ゴムブッシュにおける外筒は金属製とされており、防振ゴムブッシュを、その金属製の外筒の外周面において所定の締代で相手部材に圧入すると、外筒の外周面と相手部材の内周面との間に発生する強い摩擦力に基づいて、防振ゴムブッシュが相手部材から良好に抜け防止及び回転防止される。   Conventionally, the outer cylinder of the anti-vibration rubber bush is made of metal, and when the anti-vibration rubber bush is press-fitted into the mating member with a predetermined tightening at the outer peripheral surface of the metal outer cylinder, the outer circumference of the outer cylinder Based on the strong frictional force generated between the surface and the inner peripheral surface of the mating member, the anti-vibration rubber bush is prevented from coming off from the mating member and prevented from rotating.

ところで、近年防振ゴムブッシュの軽量化を目的として、外筒を樹脂化することが検討されており、この場合、単に防振ゴムブッシュの外筒を相手部材に圧入し組み付けただけであると、即ち樹脂製の外筒の外周面と相手部材の内周面との間の摩擦力だけで防振ゴムブッシュを相手部材に固定しただけであると、初期には所定の締代をもって圧入したとしても、樹脂製の外筒がその後経時変化して弾性復元力が低下したとき、固定力が弱くなって防振ゴムブッシュが相手部材に対し位置ずれを生じたり或いは抜け易くなってしまう。   By the way, in recent years, for the purpose of reducing the weight of the vibration isolating rubber bush, it has been studied to make the outer cylinder resin. In this case, the outer cylinder of the vibration isolating rubber bush is simply press-fitted into the mating member and assembled. That is, when the anti-vibration rubber bush is simply fixed to the mating member only by the frictional force between the outer peripheral surface of the resin outer cylinder and the inner peripheral surface of the mating member, it was initially press-fitted with a predetermined tightening allowance. However, when the resin outer cylinder changes with time and the elastic restoring force is lowered, the fixing force is weakened, and the vibration isolating rubber bush is likely to be displaced with respect to the mating member or easily detached.

この問題の対策の一例が、下記特許文献1に開示されている。
図10はその具体例を示している。
同図において200は防振ゴムブッシュで、円筒状をなす樹脂製の外筒202と、金属製の内筒204と、それら外筒202及び内筒204を弾性連結する状態に一体に加硫接着されたゴム弾性体206とを有している。
An example of a countermeasure for this problem is disclosed in Patent Document 1 below.
FIG. 10 shows a specific example thereof.
In the figure, reference numeral 200 denotes a vibration isolating rubber bush, which is a resin-made outer cylinder 202 having a cylindrical shape, a metal inner cylinder 204, and the outer cylinder 202 and the inner cylinder 204 are integrally vulcanized and bonded to each other. The rubber elastic body 206 is provided.

208は、円形の内周面を有する金属製の筒形をなす相手部材で、防振ゴムブッシュ200は、外筒202の外周面においてこの相手部材208の内部に軸方向に圧入されて嵌合状態に保持される。
樹脂製の外筒202は、軸方向の一端側(図中下端側)に環状をなす鍔部210を有しており、その鍔部210の相手部材208の軸端面への当接によって、図10中上方向への防振ゴムブッシュ200の抜けが防止される。
Reference numeral 208 denotes a mating member made of a metal cylinder having a circular inner peripheral surface. The anti-vibration rubber bush 200 is press-fitted in the axial direction into the mating member 208 on the outer peripheral surface of the outer cylinder 202 and is fitted. Kept in a state.
The resin-made outer cylinder 202 has an annular flange 210 on one end side in the axial direction (lower end side in the figure), and the contact of the flange 210 with the shaft end surface of the mating member 208 causes the 10 is prevented from coming off in the upward direction.

外筒202はまた、これとは反対側の軸方向他端側且つ相手部材208から軸方向に突き出した部分に、互いに逆方向に傾斜する傾斜面214,216を備えた、部分的に厚肉の係合部(抜止部)218を有しており、防振ゴムブッシュ200を相手部材208に圧入した後において、この係合部218を相手部材208の軸端面、詳しくは鍔部210とは反対側の軸端面に係合させることによって、防振ゴムブッシュ200を相手部材208から図10中下方向に抜け防止する。   The outer cylinder 202 is also provided with inclined surfaces 214 and 216 which are inclined in opposite directions to each other at the other axial end opposite to the outer cylinder 202 and projecting from the mating member 208 in the axial direction. After the vibration-proof rubber bush 200 is press-fitted into the mating member 208, the engaging portion 218 is the shaft end surface of the mating member 208, specifically the flange 210. The anti-vibration rubber bush 200 is prevented from coming off from the mating member 208 in the downward direction in FIG.

しかしながらこの特許文献1に開示のものは、相手部材208に対する防振ゴムブッシュ200の回止めが特になされておらず、相手部材208に対して圧入された防振ゴムブッシュ200の樹脂製の外筒202の弾性復元力が応力緩和により低下したとき、かかる防振ゴムブッシュ200が相手部材208に対して相対回転してしまう恐れが生ずる。   However, in the device disclosed in Patent Document 1, the anti-vibration rubber bushing 200 is not specifically stopped with respect to the mating member 208, and the resin outer cylinder of the anti-vibration rubber bushing 200 press-fitted into the mating member 208 is used. When the elastic restoring force of 202 decreases due to stress relaxation, there is a risk that the vibration isolating rubber bush 200 rotates relative to the counterpart member 208.

また図10に示す防振ゴムブッシュ200の場合、外筒202の一部、詳しくは係合部218の部分が、相手部材208から軸方向に突き出して外部に露出し、外気にさらされていることから劣化を生じ易い問題の他、相手部材208から突き出して露出した部分に飛び石等が当ったりして割れを生じ易い問題がある。
更にこの防振ゴムブッシュ200の場合、必然的にその軸方向長が相手部材208よりも長くなければならず、形状的な制約を受ける問題がある。
In the case of the anti-vibration rubber bush 200 shown in FIG. 10, a part of the outer cylinder 202, specifically the engaging part 218, protrudes from the mating member 208 in the axial direction and is exposed to the outside and exposed to the outside air. Therefore, in addition to the problem of being easily deteriorated, there is a problem that a stepping stone or the like protrudes from the mating member 208 and hits a stepping stone or the like to cause a crack.
Furthermore, in the case of the vibration-insulating rubber bush 200, the axial length must inevitably be longer than that of the counterpart member 208, and there is a problem that the shape is restricted.

他方、下記特許文献2には、外筒の外周面に突起を設け、この突起を相手部材の内周面に設けた対応する凹部に係合させて、防振ゴムブッシュを相手部材から抜け防止するようになした点が開示されている。   On the other hand, in Patent Document 2 below, a protrusion is provided on the outer peripheral surface of the outer cylinder, and this protrusion is engaged with a corresponding recess provided on the inner peripheral surface of the counterpart member to prevent the vibration isolating rubber bush from coming off the counterpart member. The point made to do is disclosed.

しかしながらこの特許文献2に開示のものは、外筒を軸直角方向に2分割した分割形式のもので、外筒の突起と相手部材の凹部との係合力は、外筒の弾性復元力ではなくゴム弾性体による弾性復元力にて得られるもので本発明とは異なっており、更にこの特許文献2には外筒の材質についての記載はなく、本発明とは別異のものである。   However, the one disclosed in Patent Document 2 is a divided type in which the outer cylinder is divided into two in the direction perpendicular to the axis, and the engagement force between the projection of the outer cylinder and the recess of the mating member is not the elastic restoring force of the outer cylinder. This is obtained by an elastic restoring force by a rubber elastic body, which is different from the present invention. Further, this Patent Document 2 does not describe the material of the outer cylinder and is different from the present invention.

その他、下記特許文献3には樹脂製の外筒に凹部を設け、防振ゴムブッシュを相手部材に圧入した後において、相手部材をその凹部に対応する位置において径方向内方に突出変形させ、その突出部と外筒の凹部とを係合させることによって、防振ゴムブッシュを抜け防止するようになした点が開示されている。
しかしながらこの特許文献3に開示のものは、相手部材側の突出部が防振ゴムブッシュの圧入前に予め形成されているものではなく、これもまた本発明とは別異のものである。
In addition, in Patent Document 3 below, a recess is formed in a resin outer cylinder, and after the vibration-proof rubber bush is press-fitted into the mating member, the mating member is protruded and deformed radially inward at a position corresponding to the recess, It is disclosed that the anti-vibration rubber bushing is prevented from coming off by engaging the protruding portion with the concave portion of the outer cylinder.
However, in the device disclosed in Patent Document 3, the protrusion on the counterpart member side is not formed in advance before the vibration-insulating rubber bush is press-fitted, and this is also different from the present invention.

