Nothing Special   »   [go: up one dir, main page]

JPS62261730A - Vibration damping device - Google Patents

Vibration damping device

Info

Publication number
JPS62261730A
JPS62261730A JP10513386A JP10513386A JPS62261730A JP S62261730 A JPS62261730 A JP S62261730A JP 10513386 A JP10513386 A JP 10513386A JP 10513386 A JP10513386 A JP 10513386A JP S62261730 A JPS62261730 A JP S62261730A
Authority
JP
Japan
Prior art keywords
elastic body
weight
resonance
small liquid
absolute spring
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.)
Pending
Application number
JP10513386A
Other languages
Japanese (ja)
Inventor
Shoichi Kumakawa
熊川 正一
Michihiro Orikawa
通洋 折川
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.)
Bridgestone Corp
Original Assignee
Bridgestone Corp
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 Bridgestone Corp filed Critical Bridgestone Corp
Priority to JP10513386A priority Critical patent/JPS62261730A/en
Publication of JPS62261730A publication Critical patent/JPS62261730A/en
Pending legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16FSPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
    • F16F13/00Units comprising springs of the non-fluid type as well as vibration-dampers, shock-absorbers, or fluid springs
    • F16F13/04Units comprising springs of the non-fluid type as well as vibration-dampers, shock-absorbers, or fluid springs comprising both a plastics spring and a damper, e.g. a friction damper
    • F16F13/06Units comprising springs of the non-fluid type as well as vibration-dampers, shock-absorbers, or fluid springs comprising both a plastics spring and a damper, e.g. a friction damper the damper being a fluid damper, e.g. the plastics spring not forming a part of the wall of the fluid chamber of the damper
    • F16F13/08Units comprising springs of the non-fluid type as well as vibration-dampers, shock-absorbers, or fluid springs comprising both a plastics spring and a damper, e.g. a friction damper the damper being a fluid damper, e.g. the plastics spring not forming a part of the wall of the fluid chamber of the damper the plastics spring forming at least a part of the wall of the fluid chamber of the damper
    • F16F13/14Units of the bushing type, i.e. loaded predominantly radially
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16FSPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
    • F16F13/00Units comprising springs of the non-fluid type as well as vibration-dampers, shock-absorbers, or fluid springs
    • F16F13/04Units comprising springs of the non-fluid type as well as vibration-dampers, shock-absorbers, or fluid springs comprising both a plastics spring and a damper, e.g. a friction damper
    • F16F13/06Units comprising springs of the non-fluid type as well as vibration-dampers, shock-absorbers, or fluid springs comprising both a plastics spring and a damper, e.g. a friction damper the damper being a fluid damper, e.g. the plastics spring not forming a part of the wall of the fluid chamber of the damper
    • F16F13/22Units comprising springs of the non-fluid type as well as vibration-dampers, shock-absorbers, or fluid springs comprising both a plastics spring and a damper, e.g. a friction damper the damper being a fluid damper, e.g. the plastics spring not forming a part of the wall of the fluid chamber of the damper characterised by comprising also a dynamic damper

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Arrangement Or Mounting Of Propulsion Units For Vehicles (AREA)
  • Combined Devices Of Dampers And Springs (AREA)

Abstract

PURPOSE:To reduce an absolute spring modulus of a vibration damping device down to a frequency range higher than a resonance frequency of multiple small liquid chambers formed in an elastic body connecting an outer and an inner tubes together by attaching a weight via an elastic body to the outer tube. CONSTITUTION:An intermediate tube 16 is provided with a window 22. An elastic body 20 adjacent to the window 22 is formed with a recess 24 to form small liquid chambers 26 and 28 filled with water, oil, etc., with both of the chambers 26 and 28 communicating with each other via grooves 30. An elastic body 32 with part of it connected to the elastic body 20 projects into the small liquid chamber 26. A weight 34 of a weight which causes resonance at a specified frequency is embedded in the projecting part of the elastic body 32. If the cross-sectional area of an orifice 30 and the weight of the weight 34 are adjusted so that the resonance point of the weight 34 agrees with the part with which an absolute spring modulus becomes the lower limit due to resonance of liquid, an absolute spring modules which is low down to a high frequency range can be obtained by means of average characteristics of both of the components.

