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    • 71. 发明授权
    • Vibration reduction device and vibration reduction method
    • 减振装置及减振方法
    • US09387925B2
    • 2016-07-12
    • US13579150
    • 2011-02-11
    • Yuji YoshizakiHidetoshi SuzukiHiroshi Ito
    • Yuji YoshizakiHidetoshi SuzukiHiroshi Ito
    • B64C27/51B64C27/00F16F7/10
    • B64C27/001B64C2027/005F16F7/1005F16F2224/0283
    • A vibration reduction device includes: an elastic body; a dynamic mass; and a controllable mass. The dynamic mass is supported by an object of vibration reduction through the elastic body. An actuator causes the controllable mass to move with respect to the dynamic mass. Such a vibration reduction device can vary the frequency and the amplitude at which the dynamic mass vibrates with respect to the object of vibration reduction by causing the controllable mass to move appropriately with respect to the dynamic mass, thereby enabling vibration of the object of vibration reduction to be reduced more reliably. In addition, such a vibration reduction device can reduce vibration of a certain frequency of the object of vibration reduction even when the controllable mass is fixed with respect to the dynamic mass.
    • 减振装置包括:弹性体; 动态质量 和可控质量。 动态质量由通过弹性体进行减振的物体支撑。 致动器使可控质量相对于动态质量移动。 这样的减振装置可以通过使可控质量相对于动态质量适当地移动来改变动态质量相对于减振对象振动的频率和振幅,从而使得减振对象的振动 更可靠地减少。 此外,这种减振装置即使当可控质量相对于动态质量固定时,也可以减小振动目标的某一频率的振动。
    • 72. 发明授权
    • Hydraulic mount apparatus for supporting vibration source
    • 用于支撑振动源的液压安装装置
    • US09322451B2
    • 2016-04-26
    • US14232511
    • 2012-06-07
    • Eric Louis SchumannDavid John BartaBrent Wade Fourman
    • Eric Louis SchumannDavid John BartaBrent Wade Fourman
    • F16F13/10F16F13/26F16F13/30
    • F16F13/10F16F13/105F16F13/264F16F13/305F16F2224/0283F16F2224/045F16F2230/18
    • A hydraulic mount apparatus (20) for supporting a vibration source is disclosed. The mount apparatus (20) includes a housing (22) that defines a housing chamber (24) separated by a partition assembly (62) into a pumping chamber (64) and a receiving chamber (66), each containing a magnetorheological fluid (68). A flexible body (48) is partially disposed in the pumping chamber (64) for deforming elastically in response to vibrations caused by an external excitation. A fluid passage (106) extends between the pumping chamber (64) and the receiving chamber (66) for passing the fluid therebetween during low frequency vibrations. A piezostack actuator (118) partially extends into the pumping chamber (64) for moving within the pumping chamber (64) for varying the volume of the pumping chamber (64) to prevent a pressure increase in the pressure chamber to substantially cancel relatively high frequency vibrations.
    • 公开了一种用于支撑振动源的液压安装装置(20)。 安装装置(20)包括壳体(22),其限定由分隔组件(62)分离成泵送室(64)的容纳室(24)和容纳室(66),每个容纳磁流变流体(68) )。 柔性体(48)部分地设置在泵送室(64)中,用于响应于由外部激励引起的振动而弹性变形。 流体通道(106)在泵送室(64)和接收室(66)之间延伸,用于在低频振动期间使流体通过。 压柱式致动器(118)部分地延伸到泵送室(64)中,用于在泵送室(64)内移动以改变泵送室(64)的体积,以防止压力室中的压力增加以基本上抵消相对高的频率 振动
    • 73. 发明申请
    • HYDRAULIC MOUNT APPARATUS FOR SUPPORTING VIBRATION SOURCE
    • 用于支撑振动源的液压装置
    • US20140217661A1
    • 2014-08-07
    • US14232511
    • 2012-06-07
    • Eric Louis SchumannDavid John BartaBrent Wade Fourman
    • Eric Louis SchumannDavid John BartaBrent Wade Fourman
    • F16F13/10F16F13/26F16F13/30
    • F16F13/10F16F13/105F16F13/264F16F13/305F16F2224/0283F16F2224/045F16F2230/18
    • A hydraulic mount apparatus (20) for supporting a vibration source is disclosed. The mount apparatus (20) includes a housing (22) that defines a housing chamber (24) separated by a partition assembly (62) into a pumping chamber (64) and a receiving chamber (66), each containing a magnetorheological fluid (68). A flexible body (48) is partially disposed in the pumping chamber (64) for deforming elastically in response to vibrations caused by an external excitation. A fluid passage (106) extends between the pumping chamber (64) and the receiving chamber (66) for passing the fluid therebetween during low frequency vibrations. A piezostack actuator (118) partially extends into the pumping chamber (64) for moving within the pumping chamber (64) for varying the volume of the pumping chamber (64) to prevent a pressure increase in the pressure chamber to substantially cancel relatively high frequency vibrations.
    • 公开了一种用于支撑振动源的液压安装装置(20)。 安装装置(20)包括壳体(22),其限定由分隔组件(62)分离成泵送室(64)的容纳室(24)和容纳室(66),每个容纳室具有磁流变流体 )。 柔性体(48)部分地设置在泵送室(64)中,用于响应于由外部激励引起的振动而弹性变形。 流体通道(106)在泵送室(64)和接收室(66)之间延伸,用于在低频振动期间使流体通过。 压柱式致动器(118)部分地延伸到泵送室(64)中,用于在泵送室(64)内移动以改变泵送室(64)的体积,以防止压力室中的压力增加以基本上抵消相对高的频率 振动
    • 74. 发明授权
    • Controlled friction damping device
    • 控制摩擦阻尼装置
    • US08757334B2
    • 2014-06-24
    • US13582473
    • 2011-03-03
    • Benoit Petit Jean
    • Benoit Petit Jean
    • F16F9/32
    • F16F7/09F16F7/082F16F2224/0283
    • A semi-active device is used to damp vibrations moving relative to two elements between which the device is fixed. This device includes: a first member extending axially along a longitudinal axis; a second member extending axially along the same longitudinal axis, the two members being guided translatably relative to one another; a friction element extending between the two members and connecting them completely to each other by friction in an axial translational direction for any force below a threshold ‘s’, the force tending to create a relative translational movement of the two members along the longitudinal axis; an adjustment device enabling the value of the threshold to be adjusted. Thus adjusting the slip threshold of the friction element enables the dissipation conditions to be adjusted.
    • 半主动装置用于抑制相对于装置固定的两个元件移动的振动。 该装置包括:沿着纵向轴线轴向延伸的第一构件; 沿着相同的纵向轴线轴向延伸的第二构件,所述两个构件相对于彼此可平移地引导; 摩擦元件在两个构件之间延伸并且通过在轴向平移方向上的摩擦将它们完全相互连接,用于任何低于阈值's'的力,该力倾向于沿纵向轴线产生两个构件的相对平移运动; 能够调整阈值的调整装置。 因此,通过调节摩擦元件的滑移阈值,能够调节散热条件。