更に下記特許文献4には、相手部材の内周面に凹陥部を設けて、その凹陥部の形成により相手部材の内周面に段付部を形成し、防振ゴムブッシュの樹脂製の外筒を相手部材に圧入することで、外筒を弾性復元力で相手部材の外周面の形状に倣った段付形状となし、そのことによって防振ゴムブッシュを相手部材から抜け防止するようになした点が開示されている。
しかしながらこの場合、相手部材に対する加工が面倒となって、このことがコストを高める要因となる。
Further, in Patent Document 4 below, a concave portion is provided on the inner peripheral surface of the mating member, and a stepped portion is formed on the inner peripheral surface of the mating member by forming the concave portion. By press-fitting the cylinder into the mating member, the outer cylinder has a stepped shape that follows the shape of the outer peripheral surface of the mating member with elastic restoring force, thereby preventing the vibration isolating rubber bush from coming off the mating member. This point is disclosed.
However, in this case, the processing for the mating member becomes troublesome, and this becomes a factor for increasing the cost.

実開平5−77637号公報Japanese Utility Model Publication No. 5-77737 実開昭56−168403号公報Japanese Utility Model Publication No. 56-168403 特開平3−89036号公報JP-A-3-89036 特開2004−176803号公報JP 2004-176803 A

本発明は以上のような事情を背景とし、樹脂製の外筒を有する防振ゴムブッシュを金属製の相手部材に容易に圧入し得て、しかも圧入後においては防振ゴムブッシュを相手部材に対し軸方向にもまた回転方向にも強固に固定状態となし得て、防振ゴムブッシュの有する本来の防振機能を十分に発揮させることのできる防振ゴムブッシュを安価に提供することを目的としてなされたものである。   In the present invention, against the background as described above, a vibration isolating rubber bush having a resin outer cylinder can be easily press-fitted into a metal mating member, and after the press fitting, the vibration isolating rubber bush is used as a mating member. On the other hand, it is an object to provide an anti-vibration rubber bush that can be firmly fixed in the axial direction as well as in the rotational direction and that can sufficiently exhibit the original anti-vibration function of the anti-vibration rubber bush. It was made as.

而して請求項1のものは、円筒状の樹脂製の外筒と、剛性の内筒と、それら外筒と内筒とを弾性連結する状態に一体に加硫接着されたゴム弾性体とを有し、該外筒の外周面において横断面が円形の内周面を有する筒形の金属製の相手部材に軸方向に圧入されて組み付けられる防振ゴムブッシュであって、前記外筒には、軸方向両端間の中間部において該外筒の外周面から突出する少なくとも一対の係合突部が設けられており、該係合突部は、前記筒形の相手部材の内周面に該係合突部に対応した数及び平面形状で設けられた係合凹部に係入して軸方向と回転方向とのそれぞれに位置固定状態に係合するものとなしてあり、更に該係合突部は、突出側の先端が前記係合凹部よりも幅が小さく、基端が該係合凹部よりも幅が大きくなっていて、該係合突部の外周面が該先端から該基端に向って漸次幅が大きくなる形状をなしており、該係合突部の該係合凹部への係入時に、該外周面が該係合凹部における前記相手部材の内周面側の角部に対し、前記外筒の弾性復元力に基づいて全周に亘り接触し押圧されるものとなしてあることを特徴とする。 Thus, according to the first aspect of the present invention, there is provided a cylindrical resin outer cylinder, a rigid inner cylinder, and a rubber elastic body integrally vulcanized and bonded to elastically connect the outer cylinder and the inner cylinder. An anti-vibration rubber bush that is axially press-fitted and assembled to a cylindrical metallic member having an inner peripheral surface with a circular cross section on the outer peripheral surface of the outer cylinder, Is provided with at least a pair of engaging protrusions protruding from the outer peripheral surface of the outer cylinder at an intermediate portion between both ends in the axial direction, and the engaging protrusions are formed on the inner peripheral surface of the cylindrical mating member. The engagement protrusions are engaged with engagement recesses provided in a number and a planar shape corresponding to the engagement protrusions, and are engaged in a fixed position in both the axial direction and the rotation direction. protrusion has a smaller width than the tip the engaging recess of the projecting side, the proximal end is not larger width than the engagement recess, the The outer peripheral surface of the engagement protrusion toward the base end from the tip and a shape gradually width increases, the engagement Nyutoki to engaging recesses of the engaging projections, the outer peripheral surface engagement The corner of the concave portion on the inner peripheral surface side of the mating member is contacted and pressed over the entire circumference based on the elastic restoring force of the outer cylinder.

請求項2のものは、請求項1において、前記係合突部の平面視の形状が円形であることを特徴とする。 According to a second aspect of the present invention, in the first aspect, the shape of the engagement protrusion is a circular shape .

請求項3のものは、請求項1,2の何れかにおいて、前記係合突部の前記外周面が前記相手部材の内周側の角部を食い込ませるものとなしてあることを特徴とする。   A third aspect of the present invention is characterized in that, in any one of the first and second aspects, the outer peripheral surface of the engaging protrusion bites into an inner peripheral corner of the mating member. .

請求項4のものは、請求項1〜3の何れかにおいて、前記外筒の外周面には、前記係合突部を環状に取り囲む窪み部が該外筒の内周面方向に凹陥する形状で設けてあることを特徴とする。 According to a fourth aspect of the present invention, in any one of the first to third aspects, on the outer peripheral surface of the outer cylinder, a hollow portion that annularly surrounds the engagement protrusion is recessed in the inner peripheral surface direction of the outer cylinder. It is characterized by being provided.

発明の作用・効果Effects and effects of the invention

本発明では、樹脂製の外筒の外周面において防振ゴムブッシュを金属製の筒形の相手部材の内周面に軸方向に圧入する際(外筒の外径は相手部材の内径に対して弾性嵌合するようにその外径を相手部材の内径よりも大としておく)、外周面から径方向外方に突出した係合突部が外筒の弾性変形を伴って相手部材に対し内周面側に乗り上がり、そして相手部材の対応する係合凹部の位置に到ったところで、係合突部が係合凹部に係入し(嵌り込み)、そこで係合凹部に対して軸方向及び回転方向に係合して樹脂製の外筒、つまり防振ゴムブッシュを相手部材に対して軸方向にも、また回転方向にも固定状態とする。   In the present invention, when an anti-vibration rubber bush is axially press-fitted into the inner peripheral surface of a metal cylindrical mating member on the outer peripheral surface of the resin outer cylinder (the outer diameter of the outer cylinder is smaller than the inner diameter of the mating member). The outer diameter of the mating member is larger than the inner diameter of the mating member), and the engaging projection protruding radially outward from the outer peripheral surface is inward of the mating member with elastic deformation of the outer cylinder. When it reaches the peripheral surface side and reaches the position of the corresponding engagement recess of the mating member, the engagement protrusion engages (inserts) into the engagement recess, and there is an axial direction with respect to the engagement recess Then, the resin outer cylinder, that is, the anti-vibration rubber bush is fixed in the axial direction and the rotational direction with respect to the mating member by engaging in the rotational direction.

本発明は、上記の係合突部を、突出側の先端を係合凹部よりも幅を小さく、基端を係合凹部よりも幅を大きくして、係合突部の外周面を先端から基端に向かって漸次幅が大きくなる形状となし、そして係合突部の係合凹部への係入時に、その外周面を、係合凹部における相手部材の内周面側の角部に対し、樹脂製の外筒の弾性復元力に基づいて全周に亘り接触させ、押圧するようになした点を特徴としている。 According to the present invention, the engaging protrusion is configured such that the distal end of the protruding side is smaller in width than the engaging recess , the base end is wider than the engaging recess, and the outer peripheral surface of the engaging protrusion is extended from the tip. The shape is such that the width gradually increases toward the base end, and when the engaging protrusion is engaged with the engaging recess, its outer peripheral surface is set to the corner on the inner peripheral surface side of the mating member in the engaging recess. Based on the elastic restoring force of the resin outer cylinder, it is characterized in that it is brought into contact with the entire circumference and pressed.

係合突部を基端と先端とが同径、即ち基端と先端とが平面視において同寸法をなし、係合突部の外周面が基端から先端に向けて外筒の外周面から軸直角方向に直立状態に起立する形状の面となし、係合突部を基端から先端に到るまで全体に亘って係合凹部に係入させるようになした場合、係合突部を係合凹部に確実に係入させるために、係合凹部の大きさを係合突部のそれよりも一定寸法大きくせざるを得ない(そのようにしないと係合突部が係合凹部に係入できない場合が生ずる)。   The proximal end and the distal end of the engaging protrusion have the same diameter, that is, the proximal end and the distal end have the same dimension in plan view, and the outer peripheral surface of the engaging protrusion is from the outer peripheral surface of the outer cylinder toward the distal end. When the surface is formed in an upright state in a direction perpendicular to the axis, and the engaging protrusion is engaged with the engaging recess from the base end to the distal end, the engaging protrusion is In order to securely engage the engaging recess, the size of the engaging recess must be made a certain size larger than that of the engaging protrusion (otherwise, the engaging protrusion will become the engaging recess). In some cases, it is impossible to enroll.

