JP2008196630A - Liquid-sealed mount device - Google Patents

Liquid-sealed mount device Download PDF

Info

Publication number
JP2008196630A
JP2008196630A JP2007033551A JP2007033551A JP2008196630A JP 2008196630 A JP2008196630 A JP 2008196630A JP 2007033551 A JP2007033551 A JP 2007033551A JP 2007033551 A JP2007033551 A JP 2007033551A JP 2008196630 A JP2008196630 A JP 2008196630A
Authority
JP
Japan
Prior art keywords
chamber
plate
soundproof
pressure receiving
movable plate
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP2007033551A
Other languages
Japanese (ja)
Other versions
JP4887171B2 (en
Inventor
Nozomi Inoue
望 井上
Toru Nakano
徹 中野
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Daihatsu Motor Co Ltd
Original Assignee
Daihatsu Motor Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Daihatsu Motor Co Ltd filed Critical Daihatsu Motor Co Ltd
Priority to JP2007033551A priority Critical patent/JP4887171B2/en
Publication of JP2008196630A publication Critical patent/JP2008196630A/en
Application granted granted Critical
Publication of JP4887171B2 publication Critical patent/JP4887171B2/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Arrangement Or Mounting Of Propulsion Units For Vehicles (AREA)
  • Combined Devices Of Dampers And Springs (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To provide a liquid-sealed mount device effectively attenuating high-frequency vibration having a relatively small amplitude while suppressing generation of slapping sound when low-frequency vibration having a relatively large amplitude is inputted, and easily designable and manufacturable in response to the difference of a vibration characteristic or the like of an engine. <P>SOLUTION: This liquid-sealed mount device 1 is provided, in an intermediate chamber B, with: a movable member 20 movable in the intermediate chamber B following flow of a liquid between a pressure reception chamber A and an equilibrium chamber C through the intermediate chamber B; a first soundproof member 30 arranged between a wall part of the intermediate chamber B on the pressure reception chamber A side and the movable member 20; and a second soundproof member 30 arranged between a wall part of the intermediate chamber B on the equilibrium chamber C side and the movable member 20. The area of a pressure reception surface 22 of the movable member 20 is set larger than those of pressure reception surfaces 33 of the first and second soundproof members 30, 30. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本発明は、仕切部材に、受圧室と平衡室を相互に連通するオリフィス通路と、受圧室と平衡室を相互に連通する中間室とを設けて、受圧室、平衡室及び中間室に非圧縮性の液体を封入してある液体封入式マウント装置に関する。   In the present invention, the partition member is provided with an orifice passage that allows the pressure receiving chamber and the equilibrium chamber to communicate with each other, and an intermediate chamber that allows the pressure receiving chamber and the equilibrium chamber to communicate with each other, so that the pressure receiving chamber, the equilibrium chamber, and the intermediate chamber are not compressed. The present invention relates to a liquid-sealed mount device in which a liquid of the nature is sealed.

従来の技術としては、例えば特許文献1に開示されているように、作動室(特許文献1の図1の8)と平衡室(特許文献1の図1の9)とを連通する空所内にディスク(特許文献1の図1の11)を配設し、このディスクの空所内における少量の変位によって作動室内の容積を可変にすることにより、作動室の液圧の上昇を吸収して、振幅の比較的小さい高周波振動を抑制し、車両等の乗り心地を向上できるように構成された弾性体緩衝支持体が知られている。   As a conventional technique, for example, as disclosed in Patent Document 1, a working chamber (8 in FIG. 1 of Patent Document 1) and an equilibrium chamber (9 in FIG. 1 of Patent Document 1) communicate with each other. By disposing a disk (11 in FIG. 1 of Patent Document 1) and making the volume of the working chamber variable by a small amount of displacement in the space of this disk, the increase in the hydraulic pressure in the working chamber is absorbed and the amplitude is increased. There is known an elastic buffer support that is configured to suppress a relatively small high-frequency vibration and to improve the riding comfort of a vehicle or the like.

特許文献1の弾性体緩衝支持体では、ディスクが穴(特許文献1の図1の12)を塞ぐことにより、ノズル(特許文献1の図1の6)によって振幅の比較的大きい低周波振動を抑制できるように構成されている。そのため、振幅の比較的大きい低周波振動が入力された場合には、ディスクが仕切壁の内面に当接して打音が生じ、エンジンの始動、発進及び停止時における騒音を悪化させる一因になるといった問題があった。   In the elastic buffer support of Patent Document 1, the disk blocks the hole (12 in FIG. 1 of Patent Document 1), so that the nozzle (6 in FIG. 1 of Patent Document 1) generates low frequency vibration having a relatively large amplitude. It is comprised so that it can suppress. Therefore, when low-frequency vibration having a relatively large amplitude is input, the disk comes into contact with the inner surface of the partition wall to generate a hitting sound, which is a cause of worsening noise during engine start, start and stop. There was a problem.

そこで、特許文献2の流体封入式マウント装置が提唱された。特許文献2の流体封入式マウント装置では、受圧室(特許文献2の図1の38)と平衡室(特許文献2の図1の40)とを連通する収容空間(特許文献2の図1の48)に仕切板(特許文献2の図1の54)を配設し、この仕切板に環状突起(特許文献2の図2の56)を設けて、仕切板及び環状突起の弾性変形によって振幅の比較的小さい高周波振動を抑制でき、かつ振幅の比較的大きい低周波振動が入力された場合の打音の発生を防止できるように構成されている。   Therefore, the fluid-filled mount device of Patent Document 2 has been proposed. In the fluid-filled mounting device of Patent Document 2, the accommodation space (FIG. 1 of Patent Document 2) that communicates the pressure receiving chamber (38 of FIG. 1 of Patent Document 2) and the equilibrium chamber (40 of FIG. 1 of Patent Document 2). 48) is provided with a partition plate (54 in FIG. 1 of Patent Document 2), and an annular projection (56 in Patent Document 2 in FIG. 2) is provided on this partition plate, and the amplitude is generated by elastic deformation of the partition plate and the annular projection. Therefore, it is possible to suppress the occurrence of a hitting sound when a low frequency vibration having a relatively large amplitude is input.

特開昭57−9340号公報(図1参照)JP-A-57-9340 (see FIG. 1) 実開昭64−14941号公報(図1、図2、及び第4〜6頁参照)Japanese Utility Model Publication No. 64-14941 (see FIGS. 1, 2 and 4 to 6)

しかし、特許文献2の流体封入式マウント装置では、仕切板及び環状突起の弾性変形によって振幅の比較的小さい高周波振動を抑制するように構成されており、振幅の比較的大きい低周波振動が入力された場合の打音の発生を抑制できるといった利点を有する反面、仕切板及び環状突起の弾性変形による変位量が少なく、受圧室の液圧の上昇を十分に吸収することができず、振幅の比較的小さい高周波振動を効果的に減衰させることが困難であるといった問題があった。   However, the fluid-filled mounting device disclosed in Patent Document 2 is configured to suppress high-frequency vibrations having a relatively small amplitude by elastic deformation of the partition plate and the annular protrusion, and low-frequency vibrations having a relatively large amplitude are input. However, the amount of displacement due to elastic deformation of the partition plate and annular projection is small, and the increase in the fluid pressure in the pressure receiving chamber cannot be absorbed sufficiently, and the amplitude is compared. There is a problem that it is difficult to effectively attenuate a small high frequency vibration.