Description

【発明の詳細な説明】 〔産業上の利用分野〕 本発明は車両のエンジンマウント、デフマウント、振動
が伝達される部分に用いられるブツシュ等に適用される
防振装置に関する。
DETAILED DESCRIPTION OF THE INVENTION [Field of Industrial Application] The present invention relates to a vibration isolating device that is applied to engine mounts, differential mounts, bushings used in parts to which vibrations are transmitted, etc. of vehicles.

〔背景技術〕[Background technology]

車両のエンジンマウント等として流体入り防振装置が用
いられている。
Fluid-filled vibration isolators are used as vehicle engine mounts and the like.

この防振装置は内外筒間を弾性体で連結すると共に、弾
性体内には複数の小液室を形成してこれらを制限通路で
連通した構成となっている。このため振動作用時に小液
室の液体が他方の小液室へ移動する場合に通過する制限
通路部で液体の共振が生じて振動が吸収されるようにな
っている。
This vibration isolator has a configuration in which the inner and outer cylinders are connected by an elastic body, and a plurality of small liquid chambers are formed within the elastic body, and these are communicated through a restriction passage. For this reason, when the liquid in one small liquid chamber moves to the other small liquid chamber during vibration, resonance of the liquid occurs in the restricted passage section through which the liquid passes, and the vibration is absorbed.

ところがこのような防振装置では共振を生ずる周波数よ
りも若干高い周波数で絶対ばね定数が急激に上昇するた
め高周波側で音の伝達特性が悪くなる欠点があった。
However, such a vibration isolator has the disadvantage that the absolute spring constant rapidly increases at a frequency slightly higher than the frequency at which resonance occurs, resulting in poor sound transmission characteristics at high frequencies.

本発明は上記事実を考慮し、液体が共振した後の絶対ば
ね定数の上昇を抑制することができる防振装置を得るこ
とが目的である。
The present invention has been made in consideration of the above-mentioned facts, and an object of the present invention is to obtain a vibration isolating device that can suppress an increase in the absolute spring constant after the liquid resonates.

〔発明の概要及び作用〕[Summary and operation of the invention]

本発明は内外筒間を弾性体で連結すると共に弾性体内に
複数の小液室を形成し、これらを制限通路で連通した防
振装置であって、前記内筒又は外筒へ弾性体を介して重
錘を取りつけたことを特徴としている。
The present invention is a vibration isolating device in which an elastic body connects an inner and outer cylinder, and a plurality of small liquid chambers are formed in the elastic body, and these are communicated through a restriction passage. It is characterized by a weight attached to it.

このため本発明では、液体が共振した周波数よりも高い
周波数では重錘の共振を利用して振動を吸収することが
できる。重錘の共振と液体の共振とが重なりあうように
オリフィスの断面積、重錘の重量をチューニングすれば
、双方の平均的特性となって高周波域まで低い絶対ばね
定数を得ることができる。
Therefore, in the present invention, vibrations can be absorbed by using the resonance of the weight at frequencies higher than the frequency at which the liquid resonates. By tuning the cross-sectional area of the orifice and the weight of the weight so that the resonance of the weight and the resonance of the liquid overlap, it is possible to obtain an average characteristic of both, and a low absolute spring constant up to a high frequency range.

〔発明の実施例〕[Embodiments of the invention]

第1.2図に示される如く本実施例に係る防振装置10
は内筒12と外筒14とが同軸的に配置されている。内
筒12は図示しない自動車のサスペンション装置へ連結
され外筒14は図示しない自動車の車体へと連結される
ようになっている。
As shown in Fig. 1.2, a vibration isolator 10 according to this embodiment
In this case, an inner cylinder 12 and an outer cylinder 14 are arranged coaxially. The inner cylinder 12 is connected to a suspension device of an automobile (not shown), and the outer cylinder 14 is connected to the body of an automobile (not shown).