しかしながらこの場合、係合突部と係合凹部との間、詳しくは係合突部の外周面と係合凹部の内周面との間に、軸方向及び回転方向に微小な隙間が生じるのを避け得ず、そしてその隙間によって、外筒が相手部材に対しがたつきを生じたり或いは位置ずれを生じたりしてしまう。   However, in this case, a minute gap is generated in the axial direction and the rotational direction between the engaging protrusion and the engaging recess, specifically between the outer peripheral surface of the engaging protrusion and the inner peripheral surface of the engaging recess. Inevitably, the gap may cause rattling or misalignment of the outer member with respect to the mating member.

しかるに本発明では係合突部の基端を係合凹部に対して幅を大きくし、そして係合突部の外周面を先端から基端に向けて漸次幅が大きくなる形状となしてあって、係合突部を係合凹部に係入させたときに、外周面の何れかの部位(先端から基端に到る何れかの部位)を係合凹部の内周面の角部に押圧状態に接触させるようになしてあるため、係合突部及び係合凹部に形状,寸法の多少の誤差が生じていても、また係合突部と係合凹部との位置関係に多少の誤差が生じていても、外周面の何れかの部位を確実に係合凹部の内周側の角部に全周に亘り隙間無く押圧状態に接触させることができる。
そしてそのことによって、防振ゴムブッシュを相手部材に対し軸方向にもまた回転方向にも厳格に固定状態となすことができる利点を有している。
However, in the present invention, the base end of the engagement protrusion is made wider with respect to the engagement recess, and the outer peripheral surface of the engagement protrusion is gradually increased from the tip toward the base end. When the engaging protrusion is engaged with the engaging recess, any part of the outer peripheral surface (any part from the tip to the base end) is pressed against the corner of the inner peripheral surface of the engaging recess. Since there is a slight error in the shape and dimensions of the engaging protrusion and the engaging recess, and the positional relationship between the engaging protrusion and the engaging recess is slightly different. Even if this occurs, any portion of the outer peripheral surface can be reliably brought into contact with the corner portion on the inner peripheral side of the engaging recess in a pressed state over the entire periphery.
As a result, the vibration-insulating rubber bush has an advantage that it can be strictly fixed to the mating member both in the axial direction and in the rotational direction.

加えて係合突部の外周面を上記の形状の面となしてあることによって、防振ゴムブッシュの外筒を相手部材に軸方向に圧入する際、係合突部の外周面を圧入ガイド面として働かせることができ、防振ゴムブッシュを円滑に相手部材に対して圧入することが可能となる。
この係合突部の外周面はまた、かかる係合突部を相手部材の係合凹部に係入させるに際してもガイド面として働き、係合突部を係合凹部に対し円滑に係入させることができる。
In addition, since the outer peripheral surface of the engaging protrusion is a surface having the above-described shape, when the outer cylinder of the vibration-proof rubber bush is pressed into the mating member in the axial direction, the outer peripheral surface of the engaging protrusion is pressed into It can be used as a surface, and the vibration-insulating rubber bush can be smoothly pressed into the mating member.
The outer peripheral surface of the engagement protrusion also serves as a guide surface when engaging the engagement protrusion with the engagement recess of the counterpart member, and smoothly engages the engagement protrusion with the engagement recess. Can do.

本発明ではまた、係合突部が、樹脂製の外筒の両端間の中間部に設けられていて、この係合突部が相手部材の係合凹部に係合するものとされているため、図10に示した従来の防振ゴムブッシュのように、樹脂製の外筒が相手部材から軸方向に長く突き出してしまうことによる上記の問題を解決することができる。   In the present invention, the engaging protrusion is provided at an intermediate portion between both ends of the resin-made outer cylinder, and the engaging protrusion is engaged with the engaging recess of the counterpart member. As in the conventional vibration-proof rubber bush shown in FIG. 10, the above-mentioned problem due to the resin-made outer cylinder protruding in the axial direction from the mating member can be solved.

また係合突部及び係合凹部は、それぞれが防振ゴムブッシュの圧入前に樹脂製の外筒,相手部材に予め設けられており、従って単に防振ゴムブッシュを相手部材に圧入するだけで、係合突部と係合凹部とを係合状態とすることができる。
従って特許文献3に開示のもののように、防振ゴムブッシュの圧入後において、相手部材の一部を径方向内方に突出させるような加工を必要としない。
また相手部材の内面形状を複雑な形状に予め加工形成しておかなくてもよいので、防振ゴムブッシュと相手部材とを含む全体の防振装置を安価に構成することができる。
In addition, the engaging protrusion and the engaging recess are respectively provided in advance on the resin outer cylinder and the mating member before press-fitting the vibration isolating rubber bush. Therefore, simply press-fitting the vibration isolating rubber bush into the mating member. The engaging protrusion and the engaging recess can be brought into an engaged state.
Therefore, unlike the one disclosed in Patent Document 3, it is not necessary to perform a process of projecting a part of the mating member radially inward after the anti-vibration rubber bushing is press-fitted.
In addition, since the inner shape of the counterpart member does not have to be processed and formed into a complicated shape in advance, the entire vibration isolator including the anti-vibration rubber bush and the counterpart member can be configured at low cost.

本発明では、上記係合突部の形状(平面視の形状)を4角形状等の多角形状その他の形状となしておくことができるが、請求項2に従って係合突部の形状を円形状となしておくことが望ましい。
このようにしておくことで、防振ゴムブッシュを相手部材に対して軸方向,回転方向のみならず、係合突部に対する平面視においてその他の全ての方向に厳格に位置決状態に固定でき、全ての方向にがたつきを無くすことができる。
In the present invention, the shape of the engaging protrusion (the shape in plan view) can be a polygonal shape such as a quadrangular shape or other shapes, but the shape of the engaging protrusion is circular according to claim 2. It is desirable to keep
By doing in this way, it is possible to fix the vibration isolating rubber bush in a strictly positioned state not only in the axial direction and the rotational direction with respect to the counterpart member, but also in all other directions in a plan view with respect to the engaging protrusion, Shaking in all directions can be eliminated.

本発明においては、係合突部の外周面のうち係合凹部の内周側の角部に接触し押圧された部分は、そこに角部を食い込ませ、その押圧力の継続的な作用の下で、その角部に倣った形状に形状変化するものとなしておくことができる(請求項3)。
ここで上記係合突部の外周面は湾曲形状その他の形状となしておくこともできるが、かかる外周面をテーパ形状の面となしておくのが好適である。
In the present invention, the portion of the outer peripheral surface of the engaging projection that is in contact with and pressed against the corner portion on the inner peripheral side of the engaging recess bites into the corner portion, and the continuous action of the pressing force is The shape can be changed to a shape that follows the corner portion (claim 3).
Here, the outer peripheral surface of the engaging protrusion can be a curved shape or other shapes, but it is preferable that the outer peripheral surface is a tapered surface.

次に請求項4は、外筒の外周面に、上記係合突部を取り囲む環状の窪み部を径方向内方(外筒の内周面方向)に凹陥する形状で設けたものである。
この窪み部は主として次のような2つの意味を有している。
樹脂製の外筒を相手部材に圧入する際、係合突部には応力が加わる。このとき係合突部を取り囲むように強度的な弱点部となる窪み部を設けておくことで、係合突部の局部的な変形を助長し、以てその応力を窪み部へと逃し、係合突部に加わる力を緩和することができる。
またそのことによって、係合突部を相手部材に対し内周側に乗り上げ易くすることができる。即ち相手部材への防振ゴムブッシュの圧入性を高めることができる。
According to a fourth aspect of the present invention, an annular recess surrounding the engaging protrusion is provided on the outer peripheral surface of the outer cylinder in a shape that is recessed radially inward (inner peripheral surface direction of the outer cylinder) .
This recess has mainly the following two meanings.
When the resin outer cylinder is press-fitted into the mating member, stress is applied to the engaging protrusion. At this time, by providing a recess that becomes a weak point of strength so as to surround the engagement protrusion, it promotes local deformation of the engagement protrusion, and thereby releases the stress to the recess, The force applied to the engaging protrusion can be reduced.
Moreover, it can make it easy to ride an engagement protrusion on an inner peripheral side with respect to the other member. That is, the press-fit property of the vibration-proof rubber bush to the mating member can be improved.