また、特許文献2の流体封入式マウント装置では、エンジンの振動特性等の差異に応じた流体封入式マウント装置を設計及び製作することが困難であるといった問題があった。具体的には、例えば流体封入式マウント装置に載置するエンジンの振動特性等が異なる場合に、比較的設計変更等が容易な仕切板や環状突起の形状や材質を変更することによって、異なるエンジンの振動特性等に合致させようとしても、環状突起を含む仕切板を収容する収容空間の広さは決まっており仕切板や環状突起の形状を大きく変更することができない。そのため、エンジンの振動特性等の差異に応じた流体封入式マウント装置を設計及び製作することが困難であった。   In addition, the fluid-filled mount device disclosed in Patent Document 2 has a problem that it is difficult to design and manufacture a fluid-filled mount device according to the difference in vibration characteristics and the like of the engine. Specifically, for example, when the vibration characteristics of the engine mounted on the fluid-filled mounting device are different, different engines can be obtained by changing the shape and material of the partition plate and the annular projection that are relatively easy to change the design. Even if it is intended to match the vibration characteristics, the size of the accommodating space for accommodating the partition plate including the annular protrusion is determined, and the shape of the partition plate and the annular protrusion cannot be changed greatly. For this reason, it has been difficult to design and manufacture a fluid-filled mount device according to the difference in vibration characteristics of the engine.

本発明は、振幅の比較的大きい低周波振動が入力された場合の打音の発生を抑制しながら、振幅の比較的小さい高周波振動を効果的に減衰させることができ、エンジンの振動特性等の差異に応じて容易に設計及び製作できる液体封入式マウント装置を実現することを目的とする。   The present invention can effectively attenuate high-frequency vibrations with relatively small amplitudes while suppressing the occurrence of hitting sound when low-frequency vibrations with relatively large amplitudes are input, An object of the present invention is to realize a liquid-sealed mounting device that can be easily designed and manufactured according to the difference.

[I]
(構成)
本発明の第1特徴は、液体封入式マウント装置を、次のように構成することにある。
所定の間隔を隔てて配設された第1取付部材と第2取付部材とをゴム弾性体で連結し、壁部の一部が前記ゴム弾性体で構成された受圧室と、壁部の一部が可撓性膜で構成された平衡室とを仕切部材を間に挟んで形成し、前記仕切部材に、前記受圧室と前記平衡室とを相互に連通するオリフィス通路と、前記受圧室と前記平衡室とを相互に連通する中間室とを設けて、前記受圧室、平衡室及び中間室に非圧縮性の液体を封入し、
前記中間室に、前記中間室を介した前記受圧室と前記平衡室との間の液体の流動に伴って前記中間室内を移動可能な可動部材と、前記中間室の受圧室側の壁部と前記可動部材との間に配設された第1防音部材と、前記中間室の平衡室側の壁部と前記可動部材との間に配設された第2防音部材とを備え、
前記可動部材の受圧面の面積を、前記第1及び第2防音部材の受圧面の面積より広く設定する。
[I]
(Constitution)
The first feature of the present invention is that the liquid-sealed mount device is configured as follows.
A first mounting member and a second mounting member arranged at a predetermined interval are connected by a rubber elastic body, and a pressure receiving chamber in which a part of the wall portion is configured by the rubber elastic body, and a wall portion. An equilibrium chamber formed of a flexible membrane with a partition member interposed therebetween, an orifice passage communicating the pressure receiving chamber and the equilibrium chamber with each other, and the pressure receiving chamber An intermediate chamber that communicates with the equilibrium chamber is provided, and an incompressible liquid is sealed in the pressure receiving chamber, the equilibrium chamber, and the intermediate chamber,
A movable member capable of moving in the intermediate chamber as the liquid flows between the pressure receiving chamber and the equilibrium chamber via the intermediate chamber; and a wall portion on the pressure receiving chamber side of the intermediate chamber; A first soundproofing member disposed between the movable member and a second soundproofing member disposed between the wall on the equilibrium chamber side of the intermediate chamber and the movable member;
The area of the pressure receiving surface of the movable member is set wider than the areas of the pressure receiving surfaces of the first and second soundproof members.

(作用)
本発明の第1特徴によると、液体封入式マウント装置に振幅の比較的大きい低周波振動が入力されて受圧室(又は平衡室)から中間室を介して平衡室(又は受圧室)に液体が流動すると、受圧面の面積が大きく設定された可動部材が、受圧面の面積が小さく設定された第1及び第2防音部材より速く中間室内を移動し、可動部材が第2防音部材(又は第1防音部材)に追いついて当接し、可動部材の移動する速度が遅くなって、可動部材が第2防音部材(又は第1防音部材)とともに減速されて中間室の平衡室側(又は受圧室側)の壁部に当接する。その結果、可動部材が第1又は第2防音部材を介して中間室の壁部に当接することによる打音が発生し難くなる。
(Function)
According to the first feature of the present invention, a low-frequency vibration having a relatively large amplitude is input to the liquid-sealed mount device, and the liquid flows from the pressure receiving chamber (or the equilibrium chamber) to the equilibrium chamber (or the pressure receiving chamber) through the intermediate chamber. When the fluid flows, the movable member having a large pressure-receiving surface area moves in the intermediate chamber faster than the first and second sound-proof members having a small pressure-receiving surface area, and the movable member moves to the second sound-proof member (or the first sound-proof member). (1 soundproofing member) catches up and abuts, and the moving speed of the movable member becomes slow, the movable member is decelerated together with the second soundproofing member (or first soundproofing member), and the equilibrium chamber side (or pressure receiving chamber side) of the intermediate chamber ). As a result, it is difficult for the movable member to generate a hitting sound due to contact with the wall portion of the intermediate chamber via the first or second soundproofing member.

本発明の第1特徴によると、液体封入式マウント装置に振幅の比較的小さい高周波振動が入力されると、可動部材が移動することによって受圧室の容積が比較的多く変化し、受圧室の液圧の上昇を比較的多く吸収して、振幅の比較的小さい高周波振動を効果的に減衰させることができる。   According to the first feature of the present invention, when a high-frequency vibration having a relatively small amplitude is input to the liquid-sealed mount device, the volume of the pressure receiving chamber changes relatively by moving the movable member, and the liquid in the pressure receiving chamber is changed. A relatively large increase in pressure can be absorbed, and high-frequency vibrations having a relatively small amplitude can be effectively damped.

本発明の第1特徴によると、例えば可動部材の受圧面の面積と、第1及び第2防音部材の受圧面の面積との面積比を変更することによって、第1及び第2防音部材に対する可動部材の移動速度を速く(又は遅く)設定することができる。その結果、エンジンの振動特性等が異なる場合であっても、可動部材の受圧面の面積と、第1及び第2防音部材の受圧面の面積との面積比を変更することによって、エンジンの振動特性等の差異に応じた液体封入式マウント装置を容易に設計及び製作することができる。   According to the first feature of the present invention, for example, by changing the area ratio between the area of the pressure receiving surface of the movable member and the area of the pressure receiving surface of the first and second soundproof members, the movable relative to the first and second soundproof members can be achieved. The moving speed of the member can be set fast (or slow). As a result, even if the vibration characteristics of the engine are different, the vibration of the engine can be changed by changing the area ratio between the area of the pressure receiving surface of the movable member and the area of the pressure receiving surface of the first and second soundproof members. It is possible to easily design and manufacture a liquid-sealed mounting device corresponding to differences in characteristics and the like.

(発明の効果)
本発明の第1特徴によると、振幅の比較的大きい低周波振動が入力された場合の打音の発生を抑制でき、エンジンの始動、発進及び停止時における騒音を低減できる。
(The invention's effect)
According to the first feature of the present invention, it is possible to suppress the generation of a hitting sound when low-frequency vibration having a relatively large amplitude is input, and to reduce noise at the time of starting, starting and stopping the engine.

本発明の第1特徴によると、可動部材の移動によって振幅の比較的小さい高周波振動を効果的に抑制することができ、車両等の乗り心地を向上させることができる。   According to the first feature of the present invention, high-frequency vibration having a relatively small amplitude can be effectively suppressed by the movement of the movable member, and the riding comfort of the vehicle or the like can be improved.

