JP4790550B2 - Liquid filled vibration isolator - Google Patents

Liquid filled vibration isolator Download PDF

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JP4790550B2
JP4790550B2 JP2006252324A JP2006252324A JP4790550B2 JP 4790550 B2 JP4790550 B2 JP 4790550B2 JP 2006252324 A JP2006252324 A JP 2006252324A JP 2006252324 A JP2006252324 A JP 2006252324A JP 4790550 B2 JP4790550 B2 JP 4790550B2
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liquid
vibration isolator
vibration
elastic member
partition member
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JP2008075670A (en
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勝敏 太田
純生 内田
稔 片山
哲也 三宅
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Kurashiki Kako Co Ltd
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本発明は、液体封入式防振装置に関するものである。   The present invention relates to a liquid-filled vibration isolator.

従来から、エンジンマウント等として用いられる液体封入式防振装置が知られている。例えば、特許文献1及び2に示す液体封入式防振装置は、車体等の支持体側及びパワープラント等の被支持体側にそれぞれ連結される第1及び第2取付部材と、これら両取付部材を弾性連結し、上側部分が上方に向かって開口し、弾性変形により両取付部材を相対変位させる弾性部材と、この弾性部材の開口部を覆って液室を形成する弾性ダイヤフラムと、このダイヤフラムと弾性部材の開口端部との間に挟まれ、液室を受圧室及び平衡室に区画する区画部材と、受圧室及び平衡室を連通するオリフィス通路とを備え、区画部材の一部がメンブランで構成されているものである。そして、この液体封入式防振装置にエンジンシェイクなどの低周波・大振幅振動が上下方向に加わると、オリフィス通路を介して受圧室及び平衡室の間を緩衝液が流動することによってその振動が吸収、減衰され、アイドル振動などの高周波・低振幅振動が上下方向に加わると、メンブランが弾性変形することによってその振動が吸収、減衰されるようになっている。   Conventionally, a liquid-filled vibration isolator used as an engine mount or the like is known. For example, in the liquid-filled vibration isolator shown in Patent Documents 1 and 2, the first and second mounting members connected to the support side such as the vehicle body and the supported side such as the power plant are elastically connected to both the mounting members. An elastic member that is connected, has an upper portion opened upward, and relatively displaces both mounting members by elastic deformation, an elastic diaphragm that covers the opening of the elastic member and forms a liquid chamber, and the diaphragm and the elastic member A partition member that divides the liquid chamber into a pressure receiving chamber and an equilibrium chamber, and an orifice passage that communicates the pressure receiving chamber and the equilibrium chamber, and a part of the partition member is configured by a membrane. It is what. When a low-frequency and large-amplitude vibration such as an engine shake is applied in the vertical direction to the liquid-filled vibration isolator, the vibration is caused by the buffer solution flowing between the pressure receiving chamber and the equilibrium chamber via the orifice passage. When high-frequency and low-amplitude vibration such as idle vibration is applied in the vertical direction after being absorbed and damped, the vibration is absorbed and damped by elastic deformation of the membrane.

また、上記液体封入式防振装置として、上記メンブランの代わりに、区画部材の内部空間に可動板を収容したものがある。そして、この液体封入式防振装置に高周波・低振幅振動が上下方向に加わると、可動板が区画部材の内部空間で動くことによってその振動が吸収、減衰されるようになっている。
特開2004−293793号公報 特許第2799953号公報
Further, as the liquid-filled vibration isolator, there is one in which a movable plate is accommodated in an internal space of a partition member instead of the membrane. When high-frequency and low-amplitude vibration is applied in the vertical direction to the liquid-sealed vibration isolator, the vibration is absorbed and attenuated by the movable plate moving in the internal space of the partition member.
JP 2004-293793 A Japanese Patent No. 2799953

ところで、上記後者の液体封入式防振装置に低周波・大振幅振動が上下方向に入力されると、受圧室の液圧が平衡室よりも高くなり、その液圧差で可動板が区画部材に当たる。ここで、区画部材は、上記のようにダイヤフラムと弾性部材の開口端部との間に挟まれることによってダイヤフラムと弾性部材の開口端部とで弾性支持されているので、支持剛性が低くなっている。このため、低支持剛性の区画部材は、可動板にぶつかられると振動(詳しくは、共振)し、この振動が、弾性部材又は第2取付部材、第1取付部材、車体等へと伝わり、その結果、車内等で異音が発生するという問題があった。   By the way, when low-frequency and large-amplitude vibrations are input to the latter liquid-filled vibration isolator in the vertical direction, the fluid pressure in the pressure receiving chamber becomes higher than that in the equilibrium chamber, and the movable plate hits the partition member due to the fluid pressure difference. . Here, since the partition member is elastically supported by the diaphragm and the opening end portion of the elastic member by being sandwiched between the diaphragm and the opening end portion of the elastic member as described above, the support rigidity is lowered. Yes. For this reason, the partition member having low support rigidity vibrates (specifically, resonance) when it hits the movable plate, and this vibration is transmitted to the elastic member or the second mounting member, the first mounting member, the vehicle body, etc. As a result, there was a problem that abnormal noise was generated in the vehicle.

この問題を解決するため、区画部材を剛体支持することが考えられるが、そのように剛体支持するのは製造上困難であり、それにも拘わらず、そのように剛体支持すると、製造コストの上昇を招いてしまう。このように、区画部材を剛体支持するのは好ましくない。   In order to solve this problem, it is conceivable to support the partition member with a rigid body. However, it is difficult to manufacture such a rigid body support, and nevertheless, such a rigid body support increases the manufacturing cost. I will invite you. Thus, it is not preferable to rigidly support the partition member.

一方、本発明者たちは、上記後者の液体封入式防振装置に対して各種実験を行い、その結果、区画部材は、水平方向の支持剛性が低く、このため、可動板に当たられると水平方向に振動し、これを原因として車内等で異音が発生することを見出した。   On the other hand, the present inventors conducted various experiments on the latter liquid-filled vibration isolator, and as a result, the partition member has a low horizontal support rigidity. It has been found that abnormal noise is generated inside the vehicle due to vibration in the direction.

本発明は、かかる点に鑑みてなされたものであり、その目的とするところは、液体封入式防振装置において、車内等で異音が発生することを抑制することにある。   The present invention has been made in view of this point, and an object of the present invention is to suppress the occurrence of abnormal noise in a vehicle or the like in a liquid-filled vibration isolator.