また係合突部の外周面の一部を係合凹部の内周側の角部に押圧状態で接触させる際においても、その角部から係合突部に対して、詳しくは外周面に対して大きな応力が加わる。
このときにもその窪み部に向けて係合突部の外周部分の変形を助長することができ、これにより係合凹部の角部から加わる力を緩和することができる。
更に係合突部の外周部分の肉を、その窪み部に逃がすことによって、請求項3に従い外周面の形状を角部の形状に倣った形状に変形させる際に、これを助長することができる。
Further, when a part of the outer peripheral surface of the engaging protrusion is brought into contact with the inner peripheral corner of the engaging recess in a pressed state, the corner protrudes from the engaging protrusion, and more specifically to the outer peripheral surface. Large stress is applied.
At this time as well, the deformation of the outer peripheral portion of the engaging protrusion can be promoted toward the recess, whereby the force applied from the corner of the engaging recess can be reduced.
Furthermore, by letting the flesh of the outer peripheral part of the engaging projection to escape to the hollow part, it is possible to promote this when the shape of the outer peripheral surface is deformed to the shape following the shape of the corner according to claim 3. .

次に本発明を車両のリヤのトレーリングアームブッシュとしての防振ゴムブッシュに適用した場合の実施形態を図面に基づいて以下に詳しく説明する。
図1〜図4において、10は本実施形態の防振ゴムブッシュで、円筒状をなす外筒12と、同じく円筒状をなす内筒14と、それら外筒12及び内筒14を弾性連結する状態に一体に加硫接着されたゴム弾性体16とを有している。
内筒14は金属製、ここではアルミニウム合金の押出材にて構成されており、周方向に沿って軸方向に貫通の複数の空所18が形成されている。
Next, an embodiment in which the present invention is applied to an anti-vibration rubber bush as a rear trailing arm bush of a vehicle will be described in detail with reference to the drawings.
1 to 4, reference numeral 10 denotes an anti-vibration rubber bush according to the present embodiment, and a cylindrical outer cylinder 12, a cylindrical inner cylinder 14, and the outer cylinder 12 and the inner cylinder 14 are elastically connected to each other. The rubber elastic body 16 is integrally vulcanized and bonded to the state.
The inner cylinder 14 is made of a metal, here, an aluminum alloy extruded material, and has a plurality of voids 18 penetrating in the axial direction along the circumferential direction.

一方外筒12は硬質樹脂にて構成された樹脂製のものである。ここではその樹脂としてポリアミド66樹脂が用いられている。このポリアミド66樹脂には、補強材としてのガラス繊維がポリマーベースで33質量%含有されている。
但し他の材質の樹脂にて外筒12を構成することも可能である。
この外筒12には、軸方向一端側(図3中右端側)に、径方向外方に張り出した周方向に円環状をなす鍔部20が一体に成形されている。
On the other hand, the outer cylinder 12 is made of a resin made of a hard resin. Here, polyamide 66 resin is used as the resin. This polyamide 66 resin contains 33% by mass of glass fiber as a reinforcing material on a polymer basis.
However, the outer cylinder 12 can be made of resin of other materials.
The outer cylinder 12 is integrally formed with a flange 20 that is annular in the circumferential direction and projects outward in the radial direction on one axial end (right end in FIG. 3).

ゴム弾性体16もまた軸周りに円筒状をなしているが、この実施形態ではこのゴム弾性体16には、図2,図4に示しているように軸直角方向において内筒14を間にして互いに対向する状態で、軸方向に貫通した形態の一対のすぐり部22が設けられている。
詳しくは、周方向に180°隔たった位置の2個所にすぐり部22が設けられている。
尚ゴム弾性体16には、図3及び図4に示しているように外筒12における鍔部20に重なる状態で、ゴム鍔部24が設けられている。
The rubber elastic body 16 also has a cylindrical shape around the axis. In this embodiment, the rubber elastic body 16 has an inner cylinder 14 in the direction perpendicular to the axis as shown in FIGS. A pair of straight portions 22 are provided so as to penetrate in the axial direction in a state of facing each other.
Specifically, the straight portions 22 are provided at two positions that are 180 ° apart in the circumferential direction.
The rubber elastic body 16 is provided with a rubber collar 24 in a state where it overlaps with the collar 20 of the outer cylinder 12 as shown in FIGS. 3 and 4.

ここですぐり部22は、図2に示しているように周方向に円弧状に延びるスリット状部25と、このスリット状部25の両端で径方向内方と外方とにそれぞれ凹陥した形状をなす一対の端部26とを有している。
ここで一対のすぐり部22は、図2において上下対称形状をなしている。
またそれぞれのすぐり部22おいて、各端部26及びスリット状部25も図2において左右対称形状をなしている。
Here, the straight portion 22 has a slit-like portion 25 extending in a circular arc shape in the circumferential direction as shown in FIG. 2, and a shape in which the slit-like portion 25 is recessed inward and outward in the radial direction at both ends. And a pair of end portions 26 formed.
Here, the pair of straight portions 22 has a vertically symmetrical shape in FIG.
Further, in each of the straight portions 22, the end portions 26 and the slit-like portions 25 are also symmetrical in FIG.

ゴム弾性体16には、これらすぐり部22を間にして径方向に対向する内周側ゴムストッパ部28と、外周側ゴムストッパ30とが設けられている。
これら内周側ゴムストッパ部28と外周側ゴムストッパ部30とは、内筒14と外筒12とが図2において上下方向に相対変位したとき、それらの当接によるストッパ作用にて同方向の過大な相対変位を規制する。
The rubber elastic body 16 is provided with an inner peripheral rubber stopper portion 28 and an outer peripheral rubber stopper 30 which are opposed to each other in the radial direction with the straight portions 22 therebetween.
When the inner cylinder 14 and the outer cylinder 12 are relatively displaced in the vertical direction in FIG. 2, the inner peripheral rubber stopper 28 and the outer peripheral rubber stopper 30 are in the same direction due to the stopper action caused by their contact. Regulates excessive relative displacement.

32は、弾性変形によって本来の防振作用をなすゴム本体部で、防振ゴムブッシュ10は、一対のすぐり部22の対向方向と直交する軸直角方向において、外筒12と内筒14との間がこのゴム本体部32にて埋められており、同部分が中実部とされている。図中34はその中実部を表している。
尚図中Pは、そのすぐり部の対向方向を表しており、またPはこれと直交する軸直角方向を表している。
Reference numeral 32 denotes a rubber main body part that inherently performs vibration isolation by elastic deformation, and the vibration isolation rubber bush 10 is formed between the outer cylinder 12 and the inner cylinder 14 in a direction perpendicular to the axis perpendicular to the opposing direction of the pair of straight portions 22. The space is filled with the rubber main body portion 32, and the same portion is a solid portion. In the figure, 34 indicates the solid part.
Naozu in P 1 represents the opposite direction of the hollow portion, also P 2 represents the direction perpendicular to the axis orthogonal thereto.

樹脂製の外筒12には、軸方向両端間の中間部且つ上記のP方向、即ちすぐり部22の対向方向と直交する軸直角方向において、外筒12の外周面から突出する、平面形状が円形の一対の係合突部36が一体に設けられている。
詳しくは、周方向に180°隔たった位置の2個所において、一対の係合突部36が外筒12の外周面から起立する状態に設けられている。
これら一対の係合突部36は、防振ゴムブッシュ10を図5に示す相手部材38に圧入した後において、防振ゴムブッシュ10を相手部材38に対し軸方向にも、また回転方向にも強固に固定する働きをなすものである。
The outer cylinder 12 made of resin, the intermediate portion and the above P 2 direction between axially opposite ends, i.e. in the axis-perpendicular direction orthogonal to the opposing direction of the hollow portions 22, projecting from the outer peripheral surface of the outer cylinder 12, the planar shape A pair of circular engaging projections 36 are integrally provided.
Specifically, the pair of engaging protrusions 36 are provided to stand up from the outer peripheral surface of the outer cylinder 12 at two positions that are 180 ° apart in the circumferential direction.
The pair of engaging protrusions 36 are arranged so that the vibration isolating rubber bush 10 is axially or rotationally moved relative to the mating member 38 after the vibration isolating rubber bush 10 is press-fitted into the mating member 38 shown in FIG. It works to fix firmly.