本発明の第1特徴によると、液体封入式マウント装置の設計及び製作作業の作業性を向上させることができ、製造コストを削減できる。   According to the first feature of the present invention, it is possible to improve the workability of the design and manufacturing work of the liquid-filled mount device, and the manufacturing cost can be reduced.

〔エンジンマウントの全体構成〕
図1〜図3に基づいてエンジンマウント1(液体封入式マウント装置に相当)について説明する。図1及び図2は、エンジンマウント1の縦断側面図及び横断平面図をそれぞれ示し、図3は、中間室B付近の詳細縦断側面図を示す。なお、図2は、図1のX−Xの位置での横断平面図を示す。また、以下の説明において、図1の紙面上方及び紙面下方をそれぞれ上方及び下方と表示する(図3〜図6においても同様)。
[Overall configuration of engine mount]
The engine mount 1 (corresponding to a liquid-filled mounting device) will be described with reference to FIGS. 1 and 2 show a longitudinal side view and a transverse plan view of the engine mount 1, respectively, and FIG. 3 shows a detailed longitudinal side view of the vicinity of the intermediate chamber B. 2 shows a cross-sectional plan view at the position XX in FIG. Further, in the following description, the upper side and the lower side of the page of FIG.

図1〜図3に示すように、第1取付金具2(第1取付部材に相当)と第2取付金具3(第2取付部材)が所定間隔を開けて配設されており、この第1取付金具2と第2取付金具3とが本体ゴム4(ゴム弾性体に相当)によって弾性的に連結されている。第1取付金具2には、ナット部2aが形成されており、第1取付金具2の上面側にエンジン(図示せず)を載置して、上方からボルト(図示せず)をナット部2aに締め付け固定することで、エンジンマウント1の一方側(上部)をエンジン側に連結できる。   As shown in FIGS. 1 to 3, a first mounting bracket 2 (corresponding to a first mounting member) and a second mounting bracket 3 (second mounting member) are disposed at a predetermined interval. The mounting bracket 2 and the second mounting bracket 3 are elastically connected by a main rubber 4 (corresponding to a rubber elastic body). The first mounting bracket 2 is formed with a nut portion 2a. An engine (not shown) is placed on the upper surface side of the first mounting bracket 2, and a bolt (not shown) is attached to the nut portion 2a from above. The one side (upper part) of the engine mount 1 can be connected to the engine side.

第2取付金具3は、円筒状の支持筒体3aと、この支持筒体3aの下端部から折り曲げ成形されたかしめ部3bとを備えて構成されており、この支持筒体3a又はかしめ部3bを、車体(図示せず)に連結するブラケット(図示せず)に内嵌することで、エンジンマウント1の他方側(下部)を車体側に連結できる。   The second mounting bracket 3 includes a cylindrical support cylinder 3a and a caulking part 3b that is bent from the lower end of the support cylinder 3a, and the support cylinder 3a or the caulking part 3b. Is fitted into a bracket (not shown) connected to a vehicle body (not shown), so that the other side (lower part) of the engine mount 1 can be connected to the vehicle body side.

本体ゴム4には、その下部に、上方に凹入した凹入部4aが形成されており、この凹入部4aと仕切板5によって受圧室Aが形成されている。仕切板5(仕切部材に相当)は、円盤状に形成されており、その中央部に上下に連通する複数の連通口5aが形成され、その側部に上下向きのオリフィス穴5bが形成されている。   The main rubber 4 has a recessed portion 4 a that is recessed upward at the lower portion thereof, and a pressure receiving chamber A is formed by the recessed portion 4 a and the partition plate 5. The partition plate 5 (corresponding to a partition member) is formed in a disc shape, and a plurality of communication ports 5a communicating vertically are formed at the center thereof, and vertically oriented orifice holes 5b are formed at the side portions thereof. Yes.

オリフィス部材10(仕切部材に相当)は、アルミ製で円錐台形状に形成されており、このオリフィス部材10の上部に下方へ円柱状に凹入した第1凹入部11が形成され、この第1凹入部11と仕切板5によって中間室Bが形成されている。オリフィス部材10の側部上面側には上方へ突出した円柱状の位置決め部13が形成されており、この位置決め部13を仕切板5のオリフィス穴5bに係合させることで、仕切板5に対するオリフィス部材10の位置を位置決めができる。オリフィス部材10の下部には、上方へ円柱状に凹入した第2凹入部12が形成されており、この第2凹入部12とダイアフラム6によって平衡室Cが形成されている。   The orifice member 10 (corresponding to a partition member) is made of aluminum and has a truncated cone shape. A first recessed portion 11 is formed in the upper portion of the orifice member 10 so as to be recessed downward in a cylindrical shape. An intermediate chamber B is formed by the recessed portion 11 and the partition plate 5. A cylindrical positioning portion 13 that protrudes upward is formed on the upper surface side of the side portion of the orifice member 10. By engaging the positioning portion 13 with the orifice hole 5 b of the partition plate 5, an orifice for the partition plate 5 is formed. The position of the member 10 can be determined. A second recessed portion 12 is formed in the lower portion of the orifice member 10 so as to be recessed upward in a columnar shape. The equilibrium chamber C is formed by the second recessed portion 12 and the diaphragm 6.

オリフィス部材10の第1凹入部11と第2凹入部12との間には、仕切部14が形成され、この仕切部14に中間室Bと平衡室Cとに連通する連通口15が形成されている。オリフィス部材10の外周部には、断面形状が台形状のオリフィス通路16が形成されており、このオリフィス通路16が仕切板5のオリフィス穴5bから平衡室Cに連通されている。   A partition 14 is formed between the first recess 11 and the second recess 12 of the orifice member 10, and a communication port 15 that communicates with the intermediate chamber B and the equilibrium chamber C is formed in the partition 14. ing. An orifice passage 16 having a trapezoidal cross section is formed in the outer peripheral portion of the orifice member 10, and this orifice passage 16 communicates with the equilibrium chamber C from the orifice hole 5 b of the partition plate 5.

ダイアフラム6は、薄膜製のゴム材によって形成されており、その外周部に位置する取付部6aと、中央部に位置する半球状に上方へ凹入した変化部6bとを備えて構成されており、この変化部6bが上下に弾性変形することで、平衡室Cの容積が受圧室Aからの液体の流入及び流出に伴って変化する。ダイアフラム6の外周部には芯金部材7が埋め込まれており、この芯金部材7の上端部がダイアフラム6から突出した形状に成形され、全周に亘って外方側に折り曲げ成形されたフランジ部7aが形成されている。   The diaphragm 6 is formed of a thin film rubber material, and includes a mounting portion 6a located on the outer peripheral portion thereof and a change portion 6b recessed upward in a hemispherical shape located in the central portion. The volume of the equilibrium chamber C changes with the inflow and outflow of the liquid from the pressure receiving chamber A by the elastic deformation of the changing portion 6b up and down. A cored bar member 7 is embedded in the outer peripheral part of the diaphragm 6, and the upper end part of the cored bar member 7 is formed in a shape protruding from the diaphragm 6, and the flange is formed by bending outward over the entire circumference. Part 7a is formed.