第1の発明は、支持体側及び被支持体側にそれぞれ連結される第1及び第2取付部材と、該両取付部材を弾性連結し、上側部分が上方に向かって開口し、弾性変形により上記両取付部材を相対変位させる弾性部材と、該弾性部材の開口部を覆って液室を形成する弾性ダイヤフラムと、上記ダイヤフラムと上記弾性部材の開口端部との間に挟まれることによって該ダイヤフラムと上記弾性部材の開口端部とで弾性支持され、上記液室を受圧室及び平衡室に区画する区画部材と、上記受圧室及び上記平衡室を連通するオリフィス通路と、該区画部材の内部空間に収容された可動板とを備えた液体封入式防振装置であって、上記区画部材の下面には、上記弾性部材の内周面に接触するように下方に向かって突出する内側突出部が設けられていることを特徴とするものである。 According to a first aspect of the present invention, the first and second attachment members connected to the support side and the supported side, respectively, and the both attachment members are elastically connected. an elastic member for relative displacement of the mounting member, and an elastic diaphragm forming a liquid chamber covers the opening of the elastic member, and said diaphragm by Rukoto sandwiched between the open end of the diaphragm and the elastic member A partition member that is elastically supported by the opening end of the elastic member and divides the liquid chamber into a pressure receiving chamber and an equilibrium chamber, an orifice passage that communicates the pressure receiving chamber and the equilibrium chamber, and an internal space of the partition member A liquid-filled vibration isolator including a movable plate accommodated therein, and an inner protrusion that protrudes downward is provided on a lower surface of the partition member so as to contact an inner peripheral surface of the elastic member. What is being done It is an feature.

これにより、区画部材の下面に、弾性部材の内周面に接触するように下方に向かって突出する内側突出部を設けているので、区画部材の水平方向の支持剛性が高くなり、液体封入式防振装置に低周波・大振幅振動が上下方向に加わったときに区画部材が水平方向に振動することを抑制することができる。このため、車内等で異音が発生することを抑制することができる。   Thereby, since the inner side protrusion part which protrudes below is provided in the lower surface of a division member so that the inner peripheral surface of an elastic member may be contacted, the horizontal support rigidity of a division member becomes high, and a liquid enclosure type When the low-frequency and large-amplitude vibration is applied to the vibration isolator in the vertical direction, the partition member can be prevented from vibrating in the horizontal direction. For this reason, generation | occurrence | production of unusual noise in the vehicle etc. can be suppressed.

第2の発明は、上記第1の発明において、上記内側突出部は、上記区画部材の下面に互いに周方向に等間隔で複数配設されていることを特徴とするものである。   A second invention is characterized in that, in the first invention, a plurality of the inner projecting portions are arranged at equal intervals in the circumferential direction on the lower surface of the partition member.

これにより、内側突出部を、区画部材の下面に互いに周方向に等間隔で複数配設しているので、区画部材の水平方向の支持剛性がバランス良く高くなり、液体封入式防振装置に低周波・大振幅振動が上下方向に加わったときに区画部材が水平方向に振動することを確実に抑制することができる。このため、車内等で異音が発生することを確実に抑制することができる。   As a result, a plurality of inner protrusions are arranged at equal intervals in the circumferential direction on the lower surface of the partition member, so that the support rigidity in the horizontal direction of the partition member is improved in a well-balanced manner, and is low in the liquid-filled vibration isolator. When the frequency / large amplitude vibration is applied in the vertical direction, it is possible to reliably suppress the partition member from vibrating in the horizontal direction. For this reason, it is possible to reliably suppress the generation of abnormal noise in the vehicle or the like.

第3の発明は、上記第1の発明において、上記内側突出部は、上記区画部材の下面に周方向全域に亘って延びるように設けられていることを特徴とするものである。   According to a third invention, in the first invention, the inner projecting portion is provided on the lower surface of the partition member so as to extend over the entire circumferential direction.

これにより、内側突出部を、区画部材の下面に周方向全域に亘って延びるように設けているので、区画部材の水平方向の支持剛性が一層高くなり、液体封入式防振装置に低周波・大振幅振動が上下方向に加わったときに区画部材が水平方向に振動することを確実に抑制することができる。このため、車内等で異音が発生することを確実に抑制することができる。   As a result, the inner projecting portion is provided on the lower surface of the partition member so as to extend over the entire circumferential direction, so that the horizontal support rigidity of the partition member is further increased, and the liquid-filled vibration isolator has a low frequency It is possible to reliably suppress the partition member from vibrating in the horizontal direction when large amplitude vibration is applied in the vertical direction. For this reason, it is possible to reliably suppress the generation of abnormal noise in the vehicle or the like.

第4の発明は、上記第1〜第3のいずれか1つの発明において、上記第2取付部材は、筒状に形成されていて、上端の開口端部にフランジ部が設けられ、上記弾性部材には、該弾性部材に埋設された本体部と該弾性部材の外周面から径方向外方に向かって突出するフランジ部とを有する埋設部材が設けられ、上記ダイヤフラムの外周部には連結部材が連結され、上記埋設部材のフランジ部及び上記連結部材は、上記第2取付部材のフランジ部にかしめられていることを特徴とするものである。   According to a fourth invention, in any one of the first to third inventions, the second mounting member is formed in a cylindrical shape, and a flange portion is provided at an open end of the upper end. Is provided with an embedded member having a main body portion embedded in the elastic member and a flange portion protruding radially outward from the outer peripheral surface of the elastic member, and a connecting member is provided on the outer peripheral portion of the diaphragm. It is connected, The flange part of the said burying member and the said connection member are caulked by the flange part of the said 2nd attachment member, It is characterized by the above-mentioned.

これにより、埋設部材のフランジ部及び連結部材を、被支持体側に連結される第2取付部材のフランジ部でかしめているので、このかしめにより弾性部材の開口端部が区画部材に押し付けられることによって径方向内方に向かって膨らむ。このため、第2取付部材内に区画部材を組み込む時に区画部材の内側突出部を弾性部材の開口部に嵌め込みやすくするため、弾性部材の内周面と内側突出部との間に隙間が空いていても、内側突出部を弾性部材の内周面に接触させることができる。   As a result, the flange portion and the connecting member of the embedded member are caulked by the flange portion of the second mounting member connected to the supported body side, and the opening end portion of the elastic member is pressed against the partition member by this caulking. Inflates radially inward. For this reason, in order to make it easy to fit the inner projecting portion of the partition member into the opening of the elastic member when the partition member is incorporated into the second mounting member, there is a gap between the inner peripheral surface of the elastic member and the inner projecting portion. However, the inner protrusion can be brought into contact with the inner peripheral surface of the elastic member.

第5の発明は、上記第4の発明において、上記区画部材の下面には、上記埋設部材のフランジ部の外周端部に接触するように下方に向かって突出する外側突出部がさらに設けられていることを特徴とするものである。   In a fifth aspect based on the fourth aspect, the lower surface of the partition member is further provided with an outer protrusion that protrudes downward so as to contact the outer peripheral end of the flange portion of the embedded member. It is characterized by being.

これにより、区画部材の下面に、埋設部材のフランジ部の外周端部に接触するように下方に向かって突出する外側突出部をさらに設けているので、区画部材の水平方向の支持剛性が一層高くなり、液体封入式防振装置に低周波・大振幅振動が上下方向に加わったときに区画部材が水平方向に振動することを確実に抑制することができる。このため、車内等で異音が発生することを確実に抑制することができる。   Thereby, since the outer side protrusion part which protrudes below is further provided in the lower surface of a division member so that the outer peripheral edge part of the flange part of an embedding member may be contacted, the horizontal support rigidity of a division member is still higher. Thus, it is possible to reliably suppress the partition member from vibrating in the horizontal direction when low-frequency and large-amplitude vibration is applied to the liquid-filled vibration isolator in the vertical direction. For this reason, it is possible to reliably suppress the generation of abnormal noise in the vehicle or the like.