相手部材38は、円形(横断面が円形)の内周面を有する金属製の円筒状のもので、図5に示しているようにこの相手部材38からはアーム40が延び出している。
相手部材38には、軸方向の中間部且つ周方向に180°隔たった位置の2個所に、円形且つ貫通の係合凹部42が設けられている。ここで係合凹部42は、相手部材38の溶接の際の位置決用としてもともと備えられているもので、内周面が軸直角方向に起立した面をなしている。
この実施形態では、これを防振ゴムブッシュ10における上記係合突部36の係合用の係合凹部42として利用している。
尚、外筒12はゴム弾性体16の加硫前の形状において、図7に示す外径D(D=φ71.9mm)が相手部材38の内径D(D=φ69mm)に対して略3mm(厳密には2.9mm)大径とされている。
The mating member 38 is a metal cylindrical member having a circular (cross section is circular) inner peripheral surface, and an arm 40 extends from the mating member 38 as shown in FIG.
The mating member 38 is provided with circular and penetrating engagement recesses 42 at two positions in the middle in the axial direction and at a position 180 ° apart in the circumferential direction. Here, the engaging recess 42 is originally provided for positioning when the mating member 38 is welded, and has an inner peripheral surface that stands upright in the direction perpendicular to the axis.
In this embodiment, this is used as an engagement recess 42 for engagement of the engagement protrusion 36 in the vibration isolating rubber bush 10.
The outer cylinder 12 has an outer diameter D 1 (D 1 = φ71.9 mm) shown in FIG. 7 with respect to the inner diameter D 0 (D 0 = φ69 mm) of the mating member 38 in the shape of the rubber elastic body 16 before vulcanization. The diameter is about 3 mm (strictly, 2.9 mm).

外筒12に設けられた上記の係合突部36は、図6に示すように平面形状が円形で、断面形状が図3に示しているように台形状をなしている。
詳しくは、係合突部36は突出側の先端と基端とがそれぞれ円形状をなしており、そしてその外周面が先端から基端に向けて漸次拡径するテーパ面44とされている。
そしてその先端面の直径dは相手部材38の係合凹部42の内径dに対して小径をなし、また基端の直径dは係合凹部42の内径dに対して大径をなしている。
The engagement protrusion 36 provided on the outer cylinder 12 has a circular planar shape as shown in FIG. 6 and a trapezoidal shape as shown in FIG.
Specifically, the engaging protrusion 36 has a circular tip at the protruding end and a base end, and an outer peripheral surface of the engaging protrusion 36 is a tapered surface 44 that gradually increases in diameter from the tip toward the base end.
The diameter d 1 of the distal end surface is smaller than the inner diameter d 0 of the engaging recess 42 of the mating member 38, and the diameter d 2 of the proximal end is larger than the inner diameter d 0 of the engaging recess 42. There is no.

外筒12の外周面にはまた、係合突部36を取り囲む円環状の窪み部46が径方向内方(外筒12の内周面方向)に凹陥する形状で設けられている。
尚この実施形態において、係合突部36の先端面の直径dは、係合凹部42の内径d=φ10.25mmに対してφ8mmであり、先端面の直径は係合凹部42に対して小径をなしている。
一方係合突部36の基端の直径d=φ11.5mmで、係合凹部42の内径dよりも大径をなしている。
とdとの差は2.25mmであり、またdとdとの差は1.25mmである。
ここで係合突部36の基端とは、係合突部36における外筒12の外周面と同じ径方向位置に位置している部位である。図3中のQはその基端を表している。
尚図3(B)において係合突部の突出高さh=1mmであり、窪み部46の深さh=0.5mmである。
An annular recess 46 surrounding the engaging protrusion 36 is also provided on the outer peripheral surface of the outer cylinder 12 so as to be recessed radially inward (in the inner peripheral surface direction of the outer cylinder 12) .
In this embodiment, the diameter d 1 of the front end surface of the engagement protrusion 36 is φ8 mm with respect to the inner diameter d 0 of the engagement recess 42 = φ10.25 mm, and the diameter of the front end surface is smaller than that of the engagement recess 42. It has a small diameter.
On the other hand, the diameter d 2 = φ11.5 mm of the base end of the engagement protrusion 36 is larger than the inner diameter d 0 of the engagement recess 42.
The difference between d 1 and d 0 is 2.25 mm, and the difference between d 2 and d 0 is 1.25 mm.
Here, the base end of the engaging protrusion 36 is a portion located at the same radial position as the outer peripheral surface of the outer cylinder 12 in the engaging protrusion 36. Q in FIG. 3 represents the base end.
In FIG. 3B, the protrusion height h 1 of the engaging protrusion is 1 mm, and the depth h 2 of the recess 46 is 0.5 mm.

図1及び図2に示しているように、外筒12の鍔部20には、周方向に180°隔たった位置の2個所に、外周端から径方向内方に向けてV字状且つ凹状の係合部48が一対設けられている。
これら係合部48は、図2に示しているようにP方向において互いに対向して位置している。
As shown in FIGS. 1 and 2, the flange portion 20 of the outer cylinder 12 has a V-shape and a concave shape at two positions 180 ° apart in the circumferential direction from the outer circumferential end toward the radially inward direction. A pair of engaging portions 48 are provided.
These engaging portions 48 are located opposite each other in the P 1 direction, as shown in FIG.

前述したように樹脂製の外筒12は、ゴム弾性体16の加硫成形前において、図7(A)に示しているようにP方向,P方向ともに直径Dの真円形状をなしている。
一方ゴム弾性体16を加硫成形した後においては、冷却によるゴム弾性体16の収縮によって、その形状が(B)に示しているように楕円形状化する。
As described above, before the rubber elastic body 16 is vulcanized, the resin outer cylinder 12 has a perfect circle shape with a diameter D 1 in both the P 1 direction and the P 2 direction as shown in FIG. 7A. There is no.
On the other hand, after the rubber elastic body 16 is vulcanized and molded, the shape of the rubber elastic body 16 becomes elliptical as shown in FIG.

詳しくは、図中P方向を短径方向、P方向を長径方向とする形状の楕円形状となる。
図7(B)に示しているように、外筒12の外周面の係合突部36は、そのP方向即ち短径方向において外筒12の外周面に位置している。
For more information, becomes the P 2 direction in the drawing an elliptical shape of the shape minor axis direction, the P 1 direction and major axis direction.
As the show FIG. 7 (B), the engaging projection 36 of the outer peripheral surface of the outer cylinder 12 is positioned on the outer peripheral surface of the outer cylinder 12 at its P 2 direction or minor axis direction.

このように外筒12が当初の真円形状から楕円形状化するのは、図中P方向においては外筒12の内側部分がゴム弾性体で埋まった中実部34をなしており、従ってP方向においてはゴム弾性体による内方への引張力が強く働くのに対して、P方向においては、すぐり部22の存在によって外筒12に対する径方向内方への引張力が相対的に小さいからで、その結果として外筒12が図7(B)に示すように楕円形状化する。 Thus the outer cylinder 12 is oval shaped from its original circular shape, in drawing P 2 direction is without a solid portion 34 which inner portion of the outer cylinder 12 is filled with rubber elastic body, thus whereas acts strongly pulling force inward by the rubber elastic body in the P 2 direction, in the P 1 direction, relative tensile force in the radially inward relative to the outer cylinder 12 by the presence of the hollow portion 22 As a result, the outer cylinder 12 becomes elliptical as shown in FIG.

本実施形態において、防振ゴムブッシュ10はこのように外筒12が楕円形状化した状態の下で、図5に示す相手部材38の内部に鍔部20とは反対側の端から軸方向に圧入される。
このとき、外筒12は軸端側から相手部材38に圧入されるにつれて、相手部材38の円形の内周面に倣った形状に形状復元し、その形状が漸次真円形状化して行く。
そして最終の圧入状態即ち組付状態で、相手部材38への圧入部分が全長に亘って真円形状となる。
In the present embodiment, the anti-vibration rubber bush 10 is formed in the axial direction from the end opposite to the flange portion 20 inside the mating member 38 shown in FIG. Press fit.
At this time, as the outer cylinder 12 is press-fitted into the mating member 38 from the shaft end side, the shape is restored to a shape that follows the circular inner peripheral surface of the mating member 38, and the shape gradually becomes a perfect circle.
Then, in the final press-fitted state, that is, the assembled state, the press-fitted portion to the mating member 38 has a perfect circle shape over the entire length.

その圧入の際、短径方向であるP方向に位置している一対の係合突部36は、相手部材38の軸端に当った後、相手部材38に対して内周側に乗り上がり、その後圧入とともに相手部材38の内周面を軸方向に移動して、相手部材38の係合凹部42の位置に到る。 During the press-fitting, a pair of engaging projection 36 which is located P 2 direction, which is the minor axis direction, after hitting the shaft end of the mating member 38, rides on the inner peripheral side of the mating member 38 Thereafter, the inner peripheral surface of the mating member 38 is moved in the axial direction together with the press-fitting, and reaches the position of the engaging recess 42 of the mating member 38.

この段階で一対の係合突部36は係合凹部42内部に係入し、係合凹部42に対して軸方向及び回転方向の両方向に係合した状態となる。
その際、図8(A)に示しているように係合突部36は、外周面のテーパ面44の一部が、係合凹部42の内周側の角部Kに全周に亘り接触し、且つ外筒12の弾性復元力に基づいて図中上方向に押圧される。
At this stage, the pair of engaging protrusions 36 is engaged with the engaging recess 42 and engaged with the engaging recess 42 in both the axial direction and the rotational direction.
At this time, as shown in FIG. 8 (A), the engaging protrusion 36 has a part of the tapered surface 44 on the outer peripheral surface in contact with the corner K on the inner peripheral side of the engaging recess 42 over the entire periphery. And is pressed upward in the figure based on the elastic restoring force of the outer cylinder 12.

