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    • 1. 发明专利
    • DE69119797D1
    • 1996-07-04
    • DE69119797
    • 1991-01-16
    • SUMITOMO RUBBER IND
    • SASAKI TERUOFUJISAWA KAZUHIROKAWANABE AKEMIMIYAMOTO YOSHIAKIKATO SEINOSUKE
    • E04B1/36E04H9/02F16F15/04
    • The present invention relates to a vibration-proofing device which supports an upper structure (11), on a lower structure (12), to allow the upper structure (11) to swing, thereby isolating earthquakes, traffic vibrations and vibrations from the equipment installed in another room so as to protect the upper structure (11) from vibrations. An object of the Invention is to provide a bearing type of vibration-proofing device which absorbs not only horizontal but also vertical components of vibrations. The invention provides an arrangement wherein interposed between upper (11) and lower (12) structures are rolling bodies for horizontally supporting the upper structure for swing movement, the device being characterized in that the rolling bodies (17,18) are in the from of cylindrical rollers and elastomeric bodies (14) are interposed between the cylindrical rollers (17,18) and the upper (11) and lower (12) structures. In the present invention, it is desirable that the cylindrical rollers (17,18) be stacked in n rows and that these rows of cylindrical rollers form an angle of 180 DEG /n. Further, it is more desirable that air spring (28) or coil spring (26) means be disposed vertically of the cylindrical rollers and that a plurality of taper rollers be radially arranged in a horizontal plane vertically of the cylindrical rollers (17,18).
    • 9. 发明专利
    • VIBRATION PROOFING DEVICE
    • JPH04136542A
    • 1992-05-11
    • JP25787490
    • 1990-09-26
    • SUMITOMO RUBBER IND
    • KAWANABE AKEMISASAKI TERUOKATO SEINOSUKE
    • E04F15/18E04H9/02F16F15/02
    • PURPOSE:To quickly absorb vibration such as torsional movement to exhibit good vibration proofing performance by a simple structure by radially connecting plural tapered rollers in horizontal planes, and arranging the rollers in the vertical direction. CONSTITUTION:When vibration such as torsional movement including rotational component is inputted at the time of generating the vibration, third tapered rollers 11... roll centered at a central point of arrangement of the rollers, and the rotational component is positively absorbed by the rolling. Vertical component is absorbed by elastic deformation of elastomers 6, 8, 18-20, 22 forming the rolling planes of first - third rollers, and horizontal component is absorbed by the rolling of first and second rollers 9...,10... on therolling planes formed by elastomers 8, 18-20 of respective pressure plates 7, 16, 17. When the first - the third rollers 9...,10..., 11... roll, the elastomers 6, 8,1 8-20, 22 are elastically deformed to produce rolling resistance and to exhibit the damping performance.
    • 10. 发明专利
    • VIBRATION ISOLATOR
    • JPH0478341A
    • 1992-03-12
    • JP19368990
    • 1990-07-20
    • SUMITOMO RUBBER IND
    • KATO SEINOSUKESASAKI TERUO
    • E04F15/18E04H9/02F16F13/00F16F13/20
    • PURPOSE:To easily adjust horizontal level with an excellent damping effect on vertical and horizontal vibration obtained by containing a friction damping body, which is composed of a compression spring, receiving seat, slider, and supporting member, and in which the contact surface of the receiving seat and the slider is made a tapered surface, in an air spring. CONSTITUTION:In each vibration isolator 1, compression air pressure in the inner spaces (m) and (n) of air springs 3 is increased/reduced to be set in a desired equilibrium condition. A slider 8 receives a vertical weight W to be pressed to a slide plate 14 to slide in the horizontal direction due to the input of horizontal vibration, and horizontal friction force is generated by the pressing of the slider 8 to the lower surface 16 of the slide plate 14 of a sliding surface 10. Also the input of vertical vibration causes the displacement of a compression spring 5 to be about to retain a vibration insulating floor 21 in a stationary consition, however actually responsive vibration is generated in the vibration insulating floor 21. When the slider 8 receives the vertical load due to the input of the vertical vibration, the vertical load is divided into force along a tapered surface 12 and that along the normal line direction to generate the horizontal component force of the vertical load. Vertical friction force is generated due to the pressing of the slider 8 to the inner peripheral surface 7 of the tubular body 4 of a sliding surface 9 by the horizontal component force.