第6の発明は、上記第1〜第5のいずれか1つの発明において、上記内側突出部の外面には、外方に向かって突出し、上記区画部材を上記弾性部材に位置決めするための位置決め突出部が設けられていることを特徴とするものである。   In a sixth aspect of the present invention, in any one of the first to fifth aspects of the present invention, a positioning projection for projecting outward on the outer surface of the inner projecting portion and positioning the partition member on the elastic member is provided. A part is provided.

これにより、内側突出部の外面に、外方に向かって突出し、区画部材を弾性部材に位置決めするための位置決め突出部を設けているので、区画部材を弾性部材に簡単に位置決めすることができる。   Thereby, since the positioning protrusion for projecting outward and positioning the partition member on the elastic member is provided on the outer surface of the inner protrusion, the partition member can be easily positioned on the elastic member.

なお、上記第1〜第6の発明では、オリフィス側を「上」と、オリフィスとは反対側を「下」としている。   In the first to sixth inventions, the orifice side is “upper” and the opposite side of the orifice is “lower”.

本発明によれば、区画部材の下面に、弾性部材の内周面に接触するように下方に向かって突出する内側突出部を設けているので、区画部材の水平方向の支持剛性が高くなり、液体封入式防振装置に低周波・大振幅振動が上下方向に加わったときに区画部材が水平方向に振動することを抑制することができ、このため、車内等で異音が発生することを抑制することができる。   According to the present invention, on the lower surface of the partition member, the inner projecting portion that projects downward so as to contact the inner peripheral surface of the elastic member is provided, so that the support rigidity in the horizontal direction of the partition member is increased, When low-frequency and large-amplitude vibrations are applied to the liquid-filled vibration isolator in the vertical direction, the partition member can be prevented from vibrating in the horizontal direction. Can be suppressed.

以下、本発明の実施形態を図面に基づいて詳細に説明する。   Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings.

(実施形態1)
図1に示すように、本実施形態1に係る防振マウント装置1(液体封入式防振装置)は、例えばエンジン等からなるパワープラント(被支持体側)と車体(支持体側)との間に配設されるもので、上記防振マウント装置1のケース2内には、車体側に下端で連結される連結金具12(第1取付部材)を備えたマウント本体部10が収納されている。なお、上記防振マウント装置1は、ケース2に一体形成された連結部5(第2取付部材)によってパワープラント側に連結されている。
(Embodiment 1)
As shown in FIG. 1, an anti-vibration mount device 1 (liquid-filled anti-vibration device) according to Embodiment 1 is provided between a power plant (supported body side) composed of, for example, an engine or the like and a vehicle body (support body side). In the case 2 of the anti-vibration mount device 1, a mount main body portion 10 including a connection fitting 12 (first attachment member) connected at the lower end to the vehicle body side is housed. The anti-vibration mount device 1 is connected to the power plant side by a connecting portion 5 (second mounting member) integrally formed with the case 2.

具体的には、図1に示すように、上記マウント本体部10は、ケース2にかしめられて連結される金属製の円筒部材11(埋設部材)と上記連結金具12とがゴム弾性体13(弾性部材)によって連結されたものである。上記円筒部材11は、上下方向に延びるように配置された円筒状の本体部11aと、その上側が径方向外方に折り曲げられて延びるフランジ部11bとを有している。   Specifically, as shown in FIG. 1, the mount main body portion 10 includes a metal cylindrical member 11 (embedded member) that is caulked and connected to the case 2, and the connection fitting 12 is a rubber elastic body 13 ( Connected by an elastic member). The cylindrical member 11 has a cylindrical main body portion 11a arranged so as to extend in the up-down direction, and a flange portion 11b that extends by bending the upper side thereof radially outward.

上記連結金具12は、その上部が上すぼまりの略円錐形状で下部が略円柱状に形成されたもので、その上部と下部との間には、図1に示すように、略全周に亘って径方向外方に膨出する膨出部12aが形成されている。   The connection metal fitting 12 is formed in a substantially conical shape with an upper concavity and a lower part formed in a substantially cylindrical shape. Between the upper and lower parts, as shown in FIG. A bulging portion 12a that bulges radially outward is formed.

ここで、上記連結金具12に形成された膨出部12aには、該膨出部12aを覆うようにストッパゴム21が上記ゴム弾性体13と連繋して設けられている。このストッパゴム21は、上記膨出部12aの外周面側及び下面側の厚みが上面側に比べて厚くなるように形成されていて、パワープラント側に連結されたケース2が水平方向及び上方向にそれぞれ大きく変位した場合に、これらのゴムが該ケース2の内周面や底部に当接することで該ケース2の変位を規制するようになっている。   Here, a stopper rubber 21 is connected to the rubber elastic body 13 at the bulging portion 12a formed on the connecting metal 12 so as to cover the bulging portion 12a. The stopper rubber 21 is formed such that the outer peripheral surface side and the lower surface side of the bulging portion 12a are thicker than the upper surface side, and the case 2 connected to the power plant side is horizontally and upwardly. When these are greatly displaced, these rubbers come into contact with the inner peripheral surface and the bottom of the case 2 to restrict the displacement of the case 2.

なお、図1は、マウント本体部10に荷重が作用していない状態を示しており、この状態では該マウント本体部10のストッパゴム21とケース2の底部とが近接しているが、防振マウント装置1が車体に取り付けられて、マウント本体部10にパワープラントの静荷重が加わる1G状態では、図示しないが、ゴム弾性体13が撓んでケース2が下方に変位するので、その底部と上記ストッパゴム21との間には所定の間隔が形成されることになる。   FIG. 1 shows a state in which no load is applied to the mount body 10. In this state, the stopper rubber 21 of the mount body 10 and the bottom of the case 2 are close to each other. In the 1G state in which the mounting device 1 is attached to the vehicle body and the static load of the power plant is applied to the mount body 10, the rubber elastic body 13 is bent and the case 2 is displaced downward, although not shown in the figure. A predetermined interval is formed between the stopper rubber 21 and the stopper rubber 21.

上記連結金具12の上端部は、上記円筒部材11の下方で且つ下端開口部の略中心に位置するように略同軸に配置されていて、上すぼまりの側面部にはゴム弾性体13が設けられている。一方、上記連結金具12の下部は、ケース2の底部に形成された該連結金具12の下部よりも径の大きい穴部2bを挿通していて、該連結金具12の下端面は、車体側に連結される接続部材の上面にボルトによって接合されている(図示省略)。   The upper end portion of the connection fitting 12 is disposed substantially coaxially so as to be positioned below the cylindrical member 11 and at the approximate center of the lower end opening, and a rubber elastic body 13 is disposed on the side surface portion of the upper recess. Is provided. On the other hand, the lower part of the connection fitting 12 is inserted through a hole 2b having a diameter larger than that of the lower part of the connection fitting 12 formed at the bottom of the case 2, and the lower end surface of the connection fitting 12 is on the vehicle body side. It is joined to the upper surface of the connecting member to be coupled by a bolt (not shown).

