WO2016063627A1 - Dispositif d'amortissement de vibrations - Google Patents

Dispositif d'amortissement de vibrations Download PDF

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Publication number
WO2016063627A1
WO2016063627A1 PCT/JP2015/074539 JP2015074539W WO2016063627A1 WO 2016063627 A1 WO2016063627 A1 WO 2016063627A1 JP 2015074539 W JP2015074539 W JP 2015074539W WO 2016063627 A1 WO2016063627 A1 WO 2016063627A1
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WO
WIPO (PCT)
Prior art keywords
frame member
liquid chamber
elastic support
elastic
support portion
Prior art date
Application number
PCT/JP2015/074539
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English (en)
Japanese (ja)
Inventor
龍也 堤
秀寿 伊藤
Original Assignee
株式会社ブリヂストン
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 株式会社ブリヂストン filed Critical 株式会社ブリヂストン
Publication of WO2016063627A1 publication Critical patent/WO2016063627A1/fr

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16FSPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
    • 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
    • F16F13/10Units 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 the wall being at least in part formed by a flexible membrane or the like

Definitions

  • the present invention relates to a vibration isolator.
  • This application claims priority based on Japanese Patent Application No. 2014-213573 for which it applied to Japan on October 20, 2014, and uses the content here.
  • a cylindrical first mounting member connected to one of the vibration generating unit and the vibration receiving unit, a second mounting member connected to the other, a first mounting member, and a second mounting member.
  • a configuration including an elastic body to be connected and a partition member that divides a liquid chamber in the first mounting member in which the liquid is sealed into a main liquid chamber and a sub liquid chamber having the elastic body as a part of a wall surface is known. It has been.
  • Patent Document 1 discloses a configuration in which an elastic film is accommodated in a partition member.
  • the elastic membrane includes a central thin portion that closes the central opening of the partition member, and a relief valve that is integrally formed on the outer periphery of the central thin portion and closes the leak hole of the partition member so as to be openable and closable. I have.
  • the central thin portion of the elastic film is elastically deformed in the partition member according to the pressure fluctuation, Absorbs vibration.
  • Patent Document 1 In the configuration of Patent Document 1 described above, it is necessary to secure the deformation space of the relief valve in the partition member in addition to the deformation space of the central thin film portion. There is a problem that leads to complexity.
  • the present invention has been made in view of such circumstances, and an object thereof is to provide a vibration isolator capable of suppressing the occurrence of cavitation while simplifying the configuration.
  • the vibration isolator of the present invention includes a cylindrical first mounting member connected to one of the vibration generating unit and the vibration receiving unit, a second mounting member connected to the other, the first mounting member, and the Partitioning the elastic body connecting the second mounting member and the liquid chamber in the first mounting member in which the liquid is sealed into a main liquid chamber and a sub liquid chamber having the elastic body as a part of a wall surface;
  • a partition member having a communication hole for communicating the main liquid chamber and the sub liquid chamber, a movable portion for closing an opening on the main liquid chamber side of the communication hole, and a main liquid chamber are disposed in the main liquid chamber.
  • an elastic support part that supports the movable part in a direction away from the partition member toward the main liquid chamber side so as to be elastically displaceable, and opens and closes the communication hole. It is arranged to be deformable or displaceable with respect to the elastic support part, and absorbs fluctuations in the internal pressure of the main liquid chamber.
  • FIG. 1 it is a longitudinal cross-sectional view of a vibration isolator. It is a disassembled perspective view which shows a partition member and an opening / closing mechanism. It is a perspective view of an elastic support part. It is principal part sectional drawing of FIG. It is principal part sectional drawing of the vibration isolator which shows the effect
  • the vibration isolator 1 of the present embodiment includes a cylindrical first mounting member 11 connected to one of a vibration generating unit and a vibration receiving unit, and a columnar shape connected to the other.
  • the second mounting member 12 the elastic body 13 that couples the two mounting members 11, 12 to each other, the liquid chamber 10 in the first mounting member 11 in which the liquid L is sealed, and the elastic body 13 on the wall surface.
  • a partition member 16 for partitioning into a main liquid chamber 14 and a sub liquid chamber 15 which are partly provided.