即ちこのとき、係合突部36はテーパ面44が全周に亘って係合凹部42の角部Kに隙間無く接触し且つ押圧された状態となる。
その後、係合突部36はテーパ面44の部分で角部Kに倣った形状に変形し、最終的に図8(B)に示すようにその変形部分において、角部Kに全周に亘り密着状態に嵌合した状態となる。
That is, at this time, the engagement protrusion 36 is in a state where the tapered surface 44 is in contact with and pressed against the corner K of the engagement recess 42 over the entire circumference.
Thereafter, the engaging projection 36 is deformed into a shape following the corner K at the tapered surface 44, and finally, at the deformed portion as shown in FIG. It will be in the state fitted in the close contact state.

この実施形態において、係合突部36を取り巻くように環状に設けられた窪み部46は次のように作用する。
即ち強度的な弱点部となる窪み部46は、係合突部36が相手部材38の軸端に当って内周側に乗り上げる際、係合突部36に加わる応力を窪み部46へと逃すことによって、係合突部36を相手部材38の内周側に乗り上げ易くし、且つまた同時に係合突部36自体に加わる応力を小さくする。
In this embodiment, the recess 46 provided in an annular shape so as to surround the engaging protrusion 36 operates as follows.
That is, the recess 46, which is a strong weak point, allows the stress applied to the engagement protrusion 36 to escape to the recess 46 when the engagement protrusion 36 hits the shaft end of the mating member 38 and rides on the inner peripheral side. As a result, the engaging protrusion 36 can be easily ridden on the inner peripheral side of the mating member 38, and at the same time, the stress applied to the engaging protrusion 36 itself is reduced.

更に、係合突部36が相手部材38の係合凹部42内部に嵌り込んでテーパ面44が係合凹部42の角部Kに当ったとき(この時点では外筒12の外周面は、相手部材38の内周面から若干図8(A)中下向きに浮いた状態となる)、係合突部36のテーパ面44の部分の変形を助長し、テーパ面44の一部を角部Kに対して馴染み易くする。即ちこれに追従した形状に変形し易くする。
尚、係合突部36のテーパ面44が、角部Kに倣った形状に形状変化することで、外筒12の外周面は図8(B)に示しているように相手部材38の内周面に密着した状態となる。
Furthermore, when the engagement protrusion 36 is fitted into the engagement recess 42 of the counterpart member 38 and the tapered surface 44 hits the corner K of the engagement recess 42 (at this time, the outer peripheral surface of the outer cylinder 12 is 8 (A) slightly downward from the inner peripheral surface of the member 38), the deformation of the portion of the tapered surface 44 of the engaging projection 36 is promoted, and a portion of the tapered surface 44 is joined to the corner portion K. Make it easier to become familiar with. That is, it is easy to deform into a shape following this.
The tapered surface 44 of the engagement protrusion 36 changes in shape to follow the corner K, so that the outer peripheral surface of the outer cylinder 12 is the inner surface of the mating member 38 as shown in FIG. It will be in the state which adhered to the peripheral surface.

尚、外筒12の鍔部20に設けられた一対の係合部48は、防振ゴムブッシュ10を相手部材38に圧入する際に、これを目的とする回転方向位置に位置決めする働きをなす。
またこの係合部48は、ゴム弾性体16を加硫成形するに際して外筒12を成形型にセットする際、一対の係合突部36がゴム弾性体16におけるすぐり部22の対向方向であるP方向と直交方向に正しく位置するように、これを位置決めする働きをなす。
The pair of engaging portions 48 provided on the flange portion 20 of the outer cylinder 12 serves to position the vibration isolating rubber bush 10 at a target rotational direction position when press-fitting the vibration isolating rubber bush 10 into the mating member 38. .
In addition, when the outer cylinder 12 is set in a mold when the rubber elastic body 16 is vulcanized and formed, the pair of engaging protrusions 36 are opposed to the straight portion 22 of the rubber elastic body 16. as correctly positioned in P 1 direction and the orthogonal direction, forms serve to position it.

本実施形態では、一対の係合突部36が相手部材38の内周面側に乗り上げる際、防振ゴムブッシュ10の圧入に対し抵抗力が働く。また各係合突部36に対して荷重が作用することにより、各係合突部36に応力が働く。
しかるに本実施形態ではこれら係合突部36の存在に起因して防振ゴムブッシュ10の圧入の際の抵抗力が増大するのを、また係合突部36に働く応力を可及的に小さく抑えることができる。
In the present embodiment, when the pair of engaging protrusions 36 ride on the inner peripheral surface side of the counterpart member 38, a resistance force acts against the press-fitting of the vibration isolating rubber bush 10. Further, when a load acts on each engagement protrusion 36, stress acts on each engagement protrusion 36.
However, in the present embodiment, the resistance force when the anti-vibration rubber bush 10 is press-fitted due to the presence of the engagement protrusions 36 is increased, and the stress acting on the engagement protrusions 36 is made as small as possible. Can be suppressed.

本実施形態では、一対の係合突部36がゴム弾性体16の加硫成形により楕円形状化した外筒12の短径方向(P方向)に位置しているため、防振ゴムブッシュ10を相手部材38に軸方向に圧入する際、それら一対の係合突部36に起因する抵抗を可及的に小さくでき、また併せて各係合突部36に加わる応力を可及的に小さくすることができる。
そしてそのことによって、一対の係合突部36の存在にも拘らず、防振ゴムブッシュ10を筒形の相手部材38に対して円滑に軸方向に圧入操作することができる。
Since the present embodiment is located on the short radially (P 2 direction) of the outer cylinder 12 in which a pair of engaging projection 36 has an elliptical shape by vulcanization molding of the rubber elastic body 16, vibration damping rubber bushing 10 , The resistance caused by the pair of engaging protrusions 36 can be made as small as possible, and the stress applied to each engaging protrusion 36 is made as small as possible. can do.
As a result, the anti-vibration rubber bush 10 can be smoothly press-fitted in the axial direction with respect to the cylindrical counterpart member 38 in spite of the presence of the pair of engaging protrusions 36.

而してその圧入の際、一旦楕円形状化した防振ゴムブッシュ10の外筒12は、相手部材38に対して軸方向に圧入されるにつれて、圧入側の先端側から漸次相手部材38の円形の内周面に倣って真円形状化する。
従って圧入完了状態において、外筒12の一対の係合突部36が設けられた部分もまた真円形状化し、そしてその真円形状化によって、一対の係合突部36が径方向外方へと押し出され、相手部材38の側に設けられた一対の係合凹部42のそれぞれに、目的とする位置まで深く係入した(嵌り込んだ)状態となる。
Thus, when the outer cylinder 12 of the anti-vibration rubber bush 10 once elliptically shaped is pressed into the mating member 38 in the axial direction, the circular shape of the mating member 38 is gradually increased from the distal end side of the press-fitting side. It is made into a perfect circle following the inner peripheral surface.
Therefore, when the press-fitting is completed, the portion of the outer cylinder 12 provided with the pair of engaging protrusions 36 is also formed into a perfect circle shape, and the pair of engaging protrusions 36 is radially outward by the circular shape. Are pushed into each of the pair of engaging recesses 42 provided on the side of the mating member 38 to a target position (inserted).

本実施形態ではまた、一対の係合突部36を図2及び図7中P方向において外筒12の外周面に設けていることによって、その他に次のような利点を有する。
仮に一対の係合突部36を、P方向において樹脂製の外筒12の外周面に突出状に設けた場合、外筒12を相手部材38に圧入する際に、係合突部36に対し相手部材38から応力が加わったとき、樹脂製の外筒12の、係合突部36の径方向内側の部分にはすぐり部22による空洞が生じているため、外筒12が局部的に変形を生じ易く、そしてその変形に基づいて外筒12に割れが発生する恐れがある。
Also in this embodiment, by being provided on the outer peripheral surface of the outer cylinder 12 in the P 2 direction in FIG. 2 and FIG. 7 a pair of engagement projections 36, Other has the following advantages.
If a pair of engagement projections 36, if provided in the projecting shape on an outer peripheral surface of the resin of the outer tube 12 in the P 1 direction, when press-fitting the outer tube 12 to the mating member 38, the engaging projection 36 On the other hand, when a stress is applied from the mating member 38, a cavity by the straight portion 22 is generated in the radially inner portion of the engaging projection 36 of the resin outer cylinder 12, so that the outer cylinder 12 is locally Deformation tends to occur, and cracks may occur in the outer cylinder 12 based on the deformation.