上記ゴム弾性体13は、その下部内周側にすり鉢状の凹部が形成されていて、この凹部の周面が上記連結金具12のテーパ状側面部に被着されている。また、上記ゴム弾性体13は連結金具12の全周から外方に向かって放射状に拡がり、且つ斜め上方向に延びるように略円錐台状に形成されていて、その上側部分は上方に向かって略円状に開口している。   The rubber elastic body 13 has a mortar-shaped concave portion formed on the inner peripheral side of the lower portion thereof, and the peripheral surface of the concave portion is attached to the tapered side surface portion of the connecting fitting 12. Further, the rubber elastic body 13 is formed in a substantially truncated cone shape so as to expand radially outward from the entire circumference of the connecting fitting 12 and to extend obliquely upward, and its upper portion is directed upward. Open in a substantially circular shape.

そして、上記ゴム弾性体13の上側部分には、上記円筒部材11の本体部11aが埋設されている一方、該円筒部材11のフランジ部11bは、上記ゴム弾性体13の外周面から全周に亘って径方向外方に突出しており、上記マウント本体部10を下方から覆うように配設される有底円筒状のケース2の上端の開口端部に設けられたフランジ部2aにかしめられている。   A main body portion 11 a of the cylindrical member 11 is embedded in the upper portion of the rubber elastic body 13, while the flange portion 11 b of the cylindrical member 11 extends from the outer peripheral surface of the rubber elastic body 13 to the entire circumference. It protrudes radially outward and is caulked by a flange portion 2a provided at the opening end of the upper end of the bottomed cylindrical case 2 disposed so as to cover the mount main body portion 10 from below. Yes.

上記マウント本体部10の上部には、上記ゴム弾性体13の上側部分の開口部を覆うように金属製のオリフィス盤31(区画部材)が配設されるとともに、その上方を覆うように(すなわち、上記ゴム弾性体13の上側部分の開口部を覆うように)ゴム製のダイヤフラム40(弾性ダイヤフラム)が配設されていて、上記ゴム弾性体13とダイヤフラム40とによって緩衝液の封入される液室33が構成されている。そして、オリフィス盤31の外周端部がダイヤフラム40の内周面に接触している。   A metal orifice plate 31 (partition member) is disposed on the upper portion of the mount main body 10 so as to cover the opening of the upper portion of the rubber elastic body 13, and so as to cover the upper portion thereof (that is, A rubber diaphragm 40 (elastic diaphragm) is disposed (so as to cover the opening of the upper portion of the rubber elastic body 13), and a liquid in which a buffer solution is sealed by the rubber elastic body 13 and the diaphragm 40. A chamber 33 is configured. The outer peripheral end portion of the orifice board 31 is in contact with the inner peripheral surface of the diaphragm 40.

上記ダイヤフラム40の外周部には、略ハット状に形成され、その中央部分に貫通孔の設けられた環状金具37(連結部材)の内周部が連結されている。詳しくは、この環状金具37は、上記貫通孔の形成された天板部37aと、該天板部37aの外周端から下方に湾曲して延びる筒状の側壁部37bと、該側壁部37bの下端から周方向外方に向かって延びる鍔部37cとからなる。そして、上記天板部37aの内周部がダイヤフラム40に埋設されているとともに、上記鍔部37cの外周端部が、ケース2のフランジ部2aにマウント本体部10の円筒部材11のフランジ部11bとともにかしめられている。   An outer peripheral portion of the diaphragm 40 is connected to an inner peripheral portion of a ring-shaped metal fitting 37 (connecting member) that is formed in a substantially hat shape and has a through hole at a central portion thereof. Specifically, the annular bracket 37 includes a top plate portion 37a in which the through hole is formed, a cylindrical side wall portion 37b that curves downward from the outer peripheral end of the top plate portion 37a, and a side wall portion 37b. It consists of the collar part 37c extended toward a circumferential direction outward from a lower end. And the inner peripheral part of the said top-plate part 37a is embed | buried under the diaphragm 40, and the outer peripheral end part of the said collar part 37c is the flange part 11b of the cylindrical member 11 of the mount main-body part 10 in the flange part 2a of the case 2. It is caulked with.

また、上記環状金具37によってマウント本体部10の上方に形成される空間内には、上記オリフィス盤31がその外周側で上記ダイヤフラム40とゴム弾性体13の開口端部(詳しくは、開口端面)との間に挟まれるように配設されていて、これにより、上記オリフィス盤31は、ダイヤフラム40とゴム弾性体13の開口端部とで弾性支持されているとともに、上記液室33は、ゴム弾性体13側の受圧室33aとダイヤフラム40側の平衡室33bとに区画されている。   In addition, in the space formed above the mount main body 10 by the annular fitting 37, the orifice plate 31 is located at the outer peripheral side of the diaphragm 40 and the open end portion of the rubber elastic body 13 (specifically, the open end surface). Thus, the orifice plate 31 is elastically supported by the diaphragm 40 and the opening end of the rubber elastic body 13, and the liquid chamber 33 is made of rubber. It is divided into a pressure receiving chamber 33a on the elastic body 13 side and an equilibrium chamber 33b on the diaphragm 40 side.

上記オリフィス盤31によって区画される上記両液室33a,33bは、該オリフィス盤31の周縁に螺旋状に形成されたオリフィス通路34によって連通している。そして、それら受圧室33a及び平衡室33bの緩衝液がオリフィス通路34を介して相互に流通することによって、ゴム弾性体13から受圧室33aに作用する低周波・大振幅の振動が減衰されるようになっている。このとき、上記ダイヤフラム40は、緩衝液の流通に伴う平衡室33bの容積変化を吸収するように変形を生じる。上記ダイヤフラム40は、平衡室33bの容積が大きくなったときには外方に向かって膨張する一方、該平衡室33bの容積が小さくなったときには縮んで小さくなる。   The two liquid chambers 33a and 33b defined by the orifice plate 31 communicate with each other through an orifice passage 34 formed in a spiral shape on the periphery of the orifice plate 31. The buffer solution in the pressure receiving chamber 33a and the equilibrium chamber 33b flows through the orifice passage 34 so that the low-frequency and large-amplitude vibrations acting on the pressure receiving chamber 33a from the rubber elastic body 13 are attenuated. It has become. At this time, the diaphragm 40 is deformed so as to absorb the volume change of the equilibrium chamber 33b accompanying the flow of the buffer solution. The diaphragm 40 expands outward when the volume of the equilibrium chamber 33b increases, and contracts and decreases when the volume of the equilibrium chamber 33b decreases.