  • the first mounting member 11 and the second mounting member 12 have their central axes located on a common axis.
  • the common axis is defined as the axis O
  • the second mounting member 12 side along the axis O direction is defined as the upper side
  • the first mounting member 11 side is defined as the lower side
  • the direction perpendicular to the axis O is defined as the radial direction
  • the direction around the axis O is defined as the circumferential direction.
  • the vibration isolator 1 When the vibration isolator 1 is mounted on a vehicle, for example, the second mounting member 12 is connected to an engine as a vibration generating unit, while the first mounting member 11 is a vibration receiving unit via a bracket (not shown). As a result, the engine vibration is suppressed from being transmitted to the vehicle body. Further, in the vibration isolator 1 of the present embodiment, a liquid L such as ethylene glycol, water, or silicone oil is sealed in the liquid chamber 10 (the main liquid chamber 14 and the sub liquid chamber 15) of the first mounting member 11. Liquid-filled type.
  • a liquid L such as ethylene glycol, water, or silicone oil
  • the first attachment member 11 has an upper cylindrical portion 21 and a lower cylindrical portion 22.
  • the elastic body 13 described above is liquid-tightly joined to the inner peripheral surface of the upper cylindrical portion 21 by vulcanization adhesion, and the first mounting member 11 is closed from above.
  • a circumferential groove 23 that is recessed inward in the radial direction extends over the entire circumference at a boundary portion with the lower cylindrical portion 22.
  • the lower cylindrical portion 22 bulges outward in the radial direction with respect to the upper cylindrical portion 21.
  • the lower cylindrical portion 22 has a C shape in a longitudinal sectional view along the axis O direction, and is open toward the inner side in the radial direction.
  • a diaphragm 25 is mounted in a liquid-tight state, and the first mounting member 11 is closed from below.
  • the diaphragm 25 includes a diaphragm ring 26 fitted in the lower cylindrical portion 22, and a film-like diaphragm rubber 27 that closes the inside of the diaphragm ring 26.
  • the diaphragm ring 26 includes an annular bottom wall portion 26a and a peripheral wall portion 26b erected upward from the outer peripheral edge of the bottom wall portion 26a.
  • the peripheral wall portion 26b has a multistage cylindrical shape with a smaller outer diameter as it is positioned below.
  • the diaphragm 25 is fixed by caulking the lower cylindrical portion 22 radially inward with the upper portion of the peripheral wall portion 26b fitted in the lower cylindrical portion 22.
  • Diaphragm rubber 27 has an inverted bowl shape, and a covering rubber 28 vulcanized and bonded to diaphragm ring 26 is integrally formed on the outer peripheral portion thereof.
  • the second mounting member 12 is positioned above the first mounting member 11, and the elastic body 13 is liquid-tightly bonded to the outer peripheral surface thereof by vulcanization adhesion.
  • a female screw portion 31 to which a male screw portion (not shown) of the vibration receiving portion is screwed is extended along the axis O direction.
  • the second mounting member 12 is provided with a flange portion 32 projecting outward in the radial direction over the entire circumference of the second mounting member 12.
  • the elastic body 13 has a top tube shape made of an elastically deformable material (for example, a rubber material), and the diameter is gradually increased from the upper side to the lower side.
  • the elastic body 13 has an upper end connected to the second mounting member 12 and a lower end connected to the first mounting member 11.
  • the inner peripheral surface of the upper cylindrical portion 21 of the first mounting member 11 is covered with the elastic body 13 over almost the entire area.
  • the partition member 16 is integrally formed of, for example, an aluminum alloy or resin, and is fitted in the first mounting member 11 in a liquid-tight manner.
  • the part defined by the partition member 16 and the elastic body 13 constitutes the main liquid chamber 14, and the part defined by the partition member 16 and the diaphragm 25 is A secondary liquid chamber 15 is configured.
  • the partition member 16 includes a disk-shaped main body 41 and a passage wall 42 that protrudes downward from the main body 41.
  • the main body 41 has an outer peripheral end positioned radially outside the inner peripheral surface of the elastic body 13, a lower end surface of the elastic body 13, a step portion of the above-described peripheral wall portion 26 b of the diaphragm ring 26, and It is fixed in a state of being sandwiched in the direction of the axis O between the two.
  • the main body 41 partitions the first mounting member 11 into a main liquid chamber 14 and a sub liquid chamber 15.
  • the periphery of the main body portion 41 is surrounded by the upper portion of the peripheral wall portion 26b from the outside in the radial direction.
