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    • 2. 发明授权
    • Fluid-filled vibroisolating device
    • 流体充填的振动筛装置
    • US5139240A
    • 1992-08-18
    • US624459
    • 1990-12-10
    • Yasuo MiyamotoKeiichi Uchiyama
    • Yasuo MiyamotoKeiichi Uchiyama
    • F16F13/10
    • F16F13/103F16F13/105
    • A fluid-filled vibroisolating device includes a joint member adapted to be joined to a vibrating body such as an engine, a support member adapted to be supported on a supporting body such as a vehicle frame and defining an expandable and contractible auxiliary fluid chamber filled with a fluid, an elastomeric member interconnecting the joint and support members and disposed in a vibrating direction in which the vibrating body vibrating direction in which the vibrating body vibrates, the elastomeric member, the joint member, and the support member jointly defining an expandable and contractible main fluid chamber filled with a fluid, a partition mounted in the support member and separating the main and auxiliary fluid chambers from each other, the partition having flow regulator for regulating the flow of the fluid between the main and auxiliary fluid chambers, and a reinforcing member integrally formed with the elastomeric member for preventing the elastomeric member from being collapsed. By selecting various parameters of the device to meet a predetermined equation, and providing as the flow regulator an orifice between the main and auxiliary fluid chambers for allowing the fluid to flow or resonate, and also a movable plate movable dependent on the difference between the fluid pressures in the main and auxiliary fluid chambers, the damping capability of the fluid-filled vibroisolating device is improved and the dynamic spring constant thereof is uniformly lowered in a wide range of frequencies.
    • 流体填充的振动消音装置包括适于接合到诸如发动机的振动体的接合构件,适于被支撑在诸如车辆框架的支撑体上的支撑构件,并且限定充满可膨胀和收缩的辅助流体室 液体,弹性体构件,其将接头和支撑构件互连并且设置在振动体振动的振动体振动方向的振动方向上,弹性体构件,接头构件和支撑构件共同限定可扩张和收缩的 填充有流体的主流体室,安装在支撑构件中并将主流体室和辅助流体室彼此分离的分隔件,该分隔件具有用于调节主流体室和辅助流体室之间的流体流动的流量调节器, 与弹性体构件一体形成的构件,用于防止弹性体构件收缩 ed。 通过选择装置的各种参数以满足预定的方程,并且在流量调节器之间提供用于允许流体流动或共振的主流体室和辅助流体室之间的孔,以及可移动的板,其可取决于流体 主流体室和辅助流体室中的压力提高了流体填充的振动消除装置的阻尼能力,并且其动态弹簧常数在宽的频率范围内均匀地降低。
    • 3. 发明授权
    • Fluid-filled vibroisolating device
    • 流体充填的振动筛装置
    • US4903951A
    • 1990-02-27
    • US192443
    • 1988-05-11
    • Yasuo MiyamotoKeiichi Uchiyama
    • Yasuo MiyamotoKeiichi Uchiyama
    • F16F13/10
    • F16F13/105F16F13/103
    • A fluid-filled vibroisolating device comprises a joint member adapted to be joined to a vibrating body such as an engine. A support member is adapted to be supported on a supporting body such as a vehicle frame and defining an expandable and contractible auxiliary fluid chamber filled with a fluid. An elastomeric member interconnects the joint and support members and is disposed in a vibrating direction in which the vibrating body vibrates. The elastomeric member, the joint member, and the support member jointly define an expandable and contractible main fluid chamber filled with a fluid. A partition is mounted in the support member and separates the main and auxiliary fluid chambers from each other. The partition has flow regulators for regulating the flow of the fluid between the main and auxiliary fluid chamber. A reinforcing member is integrally formed with the elastomeric member for preventing the elastomeric member from being collapsed. By selecting various parameters of the device to meet a predetermined equation, and providing as the flow regulating mechanism an orifice between the main and auxiliary fluid chambers for allowing the fluid to flow or resonate, and also a movable plate movable dependent on the difference between the fluid pressures in the main and auxiliary fluid chambers, the damping capability of the fluid-filled vibroisolating device is improved and the dynamic spring constant thereof is uniformly lowered in a wide range of frequencies.
    • 流体填充的振动消除装置包括适于接合到诸如发动机的振动体的接头构件。 支撑构件适于支撑在诸如车辆框架的支撑体上并且限定充满流体的可膨胀和收缩的辅助流体室。 弹性体构件将接头和支撑构件互连,并且设置在振动体振动的振动方向上。 弹性构件,接头构件和支撑构件共同限定了填充有流体的可膨胀和收缩的主流体室。 分隔件安装在支撑构件中并将主流体室和辅助流体室彼此分离。 隔板具有用于调节主流体室和辅助流体室之间的流体流动的流量调节器。 加强构件与弹性体构件一体地形成,以防止弹性体构件被折叠。 通过选择装置的各种参数以满足预定方程,并且提供作为流量调节机构的主流体室和辅助流体室之间的孔口,用于允许流体流动或共振,以及可移动的板,其可依赖于 主流体室和辅助流体室中的流体压力提高了流体填充的振动消除装置的阻尼能力,并且其动态弹簧常数在宽的频率范围内均匀地降低。
    • 4. 发明授权
    • Mount
    • 安装
    • US4858879A
    • 1989-08-22
    • US215660
    • 1988-07-06
    • Yasuo MiyamotoKatsuyoshi AraiKeiichi Uchiyama
    • Yasuo MiyamotoKatsuyoshi AraiKeiichi Uchiyama
    • B60K5/12F16F13/10F16F13/00
    • F16F13/10B60K5/1233
    • A combination viscous and resilient type of mount comprises a rigid boss adapted to be connected to a moving component such as an reciprocating engine, an annular flange adapted to be connected to a stationary support, a resilient element connected between the boss and the annular flange to resiliently supporting the moving component relative to the stationary support, the resilient element having a frustconical shape, a deformable element cooperating with the resilient element to define a chamber for viscous fluid, and a rigid partition connected to the flange and adapted to divide the fluid chamber into a working chamber and a compensation chamber, the partition including at least one orifice through which the two chambers are communicated with each other. A rigid spacer is interposed between the boss and a flange of the moving component and has an annular projection. A rigid ring is inserted into the resilient element and has an outwardly extending annular flange. When the boss moves downwards, the resilient element is pressed toward the partition upon contact of the projection of the spacer with the flange of the ring.