上記オリフィス盤31は、螺旋状のオリフィス通路34を形成する本体部31aと、該本体部31aの上面に接触するように配設された円盤状の蓋部31bとからなる。この本体部31aの上面側中央部分には可動板用凹部31cが形成されているとともに、該本体部31aの下面側中央部分(すなわち、可動板用凹部31cの底面)及び上記蓋部31bには複数の貫通孔が形成されており、その可動板用凹部31cに高周波・低振幅振動吸収用のゴム製の可動板35が嵌入収容され、上記蓋部31bによって脱落防止が図られている。そして、その可動板35がオリフィス盤31の内部空間で動くことによって、ゴム弾性体13から受圧室33aに作用する高周波・低振幅の振動が減衰されるようになっている。   The orifice plate 31 includes a main body portion 31a that forms a spiral orifice passage 34, and a disc-shaped lid portion 31b that is disposed so as to contact the upper surface of the main body portion 31a. A movable plate concave portion 31c is formed in the upper surface side central portion of the main body portion 31a, and the lower surface side central portion (that is, the bottom surface of the movable plate concave portion 31c) of the main body portion 31a and the lid portion 31b. A plurality of through-holes are formed, and a movable plate 35 made of rubber for absorbing high-frequency and low-amplitude vibration is fitted into and accommodated in the movable plate recess 31c, and is prevented from falling off by the lid portion 31b. When the movable plate 35 moves in the internal space of the orifice plate 31, high-frequency and low-amplitude vibrations that act on the pressure receiving chamber 33a from the rubber elastic body 13 are attenuated.

上記オリフィス盤31の下面の外周側には、上記ゴム弾性体13の上側部分の内周面に接触するように下方に向かって突起する1つの内側突出部61が一体に設けられている。   On the outer peripheral side of the lower surface of the orifice board 31, one inner projecting portion 61 that protrudes downward so as to contact the inner peripheral surface of the upper portion of the rubber elastic body 13 is integrally provided.

−防振マウント装置の製造方法−
以下、図2を参照しながら、防振マウント装置1の製造方法について説明する。なお、以下の説明では、各構成部品の組み立て工程について主に説明するものとし、該各構成部品の製造方法についての説明は省略する。
-Manufacturing method of anti-vibration mount device-
Hereinafter, the manufacturing method of the vibration-proof mount apparatus 1 is demonstrated, referring FIG. In the following description, the assembly process of each component is mainly described, and the description of the manufacturing method of each component is omitted.

まず、ケース2内に、連結金具12に被着され且つ円筒部材11が埋設されたゴム弾性体13を圧入する。次に、ゴム弾性体13の組み込まれたケース2内にオリフィス盤31を嵌め込む。次に、ゴム弾性体13及びオリフィス盤31の組み込まれたケース2内に、環状金具37が連結されたダイヤフラム40を嵌め込む。このとき、図2(a)に示すように、ゴム弾性体13の上側部分の内面とオリフィス盤31の内側突出部61との間に隙間が空いている。これは、ケース2内にオリフィス盤31を組み込む時にオリフィス盤31の内側突出部61をゴム弾性体13の開口部に嵌め込みやすくするためである。なお、このように、ケース2内にこれらのゴム弾性体13、オリフィス盤31、ダイヤフラム40を別々に組み込ませるのではなく、各部材13,31,40を、ケース2内に組み込む前に組み合わせるようにしても良い。また、ゴム弾性体13の上側部分の内面とオリフィス盤31の内側突出部61との間にクリアランスがあるが、このクリアランスはなくてもよい。   First, a rubber elastic body 13 that is attached to the connection fitting 12 and in which the cylindrical member 11 is embedded is press-fitted into the case 2. Next, the orifice board 31 is fitted into the case 2 in which the rubber elastic body 13 is incorporated. Next, the diaphragm 40 connected with the annular metal fitting 37 is fitted into the case 2 in which the rubber elastic body 13 and the orifice board 31 are incorporated. At this time, as shown in FIG. 2A, a gap is left between the inner surface of the upper portion of the rubber elastic body 13 and the inner protrusion 61 of the orifice board 31. This is to make it easier to fit the inner protrusion 61 of the orifice plate 31 into the opening of the rubber elastic body 13 when the orifice plate 31 is assembled in the case 2. In this way, the rubber elastic body 13, the orifice plate 31, and the diaphragm 40 are not separately incorporated in the case 2, but the members 13, 31, and 40 are combined before being incorporated in the case 2. Anyway. Further, although there is a clearance between the inner surface of the upper portion of the rubber elastic body 13 and the inner protruding portion 61 of the orifice plate 31, this clearance may not be required.

そして、ケース2のフランジ部2aで、ゴム弾性体13に埋設された円筒部材11のフランジ部11b及びダイヤフラム40に連結された環状金具37の鍔部37cの外周端部をかしめる。このように、ケース2のフランジ部2aで円筒部材11のフランジ部11b及び環状金具37の鍔部37cをかしめると、図2(b)に示すように、ゴム弾性体13の開口端部がオリフィス盤31に押し付けられることによって径方向内方に向かって膨らみ、これに伴って、オリフィス盤31の内側突出部61がゴム弾性体13の上側部分の内面に密着する。これにより、防振マウント装置1が得られる。   Then, the flange portion 2 a of the case 2 caulks the outer peripheral end portion of the flange portion 11 b of the cylindrical member 11 embedded in the rubber elastic body 13 and the flange portion 37 c of the annular metal fitting 37 connected to the diaphragm 40. In this way, when the flange portion 11b of the cylindrical member 11 and the flange portion 37c of the annular metal member 37 are caulked with the flange portion 2a of the case 2, as shown in FIG. By being pressed against the orifice platen 31 swells inwardly in the radial direction, the inner projecting portion 61 of the orifice platen 31 comes into close contact with the inner surface of the upper portion of the rubber elastic body 13. Thereby, the anti-vibration mount apparatus 1 is obtained.

−本発明の防振マウント装置及び従来品の振動騒音評価−
以下、図3を参照しながら、本実施形態の防振マウント装置1及び従来品の振動騒音評価について説明する。
-Vibration and noise evaluation of anti-vibration mount device of the present invention and conventional products-
Hereinafter, the vibration and noise evaluation of the vibration isolating mount device 1 of the present embodiment and the conventional product will be described with reference to FIG.

従来品は、オリフィス盤31の下面に内側突出部61を設けていないものであり、その他の点に関しては、本実施形態の防振マウント装置1の構成とほぼ同様である。   The conventional product does not have the inner projecting portion 61 on the lower surface of the orifice board 31, and the other points are substantially the same as the configuration of the vibration-proof mount device 1 of the present embodiment.

そして、本実施形態の防振マウント装置1及び従来品をそれぞれ車体側に連結される接続部材に連結し、各防振マウント装置1にパワープラントの重さ相当の荷重をかけ、その状態で各防振マウント装置1に周波数が10Hz、振幅が3mmの振動を上下方向に加え、本実施形態の防振マウント装置1及び従来品に係る接続部材の水平方向の振動(以下、水平振動という)の周波数及び加速度振幅をそれぞれ測定した。   Then, the vibration isolating mount device 1 of the present embodiment and the conventional product are respectively coupled to connection members coupled to the vehicle body side, and a load corresponding to the weight of the power plant is applied to each vibration isolating mount device 1. A vibration having a frequency of 10 Hz and an amplitude of 3 mm is applied to the vibration isolating mount device 1 in the vertical direction, and horizontal vibration (hereinafter referred to as horizontal vibration) of the vibration isolating mount device 1 of the present embodiment and the connection member according to the conventional product is applied. Frequency and acceleration amplitude were measured respectively.