  • the passage wall 42 has a spiral shape in a plan view as viewed from the direction of the axis O, and is formed in an outer peripheral portion of the main body 41 that overlaps with the bottom wall 26a of the diaphragm ring 26 described above in the direction of the axis O. Yes.
  • the lower end surface of the passage wall 42 is in contact with the bottom wall portion 26 a of the diaphragm ring 26 through the covering rubber 28.
  • a portion defined by the main body 41, the passage wall 42, and the bottom wall 26 a constitutes a restriction passage 45 that connects the inside of the main liquid chamber 14 and the inside of the sub liquid chamber 15.
  • the restriction passage 45 communicates with the main liquid chamber 14 through a main side opening 46 (see FIG. 2) formed in a portion of the main body portion 41 that is located radially outside the outer end portion of the passage wall 42. ing.
  • the restriction passage 45 communicates with the sub liquid chamber 15 through the inner end portion of the passage wall 42.
  • the restriction passage 45 is a vibration having a normal magnitude assumed to be input from the vibration generating unit, such as idle vibration (for example, frequency is 18 Hz to 30 Hz, amplitude is ⁇ 0.5 mm or less), and frequency is higher than idle vibration.
  • idle vibration for example, frequency is 18 Hz to 30 Hz, amplitude is ⁇ 0.5 mm or less
  • frequency is higher than idle vibration.
  • causes liquid column resonance (resonance) with respect to normal vibration input such as low shake vibration (for example, frequency is 14 Hz or less and amplitude is greater than ⁇ 0.5 mm).
  • the resonance frequency of the limiting passage 45 is the frequency of this normal vibration.
  • the resonance frequency of the restriction passage 45 is set (tuned) based on, for example, the flow path length and the cross-sectional area of the restriction passage 45.
  • a communication hole 51 is formed in the main body 41 of the partition member 16 so as to penetrate the main body 41 in the direction of the axis O and communicate the inside of the main liquid chamber 14 and the sub liquid chamber 15.
  • the communication hole 51 is arranged coaxially with the axis O, and gradually decreases in diameter from the upper side (main liquid chamber 14 side) toward the lower side (sub liquid chamber 15 side).
  • an opening / closing mechanism 50 that opens and closes the communication hole 51 in accordance with the internal pressure in the main liquid chamber 14 is disposed in the main liquid chamber 14.
  • the opening / closing mechanism 50 elastically moves the movable part 52 in the communication hole 51 so as to close the opening part on the main liquid chamber 14 side and the direction away from the partition member 16 toward the main liquid chamber 14 side (upward).
  • an elastic support portion 53 that is displaceably supported and opens and closes the communication hole 51.
  • the elastic support part 53 is made of a material having higher rigidity than the movable part 52, such as metal, and is roughly configured in a belt shape extending along one direction in the radial direction.
  • the elastic support portion 53 is elastically deformable in the thickness direction (axis O direction), and urges the movable portion 52 downward.
  • the elastic support portion 53 includes a pair of fixing portions 61 positioned on the outer side in the radial direction and a radially inner end portion of the fixing portion 61 on the inner side in the radial direction. It has a pair of elastic deformation part 62 each protruded toward each other, and a frame member 63 that connects inner ends of the elastic deformation parts 62 in the radial direction.
  • the fixing portion 61 is fixed in a state where the outer end portion in the radial direction is sandwiched between the main body portion 41 of the partition member 16 and the lower end surface of the elastic body 13 in the direction of the axis O.
  • fixed part 61 is accommodated separately in a pair of accommodating recessed part 65 (refer FIG. 2) formed in the outer peripheral part of the main-body part 41, respectively.
  • These receiving recesses 65 have a shape in plan view as viewed from the direction of the axis O and have the same shape as the fixed portion 61, and a depth in the direction of the axis O is set to be equal to or less than the thickness of the fixed portion 61.
  • the accommodation recessed part 65 is open
  • the outer edge in the radial direction of the fixed portion 61 is arranged flush with the outer peripheral edge of the main body portion 41.
  • the elastic deformation portion 62 has a trapezoidal shape in a longitudinal sectional view along the axis O direction, and the axis O direction (elastic support portion) so that the central portion in the radial direction bulges upward with respect to both ends in the radial direction. 53 in a direction intersecting with the extending direction of 53).
  • a central portion in the radial direction of the elastically deforming portion 62 is disposed with an interval upward with respect to the main body portion 41 of the partition member 16, and extends in parallel with the main body portion 41.