オリフィス部材10と仕切板5と間の中間室Bに後述する可動板20及び防音板30,30を装着した状態で、オリフィス部材10の位置決め部13を仕切板5のオリフィス穴5bに位置決めし、オリフィス部材10を仕切板5の下面側に当接させる。そして、ダイアフラム6の外周部の内面側をオリフィス部材10の外周面に当接させて、仕切板5の外周部と芯金部材7のフランジ部7aを第2取付金具3のかしめ部3bに上下に挟んでかしめ固定することで、仕切板5及び芯金部材7を第2取付部材3に固定でき、受圧室A、中間室B及び平衡室Cで囲まれた空間に非圧縮性の液体(例えばポリアルキレングリコールやシリコーン等)を封入することでエンジンマウント1が構成される。   With the movable plate 20 and the soundproof plates 30 and 30 described later installed in the intermediate chamber B between the orifice member 10 and the partition plate 5, the positioning portion 13 of the orifice member 10 is positioned in the orifice hole 5b of the partition plate 5, The orifice member 10 is brought into contact with the lower surface side of the partition plate 5. Then, the inner surface side of the outer peripheral portion of the diaphragm 6 is brought into contact with the outer peripheral surface of the orifice member 10, and the outer peripheral portion of the partition plate 5 and the flange portion 7 a of the core metal member 7 are vertically moved to the caulking portion 3 b of the second mounting bracket 3. The partition plate 5 and the cored bar member 7 can be fixed to the second mounting member 3 by being clamped and fixed between them, and an incompressible liquid (in the space surrounded by the pressure receiving chamber A, the intermediate chamber B, and the equilibrium chamber C ( The engine mount 1 is configured by enclosing, for example, polyalkylene glycol or silicone.

〔可動板及び防音板の詳細構造〕
図3及び図4に基づいて、中間室Bに配設された可動板20(可動部材に相当)及び防音板30,30(第1及び第2防音部材に相当)の詳細構造について説明する。図4は、可動板20及び防音板30,30の詳細構造を説明するための概略斜視図を示す。なお、図4においては、中間室Bの上下方向の寸法を実際の寸法より長く表示している。
[Detailed structure of movable plate and soundproof plate]
The detailed structure of the movable plate 20 (corresponding to the movable member) and the soundproof plates 30, 30 (corresponding to the first and second soundproof members) disposed in the intermediate chamber B will be described with reference to FIGS. FIG. 4 is a schematic perspective view for explaining the detailed structure of the movable plate 20 and the soundproof plates 30 and 30. In FIG. 4, the vertical dimension of the intermediate chamber B is displayed longer than the actual dimension.

図3及び図4に示すように、オリフィス部材10と仕切板5によって形成された中間室Bに、2枚の防音板30,30が、可動板20を間に挟んだ形で配設されている。図3に示す受圧室A又は平衡室Cから中間室Bを経由して平衡室C又は受圧室Aに液体が流入していない状態では、仕切板5と防音板30との間、防音板30と可動板20との間、可動板20と防音板30との間、及び防音板30とオリフィス部材10の仕切部14との間に、所定の隙間が形成されており、可動板20及び防音板30,30の板厚の和が、オリフィス部材10の第1凹入部11の凹入する深さ(中間室Bの深さ)より小さい寸法になるように設定されている。   As shown in FIGS. 3 and 4, two soundproof plates 30 and 30 are disposed in an intermediate chamber B formed by the orifice member 10 and the partition plate 5 with the movable plate 20 interposed therebetween. Yes. In a state in which no liquid flows into the equilibrium chamber C or the pressure receiving chamber A via the intermediate chamber B from the pressure receiving chamber A or the equilibrium chamber C shown in FIG. Predetermined gaps are formed between the movable plate 20 and the movable plate 20, between the movable plate 20 and the soundproof plate 30, and between the soundproof plate 30 and the partition 14 of the orifice member 10. The sum of the plate thicknesses of the plates 30 and 30 is set to be smaller than the depth of insertion of the first recessed portion 11 of the orifice member 10 (depth of the intermediate chamber B).

可動板20は、材質がゴム製で円板状に形成されており、その中心部に上方及び下方に突出したゴム製の突片21が一体成形されている。突片21は、円錐状の先端が尖った形状に成形されており、防音板30の係入穴31の形状に合わせた形状に成形されている。この可動板20に一体成形した突片21によって、中間室B内を液体が移動していない状態で、可動板20と防音板30との間の隙間を確保することができ(可動板20と防音板30が一定の隙間を開けて離間した状態を維持することができ)、可動板20と防音板30が密着状態となって防音効果が低下することを防止できる。   The movable plate 20 is made of rubber and is formed in a disc shape. A rubber protruding piece 21 protruding upward and downward is integrally formed at the center of the movable plate 20. The projecting piece 21 is formed in a shape having a pointed conical tip, and is formed in a shape that matches the shape of the engagement hole 31 of the soundproof plate 30. The projecting piece 21 formed integrally with the movable plate 20 can secure a gap between the movable plate 20 and the soundproof plate 30 in a state where the liquid does not move in the intermediate chamber B (with the movable plate 20 and The soundproof plate 30 can be maintained in a state of being spaced apart by a certain gap), and the movable plate 20 and the soundproof plate 30 can be prevented from being brought into close contact with each other to reduce the soundproof effect.

防音板30は、可動板20と同じ材質のゴム製で可動板20より外径の小さい円板状に形成されており、その中心部に可動板20の突片21が係入する円形の係入穴31が形成され、その外周部に上下向きの複数の円形の貫通穴32が等ピッチで形成されている。このように、防音板30を円板状に形成し、防音板30に等ピッチで貫通穴31を形成することにより、液体が中間室B内を移動する場合に、防音板30を略水平な状態で上下に移動させることができる。   The soundproof plate 30 is made of a rubber made of the same material as the movable plate 20 and is formed in a disk shape having a smaller outer diameter than the movable plate 20, and a circular engagement in which the protruding piece 21 of the movable plate 20 engages at the center thereof. A through hole 31 is formed, and a plurality of vertically extending circular through holes 32 are formed at an equal pitch on the outer periphery thereof. In this way, the soundproof plate 30 is formed in a disk shape, and the through holes 31 are formed in the soundproof plate 30 at an equal pitch, so that when the liquid moves in the intermediate chamber B, the soundproof plate 30 is substantially horizontal. It can be moved up and down in the state.

すなわち、中間室B内を液体が通過することにより、図3に示す状態から可動板20が上方(又は下方)に移動すると、まず可動板20の突片21が防音板30の係入穴31に入り込み、さらに可動板20が上方(又は下方)に移動すると、可動板20の突片21及び防音板30の係入穴31が共に弾性変形して可動板20の突片21が防音板30の係入穴31に更に入り込んで、可動板20の上面側(又は下面側)が防音板30の下面側(上面側)に当接するように構成されている。このように、可動板20の突片21及び防音板30の係入穴31を構成することにより、可動板20の突片21及び防音板30の係入穴31の弾性変形によって、可動板20を更に減速させることができる。   That is, when the liquid passes through the intermediate chamber B and the movable plate 20 moves upward (or downward) from the state shown in FIG. 3, the projecting piece 21 of the movable plate 20 first enters the engagement hole 31 of the soundproof plate 30. When the movable plate 20 enters and further moves upward (or downward), the projecting piece 21 of the movable plate 20 and the engagement hole 31 of the soundproof plate 30 are both elastically deformed, and the projecting piece 21 of the movable plate 20 becomes soundproof plate 30. The upper surface side (or lower surface side) of the movable plate 20 is in contact with the lower surface side (upper surface side) of the soundproof plate 30. Thus, by configuring the protrusion 21 of the movable plate 20 and the engagement hole 31 of the soundproof plate 30, the movable plate 20 is elastically deformed by the protrusion 21 of the movable plate 20 and the engagement hole 31 of the soundproof plate 30. Can be further decelerated.