外筒14の内周には中間筒16が圧入されている。この
中間筒16は外周部にオーリング18が装着され、外筒
14との間を気密状態としている。
An intermediate cylinder 16 is press-fitted into the inner circumference of the outer cylinder 14. An O-ring 18 is attached to the outer periphery of the intermediate cylinder 16 to create an airtight state between the intermediate cylinder 16 and the outer cylinder 14.

この中間筒16の内周部と内筒12との間にはゴム等の
弾性体20が加硫接着されて内筒12と外筒14とを連
結している。
An elastic body 20 such as rubber is vulcanized and bonded between the inner peripheral portion of the intermediate cylinder 16 and the inner cylinder 12 to connect the inner cylinder 12 and the outer cylinder 14.

中間筒16には軸心を挟んだ反対方向から窓22が穿設
され、この窓22に連続して弾性体20には凹部24が
形成されている。これらの凹部24には水、オイル等の
液体が充填され小液室26.28を構成している。これ
らの小液室26.28は中間筒16の外周に形成される
溝30を介して互いに連通されている。
A window 22 is bored in the intermediate cylinder 16 from the opposite direction across the axis, and a recess 24 is formed in the elastic body 20 continuously from the window 22. These recesses 24 are filled with a liquid such as water or oil to constitute small liquid chambers 26,28. These small liquid chambers 26 and 28 communicate with each other via a groove 30 formed on the outer periphery of the intermediate cylinder 16.

小液室26内へは弾性体20へ一部が連結された弾性体
32が突出されており、この弾性体32の突出先端部に
は重錘34が埋設されている。この重錘34は所定周波
数で共振を生ずるような大きさ及び重量となっている。
An elastic body 32, which is partially connected to the elastic body 20, protrudes into the small liquid chamber 26, and a weight 34 is embedded in the protruding tip of the elastic body 32. This weight 34 has such a size and weight as to cause resonance at a predetermined frequency.

このように構成される本実施例は、予め内筒12と中間
筒16との間に弾性体20が加硫接着され、中間筒16
が外筒14内へ圧入されることによって組み付けられる
In this embodiment configured in this way, the elastic body 20 is vulcanized and bonded between the inner cylinder 12 and the intermediate cylinder 16, and the intermediate cylinder 16
is assembled by being press-fitted into the outer cylinder 14.

内筒12へ作用する振動が比較的低周波である場合には
、弾性体20が内部摩擦によってその振動を吸収する。
When the vibration acting on the inner cylinder 12 has a relatively low frequency, the elastic body 20 absorbs the vibration by internal friction.

また振動が高周波になると、小液室26と小液室28の
液体が溝30を通って通過する場合の抵抗及び共振によ
って振動が吸収される。
Furthermore, when the vibration becomes a high frequency, the vibration is absorbed by the resistance and resonance when the liquid in the small liquid chamber 26 and the small liquid chamber 28 passes through the groove 30.

第4図に示される如く液室内の液体はこの共振の振動周
波数よりも若干高い周波数では絶対ばね定数が急激に上
昇することになる。
As shown in FIG. 4, the absolute spring constant of the liquid in the liquid chamber increases rapidly at a frequency slightly higher than the vibration frequency of this resonance.

しかし本実施例では重錘34が弾性体32を介して取り
つけられているため、この重錘34の共34の重量をチ
ューニングすれば、第4図実線で示される如く、双方の
平均的特性によって高周波区域まで低い絶対ばね定数を
得ることができる。
However, in this embodiment, the weights 34 are attached via the elastic body 32, so if the weights of both weights 34 are tuned, the average characteristics of both weights 34 can be adjusted as shown by the solid line in FIG. Low absolute spring constants can be obtained up to high frequency ranges.

次に第5図には本発明の第2実施例が示されている。Next, FIG. 5 shows a second embodiment of the present invention.