  • both ends of the elastic deformation portion 62 in the radial direction are inclined and extended downward toward the both sides in the radial direction.
  • the frame member 63 has an annular shape arranged coaxially with the axis O, and the radially inner ends of the pair of elastically deforming portions 62 described above are separately provided on the outer peripheral edges of the frame member 63 that are opposed to each other in the radial direction. It is connected continuously.
  • the outer diameter of the frame member 63 is at least larger than the inner diameter of the lower end opening of the communication hole 51.
  • the elastic force of the elastic support portion 53 can be adjusted by, for example, the width of the elastic support portion 53, the bending range of the elastic deformation portion 62, the amount of bending, and the like.
  • the movable portion 52 is an elastic film formed of an elastically deformable material (for example, a rubber material), and is formed integrally with the elastic support portion 53 by insert molding or the like.
  • the movable portion 52 includes a lid portion 71 that closes the communication hole 51 from above, and a plug portion 72 that protrudes downward from the lid portion 71.
  • the lid portion 71 has a disk shape arranged coaxially with the axis O, and a frame member 63 is embedded in the outer peripheral portion thereof.
  • the inner peripheral portion of the movable portion 52 does not have the elastic support portion 53 and can be elastically deformed with respect to the frame member 63.
  • the frame member 63 is covered with the lid 71 and is not exposed in the main liquid chamber 14.
  • the outer diameter of the lid 71 is larger than the inner diameter of the upper end opening of the communication hole 51.
  • a protruding portion 75 that protrudes downward is formed in a portion of the lid portion 71 that is located on the outer side in the radial direction from the communication hole 51.
  • the projecting portion 75 has a sharpened shape with a radial width that tapers downward and extends in an annular shape over the entire circumference of the lid portion 71.
  • the lid 71 is in close contact with the main body 41 of the partition member 16 from above via the lower end edge of the protrusion 75.
  • the plug portion 72 has a cylindrical shape arranged coaxially with the axis O, and has an outer diameter smaller than the inner diameter of the upper end opening of the communication hole 51 and larger than the inner diameter of the lower end opening.
  • the plug portion 72 is fitted in the communication hole 51 with the outer peripheral edge at the lower end thereof being in close contact with the inner peripheral surface of the communication hole 51.
  • the vibration-proof performance of the movable part 52 can be tuned by adjusting the shape (for example, thickness and outer diameter) of the movable part 52 and the shape (for example, depth and inner diameter) of the communication hole 51.
  • the inner peripheral portion (portion located on the inner side in the radial direction of the frame member 63) of the movable portion 52 may be made thinner than the outer peripheral portion.
  • the vibration isolator 1 As shown in FIG. 1, in the vibration isolator 1 described above, the vibration from the vibration generating unit is transmitted to the second mounting member 12 and then transmitted to the elastic body 13, whereby the elastic body 13 is elastically deformed. . At this time, the elastic body 13 acts as a vibration absorbing main body, the vibration is absorbed by the vibration absorbing action based on the internal friction or the like of the elastic body 13, and the vibration transmitted from the first mounting member 11 to the vibration receiving portion side is reduced. .
  • the elastic body 13 is elastically deformed by the shake vibration and a relatively large fluid pressure change is generated in the main liquid chamber 14. And the fluid pressure in the main fluid chamber 14 periodically repeats large elevations.
  • the liquid in the liquid chamber 10 flows between the main liquid chamber 14 and the sub liquid chamber 15 through the restriction passage 45. Since the restriction passage 45 is tuned to cope with the shake vibration, the liquid L in the liquid chamber 10 passes between the main liquid chamber 14 and the sub liquid chamber 15 through the restriction passage 45 as described above. At this time, liquid column resonance occurs in the liquid flowing through the restriction passage 45. For this reason, the shake vibration input to the vibration isolator 1 is attenuated by the liquid column resonance in the restriction passage 45, and the shake vibration transmitted to the vibration receiving portion side is reduced.
  • the movable portion 52 is elastically displaced upward with respect to the partition member 16 mainly by elastically deforming the elastic deformation portion 62 upward. Then, the movable part 52 is separated upward from the partition member 16, so that the communication hole 51 is opened, and the inside of the main liquid chamber 14 and the inside of the sub liquid chamber 15 are communicated through the communication hole 51. As a result, the liquid L in the sub liquid chamber 15 flows into the main liquid chamber 14 through the communication hole 51, thereby suppressing the negative pressure in the main liquid chamber 14. As a result, the occurrence of cavitation can be suppressed.