可動板20の上面側及び下面側の受圧面22の面積は、防音板30の上面側及び下面側の受圧面33の面積(係入穴31及び複数の貫通穴32を除いた面積)より広く設定されており、中間室B内を通過する液体によって受圧する面積に差異が生じるように構成されている。すなわち、可動板20の液体から受ける受圧面22の面積を広く設定し、防音板30の液体から受ける受圧面33の面積を狭く設定することにより、中間室B内で移動する可動板20の速度と、防音板30の速度に差を生じさせることができる。なお、この可動板20及び防音板30の受圧面22,33の面積の比を、例えば大きくすると、可動板20と防音板30の移動する速度差を大きくすることができ、より効率的に可動板20を減速させることができる。   The area of the pressure receiving surface 22 on the upper surface side and the lower surface side of the movable plate 20 is wider than the area of the pressure receiving surface 33 on the upper surface side and the lower surface side of the soundproof plate 30 (area excluding the engagement holes 31 and the plurality of through holes 32). It is set, and it is comprised so that a difference may arise in the area which receives pressure with the liquid which passes the inside of the intermediate chamber B. FIG. That is, the speed of the movable plate 20 moving in the intermediate chamber B is set by setting the area of the pressure receiving surface 22 received from the liquid of the movable plate 20 wide and setting the area of the pressure receiving surface 33 received from the liquid of the soundproof plate 30 narrow. Thus, a difference in the speed of the soundproof plate 30 can be generated. In addition, if the ratio of the area of the pressure receiving surfaces 22 and 33 of the movable plate 20 and the soundproof plate 30 is increased, for example, the speed difference between the movable plate 20 and the soundproof plate 30 can be increased, and the movable plate 20 can be moved more efficiently. The plate 20 can be decelerated.

〔可動板及び防音板の移動状況〕
図5に基づいて、中間室B内を液体が通過した場合の可動板20及び防音板30の移動状況について説明する。図5は、中間室B内の可動板20及び防音板30の移動状況を説明するための概略図を示し、(イ)、(ロ)、(ハ)、(ニ)、(ホ)の順で変化していく状態を示す。なお、図5に示す矢印は、液体の移動する方向(流動する方向)を示す。
[Movement status of movable plate and soundproof plate]
Based on FIG. 5, the movement state of the movable plate 20 and the soundproof plate 30 when the liquid passes through the intermediate chamber B will be described. FIG. 5 is a schematic diagram for explaining the movement of the movable plate 20 and the soundproof plate 30 in the intermediate chamber B, in the order of (a), (b), (c), (d), (e). The state that changes with. The arrows shown in FIG. 5 indicate the direction in which the liquid moves (the direction in which it flows).

図5に示すように、例えば図5(イ)に示す状態で、エンジン又は車体からエンジンマウント1へ振幅が比較的大きい低周波振動が入力されて、平衡室Cからの液体が中間室Bに移動し、中間室B内を下方から上方に液体が移動すると、可動板20と防音板30の受圧面22,33の面積の差異によって、可動板20に、防音板30に作用する液圧よりも大きな液圧が作用して、可動板20が防音板30よりも速い速度で上方に移動し、可動板20の突片及び上側の防音板30の係入穴31の弾性変形によって減速されながら、可動板20の上面側が上側の防音板30の下面側に当接する(図5(ロ)の状態)。   As shown in FIG. 5, for example, in the state shown in FIG. 5 (a), low-frequency vibration having a relatively large amplitude is input from the engine or the vehicle body to the engine mount 1, and the liquid from the equilibrium chamber C enters the intermediate chamber B. When the liquid moves and moves from the lower side to the upper side in the intermediate chamber B, due to the difference in the area of the pressure receiving surfaces 22 and 33 of the movable plate 20 and the soundproof plate 30, the liquid pressure acting on the soundproof plate 30 is exerted on the movable plate 20. The larger hydraulic pressure acts, the movable plate 20 moves upward at a faster speed than the soundproof plate 30, and is decelerated by the elastic deformation of the projecting piece of the movable plate 20 and the engaging hole 31 of the upper soundproof plate 30. The upper surface side of the movable plate 20 comes into contact with the lower surface side of the upper soundproof plate 30 (state shown in FIG. 5B).

可動板20が上側の防音板30に当接すると、可動板20の加速度が低く抑えられて、可動板20が上側の防音板30と共に遅い速度で上方に移動し、上側の防音板30の上面側が仕切板5の下面側に当接する(図5(ハ)の状態)。   When the movable plate 20 comes into contact with the upper soundproof plate 30, the acceleration of the movable plate 20 is suppressed low, and the movable plate 20 moves upward at a low speed together with the upper soundproof plate 30. The side comes into contact with the lower surface side of the partition plate 5 (the state shown in FIG. 5C).

図5(ハ)に示す状態から、受圧室Aからの液体が中間室Bに移動し、中間室B内を上方から下方に液体が移動すると、可動板20と防音板30の受圧面22,33の面積の差異によって、可動板20に、防音板30に作用する液圧よりも大きな液圧が作用して(貫通穴31を介して作用する液圧の分、可動板20に大きな液圧が作用する)、可動板20の突片21の上側の防音板30の係入穴31への係合が外れて、可動板20が防音板30よりも速い速度で下方に移動する。そして、可動板20の突片21が下側の防音板30の係入穴31に入り込んで、可動板20の突片21及び下側の防音板30の係入穴31の弾性変形によって減速されながら、可動板20の上面側が下側の防音板30の下面側に当接する(図5(ニ)の状態)。   When the liquid from the pressure receiving chamber A moves to the intermediate chamber B from the state shown in FIG. 5C and the liquid moves from the upper side to the lower side in the intermediate chamber B, the pressure receiving surfaces 22 of the movable plate 20 and the soundproof plate 30, Due to the difference in the area of 33, a hydraulic pressure larger than the hydraulic pressure acting on the soundproof plate 30 acts on the movable plate 20 (the hydraulic pressure acting on the movable plate 20 is equivalent to the hydraulic pressure acting through the through hole 31. ), The engagement of the soundproof plate 30 on the upper side of the projecting piece 21 of the movable plate 20 with the engagement hole 31 is released, and the movable plate 20 moves downward at a speed higher than that of the soundproof plate 30. Then, the protruding piece 21 of the movable plate 20 enters the engaging hole 31 of the lower soundproof plate 30 and is decelerated by elastic deformation of the protruding piece 21 of the movable plate 20 and the engaging hole 31 of the lower soundproof plate 30. However, the upper surface side of the movable plate 20 comes into contact with the lower surface side of the lower soundproof plate 30 (the state shown in FIG. 5D).

可動板20が下側の防音板30に当接すると、可動板20の加速度が低く抑えられて、可動板20が防音板30と共に遅い速度で下方に移動し、下側の防音板30の下面側がオリフィス部材10の仕切部14の上面側に当接する(図5(ホ)の状態)。   When the movable plate 20 comes into contact with the lower soundproof plate 30, the acceleration of the movable plate 20 is suppressed low, and the movable plate 20 moves downward together with the soundproof plate 30 at a low speed, and the lower surface of the lower soundproof plate 30. The side comes into contact with the upper surface side of the partition 14 of the orifice member 10 (state shown in FIG. 5E).

図5(ハ)又は図5(ホ)の状態になると、可動板20及び防音板30によって仕切板5の連通口5a又はオリフィス部材10の仕切部14の貫通口15が塞がれて、仕切板5のオリフィス穴5b及びオリフィス部材10のオリフィス通路16を介して受圧室A又は平衡室Cから平衡室C又は受圧室Aに液体が移動して、オリフィス通路5bによる振動の減衰効果が発揮される。   In the state of FIG. 5C or FIG. 5E, the movable plate 20 and the soundproof plate 30 block the communication port 5a of the partition plate 5 or the through port 15 of the partition portion 14 of the orifice member 10, thereby separating the partition. The liquid moves from the pressure receiving chamber A or the equilibrium chamber C to the equilibrium chamber C or the pressure receiving chamber A through the orifice hole 5b of the plate 5 and the orifice passage 16 of the orifice member 10, and the vibration damping effect by the orifice passage 5b is exhibited. The

一方、エンジン又は車体からエンジンマウント1への入力振動の振幅が比較的小さい高周波振動の場合には、受圧室A又は平衡室Cから中間室Bを介して平衡室C又は受圧室Aに液体が移動し、上述した可動板20及び防音板30が上下に移動することにより、可動板20及び防音板30の変位によって、受圧室A及び平衡室Cの容積が変更されて、振幅が比較的小さい高周波振動の減衰効果が発揮される。   On the other hand, in the case of high-frequency vibration in which the amplitude of the input vibration from the engine or the vehicle body to the engine mount 1 is relatively small, liquid flows from the pressure receiving chamber A or the equilibrium chamber C to the equilibrium chamber C or the pressure receiving chamber A via the intermediate chamber B. When the movable plate 20 and the soundproof plate 30 move up and down, the displacement of the movable plate 20 and the soundproof plate 30 changes the volumes of the pressure receiving chamber A and the equilibrium chamber C, so that the amplitude is relatively small. High-frequency vibration damping effect is exhibited.

