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    • 11. 发明授权
    • Fluid-filled active elastic engine mount
    • 流体填充主动弹性发动机支架
    • US06527262B2
    • 2003-03-04
    • US09836966
    • 2001-04-17
    • Yoshihiko HaginoKatsuhiro GotoTatsuya Suzuki
    • Yoshihiko HaginoKatsuhiro GotoTatsuya Suzuki
    • F16F900
    • F16F13/264
    • A fluid-filled elastic engine mount including an elastic body elastically connecting two mutually spaced-apart first and second mounting members and partially defining a pressure-receiving chamber filled with a non-compressible fluid, a flexible diaphragm partially defining an equilibrium chamber whose volume is variable, a movable oscillating plate partially defining the pressure-receiving chamber, an oscillating device for oscillating the movable oscillating plate for controlling pressure of the fluid in the pressure-receiving chamber, a first and a second orifice passage for effecting fluid communication between the pressure-receiving and equilibrium chambers. The first and second orifice passages are tuned to a low frequency band corresponding to an engine shake vibration and a medium-frequency range corresponding to an engine idling vibration, while the first and second orifice passages are disposed parallel to each other. The elastic engine mount further comprises a deformable elastic plate disposed in one of opposite opening of the second orifice passage located on the side of the pressure-receiving chamber, so that the deformable elastic plate closes the opening of the second orifice passage on the side of the pressure-receiving chamber.
    • 一种流体填充的弹性发动机支架,其包括弹性连接两个相互间隔开的第一和第二安装构件并且部分限定填充有不可压缩流体的压力接收室的弹性体,部分地限定其体积为 可变的部分地限定压力接收室的可动振荡板,用于振荡可移动振动板以控制压力接收室中的流体的压力的振荡装置,用于实现压力接收室之间的流体连通的第一和第二孔口通道 接收和平衡室。 第一和第二孔通道被调谐到对应于发动机振动振动和对应于发动机怠速振动的中频范围的低频带,同时第一和第二孔通道彼此平行设置。 弹性发动机支架还包括可变形弹性板,其设置在位于压力接收室一侧的第二节流孔通道的相对开口之一中,使得可变形弹性板将第二节流孔通道的开口关闭 受压室。
    • 12. 发明授权
    • Adaptive control method for cyclic signal
    • 循环信号的自适应控制方法
    • US06216047B1
    • 2001-04-10
    • US09174544
    • 1998-10-19
    • Katsuhiro Goto
    • Katsuhiro Goto
    • G05B1302
    • G10K11/178G05B13/042G10K2210/3012G10K2210/3054G10K2210/503
    • An adaptive control method employs an adaptive signal generation algorithm 11 for generating an adaptive signal y(n) which cancels a cyclic signal y(n) at a measurement point 24, and an adaptive coefficient vector renewing algorithm 12 for renewing the amplitudes a(n) and phases &phgr;(n) of the adaptive signal y(n). The adaptive coefficient vector renewing algorithm 12 is quasi-normalized by a sum [A(&ohgr;)+&ggr;]. The A(&ohgr;) is a gain measurement of a transfer characteristic 23, and the &ggr; is a divergence prevention constant. Hence, in a frequency region where the gain A(&ohgr;) is high, a step size is small so that the stability of the adaptive control method can be enhanced. In a frequency region where the gain A(&ohgr;) is low, the step size is large so that the adaptability can be improved. As a result, the convergence stability and the characteristic following the frequency variation are compatible with each other.
    • 自适应控制方法采用自适应信号生成算法11,用于生成在测量点24消除循环信号y(n)的自适应信号y(n),以及用于更新幅度a(n)的自适应系数向量更新算法12 )和自适应信号y(n)的相位phi(n)。 自适应系数向量更新算法12通过和[A(ω)+γ]进行准归一化。 A(ω)是传递特性23的增益测量,γ是发散预防常数。 因此,在增益A(ω)高的频率区域中,步长小,能够提高自适应控制方法的稳定性。 在增益A(ω)低的频率区域中,台阶大,能够提高适应性。 结果,收敛稳定性和频率变化之后的特性彼此兼容。
    • 13. 发明授权
    • Upper support for shock absorber in suspension system
    • 用于休克系统的冲击吸收器的上支撑
    • US5064176A
    • 1991-11-12
    • US503944
    • 1990-04-04
    • Katsuhiro Goto
    • Katsuhiro Goto
    • B60G13/08B60G15/06F16F9/54F16F13/14F16F13/16
    • F16F13/1436B60G15/068B60G2202/312B60G2204/1242B60G2204/128B60G2204/41062B60G2204/418
    • An upper support for a suspension system, including a generally cylindrical inner rigid member, a generally cylindrical outer rigid member, and at least one generally annular elastic body which is interposed between the inner and outer rigid members for elastically connecting these members, and which at least partially defines at least one fluid chamber that is filled with a non-compressible fluid. The upper support further includes at least one resonance member each of which is accommodated in the corresponding fluid chamber and has an outer configuration substantially corresponding to an inner shape of the corresponding fluid chamber. Each resonance member is supported by the inner rigid member or the outer rigid member, and cooperates with an inner wall surface of the corresponding fluid chamber to define a resonance portion which has predetermined dimensions, and through which the non-compressible fluid is forced to flow upon application of a dynamic vibrational load.