  • the elastic support portion 53 is disposed in the main liquid chamber 14 and the movable portion 52 is elastically displaced in a direction away from the partition member 16 toward the main liquid chamber 14 side.
  • the elastic force of the elastic support part 53 is adjusted separately from the movable part 52 that attenuates and absorbs small amplitude vibrations (such as idle vibrations). Can respond. That is, tuning can be performed independently according to the type of vibration input, and the tuning can be performed easily and with high accuracy.
  • the elastic support portion 53 urges the movable portion 52 toward the partition member 16 side, a sealing property between the movable portion 52 and the partition member 16 can be ensured.
  • the communication hole 51 can be prevented from being unexpectedly opened by vibration input other than large vibration, liquid is transmitted between the main liquid chamber 14 and the sub liquid chamber 15 through the communication hole 51 when vibration input other than large vibration is input. It is possible to suppress the circulation of L and maintain the desired vibration isolation performance.
  • the elastic support portion 53 (fixed portion 61) can be fixed in the main liquid chamber 14 while being sandwiched between the partition member 16 and the elastic body 13, so that the configuration can be further improved. Simplification can be achieved.
  • the elastic support portion 53 (elastic deformation portion 62) is bent in the direction of the axis O, the elastic support portion 53 is compared to the case where the elastic support portion 53 is formed in a straight line. The length along the extending direction can be secured. In this case, the elastic support portion 53 can be easily extended so that the movable portion 52 is separated from the communication hole 51, and the amount of displacement of the elastic support portion 53 in the axis O direction can be ensured. Therefore, when a large vibration is input, the movable portion 52 can be reliably separated from the partition member 16, and the main liquid chamber 14 and the sub liquid chamber 15 can be reliably communicated with each other through the communication hole 51. In addition, since the elastic force of the elastic support portion 53 can be adjusted by the bending range and the bending amount of the elastic support portion 53, the elastic support portion 53 can be tuned more easily.
  • the outer peripheral part of the movable part 52 is held by the frame member 63, it is possible to suppress the outer peripheral part of the movable part 52 from turning up and causing a gap between the partition member 16 and the movable part 52. Thereby, the sealing performance between the movable part 52 and the partition member 16 is securable.
  • the frame member 63 is covered with the movable portion 52, it is possible to reduce the sound generated by opening and closing the communication hole 51 by the movable portion 52.
  • the movable portion 52 since the movable portion 52 is in contact with the partition member 16 via the protrusion 75, the surface pressure acting on the partition member 16 is increased, and the seal between the movable portion 52 and the partition member 16 is increased. Can be secured.
  • the technical scope of the present invention is not limited to the above embodiment, and various modifications can be made without departing from the spirit of the present invention.
  • the configuration in which the elastic support portion 53 biases the movable portion 52 toward the partition member 16 has been described.
  • the present invention is not limited to this, and the communication hole 51 is not opened when vibration other than large vibration is input. Any configuration is acceptable.
  • the design of the method for fixing the elastic support portion 53 can be changed as appropriate.
  • the configuration in which the elastic support portion 53 is fixed in a double-sided manner has been described.
  • the elastic support portion 53 can be appropriately changed in design as long as the elastic support portion 53 has a shape that supports the movable portion 52 so as to be elastically displaceable in a direction away from the partition member 16 toward the main liquid chamber 14 side.
  • the configuration in which the movable portion 52 made of an elastic film is elastically deformed with respect to the elastic support portion 53 has been described.
  • the present invention is not limited thereto, and the movable portion 52 is displaced with respect to the elastic support portion 53. It may be a configuration.
  • the configuration in which the elastic deformation portion 62 is bent in the direction of the axis O has been described.
  • the configuration is not limited thereto, and any configuration may be used as long as the elastic support portion 53 is bent. In this case, for example, it may be bent along the creeping direction of the partition member 16.
  • the vibration isolator which can suppress generation