図3は、本実施形態の防振マウント装置1及び従来品に係る接続部材の水平振動の周波数及び加速度振幅の関係を示す図である。図3では、実線が本実施形態の防振マウント装置1に係る接続部材の水平振動の周波数及び加速度振幅の関係を、破線が従来品に係る接続部材の水平振動の周波数及び加速度振幅の関係を示している。図3に示すように、異音の発生する異音周波数帯(250〜550Hz)では、本実施形態の防振マウント装置1に係る接続部材の水平振動の加速度振幅が、同じ振動周波数で比較すると、従来品に係る接続部材よりも小さくなっている(但し、一部を除く)。つまり、異音周波数帯では、本実施形態の防振マウント装置1によれば、従来品と比較して、車内等で異音が発生することが抑制される。   FIG. 3 is a diagram illustrating the relationship between the horizontal vibration frequency and the acceleration amplitude of the anti-vibration mount device 1 of the present embodiment and the connection member according to the conventional product. In FIG. 3, the solid line represents the relationship between the horizontal vibration frequency and acceleration amplitude of the connection member according to the vibration-proof mount device 1 of the present embodiment, and the broken line represents the relationship between the horizontal vibration frequency and acceleration amplitude of the connection member according to the conventional product. Show. As shown in FIG. 3, in the abnormal sound frequency band (250 to 550 Hz) where abnormal noise occurs, when the acceleration amplitude of the horizontal vibration of the connecting member according to the vibration isolating mount device 1 of the present embodiment is compared at the same vibration frequency. It is smaller than the connection member according to the conventional product (however, some are excluded). That is, in the abnormal frequency band, according to the vibration proof mount device 1 of the present embodiment, the generation of abnormal noise in the vehicle or the like is suppressed as compared with the conventional product.

−効果−
以上により、本実施形態によれば、オリフィス盤31の下面に、ゴム弾性体13の内周面に接触するように下方に向かって突出する内側突出部61を設けているので、オリフィス盤31の水平方向の支持剛性が高くなり、防振マウント装置1に低周波・大振幅振動が上下方向に加わったときにオリフィス盤31が水平方向に振動することを抑制することができる。このため、車内等で異音が発生することを抑制することができる。
-Effect-
As described above, according to the present embodiment, the inner protrusion 61 that protrudes downward is provided on the lower surface of the orifice plate 31 so as to contact the inner peripheral surface of the rubber elastic body 13. The support rigidity in the horizontal direction is increased, and it is possible to suppress the orifice board 31 from vibrating in the horizontal direction when low-frequency and large-amplitude vibration is applied to the vibration-proof mount device 1 in the vertical direction. For this reason, generation | occurrence | production of unusual noise in the vehicle etc. can be suppressed.

また、円筒部材11のフランジ部11b及び環状金具37を、パワープラント側に連結されるケース2のフランジ部2aでかしめているので、このかしめによりゴム弾性体13の開口端部がオリフィス盤31に押し付けられることによって径方向内方に向かって膨らむ。このため、ケース2内にオリフィス盤31を組み込む時にオリフィス盤31の内側突出部61をゴム弾性体13の開口部に嵌め込みやすくするため、ゴム弾性体13の内周面と内側突出部61との間に隙間が空いていても、内側突出部61をゴム弾性体13の内周面に接触させることができる。   Further, since the flange portion 11b of the cylindrical member 11 and the annular fitting 37 are caulked by the flange portion 2a of the case 2 connected to the power plant side, the open end portion of the rubber elastic body 13 is brought into contact with the orifice plate 31 by this caulking. By being pressed, it swells inward in the radial direction. For this reason, when the orifice board 31 is assembled into the case 2, the inner protrusion 61 of the orifice board 31 is easily fitted into the opening of the rubber elastic body 13. Even if there is a gap between them, the inner protrusion 61 can be brought into contact with the inner peripheral surface of the rubber elastic body 13.

(実施形態2)
本実施形態は、図4に示すように、オリフィス盤31の下面の外周側にさらに、上記円筒部材11のフランジ部11bの外周端部に接触するように下方に向かって突起する1つの外側突出部62が一体に設けられているものである。この外側突出部62は、上記内側突出部61とゴム弾性体13を挟んで対向するように配置されている。そして、オリフィス盤31の外周端部は、ケース2のフランジ部2aに円筒部材11のフランジ部11b及び環状金具37の鍔部37cの外周端部とともにかしめられている。その他の点に関しては、実施形態1とほぼ同様である。
(Embodiment 2)
In the present embodiment, as shown in FIG. 4, one outer protrusion protrudes downward on the outer peripheral side of the lower surface of the orifice plate 31 so as to contact the outer peripheral end of the flange portion 11 b of the cylindrical member 11. The part 62 is provided integrally. The outer protrusion 62 is disposed so as to face the inner protrusion 61 with the rubber elastic body 13 interposed therebetween. The outer peripheral end portion of the orifice board 31 is caulked to the flange portion 2 a of the case 2 together with the outer peripheral end portion of the flange portion 11 b of the cylindrical member 11 and the flange portion 37 c of the annular metal fitting 37. The other points are almost the same as in the first embodiment.

−効果−
以上により、本実施形態によれば、オリフィス盤31の下面に、円筒部材11のフランジ部11bの外周端部に接触するように下方に向かって突出する外側突出部62をさらに設けているので、オリフィス盤31の水平方向の支持剛性が一層高くなり、防振マウント装置1に低周波・大振幅振動が上下方向に加わったときにオリフィス盤31が水平方向に振動することを確実に抑制することができる。このため、車内等で異音が発生することを確実に抑制することができる。
-Effect-
As described above, according to the present embodiment, the outer protrusion 62 that protrudes downward is provided on the lower surface of the orifice plate 31 so as to contact the outer peripheral end of the flange portion 11b of the cylindrical member 11. The horizontal support rigidity of the orifice plate 31 is further increased, and it is possible to reliably suppress the orifice plate 31 from vibrating in the horizontal direction when low-frequency and large-amplitude vibrations are applied to the vibration-proof mount device 1 in the vertical direction. Can do. For this reason, it is possible to reliably suppress the generation of abnormal noise in the vehicle or the like.

