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    • 1. 发明授权
    • Hydraulic damper bearing
    • 液压减震器轴承
    • US06655667B1
    • 2003-12-02
    • US09580295
    • 2000-05-26
    • Arno HamaekersHans-Joachim Rudolf
    • Arno HamaekersHans-Joachim Rudolf
    • F16F500
    • F16F13/108F16F13/105
    • Hydraulic damper bearing for the attenuation of movement. In one embodiment the hydraulic damper bearing has a first anchoring unit and a second anchoring unit, the second anchoring unit moveable in relation to the first anchoring unit. The hydraulic damper bearing also has a spring component working between the first and the second anchoring units, an operating chamber filled with damping fluid and an equalizing chamber separate from the operating chamber and in fluid communication with the operating chamber via a damping duct which is bordered by a duct wall. The volume of the operating chamber is changed during the relative motion of the first and second anchoring support units. During this relative movement, the damping fluid is moved in the damping duct between the equalizing chamber and the operating chamber. A displacing element is arranged on the first anchoring unit and extends into the operating chamber. This element is moveable with the first anchoring unit relative to the second anchoring unit, so that the duct wall of the damping duct is formed at least in part by the displacing element.
    • 用于减震运动的液压减震器轴承。 在一个实施例中,液压阻尼器轴承具有第一锚定单元和第二锚定单元,第二锚定单元可相对于第一锚定单元移动。 液压阻尼器轴承还具有在第一和第二锚定单元之间工作的弹簧部件,操作室填充有阻尼流体和与操作室分离并且经由阻尼管道与操作室流体连通的均衡室 通过管道壁。 在第一和第二锚定支撑单元的相对运动期间改变操作室的体积。 在该相对运动期间,阻尼流体在均衡室和操作室之间的阻尼管道中移动。 位移元件布置在第一锚定单元上并延伸到操作室中。 该元件可相对于第二锚固单元与第一锚固单元相对移动,使得阻尼管道的管道壁至少部分地由位移元件形成。
    • 3. 发明授权
    • Hydraulically damping sleeve-type rubber spring
    • 液压阻尼套筒式橡胶弹簧
    • US6015141A
    • 2000-01-18
    • US868787
    • 1997-06-04
    • Hans-Joachim RudolfArnold SimuttisAxel Rudolph
    • Hans-Joachim RudolfArnold SimuttisAxel Rudolph
    • F16F13/14F16F5/00
    • F16F13/14
    • A hydraulically-damping sleeve-type rubber spring with an inner support element, which is surrounded by an outer support element at a radial distance. A spring element made of an elastomeric material is arranged in the gap formed by the radial distance. The outer support element and the spring element delimit at least one working chamber, which is connected with at least one first equalization chamber by at least one damping channel to conduct fluid. Viewed in cross-section, the first equalization chamber is delimited by the outer support element and a rubber-elastic expansion wall, where at least one second equalization chamber is arranged in the first equalization chamber, and the second equalization chamber is connected with the working chamber by a connecting channel.
    • 一种具有内部支撑元件的液压阻尼套筒型橡胶弹簧,其被径向距离的外部支撑元件包围。 由弹性材料制成的弹簧元件布置在由径向距离形成的间隙中。 外部支撑元件和弹簧元件限定至少一个工作室,其通过至少一个阻尼通道与至少一个第一均衡室连接以传导流体。 从横截面看,第一均衡室由外支撑元件和橡胶弹性膨胀壁限定,其中至少一个第二均衡室设置在第一均衡室中,第二均衡室与工作 室由连接通道。
    • 5. 发明授权
    • Hydraulic bearing
    • 液压轴承
    • US07188828B2
    • 2007-03-13
    • US10388014
    • 2003-03-13
    • Hans-Joachim RudolfArnold Simuttis
    • Hans-Joachim RudolfArnold Simuttis
    • F16F5/00F16F13/00F16F15/00
    • F16F13/101F16F13/105F16F13/108
    • A hydraulic bearing includes a supporting bearing, a bearing base, and an annular spring element of elastomeric material interconnecting the supporting base and the bearing base. A working chamber and a compensating chamber are bounded by the supporting bearing and bearing base and filled with damping fluid. A partition having an opening separates the working chamber from the compensating chamber. The opening connects the working chamber and the compensating chamber in a fluid-conducting manner. An annular stop is disposed in the working chamber and is movable relative to the supporting bearing in an axial direction. An inner peripheral edge of the annular stop is received in a receiving portion of the supporting bearing. A ratio of a thickness of the inner peripheral edge in the axial direction and a height of the receiving portion in the axial direction is 0.5 to 1.