この実施例は内外筒間に弾性体、複数の液室、および液
室を結ぶ連絡通路を有する防振装置をリンク40の端の
カラー50へ在人したもので、例えば内筒12は車体へ
連結され、リンクの逆サイドは車軸へ固定されている。
In this embodiment, a vibration isolator having an elastic body between the inner and outer cylinders, a plurality of liquid chambers, and a communication passage connecting the liquid chambers is attached to a collar 50 at the end of the link 40. For example, the inner cylinder 12 is connected to the vehicle body. The opposite side of the link is fixed to the axle.

内筒12にはストッパ42が突出されており、内筒12
と外筒14との相対移動量を制限している。
A stopper 42 protrudes from the inner cylinder 12, and the inner cylinder 12
The amount of relative movement between the outer cylinder 14 and the outer cylinder 14 is limited.

またカラー50の外周には前記実施例と同様な弾性体3
2及び重錘34が取りつけられており、前記実施例と同
様な効果を有するようになっている。
Further, on the outer periphery of the collar 50, an elastic body 3 similar to that of the previous embodiment is provided.
2 and a weight 34 are attached, so that it has the same effect as the previous embodiment.

〔発明の効果〕〔Effect of the invention〕

以上説明した如く本発明では内外筒間を弾性体で連結す
ると共に弾性体内に複数の小液室を形成し、これらを制
限通路で連通した防振装置であって、前記内筒又は外筒
へ弾性体を介して重錘を取りつけたことを特徴とするの
で、小液室の共振周波数よりも高い周波数域まで絶対ば
ね定数を低減することができる優れた効果を有する。
As explained above, the present invention provides a vibration isolator in which the inner and outer cylinders are connected by an elastic body, a plurality of small liquid chambers are formed in the elastic body, and these are communicated through a restriction passage, and the vibration isolator is connected to the inner cylinder or the outer cylinder. Since the weight is attached via an elastic body, it has an excellent effect of being able to reduce the absolute spring constant to a frequency range higher than the resonance frequency of the small liquid chamber.

【図面の簡単な説明】[Brief explanation of drawings]

第1図は本発明に係る防振装置の第1実施例を示す第2
図1−1線断面図、第2図は第1図の■−■線断面図、
第3図は組付前の防振装置を示す分解斜視図、第4図は
周波数と絶対ばね定数との関係を示す線図、第5図は本
発明の第2実施例を示す縦断面図である。 10・・・防振装置、 12・・・内筒、 14・・・外筒、 16・・・中間筒、 20・・・弾性体、 26・・・小液室、 28・・・小液室、 32・・・弾性体、 34・・・重錘。
FIG. 1 shows a second embodiment of the vibration isolating device according to the present invention.
Figure 1-1 line sectional view, Figure 2 is Figure 1 line ■-■ sectional view,
Fig. 3 is an exploded perspective view showing the vibration isolator before assembly, Fig. 4 is a diagram showing the relationship between frequency and absolute spring constant, and Fig. 5 is a longitudinal sectional view showing the second embodiment of the present invention. It is. DESCRIPTION OF SYMBOLS 10... Vibration isolator, 12... Inner cylinder, 14... Outer cylinder, 16... Intermediate cylinder, 20... Elastic body, 26... Small liquid chamber, 28... Small liquid Chamber, 32... Elastic body, 34... Weight.

Claims (1)

【特許請求の範囲】[Claims] (1)内外筒間を弾性体で連結すると共に弾性体内に複
数の小液室を形成し、これらを制限通路で連通した防振
装置であって、前記内筒又は外筒へ弾性体を介して重錘
を取りつけたことを特徴とする防振装置。
(1) A vibration isolator in which an elastic body connects the inner and outer cylinders, a plurality of small liquid chambers are formed in the elastic body, and these are communicated through a restriction passage, and the vibration isolator is connected to the inner cylinder or the outer cylinder through the elastic body. A vibration isolating device characterized by having a weight attached to it.
JP10513386A 1986-05-08 1986-05-08 Vibration damping device Pending JPS62261730A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP10513386A JPS62261730A (en) 1986-05-08 1986-05-08 Vibration damping device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP10513386A JPS62261730A (en) 1986-05-08 1986-05-08 Vibration damping device