(実施形態3)
本実施形態は、図5に示すように、上記内側突出部61の外面(すなわち、ゴム弾性体13径方向外側面)に、外方(すなわち、ゴム弾性体13径方向外側)に向かって突起し、上記オリフィス盤13を上記ゴム弾性体13に位置決めするための位置決め突出部61aが設けられているものである。この位置決め突出部61aは、上記かしめ時にゴム弾性体13の開口端部が内方に向かって膨らむことによってゴム弾性体13の上側部分にめり込む。これにより、オリフィス盤13がゴム弾性体13に位置決めされる。なお、ゴム弾性体13の位置決め突出部61aがはまり込む部分に、位置決め突出部用凹部を形成してもよい。その他の点に関しては、実施形態1とほぼ同様である。
(Embodiment 3)
In the present embodiment, as shown in FIG. 5, the outer protrusion of the inner protrusion 61 (that is, the outer surface in the radial direction of the rubber elastic body 13) protrudes outward (that is, the outer side in the radial direction of the rubber elastic body 13). A positioning projection 61a for positioning the orifice plate 13 on the rubber elastic body 13 is provided. The positioning protrusion 61a is recessed into the upper portion of the rubber elastic body 13 when the open end of the rubber elastic body 13 bulges inward during the caulking. Thereby, the orifice board 13 is positioned on the rubber elastic body 13. In addition, you may form the recessed part for positioning protrusions in the part in which the positioning protrusion 61a of the rubber elastic body 13 fits. The other points are almost the same as in the first embodiment.

−効果−
以上により、本実施形態によれば、内側突出部61の外面に、外方に向かって突出し、オリフィス盤31をゴム弾性体13に位置決めするための位置決め突出部61aを設けているので、オリフィス盤31をゴム弾性体13に簡単に位置決めすることができる。
-Effect-
As described above, according to the present embodiment, the outer surface of the inner protrusion 61 protrudes outward and the positioning protrusion 61a for positioning the orifice disk 31 on the rubber elastic body 13 is provided. 31 can be easily positioned on the rubber elastic body 13.

なお、本実施形態では、オリフィス盤31の下面に実施形態2に係る外側突出部62を設けていないが、設けてもよい。   In the present embodiment, the outer protrusion 62 according to the second embodiment is not provided on the lower surface of the orifice board 31, but may be provided.

(その他の実施形態)
上記各実施形態では、ケース2のフランジ部2aで円筒部材11のフランジ部11b及び環状金具37の鍔部37cをかしめることによって、内側突出部61をゴム弾性体13の内周面と接触させているが、内側突出部61がゴム弾性体13の内周面に接触する限り、如何なる手段で接触させてもよい。
(Other embodiments)
In each of the embodiments described above, the inner protrusion 61 is brought into contact with the inner peripheral surface of the rubber elastic body 13 by caulking the flange portion 11b of the cylindrical member 11 and the flange portion 37c of the annular fitting 37 with the flange portion 2a of the case 2. However, as long as the inner protrusion 61 is in contact with the inner peripheral surface of the rubber elastic body 13, it may be contacted by any means.

また、上記各実施形態では、上記内側突出部61を、上記オリフィス盤31の下面に1つだけ設けているが、これに限らず、例えば、内側突出部61を、オリフィス盤31の下面に互いに周方向に等間隔で複数配設したり、オリフィス盤31の下面に周方向全域に亘って延びるように設けたりしてもよい。前者によれば、内側突出部61を、オリフィス盤31の下面に互いに周方向に等間隔で複数配設しているので、オリフィス盤31の水平方向の支持剛性がバランス良く高くなり、防振マウント装置1に低周波・大振幅振動が上下方向に加わったときにオリフィス盤31が水平方向に振動することを確実に抑制することができる。このため、車内等で異音が発生することを確実に抑制することができる。後者によれば、内側突出部61を、オリフィス盤31の下面に周方向全域に亘って延びるように設けているので、オリフィス盤31の水平方向の支持剛性が一層高くなり、防振マウント装置1に低周波・大振幅振動が上下方向に加わったときにオリフィス盤31が水平方向に振動することを確実に抑制することができる。このため、車内等で異音が発生することを確実に抑制することができる。さらに、上記実施形態2では、内側突出部61を、オリフィス盤31の下面に互いに周方向に等間隔で複数配設したり、オリフィス盤31の下面に周方向全域に亘って延びるように設けたりした場合、外側突出部62も、オリフィス盤31の下面に互いに周方向に等間隔で複数配設したり、オリフィス盤31の下面に周方向全域に亘って延びるように設けたりしてもよい。   In each of the above embodiments, only one inner protruding portion 61 is provided on the lower surface of the orifice plate 31. However, the present invention is not limited to this. For example, the inner protruding portions 61 are arranged on the lower surface of the orifice plate 31. A plurality may be provided at equal intervals in the circumferential direction, or may be provided on the lower surface of the orifice board 31 so as to extend over the entire circumferential direction. According to the former, a plurality of inner protrusions 61 are arranged on the lower surface of the orifice plate 31 at equal intervals in the circumferential direction, so that the horizontal support rigidity of the orifice plate 31 is improved in a well-balanced manner, and the vibration-proof mount When the low frequency / large amplitude vibration is applied to the apparatus 1 in the vertical direction, the orifice plate 31 can be reliably prevented from vibrating in the horizontal direction. For this reason, it is possible to reliably suppress the generation of abnormal noise in the vehicle or the like. According to the latter, since the inner projecting portion 61 is provided on the lower surface of the orifice plate 31 so as to extend over the entire circumferential direction, the horizontal support rigidity of the orifice plate 31 is further increased, and the anti-vibration mount device 1 is provided. In addition, when the low frequency / large amplitude vibration is applied in the vertical direction, the orifice plate 31 can be reliably prevented from vibrating in the horizontal direction. For this reason, it is possible to reliably suppress the generation of abnormal noise in the vehicle or the like. Further, in the second embodiment, a plurality of inner protrusions 61 are arranged on the lower surface of the orifice plate 31 at equal intervals in the circumferential direction, or provided on the lower surface of the orifice plate 31 so as to extend over the entire circumferential direction. In this case, a plurality of the outer protrusions 62 may be provided on the lower surface of the orifice plate 31 at equal intervals in the circumferential direction, or may be provided on the lower surface of the orifice plate 31 so as to extend over the entire circumferential direction.

本発明は、実施形態に限定されず、その精神又は主要な特徴から逸脱することなく他の色々な形で実施することができる。   The present invention is not limited to the embodiments, and can be implemented in various other forms without departing from the spirit or main features thereof.

このように、上述の実施形態はあらゆる点で単なる例示に過ぎず、限定的に解釈してはならない。本発明の範囲は請求の範囲によって示すものであって、明細書本文には何ら拘束されない。さらに、請求の範囲の均等範囲に属する変形や変更は、全て本発明の範囲内のものである。   As described above, the above-described embodiment is merely an example in all respects and should not be interpreted in a limited manner. The scope of the present invention is indicated by the claims, and is not restricted by the text of the specification. Further, all modifications and changes belonging to the equivalent scope of the claims are within the scope of the present invention.

以上説明したように、本発明に係る液体封入式防振装置は、車内等で異音が発生することを抑制するための用途等について適用できる。   As described above, the liquid-filled vibration isolator according to the present invention can be applied for use for suppressing the occurrence of abnormal noise in a vehicle or the like.