    • 液压轴承包括支撑轴承,轴承座和将支撑基座和轴承座互连的弹性材料的环形弹簧元件。 工作室和补偿室由支撑轴承和轴承座限定,并填充阻尼流体。 具有开口的隔板将工作室与补偿室分开。 开口以流体传导方式连接工作室和补偿室。 环形止动件设置在工作室中,并且可相对于支撑轴承在轴向方向上移动。 环形止动件的内周边缘被容纳在支撑轴承的容纳部分中。 内周缘的轴向厚度与容纳部的轴向高度的比率为0.5〜1。
    • 8. 发明授权
    • Hydraulically damped bearing
    • 液压阻尼轴承
    • US06352248B1
    • 2002-03-05
    • US09615826
    • 2000-07-13
    • Arno HamaekersHans-Joachim RudolfArnold Simuttis
    • Arno HamaekersHans-Joachim RudolfArnold Simuttis
    • F16F500
    • F16F13/108F16F13/105
    • A hydraulically damped bearing having a first anchoring member (2) and a second anchoring member (3) that are arranged in a movable fashion to one another, having a spring element (6) operating between the first and second anchoring members (2, 3), and having an operating chamber (10) filled with a damping fluid and a compensation chamber (11) separate from the operating chamber (10) and connected to it via a channel (14) that is defined by the channel walls and that allows the fluid to pass through. The volume of the operating chamber (10) changes due to the relative movement of the first and second anchoring members (2, 3), such that the damping fluid is moved in the channel (14) between the compensation chamber (11) and the operating chamber (10). The operating chamber (10) and the compensation chamber (11) are separated by a separating wall (12) that is impacted on both sides by the damping fluid. This separating wall (12) is held in position at the second anchoring member (3) by a separating object (13), where the separating object (13) includes at least a first and a second separating object element (31, 32) which are adjacent in an axial bearing direction. The separating object elements (31, 32) are braced against each other and form a first radial inner section of the channel wall. A housing section (8) formed onto the second anchoring member (3) forms a radially outer section (18) of the channel wall.
    • 一种具有第一锚固构件(2)和第二锚固构件(3)的液压阻尼的轴承,所述第一锚定构件和第二锚固构件以可移动的方式相互布置,具有在第一和第二锚定构件(2,3)之间操作的弹簧元件 ),并且具有填充有阻尼流体的操作室(10)和与操作室(10)分离并经由通道壁限定的通道(14)连接到其上的补偿室(11),并且允许 流体通过。 操作室(10)的体积由于第一和第二锚固构件(2,3)的相对移动而改变,使得阻尼流体在补偿室(11)和 操作室(10)。 操作室(10)和补偿室(11)由分隔壁(12)分开,分隔壁(12)通过阻尼流体在两侧受到冲击。 该分离壁(12)通过分离物体(13)保持在第二锚固构件(3)的适当位置,其中分离物体(13)至少包括第一和第二分离物体元件(31,32),其中 在轴向方向上相邻。 分离对象元件(31,32)彼此支撑并形成通道壁的第一径向内部。 形成在第二锚固构件(3)上的壳体部分(8)形成通道壁的径向外部部分(18)。