[発明の実施の第1別形態]
前述の[発明を実施するための最良の形態]においては、可動板20に突片21を設けた例を示したが、突片21を備えていない可動板20を採用してもよい。
[First Alternative Embodiment of the Invention]
In the above-mentioned [Best Mode for Carrying Out the Invention], the example in which the projecting piece 21 is provided on the movable plate 20 has been shown. However, the movable plate 20 that does not include the projecting piece 21 may be employed.

前述の[発明を実施するための最良の形態]においては、可動板20の突片21の形状を円錐状の先端が尖った形状に成形した例を示したが、図6に示すように、突片21の形状を角錐状の先端が尖った形状に成形してもよく、また、図示しないが突片21の形状を円柱状や円錐台形状に構成してもよく、突片21の先端部の形状を丸く湾曲させた形状に構成してもよい。   In the above-mentioned [Best Mode for Carrying Out the Invention], the example in which the shape of the projecting piece 21 of the movable plate 20 is formed into a shape having a pointed conical tip, as shown in FIG. The shape of the projecting piece 21 may be formed into a shape with a sharp pyramid tip, and although not shown, the shape of the projecting piece 21 may be formed in a columnar shape or a truncated cone shape. You may comprise in the shape which curved the shape of the part roundly.

前述の[発明を実施するための最良の形態]においては、防音板30に複数の円形の貫通穴32を設けた例を示したが、単一の貫通穴32や異なる数の貫通穴32、さらには異なる形状の貫通穴32を採用してもよく、例えば図6に示すように、防音板30に、網目状に開口した形状の貫通穴32を設けてもよい。また、図示しないが可動板20の受圧面22の面積と防音板30の受圧面33の面積が異なるのであれば、防音板30に形成する貫通部の形状や構造は異なるものを採用してもよい。   In the above-mentioned [Best Mode for Carrying Out the Invention], an example in which a plurality of circular through holes 32 are provided in the soundproof plate 30 has been shown, but a single through hole 32 or a different number of through holes 32, Furthermore, through holes 32 having different shapes may be employed. For example, as shown in FIG. 6, the soundproof plate 30 may be provided with through holes 32 having a shape opened in a mesh shape. Although not shown, if the area of the pressure receiving surface 22 of the movable plate 20 and the area of the pressure receiving surface 33 of the soundproof plate 30 are different, the shape and structure of the penetrating portion formed in the soundproof plate 30 may be different. Good.

前述の[発明を実施するための最良の形態]においては、円板状に形成した防音板30の外径を、円板状に形成した可動板20の外径より小さく設定した例を示したが、円板状に形成した防音板30と、円板状に形成した可動板の外径を同じ外径に設定してもよい。このように、防音板30の外径を大きく設定することにより、防音板30の左右方向のズレを防止でき、可動板20の突片21と防音板30の係入穴31を無理なく係合させることができる。また、図示しないが可動板20及び防音板30の形状として異なる形状、例えばリング状、楕円状又は四角形状の可動板20及び防音板30を採用してもよい。   In the above-mentioned [Best Mode for Carrying Out the Invention], an example is shown in which the outer diameter of the soundproof plate 30 formed in a disk shape is set smaller than the outer diameter of the movable plate 20 formed in a disk shape. However, the outer diameter of the soundproof plate 30 formed in a disk shape and the movable plate formed in a disk shape may be set to the same outer diameter. Thus, by setting the outer diameter of the soundproof plate 30 large, it is possible to prevent the soundproof plate 30 from being displaced in the left-right direction, and the projecting piece 21 of the movable plate 20 and the engagement hole 31 of the soundproof plate 30 can be easily engaged. Can be made. Although not shown in the drawings, the movable plate 20 and the soundproof plate 30 may have different shapes, for example, a ring shape, an elliptical shape, or a quadrangular shape of the movable plate 20 and the soundproof plate 30.

前述の[発明を実施するための最良の形態]においては、仕切板5と防音板30との間、防音板30と可動板20との間、可動板20と防音板30との間、及び防音板30とオリフィス部材10の仕切部14との間の隙間を図1及び図3に示すような隙間に設定した例を示したが、異なる隙間に設定してもよく、オリフィス部材10の第1凹入部11の深さ、又は、可動板20及び防音板30の厚さを変更することにより、エンジン特性等の差異に応じて、容易にエンジンマウント1の特性を変更調節することができる。   In the above-mentioned [Best Mode for Carrying Out the Invention], between the partition plate 5 and the soundproof plate 30, between the soundproof plate 30 and the movable plate 20, between the movable plate 20 and the soundproof plate 30, and Although the example in which the gap between the soundproof plate 30 and the partitioning portion 14 of the orifice member 10 is set to a gap as shown in FIGS. 1 and 3 is shown, it may be set to a different gap. By changing the depth of the one recessed portion 11 or the thicknesses of the movable plate 20 and the soundproof plate 30, the characteristics of the engine mount 1 can be easily changed and adjusted according to differences in engine characteristics and the like.

[発明の実施の第2別形態]
前述の[発明を実施するための最良の形態]及び[発明の実施の第1別形態]においては、可動板20及び防音板30の材質を同じ材質のゴムで構成した例を示したが、異なる材質を採用してもよく、例えば樹脂等の弾性を有する材質を採用してもよい。また、可動板20のゴムの硬度と防音板30のゴムの硬度を異なる硬度に設定してもよく、可動板20の材質と防音板30の材質を異なる材質に設定してもよい。具体的には、例えば防音板30の硬度を可動板20の硬度より小さく柔らかいものに設定することで、防音効果を更に向上させることができる。
[Second Embodiment of the Invention]
In the above-mentioned [Best Mode for Carrying Out the Invention] and [First Alternative Embodiment of the Invention], an example in which the movable plate 20 and the soundproof plate 30 are made of the same rubber material has been shown. Different materials may be employed, for example, a material having elasticity such as resin may be employed. Further, the hardness of the rubber of the movable plate 20 and the hardness of the rubber of the soundproof plate 30 may be set to different hardnesses, and the material of the movable plate 20 and the material of the soundproof plate 30 may be set to different materials. Specifically, for example, by setting the hardness of the soundproof plate 30 to be smaller and softer than the hardness of the movable plate 20, the soundproof effect can be further improved.

[発明の実施の第3別形態]
前述の[発明を実施するための最良の形態]、[発明の実施の第1別形態]及び[発明の実施の第2別形態]においては、可動板20と防音板30,30とを離間して配設した例を示したが、例えば図7に示すように、可動板20と防音板30,30を一体構成して、上述の効果が生じるように構成してもよい。
[Third Another Embodiment of the Invention]
In the above-mentioned [Best Mode for Carrying Out the Invention], [First Alternative Embodiment of the Invention] and [Second Alternative Embodiment of the Invention], the movable plate 20 and the soundproof plates 30 and 30 are separated from each other. However, for example, as shown in FIG. 7, the movable plate 20 and the soundproof plates 30 and 30 may be integrally configured so as to produce the above-described effect.