本発明の実施形態に係る防振マウント装置の断面図である。It is sectional drawing of the vibration proof mount apparatus which concerns on embodiment of this invention. 防振マウント装置の製造工程を示す図であり、(a)は、ケース内にゴム弾性体、オリフィス盤、ダイヤフラムを組み込ませた状態における防振マウント装置の、ゴム弾性体のオリフィス盤支持部分の拡大断面図であり、(b)は、ケースのフランジ部で円筒部材のフランジ部及び環状金具の鍔部をかしめた状態における防振マウント装置の、ゴム弾性体のオリフィス盤支持部分の拡大断面図である。It is a figure which shows the manufacturing process of an anti-vibration mount apparatus, (a) is the orifice board support part of the rubber elastic body of the anti-vibration mount apparatus in the state which incorporated the rubber elastic body, the orifice board, and the diaphragm in the case. It is an expanded sectional view, (b) is an expanded sectional view of the orifice board support portion of the rubber elastic body of the vibration isolating mount device in a state where the flange portion of the cylindrical member and the flange portion of the annular metal fitting are caulked by the flange portion of the case It is. 実施形態の防振マウント装置及び従来品に係る接続部材の水平振動の周波数及び加速度振幅の関係を示す図である。It is a figure which shows the relationship of the frequency and acceleration amplitude of the horizontal vibration of the connection member which concerns on the vibration isolating mount apparatus of embodiment, and a conventional product. 防振マウント装置の、ゴム弾性体のオリフィス盤支持部分の拡大断面図である。It is an expanded sectional view of the orifice board support part of a rubber elastic body of an anti-vibration mount device. 防振マウント装置の、ゴム弾性体のオリフィス盤支持部分の拡大断面図である。It is an expanded sectional view of the orifice board support part of a rubber elastic body of an anti-vibration mount device.

1 防振マウント装置(液体封入式防振装置)
2 ケース(第2取付部材)
2a フランジ部
11 円筒部材(埋設部材)
11a 本体部
11b フランジ部
12 連結金具(第1取付部材)
13 ゴム弾性体(弾性部材)
31 オリフィス盤(区画部材)
33 液室
33a 受圧室
33b 平衡室
34 オリフィス通路
35 可動板
37 環状金具(連結部材)
40 ダイヤフラム(弾性ダイヤフラム)
61 内側突出部
61a 位置決め突出部
62 外側突出部
1 Anti-vibration mount device (liquid-filled anti-vibration device)
2 Case (second mounting member)
2a Flange 11 Cylindrical member (embedded member)
11a Main body 11b Flange 12 Connecting metal fitting (first mounting member)
13 Rubber elastic body (elastic member)
31 Orifice panel (partition member)
33 Liquid chamber 33a Pressure receiving chamber 33b Equilibrium chamber 34 Orifice passage 35 Movable plate 37 Annular fitting (connecting member)
40 Diaphragm (elastic diaphragm)
61 Inner protrusion 61a Positioning protrusion 62 Outer protrusion

Claims (6)

支持体側及び被支持体側にそれぞれ連結される第1及び第2取付部材と、該両取付部材を弾性連結し、上側部分が上方に向かって開口し、弾性変形により上記両取付部材を相対変位させる弾性部材と、該弾性部材の開口部を覆って液室を形成する弾性ダイヤフラムと、上記ダイヤフラムと上記弾性部材の開口端部との間に挟まれることによって該ダイヤフラムと上記弾性部材の開口端部とで弾性支持され、上記液室を受圧室及び平衡室に区画する区画部材と、上記受圧室及び上記平衡室を連通するオリフィス通路と、該区画部材の内部空間に収容された可動板とを備えた液体封入式防振装置であって、
上記区画部材の下面には、上記弾性部材の内周面に接触するように下方に向かって突出する内側突出部が設けられていることを特徴とする液体封入式防振装置。
The first and second mounting members connected to the support side and the supported side, respectively, and the both mounting members are elastically connected, the upper portion opens upward, and the two mounting members are relatively displaced by elastic deformation. an elastic member, an elastic diaphragm forming a liquid chamber covers the opening of the elastic member, the open end of the diaphragm and the elastic member by Rukoto sandwiched between the open end of the diaphragm and the elastic member A partition member that is elastically supported by the section and divides the liquid chamber into a pressure receiving chamber and an equilibrium chamber, an orifice passage that communicates the pressure receiving chamber and the equilibrium chamber, and a movable plate accommodated in an internal space of the partition member; A liquid-filled vibration isolator comprising:
The liquid-filled vibration isolator, wherein an inner projecting portion projecting downward is provided on the lower surface of the partition member so as to contact the inner peripheral surface of the elastic member.
請求項1記載の液体封入式防振装置において、
上記内側突出部は、上記区画部材の下面に互いに周方向に等間隔で複数配設されていることを特徴とする液体封入式防振装置。
The liquid-filled vibration isolator according to claim 1,
A plurality of the inner projecting portions are disposed on the lower surface of the partition member at equal intervals in the circumferential direction.
請求項1記載の液体封入式防振装置において、
上記内側突出部は、上記区画部材の下面に周方向全域に亘って延びるように設けられていることを特徴とする液体封入式防振装置。
The liquid-filled vibration isolator according to claim 1,
The liquid-filled vibration isolator, wherein the inner projecting portion is provided on the lower surface of the partition member so as to extend over the entire circumferential direction.
請求項1〜3のいずれか1つに記載の液体封入式防振装置において、
上記第2取付部材は、筒状に形成されていて、上端の開口端部にフランジ部が設けられ、
上記弾性部材には、該弾性部材に埋設された本体部と該弾性部材の外周面から径方向外方に向かって突出するフランジ部とを有する埋設部材が設けられ、
上記ダイヤフラムの外周部には連結部材が連結され、
上記埋設部材のフランジ部及び上記連結部材は、上記第2取付部材のフランジ部にかしめられていることを特徴とする液体封入式防振装置。
In the liquid enclosure type vibration isolator as described in any one of Claims 1-3,
The second mounting member is formed in a cylindrical shape, and a flange portion is provided at the opening end of the upper end.
The elastic member is provided with an embedded member having a main body portion embedded in the elastic member and a flange portion protruding radially outward from the outer peripheral surface of the elastic member,
A connecting member is connected to the outer periphery of the diaphragm,
The liquid-filled vibration damping device, wherein the flange portion of the embedded member and the connecting member are caulked to the flange portion of the second mounting member.
請求項4記載の液体封入式防振装置において、
上記区画部材の下面には、上記埋設部材のフランジ部の外周端部に接触するように下方に向かって突出する外側突出部がさらに設けられていることを特徴とする液体封入式防振装置。
The liquid-filled vibration isolator according to claim 4,
The liquid filled type vibration damping device further comprising an outer projecting portion projecting downward so as to contact the outer peripheral end of the flange portion of the embedded member on the lower surface of the partition member.
請求項1〜5のいずれか1つに記載の液体封入式防振装置において、
上記内側突出部の外面には、外方に向かって突出し、上記区画部材を上記弾性部材に位置決めするための位置決め突出部が設けられていることを特徴とする液体封入式防振装置。
In the liquid-filled vibration isolator according to any one of claims 1 to 5,
A liquid-filled type vibration damping device, characterized in that a positioning protrusion is provided on an outer surface of the inner protrusion so as to protrude outward and to position the partition member on the elastic member.
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