しかるに本実施形態ではそれら一対の係合突部36がP方向、つまり外筒12と内筒14との間がゴム弾性体16で埋められた中実部34を結ぶ方向において、外筒12の外周面に設けられているため、圧入に際してそれら係合突部36に対して内向きの力が働いたとき、樹脂外筒12は内側からゴム弾性体16によって支えられ、バックアップされているため、局部的な変形を生じ難く、その結果として樹脂外筒12に割れが生じるのが効果的に防止される。 However in this embodiment thereof a pair of engagement projections 36 P 2 direction, that between the outer cylinder 12 and the inner cylinder 14 is in the direction connecting the solid portion 34 filled with the rubber elastic body 16, the outer cylinder 12 Since the resin outer cylinder 12 is supported by the rubber elastic body 16 from the inside and backed up when an inward force is applied to the engaging protrusions 36 during press-fitting, the outer shell 12 is backed up. As a result, the resin outer cylinder 12 is effectively prevented from being cracked.

上記のように本実施形態では、係合突部36の突出側の先端を係合凹部42に対して小径、基端を係合凹部42よりも大径となして、係合突部36の外周面を先端から基端に向かって漸次大径化する形状のテーパ面44となし、そして係合突部36の係合凹部42への係入時にそのテーパ面44を、係合凹部42における相手部材38の内周面側の角部Kに対し、樹脂製の外筒12の弾性復元力に基づいて全周に亘り接触させ、押圧するようになしている。   As described above, in the present embodiment, the distal end of the engaging protrusion 36 on the protruding side has a small diameter with respect to the engaging recess 42, and the base end has a larger diameter than the engaging recess 42. The outer peripheral surface is formed into a tapered surface 44 having a shape that gradually increases in diameter from the distal end toward the proximal end, and when the engaging protrusion 36 is engaged with the engaging recessed portion 42, the tapered surface 44 is formed in the engaging recessed portion 42. Based on the elastic restoring force of the resin outer cylinder 12, the corner K on the inner peripheral surface side of the mating member 38 is brought into contact with the entire circumference and pressed.

係合突部を基端と先端とが同径、即ち基端と先端とが平面視において同寸法をなし、係合突部の外周面が基端から先端に向けて外筒12の外周面から軸直角方向に直立状態に起立する形状の面となし、係合突部を基端から先端に到るまで全体に亘って係合凹部42に係入させるようになした場合、係合突部を係合凹部42に確実に係入させるために、係合凹部42の大きさを係合突部のそれよりも一定寸法大きくせざるを得ない(そのようにしないと係合突部が係合凹部42に係入できない場合が生ずる)。   The base end and the front end of the engaging protrusion have the same diameter, that is, the base end and the front end have the same dimension in plan view, and the outer peripheral surface of the outer cylinder 12 faces from the base end to the front end. When the engaging protrusion is engaged with the engaging recess 42 from the base end to the tip end, the engaging protrusion is formed. In order to securely engage the portion into the engaging recess 42, the size of the engaging recess 42 must be larger than that of the engaging protrusion (otherwise the engaging protrusion In some cases, the engaging recess 42 cannot be engaged).

しかしながらこの場合、係合突部と係合凹部42との間、詳しくは係合突部の外周面と係合凹部42の内周面との間に、軸方向及び回転方向に微小な隙間が生じるのを避け得ず、そしてその隙間によって、外筒12が相手部材38に対しがたつきを生じたり或いは位置ずれを生じたりしてしまう。   However, in this case, there is a small gap in the axial direction and the rotational direction between the engagement protrusion and the engagement recess 42, specifically between the outer peripheral surface of the engagement protrusion and the inner peripheral surface of the engagement recess 42. It cannot be avoided that the outer cylinder 12 is rattled or displaced with respect to the mating member 38 due to the gap.

しかるに本実施形態では、係合突部36の基端を係合凹部42に対して大径となし、そして係合突部36の外周面を先端から基端に向けて漸次大径化する形状のテーパ面44となしてあって、係合突部36を係合凹部42に係入させたときに、テーパ面44の何れかの部位(先端から基端に到る何れかの部位)を係合凹部42の内周面の角部Kに押圧状態に接触させるようになしてあるため、係合突部36及び係合凹部42に形状,寸法の多少の誤差が生じていても、また係合突部36と係合凹部42との位置関係に多少の誤差が生じていても、テーパ面44の何れかの部位を確実に係合凹部42の内周側の角部Kに全周に亘り隙間無く押圧状態に接触させることができる。
そしてそのことによって防振ゴムブッシュ10を相手部材38に対し、軸方向にもまた回転方向にも厳格に固定状態となすことができる。
However, in this embodiment, the base end of the engagement protrusion 36 has a large diameter with respect to the engagement recess 42, and the outer peripheral surface of the engagement protrusion 36 gradually increases in diameter from the tip toward the base end. When the engaging protrusion 36 is engaged with the engaging recess 42, any portion (any portion from the distal end to the proximal end) of the tapered surface 44 is formed. Since the corner K of the inner peripheral surface of the engagement recess 42 is brought into contact with the pressed state, even if some errors in the shape and size of the engagement protrusion 36 and the engagement recess 42 occur, Even if there is a slight error in the positional relationship between the engagement protrusion 36 and the engagement recess 42, it is ensured that any part of the taper surface 44 is completely surrounded by the corner K on the inner periphery side of the engagement recess 42. Can be brought into contact with the pressed state without any gap.
As a result, the anti-vibration rubber bush 10 can be strictly fixed to the counterpart member 38 in both the axial direction and the rotational direction.

加えて係合突部36の外周面をテーパ面44となしてあることによって、防振ゴムブッシュ10の外筒12を相手部材38に軸方向に圧入する際、そのテーパ面44を圧入ガイド面として働かせることができ、防振ゴムブッシュ10を円滑に相手部材38に対して圧入することが可能となる。
この係合突部36のテーパ面44はまた、係合突部36を相手部材38の係合凹部42に係入させるに際してもガイド面として働き、係合突部36を係合凹部42に対し円滑に係入させることができる。
In addition, since the outer peripheral surface of the engagement protrusion 36 is a tapered surface 44, when the outer cylinder 12 of the vibration isolating rubber bush 10 is pressed into the mating member 38 in the axial direction, the tapered surface 44 is a press-fit guide surface. As a result, the anti-vibration rubber bush 10 can be smoothly pressed into the mating member 38.
The taper surface 44 of the engagement protrusion 36 also serves as a guide surface when the engagement protrusion 36 is engaged with the engagement recess 42 of the mating member 38, and the engagement protrusion 36 with respect to the engagement recess 42. Engage smoothly.

本実施形態では、一対の係合突部36が、樹脂製の外筒12の両端間の中間部に設けられていて、かかる係合突部36が相手部材38の係合凹部42に係合するものとされているため、図10に示した従来の防振ゴムブッシュ10のように、樹脂製の外筒が相手部材から軸方向に長く突き出してしまうことによる上記の問題を生じない。   In the present embodiment, the pair of engaging protrusions 36 are provided at the intermediate part between both ends of the resin outer cylinder 12, and the engaging protrusions 36 engage with the engaging recesses 42 of the mating member 38. Therefore, unlike the conventional anti-vibration rubber bush 10 shown in FIG. 10, the above-described problem caused by the resin-made outer cylinder protruding in the axial direction from the mating member does not occur.

また係合突部36及び係合凹部42は、それぞれが防振ゴムブッシュ10の圧入前に樹脂製の外筒12,相手部材38に予め設けられており、従って単に防振ゴムブッシュ10を相手部材38に圧入するだけで、係合突部36と係合凹部42とを係合状態とすることができる。
従って特許文献3に開示のもののように、防振ゴムブッシュ10の圧入後において、相手部材38の一部を径方向内方に突出させるような加工を必要としない。
また相手部材38の内面形状を複雑な形状に予め加工形成しておかなくてもよいので、防振ゴムブッシュ10と相手部材38とを含む全体の防振装置を安価に構成することができる。
In addition, the engaging protrusion 36 and the engaging recess 42 are provided in advance on the resin outer cylinder 12 and the mating member 38 before press-fitting the vibration isolating rubber bush 10, respectively. The engagement protrusion 36 and the engagement recess 42 can be brought into an engagement state simply by press-fitting into the member 38.
Therefore, unlike the one disclosed in Patent Document 3, it is not necessary to perform a process of projecting a part of the mating member 38 radially inward after the anti-vibration rubber bush 10 is press-fitted.
In addition, since the inner shape of the counterpart member 38 does not have to be processed and formed in advance in a complicated shape, the entire vibration isolator including the vibration isolating rubber bush 10 and the counterpart member 38 can be configured at low cost.