図7(イ)に示すように、ゴムの硬度が比較的大きい円板状の可動板20の上面側及び下面側の中央に、円柱状の連結部材20aが一体成形されている。可動板20よりゴムの硬度が小さく厚さが薄く設定された円板状の防音板30,30の中央部に取付穴が形成され、この取付穴に可動板20の連結部材20aが内嵌された状態で接着されている。   As shown in FIG. 7A, a columnar connecting member 20a is integrally formed at the center of the upper surface side and the lower surface side of the disk-shaped movable plate 20 having a relatively large rubber hardness. A mounting hole is formed in the central portion of the disk-shaped soundproof plates 30 and 30 in which the hardness of the rubber is smaller and the thickness is set thinner than that of the movable plate 20, and the connecting member 20a of the movable plate 20 is fitted into the mounting hole. It is adhered in the state.

図7(ロ)に示すように、振幅が比較的大きい低周波振動が入力されて、例えば平衡室Cからの液体が中間室Bに移動し、中間室B内を下方から上方に液体が移動すると、硬度が小さく設定された上側の防音板30の外周部が下方へ撓んで変形し可動板20の上面側に接当する。この上側の防音板30が可動板20の上面側に接当した力が可動板20の上方への移動を妨げる力として作用して、可動板20の速度を減速させることができる。   As shown in FIG. 7 (b), a low frequency vibration having a relatively large amplitude is inputted, for example, the liquid from the equilibrium chamber C moves to the intermediate chamber B, and the liquid moves in the intermediate chamber B from below to above. Then, the outer peripheral portion of the upper soundproof plate 30 having a small hardness is bent downward and deformed, and comes into contact with the upper surface side of the movable plate 20. The force with which the upper soundproof plate 30 contacts the upper surface of the movable plate 20 acts as a force that prevents the movable plate 20 from moving upward, and the speed of the movable plate 20 can be reduced.

[発明の実施の第4別形態]
前述の[発明を実施するための最良の形態]、[発明の実施の第1別形態]、[発明の実施の第2別形態]及び[発明の実施の第3別形態]において示したエンジン及び車体へのエンジンマウント1の取付構造は、一例として示したものであり、第1取付金具2、第2取付金具3、本体ゴム4、仕切部材としての仕切板5及びオリフィス部材10等の形状や構造等が異なるエンジンマウント1においても同様に適用できる。
[Fourth Embodiment of the Invention]
The engine shown in the above-mentioned [Best Mode for Carrying Out the Invention], [First Alternative Embodiment], [Second Alternative Embodiment] and [Third Alternative Embodiment] The mounting structure of the engine mount 1 to the vehicle body is shown as an example, and the shapes of the first mounting bracket 2, the second mounting bracket 3, the main body rubber 4, the partition plate 5 as the partition member, the orifice member 10, and the like. The same can be applied to the engine mount 1 having a different structure or the like.

エンジンマウントの全体縦断側面図Overall vertical side view of engine mount エンジンマウントの全体横断平面図Whole cross-sectional plan view of engine mount 中間室付近の詳細縦断側面図Detailed vertical side view of the middle chamber 可動板及び防音板の構造を示す概略斜視図Schematic perspective view showing structure of movable plate and soundproof plate 可動板及び防音板の移動状況を示す概略図Schematic showing the movement of the movable plate and soundproof plate 発明の実施の第1別形態での可動板及び防音板の構造を示す概略斜視図The schematic perspective view which shows the structure of the movable board and soundproof board in 1st another form of implementation of invention. 発明の実施の第3別形態での可動板及び防音板の構造を示す概略縦断面図Schematic longitudinal cross-sectional view which shows the structure of the movable plate and soundproof board in 3rd another form of implementation of invention

符号の説明Explanation of symbols

1 エンジンマウント(液体封入式マウント装置)
2 第1取付金具(第1取付部材)
3 第2取付金具(第2取付部材)
4 本体ゴム(ゴム弾性体)
5 仕切板(仕切部材)
10 オリフィス部材(仕切部材)
16 オリフィス通路
20 可動板(可動部材)
22 受圧面
30 防音板(第1防音部材,第2防音部材)
33 受圧面
A 受圧室
B 中間室
C 平衡室
1 Engine mount (liquid-filled mounting device)
2 First mounting bracket (first mounting member)
3 Second mounting bracket (second mounting member)
4 Body rubber (rubber elastic)
5 Partition plate (partition member)
10 Orifice member (partition member)
16 Orifice passage 20 Movable plate (movable member)
22 pressure-receiving surface 30 soundproof plate (first soundproof member, second soundproof member)
33 Pressure receiving surface A Pressure receiving chamber B Intermediate chamber C Equilibrium chamber

Claims (1)

所定の間隔を隔てて配設された第1取付部材と第2取付部材とをゴム弾性体で連結し、壁部の一部が前記ゴム弾性体で構成された受圧室と、壁部の一部が可撓性膜で構成された平衡室とを仕切部材を間に挟んで形成し、前記仕切部材に、前記受圧室と前記平衡室とを相互に連通するオリフィス通路と、前記受圧室と前記平衡室とを相互に連通する中間室とを設けて、前記受圧室、平衡室及び中間室に非圧縮性の液体を封入し、
前記中間室に、前記中間室を介した前記受圧室と前記平衡室との間の液体の流動に伴って前記中間室内を移動可能な可動部材と、前記中間室の受圧室側の壁部と前記可動部材との間に配設された第1防音部材と、前記中間室の平衡室側の壁部と前記可動部材との間に配設された第2防音部材とを備え、
前記可動部材の受圧面の面積を、前記第1及び第2防音部材の受圧面の面積より広く設定してある液体封入式マウント装置。
A first mounting member and a second mounting member arranged at a predetermined interval are connected by a rubber elastic body, and a pressure receiving chamber in which a part of the wall portion is configured by the rubber elastic body, and a wall portion. An equilibrium chamber formed of a flexible membrane with a partition member interposed therebetween, an orifice passage communicating the pressure receiving chamber and the equilibrium chamber with each other, and the pressure receiving chamber An intermediate chamber that communicates with the equilibrium chamber is provided, and an incompressible liquid is sealed in the pressure receiving chamber, the equilibrium chamber, and the intermediate chamber,
A movable member capable of moving in the intermediate chamber as the liquid flows between the pressure receiving chamber and the equilibrium chamber via the intermediate chamber; and a wall portion on the pressure receiving chamber side of the intermediate chamber; A first soundproofing member disposed between the movable member and a second soundproofing member disposed between the wall on the equilibrium chamber side of the intermediate chamber and the movable member;
The liquid-filled mount device, wherein an area of the pressure receiving surface of the movable member is set wider than an area of the pressure receiving surface of the first and second soundproof members.
JP2007033551A 2007-02-14 2007-02-14 Liquid filled mounting device Expired - Fee Related JP4887171B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2007033551A JP4887171B2 (en) 2007-02-14 2007-02-14 Liquid filled mounting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2007033551A JP4887171B2 (en) 2007-02-14 2007-02-14 Liquid filled mounting device

Publications (2)

Publication Number Publication Date
JP2008196630A true JP2008196630A (en) 2008-08-28
JP4887171B2 JP4887171B2 (en) 2012-02-29

Family

ID=39755762

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2007033551A Expired - Fee Related JP4887171B2 (en) 2007-02-14 2007-02-14 Liquid filled mounting device

Country Status (1)

Country Link
JP (1) JP4887171B2 (en)