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Combined Devices Of Dampers And Springs (AREA)

Abstract

La présente invention comporte : un premier élément de montage cylindrique (11) raccordé soit à une section de génération de vibrations soit à une section de réception de vibrations ; un deuxième élément de montage (12) raccordé à l'autre parmi la section de génération de vibrations et la section de réception de vibrations ; un corps élastique (13) servant à relier le premier élément de montage (11) et le deuxième élément de montage (12) ; un élément de séparation (16) servant à diviser une chambre de liquide à l'intérieur du premier élément de montage (11) en une chambre de liquide primaire (14) et une chambre de liquide secondaire (15), la chambre de liquide ayant un liquide (L) scellé dans celle-ci, l'élément de séparation (16) ayant un trou de communication (51) servant à raccorder l'intérieur de la chambre de liquide primaire (14) et l'intérieur de la chambre de liquide secondaire (15) ; une section mobile (52) servant à fermer l'ouverture du trou de communication (51), qui fait face à la chambre de liquide primaire (14) ; et une section de support élastique (53) disposée à l'intérieur de la chambre de liquide primaire (14), la section de support élastique (53) supportant la section mobile (52) de telle sorte que la section mobile (52) est élastiquement déplaçable dans la direction allant à l'opposé de l'élément de séparation (16) vers la chambre de liquide primaire (14), la section de support élastique (53) ouvrant et fermant le trou de communication (51). La section mobile (52) est disposée de manière déformable ou déplaçable par rapport à la section de support élastique (53) et absorbe une variation dans la pression à l'intérieur de la chambre de liquide primaire (14).
PCT/JP2015/074539 2014-10-20 2015-08-28 Dispositif d'amortissement de vibrations WO2016063627A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2014213573A JP6388438B2 (ja) 2014-10-20 2014-10-20 防振装置
JP2014-213573 2014-10-20

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20190111772A1 (en) * 2017-10-16 2019-04-18 Hyundai Motor Company Hydraulic mount having unidirectional damping membrane

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007107712A (ja) * 2005-09-14 2007-04-26 Tokai Rubber Ind Ltd 流体封入式防振装置
JP2009014013A (ja) * 2007-06-29 2009-01-22 Tokai Rubber Ind Ltd 流体封入式防振装置
JP2009168188A (ja) * 2008-01-17 2009-07-30 Tokai Rubber Ind Ltd 流体封入式防振装置
JP2014009814A (ja) * 2012-06-28 2014-01-20 Hyundai Motor Company Co Ltd 流体封入型マウント
JP2014122685A (ja) * 2012-12-21 2014-07-03 Yamashita Rubber Co Ltd 液封防振装置

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007107712A (ja) * 2005-09-14 2007-04-26 Tokai Rubber Ind Ltd 流体封入式防振装置
JP2009014013A (ja) * 2007-06-29 2009-01-22 Tokai Rubber Ind Ltd 流体封入式防振装置
JP2009168188A (ja) * 2008-01-17 2009-07-30 Tokai Rubber Ind Ltd 流体封入式防振装置
JP2014009814A (ja) * 2012-06-28 2014-01-20 Hyundai Motor Company Co Ltd 流体封入型マウント
JP2014122685A (ja) * 2012-12-21 2014-07-03 Yamashita Rubber Co Ltd 液封防振装置

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20190111772A1 (en) * 2017-10-16 2019-04-18 Hyundai Motor Company Hydraulic mount having unidirectional damping membrane
CN109667880A (zh) * 2017-10-16 2019-04-23 现代自动车株式会社 液压悬置元件
US10549621B2 (en) * 2017-10-16 2020-02-04 Hyundai Motor Company Hydraulic mount having unidirectional damping membrane
CN109667880B (zh) * 2017-10-16 2024-02-02 现代自动车株式会社 液压悬置元件

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JP6388438B2 (ja) 2018-09-12

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