    • 悬架系统的上部支撑件,包括大致圆柱形的内部刚性构件,大致圆柱形的外部刚性构件,以及至少一个大体上环形的弹性体,其插入在内部和外部刚性构件之间,用于弹性地连接这些构件, 至少部分地限定了填充有不可压缩流体的至少一个流体室。 上支撑件还包括至少一个共振构件,每个谐振构件容纳在相应的流体室中,并且具有基本对应于相应流体室的内部形状的外部构造。 每个共振构件由内部刚性构件或外部刚性构件支撑,并且与相应流体室的内壁表面配合以限定具有预定尺寸的共振部分,并且通过该共振部分不可压缩流体被迫流动 在施加动态振动载荷时。
    • 14. 发明授权
    • Fluid filled vibration damping device
    • 流体填充减震装置
    • US07140602B2
    • 2006-11-28
    • US10769402
    • 2004-01-30
    • Katsuhiro GotoHajime MaenoKoichi Maeda
    • Katsuhiro GotoHajime MaenoKoichi Maeda
    • F16F5/00
    • F16F13/18F16F13/103F16F2226/04
    • A fluid filled vibration damping device including: an elastic body elastically connecting a first and a second mounting member and partially defining a pressure receiving chamber filled with a non-compressible fluid; a flexible diaphragm partially defining an equilibrium chamber filled with the non-compressible fluid and connected to the pressure-receiving chamber via an orifice passage. The first mounting member includes an elastic-body-side central member bonded to the elastic body central portion, and a rubber-layer-side central member bonded to the flexible rubber layer central portion, both mutually superposed on and fastened together by a connecting bolt. A fitting recess and projection are formed at an interface between two members, and a mounting projection projecting outward on an opposite side from the interface. The connecting bolt is off-centered from a center of the two members by a give distance.
    • 一种流体填充的减震装置,包括:弹性体,弹性地连接第一和第二安装构件,并且部分地限定填充有不可压缩流体的压力接收室; 柔性隔膜部分地限定了填充有不可压缩流体的平衡室,并且经由孔口通道连接到受压室。 第一安装构件包括接合到弹性体中心部分的弹性体侧中心构件和粘结到柔性橡胶层中心部分的橡胶层侧中心构件,两者通过连接螺栓相互重叠并紧固在一起 。 在两个构件之间的界面处形成有嵌合凹部和突起,以及在与界面相对的一侧向外突出的安装突起。 连接螺栓从两个构件的中心偏离一定距离。
    • 15. 发明授权
    • Fluid-filled active vibration damping device
    • 流体填充主动减振装置
    • US06406010B1
    • 2002-06-18
    • US09495285
    • 2000-01-31
    • Katsuhisa YanoTakashi YoshidaKatsuhiro GotoYoshihiko Hagino
    • Katsuhisa YanoTakashi YoshidaKatsuhiro GotoYoshihiko Hagino
    • F16F0500
    • F16F13/106F16F13/264
    • A fluid-filled active vibration damping device, including an elastic body which is elastically deformed when a vibration is input to the damping device and which partially defines a pressure receiving chamber as a portion of a fluid chamber filled with a non-compressible fluid, an oscillating body which partially defines the pressure receiving chamber, a drive device which oscillates the oscillating body, so as to control a pressure of the non-compressible fluid in the pressure receiving chamber, the drive device comprising an output member which is formed independent of the oscillating body and which is movable in a direction of oscillation of the oscillating body, a first biasing device which biases the oscillating body toward the output member of the drive device, and a second biasing device which biases the output member of the drive device toward an outside surface of the oscillating body, so that the output member is held in direct or indirect contact with the outside surface of the oscillating body.
    • 一种流体填充的主动减振装置,包括弹性体,当弹性振动被输入到阻尼装置时弹性变形,并且部分地限定作为填充有不可压缩流体的流体室的一部分的压力接收室, 部分地限定压力接收室的摆动体,使振荡体振动的驱动装置,以控制压力接收室内的不可压缩流体的压力,该驱动装置包括独立于压力容纳室形成的输出部件 摆动体,其能够在摆动体的摆动方向上移动;将振动体朝向驱动装置的输出部件偏置的第一偏置装置,以及将驱动装置的输出部件朝向驱动装置偏置的第二偏置装置 摆动体的外表面,使得输出构件与外表面保持直接或间接接触 摆动体。