Cited By (17)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2012097849A (en) * 2010-11-02 2012-05-24 Bridgestone Corp Vibration damping device
JP2012097850A (en) * 2010-11-02 2012-05-24 Bridgestone Corp Vibration damping device
CN102588502A (en) * 2011-12-30 2012-07-18 宁波泛亚汽车部件有限公司 Hydraulic suspension of engine
CN102588500A (en) * 2011-12-22 2012-07-18 宁波泛亚汽车部件有限公司 Dual-channel hydraulic suspension of engine
CN102588501A (en) * 2011-12-29 2012-07-18 宁波泛亚汽车部件有限公司 Hydraulic suspension of engine
WO2013114476A1 (en) * 2012-01-31 2013-08-08 東海ゴム工業株式会社 Fluid filled vibration damping device
JP2013210093A (en) * 2011-12-27 2013-10-10 Tokai Rubber Ind Ltd Fluid-filled vibration isolation device
JP2013540247A (en) * 2010-10-22 2013-10-31 クーパー−スタンダード・オートモーティブ・インコーポレーテッド Low noise decoupler
WO2013187008A1 (en) * 2012-06-12 2013-12-19 東海ゴム工業株式会社 Sealed fluid-type vibration reduction device
JP2013257031A (en) * 2012-06-14 2013-12-26 Tokai Rubber Ind Ltd Fluid-filled vibration-proofing device
JP2013256981A (en) * 2012-06-12 2013-12-26 Tokai Rubber Ind Ltd Fluid filled vibration damping device
JP2014031850A (en) * 2012-08-06 2014-02-20 Tokai Rubber Ind Ltd Fluid sealed vibration isolation device
JP2014152898A (en) * 2013-02-13 2014-08-25 Tokai Rubber Ind Ltd Fluid-filled vibration proofing device
US9970506B2 (en) 2011-12-27 2018-05-15 Sumitomo Riko Company Limited Fluid-filled vibration damping device
JP2020112222A (en) * 2019-01-14 2020-07-27 住友理工株式会社 Fluid enclosed type vibration control device
JP2020133743A (en) * 2019-02-19 2020-08-31 Toyo Tire株式会社 Liquid-filled vibration control device
CN112747069A (en) * 2020-12-31 2021-05-04 镇江仕德汽车零部件有限公司 Hydraulic suspension runner plate for automobile damping system

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2006144983A (en) * 2004-11-24 2006-06-08 Honda Motor Co Ltd Vibration-proofing support device
JP2006266302A (en) * 2005-03-22 2006-10-05 Honda Motor Co Ltd Vibration absorbing supporting device

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2006144983A (en) * 2004-11-24 2006-06-08 Honda Motor Co Ltd Vibration-proofing support device
JP2006266302A (en) * 2005-03-22 2006-10-05 Honda Motor Co Ltd Vibration absorbing supporting device

Cited By (24)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013540247A (en) * 2010-10-22 2013-10-31 クーパー−スタンダード・オートモーティブ・インコーポレーテッド Low noise decoupler
JP2017141960A (en) * 2010-10-22 2017-08-17 クーパー−スタンダード・オートモーティブ・インコーポレーテッド Low noise decoupler
JP2012097850A (en) * 2010-11-02 2012-05-24 Bridgestone Corp Vibration damping device
JP2012097849A (en) * 2010-11-02 2012-05-24 Bridgestone Corp Vibration damping device
CN102588500A (en) * 2011-12-22 2012-07-18 宁波泛亚汽车部件有限公司 Dual-channel hydraulic suspension of engine
US9970506B2 (en) 2011-12-27 2018-05-15 Sumitomo Riko Company Limited Fluid-filled vibration damping device
JP2013210093A (en) * 2011-12-27 2013-10-10 Tokai Rubber Ind Ltd Fluid-filled vibration isolation device
CN102588501A (en) * 2011-12-29 2012-07-18 宁波泛亚汽车部件有限公司 Hydraulic suspension of engine
CN102588502A (en) * 2011-12-30 2012-07-18 宁波泛亚汽车部件有限公司 Hydraulic suspension of engine
CN104053925A (en) * 2012-01-31 2014-09-17 东海橡塑工业株式会社 Fluid filled vibration damping device
WO2013114476A1 (en) * 2012-01-31 2013-08-08 東海ゴム工業株式会社 Fluid filled vibration damping device
US9341227B2 (en) 2012-01-31 2016-05-17 Sumitomo Riko Company Limited Fluid-filled vibration damping device
JP2013256981A (en) * 2012-06-12 2013-12-26 Tokai Rubber Ind Ltd Fluid filled vibration damping device
CN104364554A (en) * 2012-06-12 2015-02-18 住友理工株式会社 Sealed fluid-type vibration reduction device
US9222541B2 (en) 2012-06-12 2015-12-29 Sumitomo Riko Company Limited Fluid-filled vibration damping device
WO2013187008A1 (en) * 2012-06-12 2013-12-19 東海ゴム工業株式会社 Sealed fluid-type vibration reduction device
JP2013257031A (en) * 2012-06-14 2013-12-26 Tokai Rubber Ind Ltd Fluid-filled vibration-proofing device
JP2014031850A (en) * 2012-08-06 2014-02-20 Tokai Rubber Ind Ltd Fluid sealed vibration isolation device
JP2014152898A (en) * 2013-02-13 2014-08-25 Tokai Rubber Ind Ltd Fluid-filled vibration proofing device
JP2020112222A (en) * 2019-01-14 2020-07-27 住友理工株式会社 Fluid enclosed type vibration control device
JP7146654B2 (en) 2019-01-14 2022-10-04 住友理工株式会社 Fluid-filled anti-vibration device
JP2020133743A (en) * 2019-02-19 2020-08-31 Toyo Tire株式会社 Liquid-filled vibration control device
JP7233242B2 (en) 2019-02-19 2023-03-06 Toyo Tire株式会社 Liquid-filled anti-vibration device
CN112747069A (en) * 2020-12-31 2021-05-04 镇江仕德汽车零部件有限公司 Hydraulic suspension runner plate for automobile damping system

Also Published As

Publication number Publication date
JP4887171B2 (en) 2012-02-29

Similar Documents

Publication Publication Date Title
JP4887171B2 (en) Liquid filled mounting device
JP4359889B2 (en) Fluid filled vibration isolator
JP5595369B2 (en) Fluid filled vibration isolator
JP6572079B2 (en) Liquid seal vibration isolator
JP6431795B2 (en) Fluid filled vibration isolator
JP2007271001A (en) Fluid-sealed vibration isolating device
JP2009275910A (en) Fluid-filled type vibration control device
JP4993358B2 (en) Fluid filled vibration isolator
JP4408417B2 (en) Vibration isolator
JP4344677B2 (en) Anti-vibration support device
JP2006250339A (en) Fluid encapsulated type vibration isolating device
JP2006118547A (en) Fluid sealed vibration proof device
JP2006144983A (en) Vibration-proofing support device
JP5114799B2 (en) Vibration isolator
JP4590289B2 (en) Anti-vibration support device
JP6482160B2 (en) Liquid-filled vibration isolator
JP5399147B2 (en) Vibration isolator
JP4603014B2 (en) Liquid-filled vibration isolator
JP2008202766A (en) Liquid-sealed vibration control device
JP5899039B2 (en) Fluid filled vibration isolator
JP2010169121A (en) Fluid filled vibration control device
JP4243464B2 (en) Liquid-filled vibration isolator
JP2007333019A (en) Vibration control device
JPS60132145A (en) Vibration isolator
JP5969249B2 (en) Liquid seal vibration isolator

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20091221

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20110217

A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20110217

A521 Written amendment

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20110404

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

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20111201

A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20111212

FPAY Renewal fee payment (prs date is renewal date of database)

Free format text: PAYMENT UNTIL: 20141216

Year of fee payment: 3

R150 Certificate of patent (=grant) or registration of utility model

Free format text: JAPANESE INTERMEDIATE CODE: R150

LAPS Cancellation because of no payment of annual fees