また本実施形態では係合突部36の形状(平面視の形状)が円形状となしてあるため、防振ゴムブッシュ10を相手部材38に対して軸方向,回転方向のみならず、係合突部36に対する平面視においてその他の全ての方向に厳格に位置決状態に固定でき、全ての方向にがたつきを無くすことができる。   In the present embodiment, since the shape of the engaging protrusion 36 (the shape in plan view) is circular, the vibration isolating rubber bush 10 is engaged not only in the axial and rotational directions but also in the engaging direction. In a plan view with respect to the protrusion 36, the positioning can be strictly fixed in all other directions, and rattling can be eliminated in all directions.

更にこの実施形態では、外筒12の外周面に、強度的な弱点部となる環状の窪み部46を設けていることから、樹脂製の外筒12を相手部材38に圧入する際、係合突部36を相手部材38の内周側に乗り上げ易くでき、相手部材38への防振ゴムブッシュ10の圧入性を高めることができる。   Furthermore, in this embodiment, since the annular recess 46 serving as a strong weak point is provided on the outer peripheral surface of the outer cylinder 12, when the resin-made outer cylinder 12 is press-fitted into the mating member 38, it is engaged. The protrusion 36 can be easily ridden on the inner peripheral side of the mating member 38, and the press-fitting property of the vibration isolating rubber bush 10 to the mating member 38 can be improved.

また係合突部36のテーパ面44を係合凹部42の角部Kに押圧状態で接触させた後、窪み部46に向けてのテーパ面44の変形を助長でき、係合突部36に対して角部Kから加わる力を緩和することができる。   Further, after the tapered surface 44 of the engaging projection 36 is brought into contact with the corner K of the engaging recess 42 in a pressed state, deformation of the tapered surface 44 toward the recessed portion 46 can be promoted, and On the other hand, the force applied from the corner K can be relaxed.

以上本発明の実施形態を詳述したがこれはあくまで一例示である。
例えば係合突部36の形状については、これを図9に示すような平面4角形状(断面形状は台形状)その他の多角形状若しくはそれ以外の形状とし、また係合凹部をこれに対応する平面形状で形成することも可能である。
更に上例では係合突部36及び係合凹部42を、それぞれ対応する位置に一対設けているが、場合によってこれら係合突部36,係合凹部42を3個以上の複数個設けておくといったことも可能である。
また上記実施形態ではゴム弾性体16がすぐり部22を有する形状をなしているが、本発明はゴム弾性体がこのようなすぐり部を有していない防振ゴムブッシュに適用することも可能である。
その他本発明はその趣旨を逸脱しない範囲において種々変更を加えた形態で構成可能である。
Although the embodiment of the present invention has been described in detail above, this is merely an example.
For example, as for the shape of the engaging protrusion 36, this is a flat square shape (the cross-sectional shape is a trapezoidal shape) as shown in FIG. 9, other polygonal shapes or other shapes, and the engaging concave portion corresponds to this. It can also be formed in a planar shape.
Further, in the above example, a pair of engagement protrusions 36 and engagement recesses 42 are provided at corresponding positions. However, in some cases, a plurality of engagement protrusions 36 and engagement recesses 42 are provided in plural. It is also possible.
Moreover, in the said embodiment, although the rubber elastic body 16 has comprised the shape which has the straight part 22, this invention can also be applied to the vibration proof rubber bush which does not have such a straight part. is there.
In addition, this invention can be comprised in the form which added the various change in the range which does not deviate from the meaning.

本発明の一実施形態の防振ゴムブッシュを示した斜視図である。It is the perspective view which showed the vibration proof rubber bush of one Embodiment of this invention. 同実施形態の軸直角方向の断面図である。It is sectional drawing of the axis orthogonal direction of the same embodiment. 図1のIII−III断面図である。FIG. 3 is a sectional view taken along line III-III in FIG. 1. 図1のIV−IV断面図である。It is IV-IV sectional drawing of FIG. 同実施形態の防振ゴムブッシュを相手部材に圧入した状態で示した断面図である。It is sectional drawing shown in the state which press-fitted the vibration isolating rubber bush of the same embodiment to the other member. 同実施形態の外筒の係合突部と、相手部材の係合凹部との寸法関係を示した図である。It is the figure which showed the dimensional relationship between the engagement protrusion of the outer cylinder of the embodiment, and the engagement recessed part of the other party member. 同実施形態における外筒の加硫前後での形状変化を示す説明図である。It is explanatory drawing which shows the shape change before and behind vulcanization | cure of the outer cylinder in the same embodiment. 同実施形態の防振ゴムブッシュを相手部材に圧入した際の係合突部のテーパ面の作用説明図である。It is action | operation explanatory drawing of the taper surface of the engaging protrusion at the time of press-fitting the vibration isolating rubber bush of the embodiment to the other member. 本発明の他の実施形態の要部を示した図である。It is the figure which showed the principal part of other embodiment of this invention. 従来公知の防振ゴムブッシュの断面図である。It is sectional drawing of a conventionally well-known anti-vibration rubber bush.

10 防振ゴムブッシュ
12 外筒
14 内筒
16 ゴム弾性体
36 係合突部
38 相手部材
42 係合凹部
46 窪み部
K 角部
DESCRIPTION OF SYMBOLS 10 Anti-vibration rubber bush 12 Outer cylinder 14 Inner cylinder 16 Rubber elastic body 36 Engagement protrusion 38 Counterpart member 42 Engagement recessed part 46 Recessed part
K corner

Claims (4)

円筒状の樹脂製の外筒と、剛性の内筒と、それら外筒と内筒とを弾性連結する状態に一体に加硫接着されたゴム弾性体とを有し、該外筒の外周面において横断面が円形の内周面を有する筒形の金属製の相手部材に軸方向に圧入されて組み付けられる防振ゴムブッシュであって
前記外筒には、軸方向両端間の中間部において該外筒の外周面から突出する少なくとも一対の係合突部が設けられており、
該係合突部は、前記筒形の相手部材の内周面に該係合突部に対応した数及び平面形状で設けられた係合凹部に係入して軸方向と回転方向とのそれぞれに位置固定状態に係合するものとなしてあり、
更に該係合突部は、突出側の先端が前記係合凹部よりも幅が小さく、基端が該係合凹部よりも幅が大きくなっていて、該係合突部の外周面が該先端から該基端に向って漸次幅が大きくなる形状をなしており、
該係合突部の該係合凹部への係入時に、該外周面が該係合凹部における前記相手部材の内周面側の角部に対し、前記外筒の弾性復元力に基づいて全周に亘り接触し押圧されるものとなしてあることを特徴とする防振ゴムブッシュ。
A cylindrical resin outer cylinder, a rigid inner cylinder, and a rubber elastic body integrally vulcanized and bonded in a state of elastically connecting the outer cylinder and the inner cylinder, and an outer peripheral surface of the outer cylinder the cross-section in the said outer cylinder a vibration damping rubber bushing that is assembled is pressed axially steel made members of cylindrical shape having an inner peripheral surface of the circular, in an intermediate portion between the axial ends at At least a pair of engaging protrusions protruding from the outer peripheral surface of the outer cylinder,
The engagement protrusions are engaged with engagement recesses provided in a number and a planar shape corresponding to the engagement protrusions on the inner peripheral surface of the cylindrical mating member, respectively in the axial direction and the rotation direction. To be engaged in a fixed position,
Further engagement protrusion has a smaller width than the tip the engaging recess of the projecting side, the proximal end is not larger width than the engaging recesses, the tip outer peripheral surface of the engaging projection From the base end to the base end, the width gradually increases ,
When the engagement protrusion is engaged with the engagement recess, the outer peripheral surface is entirely against the corner on the inner peripheral surface side of the mating member in the engagement recess based on the elastic restoring force of the outer cylinder. An anti-vibration rubber bush characterized by being contacted and pressed over the circumference.
請求項1において、前記係合突部の平面視の形状が円形であることを特徴とする防振ゴムブッシュ。 2. The anti-vibration rubber bush according to claim 1, wherein the shape of the engagement protrusion in a plan view is circular. 請求項1,2の何れかにおいて、前記係合突部の前記外周面が前記相手部材の内周側の角部を食い込ませるものとなしてあることを特徴とする防振ゴムブッシュ。   3. The anti-vibration rubber bush according to claim 1, wherein the outer peripheral surface of the engaging protrusion bites into an inner peripheral corner of the mating member. 請求項1〜3の何れかにおいて、前記外筒の外周面には、前記係合突部を環状に取り囲む窪み部が該外筒の内周面方向に凹陥する形状で設けてあることを特徴とする防振ゴムブッシュ。 4. The outer peripheral surface of the outer cylinder according to any one of claims 1 to 3, wherein a concave portion that annularly surrounds the engaging protrusion is provided in a shape that is recessed toward the inner peripheral surface of the outer cylinder. Anti-vibration rubber bush.
JP2008313740A 2008-12-09 2008-12-09 Anti-vibration rubber bush Expired - Fee Related JP5178485B2 (en)

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