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    • 53. 发明申请
    • BALANCEABLE ROTATION ELEMENT
    • 平衡旋转元件
    • US20130187519A1
    • 2013-07-25
    • US13701743
    • 2011-05-10
    • Klaus LinnenbrockJulien CasagrandeTobias Schneider
    • Klaus LinnenbrockJulien CasagrandeTobias Schneider
    • H02K7/04
    • H02K7/04H02K15/165
    • A moving element is connected to a rotor of an electric motor in a manner locked in terms of torque and, together with the rotor, forms a rotation element. An angle of inclination of the moving element in relation to the rotor is defined by bearing elements which are arranged on a circumference about the axis of rotation of the rotor, wherein the bearing elements each define axial distances between the rotor and the moving element. Each bearing element is formed by a first and a second axial section, and the moving element can be brought into different rotational positions in relation to the rotor so as to produce different pairings of the first and second sections, said pairings corresponding to different angles of inclination.
    • 移动元件以扭矩锁定的方式连接到电动机的转子,并且与转子一起形成旋转元件。 移动元件相对于转子的倾斜角由围绕转子的旋转轴线的圆周上的轴承元件限定,其中轴承元件各自限定转子和移动元件之间的轴向距离。 每个轴承元件由第一和第二轴向部分形成,并且移动元件可以相对于转子进入不同的旋转位置,以便产生不同的第一和第二部分的配对,所述配对对应于 倾角。
    • 55. 发明授权
    • Balancing structure for motor
    • 电机平衡结构
    • US07271518B2
    • 2007-09-18
    • US11158010
    • 2005-06-22
    • Alex HorngYin-Rong Hong
    • Alex HorngYin-Rong Hong
    • H02K7/04
    • H02K7/09H02K5/1675
    • A motor includes a fixed portion, a rotor, and at least one balancing plate fixed on the fixed portion. The fixed portion includes a stator having a plurality of pole plates that extend to form a plurality of pole faces, with a gap being defined between a pair of the pole faces adjacent to each other. The rotor includes a shaft and an annular magnet facing the pole faces. The balancing plate includes at least two magnetically conductive faces respectively aligned with the pole faces. The magnetically conductive faces are spaced from each other by a space for mounting a sensor. The magnetically conductive faces face at least one face of the annular magnet. When the rotor turns, the annular magnet of the rotor induces the alternating magnetic fields created by the stator and attracts the magnetically conductive faces to thereby maintain rotational balance of the rotor.
    • 电动机包括固定部分,转子和固定在固定部分上的至少一个平衡板。 固定部分包括具有延伸以形成多个极面的多个极板的定子,间隔限定在彼此相邻的一对极面之间。 转子包括轴和面向极面的环形磁体。 平衡板包括分别与极面对准的至少两个导磁面。 导磁面彼此隔开一个安装传感器的空间。 磁导面面对环形磁铁的至少一个面。 当转子转动时,转子的环形磁体引起由定子产生的交变磁场并吸引导磁面从而保持转子的旋转平衡。
    • 56. 发明授权
    • Balancing structure for motor
    • 电机平衡结构
    • US07224095B2
    • 2007-05-29
    • US11126224
    • 2005-05-11
    • Ming-Huang Chen
    • Ming-Huang Chen
    • H02K7/04H02K5/24
    • H02K7/09
    • A motor includes a fixed portion, a rotor, and at least one balancing plate fixed on the fixed portion. The fixed portion includes a stator having at least one pole plate that extends to form a plurality of pole faces, with a gap being defined between a pair of the pole faces adjacent to each other. The rotor includes a shaft and an annular magnet facing the pole faces. The balancing plate includes at least two magnetically conductive faces respectively aligned with the gaps. Each magnetically conductive face includes a length not smaller than that of an associated gap. The pole faces face at least one face of the annular magnet. When the rotor turns, the annular magnet of the rotor induces the alternating magnetic fields created by the stator and attracts the magnetically conductive faces to thereby maintain rotational balance of the rotor.
    • 电动机包括固定部分,转子和固定在固定部分上的至少一个平衡板。 固定部分包括具有延伸以形成多个极面的至少一个极板的定子,间隔限定在彼此相邻的一对极面之间。 转子包括轴和面向极面的环形磁体。 平衡板包括分别与间隙对准的至少两个导磁面。 每个导磁面包括不小于相关间隙的长度的长度。 极面面对环形磁体的至少一个面。 当转子转动时,转子的环形磁体引起由定子产生的交变磁场并吸引导磁面从而保持转子的旋转平衡。
    • 59. 发明申请
    • Turbine generator vibration damper system
    • 涡轮发电机减振系统
    • US20050116552A1
    • 2005-06-02
    • US10724541
    • 2003-12-01
    • Vladilen Safonov
    • Vladilen Safonov
    • F01D25/04F01D25/16F01D25/24F01D25/28F16F7/10H02K7/04H02K5/24F16M9/00F16M11/00H02K15/16
    • H02K7/04F01D25/04F01D25/16F01D25/164F01D25/243F01D25/28F05D2260/96F16F7/10Y10T29/49009
    • The invention relates to the vibration damper systems (here, method and apparatus) for active removal of beyond-normal internal vibrations from turbine-generator-sets [T-G-Ss*]. The invention relies on dynamic forces generated by a pair of “wings” and associated hardware mounted on the bearing housing, which operate to offset internally produced vibrations in an active or “real time” fashion. This is in contrast to the typical method of taking the turbine-generator off-line, shutting it down and then eliminating the source of vibration. The invention allows the generator to remain operational during adjustments. Thus, it remains on-line producing electricity and associated revenue. The system may be installed at presently operating T-G-Ss. It also foresees the simple developments to be done in future designed T-G-Ss for use of this method. The use of invention provides a real solution to internal vibrations that develop in turbine-generator-sets throughout their lifetime.
    • 本发明涉及用于从涡轮发电机组[T-G-Ss *]有效去除超常正常内部振动的减震器系统(这里,方法和装置)。 本发明依赖于由一对“翼”产生的动力和安装在轴承壳体上的相关联的硬件,其以活动或“实时”的方式操作以抵消内部产生的振动。 这与将涡轮发电机脱机,关闭,然后消除振动源的典型方法形成对比。 本发明允许发电机在调节期间保持运行。 因此,它仍然在线生产电力和相关收入。 该系统可以安装在目前运行的T-G-S上。 它还预见了在将来设计的T-G-S中使用这种方法的简单开发。 发明的使用提供了在其整个寿命期间在涡轮发电机组中发展的内部振动的真正解决方案。