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    • 11. 发明授权
    • Vibration-damping device
    • 减震装置
    • US06854721B2
    • 2005-02-15
    • US10076781
    • 2002-02-13
    • Rentaro KatoHajime MaenoKoichi HasegawaKoichi MaedaTakahiro Aoi
    • Rentaro KatoHajime MaenoKoichi HasegawaKoichi MaedaTakahiro Aoi
    • F16F15/02F16F7/108F16M1/00
    • F16F7/108
    • A vibration-damping device for damping vibrations of a vibrative member, which includes a damper mass member having a rigid abutting portion, a spring member for elastically connecting the damper mass member to the vibrative member to cooperate with the damper mass member to constitute a second vibration system whose natural frequency is tuned to a frequency band of the vibrations of the vibrative member, and an independent mass member disposed so as to be opposed to the rigid abutting portion in a vibration input direction with a given gap therebetween without being adhesive to the rigid abutting portion. The independent mass member is independently displaceable relative to and brought into abutting contact directly and elastically with said rigid abutting portion in said vibration input direction.
    • 一种用于阻尼振动件的振动的减振装置,其包括具有刚性抵接部分的阻尼器质量部件,用于将阻尼器构件弹性连接到振动部件的弹簧部件,以与阻尼块构件配合以构成第二 其固有频率被调谐到振动构件的振动的频带的振动系统,以及独立的质量构件,其被设置为在振动输入方向上与刚性邻接部分相对并且具有给定的间隙,而不与粘合剂 刚性邻接部分。 独立的质量构件可以在所述振动输入方向上相对于所述刚性邻接部分直接地和弹性地独立地移动并与之抵接。
    • 12. 发明授权
    • Virbration damping device for vehicles
    • 车辆阻力减振装置
    • US06719108B2
    • 2004-04-13
    • US09805859
    • 2001-03-13
    • Koichi HasegawaRentaro Kato
    • Koichi HasegawaRentaro Kato
    • F16F710
    • B60G13/16B60G7/001B60G2202/25B60G2206/10F16F7/10F16F15/02F16F15/145
    • Vibration damping device for vehicles includes: a rigid housing member having an accommodation space and fixed to a vibrative member; and an independent mass member having a rigid mass body and an elastic body layer bonded on the outer surface of the rigid mass body. The independent mass member is non-adhesively disposed in the accommodation space such that an outer surface of the independent mass member is opposed to the inner surface of the housing member with a predetermined gap distance therebetween, to thereby permit displacement of the independent mass member relative to the housing member. The independent mass member and the housing member is brought into elastic impact against each other at respective abutting surfaces thereof in at least one vibrational input direction. The elastic body layer has a spherical outer surface so as to facilitate bouncing displacement of the independent mass member within the accommodation space.
    • 用于车辆的减震装置包括:具有容纳空间并固定到振动构件的刚性壳体构件; 以及具有刚性质量体和粘结在刚性质量体的外表面上的弹性体层的独立质量构件。 独立质量构件非接合地设置在容纳空间中,使得独立质量构件的外表面与壳体构件的内表面之间以预定的间隙距离相对,从而允许独立质量构件相对 到房屋会员 独立质量构件和壳体构件在至少一个振动输入方向上在其各自的邻接表面处彼此弹性冲击。 弹性体层具有球面外表面,以便于独立质量构件在容纳空间内的弹跳位移。
    • 16. 发明授权
    • Deformable sensor system
    • 变形传感器系统
    • US08149211B2
    • 2012-04-03
    • US12115928
    • 2008-05-06
    • Tomonori HayakawaTetsuyoshi ShibataRentaro KatoKazunobu HashimotoYo KatoToshiharu Mukai
    • Tomonori HayakawaTetsuyoshi ShibataRentaro KatoKazunobu HashimotoYo KatoToshiharu Mukai
    • G06F3/045
    • G01L1/205G06F3/0414G06F3/045
    • A deformable sensor system that can be used for pressure-distribution sensors. The deformable sensor system makes it possible to obtain a pressure distribution with a much higher accuracy, while reducing the number of electrodes. The system utilizes a deformable sensor which can detect deformation as the electric resistivity of the surface increases monotonically as an elastic deformation variation in each of the elastic deformations increases. Based on a voltage being detected by means of a detecting unit, the deformable sensor electric-resistivity variation computing unit computes the variation of the electric resistivity based on the method of least squares with a restriction condition imposed thereon. The system uses such a technology as “EIT” that is based on an inverse-problem theory. At an external-force position computing unit, a position in a pressure-receiving surface, position which receives an external force, is computed based on the computed electric-resistivity variation.
    • 可用于压力分布传感器的可变形传感器系统。 可变形传感器系统使得可以以更高的精度获得压力分布,同时减少电极的数量。 该系统利用可变形的传感器,当每个弹性变形中的弹性变形变化增加时,随着表面的电阻率单调增加,可以检测变形。 基于通过检测单元检测到的电压,可变形传感器电阻率变化计算单元基于施加有限制条件的最小二乘法来计算电阻率的变化。 该系统采用基于逆问题理论的“EIT”技术。 在外力位置计算单元,基于所计算的电阻率变化来计算受压表面中接受外力的位置。