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    • 1. 发明授权
    • Resilient mount for a piston engine
    • 活塞发动机的弹性安装
    • US5139241A
    • 1992-08-18
    • US614407
    • 1990-11-15
    • Arno HamaekersArnold SimuttisAxel RudolphTillman Freudenberg
    • Arno HamaekersArnold SimuttisAxel RudolphTillman Freudenberg
    • F16M7/00F16F13/14F16F13/28
    • F16F13/28F16F13/1463
    • A resilient mount for a piston engine, in which two liquid-filled working chambers (1, 2) are provided that are bounded by elastically inflatable boundary walls and are connected by at least two connecting passageways arranged in parallel. The connecting passageways include a damping passageway (6) which is arbitrarily closable by a valve (7). The damping passageway (6) forms a duct and which is so dimensioned that the enclosed liquid mass enters into a relative vibrating movement in phase with the piston engine, when the piston engine operates at idle speed, with an amplitude which is greater than the amplitude of the movements of the engine, multiplied by the ratio of the displacement cross section of the inflatable boundary walls (3) and the cross sectional area of the damping passageway (6).
    • 一种用于活塞发动机的弹性支架,其中设置有两个充满液体的工作室(1,2),其被弹性充气的边界壁限定,并且通过平行布置的至少两个连接通道相连接。 连接通道包括可由阀(7)任意关闭的阻尼通道(6)。 阻尼通道(6)形成管道,其尺寸被确定为使得当活塞发动机以怠速运行时,封闭的液体质量进入与活塞发动机同相的相对振动运动,振幅大于振幅 发动机的运动乘以可充气边界壁(3)的位移横截面与阻尼通道(6)横截面积的比值。
    • 4. 发明授权
    • Hydraulic bearing with electromagnetically compensated chambers
    • 带电磁补偿腔的液压轴承
    • US5346192A
    • 1994-09-13
    • US14964
    • 1993-02-08
    • Uwe WeltinUlrich FreudenbergTillman Freudenberg
    • Uwe WeltinUlrich FreudenbergTillman Freudenberg
    • F16F13/26F16F15/03
    • F16F13/264
    • A rubber bearing, in which a liquid-filled working chamber is bounded by an expanding member and by a compensating wall that is capable of moving back and forth in the direction of the working chamber, wherein the compensating wall consists at least partially of a material that is capable of being moved by magnetic forces and extends relatively movably with one partial area into an air gap between a pair of coils comprised of two mutually opposing magnetic coils, which are rigidly supported in two coil braces and are capable of receiving an electric alternating current. The magnetic fluxes of the magnetic coils in the air gap are superimposed upon the magnetic flux of at least one permanent magnet, and the magnetic coils synchronously receive an electric current in such a way that the magnetic flux generated by the permanent magnet is strengthened on one side of the compensating wall and weakened on the other side of the compensating wall.
    • 橡胶轴承,其中充满液体的工作室由膨胀构件和补偿壁限定,该补偿壁能够在工作室的方向上来回移动,其中补偿壁至少部分地由材料 其能够被磁力移动并且以一个部分区域相对移动地延伸到由两个相互相对的磁性线圈组成的一对线圈之间的气隙中,该两个线圈被刚性地支撑在两个线圈支架中并且能够接收电交替 当前。 气隙中的磁性线圈的磁通量叠加在至少一个永磁体的磁通上,并且磁性线圈同步地接收电流,使得由永久磁铁产生的磁通强化在一个 补偿墙的一侧并且在补偿壁的另一侧被削弱。
    • 5. 发明授权
    • Rubber bearing
    • 橡胶轴承
    • US5318283A
    • 1994-06-07
    • US976080
    • 1992-11-13
    • Uwe WeltinUlrich FreudenbergTillman Freudenberg
    • Uwe WeltinUlrich FreudenbergTillman Freudenberg
    • B60K5/12F16F13/00F16F13/26
    • F16F13/264B60G2600/26
    • A rubber bearing, in which a liquid-filled working chamber is bounded by an expanding member and by a compensating wall that is capable of moving back and forth in the direction of the working chamber, wherein the compensating wall consists at least partially of a material that is capable of being moved by magnetic forces and extends relatively movably with one partial area into an air gap between mutually opposing electromagnets, which are capable of receiving an electric current. Each electromagnet has at least one coil capable of receiving a d.c. current and at least one coil capable of receiving an a.c. current. In the opposing electromagnets, current traverses either the direct current coils or the alternating coils in opposite directions.
    • 橡胶轴承,其中充满液体的工作室由膨胀构件和补偿壁限定,该补偿壁能够在工作室的方向上来回移动,其中补偿壁至少部分地由材料 其能够被磁力移动并且通过一个部分区域相对移动地延伸到能够接收电流的相互相对的电磁体之间的气隙中。 每个电磁体具有至少一个能够接收直流的线圈。 电流和至少一个线圈,能够接收一个交流电。 当前。 在相对的电磁铁中,电流在相反方向上横穿直流线圈或交流线圈。
    • 8. 发明申请
    • Switchable assembly bearing with hydraulic damping
    • 具有液压阻尼的可切换组装轴承
    • US20050218571A1
    • 2005-10-06
    • US10506369
    • 2003-03-26
    • Tillman FreudenbergErhard Moog
    • Tillman FreudenbergErhard Moog
    • F16F13/26F16F5/00
    • F16F13/26
    • The invention relates to a switchable assembly bearing that comprises at least one working chamber and one compensation chamber which are separated by a dividing wall. The working chamber and compensation chamber are hydraulically interconnected by means of a damping channel, in addition to at least one other damping channel which can be closed by means of the sealed arrangement of a shut-off body which can be displaced along a displacement path. The other damping channel is formed and arranged in relation to the axis of symmetry of the bearing in such a way that the forces acting on the shut-off body by means of the hydraulic fluid counterbalance each other.
    • 本发明涉及一种可切换组件轴承,其包括由分隔壁隔开的至少一个工作室和一个补偿室。 除了至少一个其它阻尼通道之外,工作室和补偿室通过阻尼通道液压地互相连接,该阻尼通道可以通过可以沿着位移路径移位的关闭体的密封结构来关闭。 另一个阻尼通道相对于轴承的对称轴线形成并布置成使得通过液压流体相互抵消作用在截止阀体上的力。