Publications (1)

Publication Number Publication Date
JPS62261730A true JPS62261730A (en) 1987-11-13

Family

ID=14399257

Family Applications (1)

Application Number Title Priority Date Filing Date
JP10513386A Pending JPS62261730A (en) 1986-05-08 1986-05-08 Vibration damping device

Country Status (1)

Country Link
JP (1) JPS62261730A (en)

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4941649A (en) * 1988-07-22 1990-07-17 Tokai Rubber Industries, Ltd. Fluid-filled cylindrical elastic mount having means for improved durability of elastic body
JPH02190638A (en) * 1989-01-17 1990-07-26 Marugo Rubber Kogyo Kk Liquid seal type elastic bush
US5037073A (en) * 1988-11-10 1991-08-06 Tokai Rubber Industries Ltd. Fluid-filled cylindrical elastic mount having moveable block and spiral orifice
JPH04302734A (en) * 1991-03-29 1992-10-26 Kinugawa Rubber Ind Co Ltd Liquid sealing type vibration isolation device
JPH04302731A (en) * 1991-03-29 1992-10-26 Kinugawa Rubber Ind Co Ltd Liquid sealing type vibration isolation device
JPH0587182A (en) * 1991-09-26 1993-04-06 Marugo Rubber Kogyo Kk Fluid-filled vibration control device
JPH0530585U (en) * 1991-09-27 1993-04-23 丸五ゴム工業株式会社 Fluid filled anti-vibration support device

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4941649A (en) * 1988-07-22 1990-07-17 Tokai Rubber Industries, Ltd. Fluid-filled cylindrical elastic mount having means for improved durability of elastic body
US5037073A (en) * 1988-11-10 1991-08-06 Tokai Rubber Industries Ltd. Fluid-filled cylindrical elastic mount having moveable block and spiral orifice
JPH02190638A (en) * 1989-01-17 1990-07-26 Marugo Rubber Kogyo Kk Liquid seal type elastic bush
JPH04302734A (en) * 1991-03-29 1992-10-26 Kinugawa Rubber Ind Co Ltd Liquid sealing type vibration isolation device
JPH04302731A (en) * 1991-03-29 1992-10-26 Kinugawa Rubber Ind Co Ltd Liquid sealing type vibration isolation device
JPH0587182A (en) * 1991-09-26 1993-04-06 Marugo Rubber Kogyo Kk Fluid-filled vibration control device
JPH0530585U (en) * 1991-09-27 1993-04-23 丸五ゴム工業株式会社 Fluid filled anti-vibration support device

Similar Documents

Publication Publication Date Title
US4595183A (en) Vibration isolating device
US5299788A (en) Fluid-filled cylindrical elastic mount having orifice passages and voids formed in elastic body
JPH0689806B2 (en) Anti-vibration device
JPS63318339A (en) Vibration absorbing device
US7314213B2 (en) Fluid-filled vibration damping device
JPS6361536B2 (en)
US5060918A (en) Fluid-filled cylindrical elastic connector having two orifice passages with different cross sectional areas
US5082252A (en) Fluid-filled mount
JP2793598B2 (en) Anti-vibration device
JPS60184740A (en) Elastic bush
JPS62261730A (en) Vibration damping device
JPS6288834A (en) Vibro-isolator
US5344126A (en) Vibration isolation apparatus
JP2848525B2 (en) Anti-vibration device
JP3009402B2 (en) Anti-vibration device
JPS61286633A (en) Fluid seal type vibration suppressing body
JPS6155426A (en) Vibration isolator
JPH0266335A (en) Cylinder-formed liquid sealing vibrationproofing mount
JP2878286B2 (en) Anti-vibration device
JPS61262244A (en) Vibration absorbing device
JPH11141595A (en) Vibration control device
JPH0434018B2 (en)
JP2002155984A (en) Fluid sealed type cylindrical mount
JPH0649948Y2 (en) Fluid-filled tubular vibration-proof connector
JPH061094B2 (en) Anti-vibration device