    • 粘性和弹性类型的安装件的组合包括适于连接到诸如往复式发动机的移动部件的刚性凸台,适于连接到固定支撑件的环形凸缘,连接在凸台和环形凸缘之间的弹性元件 所述弹性元件具有截锥形形状,与所述弹性元件配合以形成用于粘性流体的腔室的可变形元件以及连接到所述凸缘并适于将所述流体室 进入工作室和补偿室,所述隔板包括至少一个孔,所述两个室通过该孔彼此连通。 刚性间隔件插入在凸台和移动部件的凸缘之间并且具有环形突起。 刚性环插入到弹性元件中并且具有向外延伸的环形凸缘。 当凸起向下移动时,弹性元件在间隔件的突起与环的凸缘接触时被压向分隔件。
    • 9. 发明授权
    • Liquid encapsulated bushing having multiple chambers
    • 具有多个腔室的液体封装衬套
    • US06070862A
    • 2000-06-06
    • US877730
    • 1997-06-18
    • Yasuo Miyamoto
    • Yasuo Miyamoto
    • B60G7/02B60K5/12F16F1/387F16F13/14F16F13/00
    • F16F13/1418F16F1/387
    • An outer sleeve and an inner sleeve are connected to each other by an elastomeric member. Main liquid chambers and subsidiary liquid chambers, circumferentially connected to the main liquid chambers, are defined between the elastomeric member and the outer sleeve and communicate with each other through orifices. When a large load is input in directions X and X', the volume of the main liquid chambers are decreased, thereby causing the liquid forced out of the main liquid chambers to flow through the orifices, so that a damping force is produced by a resistance, due to a liquid, generated during flowing of the liquid. When a load in directions Z and Z' is input by a load in the directions X and X', the volume of the subsidiary liquid chambers adjoining the main liquid chambers is decreased, thereby causing the liquid, forced out of the subsidiary liquid chambers, to flow through the orifices, thus producing a damping force. Thus, it is possible to effectively damp the load applied in a main load-input direction and the load in a direction perpendicular to the main load-input direction.
    • 外套筒和内套筒通过弹性构件相互连接。 周向连接到主液室的主液室和附属液室限定在弹性构件和外套之间,并通过孔彼此连通。 当在方向X和X'上输入大的负载时,主液室的体积减小,从而使被迫从主液室流出的液体流过孔,从而通过阻力产生阻尼力 由于在液体流动期间产生的液体。 当方向Z和Z'上的载荷在方向X和X'上被输入时,与主液室相邻的附属液室的体积减小,从而使液体被迫离开辅助液室, 流过孔口,从而产生阻尼力。 因此,能够有效地抑制主负荷输入方向上的负荷和与主负荷输入方向垂直的方向的负荷。
    • 10. 发明授权
    • Support structure for stabilizer and support method for stabilizer
    • 稳定器的支撑结构和稳定器的支撑方法
    • US08240688B2
    • 2012-08-14
    • US12665781
    • 2008-07-08
    • Yasuo Miyamoto
    • Yasuo Miyamoto
    • B60G21/055B60G11/20
    • F16F1/16B60G3/14B60G21/0551B60G2200/142B60G2204/1222F16F1/377
    • Forming a recess in an intermediate section in an axis direction of an outer peripheral face of a stabilizer bush allows the contact surface pressure between an inner peripheral face thereof and an outer peripheral face of a torsion portion to be low in a section where the recess is formed. Therefore, when the torsion portion twistedly deforms, slipping against the torsion portion starts from the intermediate section in the axis direction of the stabilizer bush, and the slipping spreads to opposite end parts in the axis direction, thus enhancing the ride comfort of a vehicle. Moreover, open ends of axially opposite end parts of the stabilizer bush, where no recess is formed, are put in intimate contact with the outer peripheral face of the torsion portion, thus preventing sand and mud from entering therefrom.
    • 在稳定器衬套的外周面的轴向的中间部形成凹部,能够使凹部的内周面和扭转部的外周面的接触面压力低, 形成。 因此,当扭转部扭转变形时,相对于扭转部滑动,从稳定器衬套的轴向的中间部开始滑动,并且滑动向轴向方向扩展到相对的端部,从而提高车辆的乘坐舒适性。 此外,稳定器衬套的没有形成凹部的轴向相对端部的开口端与扭转部的外周面紧密接触,从而防止砂和泥从其中进入。